gaming machines

The gaming machine design addresses the issue of decorative film wrinkles and cracks by using a permeable support member and hidden light-emitting parts to enhance appearance and maintain player interest.

JP7715359B2Active Publication Date: 2025-07-30DAIICHI SHOKAI KK
View PDF 7 Cites 0 Cited by

Patent Information

Application Number
JP2024084289
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-05-23
Publication Date
2025-07-30
Estimated Expiration
2039-09-26

AI Technical Summary

Technical Problem

Conventional gaming machines suffer from decorative films developing wrinkles and cracks, leading to a poor appearance and reduced player interest.

Method used

A gaming machine design featuring a specific support member with permeability, a back decoration part visible through a flow-down region, and a light-emitting part hidden behind the decoration, with a gap between the support member and flow-down region to enhance appearance and attract players.

Benefits of technology

The design improves the gaming machine's appearance, thereby maintaining player interest by minimizing the visibility of wrinkles and cracks in the decorative film.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 0007715359000001
    Figure 0007715359000001
  • Figure 0007715359000002
    Figure 0007715359000002
  • Figure 0007715359000003
    Figure 0007715359000003
Patent Text Reader

Abstract

To provide a game machine capable of suppressing a decrease in interest in a game.SOLUTION: While a first specific performance from among plural kinds of performances is executed when an operation part is operated before a specific timing within an operation effective period, a second specific performance from among the plural kinds of performances is executed when the operation part is operated after the specific timing within an operation effective period. A predetermined display part displays an image for showing the operation effective period and the specific timing, and may display a first specific image for suggesting execution of the first specific performance or may not display the first specific image as an image displayed on the display part within the operation effective period, and may display a second specific image for suggesting execution of the second specific performance or may not display the second specific image.SELECTED DRAWING: Figure 141
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to gaming machines such as pachinko machines (commonly also referred to as "pachinko machines") and rotary gaming machines (commonly also referred to as "pachislot machines").

Background Art

[0002] In a game machine such as a pachinko machine, a decorative film with a pattern printed thereon is pasted on the rear surface of a transparent game panel in which a game area is provided in front, so that the game area is decorated with the pattern on the decorative film visible through the game panel. Something has been proposed. (For example, Patent Document 1)

Prior Art Documents

Patent Documents

[0003]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0004] However, In conventional gaming machines, wrinkles and cracks in the decorative film can cause poor appearance and reduce interest in the game. there is a risk.

[0005] The present invention has been made in view of such circumstances, and the object thereof is to Improve the appearance of the playing area to attract players provide a gaming machine capable of suppressing a decrease in interest.

Means for Solving the Problems

[0006] Effective solutions for achieving the above object are shown below. In addition, the operation and the like will be described as necessary. Also, for ease of understanding, corresponding configurations and the like in the embodiments of the invention will be appropriately shown, but are not limited in any way.

[0007] In order to achieve the above object, in the invention according to claim 1, in a gaming machine including a game board mounted on a main body frame, the game board is A ball flow-down region where game balls can flow down is formed, including a flow-down region part having permeability, a back decoration part provided behind the flow-down region part and having a decorative surface visible through the flow-down region part, a specific support member that supports the back decoration part behind the flow-down region part, and is equipped with, the specific support member has a predetermined main body part and a mounting hole, and is supported behind the flow-down region part by inserting a mounting screw through the mounting hole, the back decoration part is disposed between the front of the main body part of the specific support member and the back of the flow-down region part without being pasted behind the flow-down region part, The game balls flowing down the ball flow-down area provided in the flow-down area, the specific support member, and the back decorative part are configured to be overlapped in the front-to-back direction, Furthermore, the specific support member is formed smaller than the flow-down region part, Furthermore, the specific support member is formed to have permeability, Furthermore, a light-emitting part capable of emitting light is provided behind the back decoration part, the light-emitting part is arranged so as to be difficult to be visually recognized by the back decoration part, a gap larger than the thickness of the back decoration part is formed between the front of the main body part of the specific support member and the back of the flow-down region part which is characterized by.

Effect of the Invention

[0009] Thus, according to the present invention, Improve the appearance of the playing area to attract players it is possible to provide a gaming machine capable of suppressing a decrease in gaming interest.

Brief Description of the Drawings

[0010] [Figure 1] It is a front view of a pachinko machine which is an embodiment of the present invention. [Diagram 2] It is a right side view of the pachinko machine. [Figure 3] It is a left side view of the pachinko machine. [Figure 4] It is a rear view of the pachinko machine. [Figure 5]It is a perspective view of the pachinko machine seen from the front right side. [Figure 6] It is a perspective view of the pachinko machine seen from the front left side. [Figure 7] It is a perspective view of the pachinko machine seen from the back. [Figure 8] It is a front view of the pachinko machine when the pressing operation part of the effect operation unit is in the raised position. [Figure 9] It is a perspective view of the pachinko machine seen from the front right side when the pressing operation part of the effect operation unit is in the raised position. [Figure 10] It is a perspective view of the pachinko machine seen from the front in a state where the door frame is released from the main body frame and the main body frame is released from the outer frame. [Figure 11] It is an exploded perspective view of the pachinko machine disassembled into the door frame, game board, main body frame, and outer frame and seen from the front. [Figure 12] It is an exploded perspective view of the pachinko machine disassembled into the door frame, game board, main body frame, and outer frame and seen from the back. [Figure 13] It is a front view of the outer frame in the pachinko machine. [Figure 14] It is a rear view of the outer frame. [Figure 15] It is a right side view of the outer frame. [Figure 16] It is a perspective view of the outer frame seen from the front. [Figure 17] It is a perspective view of the outer frame seen from the back. [Figure 18] It is an exploded perspective view of the outer frame disassembled by each main member and seen from the front. [Figure 19] It is an exploded perspective view of the left outer frame assembly and the right outer frame assembly of the outer frame, each disassembled and seen from the front. [Figure 20] It is an exploded perspective view of the lower outer frame assembly of the outer frame disassembled and seen from the front. [Figure 21] (a) is an exploded perspective view of the upper hinge assembly of the outer frame disassembled and seen from the front upper side, and (b) is an exploded perspective view of (a) seen from the front lower side. [Figure 22] It is a front view of the door frame in the pachinko machine. [Figure 23] It is a rear view of the door frame. [Figure 24] It is a left side view of the door frame. [Figure 25] It is a right side view of the door frame. [Figure 26] It is a perspective view of the door frame seen from the right front. [Figure 27] It is a perspective view of the door frame seen from the left front. [Figure 28] It is a perspective view of the door frame seen from the back. [Figure 29] It is an exploded perspective view of the door frame disassembled by each main member and seen from the front. [Figure 30] It is an exploded perspective view of the door frame disassembled by each main member and seen from the back. [Figure 31] (a) is a perspective view of the door frame base unit of the door frame seen from the front, and (b) is a perspective view of the door frame base unit seen from the back. [Figure 32] It is an exploded perspective view of the door frame base unit disassembled by each main member and seen from the front. [Figure 33] It is an exploded perspective view of the door frame base unit disassembled by each main member and seen from the back. [Figure 34] (a) is a perspective view of the cylinder lock of the door frame seen from the front, (b) is a perspective view of the cylinder lock of (a) seen from the back and front, (c) is a perspective view of the cylinder lock in a conventional pachinko machine seen from the front, and (d) is a perspective view of the cylinder lock of (a) seen from the back. [Figure 35] (a) is an exploded perspective view of the cylinder lock of Fig. 34(a) disassembled and seen from the front, and (b) is an exploded perspective view of the cylinder lock of Fig. 34(a) disassembled and seen from the back. [Figure 36] (a) is an explanatory view showing the movable mechanism of the cylinder lock of Fig. 34(a) from the front, (b) is an explanatory view of the cylinder lock shown in a state rotated 90 degrees counterclockwise from the state of (a), and (c) is an explanatory view of the cylinder lock shown in a state rotated 90 degrees clockwise from the state of (a). [Figure 37] (a) is a perspective view of the ball feeding unit of the door frame base unit seen from the front, and (b) is a perspective view of the ball feeding unit seen from the back. [Figure 38](a) is an exploded perspective view of the ball feeding unit as seen from the front with the unit disassembled, and (b) is an exploded perspective view of the ball feeding unit as seen from the rear with the rear case and the anti-fraud member removed. [Figure 39] (a) is a perspective view of the fur cover unit of the door frame base unit as seen from the front, and (b) is a perspective view of the fur cover unit as seen from the rear. [Figure 40] It is a front view of the fur cover unit with the lid member removed. [Figure 41] (a) is an enlarged front view showing the parts of the handle unit and the handle cover unit in the door frame, and (b) is an enlarged perspective view showing the parts of the handle unit and the handle cover unit in the door frame. [Figure 42] It is an exploded perspective view of the handle cover unit as seen from the front with the unit disassembled. [Figure 43] It is an exploded perspective view of the handle cover unit as seen from the rear with the unit disassembled. [Figure 44] It is an exploded perspective view of the handle unit as seen from the front with the unit disassembled. [Figure 45] It is an exploded perspective view of the handle unit as seen from the rear with the unit disassembled. [Figure 46] It is a cross-sectional view taken along the line A-A in Fig. 41(a). [Figure 47] It is a cross-sectional view taken along the line A-A in Fig. 1. [Figure 48] It is a perspective view of the dish unit of the door frame. [Figure 49] It is a perspective view of the dish unit as seen from the rear. [Figure 50] (a) is a cross-sectional view showing the main part by horizontally cutting at the position of the lower dish ball supply port in the door frame, (b) is a cross-sectional view showing the main part by cutting the same position as (a) in the conventional door frame, and (c) is a table comparing the storage numbers of the game balls in the lower dish between the product of this embodiment and the conventional product. [Figure 51] It is a plan view showing an enlarged part of the ball lending operation unit in the dish unit of the door frame. [Figure 52](a) is a perspective view of the production operation unit seen from the front with the production operation buttons facing upward, and (b) is a perspective view of the production operation unit in (a) seen from the back. [Figure 53] It is an exploded perspective view of the production operation unit disassembled by each main member and seen from the front upper side. [Figure 54] It is an exploded perspective view of the production operation unit disassembled by each main member and seen from the front lower side. [Figure 55] (a) is a cross-sectional view of the production operation unit in a state where the production operation unit part is in the lowered position and the lifting spring lower holding member is at the upward moving end position, and (b) is a cross-sectional view of the production operation unit in a state where the production operation unit part has moved to the raised position from the state in (a). [Figure 56] It is a cross-sectional view of the production operation unit in a state where the production operation unit part is in the lowered position and the lifting spring lower holding member is at the downward moving end position. [Figure 57] It is an explanatory diagram showing the positional relationship of the outer decorative substrate of the production operation part, the outer decorative substrate of the button, and the inner decorative substrate of the button in a plan view of the production operation unit seen from the pressing direction of the pressing operation part. [Figure 58] (a) is a front view of the dish unit shown in the normal state, and (b) is a front view of the dish unit when the production operation unit part is in the raised position. [Figure 59] It is a plan view of the production operation unit part showing an example in which a plurality of contact detectors are provided in the production operation unit part of the production operation unit. [Figure 60] (a) is an explanatory diagram schematically showing an example in which a plurality of contact detectors are connected to one contact detection sensor body, (b) is an explanatory diagram schematically showing an example in which a switching part is provided between the contact detection sensor body and the plurality of contact detectors in (a), and (c) is an explanatory diagram showing an example in which the left dish decorative unit, the right dish decorative unit, and the production operation unit of the dish unit can move forward and backward in the front-rear direction and contact detectors are provided on the front side and the rear side of the production operation unit and the like. [Figure 61] (a) is an explanatory diagram showing an example of a contact detector having decorativeness, and (b) is an explanatory diagram schematically showing another embodiment of the production operation unit. [Figure 62](a) is a front view of the left side unit of the door frame, (b) is a perspective view of the left side unit of the door frame seen from the front, and (c) is a perspective view of the left side unit of the door frame seen from the back. [Figure 63] It is an exploded perspective view of the left side unit of the door frame seen from the front with the unit disassembled. [Figure 64] It is an exploded perspective view of the left side unit of the door frame seen from the back with the unit disassembled. [Figure 65] It is a cross-sectional view taken along the V-V line in Fig. 62(a). [Figure 66] (a) is a front view of the right side unit of the door frame, (b) is a right side view of the right side unit of the door frame, (c) is a perspective view of the right side unit of the door frame seen from the front, and (d) is a perspective view of the right side unit of the door frame seen from the back. [Figure 67] It is an exploded perspective view of the right side unit of the door frame seen from the front with the unit disassembled. [Figure 68] It is an exploded perspective view of the right side unit of the door frame seen from the back with the unit disassembled. [Figure 69] It is a cross-sectional view taken along the E-E line in Fig. 66(a). [Figure 70] It is a cross-sectional view taken along the O-O line in Fig. 66(a). [Figure 71] (a) is a right side view of the right side unit of the door frame showing the outer layer of the two-color molding in an opaque state in the door frame, and (b) is a right side view of the right side unit of the door frame showing the outer layer made transparent while keeping the inner layer as it is in (a). [Figure 72] It is a front view showing each decorative substrate of the door frame. [Figure 73] It is a plan view showing the decorative substrate of the part of the effect operation unit of the door frame. [Figure 74] It is a rear view showing each decorative substrate provided around the door window of the door frame. [Figure 75] It is a front view of the main body frame in a pachinko machine. [Figure 76] It is a rear view of the main body frame in a pachinko machine. [Figure 77]It is a perspective view of the main body frame seen from the front right. [Figure 78] It is a perspective view of the main body frame seen from the front left. [Figure 79] It is a perspective view of the main body frame seen from the back. [Figure 80] It is an exploded perspective view of the main body frame disassembled by each main member and seen from the front. [Figure 81] It is an exploded perspective view of the main body frame disassembled by each main member and seen from the back. [Figure 82] (a) is an enlarged perspective view showing the lower left front corner of the main body frame, and (b) is an enlarged perspective view showing the lower left front corner of the main body frame when the door frame is opened with respect to the main body frame. [Figure 83] It is an explanatory diagram showing the operation of the connection cable guide member of the main body frame when the door frame is opened and closed with respect to the main body frame. [Figure 84] (a) is a perspective view of the ball launching device in the main body frame seen from the front, and (b) is a perspective view of the ball launching device seen from the back. [Figure 85] (a) is a perspective view of the payout base unit of the main body frame seen from the front, and (b) is a perspective view of the payout base unit seen from the back. [Figure 86] (a) is a perspective view of the payout unit in the main body frame seen from the front, and (b) is a perspective view of the payout unit seen from the back. [Figure 87] (a) is an exploded perspective view of the payout unit disassembled by each main component and seen from the front, and (b) is an exploded perspective view of the payout unit disassembled by each main component and seen from the back. [Figure 88] It is a rear cross-sectional view of the payout device of the payout unit cut at the center in the front-rear direction of the payout blade. [Figure 89] (a) is a rear cross-sectional view of the payout device cut at the center in the front-rear direction of the payout blade when the ball removal movable piece is in the open state, and (b) is a cross-sectional view cut along line A-A in (a). [Figure 90] It is an explanatory diagram showing the relationship between the fairing cover unit of the door frame and the lower full-ball path unit. [Figure 91] It is an explanatory diagram showing the flow of the game balls in the main body frame. [Figure 92] (a) is a perspective view of the substrate unit of the main body frame seen from the front, and (b) is a perspective view of the substrate unit seen from the back. [Figure 93] It is a perspective view of the substrate unit seen from the lower back. [Figure 94] It is an exploded perspective view of the substrate unit disassembled by each main component and seen from the front. [Figure 95] It is an exploded perspective view of the substrate unit disassembled by each main component and seen from the back. [Figure 96] It is an enlarged side sectional view showing the lower part of the pachinko machine cut at the center in the left - right direction. [Figure 97] (a) is a perspective view of the locking unit of the main body frame seen from the front, and (b) is a perspective view of the locking unit seen from the back. [Figure 98] (a) is a plan view of the main body frame, and (b) is a sectional view taken along line B - B in (a). [Figure 99] It is an enlarged view showing an enlarged upper part in a perspective view of the main body frame seen from the back. [Figure 100] (a) is a perspective view of the ball tank with a tank rail etc. assembled seen from the upper front, and (b) is a perspective view of (a) seen from the lower front. [Figure 101] It is an exploded perspective view of Fig. 100(a) disassembled and seen from the front. [Figure 102] It is an explanatory diagram showing the area where the game balls overflowing from the ball tank in the upper part of the main body frame flow. [Figure 103] It is an explanatory diagram showing the flow of the game balls overflowing from the ball tank in the upper part of the main body frame. [Figure 104] It is an explanatory diagram showing the flow of the game balls into the bypass passage in the upper part of the main body frame. [Figure 105] It is an enlarged view showing an enlarged area near the tank rail in a perspective view of the main body frame seen from the back on the hinge side. [Figure 106] It is a perspective view showing an enlarged part of the tank rail of a pachinko machine equipped with a tank rail etc. of the second embodiment seen from the back. [Figure 107](a) is a plan view showing the state in which the tank rail etc. of FIG. 106 is assembled together with the spherical tank, (b) is a perspective view of the tank rail etc. of (a) seen from the front, and (c) is a perspective view of the tank rail etc. of (a) seen from the rear. [Figure 108] (a) is an exploded perspective view of the tank rail etc. of FIG. 107 seen from the front after disassembling, and (b) is an exploded perspective view of the tank rail etc. of FIG. 107 seen from the rear after disassembling. [Figure 109] It is a cross-sectional view of the tank rail etc. cut along the line A-A in FIG. 107(a). [Figure 110] It is an explanatory view showing the flow of the game balls in the tank rail of FIG. 107 in cross-section. [Figure 111] It is a perspective view showing an enlarged view of the tank rail part when the main body frame equipped with the tank rail etc. of the third embodiment is seen from the right rear. [Figure 112] It is a perspective view showing an enlarged view of the tank rail part when the main body frame equipped with the tank rail etc. of the third embodiment is seen from the left rear. [Figure 113] (a) is a rear view of the main body frame showing an enlarged view of the external terminal board part, and (b) is a left side view of the main body frame showing an enlarged view of the upper part. [Figure 114] (a) is a cross-sectional view cut along the line D-D in FIG. 113(b), and (b) is a cross-sectional view cut along the line C-C in FIG. 113(a). [Figure 115] It is an explanatory view showing an enlarged view of the vicinity of the tank rail in FIG. 114(b). [Figure 116] (a) is a perspective view of the tank rail etc. of the third embodiment seen from the front, (b) is a perspective view of the tank rail etc. of (a) seen from the upper right rear, and (c) is a perspective view of the tank rail etc. of (a) seen from the lower right rear. [Figure 117] It is an exploded perspective view of the tank rail etc. of FIG. 116 seen from the front after disassembling. [Figure 118] It is an exploded perspective view of the tank rail etc. of FIG. 116 seen from the rear after disassembling. [Figure 119](a) is a front view of a substrate unit according to another embodiment, (b) is a perspective view of the substrate unit in (a) seen from the upper right front, and (c) is a perspective view of the substrate unit in (a) seen from the upper left front. [Figure 120] (a) is a perspective view of the substrate unit in FIG. 119(a) seen from the upper right rear, and (b) is a perspective view of the substrate unit in FIG. 119(a) seen from the lower right rear. [Figure 121] It is an exploded perspective view of the substrate unit in FIG. 119(a) seen from the front with the unit disassembled. [Figure 122] It is an exploded perspective view of the substrate unit in FIG. 119(a) seen from the rear with the unit disassembled. [Figure 123] (a) is a cross-sectional view taken along the Ki-Ki line in FIG. 119(a), (b) is a cross-sectional view taken along the Ku-Ku line in (a), and (c) is a cross-sectional view taken along the Ke-Ke line in (a). [Figure 124] It is a bottom view showing a part behind the door frame in a pachinko machine equipped with the substrate unit in FIG. 119(a). [Figure 125] It is an explanatory diagram showing an example in which a guide piece is provided at the out ball discharge port of the out ball passage. [Figure 126] (a) is an explanatory diagram showing an example in which the out sensor is detachable, and (b) is an explanatory diagram showing the state in which the out sensor is removed in (a). [Figure 127] (a) is a perspective view of the substrate unit of the third embodiment shown with the power unit, payout control unit, and interface unit omitted, seen from the upper right front, and (b) is a perspective view of the substrate unit in (a) seen from the upper left front. [Figure 128] (a) is a perspective view of the substrate unit in FIG. 127 seen from the upper right rear, and (b) is a perspective view of the substrate unit in (a) seen from the lower right rear. [Figure 129] (a) is a plan view of the substrate unit in FIG. 127, (b) is a cross-sectional view taken along the Ko-Ko line in (a), and (c) is a cross-sectional view taken along the Sa-Sa line in (a). [Figure 130] It is a cross-sectional view taken along the Shi-Shi line in FIG. 129(a). [Figure 131] Exploded perspective view of the substrate unit of FIG. 127 as seen from the front with the unit disassembled. [Figure 132] Exploded perspective view of the substrate unit of FIG. 127 as seen from the rear with the unit disassembled. [Figure 133] (a) is a perspective view of the ball path member of the substrate unit of FIG. 127 as seen from the front, and (b) is a perspective view of the ball path member of the substrate unit of FIG. 127 as seen from the rear. [Figure 134] Explanatory drawing showing elimination of ball jamming in the substrate unit of FIG. 127. [Figure 135] Explanatory drawing showing prevention of intrusion of a linear unauthorized tool in the substrate unit of FIG. 127. [Figure 136] Explanatory drawing showing dust removal in the substrate unit of FIG. 127. [Figure 137] Front view of a game board in a pachinko machine with center devices and the like made opaque. [Figure 138] Perspective view of the game board of FIG. 137 as seen from the upper right front. [Figure 139] Perspective view of the game board of FIG. 137 as seen from the upper left front. [Figure 140] Perspective view of the game board of FIG. 137 as seen from the rear.

Figure 141

Figure 142

Figure 143

Figure 144

Figure 145

Figure 146

Figure 147

Figure 148

Figure 149

Figure 150

Figure 151

Figure 152

Figure 153

Figure 154

Figure 155

Figure 156

Figure 157

Figure 158

Figure 159

Figure 160

Figure 161

Figure 162

Figure 163

Figure 164

Figure 165

Figure 166

Figure 167

Figure 168

Figure 169

Figure 170

Figure 171

Figure 172

【Figure 173]] It is an exploded perspective view seen from the front with the back unit of the game board disassembled into an effect unit, a mounting supporter, and a back box.

Figure 174

Figure 175

Figure 176

Figure 177

Figure 178

Figure 179

Figure 180

Figure 181

Figure 182

Figure 183

Figure 184

Figure 185

Figure 186

Figure 187

Figure 188

Figure 189

Figure 190

Figure 191

Figure 192

Figure 193

Figure 194

Figure 195

Figure 196

Figure 197

Figure 198

Figure 199

Figure 200

Figure 201

Figure 202

Figure 203

Figure 204

Figure 205

Figure 206

Figure 207

Figure 208

Figure 209

Figure 210

Figure 211

Figure 212

Figure 213

Figure 214

Figure 215

Figure 216

Figure 217

Figure 218

Figure 219

Figure 220

Figure 221

Figure 222

Figure 223

Figure 224

Figure 225

Figure 226

Figure 227

Figure 228

Figure 229

Figure 230

Figure 231

Figure 232

Figure 233

Figure 234

Figure 235

Figure 236

Figure 237

Figure 238

Figure 239

Figure 240

Figure 241

Figure 242

Figure 243

Figure 244

Figure 245

Figure 246

Mode for Carrying Out the Invention

[0011] [1. Overall Structure of Pachinko Machine] The pachinko machine 1 which is one embodiment of the present invention will be described in detail with reference to the drawings. First, the overall configuration of the pachinko machine 1 of the present embodiment will be described with reference to FIGS. 1 to 12. FIG. 1 is a front view of the pachinko machine which is one embodiment of the present invention. FIG. 2 is a right side view of the pachinko machine, FIG. 3 is a left side view of the pachinko machine, and FIG. 4 is a rear view of the pachinko machine. FIG. 5 is a perspective view of the pachinko machine seen from the right front, FIG. 6 is a perspective view of the pachinko machine seen from the left front, and FIG. 7 is a perspective view of the pachinko machine seen from the rear. FIG. 8 is a front view of the pachinko machine when the pressing operation portion of the effect operation unit is in the raised position, and FIG. 9 is a perspective view of the pachinko machine seen from the right front when the pressing operation portion of the effect operation unit is in the raised position. Further, FIG. 10 is a perspective view of the pachinko machine seen from the front in a state where the door frame is opened from the main body frame and the main body frame is opened from the outer frame. FIG. 11 is an exploded perspective view of the pachinko machine disassembled into a door frame, a game board, a main body frame, and an outer frame and seen from the front, and FIG. 12 is an exploded perspective view of the pachinko machine disassembled into a door frame, a game board, a main body frame, and an outer frame and seen from the rear.

[0012] The pachinko machine 1 of this embodiment comprises a frame-shaped outer frame 2 installed in an island facility (not shown) of an amusement hall, a door frame 3 that closes the front of the outer frame 2 in an openable and closable manner, a main frame 4 that supports the door frame 3 in an openable and closable manner and is attached to the outer frame 2 in an openable and closable manner, and a game board 5 that is detachably attached to the main frame 4 from the front and is visible from the player side through the door frame 3, and has a game area 5a into which a game ball B (see Figure 89) is shot by the player.

[0013] The outer frame 2 has a rectangular shape extending vertically when viewed from the front. The outer frame 2 includes a left outer frame assembly 10 and a right outer frame assembly 20 that are spaced apart from each other and extend vertically, an upper outer frame member 30 that connects the upper ends of the left outer frame assembly 10 and the right outer frame assembly 20, a lower outer frame assembly 40 that connects the lower ends of the left outer frame assembly 10 and the right outer frame assembly 20, an upper outer frame hinge assembly 50 attached to the left end of the upper surface of the upper outer frame member 30, and a lower outer frame hinge member 60 attached to the lower right side of the left outer frame assembly 10 and the left end of the upper surface of the lower outer frame assembly 40.

[0014] The outer frame 2 is attached to the island equipment of the gaming hall where the pachinko machine 1 is installed, and the outer frame upper hinge assembly 50 and the outer frame lower hinge member 60 support the main frame upper hinge member 510 and the main frame lower hinge assembly 520 of the main frame 4 so that they can rotate coaxially, thereby attaching the main frame 4 so that it can be opened and closed forward around the left side when viewed from the front.

[0015] In addition, when the main frame 4 is closed, the door frame 3 has the outer frame lower assembly 40 which cooperates with the speaker unit 620a of the board unit 620 in the main frame 4 to form part of the enclosure 624 of the main frame speaker 622, and by inverting the phase of the sound output to the rear of the main frame speaker 622 and radiating it forward, the player can hear a deeper bass sound.

[0016] The door frame 3 closes the game area 5a of the game board 5 into which the pachinko balls B are launched so as to be visible from the front side, stores the pachinko balls B for launching into the game area 5a, and includes a handle 195 that is operated by the player to launch the stored pachinko balls B into the game area 5a. Further, the door frame 3 decorates the entire front surface of the pachinko machine 1.

[0017] Also, the door frame 3 includes an effect operation unit 301 that can be operated by the player separately from the handle 195. When a player-participation type effect is executed, the player can participate in the effect by operating the effect operation unit 301. In addition to the game using the pachinko balls B, the player can be entertained by operating the effect operation unit 301.

[0018] The main body frame 4 includes a frame-shaped main body frame base unit 500 whose rear part can be inserted into the frame of the outer frame 2 and that can support the outer periphery of the game board 5, a main body frame upper hinge member 510 and a main body frame lower hinge assembly 520 for attachably and detachably mounting the main body frame 4 to the outer frame 2 and for attachably and detachably mounting the door frame 3, a main body frame reinforcing frame 530 for reinforcing the main body frame base unit 500, a ball launching device 540 for launching the pachinko balls B into the game area 5a of the game board 5, a payout base unit 550 for receiving the pachinko balls B supplied from the island equipment in the game hall, a payout unit 560 for paying out the pachinko balls B received by the payout base unit 550 to the player side, a board unit 620 having a payout control board 633 in addition to a power supply board 630 provided with a power switch 630a capable of turning on the power of the pachinko machine 1, a back cover 640 that covers the rear side of the game board 5 attached to the main body frame base 501, and a locking unit 650 for locking between the outer frame 2 and the main body frame 4 and between the door frame 3 and the main body frame 4.

[0019] The main body frame 4 holds the game board 5 having a game area 5a where the game is played by hitting the game ball B, and is also for paying out the game ball B to the player side or discharging the game ball B used in the game to the rear of the pachinko machine 1 (the side of the island facility in the game hall). The main body frame 4 is formed in a box shape with an open front, and the game board 5 is detachably accommodated inside from the front. Further, the main body frame 4 is openably attached to a frame-shaped outer frame 2 attached to the island facility in the game hall above and below the front left side end of the front, and a door frame 3 is openably attached so that the open front side is closed.

[0020] The game board 5 includes a game area 5a where the game ball B is played by the operation of the player, a front component member 1000 that partitions the outer periphery of the game area 5a and has a substantially rectangular shape when viewed from the front, a plate-shaped game panel 1100 attached to the rear side of the front component member 1000 that partitions the rear end of the game area 5a, a substrate holder 1200 attached to the lower rear side of the game panel 1100, a main control unit 1300 attached to the rear surface of the substrate holder 1200 and having a main control board 1310 and a setting change board, a function display unit 1400 that displays the game situation based on the control signal from the main control board 1310, a peripheral control unit 1500 (see FIG. 12) arranged on the rear side of the game panel 1100, an effect display device 1600 arranged at the center of the game area 5a when viewed from the front and capable of displaying a predetermined effect image, a front unit 2000 attached to the front surface of the game panel 1100, and a back unit 3000 attached to the rear surface of the game panel 1100. The back unit 3000 is provided with various effect units capable of performing movable effects and light emission effects according to the game state.

[0021] In the game area 5a of the game board 5, there are a plurality of obstacle pins implanted in a predetermined gauge arrangement in contact with the game ball B, and a general winning opening 2001, a first lower starting opening 2003, a first upper starting opening 2004, a second starting opening 2005, a first big winning opening 2006, a second big winning opening 2007, a V winning opening 2008, and a losing opening 2009 that give a predetermined privilege (for example, payout of a predetermined number of game balls B) to the player when the game ball B is received or passed through. The obstacle pins are implanted on the front surface of the game panel 1100. The general winning opening 2001, the gate 2002, the first lower starting opening 2003, the first upper starting opening 2004, the second starting opening 2005, the first big winning opening 2006, the second big winning opening 2007 (V winning opening 2008, losing opening 2009) are provided in the front unit 2000.

[0022] In the game area 5a of the game board 5, the player can drive the game ball B by operating the handle 195 of the handle unit 180. As a result, the player can enjoy the driving operation of the handle 195 so that the game ball B is received or passed through the general winning opening 2001, the gate 2002, the first lower starting opening 2003, the first upper starting opening 2004, the second starting opening 2005, the first big winning opening 2006, the second big winning opening 2007 (V winning opening 2008, losing opening 2009), etc. in the game area 5a.

[0023] In addition, according to the game state that changes when the game ball B is driven into the game area 5a of the game board 5, the game board 5 can display a predetermined effect image on the effect display device 1600, or perform a light emission effect or a movable effect by the starting opening display unit 2110, the back front upper effect unit 3200, the back front left effect unit 3300, the back right effect unit 3400, the back rear effect unit 3600, etc., so as to entertain the player.

[0024] [2. Overall Structure of the Outer Frame] The outer frame 2 of the pachinko machine 1 will be described with reference to FIGS. 13 to 18. FIG. 13 is a front view of the outer frame in the pachinko machine, FIG. 14 is a rear view of the outer frame, and FIG. 15 is a right side view of the outer frame. Further, FIG. 16 is a perspective view of the outer frame seen from the front, and FIG. 17 is a perspective view of the outer frame seen from the rear. FIG. 18 is an exploded perspective view of the outer frame disassembled by each main member and seen from the front. The outer frame 2 is attached to an island facility (not shown) where the pachinko machine 1 such as a game hall is installed. The outer frame 2 is formed in a rectangular frame shape that extends vertically in a front view.

[0025] As shown in the figure, the outer frame 2 includes an outer frame left assembly 10 and an outer frame right assembly 20 that are spaced apart from each other left and right and extend vertically, an outer frame upper member 30 that connects the upper ends of the outer frame left assembly 10 and the outer frame right assembly 20, an outer frame lower assembly 40 that connects the lower ends of the outer frame left assembly 10 and the outer frame right assembly 20, an outer frame upper hinge assembly 50 attached to the left end of the upper surface of the outer frame upper member 30, and an outer frame lower hinge member 60 attached to the lower part of the right side surface of the outer frame left assembly 10 and the left end of the upper surface of the outer frame lower assembly 40.

[0026] When the main body frame 4 is closed, the outer frame lower assembly 40 of the outer frame 2 cooperates with the speaker unit 620a of the substrate unit 620 in the main body frame 4 to form a part of the enclosure 624 of the main body frame speaker 622, and can radiate the sound output to the rear of the main body frame speaker 622 forward after phase inversion.

[0027] The outer frame 2 can detachably support the main body frame upper hinge member 510 of the main body frame 4 by the outer frame upper hinge assembly 50. The outer frame 2 can rotatably support the main body frame upper hinge member 510 and the main body frame lower hinge assembly 520 of the main body frame 4 coaxially by the outer frame upper hinge assembly 50 and the outer frame lower hinge member 60, and can attach the main body frame 4 so that it can be opened and closed forward with the left side in a front view as the center.

[0028] [2-1. Outer Frame Left Assembly and Outer Frame Right Assembly] The left outer frame assembly 10 and the right outer frame assembly 20 of the outer frame 2 will be described in detail mainly with reference to FIG. 19. FIG. 19 is an exploded perspective view of the left outer frame assembly and the right outer frame assembly of the outer frame, each viewed from the front after being disassembled. The left outer frame assembly 10 and the right outer frame assembly 20 of the outer frame 2 each extend vertically and are arranged spaced apart from each other left and right. The left outer frame assembly 10 and the right outer frame assembly 20 are for rotatably supporting the upper hinge member 510 and the lower hinge assembly 520 of the main body frame 4 of the main body frame coaxially, and for attaching the main body frame 4 to the outer frame 2 so as to be openable and closable.

[0029] First, the left outer frame assembly 10 includes a left outer frame member 11 that extends vertically with a constant width (depth) in the front-rear direction, an upper left connecting member 12 attached to the upper end of the right side surface of the left outer frame member 11, and a lower left connecting member 13 attached to the lower end of the right side surface of the left outer frame member 11.

[0030] The left outer frame member 11 extends vertically with a constant cross-sectional shape and is formed of an extruded aluminum alloy profile. The left outer frame member 11 has a concave portion 11a that is flat and recessed to the right at a rear portion that trisects the front-rear direction on the left side surface, a bulging portion 11b that bulges to the right from a portion on the right side surface opposite to the concave portion 11a, and a cavity portion 11c that penetrates the bulging portion 11b vertically. The left outer frame member 11 has its strength and rigidity enhanced by the concave portion 11a and the bulging portion 11b, and its weight reduced by the cavity portion 11c.

[0031] In addition, the left outer frame member 11 has a plurality of grooves formed on both the left and right side surfaces that extend vertically. The plurality of grooves on the left side surface are formed in a V shape, and the plurality of grooves on the right side surface are formed in a semi-circular shape. The left outer frame member 11 is formed in a shape symmetrical to the right outer frame member 21 of the right outer frame assembly 20 described later.

[0032] The upper left connecting member 12 is for connecting the upper end of the outer frame left member 11 and the left end of the outer frame upper member 30. The upper left connecting member 12 includes a horizontally extending flat plate-shaped horizontal fixing portion 12a, a flat plate-shaped upper horizontal fixing portion 12b extending upward from the middle in the front-rear direction on the left side of the horizontal fixing portion 12a, and a pair of flat plate-shaped lower horizontal fixing portions 12c extending downward from both the front and rear sides of the upper horizontal fixing portion 12b on the left side of the horizontal fixing portion 12a. The upper left connecting member 12 is formed by bending a flat plate-shaped metal plate.

[0033] The upper left connecting member 12 is attached to the outer frame left member 11 by inserting the rear lower horizontal fixing portion 12c into the cavity portion 11c of the outer frame left member 11, bringing the horizontal fixing portion 12a into contact with the upper end of the outer frame left member 11, and further screwing a screw into the lower horizontal fixing portion 12c from the outside of the left side surface of the outer frame left member 11 while bringing the front and rear lower horizontal fixing portions 12c into contact with the right side surface of the outer frame left member 11. Also, the upper left connecting member 12 is attached to the outer frame upper member 30 by bringing the horizontal fixing portion 12a into contact with the lower surface on the left end side of the outer frame upper member 30, inserting the upper horizontal fixing portion 12b into the notch portion 30a on the left side surface of the outer frame upper member 30, and screwing a screw through the horizontal fixing portion 12a and the upper horizontal fixing portion 12b into the outer frame upper member 30.

[0034] The lower left connecting member 13 is for connecting the lower end of the outer frame left member 11 and the left end of the outer frame lower assembly 40 (outer frame lower member 41). The lower left connecting member 13 includes a horizontally extending flat plate-shaped horizontal fixing portion 13a, a flat plate-shaped upper horizontal fixing portion 13b extending upward from the left side of the horizontal fixing portion 13a and extending rearward from the horizontal fixing portion 13a, a flat plate-shaped lower horizontal fixing portion 13c extending downward from a portion on the rear side of the horizontal fixing portion 13a on the lower side of the upper horizontal fixing portion 13b, and a flat plate-shaped contact portion 13d extending short to the right from the rear side of the upper horizontal fixing portion 13b. The lower left connecting member 13 is formed by bending a flat plate-shaped metal plate.

[0035] The lower left connecting member 13 is attached to the left outer frame member 11 by abutting the rear surface of the abutting portion 13d against the front surface of the bulging portion 11b of the left outer frame member 11, abutting the left side surface of the upper horizontal fixing portion 13b against the right side surface of the left outer frame member 11, and aligning the lower surface of the horizontal fixing portion 13a with the lower end of the left outer frame member 11, and then screwing a screw into the upper horizontal fixing portion 13b from the outside of the left side surface of the left outer frame member 11. Further, the lower left connecting member 13 is attached to the lower outer frame member 41 by abutting the horizontal fixing portion 13a against the upper surface of the left end side of the lower outer frame member 41, inserting the lower horizontal fixing portion 13c into the notch 41a on the left side surface of the lower outer frame member 41, and then screwing a screw into the lower outer frame member 41 through the horizontal fixing portion 13a and the lower horizontal fixing portion 13c. <00>

[0036] Next, the right outer frame assembly 20 includes a right outer frame member 21 that extends vertically with a constant width (depth) in the front-rear direction, an upper right connecting member 22 attached to the upper end of the left side surface of the right outer frame member 21, a lower right connecting member 23 attached to the lower end of the left side surface of the right outer frame member 21, an upper hook member 24 attached to the upper part of the left side surface of the right outer frame member 21, and a lower hook member 25 attached to the lower part of the left side surface of the right outer frame member 21.

[0037] The right outer frame member 21 extends vertically with a constant cross-sectional shape and is formed of an extruded aluminum alloy profile. The right outer frame member 21 has a concave portion 21a that is flat and recessed to the left at the rear part of the right side surface that is trisected in the front-rear direction, a bulging portion 21b that bulges to the left from the part on the left side surface opposite to the concave portion 21a, and a cavity portion 21c that penetrates the bulging portion 21b vertically. The right outer frame member 21 has enhanced strength and rigidity due to the concave portion 21a and the bulging portion 21b, and its weight is reduced due to the cavity portion 21c.

[0038] Also, the right outer frame member 21 has a plurality of grooves formed vertically on both the left and right side surfaces. The plurality of grooves on the right side surface are formed in a V shape, and the plurality of grooves on the left side surface are formed in a semi-circular shape. The right outer frame member 21 is formed in a shape symmetrical to the left outer frame member 11 of the left outer frame assembly 10.

[0039] The upper right connecting member 22 is for connecting the upper end of the outer frame right member 21 and the right end of the outer frame upper member 30. The upper right connecting member 22 includes a horizontally extending flat plate-shaped horizontal fixing portion 22a, a flat plate-shaped upper horizontal fixing portion 22b that extends upward from the middle in the front-rear direction on the right side of the horizontal fixing portion 22a, and a pair of flat plate-shaped lower horizontal fixing portions 22c that extend downward from both the front and rear sides of the upper horizontal fixing portion 22b on the right side of the horizontal fixing portion 22a. The upper right connecting member 22 is formed by bending a flat plate-shaped metal plate.

[0040] The upper right connecting member 22 is attached to the outer frame right member 21 by inserting the rear lower horizontal fixing portion 22c into the cavity portion 21c of the outer frame right member 21, abutting the horizontal fixing portion 22a against the upper end of the outer frame right member 21, and further screwing a screw into the lower horizontal fixing portion 22c from the outside of the right side surface of the outer frame right member 21 while abutting the front and rear lower horizontal fixing portions 22c against the left side surface of the outer frame right member 21. Further, the upper right connecting member 22 is attached to the outer frame upper member 30 by abutting the horizontal fixing portion 22a against the lower surface on the right end side of the outer frame upper member 30, inserting the upper horizontal fixing portion 22b into the notch portion 30a on the right side surface of the outer frame upper member 30, and screwing a screw through the horizontal fixing portion 22a and the upper horizontal fixing portion 22b into the outer frame upper member 30.

[0041] The lower right connecting member 23 is for connecting the lower end of the outer frame right member 21 and the right end of the outer frame lower assembly 40 (outer frame lower member 41). The lower right connecting member 23 includes a horizontally extending flat plate-shaped horizontal fixing portion 23a, a flat plate-shaped upper horizontal fixing portion 23b that extends upward from the right side of the horizontal fixing portion 23a and extends rearward from the horizontal fixing portion 23a, a flat plate-shaped lower horizontal fixing portion 23c that extends downward from a portion on the rear side of the horizontal fixing portion 23a on the lower side of the upper horizontal fixing portion 23b, and a flat plate-shaped abutting portion 23d that extends leftward short from the rear side of the upper horizontal fixing portion 23b. The lower right connecting member 23 is formed by bending a flat plate-shaped metal plate.

[0042] The lower right connecting member 23 is attached to the outer frame right member 21 by abutting the rear surface of the abutting portion 23d against the front surface of the bulging portion 21b of the outer frame right member 21, abutting the right side surface of the upper horizontal fixing portion 23b against the left side surface of the outer frame right member 21, and aligning the lower surface of the horizontal fixing portion 23a with the lower end of the outer frame right member 21, and then screwing a screw into the upper horizontal fixing portion 23b from the outside of the right side surface of the outer frame right member 21. Further, the lower right connecting member 23 is attached to the outer frame lower member 41 by abutting the horizontal fixing portion 23a against the upper surface of the right end side of the outer frame lower member 41, inserting the lower horizontal fixing portion 23c into the notch 41a on the right side surface of the outer frame lower member 41, and then screwing a screw into the outer frame lower member 41 through the horizontal fixing portion 23a and the lower horizontal fixing portion 23c.

[0043] The upper hook member 24 and the lower hook member 25 are for the outer frame hook 653 of the locking unit 650 in the main body frame 4 described later to be hooked. The upper hook member 24 has a flat mounting portion 24a that extends vertically with a constant width in the front-rear direction and is attached to the left side surface of the outer frame right member 21, and a flat hook piece portion 24b that extends leftward from the front edge of the mounting portion 24a and to which the upper outer frame hook 653 is hooked.

[0044] The lower hook member 25 has a flat mounting portion 25a that extends vertically with a constant width in the front-rear direction and is attached to the left side surface of the outer frame right member 21, a flat hook piece portion 25b that extends leftward from the front edge of the mounting portion 25a and to which the lower outer frame hook 653 is hooked, and an insertion port 25c that penetrates the hook piece portion 25b in the front-rear direction and through which the lower outer frame hook 653 can be inserted.

[0045] [2-2. Outer frame upper member] The outer frame upper member 30 of the outer frame 2 will be described in detail mainly with reference to FIG. 18. The outer frame upper member 30 is for connecting the upper ends of the outer frame left assembly 10 and the outer frame right assembly 20 that are spaced apart left and right. The outer frame upper member 30 has a width in the front-rear direction that is substantially the same as the front-rear direction of the outer frame left member 11 and the outer frame right member 21, a constant thickness in the vertical direction, and extends in the left-right direction, and is formed of wood. The outer frame upper member 30 is formed to have the same length in the left-right direction as the length in the left-right direction of the outer frame lower member 41 of the outer frame lower assembly 40 described later.

[0046] The upper outer frame member 30 is provided with notches 30a that penetrate vertically and are recessed toward the center in the left-right direction at the center in the front-rear direction on both left and right side surfaces. The upper horizontal fixing parts 12b of the upper left connecting member 12 and the upper horizontal fixing parts 22b of the upper right connecting member 22 are respectively attached to the notches 30a at both left and right ends in a state of being inserted therein.

[0047] Also, the upper outer frame member 30 is provided with a mounting step part 30b at the left end part, where the upper surface and the front surface are recessed more than the general surface. The outer frame upper hinge assembly 50 described later is attached to this mounting step part 30b.

[0048] [2-3. Lower Outer Frame Assembly] The lower outer frame assembly 40 of the outer frame 2 will be described in detail mainly with reference to FIG. 20. FIG. 20 is an exploded perspective view of the lower outer frame assembly of the outer frame as seen from the front with it disassembled. The lower outer frame assembly 40 connects the lower ends of the left outer frame assembly 10 and the right outer frame assembly 20 that are spaced apart from each other left and right, and is for closing and decorating the lower side of the door frame 3 in the pachinko machine 1.

[0049] The lower outer frame assembly 40 includes an outer frame lower member 41 that connects the lower ends of the left outer frame assembly 10 and the right outer frame assembly 20 that are spaced apart from each other left and right and extends left and right, a box-shaped curtain plate front member 42 that is disposed in front of the outer frame lower member 41, extends left and right along the outer frame lower member 41, and has an open rear side, a box-shaped curtain plate rear member 43 that is attached to the rear side of the curtain plate front member 42, is attached to the upper surface of the outer frame lower member 41, extends left and right with an open front side, and a ball biting prevention mechanism 44 formed at the left end on the upper surface of the curtain plate rear member 43.

[0050] The outer frame lower member 41 has a width in the front-rear direction that is substantially the same as the front-rear direction of the left outer frame member 11 and the right outer frame member 21, has a constant thickness in the vertical direction, extends in the left-right direction, and is formed of wood. The outer frame lower member 41 is formed to have the same length in the left-right direction as the length in the left-right direction of the upper outer frame member 30.

[0051] The lower outer frame member 41 is provided with notches 41a that are recessed toward the center in the left-right direction in a state of penetrating vertically at the center in the front-rear direction on both the left and right side surfaces. The lower horizontal fixing portions 13c of the lower left connecting member 13 and the lower horizontal fixing portions 23c of the lower right connecting member 23 are respectively attached to the notches 41a at both the left and right ends in a state of being inserted. Thereby, the lower ends of the left outer frame member 11 and the right outer frame member 21 can be connected to each other.

[0052] Further, the lower outer frame member 41 is recessed from the upper surface and is provided with a recess 41b into which the lower portion of the curtain plate rear member 43 is inserted. The recess 41b extends in the left-right direction and extends from a position closer to the rear in the center in the front-rear direction to the front end side. This recess 41b makes the volume of the curtain plate internal space 40a formed by the curtain plate front member 42 and the curtain plate rear member 43 as wide as possible.

[0053] The curtain plate front member 42 extends in a length in the left-right direction that is the same as that of the lower outer frame member 41, and is formed in a horizontally long rectangular parallelepiped box shape with a short depth in the front-rear direction with respect to the height, and the entire rear surface is open. The curtain plate front member 42 closes the open rear side with the curtain plate rear member 43, and forms a curtain plate internal space 40a that becomes a part of the enclosure 624 of the main body frame speaker 622 in cooperation with the curtain plate rear member 43. The curtain plate front member 42 is provided with an elongated hole-shaped opening 42a that penetrates in the front-rear direction and extends in the left-right direction on the front surface near the right end.

[0054] The curtain plate rear member 43 extends in a length in the left-right direction that is slightly shorter than that of the lower outer frame member 41, and is formed in a box shape with an open front. The curtain plate rear member 43 attaches the curtain plate front member 42 to the front surface, and forms a curtain plate internal space 40a that becomes a part of the enclosure 624 of the main body frame speaker 622 in cooperation with the curtain plate front member 42. The curtain plate rear member 43 has a cylindrical connection cylinder portion 43a that extends in the left-right direction, protrudes upward, and communicates with the curtain plate internal space 40a at the center in the left-right direction on the upper surface. The upper end of the connection cylinder portion 43a is inclined so that it is positioned upward from the front end side where it coincides with the general upper surface of the curtain plate rear member 43 toward the rear. In the present embodiment, the upper end of the connection cylinder portion 43a is inclined at an angle of 45 degrees.

[0055] This connecting cylinder portion 43a is formed such that its length in the left - right direction is about 1 / 3 of the length of the entire rear curtain member 43, and its depth in the front - rear direction is formed slightly shorter than the depth of the entire rear curtain member 43. Inside the connecting cylinder portion 43a, a plurality of ribs 43b connecting the front - end side and the rear - end side are provided. At the upper end of this connecting cylinder portion 43a, when the main body frame 4 is closed with respect to the outer frame 2, the connecting portion 621c of the speaker cover 621 in the speaker unit 620a of the substrate unit 620 in the main body frame 4 is connected, and it is in a state of communicating with the internal space of the speaker unit 620a, forming an enclosure 624.

[0056] The game ball jamming prevention mechanism 44 is for preventing a game ball B from being pinched between the outer frame 2 and the main body frame 4 when the game ball B stays at the position of the outer - frame lower hinge member 60 at the left end on the upper surface of the rear curtain member 43.

[0057] The game ball jamming prevention mechanism 44 is formed at the left end on the upper surface of the rear curtain member 43, and includes a placement portion 44a formed flat so that the outer - frame lower hinge member 60 described later is placed thereon, a first discharge port 44b that opens upward at the left end of the placement portion 44a, a second discharge port 44c that opens upward and is to the right of the first discharge port 44b in the placement portion 44a, a standing wall portion 44d that extends upward from the rear side and the right side of the placement portion 44a, and an upper - end protruding portion 44e that protrudes forward from the upper end of the standing wall portion 44d and whose upper surface is inclined so as to be positioned upward as it goes rearward.

[0058] The first discharge port 44b is formed at a position that coincides with the discharge hole 60d of the outer - frame lower hinge member 60 described later. The first discharge port 44b and the second discharge port 44c are formed to have a size through which the game ball B can pass. The first discharge port 44b and the second discharge port 44c are not in communication with the internal space 40a of the curtain, and open to the rear surface of the rear curtain member 43. Therefore, the game ball B that has entered the first discharge port 44b and the second discharge port 44c can be discharged to the rear of the rear curtain member 43.

[0059] When an improper tool such as a piano wire is inserted through the gap between the outer frame lower hinge member 60 and the main body frame lower hinge assembly 520 described later, this ball jamming prevention mechanism 44 can prevent the intrusion of the improper tool by means of the standing wall portion 44d rising from the rear end of the placement portion 44a. Even if the tip of the improper tool abuts against the standing wall portion 44d and bends upward, it can abut against the upper end protruding portion 44e protruding forward provided at the upper end of the standing wall portion 44d, thereby preventing further intrusion. Therefore, it is possible to prevent improper acts from being performed through the portion of the outer frame lower hinge member 60.

[0060] By the way, when the standing wall portion 44d is provided at the rear end of the placement portion 44a, when the main body frame 4 is opened with respect to the outer frame 2, the game ball B that has fallen onto the placement portion 44a for some reason is blocked from moving rearward of the outer frame 2 by the standing wall portion 44d, so the game ball B tends to stay on the placement portion 44a. And when the game ball B stays on the placement portion 44a, when the main body frame 4 is closed with respect to the outer frame 2, the game ball B is pinched between the outer frame 2 and the main body frame 4, and a problem occurs that the main body frame 4 cannot be closed.

[0061] On the other hand, in the ball jamming prevention mechanism 44 of the present embodiment, the game ball B that has fallen onto the outer frame lower hinge member 60 or the placement portion 44a can be discharged to the rear of the curtain plate rear member 43 (rear of the outer frame 2) through the discharge hole 60d of the outer frame lower hinge member 60 and the first discharge port 44b, or through the second discharge port 44c, and it is possible to prevent the game ball B from being pinched between the outer frame 2 and the main body frame 4.

[0062] The outer frame lower assembly 40 includes a pair of guide members 45 that are arranged on the upper surfaces of the curtain plate front member 42 and the curtain plate rear member 43 so as to be spaced apart from each other left and right, a flat grill member 46 that closes the opening 42a of the curtain plate front member 42 from the rear side, a port member 47 that is attached inside the curtain plate front member 42 so as to close the opening 42a with the grill member 46 interposed therebetween and has two cylinders extending in the front-rear direction, and a frame-shaped seal member 48 that is arranged at the upper end of the connection cylinder portion 43a of the curtain plate rear member 43.

[0063] When the main body frame 4 is closed with respect to the outer frame 2, the lower end of the door frame 3 abuts against a pair of guide members 45. The guide members 45 are formed of a low-friction material with low frictional resistance, facilitating the sliding of the lower end of the main body frame 4 and making opening and closing easier.

[0064] The grill member 46 is in a strip plate shape extending in the left-right direction and has a plurality of blade portions 46b provided at intervals in the vertical direction. The blade portions 46b are provided in an inclined state such that the front end side is higher than the rear end side (see FIG. 47). This grill member 46 allows the inside (the curtain plate internal space 40a) and the outside of the front curtain plate member 42 to communicate with each other through the gaps between the blade portions 46b.

[0065] The port member 47 connects the curtain plate internal space 40a (enclosure 624) and the front of the outer frame 2 through the gaps between the blade portions 46b of the grill member 46 by means of two cylinders. The two cylinders of the port member 47 are formed with a predetermined inner diameter and a predetermined length, and resonate and amplify the bass sound emitted from the main body frame speaker 622 to the rear (inside the enclosure 624) according to the principle of Helmholtz resonance, enabling rich bass to be radiated to the front of the outer frame 2 (the player side). That is, in this embodiment, the enclosure 624 of the main body frame speaker 622 is of the bass-reflex type, allowing the player to hear heavy bass.

[0066] When the main body frame 4 is closed with respect to the outer frame 2, the seal member 48 is sandwiched and compressed between the upper end of the connection cylinder portion 43a and the lower end of the connection portion 621c of the speaker cover 621 in the main body frame 4, preventing the sound inside the enclosure 624 of the main body frame speaker 622 from leaking between the connection cylinder portion 43a and the connection portion 621c.

[0067] According to the grill member 46 of the present embodiment, the air vibration released from the inner space 40a of the curtain plate to the outside by the main body frame speaker 622 is directed by the plurality of inclined blade portions 46b through the notch opening 295b below the handle cover 295 in the handle cover unit 290 diagonally forward and upward into the front cylindrical portion 291a of the handle cover base 291 in which the handle unit 180 is accommodated. As a result, when the player inserts a finger inside the handle cover 295 (front cylindrical portion 291a of the handle cover base 291) and rotates the handle 195 (the device for hitting the game ball B), the main body frame speaker 622 can be vibrated to send air into the front cylindrical portion 291a, surprising the player and creating an unprecedented effect.

[0068] In addition, since the port member 47 is opened forward, a part of the sound pressure released from the port member 47 through the plurality of blade portions 46b of the grill member 46 is released forward. Therefore, the effect sound released from the port member 47 can also be heard by the player sitting in front of the pachinko machine 1 or other players wandering in the game hall where the pachinko machine 1 is installed. The effect sound can also attract the interest of the player, and a pachinko machine 1 with a high appeal to the player can be provided.

[0069] In addition, since the port member 47 is provided on the outer frame lower assembly 40 of the outer frame 2 with respect to the enclosure 624 of the main body frame speaker 622 provided on the main body frame 4, the volume of the enclosure 624 can be increased. Therefore, a more bassy effect sound can be output, entertaining the player and suppressing a decrease in interest.

[0070] [2-4. Outer Frame Upper Hinge Assembly] The upper hinge assembly 50 on the outer frame 2 of the outer frame will be described in detail mainly with reference to Fig. 21. Fig. 21(a) is an exploded perspective view of the upper hinge assembly on the outer frame of the outer frame as seen from the front upper side after disassembly, and (b) is an exploded perspective view of (a) as seen from the front lower side. The upper hinge assembly 50 on the outer frame is attached to the upper end of the left outer frame assembly 10 and the left end of the upper outer frame member 30, and is for rotatably attaching the main body frame 4 to the outer frame 2 by means of a hinge. The upper hinge assembly 50 on the outer frame includes an upper hinge member 51 attached to the upper end of the concave portion 11a of the left outer frame member 11 and the mounting step portion 30b of the upper outer frame member 30, a lock member 52 attached to the upper hinge member 51, and a mounting screw 53 attaching the lock member 52 to the upper hinge member 51.

[0071] The upper hinge member 51 has a flat plate shape extending horizontally and is attached to the upper surface of the mounting step portion 30b of the upper outer frame member 30, a flat plate-shaped front extension portion 51b extending forward from the front side of the upper fixing portion 51a, a bearing groove 51c extending from the middle of the right side of the front extension portion 51b toward the left and right center of the front extension portion 51b and penetrating vertically, a flat plate-shaped lateral fixing portion 51d extending downward from the left side of the upper fixing portion 51a, and a flat plate-shaped edge wall portion 51e extending downward from the edge from the left side of the front extension portion 51b around the front side to the part where the bearing groove 51c opens and continuous with the lateral fixing portion 51d. The upper hinge member 51 is formed by punching and bending a metal plate by press forming. The upper hinge member 51 can rotatably support a main body frame upper hinge pin 512 (described later) of the main body frame upper hinge member 510 in the bearing groove 51c.

[0072] The lock member 52 includes a strip-shaped lock body 52a extending in the front-rear direction, an operation piece 52b protruding rightward from the rear end of the lock body 52a, an elastically deformable rod-shaped elastic portion 52c extending leftward from the rear end of the lock body 52a and then obliquely forward-leftward, and a mounting hole 52d penetrating vertically near the rear end of the lock body 52a. The lock member 52 is formed of synthetic resin. The lock member 52 is rotatably mounted by a mounting screw 53 on the lower surface of the front extending portion 51b of the outer frame upper hinge member 51 at a position behind the bearing groove 51c.

[0073] When the lock member 52 is mounted on the outer frame upper hinge member 51, the lock body 52a can block the bearing groove 51c in plan view, and the right side surface near the front end extends forward so as to be able to contact a portion extending to the opening of the bearing groove 51c in the edge wall portion 51e of the outer frame upper hinge member 51. Also, the tip of the elastic portion 52c extending leftward from the rear end of the lock body 52a is in contact with the inner peripheral surface of the edge wall portion 51e of the outer frame upper hinge member 51. This lock member 52 is biased in a direction in which the front end rotates leftward about the mounting hole 52d by the biasing force of the elastic portion 52c. Therefore, in the normal state, the right side surface near the front end of the lock body 52a of the lock member 52 is in contact with the edge wall portion 51e. In this state, a space capable of accommodating the main body frame upper hinge pin 512 of the main body frame upper hinge member 510 is formed in the portion of the bearing groove 51c in front of the lock body 52a.

[0074] By operating the operation piece 52b, this lock member 52 can rotate the lock body 52a against the biasing force of the elastic portion 52c. Then, by operating the operation piece 52b to rotate the lock body 52a in a direction in which the front end moves leftward, the lock body 52a can be retracted from the bearing groove 51c in plan view, and the bearing groove 51c can be made to be in a fully open state. Thereby, the main body frame upper hinge pin 512 can be inserted into the bearing groove 51c or removed from the bearing groove 51c.

[0075] [2-5. Lower hinge member of the outer frame] The lower hinge member 60 of the outer frame 2 of the outer frame will be described in detail mainly with reference to FIG. 18. The lower hinge member 60 of the outer frame includes a horizontally extending flat plate-shaped horizontal portion 60a, a flat plate-shaped upright portion 60b that rises upward from a portion on the left side of the horizontal portion 60a that is behind the center in the front-rear direction, an outer frame lower hinge pin 60c that protrudes upward near the front end of the horizontal portion 60a, and a discharge hole 60d that penetrates the horizontal portion 60a vertically and has a size that allows only one game ball B to pass through. This lower hinge member 60 of the outer frame is formed by punching and bending a metal plate by press forming.

[0076] The horizontal portion 60a of the lower hinge member 60 of the outer frame is formed in a trapezoid shape with the left side as the bottom side in a plan view. The outer frame lower hinge pin 60c is columnar, and the upper part above the center in the vertical direction is formed in a frustum of a cone shape with the upper end narrowed. This outer frame lower hinge pin 60c is attached to a position on the left side near the front end of the horizontal portion 60a. The discharge hole 60d is formed in the horizontal portion 60a so as to be in contact with the central portion in the front-rear direction of the upright portion 60b and extend in an inverted U shape from the left side to the right side of the horizontal portion 60a. This discharge hole 60d is formed to have substantially the same size as the first discharge port 44b of the ball biting prevention mechanism 44 in the outer frame lower assembly 40.

[0077] When the lower hinge member 60 of the outer frame is assembled to the outer frame 2, the rear portion of the horizontal portion 60a is placed on the placement portion 44a of the curtain plate rear member 43 in the outer frame lower assembly 40 and fixed to the curtain plate rear member 43 with screws (not shown). Further, the upright portion 60b is attached to a portion in front of the bulging portion 11b on the right side surface of the outer frame left member 11 with screws (not shown). This lower hinge member 60 of the outer frame can be attached to the main body frame 4 so as to be openable and closable in cooperation with the upper hinge member 51 of the outer frame by inserting the outer frame lower hinge pin 60c into the outer frame lower hinge hole 521a in the main body frame lower hinge assembly 520 of the main body frame 4.

[0078] In addition, in the state where the outer frame 2 is assembled, the discharge hole 60d coincides with the first discharge port 44b of the ball engagement prevention mechanism 44 in the lower outer frame assembly 40. As a result, the game ball B on the horizontal portion 60a can be dropped (discharged) backward of the outer frame 2 through the discharge hole 60d and the first discharge port 44b. More specifically, when the main body frame 4 is closed with respect to the outer frame 2, as the main body frame 4 is closed, the game ball B that has fallen between the outer frame 2 and the main body frame 4 gradually narrows the space between the outer frame 2 and the main body frame 4. Therefore, it will roll toward the rear side with a wider interval and can be discharged from the discharge hole 60d. At this time, since the discharge hole 60d is formed at a position substantially the same as the rear end of the main body frame 4 when the main body frame 4 is closed with respect to the outer frame 2 in the state where the pachinko machine 1 is assembled, it is possible to easily prevent the game ball B that has fallen between the outer frame 2 and the main body frame 4 from rolling to the rear side by discharging it from the discharge hole 60d, and it is possible to make it difficult for the game ball B to stay at the portion of the lower outer hinge member 60 of the outer frame.

[0079] [3. Overall Structure of the Door Frame] The door frame 3 of the pachinko machine 1 will be described in detail mainly with reference to FIGS. 22 to 30. FIG. 22 is a front view of the door frame in the pachinko machine, FIG. 23 is a rear view of the door frame, FIG. 24 is a left side view of the door frame, and FIG. 25 is a right side view of the door frame. FIG. 26 is a perspective view of the door frame seen from the right front, FIG. 27 is a perspective view of the door frame seen from the left front, and FIG. 28 is a perspective view of the door frame seen from the rear. FIG. 29 is an exploded perspective view of the door frame disassembled by each main member and seen from the front, and FIG. 30 is an exploded perspective view of the door frame disassembled by each main member and seen from the rear.

[0080] The door frame 3 is formed in a quadrangular shape that is substantially the same size as the inside of the outer frame 2 and extends vertically in a front view, and is attached to be openable and closable from the front side to the inside of the outer frame 2 via the main body frame 4. The door frame 3 closes the game area 5a of the game board 5 into which the game ball B is driven so that it can be visually recognized from the front side, stores the game ball B for driving into the game area 5a, and includes a handle 195 that a player operates to drive the stored game ball B into the game area 5a. In addition, the door frame 3 decorates the entire front surface of the pachinko machine 1.

[0081] The door frame 3 includes a frame-shaped door frame base unit 100 with a rectangular outer shape extending vertically in a front view, a glass unit 160 that is detachably attached to the door frame base unit 100 and closes the gaming area 5a of the game board 5 attached to the main body frame 4 so as to be visible from the front, a security cover 170 attached to the door frame base unit 100 so as to cover the lower part of the glass unit 160 from the rear side, a handle unit 180 attached to the lower right corner of the front surface of the door frame base unit 100, a handle cover unit 290 that covers the outer periphery of the handle unit 180, a dish unit 200 attached to the lower part of the front surface of the door frame base unit 100, a door frame left side unit 420 attached to the left part of the front surface of the door frame base unit 100 above the dish unit 200, a door frame right side unit 430 attached to the right part of the front surface of the door frame base unit 100 above the dish unit, and a door frame top unit 450 attached to the upper part of the front surface of the door frame base unit 100 above the door frame left side unit 420 and the door frame right side unit 430.

[0082] The door frame base unit 100 is formed in a rectangular (elongated rectangular) shape with an outer shape extending vertically in a front view and has a door frame window 101a penetrating through in the front and rear directions. It also includes a speaker duct 103 attached to the lower right corner in a rear view on the rear side of the door frame base 101, a main door frame relay board 104 attached near the right end in a rear view at the lower part on the rear side of the door frame base 101, a sub door frame relay board 105 attached to the left of the main door frame relay board 104 in a rear view, a handle rear relay board 106 attached to the left of the sub door frame relay board 105 in a rear view, a door frame relay board cover 107 that covers a part of the main door frame relay board 104 and the sub door frame relay board 105 from the rear side, a handle rear relay board cover 108 that covers the handle rear relay board 106 from the rear side, and a cable cover 109 that covers the wiring cable.

[0083] The door frame base unit 100 also includes a frame-shaped door frame reinforcement unit 110 attached to the rear side of the door frame base 101, an upper door frame hinge assembly 120 and a lower door frame hinge member 125 attached to the door frame reinforcement unit 110, a cylinder lock 130 for opening and closing attached to the door frame reinforcement unit 110, a ball feeding unit 140 attached above the rear handle relay board 106 on the rear side of the door frame base 101, and a fall cover unit 150 attached to the right side of the lower rear side of the door frame base 101 when viewed from behind.

[0084] The door frame reinforcement unit 110 is attached to the rear side of the door frame base 101 to reinforce and rigidify the door frame base 101. The upper door frame hinge assembly 120 and the lower door frame hinge member 125 are used to attach the door frame 3 to the main frame 4 so that it can be opened and closed. The cylinder lock 130 works in cooperation with the locking unit 650 of the main frame 4 to lock and open the door frame 3 and the main frame 4, and to open and close the outer frame 2 and the main frame 4.

[0085] The ball feeding unit 140 is for supplying the game balls B in the upper tray 201 one by one to the ball launching device 540 of the main frame 4. The foul cover unit 150 is for guiding the game balls B (foul balls) that have been launched by the ball launching device 540 but have not reached the game area 5a of the game board 5 to the lower tray 202, and for guiding the game balls B paid out from the payout device 580 to the upper tray 201 or the lower tray 202.

[0086] The glass unit 160 has a transparent glass plate 162 and closes the door window 101a of the door frame base 101. The security cover 170 is attached to the door frame base 101 so as to cover the lower part of the glass unit 160 from the rear. The handle unit 180 has a handle 195 that can be rotated by the player, and the handle unit 180 is used to play a game in which the game ball B in the upper tray 201 is shot into the game area 5a of the game board 5 by the ball launcher 540 by operating the handle cover unit 290 that covers the outer periphery.

[0087] [3-1. Overall Structure of the Door Frame Base Unit] The door frame base unit 100 of the door frame 3 will be described in detail mainly with reference to FIGS. 31 to 33. FIG. 31(a) is a perspective view of the door frame base unit of the door frame seen from the front, and (b) is a perspective view of the door frame base unit seen from the back. FIG. 32 is an exploded perspective view of the door frame base unit disassembled by main members and seen from the front, and FIG. 33 is an exploded perspective view of the door frame base unit disassembled by main members and seen from the back.

[0088] The door frame base unit 100 is attached to the left side of the front view so as to be hinge-rotatable with respect to the main body frame 4, closes the front surface of the main body frame 4 so as to be openable and closable, and enables the game area 5a of the game board 5 attached to the main body frame 4 to be visually recognized from the front. The door frame base unit 100 includes a door frame base 101 having a rectangular and flat plate shape with an outer shape extending vertically, and a speaker duct 103 attached to the lower right corner of the rear side of the door frame base 101 when viewed from the back.

[0089] In addition, the door frame base unit 100 includes a door frame main relay board 104 attached near the right end of the lower part of the rear side of the door frame base 101 when viewed from the back, a door frame sub-relay board 105 attached to the left of the door frame main relay board 104 when viewed from the back at the lower part of the rear side of the door frame base 101, a handle rear relay board 106 attached to the left of the door frame sub-relay board 105 when viewed from the back at the lower part of the rear side of the door frame base 101, a door frame relay board cover 107 attached to the rear side of the door frame base 101 and covering a part of the door frame main relay board 104 and the door frame sub-relay board 105 from the rear side, a handle rear relay board cover 108 attached to the rear side of the door frame base 101 and covering the handle rear relay board 106 from the rear side, and a cable cover 109 attached to the rear side of the door frame base 101 and covering the wiring cable.

[0090] Furthermore, the door frame base unit 100 includes a frame-shaped door frame reinforcement unit 110 attached to the rear side of the door frame base 101, an upper door frame hinge assembly 120 and a lower door frame hinge member 125 attached to the door frame reinforcement unit 110, a cylinder lock 130 for opening and closing attached to the door frame reinforcement unit 110, a ball feeding unit 140 attached above the rear handle relay board 106 on the rear side of the door frame base 101, and a fall cover unit 150 attached to the right side of the lower rear side of the door frame base 101 when viewed from behind.

[0091] This door frame base unit 100 has a handle unit 180 and a handle cover unit 290 attached to the lower front corners, a tray unit 200 attached to the lower front surface of the door window 101a, a door frame left side unit 420 attached to the left outer front surface of the door window 101a, a door frame right side unit 430 attached to the right outer front surface of the door window 101a, and a door frame top unit 450 attached to the upper outer front surface of the door window 101a.

[0092] In addition, a glass unit 160 is attached to the door frame base unit 100 so as to close the door window 101a from the rear, and a transparent security cover 170 is attached so as to cover the lower part of the glass unit 160 from the rear.

[0093] [3-1a. Door frame base] The door frame base 101 of the door frame base unit 100 in the door frame 3 will be described in detail mainly with reference to Figures 31 to 33. The door frame base 101 has an outer shape formed into a square (rectangle) extending vertically when viewed from the front. The door frame base 101 penetrates from front to back and is provided with a door window 101a whose inner periphery when viewed from the front is formed into a substantially square shape extending vertically. The upper and left and right sides forming the inner periphery of the door window 101a are respectively close to the outer periphery of the door frame base 101, and the lower side forming the inner periphery is located approximately one-third of the height in the vertical direction from the bottom end of the door frame base 101. In this way, the door frame base 101 is formed into a frame shape as a whole by the door window 101a penetrating from front to back. The door frame base 101 is integrally molded from synthetic resin.

[0094] The door frame base 101 includes a handle mounting seat surface 101b (see FIG. 42 etc.) formed at the lower right corner in the front view on the front surface and inclined such that the left end side protrudes slightly forward from the right end side, a cylinder insertion hole 101d through which the cylinder mounting frame 115 of the door frame reinforcement unit 110 is inserted in the front-rear direction between the handle mounting seat surface 101b and the door window 101a, and a ball feeding opening 101e through which the inlet 141a and the ball outlet 141b of the ball feeding unit 140 face forward and penetrate in the front-rear direction on the left side in the front view of the cylinder insertion hole 101d and the handle mounting seat surface 101b.

[0095] Further, the door frame base 101 includes a lower plate ball passage hole 101f through which the ball discharge port 150d of the far cover unit 150 faces forward and penetrates in the front-rear direction to the left of the center in the left-right direction and at substantially the same height as the handle mounting seat surface 101b, an upper plate ball passage hole 101g through which the through ball passage 150a of the far cover unit 150 faces forward and penetrates in the front-rear direction adjacent to the lower side of the door window 101a near the left end in the front view, and a glass unit mounting portion 101h that is recessed from the rear surface forward along the inner circumference of the door window 101a and into which the glass frame 161 of the glass unit 160 is inserted.

[0096] Further, the door frame base 101 includes a plurality of vertically long slits 101i formed at the lower left corner in the front view (below the upper plate ball passage hole 101g) and penetrating in the front-rear direction. A speaker duct 103 is attached to the rear side of the plurality of slits 101i. Also, in the state where the pachinko machine 1 is assembled, the speaker opening 211b of the plate unit base 211 in the plate unit 200 is located in front of the plurality of slits 101i, and the main body frame speaker 622 in the speaker unit 620a of the main body frame 4 is located behind the plurality of slits 101i, and the sound from the main body frame speaker 622 can be radiated forward.

[0097] Furthermore, the door frame base 101 is provided with a through hole 101j that penetrates from front to back below the door window 101a and above the handle mounting seat surface 101b. This through hole 101j is for inserting a wiring cable (not shown) that connects the door frame base unit 100 side and the dish unit 200 side, and is formed to coincide with the through portion 114b of the intermediate reinforcing frame 114 in the door frame reinforcing unit 110 described later.

[0098] [3-1b. Speaker Duct] The speaker duct 103 of the door frame base unit 100 will be described in detail mainly with reference to FIGS. 31 to 33. This speaker duct 103 is formed in a cylindrical shape and is attached to a portion where a plurality of slits 101i are formed on the rear side of the door frame base 101. In the state where the pachinko machine 1 is assembled, the rear end of the cylindrical portion of the speaker duct 103 is located in front of the main body frame speaker 622 of the main body frame 4. Thereby, the sound (sound) radiated (output) from the main body frame speaker 622 of the main body frame 4 can be guided forward without being diffused, and can be favorably guided to the front (player side) of the pachinko machine 1 through the plurality of slits 101i of the door frame base 101 and the speaker opening 211b in the dish unit base 211 of the dish unit 200.

[0099] Also, the speaker duct 103 is provided with a cable holder 103a for holding the connection cable 503 on the rear surface below the cylindrical portion. The cable holder 103a is arranged to the left in the front view from the door frame relay board cover 107, and holds the connection cable 503 connected to the main door frame relay board 104 and the sub door frame relay board 105 so as to extend to the left end side of the door frame 3.

[0100] [3-1c. Main Door Frame Relay Board, Sub Door Frame Relay Board, Rear Handle Relay Board] Regarding the door frame main relay board 104, door frame sub-relay board 105, and handle rear relay board 106 of the door frame base unit 100, mainly refer to FIGS. 32 and 33 etc. for explanation. The door frame main relay board 104 is formed in a rectangular shape with its outer shape extending vertically, and is attached to the lower right corner of the rear side of the door frame base 101 when viewed from the back. The door frame main relay board 104 is for relaying the connection between the handle rear relay board 106 and the interface board 635 in the board unit 620 of the main body frame 4, and a part of the connection cable 503 (refer to FIGS. 82 and 83) extending from the main body frame 4 is connected thereto.

[0101] The door frame sub-relay board 105 is formed in an inverted L shape in which a rectangle extending horizontally is combined with the upper right side of a rectangle extending vertically when viewed from the front. The part extending vertically is attached to the rear side of the door frame base 101 so as to be adjacent to the left side of the door frame main relay board 104 when viewed from the back. The door frame sub-relay board 105 is for relaying the connection between the handle decorative board 184 of the handle unit 180, the dish unit relay board 214 of the dish unit 200, the upper decorative board 422 and the lower decorative board 423 of the left side of the door frame of the left side unit 420 of the door frame, the upper decorative board 432 and the lower decorative board 433 of the right side of the door frame of the right side unit 430 of the door frame, the door frame top relay board of the door frame top unit 450, etc., and the interface board 635 of the main body frame 4, and the rest of the connection cable 503 extending from the main body frame 4 is connected thereto.

[0102] The door frame main relay board 104 and the door frame sub-relay board 105 are attached to the door frame base 101 such that the connection terminals protrude rearward. In the state where the door frame base unit 100 is assembled, the parts of the door frame main relay board 104 and the door frame sub-relay board 105 that extend vertically are covered at the rear by the door frame relay board cover 107, and the remaining part of the door frame sub-relay board 105 is covered at the rear by the far cover unit 150.

[0103] The handle rear relay board 106 is formed in a rectangular shape with an outer shape extending left and right, and is attached to the rear side of the handle mounting seat surface 101b below the ball feeding opening 101e on the rear side of the door frame base 101. The handle rear relay board 106 is for relaying the connection between the door frame main relay board 104 and the handle rotation detection sensor 189, handle touch sensor 192, single-shot button operation sensor 194 of the handle unit 180, and the ball feeding solenoid 145 of the ball feeding unit 140. In a state where the door frame base unit 100 is assembled, the rear side of the handle rear relay board 106 is covered by the handle rear relay board cover 108.

[0104] [3-1d. Door Frame Relay Board Cover · Handle Rear Relay Board Cover · Cable Cover] Regarding the door frame relay board cover 107, handle rear relay board cover 108, and cable cover 109 of the door frame base unit 100, they will be mainly described with reference to FIGS. 31 to 33. The door frame relay board cover 107 is attached to the rear side of the door frame base 101 to cover the rear sides of the door frame main relay board 104 and a part of the door frame sub-relay board 105 (the part extending vertically in an inverted L shape). The door frame relay board cover 107 is formed in a box shape with the front and the left side when viewed from the front open. In a state assembled to the door frame base unit 100, the connection terminals of the door frame main relay board 104 and the door frame sub-relay board 105 that cover the rear side are exposed inside the door frame relay board cover 107, and the connection cable 503 can be inserted inside from the open left side and connected to those terminals.

[0105] The handle rear relay board cover 108 is attached to the rear side of the door frame base 101 so as to cover the rear side of the handle rear relay board 106. The cable cover 109 is attached to the rear side of the intermediate reinforcement frame 114 in the door frame reinforcement unit 110, and is for covering a wiring cable (not shown) that connects the door frame main relay board 104 and the ball lending operation unit 220 of the dish unit 200. The cable cover 109 is formed in a box shape extending left and right, and openings for passing the wiring cable are formed near the left end of the front surface and at the center in the left-right direction of the lower surface.

[0106] [3-1e. Door frame reinforcement unit] The door frame reinforcement unit 110 of the door frame base unit 100 will be described in detail mainly with reference to Figures 31 to 33. The door frame reinforcement unit 110 is attached to the rear side of the door frame base 101 to reinforce the flat door frame base 101 and provide rigidity to the door frame base unit 100. The door frame reinforcement unit 110 comprises a left reinforcement frame 111 and a right reinforcement frame 112 which extend vertically and are arranged at a distance from each other on the left and right, an upper reinforcement frame 113 which extends horizontally and connects the upper ends of the left reinforcement frame 111 and the right reinforcement frame 112, an intermediate reinforcement frame 114 whose left end is attached to a position above the lower end of the left reinforcement frame 111 and extends to the right to the vicinity of the right reinforcement frame 112, a cylinder mounting frame 115 which connects the right end of the intermediate reinforcement frame 114 to the right reinforcement frame 112, and multiple hook hook members 116 which are attached vertically and spaced apart on the rear side of the right reinforcement frame 112 and on which door frame hooks 652 of the locking unit 650 of the main frame 4 are hooked.

[0107] The left reinforcing frame 111 and the right reinforcing frame 112 have a constant width in the left-right direction and extend vertically for a length approximately equal to the vertical height of the door frame base 101. The right reinforcing frame 112 has multiple insertion holes that are spaced apart in the vertical direction and penetrate in the front-to-rear direction. The tips of the door frame hooks 652 of the locking unit 650 are inserted into these insertion holes when the door frame 3 is closed against the main frame 4. The upper reinforcing frame 113 has a constant width in the up-down direction and extends horizontally for a length approximately equal to the left-to-right width of the door frame base 101.

[0108] The middle reinforcement frame 114 extends left and right with a width in the vertical direction that is wider than the width of the upper reinforcement frame 113. The middle reinforcement frame 114 has a square cutout 114a cut downward from the top end near the left end, and a through-hole 114b that penetrates from front to back near the right end. The cutout 114a is formed in a position that coincides with the upper tray ball passage opening 101g of the door frame base 101, and the through-hole 114b is formed in a position that coincides with the through-hole 101j of the door frame base 101.

[0109] The cylinder mounting frame 115 includes a pair of rear piece parts that are spaced apart left and right and formed in a rectangular flat plate shape extending vertically in a front view, a pair of side piece parts that extend flatly forward from the respective facing sides of the pair of rear piece parts, and a flat front piece part that connects the front edges of the pair of front extending parts. The cylinder mounting frame 115 is formed in a convex shape protruding forward in a plan view. The left rear piece part of the cylinder mounting frame 115 is attached to the right end of the intermediate reinforcing frame 114, and the right rear piece part is attached to the right reinforcing frame 112. The cylinder lock 130 is attached to the front piece part of this cylinder mounting frame 115.

[0110] The hooking member 116 is attached to a portion of the insertion hole that penetrates back and forth on the rear side of the right reinforcing frame 112. The door frame hook 652 of the locking unit 650 is hooked on these hooking members 116.

[0111] The left reinforcing frame 111, the right reinforcing frame 112, the upper reinforcing frame 113, the intermediate reinforcing frame 114, the cylinder mounting frame 115, and the hooking member 116 that constitute the door frame reinforcing unit 110 are formed by punching and bending a metal plate by press forming. These are assembled with rivets.

[0112] In the door frame reinforcing unit 110, the left reinforcing frame 111, the right reinforcing frame 112, and the upper reinforcing frame 113 are assembled along the left side, the right side, and the upper side of the door frame base 101, and the intermediate reinforcing frame 114 is assembled so as to be located below the door window 101a of the door frame base 101.

[0113] The door frame reinforcement unit 110 is attached to the rear side of the door frame base 101 by a plurality of screws (not shown). In a state where the door frame reinforcement unit 110 is attached to the door frame base 101, the notch 114a and the through portion 114b of the intermediate reinforcement frame 114 are aligned with the upper plate ball passage port 101g and the through hole 101j of the door frame base 101, and the cylinder mounting frame 115 is inserted into the cylinder insertion hole 101d of the door frame base 101.

[0114] [3-1f. Upper Door Frame Hinge Assembly] The upper door frame hinge assembly 120 of the door frame base unit 100 will be mainly described with reference to FIGS. 31 to 33. The upper door frame hinge assembly 120 is attached to the upper left corner in the front view of the door frame reinforcement unit 110. The upper door frame hinge assembly 120 is for rotatably attaching the door frame 3 to the main body frame 4 in cooperation with the lower door frame hinge member 125. The upper door frame hinge assembly 120 includes a hinge bracket 121 attached to the door frame reinforcement unit 110, an upper door frame hinge pin 122 movably attached to the hinge bracket 121 in the vertical direction, a flange member 123 attached to the upper door frame hinge pin 122, and a lock spring 124 that biases the upper door frame hinge pin 122 to move upward.

[0115] The hinge bracket 121 includes a flat mounting piece 121a having a rectangular shape in the front view, and flat protruding pieces 121b extending forward from the upper and lower sides of the mounting piece 121a. The hinge bracket 121 has the mounting piece 121a attached to the door frame reinforcement unit 110. The hinge bracket 121 is formed by bending a metal plate.

[0116] The hinge pin 122 on the door frame is a cylindrical metal bar bent into an L shape. In the state where the hinge pin 122 on the door frame is assembled to the hinge assembly 120 on the door frame, the portion extending vertically penetrates from below near the front ends of the pair of protruding pieces 121b in the hinge bracket 121, the upper end extends above the upper protruding piece 121b, and the portion extending horizontally abuts against the lower surface of the lower protruding piece 121b. The upper end of the hinge pin 122 on the door frame is rotatably inserted into the hinge hole 511a for the door frame of the upper hinge body 511 in the hinge member 510 on the main body frame of the main body frame 4.

[0117] The collar member 123 is an E-ring and is attached to the portion between the pair of protruding pieces 121b of the hinge pin 122 on the door frame. The lock spring 124 is formed in a coil shape and is placed around the portion of the hinge pin 122 on the door frame extending vertically between the collar member 123 and the lower protruding piece 121b of the hinge bracket 121. Due to this lock spring 124, the hinge pin 122 on the door frame is biased upward via the collar member 123.

[0118] The hinge assembly 120 on the door frame is in a state where the hinge pin 122 on the door frame is biased upward by the lock spring 124. When the horizontally extending portion at the lower end of the hinge pin 122 on the door frame abuts against the lower surface of the lower protruding piece 121b, further upward movement is restricted. In this state, the upper end of the hinge pin 122 on the door frame protrudes a predetermined amount above the upper surface of the upper protruding piece 121b.

[0119] When the horizontally extending part at the lower end of the hinge pin 122 on the door frame upper hinge assembly 120 is moved downward against the biasing force of the lock spring 124, the hinge pin 122 on the door frame can be moved downward as a whole, and the upper end of the hinge pin 122 on the door frame can be immersed below the upper surface of the upper protruding piece 121b. Therefore, the hinge assembly 120 on the door frame can insert or remove the upper end of the hinge pin 122 on the door frame from the upper hinge hole 511a for the door frame of the hinge member 510 on the main body frame from below. By inserting the upper end of the hinge pin 122 on the door frame into the upper hinge hole 511a for the door frame of the hinge member 510 on the main body frame, the upper left end of the door frame 3 in the front view can be supported by the main body frame 4 so as to be hinge-rotatable.

[0120] Also, in the hinge assembly 120 on the door frame, the vertically extending part of the hinge pin 122 on the door frame is coaxially positioned with the hinge pin 126 on the lower hinge member 125 of the door frame described later. Thereby, the door frame 3 can be hinge-rotated with respect to the main body frame 4 in a good state by the hinge pin 122 on the door frame and the hinge pin 126 on the lower hinge member 125 of the door frame.

[0121] [3-1g. Lower hinge member of door frame] The lower hinge member 125 of the door frame base unit 100 will be mainly described with reference to FIGS. 31 to 33. The lower hinge member 125 of the door frame is attached to the lower left corner of the front view of the door frame reinforcement unit 110. The lower hinge member 125 of the door frame is for attaching the door frame 3 to the main body frame 4 so as to be hinge-rotatable in cooperation with the hinge assembly 120 on the door frame.

[0122] The lower hinge member 125 of the door frame includes a mounting piece 125a which is attached to the door frame reinforcement unit 110 and is flat and square in the front view, a flat protruding piece 125b extending forward from the lower side of the mounting piece 125a, and a lower hinge pin 126 (see FIG. 22 etc.) protruding downward from the lower surface near the front end of the protruding piece 125b.

[0123] The mounting piece 125a and the protruding piece 125b of the lower hinge member 125 of the door frame are formed by bending a metal plate. The lower hinge pin 126 of the door frame is a cylindrical metal rod, and a tapered chamfer is provided on the outer periphery of the lower end portion. This lower hinge pin 126 of the door frame is attached to a portion that is coaxial with the portion extending above and below the upper hinge pin 122 of the upper hinge assembly 120 of the door frame in the protruding piece 125b in a state of being assembled to the door frame base unit 100.

[0124] By inserting this lower hinge pin 126 of the door frame into the lower hinge hole 522a for the door frame of the main body frame lower hinge assembly 520, the door frame 3 can be supported so as to be hinge-rotatable with respect to the main body frame 4.

[0125] [3-1h. Cylinder lock] Regarding the cylinder lock 130 in the door frame base unit 100 of the door frame 3, it will be described in detail mainly with reference to FIGS. 34 to 36. FIG. 34(a) is a perspective view of the cylinder lock of the door frame seen from the front, (b) is a perspective view of the cylinder lock of (a) seen from the back and front, (c) is a perspective view of the cylinder lock in a conventional pachinko machine seen from the front, and (d) is a perspective view of the cylinder lock of (a) seen from the back. FIG. 35(a) is an exploded perspective view of the cylinder lock of FIG. 34(a) seen from the front, and (b) is an exploded perspective view of the cylinder lock of FIG. 34(a) seen from the back. FIG. 36(a) is an explanatory view showing the movable mechanism of the cylinder lock of FIG. 34(a) from the front, (b) is an explanatory view of the cylinder lock shown in a state rotated 90 degrees counterclockwise from the state of (a), and (c) is an explanatory view of the cylinder lock shown in a state rotated 90 degrees clockwise from the state of (a).

[0126] The cylinder lock 130 is attached to the cylinder mounting frame 115 of the door frame reinforcement unit 110 and is used in cooperation with the locking unit 650 of the main body frame 4 to open and close the door frame 3 and the main body frame 4, and to lock and unlock the outer frame 2 and the main body frame 4. The cylinder lock 130 includes a columnar cylinder body 131 extending in the front-rear direction, a keyhole 132 formed on the front end face of the cylinder body 131, and a rotation transmission member 133 provided behind the cylinder body 131 and rotating together when a regular key inserted into the keyhole 132 is rotated.

[0127] The cylinder body 131 of the cylinder lock 130 penetrates the front part of the cylinder mounting frame 115 from the rear, and the rear end is attached to the front part. The rotation transmission member 133 is formed in a cylindrical shape with an open rear (specifically, a conical cylindrical shape with a diameter increasing toward the rear), and has a pair of notches cut from the rear end toward the front at positions facing each other across the central axis. The rotation transmission member 133 is formed such that the transmission cylinder 654 of the locking unit 650 in the main body frame 4 is inserted from the rear, and when a pair of protrusions of the transmission cylinder 654 are inserted into the pair of notches, the rotation of the rotation transmission member 133 (the key inserted into the keyhole 132) can be transmitted to and rotated by the transmission cylinder 654.

[0128] More specifically, the cylinder lock 130 includes a first cam member 134 provided on the rear end side of the cylinder body 131 and rotating together when a regular key inserted into the keyhole 132 is rotated, a second cam member 135 rotatably attached around the axis in the front-rear direction at a position below the cylinder body 131 in the cylinder mounting frame 115, a strip-shaped first arm 136 with the upper end side rotatably attached at a position to the right of the rotation center of the first cam member 134 and the lower end side rotatably attached at a position to the right of the rotation center of the second cam member 135, and a strip-shaped second arm 137 with the upper end side rotatably attached at a position below the rotation center of the first cam member 134 and the lower end side rotatably attached at a position below the rotation center of the second cam member 135.

[0129] In addition, the cylinder tablet 130 is attached to the cylinder mounting frame 115 so as to cover the cylinder body 131, the first cam member 134, the first arm 136, and the second arm 137 from the rear, excluding the second cam member 135 (rotation transmission member 133). It includes a rear cover 138 and rivets 139 that rotatably attach the upper and lower ends of the first arm 136 and the second arm 137 to the first cam member 134 and the second cam member 135, respectively.

[0130] The upper end side of the first arm 136 is attached to the rear surface side of the first cam member 134, and the upper end side of the second arm 137 is attached to the front surface side. The second cam member 135 is rotatably attached to the cylinder mounting frame 115 from the rear side, and a rotation transmission member 133 is integrally rotatably attached to the rear side sandwiching the front surface of the cylinder mounting frame 115. The lower end side of the first arm 136 is attached to the front surface side of the second cam member 135, and the lower end side of the second arm 137 is attached to the front surface side in front of the first arm 136.

[0131] In each of the first cam member 134 and the second cam member 135, the portion where the first arm 136 is attached and the portion where the second arm 137 is attached are separated by an angle of 90 degrees around their respective rotation axes. Also, in each of the first cam member 134 and the second cam member 135, the portion where the first arm 136 is attached is provided at a position farther from the rotation center than the portion where the second arm 137 is attached.

[0132] The rear cover 138 is detachably attached to the cylinder mounting frame 115 by a screw (not shown) at the upper end side, with shaft portions 138a protruding cylindrically outward from the lower ends of both left and right side surfaces locked to the L-shaped locking slits 115b of the cylinder mounting frame 115.

[0133] This cylinder lock 130 is formed of metal, including a cylinder mounting frame 115, a cylinder body 131, a rotation transmission member 133, a first cam member 134, a second cam member 135, a first arm 136, and a second arm 137.

[0134] When the cylinder lock 130 is assembled to the door frame 3, the front end of the cylinder body 131 substantially coincides with the front end of the cylinder insertion port 440b of the door frame right side unit 430.

[0135] Here, the conventional cylinder lock 130A will be described. As shown in FIGS. 34(c) and (d), in the conventional cylinder lock 130A, the cylinder body 131 penetrates the front piece of the cylinder mounting frame 115A from the rear, and the rear end is attached to the front piece. A rotation transmission member 133 is provided on the axis of the cylinder body 131.

[0136] Subsequently, the operation of the cylinder lock 130 of the present embodiment will be described. In the conventional cylinder lock 130, as shown in FIGS. 34(c) and (d), the rotation transmission member 133 is provided on the axis of the cylinder body 131, while in the cylinder lock 130 of the present embodiment, as shown in FIGS. 34(a) and (b), etc., the rotation transmission member 133 is provided at a position separated downward from the axis of the cylinder body 131.

[0137] In the normal state of this cylinder lock 130, as shown in FIG. 36(a), both the upper and lower ends of the first arm 136 are attached to the right side of the respective rotation centers of the first cam member 134 and the second cam member 135, and both the upper and lower ends of the second arm 137 are attached to the lower side of the respective rotation centers of the first cam member 134 and the second cam member 135. In the cylinder body 131, it can be rotated 90 degrees in the clockwise and counterclockwise directions from the normal state by a regular key.

[0138] In this state, when the first cam member 134 is rotated counterclockwise via the cylinder of the cylinder body 131 using a key inserted in the keyhole 132, the first arm 136 and the second arm 137 move upward. At this time, because the upper end side of the first arm 136 is attached to the right of the rotation center of the first cam member 134, a large force acts from the first arm 136 to rotate the second cam member 135 counterclockwise, whereas because the upper end side of the second arm 137 is attached below the rotation center of the first cam member 134, almost no force acts from the second arm 137 to rotate the second cam member 135 counterclockwise.

[0139] In this way, when first cam member 134 rotates counterclockwise from the normal state, force is transmitted mainly via first arm 136, causing second cam member 135 to rotate counterclockwise, and rotation transmission member 133 to rotate together with second cam member 135. The upward force acting due to this counterclockwise rotation of first cam member 134 is proportional to the left-right distance between the positions where first arm 136 and second arm 137 are attached to first cam member 134 and the rotation center of first cam member 134. Therefore, as first cam member 134 rotates counterclockwise from the normal state, the upward force acting on first arm 136 decreases, while the upward force acting on second arm 137 increases.

[0140] Therefore, when first cam member 134 rotates counterclockwise beyond 45 degrees from the normal state, the force acting upward on second arm 137 becomes greater than that on first arm 136, and second cam member 135 rotates counterclockwise mainly via second arm 137. Then, the key inserted in keyhole 132 can be rotated counterclockwise up to an angle of 90 degrees from the normal state (see Figure 36(b)).

[0141] Note that when returning to the normal state by rotating 90 degrees in the clockwise direction from the state where it is rotated 90 degrees counterclockwise by the key, it will operate by the reverse action of the above.

[0142] On the other hand, when the first cam member 134 is rotated in the clockwise direction through the cylinder of the cylinder body 131 by the key inserted into the keyhole 132 from the normal state, the first arm 136 whose upper end side is attached to the right of the rotation center of the first cam member 134 moves downward, and the second arm 137 whose upper end side is attached below the rotation center of the first cam member 134 moves upward. At this time, in the first arm 136, since the upper end side is attached to the right of the rotation center of the first cam member 134, a large force acts to rotate the second cam member 135 in the clockwise direction by the first arm 136. On the other hand, in the second arm 137, since the upper end side is attached below the rotation center of the first cam member 134, almost no force acts to rotate the second cam member 135 in the clockwise direction from the second arm 137.

[0143] In this way, when the first cam member 134 rotates in the clockwise direction from the normal state, the force is mainly transmitted through the first arm 136, the second cam member 135 rotates in the clockwise direction, and the rotation transmission member 133 rotates together with the second cam member 135. The force for transmitting the rotation of the first cam member 134 by the first arm 136 and the second arm 137 to the second cam member 135 is proportional to the horizontal distance between the parts where the first arm 136 and the second arm 137 are attached to the first cam member 134 and the rotation center of the first cam member 134. Therefore, as the first cam member 134 rotates in the clockwise direction from the normal state, the force for rotating the second cam member 135 becomes smaller in the first arm 136, while the force for rotating the second cam member 135 becomes larger in the second arm 137.

[0144] Therefore, when the rotation angle of the first cam member 134 from the normal state in the clockwise direction exceeds 45 degrees, the second arm 137 has a greater force than the first arm 136 to rotate the second cam member 135, and mainly through the second arm 137, the second cam member 135 rotates in the clockwise direction. And the key inserted into the keyhole 132 can be rotated from the normal state up to an angle of 90 degrees in the clockwise direction (see Fig. 36(c)).

[0145] Note that when the key is rotated 90 degrees in the clockwise direction from the state rotated 90 degrees in the clockwise direction from the normal state by the key and then rotated 90 degrees in the clockwise direction to return to the normal state, it will operate by the reverse action of the above.

[0146] Thus, according to the cylinder lock 130 of the present embodiment, the first cam member 134 and the second cam member 135 are connected by the first arm 136 and the second arm 137 attached with a phase difference of 90 degrees from each other to transmit rotation. Therefore, no matter what rotational position the first cam member 134 (the key inserted into the keyhole 132) is in, rotation can be transmitted by at least one of the first arm 136 and the second arm 137 to rotate the second cam member 135 (the rotation transmission member 133), and the locking and unlocking of the door frame 3 and the main body frame 4 can be made good.

[0147] Also, according to the cylinder lock 130 of the present embodiment, by transmitting rotation by the first arm 136 and the second arm 137 as the rotation transmission mechanism, the axis of the rotation transmission member 133 (the transmission cylinder 654 of the locking unit 650 in the main body frame 4) can be provided at different positions with respect to the axis of the cylinder main body 131. Therefore, without changing the locking unit 650, the position of the cylinder main body 131 in the door frame 3 can be changed to an arbitrary position, and the cylinder main body 131 (the keyhole 132) can be provided at a position that does not interfere with the decoration of the door frame 3, and a pachinko machine 1 with high decorativeness of the door frame 3 can be provided.

[0148] Also, as described above, even if the position of the cylinder body 131 is changed in the door frame 3, it is not necessary to change the locking unit 650 in the main body frame 4. Therefore, the locking unit 650 can be diverted, and an increase in the cost of the pachinko machine 1 can be suppressed.

[0149] By the way, in the conventional cylinder lock 130A, since the rotation transmission member 133 is provided behind the cylinder body 131, a person who knows the configuration may insert a tool from the front to the rear of the cylinder body 131 and illegally rotate the rotation transmission member 133 with the tool, thereby opening the door frame 3 and committing an illegal act. On the other hand, in the cylinder lock 130 of the present embodiment, since the rotation transmission member 133 is provided at a position away from the axis (rear) of the cylinder body 131, even if an attempt is made to insert a tool behind the cylinder body 131 and rotate the rotation transmission member 133, since the rotation transmission member 133 does not exist at that part, the rotation transmission member 133 cannot be rotated, and it is possible to prevent an illegal act of opening the door frame 3, the main body frame 4, or the like.

[0150] Furthermore, in the cylinder lock 130, since the second arm 137 connects portions spaced apart by a rotation angle of 90 degrees in the first cam member 134 and the second cam member 135 with respect to the first arm 136, even if the portion of one of the first arm 136 or the second arm 137 attached to the first cam member 134 and the second cam member 135 is located on the straight line connecting the center of the first cam member 134 and the center of the second cam member 135, the other of the first arm 136 or the second arm 137 is in a state of connecting the portions farthest from the straight line connecting the center of the first cam member 134 and the center of the second cam member 135. Therefore, even if the rotation from the first cam member 134 cannot be transmitted to the second cam member 135 because one of the first arm 136 or the second arm 137 is located at the dead center of the first cam member 134 and the second cam member 135, the rotation from the first cam member 134 can be transmitted to the second cam member 135 by the other of the first arm 136 or the second arm 137. Thus, no large resistance is applied to the rotation of the first cam member 134, the key inserted into the keyhole 132 can be smoothly rotated, locking and unlocking can be easily performed, the key inserted into the keyhole can be prevented from being forcibly rotated, and breakage of the key can be prevented.

[0151] Also, since the rotation of the key inserted into the keyhole 132 is transmitted to the rotation transmission member 133 provided at an eccentric position by the two arms of the first arm 136 and the second arm 137, even if one arm is damaged for some reason, the rotation can be transmitted by the remaining arm, and the pachinko machine 1 having a highly reliable cylinder lock 130 can be provided.

[0152] In addition, since the smooth rod-shaped (strip-shaped) first arm 136 and second arm 137 are configured to transmit the rotation of the key inserted into the keyhole 132 to the rotation transmission member 133 provided at an eccentric position, in the case where rotation is transmitted by a gear, there is a risk that the gear may rotate by hooking the tip of a tool on the teeth of the gear and the rotation transmission member 133 may be rotated. However, since the first arm 136 and the second arm 137 are rod-shaped with smooth surfaces, it is possible to make it difficult for the tip of the tool to catch on the first arm 136 or the second arm 137, and it is possible to avoid the rotation transmission member 133 from being rotated due to the movement of the first arm 136 or the second arm 137, and it is possible to surely prevent the locking unit 650 from being illegally operated and the door frame 3 and the main body frame 4 from being unlocked.

[0153] In the cylinder lock 130 of the present embodiment, although the first arm 136 and the second arm 137 are shown as the rotation transmission mechanism for transmitting the rotation of the first cam member 134 to the second cam member 135, the present invention is not limited thereto. For example, a rotation transmission mechanism using a plurality of gears, a rotation transmission mechanism using a gear and a rack gear, a rotation transmission mechanism using a sprocket and a chain, a rotation transmission mechanism using a pulley and a belt, etc. may be used.

[0154] [3-1i. Ball Feeding Unit] The ball feeding unit 140 of the door frame base unit 100 will be described in detail mainly with reference to FIGS. 37 and 38. FIG. 37(a) is a perspective view of the ball feeding unit of the door frame base unit seen from the front, and (b) is a perspective view of the ball feeding unit seen from the rear. FIG. 38(a) is an exploded perspective view of the ball feeding unit seen from the front, and (b) is an exploded perspective view of the ball feeding unit with the rear case and the anti-tampering member removed and seen from the rear. The ball feeding unit 140 can supply the game balls B supplied one by one from the upper tray 201 of the tray unit 200 to the ball launching device 540 of the main body frame 4, and can also remove the game balls B stored in the upper tray 201 to the lower tray 202 by operating the upper tray ball removal button 222.

[0155] The ball feeding unit 140 has a front cover 141 in the shape of a box with an opening at the back, which has an inlet 141a through which the game ball B is supplied from the upper plate 201 of the dish unit 200 and penetrates in the front-rear direction, and a ball outlet 141b that opens below the inlet 141a; a rear cover 142 in the shape of a box that closes the rear end of the front cover 141 and has an opening at the front, and has a hitting ball supply port 142a for supplying the game ball B that has entered from the inlet 141a of the front cover 141, which penetrates in the front-rear direction, to the ball launching device 540; a ball discharging member 143 that is pivotally supported around an axis extending in the front-rear direction between the rear cover 142 and the front cover 141 and has a partition portion 143a that partitions between the inlet 141a and the ball outlet 141b on the rear side of the front cover 141; a ball feeding member 144 that is supported so as to be rotatable around an axis extending in the vertical direction between the front cover 141 and the rear cover 142 and feeds the game balls B on the partition portion 143a of the ball discharging member 143 one by one to the hitting ball supply port 142a of the rear cover 142; and a ball feeding solenoid 145 that rotates the ball feeding member 144.

[0156] As shown in the figure, in the front view of this ball feeding unit 140, the ball feeding member 144 is arranged on the right side of the inlet 141a, the ball discharging member 143 is arranged on the left side of the ball feeding member 144, and the ball feeding solenoid 145 is arranged on the right side of the ball feeding member 144.

[0157] The front cover 141 of the ball feeding unit 140 is provided with an arc-shaped slit 141c formed concentrically with respect to the rotation center of the ball discharging member 143 on the left side of the ball outlet 141b in the front view, and the operating rod 143c of the ball discharging member 143 described later extends forward from this slit 141c. Further, the upper edge of the front cover 141 extends upward from the upper edge of the inlet 141a, and when the door frame 3 is assembled, it is formed so as to close, from the rear side, the part that is open to the rear of the upstream end sides of the ball feeding guide path 241b and the ball discharging guide path 241c of the rear base 241 in the upper plate ball discharging rear unit 240.

[0158] The ball discharging member 143 includes a partition portion 143a that partitions the space between the inlet 141a and the ball discharge port 141b below the inlet 141a and has a partition upper surface that slopes downward toward the ball feeding member 144, a rotating paddle portion 143b that extends downward from the end of the partition portion 143a on the side opposite to the ball feeding member 144, bends in a U-shape from near the middle in the vertical direction toward the lower center of the ball discharge port 141b, and is rotatably supported about an axis with its lower end extending in the front-rear direction, a rod-shaped operating paddle 143c that protrudes forward from the upper end of the rotating paddle portion 143b, and a weight portion 143d that protrudes from the side surface of the rotating paddle portion 143b below the operating paddle 143c to the side opposite to the partition portion 143a. The operating paddle 143c of the ball discharging member 143 is formed to protrude forward through an arc-shaped slit 141c formed in the front cover 141 (see Fig. 37(a)). The operating paddle 143c abuts against the upper end (upper surface) of the operating transmission portion 242b of the upper plate ball discharge slider 242 that moves downward by pressing the upper plate ball discharge button 222 of the dish unit 200 through the ball feeding opening 101e of the door frame base 101.

[0159] The ball feeding member 144 includes a blocking portion 144a that faces the inlet 141a and the partition portion 143a of the ball discharging member 143, extends in the vertical direction, and has a fan-shaped view in plan about a rotation axis, a ball holding portion 144b that is recessed in an arc shape from the rear end of the blocking portion 144a toward the rotation axis side, and a rod-shaped paddle portion 144c that extends downward from the rear end of the ball holding portion 144b. The blocking portion 144a and the ball holding portion 144b in the ball feeding member 144 are formed adjacent to each other within an angular range of approximately 180° about the rotation axis. Also, the ball holding portion 144b of the ball feeding member 144 is sized to hold one game ball B. The ball feeding member 144 rotates about the rotation axis by moving the paddle portion 144c, which is arranged at a position eccentric from the rotation axis, in the left-right direction by driving the ball feeding solenoid 145.

[0160] This ball feeding member 144 is configured to rotate between a supply position in which the blocking portion 144a faces the direction of the partition portion 143a and the ball holding portion 144b faces in a direction communicating with the ball supply port 142a, and a holding position in which the ball holding portion 144b faces the direction of the partition portion 143a. When the ball feeding member 144 is in the supply position, the game ball B held in the ball holding portion 144b is supplied from the ball supply port 142a to the ball launching device 540, and the game ball B that has entered the partition portion 143a from the entrance 141a is prevented from moving toward the ball holding portion 144b (ball supply port 142a) by the blocking portion 144a, and remains on the partition portion 143a. On the other hand, when the ball feeding member 144 rotates to the holding position, the ball holding portion 144b faces the partition portion 143a, and the end portion of the ball holding portion 144b on the shaft portion 144c side closes the ball supply port 142a, and only one game ball B on the partition portion 143a is held in the ball holding portion 144b.

[0161] The ball feeding unit 140 also includes a ball feeding operating rod 146 whose tip swings up and down when driven (energized) by the ball feeding solenoid 145, and a ball feeding crank 147 which rotates around an axis extending in the front-to-back direction due to the movement of the tip of the ball feeding operating rod 146 swinging up and down, and which rotates the ball feeding member 144 around an axis extending in the up and down direction.

[0162] The ball feeding operating rod 146 is provided with an iron plate 146a below the ball feeding solenoid 145. The ball feeding operating rod 146 extends left and right, and its end opposite the ball feeding crank 147 (the right end) is attached to the front cover 141 and the rear cover 142 so that it can rotate around an axis extending forward and backward. When the ball feeding solenoid 145 is driven, the generated magnetic force pulls the iron plate 146a toward the ball feeding solenoid 145 (upward), causing the ball feeding operating rod 146 to rotate around the right end so that the left end closest to the ball feeding crank 147 moves upward. Thereafter, when the ball feeding solenoid 145 is deactivated, the magnetic force disappears, causing the weight of the iron plate 146a to rotate around the right end so that the left end closest to the ball feeding crank 147 moves downward, returning the rod to its original position. As a result, the ball feeding operating rod 146 is caused to swing up and down at its left end (tip) near the ball feeding crank 147 by the ball feeding solenoid 145.

[0163] The ball feeding crank 147 comprises an engagement portion 147a extending in the left-right direction and capable of engaging with the up-and-down moving tip of the ball feeding operating rod 146, an axle portion 147b positioned on the opposite side of the engagement portion 147a engaging with the ball feeding operating rod 146 and rotatably supported around an axis extending in the front-to-back direction between the front cover 141 and the rear cover 142, and a transmission portion 147c extending upward from the axle portion 147b and engaging with a rod-shaped rod portion 144c (see Figure 38(b)) protruding downward from a position eccentric to the rotation center of the ball feeding member 144.

[0164] This ball feeding unit 140 can rotate the ball feeding crank 147 around an axis extending forward and backward via the ball feeding operating rod 146 by moving the tip (left end) of the ball feeding operating rod 146 upward by driving the ball feeding solenoid 145.

[0165] When the ball feeding unit 140 is not driven by the ball feeding solenoid 145 (normal state), the ball feeding operating lever 146 is separated from the lower end of the ball feeding solenoid 145 and the tip is positioned downward. In this state, the ball feeding member 144 is in the supply position. Also, when the ball feeding solenoid 145 is driven, the ball feeding operating lever 146 is attracted to the lower end of the ball feeding solenoid 145 and the tip (left end) is positioned upward, and the ball feeding member 144 rotates to the holding position. That is, when the ball feeding solenoid 145 is driven (ON state), the ball feeding member 144 receives one game ball B, and when the drive of the ball feeding solenoid 145 is released (OFF state), the game ball B received by the ball feeding member 144 can be sent (supplied) to the ball launching device 540 side. The drive of the ball feeding solenoid 145 in this ball feeding unit 140 is controlled in synchronization with the drive control of the launching solenoid 542 by the launching control unit 633b (see FIG. 203) of the payout control board 633.

[0166] Also, the ball feeding unit 140 is pivotally supported so that a moment is applied to the ball removal member 143 to rotate it counterclockwise in a front view by the weight portion 143d. However, since the operating lever 143c protruding forward of the ball removal member 143 abuts on the upper end of the operation transmission portion 242b of the upper plate ball removal slider 242 which operates by the pressing operation of the upper plate ball removal button 222 of the dish unit 200, its rotation is restricted. Therefore, in the normal state, the partition portion 143a of the ball removal member 143 is positioned between the inlet 141a and the ball removal port 141b to partition, and the game ball B does not enter the ball removal port 141b side.

[0167] When the player presses the upper tray ball removal button 222 of the tray unit 200 downward, the upper tray ball removal slider 242 slides downward together with the operation transmission part 242b, and as the operation transmission part 242b moves downward, the operation rod 143c also moves downward relatively. When the operation rod 143c moves downward together with the operation transmission part 242b, the ball removal member 143 rotates counterclockwise when viewed from the front, and the partition part 143a moves from between the entrance 141a and the ball removal opening 141b, releasing the partition. As a result, the game ball B that entered through the entrance 141a falls toward the ball removal opening 141b, and is discharged from the ball removal opening 141b into the ball removal guide path 241c of the upper tray ball removal unit 240 in the tray unit 200, and can be discharged (supplied) to the lower tray 202 via the lower tray ball supply opening 211c.

[0168] Furthermore, the upper tray ball removal slider 242, which has an operating transmission part 242b that contacts the operating rod 143c of the ball removal member 143, is biased upward by a spring, so that even if a game ball B is supplied forcefully onto the partition part 143a, the impact can be absorbed by the spring via the operating rod 143c, preventing damage to the ball removal member 143 etc. and preventing the game ball B from bouncing off the partition part 143a.

[0169] Furthermore, ball feeding unit 140 has a rectangular mounting recess 142b (see Figure 38(b), etc.) recessed forward at the upper right when viewed from behind ball supply port 142a in rear cover 142, and anti-tampering member 148 is attached to mounting recess 142b. Anti-tampering member 148 of ball feeding unit 140 is formed from a hard metal plate such as tool steel or stainless steel, and is attached to mounting recess 142b of rear cover 142 from the rear side so as to be detachable.

[0170] The anti-tamper element 148 has a rectangular shape extending laterally in front view. It includes an upper piece 148a and a lower piece 148b, which are separated vertically at approximately the center in the vertical direction a predetermined distance to the left of the right edge, and inclined portions 148c, each formed in a C-chamfered shape at the tip end (right end in front view) of the opposing edges of the upper piece 148a and the lower piece 148b. The upper piece 148a of the anti-tamper element 148 is bent relative to the general surface of the anti-tamper element 148 so that its right end in front view protrudes rearward. The lower piece 148b extends on the same plane as the general surface of the anti-tamper element 148. As a result, the upper piece 148a and the lower piece 148b form a V-shaped groove that widens toward the right in plan view.

[0171] When the tamper-proof member 148 is attached to the attachment recess 142b of the rear cover 142, the V-shaped groove formed by the upper piece 148a and the lower piece 148b is in communication with the inside of the ball supply port 142a.

[0172] According to this fraud prevention member 148, when a fraudulent game ball B with a string attached is shot into the game area 5a from the upper tray via the ball feeding unit 140 by the ball launching device 540, and the string attached to the fraudulent game ball B is manipulated to move the fraudulent game ball B into or out of the first lower starting port 2003 or the first upper starting port 2004, etc., the momentum of the fraudulent game ball B shot (shot) by the ball launching device 540 causes the string attached to the fraudulent game ball B to be inserted between the upper piece 148a and the lower piece 148b, and then the string can be cut by the narrow V-shaped portion formed by the upper piece 148a and the lower piece 148b, thereby preventing fraudulent activities using fraudulent game balls B with a string attached.

[0173] [3-1j. Foul Cover Unit] The far cover unit 150 of the door frame base unit 100 will be described in detail mainly with reference to FIGS. 39 and 40. FIG. 39(a) is a perspective view of the far cover unit of the door frame base unit as viewed from the front, and (b) is a perspective view of the far cover unit as viewed from the back. Further, FIG. 40 is a front view of the far cover unit with the lid member removed. The far cover unit 150 is attached to the right side in the rear view at the lower part on the rear side of the door frame base 101. The far cover unit 150 guides the game ball B (far ball) that has been launched by the ball launching device 540 and has not reached the game area 5a of the game board 5 to the lower dish 202, and also guides the game ball B paid out from the payout device 580 to the upper dish 201 or the lower dish 202. As shown in the figure, the far cover unit 150 includes a shallow box-shaped unit body 151 attached to the rear side of the door frame base 101 with the front side open, and a flat lid member 152 attached to the front surface of the unit body 151.

[0174] The far cover unit 150 has a through ball passage 150a that penetrates in the front-rear direction at the upper left corner in the front view and communicates the lower normal payout passage 610a of the lower full ball path unit 610 of the main body frame 4 with the upper dish ball supply port 211a of the dish unit 200, and a full ball receiving port 150b that opens rearward on the lower right side in the front view of the through ball passage 150a and can communicate with the lower full payout passage 610b of the lower full ball path unit 610 of the main body frame 4.

[0175] In addition, the far cover unit 150 has a far ball receiving port 150c that opens upward on the right side in the front view of the full ball receiving port 150b and receives the game ball B (far ball) that has not reached the game area 5a despite being launched by the ball launching device 540 of the main body frame 4, and a ball discharge port 150d that opens forward near the lower right corner in the front view, discharges the game ball B received by the full ball receiving port 150b and the far ball receiving port 150c forward, and communicates with the lower dish ball supply port 211c of the dish unit 200.

[0176] Furthermore, the foul cover unit 150 is provided with a storage passage 150e formed by the unit body 151 and the lid member 152 between the full ball receiving port 150b, the foul ball receiving port 150c and the ball discharge port 150d, and having a width large enough to store a predetermined amount of game balls B.

[0177] The through ball passage 150a is formed across both the unit body 151 and the lid member 152. The full ball receiving port 150b and the foul ball receiving port 150c are formed in the unit body 151. The ball discharge port 150d is formed in the lid member 152. The storage passage 150e is formed by the unit body 151 and the lid member 152.

[0178] The fall cover unit 150 also includes a flat movable piece 153 that forms part of the inner wall of the storage passage 150e and whose lower end is rotatably attached to the unit body 151 and the cover member 152, a full tank detection sensor 154 that detects the rotation of the movable piece 153 in a direction away from the storage passage 150e, and a spring 155 that urges the movable piece 153 toward the storage passage 150e.

[0179] When the lower tray 202 of the tray unit 200 is filled with game balls B and game balls B are no longer released toward the lower tray 202 from the ball release port 150d, this foul cover unit 150 can store a certain number of game balls B in the storage passage 150e. Then, when a certain number of game balls B are stored in the storage passage 150e, the weight of the game balls B causes the movable piece 153 to rotate so that the upper end of the movable piece 153 moves away from the storage passage 150e against the biasing force of the spring 155, and this rotation is detected by the full tank detection sensor 154. This makes it possible to determine that the lower tray 202 is full of game balls B, so when the full tank detection sensor 154 detects that the lower tray 202 is full, the payout of any more game balls B is stopped and a notification to that effect is sent to the player, a game hall attendant, or the like, to urge them to unclog the lower tray 202.

[0180] Further, the fur cover unit 150 is attached below the through ball passage 150a on the rear side of the unit body 151, and includes a door opening / closing contact portion 150f with which an operating projection 613a of a discharge passage opening / closing door 613 of a lower full ball path unit 610 in a discharge unit 560 (to be described later) of the main body frame 4 can come into contact (see FIG. 90). The door opening / closing contact portion 150f is inclined such that the rear surface moves forward as it goes downward. When the operating projection 613a of the discharge passage opening / closing door 613 comes into contact with the door opening / closing contact portion 150f, the discharge passage opening / closing door 613 can be rotated to open the downstream ends (front openings) of the lower normal discharge passage 610a and the lower full ball discharge passage 610b.

[0181] [3-2. Glass Unit] The glass unit 160 in the door frame 3 will be described in detail mainly with reference to FIGS. 29 and 30 and the like. The glass unit 160 is detachably attached by being inserted into a glass unit attachment portion 101h from the rear so as to close a door window 101a of a door frame base 101 in a door frame base unit 100. When the door frame 3 is closed with respect to the main body frame 4, the glass unit 160 allows the game area 5a of the game board 5 attached to the main body frame 4 to be visible from the player side (front), and closes the front of the game area 5a.

[0182] The glass unit 160 includes a frame-shaped glass frame 161 that is larger than the inner peripheral shape of the door window 101a of the door frame base 101 and can be attached to the glass unit attachment portion 101h, two transparent glass plates 162 that close the inside of the glass frame 161 and have an outer periphery attached to the glass frame 161, and a pair of glass unit attachment members 163 that are rotatably attached to the rear side of the door frame base 101 in the door frame base unit 100 and attach the glass frame 161 to the door frame base 101.

[0183] The glass frame 161 has a pair of mounting pieces 161a that extend outward in a flat plate shape from positions below the upper corners on the left and right when viewed from the front, and a strip-shaped locking piece 161b that protrudes downward from the lower end and extends along the lower side. The mounting piece 161a of the glass frame 161 is capable of abutting against the protruding portion 163b of the glass unit mounting member 163. The locking piece 161b can be inserted into the space between the door frame base 101 and the intermediate reinforcing frame 114 of the door frame reinforcing unit 110 (see Fig. 96). The two glass plates 162 are respectively attached to the front end side and the rear end side of the glass frame 161, and are spaced apart front and rear so that a space is formed between them (see Fig. 96).

[0184] The glass unit mounting member 163 has a disk-shaped base 163a that is rotatably mounted around an axis extending back and forth on the rear side of the door frame base 101, and a protruding portion 163b that protrudes in a rod shape in a direction perpendicular to the axis of rotation from the base 163a. The glass unit mounting member 163 is rotatably mounted on the outside of the upper two corners among the four corners of the door window 101a on the rear surface of the door frame base 101, respectively.

[0185] To attach the glass unit 160 to the door frame base 101, first, rotate the glass unit mounting member 163 attached to the door frame base 101 so that the protruding portion 163b is positioned above the base 163a. Then, from the rear side of the door frame base 101, insert the locking piece 161b of the glass frame 161 of the glass unit 160 upward into the gap between the door frame base 101 and the intermediate reinforcing frame 114 of the door frame reinforcing unit 110, and then bring the front end of the glass frame 161 into contact with the rear surface of the glass unit mounting portion 101h of the door frame base 101. After that, rotate the glass unit mounting member 163 so that the protruding portion 163b is positioned below the base 163a, and bring the protruding portion 163b into contact with the rear surface of the mounting piece 161a of the glass frame 161. Thereby, the glass unit 160 is attached to the door frame base 101.

[0186] When removing the glass unit 160 from the door frame base 101, it can be removed by the reverse procedure of the above. Thus, the glass unit 160 is detachable from the door frame base 101 (door frame base unit 100).

[0187] In the glass unit 160, when the protruding portion 163b of the glass unit attachment member 163 is in the rotational position where it is located below the base portion 163a, the protruding portion 163b restricts the backward movement of the glass frame 161. Therefore, even if vibration or the like acts on the glass unit attachment member 163, the protruding portion 163b does not rotate to a position where it is above the base portion 163a. Accordingly, the restriction on the backward movement of the glass frame 161 is not naturally released, and the glass unit 160 does not naturally come off from the door frame base 101.

[0188] [3-3. Anti-theft cover] The anti-theft cover 170 on the door frame 3 will be described in detail mainly with reference to FIGS. 29 and 30 and the like. The anti-theft cover 170 is attached to the rear side of the door frame base unit 100 so as to cover the lower rear surface of the glass unit 160 and is formed of a transparent synthetic resin. The anti-theft cover 170 includes a flat main body portion 171 having an outer periphery formed in a predetermined shape, a flat rear protruding piece 172 protruding rearward along the outer peripheral edge of the main body portion 171, and a pair of locking pieces 173 spaced apart left and right and protruding forward from the main body portion 171 and capable of being locked to the rear side of the door frame base 101.

[0189] The main body portion 171 of the anti-theft cover 170 is formed such that its lower end protrudes below the lower end of the glass unit 160 when attached to the door frame base unit 100. Also, the upper end of the main body portion 171 is formed in a shape along the lower end of the game area 5a on the game board 5 when assembled to the pachinko machine 1. More specifically, the upper end of the main body portion 171 is formed in a shape along a part of the inner rail 1002 of the front constituent member 1000 to be described later, the out guide portion 1003, a part of the lower right rail 1004, and the right rail 1005, and is formed so as not to protrude into the game area 5a when assembled to the pachinko machine 1.

[0190] The rear projection 172 is formed along substantially the entire outer peripheral edge of the main body portion 171. Accordingly, the security cover 170 is formed in a shallow box shape that is open to the rear by the main body portion 171 and the rear projection 172, and has high strength and rigidity. Further, the rear projection 172 also projects rearward from a part of the rear surface of the main body portion 171 that is different from the outer peripheral edge of the main body portion 171. The rear projection 172 that projects rearward from a part of the rear surface of the main body portion 171 is formed so as to be along a part of the outer rail 1001 in the front constituent member 1000 of the game board 5 in a state of being assembled to the pachinko machine 1.

[0191] Note that the rear projection 172 is not formed at a portion located between the outer rail 1001 and the inner rail 1002 in the game board 5 in a state of being assembled to the pachinko machine 1. Thereby, the game ball B (the game ball B launched by the ball launching device 540) passing between the outer rail 1001 and the inner rail 1002 does not contact the rear projection 172 of the security cover 170, and does not hinder the entry of the game ball B into the game area 5a.

[0192] The pair of locking pieces 173 are elastically locked to the rear side of the door frame base unit 100 (the speaker duct 103 and the cable cover 109). Thereby, the security cover 170 can be easily attached to and detached from the door frame base unit 100.

[0193] When the anti-theft cover 170 is assembled to the pachinko machine 1, the front surface of the main body 171 abuts against the rear surface (the rear end of the glass frame 161) of the glass unit 160, and the rear protruding piece 172, excluding the part protruding rearward from the lower side of the main body 171, is inserted into the anti-theft recess 1009 of the front constituent member 1000. Further, the anti-theft cover 170 is in a state where the rear protruding piece 172 protruding rearward from the lower side of the main body 171 protrudes rearward from the front surface of the front constituent member 1000 so as to be in contact with the lower surface of the front constituent member 1000. As a result, the space between the anti-theft cover 170 and the game board 5 (front constituent member 1000) is in a complex bent state due to the rear protruding piece 172 of the anti-theft cover 170 and the anti-theft recess 1009 of the front constituent member 1000. Therefore, even if an illegal tool such as a piano wire tries to enter the game area 5a through the space between the anti-theft cover 170 and the front constituent member 1000 from below the front surface of the game board 5, it will be blocked by the rear protruding piece 172 and the anti-theft recess 1009, and the entry of illegal tools into the game area 5a can be prevented.

[0194] [3-4. Handle Unit and Handle Cover Unit] The handle unit 180 and the handle cover unit 290 in the door frame 3 will be described in detail mainly with reference to FIGS. 41 to 47 and the like. FIG. 41(a) is an enlarged front view showing the parts of the handle unit and the handle cover unit in the door frame, and (b) is an enlarged perspective view showing the parts of the handle unit and the handle cover unit in the door frame. FIG. 42 is an exploded perspective view of the handle cover unit as seen from the front after disassembly, and FIG. 43 is an exploded perspective view of the handle cover unit as seen from the rear after disassembly. FIG. 44 is an exploded perspective view of the handle unit as seen from the front after disassembly, and FIG. 45 is an exploded perspective view of the handle unit as seen from the rear after disassembly. FIG. 46 is a cross-sectional view taken along the line A-A in FIG. 41(a). FIG. 47 is a cross-sectional view taken along the line A-A in FIG. 1. Note that in FIG. 46, it is a cross-sectional view of only the door frame 3 with the outer frame 2 and the main body frame 4 omitted.

[0195] The handle unit 180 of the present embodiment is attached to the door frame base unit 100 and the dish unit 200 together with the handle cover unit 290 that covers the outer periphery. By being operated by a player, the game ball B in the upper dish 201 can be driven into the game area 5a of the game board 5.

[0196] First, the handle unit 180 will be described. The handle unit 180 includes a handle base 181 whose rear end is attached to the handle mounting seat surface 101b of the door frame base 101 via a handle cover base 291 of the handle cover unit 290 to be described later, a handle 195 rotatably attached to the front end of the handle base 181, a plurality of handle guides 196 attached to the rear side of the handle 195 and guided by the handle cover base 291 to be described later, a disk-shaped cover base seat 183 attached to the handle base 181 so as to cover the center of the front end side of the handle 195, a handle decorative substrate 184 attached to the front side of the cover base seat 183 and having a plurality of LEDs 184a mounted on the front surface, and a handle front lens 185 attached to the cover base seat 183 so as to cover the front side of the handle decorative substrate 184.

[0197] The handle unit 180 further includes an inner base 186 attached to the front surface of the handle base 181 on the rear side of the handle 195, a shaft member 187 having a drive gear portion 187a on the outer periphery and rotatably attached with the handle 195 at the front end and rotatably attached by the inner base 186 and the handle base 181, a transmission gear 188 meshing with the drive gear portion 187a of the shaft member 187, and a handle rotation detection sensor 189 having a detection shaft 189a that rotates integrally with the transmission gear 188 and is sandwiched between the handle base 181 and the inner base 186.

[0198] Furthermore, the handle unit 180 includes a handle return spring 190 having one end attached to the handle base 181 and the other end attached to the handle 195, which biases the handle 195 to return to the initial rotation position (the rotation end in the counterclockwise direction in a front view), and an auxiliary spring 191 having one end attached to the inner base 186 and the other end attached to the transmission gear 188, which biases the detection shaft 189a of the handle rotation detection sensor 189 in the clockwise direction in a front view via the transmission gear 188.

[0199] In addition, the handle unit 180 includes a handle touch sensor 192 attached to the handle base 181 behind the inner base 186, a single-shot button 193 having a tip protruding outward from the left side in a front view of the outer peripheral surface of the front end of the handle base 181 and a base end rotatably attached around an axis extending back and forth to the handle base 181 behind the inner base 186, and a single-shot button operation sensor 194 attached to the handle base 181 for detecting a pressing operation of the single-shot button 193.

[0200] The handle base 181 of the handle unit 180 includes a cylindrical base portion 181a extending back and forth, a disk-shaped front end portion 181b protruding radially from the front end of the base portion 181a, and groove portions 181c recessed from the outer peripheral surface of the cylindrical base portion 181a, extending in the axial direction, and formed at three unequal intervals in the circumferential direction. The outer diameter of the base portion 181a of the handle base 181 is slightly smaller than the inner diameter of the rear cylindrical portion 291c of the handle cover base 291 in the handle cover unit 290. Further, the three groove portions 181c are formed at positions corresponding to the three protrusions 291d of the handle cover base 291 described later. Therefore, with the three groove portions 181c aligned with the three protrusions 291d, the base portion 181a can be inserted into the rear cylindrical portion 291c of the handle cover base 291, and when the protrusions 291d are inserted into the three groove portions 181c respectively, the handle base 181 becomes non-rotatable relative to the handle cover base 291.

[0201] Handle 195 includes a disk-shaped central hub portion 195a, a plurality of (three in this example) spoke portions 195b extending radially outward at intervals in the circumferential direction from central hub portion 195a, an annular outer ring portion 195c connecting the tips of the plurality of spoke portions 195b, two slits 195d extending in an arc about the rotation axis (shaft member 187) and penetrating central hub portion 195a in the front-to-rear direction, and a locking protrusion 195e protruding rearward from a position more inward than slits 195d with respect to the center of rotation and for locking the other end of handle return spring 190. The outer diameter of central hub portion 195a is approximately the same as the outer diameter of the general outer surface of the handle of a conventional pachinko machine.

[0202] When the handle 195 is in a free state (not rotating), one spoke 195b extends horizontally to the left from the central hub portion 195a, and two spokes 195b extend clockwise and counterclockwise from positions at angles of 120 degrees each. The three spokes 195b extend to such lengths that a gap is formed between the central hub portion 195a and the outer peripheral ring portion 195c into which a player's fingers can be inserted.

[0203] The outer circumferential ring portion 195c of the handle 195 is provided coaxially with the center of the central hub portion 195a. The outer circumferential ring portion 195c is formed in an annular shape with a constant cross-sectional shape with the U-shaped curved side facing forward.

[0204] The handle 195 is formed to be entirely translucent, and is partially plated with an electrically continuous plating from the central hub portion 195a to the outer circumferential ring portion 195c. This allows the handle touch sensor 192 to detect touches to the handle 195 even when only the outer circumferential ring portion 195c is touched. Therefore, the game ball B can be driven in by turning the outer circumferential ring portion 195c.

[0205] The handle guide 196 has a U-shaped guide portion 196a that opens toward the center side of the handle 195, and a flat mounting stay 196b that extends from the front end of the guide portion 196a toward the center side. The three handle guides 196 are attached to the rear side of the spoke portion 195b of the handle 195 such that the guide portion 196a is located behind the outer peripheral ring portion 195c of the handle 195. The handle guide 196 has its movement in the front-rear direction restricted by inserting a guide piece 291g of a handle cover base 291, which will be described later, into the inside of the guide portion 196a.

[0206] The cover pedestal 183 is formed in a disk shape with a smaller diameter than the outer diameter of the central hub portion 195a of the handle 195, and includes three mounting bosses 183a that project rearward from the rear surface. The three mounting bosses 183a penetrate the slit 195d of the handle 195 from the front and are attached to the front surface of the handle base 181. Since the mounting bosses 183a of the cover pedestal 183 penetrate the slit 195d of the handle 195, the mounting bosses 183a come into contact with the circumferential ends of the slit 195d, restricting the rotation angle of the handle 195. In this example, the handle 195 can be rotated within a range of a rotation angle of about 120 degrees.

[0207] A total of 10 LEDs 184a (full-color LEDs), including 1 at the center, 3 at regular intervals in the circumferential direction on the intermediate circumference, and 6 at regular intervals in the circumferential direction along the outer periphery, are mounted on the handle decorative substrate 184 in a triple concentric circle pattern. These LEDs 184a are divided into 5 groups: 1 at the center, 3 in the middle, 2 in the upper left on the outer periphery, 2 in the upper right on the outer periphery, and 2 in the lower side on the outer periphery (see FIG. 72). A 24-bit LED driver 184b having a unique address for causing each LED 184a to emit light is mounted on this handle decorative substrate 184. This LED driver 184b can control up to 24 channels at most, and controls a total of 15 channels in 3 channels per group so that the 10 LEDs 184a divided into 5 groups can each emit light in full color.

[0208] Although not shown, a wiring cable consisting of four electric wires is connected to this handle decorative substrate 184. The four electric wires include two power lines (one is a ground line) for supplying power to drive the LED 184a and the LED driver 184b, one control signal line for receiving signals such as commands and addresses from the peripheral control board 1510, and one clock line for synchronizing the LED driver 184b with the peripheral control board 1510. When the LED driver 184b on this handle decorative substrate 184 receives a command addressed to it via the control signal line from the peripheral control board 1510 (the effect control board), it can cause the ten LEDs 184a divided into five groups to emit light in appropriate colors and intensities for each group according to the command.

[0209] As described above, since this handle decorative substrate 184 has the LED driver 184b, the light emission of a larger number of LEDs 184a than the number of electric wires constituting the connected wiring cable can be controlled individually (here, for each group). Therefore, the number of electric wires can be reduced, and the configuration related to the electrical wiring can be simplified.

[0210] The handle front lens 185 has a front surface that bulges roundly forward and has translucency. The handle front lens 185 is provided inside with a lens member three-dimensionally formed of a transparent member. The handle front lens 185 can be decoratively illuminated by appropriately illuminating the LEDs on the front surface of the handle decorative substrate 184.

[0211] The steering wheel rotation detection sensor 189 is a variable resistor. When the steering wheel 195 is rotated, the detection shaft 189a of the steering wheel rotation detection sensor 189 rotates via the shaft member 187 and the transmission gear 188. The internal resistance of the steering wheel rotation detection sensor 189 changes according to the rotation angle of this detection shaft 189a. Therefore, when the steering wheel 195 is rotated to change the internal resistance of the steering wheel rotation detection sensor 189, the driving force of the firing solenoid 542 in the ball firing device 540 described later changes according to the internal resistance, and the game ball B can be driven into the game area 5a with a strength corresponding to the rotation angle of the steering wheel 195.

[0212] The steering wheel touch sensor 192 detects static electricity acting on the steering wheel unit 180. When the player touches the steering wheel 195, it detects the static electricity acting from the player and detects the contact of the player with the steering wheel 195. Then, when the steering wheel 195 is rotated while the steering wheel touch sensor 192 is detecting the player's contact, the detection of the steering wheel rotation detection sensor 189 is accepted, and the driving of the firing solenoid 542 is controlled with a strength corresponding to the rotation angle of the steering wheel 195, so that the game ball B can be driven in.

[0213] Therefore, even if the player tries to rotate the steering wheel 195 by some means without touching the steering wheel 195 and drive the game ball B into the game area 5a, since the steering wheel touch sensor 192 does not detect the player's contact, the firing solenoid 542 is not driven and the game ball B cannot be driven in. Thereby, it is possible to prevent the game from being played by rotating the steering wheel 195 in a way different from the original, and it is possible to reduce the load (burden) on the game hall where the pachinko machine 1 is installed.

[0214] The single-shot button operation sensor 194 detects the pressing operation of the single-shot button 193 by the player. When this single-shot button operation sensor 194 detects the operation of the single-shot button 193, the driving of the firing solenoid 542 is stopped by the firing control unit 633b of the payout control board 633. Therefore, when the player presses the single-shot button 193 during the rotation operation of the handle 195, the firing of the game ball B can be temporarily stopped without returning the rotation operation of the handle 195, and by releasing the pressing operation of the single-shot button 193, the game ball B can be re-driven into the game area 5a with the driving strength before operating the single-shot button 193.

[0215] Next, the handle cover unit 290 will be described. The handle cover unit 290 includes a handle cover base 291 that covers the outer periphery of the handle 195 in the handle unit 180 behind the handle 195, and the rear end of which is attached to the handle mounting seat surface 101b of the door frame base 101, an inner 292 that covers the outer periphery of the handle cover base 291, and the rear end of which is attached to the dish unit main body 252 of the dish unit 200, an annular handle cover decorative substrate 293 that is provided on the front side of the inner 292 and has a plurality of LEDs 293a mounted on the front surface thereof, an annular substrate cover 294 that covers the handle cover decorative substrate 293 from the front, and a handle cover 295 that covers the outer periphery of the inner 292 and the rear end of which is attached to the dish unit main body 252 of the dish unit 200.

[0216] The handle cover base 291 includes a cylindrical front cylinder portion 291a that extends back and forth with an inner diameter substantially the same as the inner diameter of the outer peripheral ring portion 195c of the handle 195, a middle wall portion 291b that extends such that the inner diameter decreases as it goes forward from the rear end of the front cylinder portion 291a, a cylindrical rear cylinder portion 291c that extends back and forth with an inner diameter through which the base portion 181a of the handle base 181 can be inserted and that penetrates the middle wall portion 291b, and a plurality (here, three) of protrusions 291d that protrude inward from the inner periphery of the rear cylinder portion 291c and extend back and forth and are provided at positions corresponding to the groove portion 181c of the handle base 181 in the circumferential direction.

[0217] Further, the handle cover base 291 includes a flange portion 291e that extends outward from a portion on the rear side of the front end of the outer periphery of the front cylinder portion 291a, a cylindrical outer cylinder portion 291f that protrudes forward from a position in the middle of the flange portion 291e to the same position as the front end of the front cylinder portion 291a, a guide piece 291g that protrudes outward from the front cylinder portion 291a at a portion between the front end of the front cylinder portion 291a and the flange portion 291e, and an opening 291h that penetrates the lower portion of the front cylinder portion 291a.

[0218] The middle wall portion 291b of the handle cover base 291 extends in an arc shape with a cross-section bulging outward from the rear end of the front cylinder portion 291a to the vicinity of the center in the front-rear direction. The rear cylinder portion 291c has its rear end attached to the handle mounting seat surface 101b of the door frame base 101. The rear cylinder portion 291c is formed to have the same length as the base portion 181a of the handle base 181, and the base portion 181a of the handle base 181 is inserted therein. The three ridges 291d correspond to the three groove portions 181c of the handle base 181, and by being inserted into the groove portions 181c, the handle base 181 can be made non-rotatable relative to the handle cover base 291. The outer cylinder portion 291f extends forward from a position outside the radial center of the flange portion 291e. In this handle cover base 291, a plurality of triangular ribs are provided in the circumferential direction so as to connect the front surface of the flange portion 291e and the outer peripheral surface of the outer cylinder portion 291f.

[0219] The guide piece 291g protrudes from the outer periphery of the front cylinder portion 291a from the center between the outer periphery of the front cylinder portion 291a and the inner periphery of the outer cylinder portion 291f to a position closer to the front cylinder portion 291a. The guide piece 291g extends in the circumferential direction with a length in a range of about 110 degrees, and three guide pieces 291g are provided in the circumferential direction at intervals of 10 degrees. By inserting the rear end side of the guide portion 196a of the handle guide 196 in the handle unit 180 behind the guide piece 291g through between the guide pieces 291g and rotating the handle 195, the guide piece 291g can be positioned within the U-shaped guide portion 196a, and the movement of the guide portion 196a (handle 195) in the front-rear direction can be restricted.

[0220] The opening 291h has a length in the front-rear direction from the rear end of the front cylinder portion 291a to the vicinity of the flange portion 291e, and a size in the circumferential direction within an angular range of approximately 90 degrees, and penetrates the front cylinder portion 291a.

[0221] The inner 292 has an annular base portion 292a with an inner diameter slightly larger than the outer diameter of the front cylinder portion 291a of the handle cover base 291 and an outer diameter larger than the flange portion 291e, a leg portion 292b extending rearward from the outer peripheral edge of the base portion 292a, and a plurality (here, four) of notches 292c that are cut out from the rear end of the leg portion 292b to the vicinity of the base portion 292a and are provided at intervals in the circumferential direction. The base portion 292a has the front cylinder portion 291a of the handle cover base 291 inserted therein from the front and is located behind the flange portion 291e. The leg portion 292b extends in a curved shape that bulges outward, and the rear end is attached to the dish unit body 252 of the dish unit 200. The notches 292c are provided at the upper and lower parts and the left and right parts of the leg portion 292b, respectively.

[0222] The handle cover decorative substrate 293 is formed in an annular shape with an inner diameter slightly larger than the outer diameter of the front cylinder portion 291a of the handle cover base 291 and the same outer diameter as the flange portion 291e. The handle cover decorative substrate 293 has 12 LEDs 293a and an LED driver 293b having a unique address for causing each LED 293a to emit light mounted thereon. The 12 LEDs 293a (full-color LEDs) are provided in a row at intervals in the circumferential direction. These 12 LEDs 293a are divided into 6 groups: 2 at the lower left from the center, 2 on the left side, 2 at the upper left, 2 at the upper right, 2 on the right side, and 2 at the lower right (see Fig. 72). The LED driver 293b can control up to 24 channels, and controls 10 LEDs 293a divided into 6 groups in full color, with a total of 18 channels for 3 channels per group.

[0223] Although not shown in the drawings, a wiring cable consisting of four electric wires is connected to this handle cover decorative substrate 293. The four electric wires include two power lines (one of which is a ground line) for supplying power to drive the LED 293a and the LED driver 293b, one control signal line for receiving signals such as commands and addresses from the peripheral control substrate 1510, and one clock line for synchronizing the LED driver 293b with the peripheral control substrate 1510. In the LED driver 293b of this handle cover decorative substrate 293, when a command addressed to the relevant address is received from the peripheral control substrate 1510 (the effect control substrate) via the control signal line, the 12 LEDs 293a divided into 6 groups can be caused to emit light in appropriate colors and intensities for each group according to the command.

[0224] The substrate cover 294 has an annular front plate portion 294a with an inner diameter slightly larger than the outer diameter of the front cylinder portion 291a of the handle cover base 291 and substantially the same outer diameter as the outer diameter of the base portion 292a of the inner 292, and a cylindrical side plate portion 294b whose outer peripheral edge of the front plate portion 294a extends rearward for a short distance. In this substrate cover 294, the front plate portion 294a is positioned between the flange portion 291e of the handle cover base 291 and the handle cover decorative substrate 293, and the side plate portion 294b extends to the base portion 292a of the inner 292.

[0225] The handle cover 295 has a front hole 295a with an inner shape the same as the outer diameter of the outer cylinder portion 291f of the handle cover base 291 at the front end, and is formed in a spindle-shaped (kamakura type, or bowl type, etc.) cylindrical shape that bulges rearward. A plurality (here, four) of notch openings 295b notched from the rear end toward the front are provided in the circumferential direction. The handle cover 295 is formed to cover the outer circumference of the inner 292, and the plurality of notch openings 295b are formed to coincide with the notch portion 292c. The rear end of the handle cover 295 is attached to the dish unit body 252 of the dish unit 200 via the inner 292.

[0226] The handle cover 295 is two-color molded with synthetic resins having different colors and translucencies (light transmittance). Specifically, the handle cover 295 is two-color molded with two types of resins, an inner layer 3a and an outer layer 3b. A part of the inner layer 3a penetrates the outer layer 3b and appears on the outer surface, forming circular or radial patterns. That is, the circular or radial patterns appearing on the surface of the handle cover 295 are the inner layer 3a, and the circular or radial patterns are connected on the back side of the outer layer 3b (see Fig. 71(a)). When molding the handle cover 295, the inner layer 3a may be injection molded first, or the outer layer 3b may be injection molded first.

[0227] As shown in Fig. 46 and the like, in the handle unit 180 and the handle cover unit 290 of the present embodiment, in the state assembled to the pachinko machine 1, a part of the handle unit 180 behind the handle 195 is inserted into the front cylinder portion 291a of the handle cover base 291, and the handle 195, the handle front lens 185, etc. are located on the front side of the handle cover unit 290. The rear end of the handle base 181 of the handle unit 180 is attached to the handle mounting seat surface 101b of the door frame base 101 in a state sandwiching the part closing the rear end of the rear cylinder portion 291c of the handle cover base 291 in the handle cover unit 290.

[0228] The handle 195 of this handle unit 180 has a central hub portion 195a at the center, which is rotatably supported by the handle base 181. Also, the handle 195 has an outer peripheral ring portion 195c outside the central hub portion 195a, which is rotatably supported by the handle cover unit 290 by a handle guide 196 attached to the rear side thereof. The rear end side of the guide portion 196a of this handle guide 196 is inserted (locked) between the front cylinder portion 291a and the outer cylinder portion 291f of the handle cover base 291 and between the flange portion 291e and the guide piece 291g, and is rotatably supported in a state where movement in the front-rear direction (axial direction) is restricted.

[0229] The handle 195, and the handle cover base 291, inner 292, substrate cover 294, and handle cover 295 in the handle cover unit 290 are formed to have translucency. By making the LED 293a of the handle cover decorative substrate 293 emit light, not only can the outer peripheral ring portion 195c of the handle 195 be decoratively illuminated, but also the inside of the handle cover base 291 (front cylinder portion 291a), the handle cover 295, etc. can be decoratively illuminated.

[0230] Since the handle cover unit 290 has notch openings 295b and notches 292c that match each other in the handle cover 295 and the inner 292, when viewed from the outside, it can be made to appear that holes communicating with the inside of the front cylinder portion 291a of the handle cover base 291 are open on both the left and right sides and the lower side. Thereby, it is possible to relieve the mental uneasiness of the player about thrusting a hand (finger) into the inside of the front cylinder portion 291a of the handle cover base 291 through the space between the central hub portion 195a and the outer peripheral ring portion 195c of the handle 195.

[0231] The upper notch opening 295b (the upper notch 292c of the inner 292) of the handle cover 295 is closed by the dish right decorative unit 275 and the door frame right side unit 430.

[0232] In the handle cover unit 290 of the present embodiment, the inside of the front cylinder portion 291a of the handle cover base 291 into which the rear side of the handle unit 180 is inserted communicates with the lower notches 292c and notch openings 295b of the inner 292 and the handle cover 295 respectively through the opening 291h (see Fig. 47). Thereby, even if liquids such as drinks or game balls B etc. enter into the front cylinder portion 291a of the handle cover base 291 through the gap between the central hub portion 195a and the outer peripheral ring portion 195c of the handle 195, they can be discharged downward of the handle cover unit 290 through the lower opening 291h, notch 292c, and notch opening 295b.

[0233] Further, when liquid or the game ball B enters the notch openings 295b on both the left and right sides of the handle cover 295, it can be discharged downward from the lower notch opening 295b through the gap between the front cylinder portion 291a and the leg portion 292b of the inner 292.

[0234] Also, the opening 291h of the handle cover base 291, the lower notch portion 292c of the inner 292, and the lower notch opening 295b of the handle cover 295 are provided on the extension line in the inclination direction of the blade portion 46b of the grill member 46 in the outer frame lower assembly 40 of the outer frame 2, as shown in FIG. 47. Thereby, the wind (wind pressure) discharged obliquely upward and forward from the grill member 46 through the blade portion 46b due to the vibration of the main body frame speaker 622 can enter the front cylinder portion 291a through the opening 291h, the notch portion 292c, and the notch opening 295b. Therefore, when the player inserts a finger inside the handle cover 295 (the front cylinder portion 291a of the handle cover base 291) and rotates the handle 195 (the game ball B driving device), by vibrating the main body frame speaker 622 and sending wind into the front cylinder portion 291a, the player can be surprised and an unprecedented effect can be achieved.

[0235] Furthermore, since the handle cover 295 has the notch opening 295b, when opening the door frame 3 or the main body frame 4, a finger can be hooked on the right notch opening 295b and pulled, and it can be used as a handle when opening the door frame 3 or the like.

[0236] Also, in the handle 195, since the plating is applied up to the outer peripheral ring portion 195c, the handle touch sensor 192 can detect the touch of the handle 195, and the game ball B can be driven even when only the outer peripheral ring portion 195c is touched.

[0237] In addition, since the handle cover 295 has a notch opening 295b, by hooking a finger on the outer peripheral ring portion 195c of the handle 195 and the notch opening 295b, the rotational position of the handle 195 can be easily fixed, and the game ball B can be continuously driven into the game area 5a with a certain strength without continuously twisting the hand. In this way, since the handle 195 can be rotated in various ways to drive the game ball B, the pachinko machine 1 that can select a driving operation suitable for the player can be provided.

[0238] This handle unit 180 is attached to the handle mounting seat surface 101b of the door frame base 101 via a handle cover unit 290 (handle cover base 291). The handle mounting seat surface 101b of this door frame base 101 is inclined in a plan view such that the right end side is located rearward of the left end side and faces the outside (open side). Therefore, the handle unit 180 attached via the handle cover base 291 is also inclined outward in a plan view (in other words, the tip portion thereof is inclined so as to face the outside of the pachinko machine 1 with respect to the line orthogonal to the front surface of the pachinko machine 1.) and is attached and fixed to the door frame 3. As a result, it is easy for the player to grip the handle 195 of the handle unit 180, and a rotational operation can be performed without a sense of discomfort.

[0239] As described above, according to the handle unit 180 and the handle cover unit 290 of the present embodiment, a handle 195 having a disk-shaped central hub portion 195a, a plurality of spoke portions 195b radially protruding from the central hub portion 195a, and an annular outer peripheral ring portion 195c connecting the tips of the plurality of spoke portions 195b is provided at the lower right corner of the door frame 3 that is provided to be openable and closable about the left side as an axis and closes the game area 5a of the game board 5 so as to be visible from the front. In addition, since a cylindrical handle cover unit 290 extending rearward from the outer peripheral ring portion 195c is provided, a handle 195 and a handle cover unit 290 in a form never seen before can be seen at the portion where the handle in the conventional pachinko machine is provided. This can give a strong impact to the player, strongly attract the player's interest, enhance the player's willingness to play the game on the present pachinko machine 1, and make it easier for the player wandering in the game hall where the present pachinko machine 1 is installed to select the present pachinko machine 1 as the pachinko machine to play.

[0240] Further, since the player's finger can be inserted into the handle cover unit 290 (the front cylinder portion 291a of the handle cover base 291) through the space between the central hub portion 195a and the outer peripheral ring portion 195c of the handle 195, when the player operates the handle 195 to drive the game ball B into the game area 5a, if the player grasps the central hub portion 195a of the handle 195, the player's finger will be in a state of being inserted into the handle cover unit 290. Therefore, a feeling different from that of the handle of the conventional pachinko machine can be given to the player with respect to the operation of the handle 195, and the player can be entertained by the novel feeling of driving the game ball B and the decline in interest can be suppressed.

[0241] When the player operates the handle 195 and an effect sound is output from the main body frame speaker 622 provided in the speaker unit 620a of the substrate unit 620A of the main body frame 4, the vibration of the main body frame speaker 622 causes the air in the enclosure 624 by the speaker box 623 to vibrate. The vibration of the air in the enclosure 624 is released forward as sound pressure (sound wind) through the curtain plate internal space 40a of the outer frame lower assembly 40 in the outer frame 2 communicating with the enclosure 624 and the port member 47. At this time, by the plurality of blade portions 46b of the grill member 46 provided at the front end of the port member 47, the sound pressure (sound wind) from the main body frame speaker 622 can be guided into the handle cover unit 290 (inside the front cylinder portion 291a of the handle cover base 291) through the notch opening 295b of the handle cover 295 and the opening 291h of the handle cover base 291. It is possible to apply a stimulus by sound pressure to the finger of the player who is operating the handle 195 with a finger inserted into the handle cover unit 290 through between the central hub portion 195a and the outer peripheral ring portion 195c. Therefore, according to the gaming state in the gaming area 5a, by supplying the sound pressure from the port member 47 to the finger of the player inserted into the handle cover unit 290 through the notch opening 295b and the opening 291h, it is possible to startle the player, make the player sense the coming of a chance, change the operation amount of the handle operation, etc., and it is possible to make the player enjoy the game, make it difficult for the player to get bored, and suppress a decrease in the interest in the game.

[0242] Also, since the sound pressure (sound wind) from the main body frame speaker 622 can be supplied into the handle cover unit 290 (the front cylinder portion 291a of the handle cover base 291) through the notch opening 295b and the opening 291h, the inside of the handle cover unit 290 can be cooled, and by making the environment around the finger of the player operating the handle 195 comfortable, the stress on the player can be alleviated and a decrease in the interest in the game can be suppressed.

[0243] Also, as described above, when the handle 195 is being operated with a finger inserted into the handle cover unit 290 through the space between the central hub portion 195a and the outer peripheral ring portion 195c, for the finger of the player, the sound pressure (sound wind) emitted forward from the port member 47 provided on the outer frame lower assembly 40 of the outer frame 2, which is different from the door frame 3 where the handle 195 and the handle cover unit 290 are provided, is guided by the plurality of blade portions 46b of the grill member 46 to apply a stimulus. Therefore, compared with the case where a vibration device is provided on the handle 195, it does not damage various sensors (handle rotation detection sensor 189, handle touch sensor 192, single-shot button operation sensor 194, etc.) and bearing mechanisms provided on the handle 195, and it becomes possible to make the handle unit 180 less likely to be damaged, avoiding giving discomfort to the player due to the damage of the handle unit 180, and suppressing a decrease in the player's interest in the game.

[0244] Furthermore, since the handle 195 is configured to have a central hub portion 195a, a spoke portion 195b, and an outer peripheral ring portion 195c, the handle 195 has an appearance similar to that of a steering wheel of an automobile. Therefore, even if the appearance of the handle 195 is significantly different from that of the handle of a conventional pachinko machine, it is possible to intuitively make the player recognize that the operation of the handle 195 is the same as that of a conventional pachinko machine. Accordingly, even a player who sees the pachinko machine 1 for the first time can operate the handle 195 of the pachinko machine 1 without being confused, and it becomes easier to select the pachinko machine 1 as a pachinko machine that allows the player to play without hesitation.

[0245] In addition, since the notch opening 295b and the opening 291h are provided at a portion facing the lower side of the outer peripheral surface of the handle cover unit 290 through which the player's finger can be inserted between the central hub portion 195a and the outer peripheral ring portion 195c of the handle 195, when looking inside the handle cover unit 290 (the front cylinder portion 291a of the handle cover base 291) from the front, the area below the handle cover unit 290 can be seen through the opening 291h and the lower notch opening 295b, and a sense of openness can be imparted to the cylindrical handle cover unit 290. Therefore, the player's sense of unease regarding inserting a finger into the handle cover unit 290 can be reduced, and the player can operate the handle 195 without hesitation.

[0246] In addition, the penetrating notch opening 295b and the opening 291h are provided at a portion facing the lower side of the outer peripheral surface of the handle cover unit 290, and since the port member 47 of the outer frame 2 (the outer frame lower assembly 40) is opened forward, even if a liquid such as a drink or a game ball B enters the handle cover unit 290, it can be discharged downward from the lower notch opening 295b and the opening 291h, and it is possible to make it difficult for the liquid or the like discharged downward from the notch opening 295b and the opening 291h to enter the port member 47.

[0247] Furthermore, the handle 195 is configured to have a central hub portion 195a, a spoke portion 195b, and an outer peripheral ring portion 195c, and a plurality of notch openings 295b are provided in the handle cover 295 of the handle cover unit 290 having the same diameter at the front end as the outer peripheral ring portion 195c. Therefore, the central hub portion 195a can be grasped and operated by hand in the same manner as the handle of a conventional pachinko machine, the spoke portion 195b can be operated only with fingers, the outer peripheral ring portion 195c can be operated like a steering wheel of an automobile, the fingers can be hooked on the outer peripheral ring portion 195c and the notch openings 295b to grasp, or the fingers can be used to pinch the inside and outside of the handle cover unit 290 across the outer peripheral ring portion 195c. Thus, it is possible to provide the pachinko machine 1 capable of performing a variety of driving operations (handle operations) of the game ball B. Accordingly, according to the game state, the state of the player, etc., the player can drive the game ball B into the game area 5a in an easy-to-operate manner, making it difficult for the player to get bored, enabling the player to enjoy the driving operation of the game ball B, and suppressing a decrease in the interest in the game.

[0248] Also, by hooking the fingers on the outer peripheral ring portion 195c and the notch openings 295b of the handle 195 or by pinching the inside and outside of the handle cover unit 290 across the outer peripheral ring portion 195c with the fingers, it becomes possible to fix the operation position of the handle 195. Therefore, in addition to the handle operation similar to that of the handle of a conventional pachinko machine, it is also possible to perform a handle operation that could not be achieved with a conventional pachinko machine. Thus, it is possible to provide a variety of handle operations to the player, making the player enjoy the handle operation and making it difficult for the player to get bored.

[0249] Also, since the diameter of the front end of the handle cover unit 290 is the same as the diameter of the outer peripheral ring portion 195c of the handle 195, the handle cover unit 290 extends rearward from the outer peripheral ring portion 195c, and the handle cover unit 290 can have an appearance of being integrated with the handle 195, making it possible to improve the appearance and attract the attention of the player, and the pachinko machine 1 can be made.

[0250] Also, since the diameter of the front end of the handle cover unit 290 is the same as the diameter of the outer peripheral ring portion 195c, it is possible to suppress the vertical dimension of the handle cover unit 290 from becoming larger than necessary, and by suppressing the handle cover unit 290 from pressing the game area 5a (door window 101a) upward, it is possible to avoid the game area 5a from becoming narrower, relatively enlarge the game area 5a, and make the pachinko machine 1 stand out with the large game area 5a, and the pachinko machine 1 with a high appeal force that can strongly attract the attention of the player can be made.

[0251] Furthermore, by appropriately emitting light from the LED 293a of the handle cover decorative substrate 293, the handle cover unit 290 (inside the front cylinder portion 291a of the handle cover base 291 or the handle cover 295) and the outer peripheral ring portion 195c of the handle 195 can be decorated with light emission. Therefore, even when the player operates the handle 195, the light emission decoration of the handle cover 295 and the outer peripheral ring portion 195c will not be blocked by the player's hand, the handle cover 295 and the outer peripheral ring portion 195c can be made prominent, and a pachinko machine 1 with a high appeal force that can strongly attract the attention of the player can be provided.

[0252] In addition, a handle 195 is provided at the lower right corner of the door frame 3 on the side opposite to the hinge side, and a notch opening 295b is provided at a portion of the handle cover 295 of the handle cover unit 290 facing the right side of the outer peripheral surface. Therefore, the notch opening 295b can be used as a handle when opening and closing the door frame 3. Accordingly, there is no need to provide a handle that deteriorates the appearance of the door frame 3, and the appearance of the door frame 3 can be improved.

[0253] Further, the handle cover unit 290 (handle cover base 291) has a flange portion 291e and a guide piece 291g that rotatably support the outer peripheral ring portion 195c (handle guide 196) of the handle 195 in the circumferential direction and restrict movement in the front-rear direction. Even if the outer peripheral ring portion 195c of the handle 195 is pulled forward, the movement of the outer peripheral ring portion 195c forward can be restricted by the guide piece 291g or the like. Therefore, the outer peripheral ring portion 195c and the spoke portion 195b connecting the outer peripheral ring portion 195c and the central hub portion 195a do not deform, and it is possible to prevent the handle 195 from being damaged.

[0254] In addition, after the handle touch sensor 192 detects that the player is touching the handle 195, the operation of the handle 195 is received and the game ball B is driven in. Therefore, even if the handle 195 is operated while only touching the spoke portion 195b or the outer peripheral ring portion 195c, the game ball B can be driven in, and the pachinko machine 1 capable of performing various driving operations (handle operations) as described above can be provided. At the same time, it is possible to prevent the driving of the game ball B when the player is not touching the handle 195, prevent the handle operation using a tool from being performed, and reduce the burden on the game hall side.

[0255] [3-5. Overall Configuration of Dish Unit] The dish unit 200 in the door frame 3 will be described in detail mainly with reference to FIGS. 48 and 49. FIG. 48 is a perspective view of the dish unit of the door frame, and FIG. 49 is a perspective view of the dish unit seen from the rear. The dish unit 200 is attached to a portion below the door window 101a on the front surface of the door frame base 101 of the door frame base unit 100. The dish unit 200 includes an upper dish 201 for storing the game balls B to be driven into the game area 5a, and a lower dish 202 disposed below the upper dish 201 and capable of storing the game balls B supplied from the upper dish 201 and the far cover unit 150.

[0256] The dish unit 200 includes a dish base unit 210 having the upper dish 201 and attached to the front surface of the door frame base 101 of the door frame base unit 100, a dish decoration unit 250 having the lower dish 202 and attached to the front surface of the dish base unit 210, and an effect operation unit 300 attached to the front surfaces of the dish decoration unit 250 and the dish base unit 210 and operable by the player.

[0257] The dish base unit 210 includes a flat plate-shaped dish unit base 211 extending horizontally, an upper dish body 212 attached to the upper part of the front surface of the dish unit base 211 and having the upper dish 201, a mounting base (not shown) attached to the right side of the upper dish body 212 and protruding forward, a dish unit relay board (not shown) attached to the right side of the mounting base, a ball lending operation unit 220 attached to the upper surface of the mounting base, an upper dish ball extraction front unit (not shown) attached below the mounting base, and an upper dish ball extraction rear unit 240 attached to the rear of the upper dish ball extraction front unit.

[0258] The dish decoration unit 250 includes a dish body 251 that is attached to the lower front of the dish unit base 211 and has a lower dish 202, a dish unit main body 252 that is attached to the front of the dish unit base 211 so as to cover the outer periphery of the dish body 251, a lower dish ball removal unit 260 that is attached to the lower surface of the dish body 251, and a left dish decoration unit 270 and a right dish decoration unit 275 that are respectively attached to the upper front of the dish unit main body 252 at left and right intervals.

[0259] The effect operation unit 300 includes an effect operation unit 301 that can be operated by the player, a contact operation unit 302 that can be touched and operated by the player, and a pressing operation unit 303 that can be pressed and operated by the player. The effect operation unit 300 includes an effect operation unit cover unit 310 having a spherical outer surface, an operation unit base 315 that is housed inside the effect operation unit cover unit 310 and is attached to the front surface of the dish decoration unit 250, an annular effect operation unit outer peripheral decoration substrate 320 that is attached to the upper surface of the operation unit base 315, an outer peripheral substrate cover 325 that covers the upper part of the effect operation unit outer peripheral decoration substrate 320, and an operation unit relay substrate unit 330 that is attached to the rear side of the operation unit base 315.

[0260] Further, the effect operation unit 300 includes an effect operation unit 350 that can protrude upward from the effect operation unit cover unit 310 and is provided with the effect operation unit 301, an effect operation unit lifting mechanism 360 that is attached to the operation unit base 315 and supports the effect operation unit 350 so as to be able to move up and down, and a protrusion force adjustment mechanism 380 that adjusts the upward protrusion force of the effect operation unit 350 by the effect operation unit lifting mechanism 360.

[0261] The dish unit 200 bulges forward as a whole, and the effect operation unit 300 is arranged so that the upper surface of the effect operation unit 301 faces obliquely upward and forward at the center in the left-right direction. An upper dish 201 is arranged on the left side of the effect operation unit 300 on the upper surface, a ball lending operation unit 220 is arranged on the right side of the effect operation unit 300, and a lower dish 202 is arranged on the left side of the effect operation unit 300 below the upper dish 201.

[0262] [3-5a. Upper plate] The upper tray 201 of the tray unit 200 will be described in detail, mainly with reference to Figures 48 and 49. The upper tray 201 is formed by a tray unit base 211 and an upper tray main body 212. When viewed from the front, the left side bulges forward more than the center, forming an upwardly open container shape. The upper tray 201 (upper tray main body 212) bulges forward most from the left end to the right, approximately one-third of the width of the door frame 3. The front end of the upper tray 201 recedes backward from the most bulging part toward the right when viewed from the front, and it has a guide passage 201a (see Figure 73) whose depth in the front-to-back direction is slightly greater than the outer diameter of the game ball B. The entire bottom surface of the upper tray 201, including the guide passage 201a, is inclined so that the right end is lower, and the right end of the guide passage 201a when viewed from the front is recessed below the ball dispensing operation unit 220.

[0263] When assembled to the tray unit 200, the upper tray 201 has a bottom surface that slopes downward from a position below the upper tray ball supply port 211a of the tray unit base 211 to a position slightly below the outer diameter of the game ball B relative to the upper end of the upper tray ball feed port (not shown). This allows the game ball B released forward from the upper tray ball supply port 211a to be received and stored within the upper tray 201, and the received game ball B can be supplied from the right end of the guide passage portion 201a through the upper tray ball feed port to the ball feed unit 140 side.

[0264] In addition, the guide passage section 201a is equipped with a metal earth fitting that is electrically grounded (earthed) in the pachinko machine 1, and when the game ball B comes into contact (rolls) with it, the static electricity charged to the game ball B can be removed.

[0265] [3-5b. Lower plate] The lower tray 202 of the tray unit 200 will be described in detail mainly with reference to FIGS. 48 and 50. FIG. 50(a) is a cross-sectional view showing the main part cut horizontally at the position of the lower tray ball supply port in the door frame, (b) is a cross-sectional view showing the main part cut at the same position as (a) in the conventional door frame, and (c) is a table comparing the number of game balls stored in the lower tray between the product of this embodiment and the conventional product. The lower tray 202 is disposed below the upper tray 201 and to the left of the center in the left-right direction of the tray unit 200 (door frame 3) in a front view. The lower tray 202 is formed by a lower tray body 251 and a tray unit base 211. The lower tray 202 is formed in a container shape capable of storing the game balls B, and is provided with a lower tray ball discharge hole 202a that penetrates vertically through the bottom wall and enables the discharge of the game balls B. The lower tray ball discharge hole 202a of the lower tray 202 is closably closed by a lower tray ball discharge lid 265 of the lower tray ball discharge unit 260.

[0266] The lower tray 202 is formed in a substantially rectangular shape extending left and right in a plan view, and the front end on the left side of the center in the left-right direction protrudes forward more than the right side. The lower tray ball discharge hole 202a that penetrates vertically through the lower tray 202 is disposed near the front end near the right end. The bottom surface of this lower tray 202 is inclined so as to be lower toward the lower tray ball discharge hole 202a. The lower tray ball discharge hole 202a of the lower tray 202 is located to the left of the front of the lower tray ball supply port 211c and below the effect operation unit 300 in a state assembled to the tray unit 200.

[0267] The lower tray 202 can store the game balls B discharged forward from the lower tray ball supply port 211c in a state where the lower tray ball discharge hole 202a is closed, and can discharge the stored game balls B to below the tray unit 200 (for example, the dollar box) by opening the lower tray ball discharge hole 202a. Further, in a state where the lower tray ball discharge hole 202a of the lower tray 202 is open, since the lower tray ball discharge hole 202a is disposed in front of the lower tray ball supply port 211c, the game balls B discharged forward from the lower tray ball supply port 211c can be quickly discharged downward from the lower tray ball discharge hole 202a by moving the shortest distance.

[0268] Here, in a conventional pachinko machine, as shown in FIG. 50(b), a lower plate ball extraction hole 202b of a lower plate 202 is provided in front of a lower plate ball supply port 211j of a plate base unit 211 in the plate base unit 210 communicating with a ball discharge port 150d of a far cover unit 150 on its central axis. And the lower plate ball supply port 211j is formed in a cylindrical shape extending straight forward so that the game ball B discharged forward from the ball discharge port 150d goes straight toward the lower plate ball extraction hole 202b. Thereby, the game ball B discharged forward from the lower plate ball supply port 211j can be quickly discharged downward from the lower plate ball extraction hole 202b by moving the shortest distance.

[0269] By the way, when the game ball B is directly guided toward the lower plate ball extraction hole 202b by the lower plate ball supply port 211j, if the lower plate ball extraction hole 202b is closed by a lower plate ball extraction lid 265, since the lower plate ball extraction hole 202b and the lower plate ball supply port 211j are provided near the right end of the lower plate 202, there is a risk that the storage of the game ball B will concentrate in the region on the right side rather than the center in the lower plate 202. And if the game ball B concentrated in the right region in the lower plate 202 blocks the front of the lower plate ball supply port 211j, the game ball B will not be discharged from the storage passage 150e of the far cover unit 150 to the lower plate 202 side, so that the full detection sensor 154 is activated, and there is a risk that the lower plate 202 is determined to be full even though there is still room in the left region in the lower plate 202.

[0270] On the contrary, in the present embodiment, although details will be described later, as shown in FIG. 50(a), the left side wall (ball guiding portion 213) of the lower plate ball supply port 211c is inclined to extend obliquely left forward. More specifically, the left side wall of the lower plate ball supply port 211c is inclined obliquely left forward so that the distance between the front surface of the plate base unit 211 at the position directly behind the lower plate ball extraction hole 202a is a distance through which at least one game ball B can flow.

[0271] Also, in the present embodiment, as shown in FIG. 50, the lower plate ball discharge hole 202a is moved to the left of the central axis line (the line indicated by the dashed line) of the rear end (the ball discharge port 150d) of the lower plate ball supply port 211c.

[0272] By moving the lower plate ball discharge hole 202a to the left, the lowest part of the lower plate 202 (the part of the lower plate ball discharge hole 202a) moves to the left, and in a state where the lower plate ball discharge hole 202a is closed, it is possible to reduce the concentration and storage of the game balls B on the right side in the lower plate 202. And in the lower plate 202, even if a plurality of game balls B are stored from the part of the lower plate ball discharge hole 202a and reach the rear end of the lower plate 202 (the front surface of the plate unit base 211), since the left side wall on the left side of the lower plate ball supply port 211c extends obliquely and forms a gap through which the game balls B can flow between the rear end of the lower plate 202, the game balls B discharged from the far cover unit 150 (the ball discharge port 150d) or the upper plate ball discharge rear unit 240 (the ball discharge guide path 241c) to the lower plate ball supply port 211c side can be guided and discharged to the left side in the lower plate 202 along the obliquely extending left side wall, and the game balls B can be properly stored throughout the lower plate 202.

[0273] Therefore, even though there is still a sufficient area in the lower plate 202 where the game balls B can be stored, it is possible to prevent the full detection sensor 154 from operating and reporting fullness, and more game balls B can be stored in the lower plate 202.

[0274] [3-5c. Plate Base Unit] Regarding the plate base unit 210 in the plate unit 200, it will be described in detail mainly with reference to FIGS. 48 and 49. The plate base unit 210 includes a flat plate-shaped plate unit base 211 attached to the lower front part of the door frame base unit 100 and extending left and right, an upper plate main body 212 having an upper plate 201 attached to the upper front part of the plate unit base 211, and a plate unit relay substrate 214 attached to the rear surface of the plate unit base 211 near the lower right corner.

[0275] In addition, the dish base unit 210 includes a ball lending operation unit 220 attached to the upper part of the front surface of the dish unit base 211, an upper dish ball removal front unit (not shown) attached to the front surface of the dish unit base 211 below the ball lending operation unit 220, and an upper dish ball removal rear unit 240 attached to the rear side of the dish unit base 211 behind the upper dish ball removal front unit.

[0276] [3-5c-1. Dish unit base] The dish unit base 211 of the dish base unit 210 will be described in detail mainly with reference to FIGS. 48 and 49. The dish unit base 211 is attached below the door window 101a on the front surface of the door frame base 101 of the door frame base unit 100, and is formed in a flat plate shape (a shallow box shape with an open rear) extending left and right across the entire width of the door frame base 101.

[0277] The dish unit base 211 includes an upper dish ball supply port 211a that penetrates front and rear near the upper left corner in a front view and extends cylindrically rearward, a speaker port 211b that penetrates front and rear below the upper dish ball supply port 211a and has a punching metal attached to the front side, a lower dish ball supply port 211c that penetrates front and rear in the lower part to the left of the center in a front view and extends cylindrically rearward, a notch 211d that is notched to a size through which the game ball B can pass on the right side wall of the part extending cylindrically rearward from the lower dish ball supply port 211c, and an upper dish ball feeding port (not shown) that penetrates front and rear in the upper right side in a front view of the lower dish ball supply port 211c and extends vertically, with the upper part located at the right end of the upper dish body 212.

[0278] The upper dish ball supply port 211a of the dish unit base 211, in a state assembled to the door frame 3, has its front end opening to the rear wall of the upper dish 201, and the cylindrical rear end penetrates the upper dish ball passage port 101g of the door frame base 101 from the front side and is connected to the front end of the through ball passage 150a of the far cover unit 150. Thereby, the game ball B paid out from the payout device 580 of the payout unit 560 is supplied (paid out) into the upper dish 201 through the upper dish ball supply port 211a.

[0279] In the state where the lower tray ball supply port 211c is assembled to the door frame 3, the front end opens to the rear wall of the lower tray 202, and the cylindrical rear end penetrates the lower tray ball passage port 101f of the door frame base 101 from the front side and is connected to the front end of the ball discharge port 150d of the fairing cover unit 150. Thereby, the game balls B flowing through the storage passage 150e of the fairing cover unit 150 are supplied into the lower tray 202 through the lower tray ball supply port 211c. Further, the downstream end of the ball discharge guide path 241c in the rear base 241 of the upper tray ball removal rear unit 240 is connected to the notch 211d formed in the portion of the lower tray ball supply port 211c extending in a cylindrical shape. Thereby, the game balls B stored in the upper tray 201 are discharged into the lower tray 202 from the lower tray ball supply port 211c through the upper tray ball supply port, the inlet 141a and the ball discharge port 141b of the ball supply unit 140, the ball supply guide path 241b and the ball discharge guide path 241c of the upper tray ball removal rear unit 240, and the notch 211d by the operation of the upper tray ball removal button 222.

[0280] In the state where the upper tray ball supply port 211a is assembled to the tray base unit 210, it is located in front of the ball receiving port (not shown) of the rear base 241 in the upper tray ball removal rear unit 240, and the game balls B in the upper tray 201 are supplied from the ball receiving port of the upper tray ball removal rear unit 240 to the ball supply guide path 241b.

[0281] In addition, the dish unit base 211 of the present embodiment has a ball guiding portion 213 that guides the game balls B supplied into the lower dish 202 to a position far from the lower dish ball outlet hole 202a. The ball guiding portion 213 guides the game balls B guided from the upper dish 201 through the ball outlet guiding path 241c to a position far from the lower dish ball outlet hole 202a (the left part of the lower dish 202). As shown in FIG. 50(a), this ball guiding portion 213 forms a part of the inner wall of the lower dish ball supply port 211c. More specifically, the ball guiding portion 213 forms the left inner wall that faces the right inner wall where the ball outlet guiding path 241c opens on the inner wall of the lower dish ball supply port 211c formed in a cylindrical shape, and is inclined so as to move leftward from the rear end side toward the front end side. Due to the inclination of this left inner wall (ball guiding portion 213), at least one distance (gap) through which the game ball B can flow is formed between the front surface of the dish unit base 211 (the rear end of the lower dish 202) and the position directly behind the lower dish ball outlet hole 202a. As a result, when the game ball B that has flowed through the ball outlet guiding portion 241c from the upper dish 201 abuts against the ball guiding portion 213 from the right, it is guided to the left front by the inclination of the ball guiding portion 213, and the game ball B can be guided to the left end side in the lower dish 202 away from the lower dish ball outlet hole 202a. That is, the ball guiding portion 213 can guide the game ball B to a position far from the lowest portion (lower dish ball outlet hole 202a) in the lower dish 202.

[0282] Incidentally, as shown in FIG. 50(b), the lower plate ball supply port 211j in a conventional pachinko machine (also referred to as a conventional product) extends straight in the front-rear direction. Therefore, when the game ball B guided by the ball discharge guide path 241c contacts the inner wall on the left side of the lower plate ball supply port 211j, it rolls forward while rebounding to the right and is not sent to a position far from the lower plate ball discharge hole 202b in the lower plate 202, but is stored in the right region in the lower plate 202 where the lower plate ball discharge hole 202b is provided. Therefore, in the conventional product, the storage of the game balls B (indicated by the two-dot chain line in FIG. 50(b)) concentrates in the region on the right side rather than the center in the lower plate 202. If the game balls B concentrated in the right region in the lower plate 202 block the front of the lower plate ball supply port 211j, the game balls B cannot be discharged from the storage passage 150e of the far cover unit 150 to the lower plate 202 side, and the full detection sensor 154 is activated. There is a risk that the lower plate 202 may be determined to be full even though there is still room in the left region in the lower plate 202.

[0283] On the other hand, in the present embodiment, as described above, since the ball guide portion 213 is provided, the game ball B that has passed through the ball discharge guide portion 241c can be guided to the left region in the lower plate 202. Also, in the lower plate 202, even if a plurality of game balls B are stored from the part of the lower plate ball discharge hole 202a and reach the rear end of the lower plate 202 (the front surface of the plate unit base 211), the game balls B discharged from the far cover unit 150 (ball discharge port 150d) or the upper plate ball discharge rear unit 240 (ball discharge guide path 241c) to the lower plate ball supply port 211c side can be guided to the left in the lower plate 202 through the space between the left side wall (ball guide portion 213) of the lower plate ball supply port 211c and the rear end of the lower plate 202, and the game balls B can be stored throughout the lower plate 202. Therefore, it is possible to avoid the situation where the full detection sensor 154 is activated and a full state is notified even though there is still a sufficient area in the lower plate 202 where the game balls B can be stored, and more game balls B can be stored in the lower plate 202.

[0284] And, to verify the above-described effects, the inventors of the present application counted the number of game balls B stored in each of the lower plates 202 when the full detection sensor 154 was activated, for the product of the present embodiment and a conventional product. The counting of the game balls B was performed 10 times for each. As shown in the table of Fig. 50(c), the number of game balls B stored in the lower plate 202 (product of the present embodiment) of the present example was significantly larger than that of the conventional product in each case, and it was confirmed that on average, about 40% more game balls B could be stored than the conventional product.

[0285] [3-5c-2. Upper plate body] The upper plate body 212 of the dish base unit 210 will be described in detail mainly with reference to Figs. 48 and 49 and the like. The upper plate body 212 is attached to the front surface of the dish unit base 211 and forms the upper plate 201 in cooperation with the dish unit base 211. The upper plate body 212 is formed in a container shape (dish shape) with the upper and rear sides open. The upper plate body 212 extends horizontally, and when viewed from the front, the left side from the center of the left and right is larger and bulges forward. From the most forward-bulging part of the upper plate body 212 toward the right when viewed from the front, the front end recedes rearward, and the depth in the front-rear direction is formed to have a width slightly larger than the outer diameter of the game ball B. The bottom surface of the upper plate body 212 is inclined so that the right end is the lowest. The upper part near the right end of the upper plate body 212 is closed.

[0286] In a state where the upper plate body 212 is assembled to the dish unit 200, the part where the upper part near the right end is closed is attached so as to be recessed below the ball lending operation unit 220. Further, the upper plate body 212 is formed with an effect operation unit attachment part 212a at the intermediate part in the left-right direction in the upper part, and a part of the effect operation unit 300 is attached to this effect operation unit attachment part 212a.

[0287] [3-5c-3. Dish unit relay board] The tray unit relay board 214 of the tray base unit 210 relays the connection between the door frame sub-relay board 105 in the door frame base unit 100, the left tray decorative board 273, the right tray decorative board 278, and the operation unit relay board 332. The tray unit relay board 214 is attached near the lower right corner on the rear surface of the tray unit base 211. When the tray unit relay board 214 is attached to the tray unit base 211, its rear surface faces the rear side of the tray unit base 211.

[0288] [3-5c-4. Ball lending operation unit] The ball lending operation unit 220 of the tray base unit 210 will be mainly described with reference to FIG. 51. FIG. 51 is a plan view showing an enlarged view of the part of the ball lending operation unit in the tray unit of the door frame. This ball lending operation unit 220 discharges the game balls B stored in the upper tray 201 to the lower tray 202, or after inserting cash or a prepaid card into a ball lending machine (not shown) provided adjacent to the pachinko machine 1, lends a predetermined number of game balls B into the upper tray 201 of the tray unit 200, displays the remaining amount of cash or prepaid card inserted into the ball lending machine, returns the cash or prepaid card inserted into the ball lending machine after deducting the amount corresponding to the lent game balls B, adjusts the volume, and adjusts the light quantity.

[0289] The ball lending operation unit 220 includes a base portion 221 attached to the upper part of the front surface of the tray unit base 211, an upper tray ball extraction button 222 disposed near the left end of the upper surface of the base portion 221, a disk-shaped ball lending operation base 223 having translucency and disposed to the right of the upper tray ball extraction button 222 on the upper surface of the base portion 221, a ball lending button 224 disposed on the left front side of the front portion of the ball lending operation base 223, a return button 225 disposed on the right front side of the front portion of the ball lending operation base 223, a ball lending display portion 226 disposed below the rear portion of the ball lending operation base 223, a volume adjustment button 227 disposed in front of the ball lending button 224 outside the base portion 221, and a light quantity adjustment button 228 disposed to the left of the volume adjustment button 227.

[0290] The upper plate ball extraction button 222 protrudes upward in a cylindrical shape from the upper surface of the base portion 221 and can move downward when pressed by the player. The ball lending button 224 is formed in a circular shape and has the character "Ball" on its upper surface. The return button 225 is formed in a triangular shape. The ball lending display portion 226 is composed of three 7-segment LEDs and one bullet-shaped LED, and can be clearly visually recognized from the player side through the transparent ball lending operation base 223 in the lit state.

[0291] By pressing the upper plate ball extraction button 222 of the ball lending operation unit 220, the game balls B stored in the upper plate 201 can be discharged to the lower plate. Also, when a prepaid card with cash or remaining balance is inserted into the ball lending machine and the ball lending button 224 is pressed, a predetermined number of game balls B are supplied to the upper plate 201. When the return button 225 is pressed, the cash or prepaid card inserted into the ball lending machine is returned after deducting the lent game balls B. The remaining amount of the cash or prepaid card inserted into the ball lending machine is displayed on the ball lending display portion 226. Also, an error code is displayed on the ball lending display portion 226 when the ball lending machine malfunctions.

[0292] The volume adjustment button 227 is for adjusting the volume of the sound effects such as music, voice, and sound effects output from the top center speaker and the top side speaker of the door frame 3 and the main body frame speaker 622 for bass of the main body frame 4. This volume adjustment button 227 is formed in a double circular gourd shape combining two circles. The volume adjustment button 227 has the character "+" at the center of one (upper) circle and the character "-" at the center of the other (lower) circle, and a pattern as if sound is coming out of the speaker is provided at the part between the two circles. The diameter of the circle on the "+" side of the volume adjustment button 227 is formed larger than the diameter of the circle on the "-" side. When the "+" side of this volume adjustment button 227 is pressed, the volume increases, and when the "-" side is pressed, the volume decreases.

[0293] The light intensity adjustment button 228 is for adjusting the light intensity of the LEDs on various decorative substrates provided on the door frame 3 and the game board 5, and the brightness of the display screen of the effect display device 1600. This light intensity adjustment button 228 is formed in a double circular gourd shape combining two circles. The light intensity adjustment button 228 has the character "+" at the center of one (upper) circle and the character "-" at the center of the other (lower) circle, and a light bulb pattern is applied to the part between the two circles. The diameter of the circle on the "+" side of the light intensity adjustment button 228 is formed larger than the diameter of the circle on the "-" side. When the "+" side of this light intensity adjustment button 228 is pressed, it becomes brighter, and when the "-" side is pressed, it becomes darker.

[0294] The volume adjustment button 227 and the light intensity adjustment button 228 are made of different colors (for example, the volume adjustment button 227 is white and the light intensity adjustment button 228 is black,) so that it is difficult for the player to make a mistake.

[0295] By the way, when the volume or light intensity is adjusted using the contact operation part 302 or the pressing operation part 303 of the effect operation part 301, when the player participation type effect that requires the operation of the effect operation part 301 is not being executed, a setting menu for adjusting the volume, light intensity, etc. by appropriately operating the effect operation part 301 is displayed on the effect display device 1600, and after selecting the item to be adjusted, the contact operation part 302 is operated to change the volume level, light intensity, etc., and it will take time (effort) to adjust the volume and light intensity. On the other hand, according to the present embodiment, by operating the volume adjustment button 227 or the light intensity adjustment button 228, the volume and light intensity can be directly adjusted, and it is possible to provide the pachinko machine 1 that can simplify the effort required for adjusting the volume and light intensity and adjust it in a short time.

[0296] [3 - 5c - 5. Unit after the upper plate ball extraction] Regarding the upper plate ball removal pre-unit and the upper plate ball removal post-unit 240 in the dish base unit 210, it will be described in detail mainly with reference to FIG. 49. When the upper plate ball removal button 222 of the ball lending operation unit 220 is pressed, the upper plate ball removal post-unit 240 cooperates with the ball feeding unit 140 to discharge the game balls B stored in the upper plate 201 to the lower plate 202.

[0297] The upper plate ball removal post-unit 240 includes a rear base 241 attached to the rear surface of the dish unit base 211 so as to close the upper plate ball feeding port from the rear, an upper plate ball removal slider 242 slidably attached to the front surface of the rear base 241 in the vertical direction, a spring (not shown) biasing the upper plate ball removal slider 242 upward, and a rear cover 244 attached to the rear side of the rear base 241.

[0298] The rear base 241 protrudes upward from the portion where the upper plate ball removal slider 242 is slidably attached and opens forward, and has a ball receiving port (not shown) through which the game ball B can pass, a ball feeding guiding path 241b that guides the game ball B received in the ball receiving port downward at the rear surface of the rear base 241 and then guides it rearward, and a ball removal guiding path 241c that guides the game ball B downward from a position below the ball feeding guiding path 241b at the rear surface of the rear base 241 and then guides it rightward in a rear view.

[0299] The ball receiving port is formed at a position that opens forward through the upper plate ball feeding port of the dish unit base 211 at the downstream end (right end in a front view) of the guiding passage portion 201a of the upper plate 201 in a state assembled to the dish base unit 210. The ball feeding guiding path 241b is formed such that the inlet 141a of the ball feeding unit 140 is located at the rear of the lower part in a state assembled to the door frame 3. Thus, the game balls B supplied to the upper plate 201 enter the inlet 141a of the ball feeding unit 140 through the ball receiving port and the ball feeding guiding path {241b}.

[0300] The portion of the ball discharge guide path 241c extending left and right protrudes to the right rear in a rear view compared to the portion where the upper plate ball discharge slider 242 is slidably mounted, and is inclined so that the right end side in the rear view is lowered, and is open to the right side surface in the rear view. The portion of the ball discharge guide path 241c extending left and right is closed at the rear side by the rear cover 244. The ball discharge guide path 241c, in a state assembled to the door frame 3, has the upper part of the portion extending vertically below the ball feeding guide path 241b located in front of the ball discharge port 141b of the ball feeding unit 140, and is formed such that the right end in the rear view of the portion extending left and right is connected to the notch 211d of the lower plate ball supply port 211c in the dish unit base 211. Thereby, the game ball B discharged from the ball discharge port 141b of the ball feeding unit 140 is discharged into the lower plate 202 from the lower plate ball supply port 211c through the ball discharge guide path 241c and the notch 211d.

[0301] The upper plate ball discharge slider 242 is formed in a quadrangular shape in a front view, and includes an operation receiving portion (not shown) protruding forward from the upper left corner, and an operation transmission portion 242b protruding rearward from the rear surface on the rear side of the operation receiving portion. The upper surface of the operation receiving portion is formed flat. Further, the upper surface of the operation transmission portion 242b is inclined so as to be positioned downward as it goes rearward, and the lower surface extends horizontally so as to be connected to the rear end of the upper surface.

[0302] In a state assembled to the door frame 3, the upper plate ball discharge slider 242 has the operation receiving portion protruding forward through the dish unit base 211 from the rear side, and the lower end of the upper plate ball discharge button 222 abuts on the upper surface of the operation receiving portion. Further, in a state assembled to the door frame 3, the operation transmission portion 242b of the upper plate ball discharge slider 242 protrudes rearward of the rear base 241, and the operation lever 143c of the ball discharge member 143 of the ball feeding unit 14 is in contact with the upper surface.

[0303] The spring has its upper end attached to the rear base 241 and its lower end attached to the upper plate ball-removing slider 242, and biases the upper plate ball-removing slider 242 upward. Therefore, the upper plate ball-removing slider 242 is positioned at the upward moving end by the biasing force of the spring and can move downward by resisting the biasing force of the spring.

[0304] The upper plate ball-removing rear unit 240 positions the upper plate ball-removing slider 242 at the upward moving end by the biasing force of the spring and positions the upper plate ball-removing button 222 at the upward moving end through the operation receiving part of the upper plate ball-removing slider 242. Also, since the upper plate ball-removing slider 242 is positioned at the upward moving end by the biasing force of the spring, it prevents the downward movement of the operation lever 143c that is in contact with the upper surface of the operation transmission part 242b, and positions the partition part 143a of the ball-removing member 143 between the inlet 141a and the ball-removing port 141b, partitioning the space between the two.

[0305] Therefore, in a state where the upper plate ball-removing button 222 is not pressed, the space between the inlet 141a and the ball-removing port 141b in the ball feeding unit 140 is partitioned, and the game ball B sent from the upper plate 201 to the ball receiving port can be sent from the inlet 141a and the ball feeding member 144 to the ball launching device 540 side through the ball hitting supply port 142a.

[0306] When one presses the upper plate ball removal button 222 downward against the biasing force of the spring, the upper plate ball removal slider 242 moves downward, and the operating lever 143c of the ball removal member 143 that is in contact with the upper surface of the operation transmission portion 242b of the upper plate ball removal slider 242 can move downward. Due to the load of the weight portion 143d of the ball removal member 143, the ball removal member 143 rotates and the partition portion 143a retreats from between the inlet 141a and the ball removal port | 141b. As a result, the game ball B that has entered the inlet 141a from the upper plate 201 through the ball receiving port and the ball feeding guide path 241b is discharged forward from the ball removal port 141b that is open below the inlet 141a. Then, the game ball B discharged forward from the ball removal port 141b is guided into the lower plate ball supply port 211c from the notch portion 211d through the ball removal guide path 241c, and then is discharged from the lower plate ball supply port 211c into the lower plate 202, and the game ball B in the upper plate 201 is discharged into the lower plate 202.

[0307] When the downward pressing of the upper plate ball removal button 222 is released, the upper plate ball removal slider 242 moves upward due to the biasing force of the spring. As the upper plate ball removal button 222 rises, the ball removal member 143 rotates by the operating lever 143c that is in contact with the operation transmission portion 242b, and the partition portion 143a is positioned between the inlet 141a and the ball removal port 141b and returns to the original state.

[0308] In this way, the upper plate ball removal post-unit 240 can feed the game ball B in the upper plate 201 to the ball launcher 540 side via the ball feeding unit 140 or discharge it to the lower plate 202 side.

[0309] [3-5d. Dish decoration unit] Regarding the dish decoration unit 250 in the dish unit 200, it will be described in detail mainly with reference to FIGS. 22 to 48 and the like. The dish decoration unit 250 has a lower plate 202 and is attached to the front surface of the dish base unit 210, and the effect operation unit 300 is attached to the center in the left-right direction from the front. The dish decoration unit 250 decorates substantially the entire dish unit 200.

[0310] The dish decoration unit 250 includes a lower dish main body 251 that is attached to the lower front portion of the dish unit base 211 and cooperates with the dish unit base 211 to form the lower dish 202, a dish unit main body 252 that is attached to the front surface of the dish unit base 211 so as to cover the outer periphery of the lower dish main body 251, a lower dish ball discharge unit 260 that is attached to the lower surface of the lower dish main body 251, and a left dish decoration unit 270 and a right dish decoration unit 275 that are respectively attached to the upper front portion of the dish unit main body 252 at left and right intervals.

[0311] [3-5d-1. Lower dish main body] Regarding the lower dish main body 251 in the dish decoration unit 250, it will be described in detail mainly with reference to FIGS. 48 and 50 and the like. The lower dish main body 251 cooperates with the dish unit base 211 of the dish base unit 210 to form the lower dish 202. The lower dish main body 251 is formed in a container shape (dish shape) that extends horizontally and is open at the upper and rear sides. This lower dish main body 251 is attached to a portion on the left side of the center in the left-right direction at the lower front portion of the dish unit base 211 so that the open rear side is closed.

[0312] The lower dish main body 251 is formed in a substantially rectangular shape that extends horizontally in plan view, and the front end on the left side of the center in the left-right direction protrudes forward more than the right side. In the lower dish main body 251, a lower dish ball discharge hole 202a that penetrates vertically is formed near the front end of the right end in plan view. The bottom surface of the lower dish main body 251 is inclined so as to become lower toward the lower dish ball discharge hole 202a. The lower dish ball discharge hole 202a is closable in an openable manner by the lower dish ball discharge lid 265 of the lower dish ball discharge unit 260.

[0313] In a state where the lower dish main body 251 is assembled to the dish decoration unit 250, a part of the outer periphery and the lower surface are covered by the dish unit main body 252. Further, in a state where the lower dish main body is assembled to the dish unit 200, the bottom surface is located below the lower dish ball supply port 211c of the dish unit base 211, and the lower dish ball discharge hole 202a is located in front of the lower dish ball supply port 211c. Thereby, the game ball B discharged forward from the lower dish ball supply port 211c can be stored.

[0314] [3-5d-2. Dish unit main body] Regarding the dish unit main body 252 in the dish decoration unit 250, it will be described in detail mainly with reference to FIGS. 48 and 49 and the like. The dish unit main body 252 is attached to the front surface of the dish unit base 211 in the dish base unit 210 and decorates the front surface of the dish unit 200. The dish unit main body 252 bulges upward such that the center in the left-right direction protrudes forward, and bulges downward such that the left side in the left-right direction protrudes forward. Further, the upper surface of the dish unit main body 252 is curved such that the center in the left-right direction is the lowest. The dish unit main body 252 is formed in a box shape that is open to the rear.

[0315] The dish unit main body 252 includes upper side bulging portions 252a that bulge forward and extend downward while being spaced apart left and right as they extend from both left and right ends toward the center in the left-right direction at the upper part, and a lower front decorative portion 252b that bulges forward so as to cover the outer periphery of the lower dish main body 251 on the left side of the center in the left-right direction at the lower part.

[0316] The left and right upper side bulging portions 252a have a dish left decoration unit 270 and a dish right decoration unit 275 attached to their respective front surfaces.

[0317] A lower dish opening 252d is formed that penetrates front and back between the upper side bulging portion 252a on the left side and the lower front decorative portion 252b of the dish unit main body 252. The lower dish opening 252d is sized such that a player's finger can be inserted, and is formed such that it widens vertically as it extends leftward. The lower dish opening 252d is formed in a cylindrical shape that extends front and back by the lower dish main body 251 and the lower surface of the upper side bulging portion 252a on the left side.

[0318] Furthermore, although illustration is omitted, the dish unit main body 252 is formed between a pair of upper side bulging portions 252a at the center in the left-right direction, and includes an effect operation unit attachment portion to which the effect operation unit 300 is attached. The effect operation unit attachment portion is formed to have a width of about 1 / 3 of the width of the dish unit main body 252 in the left-right direction.

[0319] The dish unit main body 252 is formed so as to entirely cover the front surface of the dish base unit 210 in a state of being assembled to the dish unit 200, and the speaker opening 211b faces forward through the lower dish opening 252d.

[0320] [3-5d-3. Lower dish ball extraction unit] The lower dish ball extraction unit 260 in the dish decoration unit 250 will be described in detail mainly with reference to FIGS. 27 and 50 and the like. The lower dish ball extraction unit 260 is attached to the lower surface of the lower dish main body 251, and is for storing the game balls B in the lower dish 202 or discharging the game balls B from the lower dish 202 by opening and closing the lower dish ball extraction hole 202a.

[0321] The lower dish ball extraction unit 260 includes a lower dish ball extraction button 263 and a lower dish ball extraction lid 265 that opens and closes a through hole by operating the lower dish ball extraction button 263.

[0322] In a state where the lower dish ball extraction unit 260 is assembled to the dish decoration unit 250, the lower dish ball extraction button 263 coincides with the front surface of the lower front decoration portion 252b of the dish unit main body 252, and the lower dish ball extraction lid 265 closes the lower dish ball extraction hole 202a. In this normal state, the lower dish ball extraction hole 202a is closed by the lower dish ball extraction lid 265, and the game balls B can be stored in the lower dish 202.

[0323] In the normal state, when the lower dish ball extraction button 263 is pressed backward, the lower dish ball extraction lid 265 moves, and the lower dish ball extraction hole 202a is opened, and the game balls B in the lower dish 202 can be discharged downward of the dish unit 200 through the lower dish ball extraction hole 202a.

[0324] When the lower plate ball removal cover 265 is moved by pressing the lower plate ball removal button 263, the lower plate ball removal cover 265 remains in the moved state, the lower plate ball removal hole 202a remains open, and the game balls B in the lower plate 202 can be continuously discharged downward.

[0325] To close the lower plate ball removal hole 202a from this state, when the lower plate ball removal button 263, which is retracted from the front surface of the lower front decorative portion 252b, is pressed backward and then the pressing is released, the lower plate ball removal cover 265 returns to the normal position, and the lower plate ball removal hole 202a is closed. Thereby, the game balls B can be stored in the lower plate 202.

[0326] [3-5d-4. Left Plate Decoration Unit and Right Plate Decoration Unit] Regarding the left plate decoration unit 270 and the right plate decoration unit 275 in the plate decoration unit 250, they will be described in detail mainly with reference to FIG. 48 and the like. The left plate decoration unit 270 and the right plate decoration unit 275 are attached to the upper part of the front surface of the upper side bulging portion 252a of the plate unit main body 252. The left plate decoration unit 270 and the right plate decoration unit 275 decorate the left and right sides of the effect operation unit 300 at the upper part of the plate unit 200.

[0327] The left plate decoration unit 270 includes a left plate decoration body 271 that is semi-cylindrical and extends horizontally with translucency, a left plate decoration lens 272 that has translucency and penetrates the left plate decoration body 271, and a left plate decoration substrate 273 that is provided on the rear side of the left plate decoration lens 272 and has a plurality of LEDs mounted on the front surface.

[0328] The left plate decoration body 271 extends in a curved shape so as to move forward and downward as it goes from the left end to the right end, and is attached to the upper part of the upper side bulging portion 252a on the left side. The left plate decoration body 271 is formed in a shape where the semi-circular arc bulging forward has a central axis extending obliquely upward to the left at the left end and a central axis extending horizontally at the right end, and the semi-cylinder is twisted. This left plate decoration body 271 is formed in a milky white color.

[0329] The left dish decoration lens 272 extends in the longitudinal direction in a state where it coincides with the front surface of the left dish decoration body 271. The plurality of LEDs mounted on the left dish decoration substrate 273 are full-color LEDs, and by emitting light, the left dish decoration body 271 can be decorated with light emission.

[0330] The left dish decoration unit 270, in a state assembled to the door frame 3, has its left end continuous with the lower end of the left side unit 420 of the door frame. Since the left dish decoration unit 270 does not have ribs in the middle of the longitudinal direction in the left dish decoration body 271, when the plurality of LEDs on the left dish decoration substrate 273 emit light, the entire front surface of the left dish decoration body 271 can be decorated with light emission substantially uniformly, and it can be made to look as if a fluorescent lamp is embedded.

[0331] The right dish decoration unit 275 includes a right dish decoration body 276 that is semi-cylindrical and extends left and right and has translucency, a right dish decoration lens 277 that has translucency and penetrates the right dish decoration body 276, and a right dish decoration substrate 278 that is provided on the rear side of the right dish decoration lens 277 and has a plurality of LEDs mounted on the front surface.

[0332] The right dish decoration body 276 extends in a curved shape so as to move forward and downward as it goes from the right end to the left end, and is attached to the upper part of the upper side bulging part 252a on the right side. The right dish decoration body 276 is formed in a shape where a semi-circular arc bulging forward has a central axis extending obliquely upward to the right at the right end and a central axis extending left and right at the left end, and the semi-cylinder is twisted. This right dish decoration body 276 is formed in a milky white color.

[0333] The right dish decoration lens 277 extends in the longitudinal direction in a state where it coincides with the front surface of the right dish decoration body 276. The plurality of LEDs mounted on the right dish decoration substrate 278 are full-color LEDs, and by emitting light, the right dish decoration body 276 can be decorated with light emission.

[0334] The right dish decoration unit 275 is continuous with the lower end of the right side unit 430 of the door frame 3 when assembled to the door frame 3. Since the right dish decoration unit 275 does not have ribs in the middle of the longitudinal direction in the right dish decoration body 276, when a plurality of LEDs on the right dish decoration substrate 278 emit light, the entire front surface of the right dish decoration body 276 can be uniformly illuminated and decorated, making it appear as if a fluorescent lamp is embedded.

[0335] The left dish decoration unit 270 and the right dish decoration unit 275 protrude upward partially beyond the front end of the upper side bulging portion 252a in the dish unit main body 252 of the dish decoration unit 250 when assembled to the door frame 3, and a step can be formed where the sides of the left dish decoration unit 270 and the right dish decoration unit 275 are higher than that of the upper side bulging portion 252a. Thus, by utilizing the step between the left dish decoration unit 270 and the right dish decoration unit 275 and the upper side bulging portion 252a, a player can hook a finger, which can be used as a fingerhold when leveling the game balls B in the upper dish 201 or operating the effect operation unit 301 described later. Also, the step between the left dish decoration unit 270 and the right dish decoration unit 275 and the upper side bulging portion 252a can prevent the game balls B on the upper side bulging portion 252a from flowing forward.

[0336] [3-5e. Overall Structure of the Effect Operation Unit] The overall configuration of the effect operation unit 300 in the dish unit 200 will be described in detail mainly with reference to FIGS. 52 to 56 and the like. FIG. 52(a) is a perspective view of the effect operation unit seen from the front with the effect operation button facing upward, and (b) is a perspective view of the effect operation unit in (a) seen from the back. FIG. 53 is an exploded perspective view of the effect operation unit disassembled by main members and seen from the front upper side, and FIG. 54 is an exploded perspective view of the effect operation unit disassembled by main members and seen from the front lower side. FIG. 55(a) is a cross-sectional view of the effect operation unit in a state where the effect operation part unit is in the lowered position and the lifting spring lower holding member is at the upward movement end position, and (b) is a cross-sectional view of the effect operation unit in a state where the effect operation part unit has moved to the raised position from the state in (a). FIG. 56 is a cross-sectional view of the effect operation unit in a state where the effect operation part unit is in the lowered position and the lifting spring lower holding member is at the downward movement end position.

[0337] The effect operation unit 300 is provided at the center in the left-right direction in the dish unit 200, decorates the dish unit 200, and allows a player to operate and participate in the effect when a player participation type effect is executed. The effect operation unit 300 is attached to the dish base unit 210 and the dish decoration unit 250.

[0338] The effect operation unit 300 includes an effect operation part 301 that can be operated by a player. The effect operation part 301 is composed of a contact operation part 302 that can be touched and operated by the player and a pressing operation part 303 that can be pressed and operated by the player, and can receive the player's operation and move (vibrate) the effect operation part 301, enabling the player not only to perform the operation of driving the game ball B but also to participate in the effects during the game. In the effect operation part 301, the contact operation part 302 is provided above the pressing operation part 303. The effect operation part 301 is formed in a circular shape with a diameter approximately 5 / 8 the size of the outer diameter of the effect operation unit 300 for the contact operation part 302 and the pressing operation part 303.

[0339] The performance operation unit 300 includes an effect operation unit cover unit 310 which is provided on the front surface at the center in the left-right direction of the dish unit 200 and has a spherical outer shape, an operation unit base 315 to which the effect operation unit cover unit 310 is attached on the outside and which is attached to the front surface of the dish decoration unit 250, an effect operation unit outer peripheral decoration substrate 320 which is provided on the upper surface of the operation unit base 315 and on which a plurality of LEDs 320a for illuminating and decorating the upper part (unit upper cover 312) of the effect operation unit cover unit 310 are mounted, an outer peripheral substrate cover 325 which is attached to the operation unit base 315 so as to cover the effect operation unit outer peripheral decoration substrate 320 from above, and an operation unit relay substrate unit 330 which is attached to the rear surface of the operation unit base 315.

[0340] Further, the performance operation unit 300 includes an effect operation unit 301 having an effect operation unit 350, an effect operation unit lifting mechanism 360 for lifting and lowering the effect operation unit 350, and a protrusion force adjustment mechanism 380 for adjusting the protrusion force of the effect operation unit 350. The effect operation unit 350 is provided so as to be able to move forward and backward upward from the upper surface of the effect operation unit cover unit 310 by the effect operation unit lifting mechanism 360.

[0341] [3-5e-1.Effect Operation Unit Cover Unit] Regarding the effect operation unit cover unit 310 of the performance operation unit 300, it will be described in detail mainly with reference to FIGS. 53 to 56 and the like. The effect operation unit cover unit 310 is attached to the effect operation unit attachment portion of the dish unit main body 252 of the dish decoration unit 250 via the operation unit base 315. The effect operation unit cover unit 310 decorates the outer periphery of the performance operation unit 300 (around the effect operation unit 350) at the center in the left-right direction of the dish unit 200.

[0342] The performance operation unit cover unit 310 includes a hemispherical unit lower cover 311 that is open upward and rearward, and an annular unit upper cover 312 that is provided above the unit lower cover 311 and has an insertion port 312a through which the performance operation unit 301 is inserted. The unit lower cover 311 is formed in a hemispherical shape so as to cover the front and lower parts of the operation unit base 315. The unit upper cover 312 is formed so as to be continuous with the outer surface of the unit lower cover 311. That is, the outer surface of the performance operation unit cover unit 310 is formed in a substantially spherical shape. Incidentally, the performance operation unit cover unit 310 of the present embodiment is spherical with a diameter of 216 mm.

[0343] The performance operation unit cover unit 310 is attached in an inclined state such that the axis of the annular unit upper cover 312 is positioned forward as it goes upward. In the present embodiment, it is inclined at an angle of about 18 degrees (18.65 degrees) with respect to the vertical line.

[0344] When the performance operation unit cover unit 310 is assembled to the door frame 3, its front end is the front end of the door frame 3, and the distance from the front surface of the door frame base 101 to the front end of the unit lower cover 311 is about 1 / 2 of the total width of the door frame base 101 in the left-right direction.

[0345] At least the unit upper cover 312 of the performance operation unit cover unit 310 has translucency, and it can be decorated with light emission by the light emission of a plurality of LEDs of the performance operation unit outer peripheral decoration substrate 320 described later.

[0346] When the performance operation unit cover unit 310 is assembled to the dish unit 200, the front end protrudes significantly forward from the upper dish 201 and the lower dish 202. In addition, the performance operation unit cover unit 310 is connected such that the dish left decoration body 271 and the dish right decoration body 276 extend outward from both the left and right sides of the unit lower cover 311. Thereby, the performance operation unit 300 is made prominent, and the appearance is improved by integral decoration.

[0347] [3-5e-2. Operation Unit Base] The operation unit base 315 of the performance operation unit 300 will be described in detail mainly with reference to FIGS. 53 to 56 and the like. The operation unit base 315 is attached to the performance operation unit attachment portion 212a of the upper plate main body 212 in the dish base unit 210 at the rear side. The front and lower parts of the operation unit base 315 are covered by the unit lower cover 311, and the upper part is covered by the unit upper cover 312 and the performance operation unit 301. The operation unit base 315 is formed in a container shape with an open upper part.

[0348] The operation unit base 315 includes a substantially cubic box-shaped main body part 315a with an open upper part, and a flange part 315b that extends outward from the upper end of the main body part and has a circular outer periphery. The main body part 315a houses the performance operation unit 350 inside. Also, the lower ends of a pair of guide shafts 362 and a central shaft 366 of the performance operation unit lifting mechanism 360 in the performance operation unit 350 to be described later are attached to the bottom wall of the main body part 315a. Further, the lower end side of the adjustment screw 384 of the protrusion force adjustment mechanism 380 is rotatably supported on the upper surface of the bottom wall of the main body part 315a. Furthermore, the board base 331 of the operation unit relay board unit 330 is attached to the rear surface of the rear wall of the main body part 315a.

[0349] The upper surface of the flange part 315b has the performance operation unit outer peripheral decorative board 320 placed thereon. Also, an annular outer peripheral board cover 325 is attached to the flange part 315b so as to sandwich the performance operation unit outer peripheral decorative board 320. The unit upper cover 312 is attached to the outer peripheral board cover 325.

[0350] In the state where the operation unit base 315 is assembled to the performance operation unit 300, the upper surface of the flange part 315b is located substantially on the same plane as the upper surface of the unit lower cover 311.

[0351] [3-5e-3. Operation Unit Relay Board Unit] The operation unit relay board unit 330 of the performance operation unit 300 will be described in detail mainly with reference to Figures 53 to 56. The operation unit relay board unit 330 is attached to the rear surface of the operation unit base 315. The operation unit relay board unit 330 includes a board base 331 attached to the rear surface of the main body 315a of the operation unit base 315, an operation unit relay board 332 attached to the rear surface of the board base 331, and a board cover 333 attached to the board base 331 so as to cover the operation unit relay board 332 from behind.

[0352] The operation unit relay board 332 relays the connection between the performance operation unit outer decorative board 320 (front decorative board 321 and rear decorative board 322), button outer decorative board 355, vibration motor 356, contact detection sensor main body 358, button middle decorative board 364, operation button lifting drive motor 367, pressure detection sensor 373, lifting detection sensor 374, protrusion force detection sensor 375, and protrusion force adjustment drive motor 381 and the dish unit relay board 214 of the dish base unit 210.

[0353] [3-5e-4. Production Control Unit] The production operation unit 350 in the production operation unit 300 will be described in detail mainly with reference to Figures 53 to 56. The production operation unit 350 is provided so as to face outward from the insertion opening 312a of the unit upper cover 312 in the production operation unit cover unit 310, and can function as the touch operation unit 302 and the pressing operation unit 303.

[0354] The performance operation unit 350 comprises a cylindrical button body 351 with a bottom and a closed upper end, a disk-shaped contact detection body 352 attached to the upper part of the button body 351, a cylindrical button sleeve 353 inserted into the button body 351 from below, a disk-shaped button base 354 attached to the lower end of the button sleeve 353 and supported so that it can be raised and lowered by a performance operation unit lifting mechanism 360, and a circular outer button decorative board 355 arranged above the button base 354 and having multiple LEDs 355a mounted on its upper surface.

[0355] In addition, the effect operation unit 350 includes a vibration motor 356 disposed between the button body 351 and the button sleeve 353, a motor cover 357 that attaches the vibration motor 356 to the button sleeve 353, and a contact detection sensor body 358 that is connected to the contact detector 352 and attached to the outer periphery of the button sleeve 353.

[0356] The button body 351 is entirely formed transparently. The button body 351 has a disk-shaped upper surface portion 351a that curves upward to bulge, a cylindrical portion 351b that extends downward from the outer periphery of the upper surface portion 351a, and a locking portion 351c that protrudes downward from the lower end of the cylindrical portion 351b. The upper surface portion 351a is formed in a shape that constitutes a part of a spherical surface having the same diameter as the spherical surface of the effect operation unit cover unit 310. A circular decoration having a diameter of about 1 / 2 of the outer diameter is provided on the upper surface portion 351a. The outer diameter (diameter) of the upper surface portion 351a (cylindrical portion 351b) is about 5 / 8 of the diameter of the effect operation unit cover unit 310. The length (height) of the cylindrical portion 351b is about 5 / 8 of the diameter of the upper surface portion 351a. Four locking portions 351c are provided at equal intervals in the circumferential direction of the cylindrical portion 351b. The locking portion 351c is locked to the button base 354. Incidentally, the button body 351 of the present embodiment has a diameter of about 127 mm.

[0357] The contact detector 352 has a circular outer periphery and is formed in a dish shape with an inner portion of a certain width from the outer periphery bulging upward. The contact detector 352 is located at a position below the circular decoration on the upper surface portion 351a of the button body 351, bulging obliquely upward and having a flat inner portion. Thus, the contact detector 352 appears to be a part of the decoration of the button body 351. The contact detector 352 has flat lower extension pieces 352a extending downward from the left and right ends and the rear end of the outer peripheral edge. The contact detector 352 is attached to the lower surface of the upper surface portion 351a of the button body 351. The contact detector 352 is formed of punching metal. The contact detector 352 has its capacitance with respect to the total area suppressed by a plurality of holes in the punching metal, preventing false detection. Also, since the contact detector 352 is made of punching metal, light from the LED 364a of the button inner decoration substrate 364 provided below can be transmitted upward, enabling the central portion of the upper surface portion 351a of the button body 351 to be decorated with light in a good state.

[0358] The contact detector 352 is connected to the external electrode terminals of the connection connector in the contact detection sensor body 358. Thereby, the contact detector 352 can function as a sensor electrode for detecting capacitance, and can detect contact or approach of a detection target (the hand of a player) to the upper surface or side surface of the button body 351. That is, the contact detector 352 and the contact detection sensor body 358 can cause the button body 351 to function as a contact operation portion 302.

[0359] The button sleeve 353 has a tubular sleeve body 353a extending vertically and an annular flange portion 353b extending outward from the lower end of the sleeve body 353a. The button sleeve 353 is entirely formed transparently. The outer diameter of the sleeve body 353a is about 4 / 7 of the inner diameter of the button body 351, and the length is substantially the same as the length of the tubular portion 351b of the button body 351. The button sleeve 353 can transmit light from the plurality of LEDs 355a of the button outer decoration substrate 355 upward through the flange portion 353b.

[0360] The button base 354 is in the shape of a disk with a diameter approximately the same as the outer diameter of the button body 351, and is attached to the lower end of the button body 351 so as to close the open lower end side of the button body 351. The button base 354 includes a pair of guide holes 354a that penetrate vertically at symmetrically positioned parts with respect to the center, a central hole 354b that penetrates vertically at the center, and a pair of guide pins 354c that project from the inner surface of the central hole toward the center. The pair of guide holes 354a are each slidably inserted with a guide shaft 362 of the effect operation unit elevating mechanism 360. The central hole 354b is formed with an inner diameter of a size through which the elevating cam member 371 can pass. The pair of guide pins 354c face each other on the same axis and are rotatably attached around the axis.

[0361] The button base 354 further has a flat detection piece 354d that extends downward and is detected by a pressure detection sensor 373 of the effect operation unit elevating mechanism 360. The button base 354 has a locking portion 351c of the button body 351 locked to its outer peripheral surface. The button base 354 is guided to be vertically movable when a pair of guide shafts 362 are inserted through the pair of guide holes 354a. Also, the button base 354 is moved vertically when the pair of guide pins 354c are guided by a cam portion 371a of the elevating cam member 371. The upper ends of a pair of elevating springs 365 of the effect operation unit elevating mechanism 360 abut against the lower surface of the button base 354, and the button base 354 is biased upward by the pair of elevating springs 365.

[0362] A plurality of LEDs 355a are mounted on the upper surface of the button exterior decoration substrate 355. The plurality of LEDs 355a are arranged in rows on concentric double circumferences. More specifically, the plurality of LEDs 355a are provided at a position slightly outside the sleeve body 353a of the button sleeve 353 and at a position near the center of the width of the flange portion 353b. By appropriately lighting the LEDs 355a of the button exterior decoration substrate 355, the portion outside the contact detector 352 on the upper surface of the button body 351 and the side surface (circumferential surface) of the button body 351 can be decorated with light emission.

[0363] The vibration motor 356 has an eccentric weight attached to the rotating shaft, and can generate vibration by rotating the weight. The vibration motor 356 is arranged such that the rotating shaft extends in the left - right direction. In other words, the vibration motor 356 is arranged such that the rotating shaft extends in a direction orthogonal to the advancing and retracting direction of the effect operation unit 301. Also, the vibration motor 356 is provided at a position on a straight line passing through a pair of guide shafts 362 that guide the effect operation unit 301 in the vertical direction. Thereby, the vibration from the vibration motor 356 can be favorably transmitted to the effect operation unit 301. Also, the influence on the pair of guide holes 354a (the pair of guide shafts 362) due to the vibration by the vibration motor 356 can be reduced.

[0364] The contact detection sensor body 358 is a capacitance sensor. Although detailed illustration is omitted, the contact detection sensor body 358 has a sensor IC having a surge protection circuit, a transmission circuit, a detection and smoothing circuit, a comparison circuit, etc., an output circuit, a constant - voltage circuit that supplies power to the sensor IC and the output circuit, a sensor electrode, and a connection connector. The contact detection sensor body 358 can detect the capacitance of the sensor electrode inside it. Also, the connection connector of the contact detection sensor body 358 has an external electrode terminal connected to the sensor electrode, and the external electrode terminal is connected to the contact detection body 352. That is, the contact detection sensor body 358 can make the contact detection body 352 function as an external sensor electrode. The contact detection sensor body 358 detects the capacitance with the sensor electrode and outputs an ON signal when the capacitance exceeds a predetermined capacitance set by an external resistor. In this embodiment, an ON signal is output when the capacitance exceeds a predetermined capacitance, but it may output signals in multiple stages according to the magnitude of the capacitance.

[0365] Since the effect operation unit 350 of the present embodiment is provided with a contact detection body 352 that functions as a sensor electrode for detecting capacitance by a contact detection sensor body 358 on the lower surface of the upper surface portion 351a of the button body 351, it is possible to detect contact or approach of a detection target (the hand of a player) to the upper surface of the button body 351 via the contact detection body 352. Further, since the contact detection body 352 of the effect operation unit 350 has a plurality of downward extending pieces 352a that extend downward, it is possible to detect contact or approach of a detection target (the hand of a player) to the side surface of the button body 351 in a state where the effect operation unit 350 protrudes upward. For this reason, the effect operation unit 350 can cause the button body 351 to function as a contact operation unit 302 with the contact detection body 352 and the contact detection sensor body 358.

[0366] This effect operation unit 350 is supported by an effect operation unit elevating mechanism 360 so as to be movable up and down in the vertical direction. In the state where the effect operation unit 350 has moved to the lowest position (normal state), the upper surface portion 351a of the button body 351 coincides with the upper surface of the unit upper cover 312 of the effect operation unit cover unit 310, and the effect operation unit 300 looks like a single sphere. Then, in a state where the effect operation unit 350 is moved upward from the normal state by the effect operation unit elevating mechanism 360, the upper surface portion 351a of the button body 351 protrudes upward from the upper surface of the unit upper cover 312, and by pressing downward against the biasing force of the elevating spring 365, it can function as a pressing operation unit 303.

[0367] Specifically, in the state where the effect operation unit 350 has moved to the lowest position (normal state), even if it is pressed, it will not move further downward and is in a state where a pressing operation cannot be performed. In this normal state, the detection piece 354d of the button base 354 is detected by the pressing detection sensor 373 of the effect operation unit lifting mechanism 360. When the effect operation unit lifting mechanism 360 moves the effect operation unit 350 to a position above the normal state, the detection piece 354d of the button base 354 separates from the pressing detection sensor 373 and enters a non-detection state. Then, when the upper surface of the effect operation unit 350 is pressed downward and the effect operation unit 350 is lowered to the lower movement end against the biasing force of the lifting spring 365, the detection piece 354d of the button base 354 is detected by the pressing detection sensor 373. Thereby, the pressing operation of the effect operation unit 350 (pressing operation unit 303) is detected.

[0368] Also, since the effect operation unit 350 covers the upper part of the contact detection body 352 made of punching metal with the button main body 351, when operating the contact operation unit 302, the player touches the upper surface of the smooth spherical button main body 351, and the player does not directly touch the surface of the punching metal having unevenness due to a plurality of holes. Thus, the player can smoothly operate the contact operation unit 302. Further, since the contact detection body 352 is covered with the button main body 351, by forming fine unevenness, a plurality of streaks, etc. on the surface (upper surface) of the button main body 351, it is possible to impart an arbitrary tactile sensation to the contact operation unit 302, increase the degree of freedom in design for the contact operation unit 302, and provide the pachinko machine 1 that can make the player more entertained.

[0369] In the above description, the button body 351 is made transparent, but it is not limited to this. The button body 351 may be opaque or semi-transparent so that the lower side is difficult to visually recognize through it. As a result, since the contact detector 352 made of punching metal is difficult to see through the button body 351, the appearance of the effect operation unit 350 can be improved. Further, when the button body 351 is made opaque, it is desirable to make it have translucency. Thereby, the button body 351 can be decorated with light emission by the light from the LED 355a of the button exterior decoration substrate 355 provided below or the LED 364a of the button interior decoration substrate 364, and the player can be entertained by the light emission effect of the button body 351.

[0370] [3-5e-5. Effect operation unit lifting mechanism] The effect operation unit lifting mechanism 360 in the effect operation unit 300 will be described in detail mainly with reference to FIGS. 53 to 56 and the like. The effect operation unit lifting mechanism 360 is attached to the operation unit base 315 and can lift the effect operation unit 350. The effect operation unit lifting mechanism 360 includes a lift...

Claims

【Claim 1】 In a gaming machine including a game board mounted on a main body frame, the game board has a ball flow-down region where game balls can flow down, and a flow-down region part having permeability; a back decoration part provided behind the flow-down region part and having a decorative surface visible through the flow-down region part; a specific support member that supports the back decoration part behind the flow-down region part; and includes the specific support member has a predetermined main body part and a mounting hole, and is supported behind the flow-down region part by inserting a mounting screw through the mounting hole; the back decoration part is disposed between the front of the main body part of the specific support member and the back of the flow-down region part without being pasted behind the flow-down region part; the game balls flowing down the ball flow-down region provided in the flow-down region part, the specific support member, and the back decoration part are configured to be able to overlap in the front-rear direction; furthermore, the specific support member is formed smaller than the flow-down region part; furthermore, the specific support member is formed to have permeability; furthermore, a light-emitting part capable of emitting light is provided behind the back decoration part; the light-emitting part is arranged to be difficult to be visually recognized by the back decoration part; a gap larger than the thickness of the back decoration part is formed between the front of the main body part of the specific support member and the back of the flow-down region part A gaming machine characterized by the above.

Citation Information

Patent Citations

  • Pachinko game machine

    JP2011087622A

  • Pachinko game machine

    JP2015042197A

  • Game board and manufacturing method thereof

    JP2016086943A

  • Game machine

    JP2016137144A

  • Game machine

    JP2017077287A