Pachinko machine

The gaming machine optimizes ROM usage by incorporating a lottery table selection mechanism, addressing capacity constraints and improving operational efficiency.

JP7715429B2Active Publication Date: 2025-07-30UNIVERSAL ENTERTAINMENT CORP
View PDF 8 Cites 0 Cited by

Patent Information

Application Number
JP2024070446
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-04-24
Publication Date
2025-07-30
Estimated Expiration
2037-06-28

AI Technical Summary

Technical Problem

The limited ROM capacity of the main control board in gaming machines necessitates the storage of lottery tables and programs for AT games, leading to capacity pressures.

Method used

A gaming machine configuration that includes start operation detection, internal winning role determination, privilege granting determination, and a lottery table selection mechanism, allowing for efficient use of ROM capacity by storing lottery tables on both the main and sub-control boards.

Benefits of technology

This configuration reduces data processing capacity on the main control circuit and increases the free ROM capacity, enhancing the gaming machine's operational efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 0007715429000001
    Figure 0007715429000001
  • Figure 0007715429000002
    Figure 0007715429000002
  • Figure 0007715429000003
    Figure 0007715429000003
Patent Text Reader

Abstract

To reduce the amount of data used in processing of a main control circuit, and increase the free space of a ROM of the main control circuit.SOLUTION: In a game machine of the present invention, information on an internal lottery winning combination is commonly set for a plurality of types of internal lottery winning combinations, and the type of information on the internal lottery winning combination may be changed depending on the result of a conversion lottery. In a lottery table selection table, for each type of information on the internal lottery winning combination, it is possible to determine whether or not the information is a lottery target, a selection value that can designate a lottery table associated with the information on the internal lottery winning combination is specified, and data other than 0 is specified for the selection value of the information on the internal lottery winning combination that is the lottery target. Privilege imparting determination means has table data acquisition means for acquiring a predetermined address. The predetermined address is calculated on the basis of a selection data stored in selection data that is different from the selection value and the selection data.SELECTED DRAWING: Figure 122
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to a gaming machine.

Background Art

[0002] Conventionally, a gaming machine called pachislot is known, which includes a plurality of reels provided with a plurality of symbols on their respective surfaces, a start switch, a stop switch, a stepping motor provided corresponding to each reel, and a control unit. The start switch detects that the start lever has been operated by the player (hereinafter also referred to as "start operation") after a gaming medium such as a medal or a coin has been inserted into the gaming machine, and outputs a signal requesting the start of rotation of all reels. The stop switch detects that the stop button provided corresponding to each reel has been pressed by the player (hereinafter also referred to as "stop operation"), and outputs a signal requesting the stop of rotation of the corresponding reel. The stepping motor transmits its driving force to the corresponding reel. Further, the control unit controls the operation of the stepping motor based on the signals output by the start switch and the stop switch, and performs the rotation operation and stop operation of each reel.

[0003] In such a gaming machine, when a start operation is detected, a lottery process using a random number (hereinafter referred to as "internal lottery process") is performed on the program, and the rotation of the reels is stopped based on the result of the lottery (hereinafter referred to as "internal winning combination") and the timing of the stop operation. Then, when the rotation of all the reels is stopped and the combination of symbols (display combination) related to the establishment of a winning is displayed, a privilege corresponding to the combination of the symbols is given to the player. Examples of the privileges given to the player include the payout of a gaming medium (such as a medal), the activation of a replay (hereinafter also referred to as "replay") in which the internal lottery process is performed again without consuming the gaming medium, and the activation of a bonus game in which the payout opportunity of the gaming medium increases.

[0004] Conventionally, in a gaming machine with the above configuration, a gaming machine has been developed that has a function of navigating the establishment of a specific minor winning combination (a winning combination related to the payout of gaming media) with a lamp or the like, that is, an assist time (hereinafter referred to as "AT") function. Conventionally, a gaming machine has also been developed that has a function of activating a gaming state in which the winning probability of replay is higher than normal when a specific symbol combination is displayed, that is, a replay time (hereinafter referred to as "RT") function. Furthermore, conventionally, a pachislot machine with an assist replay time (hereinafter referred to as "ART") function in which AT and RT operate simultaneously has been developed.

[0005] The above-described gaming machine generally includes a main control board on which a circuit (main control circuit) for controlling main gaming operations of the gaming machine, such as determination of internal winning combinations, rotation and stop of each reel, and determination of presence or absence of winning, is mounted, and a sub-control board on which a circuit (sub-control circuit) for controlling effect operations by display of images and the like is mounted. And the gaming operation is controlled by a CPU (Central Processing Unit) mounted on the main control circuit. At this time, under the control of the CPU, the programs and various table data stored in the ROM (Read Only Memory) of the main control circuit are expanded in the RAM (Random Access Memory) of the main control circuit, and processing related to various gaming operations is executed.

[0006] Conventionally, among gaming machines with the above-described configuration, a gaming machine in which a lottery table for determining internal winning combinations and AT games is stored in the ROM is known (see, for example, Patent Document 1).

Prior Art Documents

Patent Documents

[0007]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0008] Incidentally, in the gaming machine described in Patent Document 1 above, the lottery table and lottery processing program for AT games are stored in the ROM provided on the sub-control board, which has sufficient memory capacity. However, for reasons specific to the gaming machine industry in recent years, it is also necessary to store the table and program related to the lottery of AT games in the ROM provided on the main control board. For this reason, the ROM capacity of the main control board, which is limited to a small capacity, will be pressured.

[0009] The present invention has been made to solve the above problems, and an object of the present invention is to provide a gaming machine capable of reducing the capacity of data used in the processing of the main control circuit and increasing the free capacity of the ROM of the main control circuit.

Means for Solving the Problems

[0010] In order to solve the above problems, the present invention provides a gaming machine having the following configuration.

[0011] Start operation detection means for detecting a start operation by a player (for example, the start switch 79 described later), Internal winning role determination means for determining an internal winning role with a predetermined probability based on the detection of the start operation by the start operation detection means (for example, the internal lottery process described later), Based on the information regarding the internal winning role determined by the internal winning role determination means, privilege granting determination means for determining by lottery whether to grant an advantageous gaming state for the player as a privilege (for example, the CT-in CT lottery process described later), A lottery table provided for each type of information regarding the internal winning role, which is referred to by the privilege granting determination means (for example, the CT-in CT lottery table described later), A lottery table selection table for selecting the lottery table associated with the information regarding the currently determined internal winning role (for example, the table selection relative table for each winning role described later), and is provided. The information regarding the internal lottery winning positions is, depending on its type, information that is commonly set for a plurality of types of internal lottery winning positions (for example, sub-flag data such as the sub-flag, sub-flag EX, sub-flag D, etc. described later). The type of the information regarding the internal lottery winning positions may change according to the result of the conversion lottery of the information regarding the internal lottery winning positions. In the lottery table selection table, For each type of the information regarding the internal lottery winning positions, a selection value (for example, the relative value described later) that can determine whether the information regarding the internal lottery winning positions of that type is a lottery target and can specify the arrangement destination of the lottery table associated with the information regarding the internal lottery winning positions of that type is defined. For the selection value of the information regarding the internal lottery winning positions that is not a lottery target, 0 which treats the lottery result by the privilege granting determination means as a losing result is defined. For the selection value of the information regarding the internal lottery winning positions that is a lottery target, data other than 0 is defined. The privilege granting determination means has table data acquisition means (for example, the table data acquisition process described later) for acquiring a predetermined address (for example, the address to be referred to in the CT middle CT lottery table described later) by referring to the lottery table selection table. Selection data (for example, the selection address described later) for acquiring the selection value and the predetermined address is included in the lottery table selection table. The predetermined address is calculated based on the selection value stored in the selection data, which is different from the selection value, and the selection data. A gaming machine characterized by the above.

Advantages of the Invention

[0012] According to the gaming machine of the present invention having the above configuration, it is possible to reduce the capacity of the data used in the processing of the main control circuit and increase the free capacity of the ROM of the main control circuit.

Brief Description of the Drawings

[0013]

Figure 1

Figure 2

Figure 3

Figure 4

Figure 5

Figure 6

Figure 7

Figure 8

Figure 9

Figure 10

Figure 11

Figure 12

Figure 13

Figure 14

Figure 15

Figure 16

Figure 17

Figure 18

Figure 19

Figure 20

Figure 21

Figure 22

Figure 23

Figure 24

Figure 25

Figure 26

Figure 27

Figure 28

Figure 29

Figure 30

Figure 31

Figure 32

Figure 33

Figure 34

Figure 35

Figure 36

Figure 37

Figure 38

Figure 39

Figure 40

Figure 41

Figure 42

Figure 43

Figure 44

Figure 45

Figure 46

Figure 47

Figure 48

Figure 49

Figure 50

Figure 51

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

Figure 247

Figure 248

Figure 249

Figure 250

Figure 251

Figure 252

Figure 253

Figure 254

Figure 255

Figure 256

Figure 257

Figure 258

Figure 259

Figure 260

Figure 261

Figure 262

Figure 263

Figure 264

Figure 265

Figure 266

Figure 267

Figure 268

Figure 269

Figure 270

Figure 271

Figure 272

Figure 273

Figure 274

Figure 275

Figure 276

Figure 277

Figure 278

Figure 279

Figure 280

Figure 281

Figure 282

Figure 283

Figure 284

Figure 285

Figure 286

Figure 287

Figure 288

Figure 289

Figure 290

Figure 291

Figure 292

Figure 293

Figure 294

Figure 295

Figure 296

Figure 297

Figure 298

Figure 299

Figure 300

Figure 301

Figure 302

Figure 303

DETAILED DESCRIPTION OF THE INVENTION

[0014] Hereinafter, a pachislot will be taken as an example of a gaming machine according to various embodiments of the present invention, and its configuration and operation will be described with reference to the drawings. In this embodiment, a pachislot equipped with a bonus operation function and an ART function will be described.

[0015] 1. First Embodiment <Function Flow> First, with reference to FIG. 1, the function flow of the pachislot will be described. In the pachislot of this embodiment, medals are used as gaming media for playing games. In addition to medals, for example, coins, game balls, game point data, tokens, etc. can also be applied as gaming media.

[0016] When a player inserts a medal into the pachislot and operates the start lever, one value (hereinafter referred to as a random number value) is extracted from a random number within a predetermined numerical range (for example, 0 to 65535).

[0017] The internal lottery means conducts a lottery based on the extracted random number value and determines the internal winning combination. This internal lottery means is one of the various processing means (processing functions) provided in the main control circuit described later. Based on the determination of the internal winning combination, a combination of symbols that permits display along a later-described effective line (winning determination line) is determined. As the types of symbol combinations, there are those related to "winning" in which benefits such as medal payout, replay activation, bonus activation, etc. are given to the player, and those related to so-called "losing". Hereinafter, the combination related to medal payout will be referred to as a "minor combination", the combination related to replay activation will be referred to as a "replay combination", and the combination related to bonus activation (bonus game) will also be referred to as a "bonus combination".

[0018] Also, when the start lever is operated, the rotation of a plurality of reels is performed. Then, when the stop button corresponding to a predetermined reel is pressed by the player, the reel stop control means performs control to stop the rotation of the corresponding reel based on the internal winning combination and the timing when the stop button is pressed. This reel stop control means is one of the various processing means (processing functions) provided in the main control circuit described later.

[0019] In pachislot machines, basically, control is performed to stop the rotation of the corresponding reel within a specified time (190 msec) from when the stop button is pressed. In the present embodiment, the number of symbols that move along with the rotation of the reel within this specified time is referred to as the "number of sliding symbols." And in the present embodiment, when the specified period is 190 msec, the maximum number of sliding symbols (maximum number of sliding symbols) is set to four symbols.

[0020] When an internal winning combination that permits the display of a winning symbol combination has been determined, the reel stop control means usually stops the rotation of the reel so that the symbol combination is displayed along the effective line as much as possible within the specified time of 190 msec (for four symbols). Also, the reel stop control means uses the specified time to stop the rotation of the reel so that a symbol combination whose display is not permitted by the internal winning combination is not displayed along the effective line.

[0021] In this way, when the rotation of all the plurality of reels has stopped, the winning determination means determines whether the symbol combination displayed along the effective line is a winning one. This winning determination means is also one of the various processing means (processing functions) provided in the main control circuit described later. And when the displayed symbol combination is determined by the winning determination means to be a winning one, benefits such as medal payout are given to the player. In pachislot machines, the series of processes as described above is performed as one game (unit game).

[0022] In pachislot machines, during the series of game operation processes described above, various effects are produced by using the display of images on a display device, the output of light from various lamps, the output of sound from a speaker, or a combination of these.

[0023] Specifically, when the start lever is operated, a random number value for effect is extracted, which is different from the random number value used for determining the internal winning combination described above. When the random number value for effect is extracted, the effect content determination means determines, by lottery, the effect to be executed this time from among a plurality of types of effect contents associated with the internal winning combination. This effect content determination means is one of the various processing means (processing functions) provided in the sub-control circuit described later.

[0024] Next, when the effect content is determined by the effect content determination means, the effect execution means executes the corresponding effect in conjunction with each timing such as the start of rotation of the reels, the stop of rotation of each reel, and the determination of the presence or absence of winning. In this way, in pachislot machines, for example, by executing the effect content associated with the internal winning combination, an opportunity for the player to know or predict the determined internal winning combination (in other words, the combination of symbols to aim for) is provided, and the player's interest can be enhanced.

[0025] <Structure of Pachislot Machine> Next, with reference to FIGS. 2 to 4, the structure of the pachislot machine according to the first embodiment of the present invention will be described.

[0026] [External Structure] FIG. 2 is a perspective view showing the external structure of the pachislot machine 1.

[0027] As shown in FIG. 2, the pachislot machine 1 includes an exterior body (game machine main body) 2. The exterior body 2 has a cabinet 2a that houses reels, a circuit board, etc., and a front door 2b that is attached to the opening of the cabinet 2a so as to be openable and closable.

[0028] Inside the cabinet 2a, three reels 3L, 3C, 3R (variable display means, display column) are arranged side by side horizontally. Hereinafter, each of the reels 3L, 3C, 3R (main reel) is also referred to as the left reel 3L, the middle reel 3C, and the right reel 3R, respectively. Each of the reels 3L, 3C, 3R has a reel body formed in a cylindrical shape and a translucent sheet material attached to the circumferential surface of the reel body. And on the surface of the sheet material, a plurality (for example, 20) of symbols are drawn at predetermined intervals along the circumferential direction (the rotation direction of the reel).

[0029] The front door 2b includes a door body 9, a front panel 10, a waist panel 12, and a pedestal portion 13. The door body 9 is attached to the cabinet 2a so as to be openable and closable using a hinge (not shown). The hinge is provided at the left side end portion of the door body 9 when viewed from the front side (the player side) of the pachislot 1.

[0030] The front panel 10 is provided at the upper part of the door body 9. This front panel 10 is composed of a frame-shaped member having an opening 10a. The opening 10a of the front panel 10 is closed by a display device cover 30, and the display device cover 30 is disposed opposite to a display device 11, which will be described later, disposed inside the cabinet 2a.

[0031] The display device cover 30 is formed of a black translucent synthetic resin. Therefore, the player can visually recognize the video (image) displayed by the display device 11 described later through the display device cover 30. Further, in the present embodiment, by forming the display device cover 30 of a black translucent synthetic resin, the entry of external light into the cabinet 2a is suppressed so that the video (image) displayed by the display device 11 can be clearly visually recognized.

[0032] The front panel 10 is provided with a lamp group 21. The lamp group 21 includes, for example, lamps 21a and 21b provided at the upper part of the front panel 10 as viewed from the player side. Each lamp constituting the lamp group 21 is composed of an LED (Light Emitting Diode) or the like (see the LED group 85 in FIG. 7 described later), and lights up and turns off in a pattern corresponding to the presentation content.

[0033] The waist panel 12 is provided at a substantially central portion of the door main body 9. The waist panel 12 has a decorative panel with an arbitrary image drawn thereon and a light source (an LED included in the LED group 85 described later) that emits light for illuminating the decorative panel from the back side.

[0034] The pedestal portion 13 is provided between the front panel 10 and the waist panel 12. The pedestal portion 13 is provided with a symbol display area 4 and various devices (a medal insertion port 14, a MAX bet button 15a, a 1 bet button 15b, a start lever 16, three stop buttons 17L, 17C, 17R, a settlement button (not shown), etc.) that are the objects of operation by the player.

[0035] The symbol display area 4 is an area that overlaps the three reels 3L, 3C, and 3R as viewed from the front, and is arranged at a position closer to the player than the three reels 3L, 3C, and 3R, and has a size that enables the three reels 3L, 3C, and 3R to be visible. This symbol display area 4 functions as a display window, and is configured to enable the respective reels 3L, 3C, and 3R provided behind it to be visible. Hereinafter, the symbol display area 4 will be referred to as the reel display window 4.

[0036] The reel display window 4 is configured such that when the rotation of the three reels 3L, 3C, and 3R provided behind it stops, three consecutively arranged symbols out of the plurality of symbols provided on the circumferential surfaces of the respective reels are displayed within its frame. That is, when the rotation of the three reels 3L, 3C, and 3R stops, one symbol (a total of three symbols) is displayed in each of the upper, middle, and lower regions for each reel (a total of three rows and three columns of symbols are displayed within the frame of the reel display window 4) within the frame of the reel display window 4. In this embodiment, a virtual line (center line) connecting the middle regions of the left reel 3L, the middle reel 3C, and the right reel 3R within the frame of the reel display window 4 is defined as the effective line for determining whether or not a winning occurs.

[0037] The reel display window 4 is formed by an opening in a frame member 31 provided on the pedestal portion 13. Also, a pedestal region on a substantially horizontal plane is provided below the frame member 31 that defines the reel display window 4. When viewed from the player side, a medal insertion slot 14 is provided on the right side of the pedestal region, and a MAX bet button 15a and a 1 - bet button 15b are provided on the left side.

[0038] The medal insertion slot 14 is provided to accept medals dropped into the pachislot 1 from the outside by the player. The medals accepted from the medal insertion slot 14 are used for one game with a preset maximum number of medals (for example, three medals) as the upper limit, and the number of medals exceeding the preset number can be stored inside the pachislot 1 (so - called credit function (game medium storage means)).

[0039] The MAX bet button 15a and the 1 - bet button 15b are provided to determine the number of medals to be used for one game from the medals stored inside the cabinet 2a. Note that a bet button LED (not shown) that lights up when medal insertion is possible is provided inside the MAX bet button 15a. Also, a pay - out button is provided to draw out (discharge) the medals stored inside the pachislot 1 to the outside.

[0040] When a player presses the MAX bet button 15a, medals corresponding to the bet number of medals per unit game (3 medals) are inserted, and the active lines are activated. On the other hand, each time the 1 bet button 15b is pressed once, 1 medal is inserted. When the 1 bet button 15b is pressed 3 times, medals corresponding to the bet number of medals per unit game (3 medals) are inserted, and the active lines are activated.

[0041] In the following, any operation of the MAX bet button 15a, the operation of the 1 bet button 15b, and the operation of inserting medals into the medal insertion slot 14 (the operation of inserting medals to play the game) are all referred to as "insertion operations".

[0042] The start lever 16 is provided to start the rotation of all the reels (3L, 3C, 3R). The stop buttons 17L, 17C, 17R are provided corresponding to the left reel 3L, the middle reel 3C, and the right reel 3R respectively, and each stop button is provided to stop the rotation of the corresponding reel. Hereinafter, the stop buttons 17L, 17C, 17R are also referred to as the left stop button 17L, the middle stop button 17C, and the right stop button 17R respectively.

[0043] Also, an information display 6 is provided approximately at the center of the pedestal area on the substantially horizontal plane below the reel display window 4. Note that the information display 6 is covered by a transparent window cover (not shown).

[0044] The information display 6 is provided with a two-digit 7-segment LED (hereinafter referred to as "7-segment LED") for digitally displaying (notifying) to the player the information on the number of medals paid out to the player as a privilege (hereinafter referred to as "payout number"), and a two-digit 7-segment LED for digitally displaying (notifying) to the player information such as the number of medals stored inside the pachislot machine 1 (hereinafter referred to as "credit number"). In this embodiment, the two-digit 7-segment LED for displaying the payout number of medals is also used as a two-digit 7-segment LED for digitally displaying (notifying) to the player the information on the occurrence of an error and the type of error. Therefore, when an error occurs, the display mode of the two-digit 7-segment LED for displaying the payout number of medals switches from the display mode of the payout number to the display mode of the error type information.

[0045] Furthermore, the information display 6 is provided with an instruction monitor (not shown) for notifying the player of the information on the stop operation necessary for displaying the symbol combination corresponding to the winning combination determined as the internal winning combination along the valid line. The instruction monitor (instruction display) is composed of, for example, a two-digit 7-segment LED. Then, in the instruction monitor, the two-digit 7-segment LED lights up, blinks, or turns off in a manner that uniquely corresponds to the information on the stop operation to be notified, thereby notifying the player of the information on the necessary stop operation.

[0046] Here, the manner of uniquely corresponding to the information on the stop operation to be notified means, for example, when notifying the pressing order "1st (perform the first stop operation on the left reel 3L)", displaying the numerical value "1" on the instruction monitor, when notifying the pressing order "2nd (perform the first stop operation on the middle reel 3C)", displaying the numerical value "2" on the instruction monitor, and when notifying the pressing order "3rd (perform the first stop operation on the right reel 3R)", displaying the numerical value "3" on the instruction monitor, and so on. The notification mode of the information on the stop operation in the instruction monitor (navi data determined on the main side, which will be described later) will be described in detail later with reference to FIG. 63.

[0047] As shown in FIG. 7 described later, the information display 6 is electrically connected to the main control board 71 via the door relay terminal board 68 and the game operation display board 81, and the display operation of the information display 6 is controlled by the main control circuit 90 described later in the main control board 71. Also, the control method for the various 7-segment LEDs described above is dynamic lighting control.

[0048] In addition, in the pachislot machine 1 of this embodiment, in addition to the instruction monitor controlled by the main control board 71, a configuration is provided for notifying the stop operation information using other means controlled by the sub-control board 72. Specifically, the stop operation information is notified by a display device 11 described later, which is constituted by a projector mechanism 211 and a display unit 212 (see FIGS. 3 and 7 described later).

[0049] When such a configuration is applied, the notification mode in the instruction monitor and the notification mode in other means controlled by the sub-control board 72 may be different from each other. That is, in the instruction monitor, it is sufficient to notify in a mode that uniquely corresponds to the stop operation information to be notified, and it is not necessarily necessary to directly notify the stop operation information (for example, even if the numerical value "1" is displayed on the instruction monitor, there is a possibility that the player may not be able to identify the notification content, and it cannot be said to be a direct notification). On the other hand, in the sub-side (sub-control board side) notification by other means such as the display device 11 described later, the stop operation information may be directly notified. For example, when notifying the push order "1st", the instruction monitor displays the numerical value "1" that uniquely corresponds to the push order to be notified, but in other means (for example, the display device 11, etc.), the instruction information for causing the first stop operation to be performed on the left reel 3L may be directly notified.

[0050] In the pachislot machine 1 configured as described above, not only the control of the sub-control board 72 but also the control of the main control board 71 can notify the information on the necessary stop operation according to the internal winning combination. Further, the presence or absence of the notification of such stop operation information may be controlled according to the game state. For example, in the general game state (non-ART game state) described later, the stop operation information may not be notified, and in the ART game state (refer to FIG. 14 described later), the stop operation information may be notified.

[0051] Also, as viewed from the player side, a sub-display device 18 is provided to the left of the reel display window 4. As shown in FIG. 2, the sub-display device 18 is provided so as to stand substantially vertically from the pedestal area of the substantially horizontal plane of the pedestal portion 13 in the front portion of the door main body 9. The sub-display device 18 is composed of a liquid crystal display or an organic EL (Electro-Luminescence) display and displays various information.

[0052] Also, a touch sensor 19 is provided on the display surface of the sub-display device 18 (refer to FIG. 7 described later). The touch sensor 19 operates according to a predetermined operation principle such as the capacitance method, and when receiving an operation by a player, outputs a signal corresponding to the operation as touch input information. Then, the pachislot machine 1 of the present embodiment has a function of being able to switch the display of the sub-display device 18 according to the operation of the player received via the touch sensor 19 (touch input information output from the touch sensor 19). Note that the sub-display device 18 is controlled by a sub-control board 72 (refer to FIG. 7 described later) based on the touch input information output from the touch sensor 19.

[0053] At the lower part of the door main body 9, a medal payout port 24, a medal tray 25, two speaker holes 20L, 20R, etc. are provided. The medal payout port 24 guides the medals discharged by the drive of a medal payout device 51 described later to the outside. The medal tray 25 stores the medals discharged from the medal payout port 24. Also, sounds such as effect sounds and music corresponding to the production content are output from the two speaker holes 20L, 20R.

[0054] [Internal Structure] Next, the internal structure of the pachislot machine 1 will be described with reference to FIGS. 3 and 4. FIG. 3 is a diagram showing the internal structure of the cabinet 2a, and FIG. 4 is a diagram showing the internal structure on the back side of the front door 2b.

[0055] As shown in FIG. 3, the cabinet 2a has an upper surface plate 27a, a bottom surface plate 27b, left and right side plates 27c and 27d, and a back plate 27e. And a display device 11 is disposed at the upper part inside the cabinet 2a.

[0056] The display device 11 has a projector mechanism 211 and a box-shaped projection member 212a on which the video light projected from the projector mechanism 211 is projected, and performs video display by projection mapping. Specifically, in the display device 11, video light is generated based on the position (such as projection distance and angle) and shape of the projection member 212a that becomes a three-dimensional object, and the video light is projected onto the surface of the projection member 212a by the projector mechanism 211. By providing such an effect function, a high-level and impressive effect can be achieved. Also, although not shown in FIG. 3, another projection member with a curved display surface is provided on the back side of the box-shaped projection member 212a, and depending on the gaming state, one of the projection members is used as a screen onto which the video light is projected. Therefore, a function (not shown) for switching the projection member is also provided inside the cabinet 2a according to the gaming state.

[0057] At the lower part inside the cabinet 2a, a medal payout device (hereinafter referred to as a hopper device) 51, a medal auxiliary storage 52, and a power supply device 53 are disposed.

[0058] The hopper device 51 is attached to the central portion of the bottom plate 27b in the cabinet 2a. This hopper device 51 has a structure capable of accommodating a large number of medals and discharging them one by one. The hopper device 51 pays out medals when the stored medals exceed, for example, 50 pieces, or when the settlement button is pressed and medal settlement is executed. Then, the medals paid out by the hopper device 51 are discharged from the medal payout port 24 (see FIG. 2).

[0059] The medal auxiliary storage 52 stores the medals that overflow from the hopper device 51. This medal auxiliary storage 52 is arranged on the right side of the hopper device 51 when looking at the inside of the cabinet 2a from the front. Also, the medal auxiliary storage 52 is detachably attached to the bottom plate 27b of the cabinet 2a.

[0060] The power supply device 53 has a power switch 53a and a power supply board 53b (power supply means) (see FIG. 7 described later). This power supply device 53 is arranged on the left side of the hopper device 51 when looking at the inside of the cabinet 2a from the front and is attached to the left side plate 27c. The power supply device 53 converts the 100V AC power supplied from a sub-power supply device (not shown) into the necessary DC power for each part and supplies the converted power to each part.

[0061] Also, above the power supply device 53 in the cabinet 2a, a sub-control board case 57 that houses a sub-control board 72 (see FIG. 7 described later) is arranged. A sub-control circuit 200 (see FIG. 10 described later) is mounted on the sub-control board 72 housed in the sub-control board case 57. This sub-control circuit 200 is a circuit that controls the execution of effects such as video display. The specific configuration of the sub-control circuit 200 will be described later.

[0062] Above the sub-control board case 57 in the cabinet 2a, a sub-relay board 61 is disposed. This sub-relay board 61 is a relay board on which wirings for connecting the sub-control board 72 and the main control board 71 (described later) are mounted. Also, the sub-relay board 61 is a relay board on which wirings for connecting the sub-control board 72 and boards and various device parts (units) disposed around the sub-control board 72 are mounted.

[0063] Although not shown in FIG. 3, a cabinet-side relay board 44 (see FIG. 7 described later) is disposed in the cabinet 2a. This cabinet-side relay board 44 is a relay board on which wirings for connecting the main control board 71 (see FIG. 7 described later) with each of the hopper device 51, the game medal auxiliary storage switch 77 (see FIG. 7 described later), and the medal payout count switch (not shown) are mounted.

[0064] As shown in FIG. 4, a middle door 41 is disposed at the central part on the back side of the front door 2b, and the reel display window 4 (see FIG. 2) is attached so as to be openable and closable from the back side. Although not shown in FIG. 4, three reels 3L, 3C, and 3R are attached to the reel display window 4 side of the middle door 41, and a main control board case 55 in which the main control board 71 (see FIG. 7 described later) is housed is attached to the side of the middle door 41 opposite to the reel display window 4 side. Note that a stepping motor (not shown) is connected to the three reels 3L, 3C, and 3R via a gear having a predetermined reduction ratio.

[0065] The main control board 71 housed in the main control board case 55 has a main control circuit 90 (see FIG. 9 described later). The main control circuit 90 (main control means) is a circuit that controls the main flow of the game in the pachislot 1, such as determination of the internal winning combination, rotation and stop of each of the reels 3L, 3C, and 3R, and determination of the presence or absence of winning. Also, in the present embodiment, for example, control such as lottery processing for determination of ART, display processing of navigation information on an instruction monitor, and transmission processing of various test signals is also performed by the main control circuit 90. The specific configuration of the main control circuit 90 will be described later.

[0066] On the back side of the front door 2b, below the middle door 41, speakers 65L and 65R are arranged. The speakers 65L and 65R are respectively arranged at positions facing the speaker holes 20L and 20R (see Fig. 2).

[0067] Also, above the speaker 65L, a selector 66 and a door opening / closing monitoring switch 67 are arranged. The selector 66 is a device for selecting whether the material, shape, etc. of the medal are appropriate, and guides the appropriate medal inserted into the medal insertion port 14 to the hopper device 51. A medal sensor (game medium detection means: not shown) for detecting that an appropriate medal has passed is provided on the path through which the medal passes in the selector 66.

[0068] The door opening / closing monitoring switch 67 is arranged diagonally below and to the left of the selector 66 when viewing the front door 2b from the back side. This door opening / closing monitoring switch 67 outputs a security signal for notifying the opening and closing of the front door 2b to the outside of the pachislot 1.

[0069] Also, although not shown in Fig. 4, on the back of the front door 2b, in the area opened and closed by the middle door 41 and below the reel display window 4, a door relay terminal board 68 is arranged (see Fig. 7 described later). This door relay terminal board 68 is a relay board on which wirings for connecting the main control board 71 in the main control board case 55 and each of various buttons, switches, the sub-relay board 61, the selector 66, the game operation display board 81, the first interface board 301 for the tester, and the second interface board 302 for the tester are mounted. Examples of various buttons and switches include the MAX bet buttons 15a and 15b, the 1 bet button 15b, the door opening / closing monitoring switch 67, the BET switch 77 described later, the start switch 79, etc.

[0070] <Display example of sub-display device> Here, with reference to FIGS. 5A to 5E, various display screens displayed on the sub-display device 18 will be described. Note that FIG. 5A is a diagram showing the top screen 221 displayed on the sub-display device 18, and FIG. 5B is a diagram showing the menu screen 222 displayed on the sub-display device 18. FIGS. 5C to 5E are diagrams showing the game information screens 223, 224, and 225 displayed on the sub-display device 18.

[0071] On the sub-display device 18, various display screens are displayed by the touch operation of the player. As shown in FIGS. 5A to 5E, various display screens including the top screen 221, the menu screen 222, and the game information screens 223, 224, and 225 are displayed. These display screens are switched based on the operation signal of the player received via the touch sensor 19.

[0072] The top screen 221 is the initial screen among the display screens displayed on the sub-display device 18. On the top screen 221, a "MENU" button 221a and a summary game history 221b are displayed. The "MENU" button 221a is an operation button for calling the menu screen 222 shown in FIG. 5B. When a predetermined operation (for example, tapping) is performed by the player on the "MENU" button 221a, the menu screen 222 is called. Also, on the top screen 221, as the summary game history 221b, a part of the game history (summary game history) of pachislot 1 is displayed. In the present embodiment, as the summary game history 221b, for example, the number of bonus times, the number of ART times, and the number of games (number of game times) are displayed.

[0073] The menu screen 222 is a screen that displays the menus that can be displayed on the sub-display device 18. On the menu screen 222, a "Return" button 222a, a "Register" button 222b, an "Explanation" button 222c, an "Array Allocation" button 222d, a "Reach Target" button 222e, a "Website" button 222f, and a "Volume" button 222g are displayed. The "Return" button 222a is an operation button for calling the top screen 221. When an operation by the player is performed on the "Return" button 222a, the top screen 221 is called. Also, the "Register" button 222b to the "Volume" button 222g are operation buttons for calling the display screens of the corresponding menu contents. When an operation by the player is performed on each button, the display screen of the corresponding menu content is called.

[0074] For example, when the "Register" button 222b is operated by the player on the menu screen 222, a registration screen (not shown) for registering the player during the game is called to the display screen of the sub-display device 18. In recent pachislot machines, a service for registering players for each model and managing various information such as the achievement status of defined missions from the player's past game history has been widely carried out. The registration screen called by the "Register" button 222b is a display screen for registering the player when receiving the provision of this service.

[0075] Also, for example, when the "Explanation" button 222c is operated by the player on the menu screen 222, an explanation screen (not shown) of the pachislot 1 is called to the display screen of the sub-display device 18. The information displayed on the explanation screen includes, for example, explanations regarding the specifications of the pachislot 1 such as the bonus winning probability and the ART winning probability for each set value, and introductions and explanations of the characters appearing in the effects of the pachislot 1.

[0076] Also, for example, when the "Array Payout" button 222d is operated by the player on the menu screen 222, the array payout screen (not shown) of the pachislot 1 is called up on the display screen of the sub-display device 18. On the array payout screen, for example, the correspondence relationship (payout table) between the combination of symbols determined to be winning in the pachislot 1 and the benefits when determined to be winning, the symbol sequences (reel arrays) drawn on each of the reels 3L, 3C, and 3R, etc. are displayed.

[0077] Also, for example, when the "Reach Target" button 222e is operated by the player on the menu screen 222, the reach target screen (not shown) of the pachislot 1 is called up on the display screen of the sub-display device 18. On the reach target screen, information on the symbol combination referred to as the "reach target" set in the pachislot 1 is displayed. The symbol combination referred to as the "reach target" is a symbol combination to which special benefits are granted when the symbol combination is displayed along the effective line. In the pachislot 1 of the present embodiment, the symbol combination corresponding to the abbreviation "Reach Target Rep" shown in the content column of the winning operation flag storage area in FIGS. 28 to 30 described later applies. And in the present embodiment, when the symbol combination related to "Reach Target Rep" is displayed along the effective line, it is then determined that the player will shift to an advantageous state (for example, a bonus state, normal ART or CT (see FIG. 14 described later)).

[0078] Also, for example, when the "WEB Site" button 222f is operated by the player on the menu screen 222, the WEB introduction screen (not shown) of the pachislot 1 is called up on the display screen of the sub-display device 18. On the WEB introduction screen, for example, a two-dimensional code (for example, a QR code (registered trademark)) indicating the URL of an arbitrary WEB site such as a special WEB site provided for each model of the pachislot 1 or the WEB site of the manufacturer of the pachislot 1 is displayed. The player can access the corresponding WEB site by reading the two-dimensional code displayed on the WEB introduction screen with a mobile phone or the like.

[0079] Also, for example, when the "Volume" button 222g is operated by the player on the menu screen 222, a volume adjustment screen (not shown) that can adjust the volume of the sound output from the speakers 65L and 65R is called up on the display screen of the sub-display device 18. The player can adjust the volume of the effect sound of the pachislot 1 via the volume adjustment screen.

[0080] Since the sub-display device 18 is provided separately from the above-described display device 11 (the projector mechanism 211 and the display unit 212), it can be controlled separately from the display device 11. Therefore, in the pachislot 1 of the present embodiment, even during the game (while the effect by the display device 11 is being executed), the display screen of the sub-display device 18 can be switched by the operation of the player. As a result, for example, when the player wants to know about the characters appearing in the effect of the display device 11, the player can grasp information such as the relationship between the characters during the game by operating the "Explanation" button 222c to call up the explanation screen. Also, for example, when the player wants to grasp the symbols that should be used as a guide to win a rare combination during the reel rotation when a so-called "rare combination" is won during the game, the player can grasp the reel arrangement by operating the "Arrangement Payout" button 222d to call up the arrangement payout screen.

[0081] The game information screens 223, 224, and 225 are display screens that display detailed game history information including the summary game history to be displayed on the top screen 221 of the game history of the pachislot 1.

[0082] On the game information screen 223, a "Return" button 223a, a "MENU" button 223b, a "Previous" button 223c, a "Next" button 223d, and a game history 223e are displayed. The "Return" button 223a and the "MENU" button 223b are operation buttons for calling the top screen 221 and the menu screen 222 to the display screen of the sub-display device 18, respectively. When the player operates each button, the corresponding display screen is called. Also, the "Previous" button 223c and the "Next" button 223d are operation buttons for switching the game information screen in a predetermined order. When the "Previous" button 223c is operated by the player, the display screen switches from the game information screen 223 to the game information screen 225, and when the "Next" button 223d is operated by the player, the display screen switches from the game information screen 223 to the game information screen 224. Further, as the game history 223e, as shown in FIG. 5C, the number of games (number of game plays), the number of bonus times, the number of ART times, and the number of CZ (Chance Zone) times are displayed.

[0083] On the game information screen 224, a "Return" button 224a, a "MENU" button 224b, a "Previous" button 224c, a "Next" button 224d, and a game history 214e are displayed. The "Return" button 224a and the "MENU" button 224b are operation buttons for calling the top screen 221 and the menu screen 222 to the display screen of the sub-display device 18, respectively. When the player operates each button, the corresponding display screen is called. Also, the "Previous" button 224c and the "Next" button 224d are operation buttons for switching the game information screen in a predetermined order. When the "Previous" button 224c is operated by the player, the display screen switches from the game information screen 224 to the game information screen 223, and when the "Next" button 224d is operated by the player, the display screen switches from the game information screen 224 to the game information screen 225. Further, as the game history 224e, the number of times of entering and the number of successful entries into the CZ (Chance Zone) described later are displayed. Note that, as will be described later, in the present embodiment, three types of CZs, CZ1, CZ2, and CZ3, are provided as the CZ. Therefore, as the game history 224e, as shown in FIG. 5D, the number of times of entering and the number of successful entries for each of CZ1 to CZ3 are displayed.

[0084] On the game information screen 225, a "Return" button 225a, a "MENU" button 225b, a "Previous" button 225c, a "Next" button 225d, and a game history 225e are displayed. The "Return" button 225a and the "MENU" button 225b are operation buttons for calling the top screen 221 and the menu screen 222 to the display screen of the sub-display device 18, respectively. When the player operates each button, the corresponding display screen is called. Also, the "Previous" button 225c and the "Next" button 225d are operation buttons for switching the game information screen in a predetermined order. When the "Previous" button 225c is operated by the player, the display screen switches from the game information screen 225 to the game information screen 224, and when the "Next" button 225d is operated by the player, the display screen switches from the game information screen 225 to the game information screen 223. Further, as the game history 225e, as shown in FIG. 5E, the number of times of winning a minor combination and the winning probability (a fraction with a numerator of 1) are displayed.

[0085] In addition, as a method for switching the display screen displayed on the sub-display device 18, for example, a method of switching based on a tap operation on an operation button displayed on each display screen may be adopted, or, for example, a method of switching based on a swipe operation on the display screen may be adopted.

[0086] <Various switching functions of the display screen of the sub-display device> Next, various switching functions of the display screen of the sub-display device 18 in the pachislot 1 of the present embodiment will be described.

[0087] [Transition example of the display screen of the sub-display device] First, with reference to FIGS. 6A and 6B, a transition example (switching mode) of the display screen of the sub-display device 18 in the pachislot 1 of the present embodiment will be described. Note that FIG. 6A is a diagram showing a transition example of the display screen of the sub-display device 18 in a situation where the player registration state is not set, and FIG. 6B is a diagram showing a transition example of the display screen of the sub-display device 18 in a situation where the player registration state is set.

[0088] In a situation where the player registration state is not set, as shown in FIG. 6A, the display screen of the sub-display device 18 can only transition between the top screen 221 and the menu screen 222, and between the menu screen 222 and various display screens that can be transitioned from the menu screen 222. The transition between these display screens is controlled by the sub-control board 72 (sub-CPU 201 described later). For example, the sub-control board 72 switches the display screen between the top screen 221 and the menu screen 222 based on a touch operation (for example, a tap operation on a predetermined button or a swipe operation on the display screen) acquired via the touch sensor 19. However, in a situation where the player registration state is not set, the sub-control board 72 controls so that the game information screens 223, 224, 225 cannot be displayed. That is, in a situation where the player registration state is not set, the player cannot display the game information screens 223, 224, 225 on the sub-display device 18.

[0089] On the other hand, in a situation where the player registration status is set, as shown in FIG. 6B, the display screen of the sub-display device 18 can transition not only between the top screen 221 and the menu screen 222, and between the menu screen 222 and various display screens that can be transitioned from the menu screen 222, but also between the menu screen 222 and the game information screens 223, 224, 225. The transition between these display screens is controlled by the sub-control board 72 (sub-CPU 201 described later). That is, the sub-control board 72 can switch the display screen not only between the top screen 221 and the menu screen 222, but also between each of the top screen 221 and the menu screen 222 and the game information screens 223, 224, 225 based on the touch operation acquired via the touch sensor 19. Therefore, in the present embodiment, when the player registration status is set, the player can display the game information screens 223, 224, 225 on the sub-display device 18.

[0090] As shown in FIG. 6B, the order of transition of the display screen among the top screen 221, the menu screen 222, and the game information screens 223, 224, 225 is arbitrary. Therefore, for example, a configuration may be adopted in which direct transition from the top screen 221 to the game information screens 223, 224, 225 is possible, or a configuration may be adopted in which transition to the game information screens 223, 224, 225 is possible only via the menu screen 222 from the top screen 221.

[0091] In the pachislot 1 of the present embodiment, a configuration is adopted in which transition to the game information screens 223, 224, 225 is possible only via the menu screen 222 from the top screen 221 (a configuration in which direct transition from the top screen 221 to the game information screens 223, 224, 225 is not possible). In the pachislot 1 of the present embodiment, on the menu screen 222, when the player performs a swipe operation (not a menu selection operation) on the display screen, the display screen can be transitioned from the menu screen 222 to the game information screens 223, 224, 225.

[0092] In addition, in the present embodiment, the game information screens 223, 224, and 225 are display screens provided completely independently of the menu screen 222. That is, in the pachislot 1 of the present embodiment, game history, which is information indicating the results of a game that players are strongly interested in during the game, is independently displayed as information unrelated to the results of the game such as the payout arrangement and volume adjustment. And in the present embodiment, in a situation where the player registration state is set, the game information screens 223, 224, and 225 can be displayed without the player performing a menu selection operation on the menu screen 222. Therefore, in the present embodiment, when the player registration state is set, the player can easily access the game history information that the player desires.

[0093] Also, in the present embodiment, in the menu selection operation for the menu screen 222, the display screen cannot be switched to the game information screens 223, 224, and 225, and the display screen cannot be switched to the game information screens 223, 224, and 225 unless a swipe operation (an operation not specified in the menu display) is performed on the menu screen 222. Therefore, in the pachislot 1 of the present embodiment, the swipe operation for switching the display screen to the game information screens 223, 224, and 225 can be treated as a hidden command in a situation where the player registration state is set. In this case, from the perspective of the player, since the player can view more detailed game history information that cannot be seen by other players with less knowledge based on the player's own knowledge of the pachislot 1, the player can play the game more advantageously than the other players, and as a result, it can be expected that the player will actively play the game.

[0094] [Function for switching display from game information screen to top screen] The pachislot machine 1 of this embodiment has a function of causing the display screen of the sub-display device 18 to transition from the game information screens 223, 224, and 225 to the top screen 221 manually by the player or automatically. Specifically, in this embodiment, when the "Return" button is operated on the game information screens 223, 224, and 225, the display screen transitions from the game information screens 223, 224, and 225 to the top screen 221 (manual transition function). Also, in this embodiment, when a predetermined condition is satisfied while the game information screens 223, 224, and 225 are being displayed, the display screen automatically transitions to the top screen 221 regardless of the player's operation (automatic transition function).

[0095] More specifically, in the pachislot machine 1, when an input operation (operation on the MAX bet button 15a, operation on the 1 bet button 15b, and operation of inserting medals into the medal insertion slot 14) is performed while the game information screens 223, 224, and 225 are being displayed, the display screen of the sub-display device 18 automatically transitions to the top screen 221. Note that in a game state where the probability of determining a replay role as an internal winning role is high (high replay state) such as the ART game state, medals are automatically inserted due to the activation of a replay game accompanying the winning of a replay role. As a result, in the high replay state, there is a possibility that the opportunity to display the game information screens 223, 224, and 225 will be restricted. Therefore, in the pachislot machine 1 of this embodiment, when medals are automatically inserted due to the activation of a replay game, the display screen automatically transitions from the game information screens 223, 224, and 225 to the top screen 221 triggered by the start operation instead of the medal input operation.

[0096] That is, in this embodiment, when a replay game is activated and the game information screens 223, 224, and 225 are being displayed, the display screen automatically transitions from the game information screens 223, 224, and 225 to the top screen 221 triggered by the start operation. On the other hand, when a replay game is not activated, the display screen automatically transitions from the game information screens 223, 224, and 225 to the top screen 221 triggered by the input operation.

[0097] [Function for switching display from menu content display screen to top screen (or menu screen)] The pachislot 1 of this embodiment has a function of transitioning the display screen of the sub-display device 18 from various menu content display screens (registration screen, explanation screen, arrangement and allocation screen, reach target screen, WEB introduction screen, and volume adjustment screen) that can be transitioned by menu selection operations for the menu screen 222 to the top screen 221 (or menu screen 222) manually or automatically by the player. Specifically, in this embodiment, when a predetermined button (for example, "Return to TOP" button) is operated on the menu content display screen, the display screen transitions from the menu content display screen to the top screen 221 (manual transition function). Also, in this embodiment, when a specific button (for example, "Back" button) is operated on the menu content display screen, the display screen transitions from the menu content display screen to the menu screen 222 (manual transition function).

[0098] Furthermore, in this embodiment, when a predetermined time elapses while the menu content display screen is being displayed, the display screen automatically transitions to the top screen 221 (or menu screen 222) regardless of the player's operation (automatic transition function). At this time, the predetermined time that triggers the automatic transition to the top screen 221 (or menu screen 222) varies depending on the type of the currently displayed menu content display screen. For example, if the volume adjustment screen for adjusting the volume output from the pachislot 1 is displayed for a long time, not only is there a risk that the volume will be adjusted to an unintended volume due to a misoperation, but there is also a risk of annoying other players due to a misoperation. Therefore, on the volume adjustment screen, it is set to automatically transition to the top screen 221 (or menu screen 222) in a shorter time than other menu content display screens. On the other hand, the registration screen is set to automatically transition to the top screen 221 (or menu screen 222) in a longer time than other menu content display screens in order to make it easier for the player to perform registration.

[0099] That is, for each menu content display screen, an elapsed time (automatic transition time) that triggers an automatic transition to the top screen 221 (or the menu screen 222) is appropriately set according to the type of the menu content display screen. For the volume adjustment screen, an automatic transition time shorter than that of other menu content display screens is set, and for the registration screen, an automatic transition time longer than that of other menu content display screens is set.

[0100] [Function for selecting whether menu operations are possible] In the pachislot 1 of the present embodiment, by causing the display screen of the sub-display device 18 to transition from the menu screen 222 to the registration screen, the explanation screen, the arrangement and distribution screen, the reach target screen, the WEB introduction screen, and the volume adjustment screen, the player can perform various operations according to these menu content display screens and can also confirm various information. In addition, a function (function for selecting whether menu operations are possible) may be provided so that such a function that the player can select a menu can be restricted according to the settings on the game parlor side.

[0101] For example, according to the settings on the game parlor side, it may be made impossible to transition the display screen from the menu screen 222 to the volume adjustment screen (for example, the "Volume" button 222g is not displayed on the menu screen 222). In this case, volume adjustment by the player can be made impossible.

[0102] <Control system provided in the pachislot> Next, the control system provided in the pachislot 1 will be described with reference to FIG. 7. FIG. 7 is a circuit block diagram showing the configuration of the control system of the pachislot 1.

[0103] The pachislot machine 1 has a main control board 71 provided in the middle door 41 and a sub-control board 72 provided in the front door 2b. The pachislot machine 1 also has a reel relay terminal board 74, a setting key-type switch 54 (setting switch), and a cabinet-side relay board 44 connected to the main control board 71. Further, the pachislot machine 1 has an external centralized terminal board 47, a hopper device 51, a medal auxiliary storage switch 75, a reset switch 76, and a power supply device 53 connected to the main control board 71 via the cabinet-side relay board 44. Since the configuration of the hopper device 51 has been described above, the description thereof is omitted here.

[0104] The reel relay terminal board 74 is disposed inside the reel main bodies of the respective reels 3L, 3C, and 3R. The reel relay terminal board 74 is electrically connected to stepping motors (not shown) of the respective reels 3L, 3C, and 3R, and relays signals output from the main control board 71 to the stepping motors.

[0105] The setting key-type switch 54 is provided on the main control board case 55. The setting key-type switch 54 is used when changing the settings (settings 1 to 6) of the pachislot machine 1 or when checking the settings of the pachislot machine 1.

[0106] The cabinet-side relay board 44 is a relay board on which wirings for connecting the main control board 71 and each of the external centralized terminal board 47, the hopper device 51, the medal auxiliary storage switch 75, the reset switch 76, and the power supply device 53 are mounted. The external centralized terminal board 47 is provided for outputting signals such as a medal insertion signal, a medal payout signal, and a security signal to the outside of the pachislot machine 1. The medal auxiliary storage switch 75 is provided in the medal auxiliary storage 52 and detects whether the medal auxiliary storage 52 is full of medals. The reset switch 76 is used, for example, when changing the settings of the pachislot machine 1.

[0107] The power supply device 53 includes a power supply board 53b and a power switch 53a connected to the power supply board 53b. The power switch 53a is pressed when supplying power necessary for the pachislot 1. The power supply board 53b is connected to the main control board 71 via the cabinet-side relay board 44 and is also connected to the sub-control board 72 via the sub-relay board 61.

[0108] In addition, the pachislot 1 has a door relay terminal board 68, and a selector 66, a door open / close monitoring switch 67, a BET switch 77, a settlement switch 78, a start switch 79, a stop switch board 80, a game operation display board 81, a sub-relay board 61, a first interface board 301 for a testing machine, and a second interface board 302 for a testing machine, which are connected to the main control board 71 via the door relay terminal board 68. Note that the selector 66, the door open / close monitoring switch 67, and the sub-relay board 61 have been described above, so their descriptions are omitted here.

[0109] The BET switch 77 (input operation detection means) detects that the MAX bet button 15a or the 1 bet button 15b has been pressed by the player. The settlement switch 78 detects that a settlement button (not shown) has been pressed by the player. The start switch 79 (start operation detection means) detects that the start lever 16 has been operated by the player (start operation).

[0110] The stop switch board 80 (stop operation detection means) includes a circuit for stopping the rotating main reel and a circuit for displaying the stoppable main reel using an LED or the like. In addition, a stop switch (not shown) is provided on the stop switch board 80. The stop switch detects that each stop button 17L, 17C, 17R has been pressed by the player (stop operation).

[0111] The gaming operation display board 81 is connected to the information display (7-segment display) 6 and the LED 82. The LED 82 includes, for example, three LEDs for displaying the number of medals inserted in the current game (hereinafter referred to as the "inserted number") (hereinafter referred to as the "first LED" to the "third LED") that light up corresponding to the number of medals inserted, and LEDs that light up marks indicating that medal insertion is possible, a mark indicating the start of the game, a mark for performing a replay, etc. based on signals input from the gaming operation display board 81. In the first LED to the third LED (display means), when one medal is inserted, the first LED lights up; when two medals are inserted, the first and second LEDs light up; when three medals (the number of medals that enables the start of the game) are inserted, the first LED to the third LED light up. Since the information display 6 has been described above, its description is omitted here.

[0112] Both the first interface board 301 for the testing machine and the second interface board 302 for the testing machine are relay boards used for outputting various signals related to the game to the testing machine in the inspection test (firing test) of the pachislot 1 (note that these relay boards are not installed in the pachislot 1 as a release product for sale, so various electronic components necessary for connecting to the first interface board 301 for the testing machine and the second interface board 302 for the testing machine are not mounted on the main control circuit 90 of the main control board 71 for sale either). For example, a test signal for controlling a major operation related to the game (e.g., internal lottery, reel stop control, etc.) is output via the first interface board 301 for the testing machine, and a test signal related to the push order navigation determined by the main control board 71, for example, is output via the second interface board 302 for the testing machine.

[0113] The sub-control board 72 is connected to the main control board 71 via the door relay terminal board 68 and the sub-relay board 61. The pachislot 1 has a speaker group 84, an LED group 85, a 24-hour door opening / closing monitoring unit 63, a touch sensor 19, and a display unit 212, which are connected to the sub-control board 72 via the sub-relay board 61. Since the touch sensor 19 has been described above, its description is omitted here.

[0114] The speaker group 84 is composed of speakers 65L and 65R and various speakers (not shown). The LED group 85 includes a lamp group 21 provided on the front panel 10 and a light source that emits light for illuminating the decorative panel of the waist panel 12 from the back side. The 24-hour door opening / closing monitoring unit 63 stores the history information of the opening and closing of the middle door 41. Also, when the middle door 41 is opened, the 24-hour door opening / closing monitoring unit 63 outputs a signal for error display to the sub-control board 72 (sub-control circuit 200) by the display device 11. The display unit 212 includes, for example, a projection member 212a that constitutes the display device 11 and another projection member provided on the back side of the projection member 212a with a curved display surface.

[0115] The pachislot 1 also has a ROM cartridge board 86 and a liquid crystal relay board 87, which are connected to the sub-control board 72. The ROM cartridge board 86 and the liquid crystal relay board 87 are housed in the sub-control board case 57 together with the sub-control board 72.

[0116] The ROM cartridge board 86 is a board for managing various control programs executed by the sub-CPU 201, as well as images (videos), sounds (speaker group 84), lights (LED group 85), and communication data for effects. The liquid crystal relay board 87 is a board for relaying the connection wiring between the sub-control board 72, the projector mechanism 211 that constitutes the display device 11, and the sub-display device 18. Since the projector mechanism 211 and the sub-display device 18 have been described above, their descriptions are omitted here.

[0117] <Main control circuit> Next, with reference to FIG. 8, the configuration of the main control circuit 90 mounted on the main control board 71 will be described. FIG. 8 is a block diagram showing a configuration example of the main control circuit 90 of the pachislot machine 1.

[0118] The main control circuit 90 includes a microprocessor 91, a clock pulse generation circuit 92, a power management circuit 93, and a switching regulator 94 (power supply means).

[0119] The microprocessor 91 is a microprocessor with a security function for gaming machines. In the microprocessor 91 of the present embodiment, as will be described later, various instruction codes peculiar to the microprocessor 91 that can be specified in the source program (for example, the "LDQ" instruction described later: hereinafter referred to as the "main CPU 101 dedicated instruction code") are provided. In the present embodiment, by using this main CPU 101 dedicated instruction code, the efficiency of processing and the reduction of program capacity are realized. The internal configuration of the microprocessor 91 will be described in detail with reference to FIG. 9 described later, and the main CPU 101 dedicated instruction code provided in the microprocessor 91 will be described in detail in various processes executed by the main control circuit described later.

[0120] The clock pulse generation circuit 92 generates a clock pulse signal for main CPU operation and outputs the generated clock pulse signal to the microprocessor 91. The microprocessor 91 executes a control program based on the input clock pulse signal.

[0121] The power management circuit 93 manages the fluctuations in the DC 12V power supply voltage supplied from the power supply board 53b (see FIG. 7). When the power is turned on (when the power supply voltage exceeds the startup voltage value (10V) from 0V), for example, the power management circuit 93 outputs a reset signal to the "XSRST" terminal of the microprocessor 91. When a power failure occurs (when the power supply voltage falls below the power failure voltage value (10.5V) from 12V), the power management circuit 93 outputs a power failure detection signal to the "XINT" terminal of the microprocessor 91. That is, the power management circuit 93 also serves as means (startup means) for outputting a reset signal (startup signal) to the microprocessor 91 when the power is turned on, and means (power failure means) for outputting a power failure detection signal (power failure signal) to the microprocessor 91 when a power failure occurs.

[0122] The switching regulator 94 is a DC / DC conversion circuit that generates the DC drive voltage (DC 5V power supply voltage) of the microprocessor 91 and outputs the generated DC drive voltage to the "VCC" terminal of the microprocessor 91.

[0123] <Microprocessor> Next, with reference to FIG. 9, the internal configuration of the microprocessor 91 will be described. FIG. 9 is a block diagram showing the internal configuration of the microprocessor 91.

[0124] The microprocessor 91 includes a main CPU 101, a main ROM 102 (first storage means), a main RAM 103 (second storage means), an external bus interface 104, a clock circuit 105, a reset controller 106, an arithmetic circuit 107, a random number circuit 110 (random number generation circuit), a parallel port 111, an interrupt controller 112, a timer circuit 113, a first serial communication circuit 114, and a second serial communication circuit 115. These components constituting the microprocessor 91 are connected to each other via a signal bus 116.

[0125] Based on the clock pulses generated by the clock circuit 105, the main CPU 101 executes various control programs to perform control related to the entire gaming operation. Here, reel stop control will be described as an example of the control operation of the main CPU 101.

[0126] The main CPU 101 counts the number of pulses output to the stepping motors of each of the reels 3L, 3C, 3L (main reels) after detecting the reel index. Thereby, the main CPU 101 manages the rotation angle of each reel (mainly, how many symbols the reel has rotated). Note that the reel index is information indicating that the reel has made one full rotation. This reel index is detected, for example, by a reel position detection unit (not shown) including an optical sensor having a light emitting part and a light receiving part, and a detection piece provided at a predetermined position of each reel and interposed between the light emitting part and the light receiving part by the rotation of each main reel.

[0127] Here, the management of the rotation angle of each of the reels 3L, 3C, 3L (main reels) will be specifically described. The number of pulses output to the stepping motor is counted by a pulse counter provided in the main RAM 103. And each time the output of a predetermined number of pulses required for one symbol rotation is counted by the pulse counter, the symbol counter provided in the main RAM 103 is incremented by one. The symbol counter is provided corresponding to each reel. The value of the symbol counter is cleared when the reel index is detected by a reel position detection unit (not shown).

[0128] That is, in this embodiment, by managing the symbol counter, it is managed how many symbol rotations have been made since the reel index was detected. Therefore, the position of each symbol of each reel is detected based on the position where the reel index is detected.

[0129] The main ROM 102 stores various control programs executed by the main CPU 101, various data tables, data for transmitting various control commands (commands) to the sub-control circuit 200, and the like. The main RAM 103 is provided with a storage area for storing various data such as internal lottery results determined by the execution of the control program. The internal configurations (memory maps) of the main ROM 102 and the main RAM 103 will be described in detail with reference to FIG. 12 described later.

[0130] The external bus interface 104 is an interface circuit for electrically connecting an external signal bus (not shown) to which various components (for example, each reel, etc.) provided outside the microprocessor 91 are connected and the microprocessor 91. The clock circuit 105 includes, for example, a frequency divider (not shown) and the like, and converts the clock pulse signal for CPU operation input from the clock pulse generation circuit 92 into a clock pulse signal having a frequency used by other components (for example, the timer circuit 113). The clock pulse signal generated by the clock circuit 105 is also output to the reset controller 106.

[0131] The reset controller 106 performs reset of the IAT (Illegal Address Trap) and the WDT (watchdog timer) based on the reset signal input from the power management circuit 93. The arithmetic circuit 107 includes a multiplication circuit and a division circuit. For example, when executing the "MUL (multiplication)" instruction (see FIG. 93B described later) on the source program, the arithmetic circuit 107 executes the multiplication process based on this "MUL" instruction.

[0132] The random number circuit 110 generates random numbers within a predetermined range (for example, 0 to 65535 or 0 to 255). Although not shown in the figure, the random number circuit 110 is composed of a random number register 0 for obtaining 2-byte hard latch random numbers, random number registers 1 to 3 for obtaining 2-byte soft latch random numbers, and random number registers 4 to 7 for obtaining 1-byte soft latch random numbers. The main CPU 101 extracts one value from the random numbers within the predetermined range generated by the random number circuit 110 as, for example, a random number value for internal lottery. The parallel port 111 is a port (memory map I / O) for signals input and output between the microprocessor 91 and various circuits (for example, the power management circuit 93, etc.) provided outside the microprocessor 91. The parallel port 111 is also connected to the random number circuit 110 and the interrupt controller 112. The start switch 79 is connected to any of the input ports PI0 to PI4 of the parallel port 111. At the timing (on edge) when the start switch 79 is turned on, a latch signal is output from the parallel port 111 to the random number register 0 of the random number circuit 110. Then, in the random number circuit 110, the random number register 0 is latched when the latch signal is input, and 2-byte hard latch random numbers are obtained.

[0133] The interrupt controller 112 controls the execution timing of the interrupt process by the main CPU 101 based on the power-off detection signal input from the power management circuit 93 via the parallel port 111 or the timeout signal input from the timer circuit 113 at a cycle of 1.1172 ms. When the power-off detection signal is input from the power management circuit 93 or the timeout signal is input from the timer circuit 113, the interrupt controller 112 outputs an interrupt request signal indicating an interrupt process start command to the main CPU 101. The main CPU 101 performs various interrupt processes (refer to FIG. 158 described later), such as input port check processing, reel control processing, communication data transmission processing, 7-segment LED drive processing, and timer update processing, based on the interrupt request signal input from the interrupt controller 112 in response to the timeout signal from the timer circuit 113.

[0134] The timer circuit 113 (PTC) operates (counts the elapsed time) with the clock pulse signal generated by the clock circuit 105 (a clock pulse signal having a frequency obtained by dividing the clock pulse signal for main CPU operation by a divider (not shown)). Then, the timer circuit 113 outputs a timeout signal (trigger signal) to the interrupt controller 112 at a period of 1.1172 msec.

[0135] The first serial communication circuit 114 is a circuit that controls the serial transmission operation when transmitting data (various control commands (commands)) from the main control board 71 to the sub-control board 72. The second serial communication circuit 115 is a circuit that controls the serial transmission operation when transmitting data from the main control board 71 to the second interface board 302 for the testing machine.

[0136] <Sub-control circuit> Next, with reference to FIG. 10, the configuration of the sub-control circuit 200 (sub-control means) mounted on the sub-control board 72 will be described. FIG. 10 is a block diagram showing a configuration example of the sub-control circuit 200 of the pachislot 1.

[0137] The sub-control circuit 200 is electrically connected to the main control circuit 90, and performs processes such as determination and execution of production contents based on the commands transmitted from the main control circuit 90. The sub-control circuit 200 basically includes a sub-CPU 201, a sub-RAM 202, a rendering processor 203, a drawing RAM 204, and a driver 205.

[0138] Note that the sub-CPU 201 is connected to the ROM cartridge board 86. The driver 205 is connected to the liquid crystal relay board 87. That is, the driver 205 is connected to the projector mechanism 211 and the sub-display device 18 via the liquid crystal relay board 87.

[0139] The sub-CPU 201 controls the output of video, sound, and light according to the commands transmitted from the main control circuit 90, in accordance with the control program stored in the ROM cartridge board 86. The ROM cartridge board 86 is basically composed of a program storage area and a data storage area.

[0140] The control program to be executed by the sub-CPU 201 is stored in the program storage area. For example, the control program includes various programs for executing a main board communication task for controlling communication with the main control circuit 90, an effect registration task for extracting random numbers for effects and determining and registering effect contents (effect data). Also, the control program includes various programs for executing a drawing control task for controlling the display of video by the display device 11 based on the determined effect contents, a lamp control task for controlling the output of light by a light source such as the LED group 85, an audio control task for controlling the output of sound by the speaker group 84, and the like.

[0141] The data storage area includes a storage area for storing various data tables, a storage area for storing effect data constituting each effect content, and a storage area for storing animation data related to the creation of video. Also, the data storage area includes a storage area for storing sound data related to BGM and sound effects, a storage area for storing lamp data related to the pattern of lighting and extinguishing of light, and the like.

[0142] In the sub-RAM 202, a storage area for registering the determined effect contents and effect data, and a storage area for storing various data such as sub-flags (internal lottery flags) transmitted from the main control circuit 90 are provided.

[0143] The sub-CPU 201, the rendering processor 203, the rendering RAM (including the frame buffer) 204, and the driver 205 create an image according to the animation data specified by the production content, and display the created image on the display device 11 (the projector mechanism 211) and / or the sub-display device 18. Note that the display device 11 (the projector mechanism 211) and the sub-display device 18 are individually controlled by the sub-control board 72.

[0144] In addition, the sub-CPU 201 outputs sounds such as BGM from the speaker group 84 according to the sound data specified by the production content. Also, the sub-CPU 201 controls the lighting and extinguishing of the LED group 85 according to the lamp data specified by the production content.

[0145] <Various registers of the main CPU> Next, various registers of the main CPU 101 will be described with reference to FIG. 11. Note that FIG. 11 is a schematic configuration diagram of various registers included in the main CPU 101.

[0146] The main CPU 101 has, as main registers, an accumulator A (hereinafter referred to as the "A register"), a flag register F (flag register), a general-purpose register B (hereinafter referred to as the "B register"), a general-purpose register C (hereinafter referred to as the "C register"), a general-purpose register D (hereinafter referred to as the "D register"), a general-purpose register E (hereinafter referred to as the "E register"), a general-purpose register H (hereinafter referred to as the "H register"), and a general-purpose register L (hereinafter referred to as the "L register"). Also, the main CPU 101 has, as sub-registers, an accumulator A', a flag register F', a general-purpose register B', a general-purpose register C', a general-purpose register D', a general-purpose register E', a general-purpose register H', and a general-purpose register L' as general-purpose registers. Note that each register is composed of 1-byte registers.

[0147] Also, in this embodiment, the B register and the C register are used as a pair register (hereinafter referred to as the "BC register"), and the D register and the E register are used as a pair register (hereinafter referred to as the "DE register"). Further, in this embodiment, the H register and the L register are used as a pair register (hereinafter referred to as the "HL register").

[0148] As shown in FIG. 11, predetermined flag information indicating the result of arithmetic processing or the like is set in each bit of the flag registers F and F'. For example, in bit 6 (D6), data (zero flag) indicating whether the arithmetic result is "0" or not in the determination process of the arithmetic result is set. Specifically, when the arithmetic result is "0", the data "1" is set in bit 6, and when the arithmetic result is not "0", the data "0" is set in bit 6. In the determination process of the arithmetic result, the main CPU 101 makes a determination (YES / NO) by referring to the data "0" / "1" of bit 6.

[0149] The main CPU 101 also has an extended register Q (hereinafter referred to as the "Q register"). The Q register is composed of a 1-byte register. In this embodiment, as will be described in various processing flows hereinafter, on the source program, various main CPU 101 dedicated instruction codes for specifying an address using this Q register are provided. By using this instruction code, the efficiency of processing and the reduction of the capacity of the main ROM 102 are realized. In the various main CPU 101 dedicated instruction codes for specifying an address using the Q register, the upper address data (address value) of the address is stored in the Q register. Immediately after the reset of the main CPU 101, "F0H" is set as the initial value in the Q register. Also, in the "LD Q,n (8-bit data)" instruction using the Q register, the value of the Q register can be changed by setting any 1-byte data in "n" and executing the instruction.

[0150] Furthermore, the main CPU 101 has, as dedicated registers, an interrupt page address register I and a memory refresh register R, each composed of 1-byte registers, and an index register IX, an index register IY, a stack pointer SP, and a program counter PC, each composed of 2-byte registers.

[0151] <Internal Configuration of Main ROM and Main RAM (Memory Map)> Next, with reference to FIGS. 12A to 12C, the internal configuration (hereinafter referred to as the "memory map") of the main ROM 102 and the main RAM 103 included in the main control circuit 90 (microprocessor 91) will be described. Note that FIG. 12A is a diagram showing the memory map of the entire memory, FIG. 12B is a diagram showing the memory map of the main ROM 102, and FIG. 12C is a diagram showing the memory map of the main RAM 103.

[0152] In the memory map of the entire memory provided in the main control circuit 90 (microprocessor 91), as shown in FIG. 12A, from the head (0000H) side of the address, the memory area of the main ROM 102, the memory area of the main RAM 103, the built-in register area, and the XCS decode area are arranged at predetermined addresses in this order, with unused areas sandwiched therebetween.

[0153] In the memory map of the main ROM 102, as shown in FIG. 12B, from the head (0000H) side of the address of the main ROM 102, a program area, a data area, an out-of-specification area, a trademark recording area, a program management area, and a security setting area are arranged at predetermined addresses in this order.

[0154] In addition, in the program area, control programs for various processes executed by the main CPU 101 are stored in various control processes related to the gameplay of the game implemented by the player. In the data area, various data used by the main CPU 101 (for example, data tables such as internal lottery tables, data for sending various control commands (commands) to the sub-control circuit 42, etc.) are stored in various control processes related to the gameplay of the game implemented by the player. That is, in the game ROM area (game storage area) consisting of the program area and the data area, various programs and various data necessary for control processes (processes related to gameplay) related to the gameplay of the game actually played by the player in the game parlor are stored.

[0155] Also, in the out-of-specification area, control programs and data for various processes that do not directly participate in the gameplay of the game implemented by the player (processes that do not affect gameplay) are stored. For example, programs and data used in the inspection test (firing test) of Pachisuro 1, control programs and data used in checksum generation processing during power failure and sum check processing during power-on recovery, and anti-cheating programs and necessary data thereof are stored in the out-of-specification area.

[0156] In the memory map of the main RAM 103, as shown in FIG. 12C, from the head (F000H) side of the address of the main RAM 103, the game RAM area (predetermined storage area, game temporary storage area) and the out-of-specification RAM area (out-of-specification temporary storage area) are arranged at predetermined addresses in this order.

[0157] In the game RAM area, a work area and a stack area for temporarily storing various data such as internal winning roles determined by the execution of control programs related to the gameplay of the game implemented by the player are provided. And each of the various data is stored in the work area at a predetermined address within the game RAM area.

[0158] In addition, in the out-of-specification RAM area, an out-of-specification work area serving as a work area for various processes that do not directly affect the gameplay of the game performed by the player and an out-of-specification stack are provided. In the present embodiment, using this out-of-specification RAM area, various processes that do not directly affect the gameplay of the game performed by the player, such as sum check processing, are executed.

[0159] As described above, in the pachislot machine 1 of the present embodiment, in the main ROM 102, various programs and various data (tables) used for various processes that do not directly affect the gameplay of the game performed by the player are stored in an out-of-specification ROM area (out-of-specification storage area) arranged at an address different from the game ROM area. In addition, such various processes that do not directly affect the gameplay of the game performed by the player are performed in the main RAM 103 using an out-of-specification RAM area arranged at an address different from the game RAM area.

[0160] With such a configuration of the main ROM 102, programs and data that are unnecessary for the game itself actually played by the player can be arranged in the ROM area (out-of-specification ROM area) where arrangement of programs and the like has been prohibited under the conventional rules. Therefore, in the present embodiment, it is possible to avoid compressing the capacity of the game ROM area.

[0161] <Transition Flow of Game States> Next, with reference to FIGS. 13 and 14, various game states and their transition flows managed by the main control circuit 90 (main CPU 101) of the pachislot machine 1 of the present embodiment will be described. Note that FIG. 13A is a transition flow diagram of the basic game states of the pachislot machine 1, and FIG. 13B is a table summarizing the transition conditions of those game states. Further, FIG. 14A is a transition flow diagram of game states considering the presence or absence of the operation of the notification (ART) function, and FIG. 14B is a table summarizing the transition conditions of those game states.

[0162] [Transition Flow of Basic Game States] In the pachislot machine 1 of this embodiment, a big bonus (hereinafter referred to as "BB") is provided as a type of bonus game. BB is a special effect continuous operation device related to a regular bonus (hereinafter referred to as "RB") called a first type special effect item, and continuously operates RB.

[0163] Therefore, in this embodiment, the main control circuit 90 manages the game state based on the winning / drawing (prize winning) of the bonus combination. Specifically, as shown in Fig. 13A, the main control circuit 90 manages three types of game states called "bonus non-winning state", "inter-flag state", and "bonus state" based on the winning / drawing (prize winning) of the bonus combination (internal winning combination with the names "F_BB1" and "F_BB2" described later).

[0164] The bonus non-winning state is a state where the bonus is not won and the bonus has not been activated (prize won). The bonus state is a state where the bonus is activated. Also, in this embodiment, when the bonus combination is determined as an internal winning combination, a state occurs where the bonus combination is carried over as an internal winning combination over multiple games until the bonus is won. The inter-flag state is a state where the bonus combination is carried over as an internal winning combination, that is, a state where the bonus combination has won and the bonus has not been activated.

[0165] The presence or absence of the winning of the bonus combination is managed based on the data stored in the winning request flag storage area (see Figs. 28 to 30 described later) and the carry-over combination storage area (see Fig. 31 described later) provided in the main RAM 103. Also, the presence or absence of the activation (prize winning) of the bonus is managed based on the data stored in the game state flag storage area (see Fig. 32 described later) provided in the main RAM 103.

[0166] In addition, in the present embodiment, as shown in FIG. 13A, in a game state where the bonus is not activated (bonus non-winning state and between-flag state), six types of states of RT0 game state to RT5 game state (hereinafter, each referred to as "RT0 state" to "RT5 state") are provided, in which the type of internal winning combination related to replay and its winning probability are different from each other. Note that the RT0 state, RT2 state, and RT5 state are game states in which the probability that the replay combination is determined as an internal winning combination is a low probability, and the RT1 state is a game state in which the probability that the replay combination is determined as an internal winning combination is a medium probability of medium degree. Also, the RT3 state and RT4 state are game states in which the probability that the replay combination is determined as an internal winning combination is a high probability. In the present embodiment, the RT state in the bonus non-winning state is any one of the RT0 state to RT4 state, and the RT state in the between-flag state is the RT5 state.

[0167] Therefore, in the present embodiment, the main control circuit 90 further manages six types of states of RT1 state to RT5 state based on the type of internal winning combination related to replay and its winning probability in a game state where the bonus is not activated (bonus non-winning state and between-flag state).

[0168] Note that the RT0 state to RT5 state are managed based on data stored in a game state flag storage area (see FIG. 32 described later) provided in the main RAM 103. Specifically, in the pachislot 1 of the present embodiment, five flags indicating RT states of RT1 state flag to RT5 state flag are provided, and the RT state is managed by the main RAM 103 managing the on / off states of these flags. Then, the main control circuit 90 specifies the RT state corresponding to the RT state flag in the on state as the current RT state. When all the RT state flags are in the off state, the main control circuit 90 specifies that the current RT state is the RT0 state.

[0169] As shown in FIGS. 13A and 13B, when a bonus winning role (internal winning role with the names "F_BB1" and "F_BB2" described later) is determined as an internal winning role in the bonus non-winning state (when transition condition (1) is satisfied), the main control circuit 90 shifts the game state from the bonus non-winning state to the inter-flag state. Also, when the bonus winning role wins in the inter-flag state (when transition condition (2) is satisfied), the main control circuit 90 shifts the game state from the inter-flag state to the bonus state.

[0170] Further, when medals exceeding the specified number (216) are paid out in the bonus state and the bonus state ends (when transition condition (3) is satisfied), the main control circuit 90 shifts the game state from the bonus state to the RT1 state (bonus non-winning state).

[0171] In the RT1 state, when 20 games have elapsed (when transition condition (4) is satisfied), the main control circuit 90 shifts the game state from the RT1 state to the RT0 state. Also, in the RT1 state, before 20 games have elapsed, when a symbol combination related to the abbreviation "bell spill pattern" (see FIG. 28 described later) is displayed on the effective line (when transition condition (5) is satisfied), the main control circuit 90 shifts the game state from the RT1 state to the RT2 state.

[0172] In the RT0 state, when a symbol combination related to the abbreviation "bell spill pattern" is displayed on the effective line (when transition condition (5) is satisfied), the main control circuit 90 shifts the game state from the RT0 state to the RT2 state. In the RT2 state, when a symbol combination related to the abbreviation "RT3 transition rip" (see FIG. 28 described later) is displayed on the effective line (when transition condition (6) is satisfied), the main control circuit 90 shifts the game state from the RT2 state to the RT3 state.

[0173] In the RT3 state, when a symbol combination related to the abbreviation "RT4 transition replay" (see FIG. 28 described later) is displayed on the effective line (when transition condition (7) is satisfied), the main control circuit 90 shifts the game state from the RT3 state to the RT4 state. Also, in the RT3 state, when a symbol combination related to the abbreviation "bell spill pattern" or "RT2 transition replay" (see FIG. 28 described later) is displayed on the effective line (when transition condition (8) is satisfied), the main control circuit 90 shifts the game state from the RT3 state to the RT2 state. Further, in the RT4 state, when a symbol combination related to the abbreviation "bell spill pattern" or "RT2 transition replay" is displayed on the effective line (when transition condition (8) is satisfied), the main control circuit 90 shifts the game state from the RT4 state to the RT2 state.

[0174] Note that the symbol combination related to the abbreviation "bell spill pattern" is a combination of symbols displayed when the internal lottery winning combination (minor winning combination) related to the names "F_3 selection bell_1st", "F_3 selection bell_2nd", or "F_3 selection bell_3rd" described later is determined and the order of the stop operation is incorrect with respect to the pressing order determined for each type of the minor winning combination (see FIG. 24 described later). The symbol combination related to the abbreviation "RT2 transition replay" is a combination of symbols displayed when the internal lottery winning combination (replay winning combination) related to the names "F_maintenance replay_1st", "F_maintenance replay_2nd", or "F_maintenance replay_3rd" described later is determined and the order of the stop operation is incorrect with respect to the pressing order determined for each type of the replay winning combination.

[0175] The symbol combination related to the abbreviation "RT3 transition replay" is a symbol combination that is displayed when the internal lottery winning role (replay role) related to the following names "F_RT3 replay_1st", "F_RT3 replay_213", "F_RT3 replay_231", or "F_RT3 replay_3rd" is determined, and the order of the stop operation is correct with respect to the pressing order determined for each type of the replay role. Further, the symbol combination related to the abbreviation "RT4 transition replay" is a symbol combination that is displayed when the internal lottery winning role (replay role) related to the following names "F_RT4 replay_123", "F_RT4 replay_132", "F_RT4 replay_2nd", or "F_RT4 replay_3rd" is determined, and the order of the stop operation is correct with respect to the pressing order determined for each type of the replay role.

[0176] [Transition flow of game state considering presence / absence of operation of notification (ART) function] In the present embodiment, the main control circuit 90 (main CPU 101) determines the presence / absence of the operation of the function (ART function) for notifying the player of an advantageous stop operation. Therefore, in the present embodiment, the operation / non-operation state of the ART function in the non-bonus operation state is also managed as a game state.

[0177] In the pachislot machine 1 of the present embodiment, as shown in FIG. 14A, the main control circuit 90 manages the "general game state" and the "ART game state" as separate game states based on the presence / absence of notification (ART) in the non-bonus operation state. That is, in the management of the game state considering the presence / absence of notification (ART), as shown in FIG. 14A, the main control circuit 90 manages three types of game states, namely, the "bonus state", the "general game state", and the "ART game state" as major classifications.

[0178] Note that the general game state is basically a game state (non-ART) that does not notify the player of information on an advantageous stop operation, and is a game state disadvantageous to the player. Further, the general game state is any one of the RT0 to RT4 states and is a game state of non-ART lottery non-winning.

[0179] On the one hand, the ART game state is a game state that notifies the player of information on advantageous stop operations and is an advantageous game state for the player. Also, the ART game state is basically the RT4 state and is the game state during the ART winning tag. In this embodiment, after the ART winning tag, when the RT state transitions to the RT4 state, the ART game starts.

[0180] Also, in this embodiment, as shown in FIG. 14A, as general game states, two types of states called "normal game state" and "CZ (Chance Zone)" are provided.

[0181] The normal game state is the most disadvantageous game state for the player, but in the game of the normal game state, a lottery for transition to CZ is conducted. Then, as shown in FIGS. 14A and 14B, when winning the lottery for transition to CZ (when transition condition (A) is satisfied) in the game of the normal game state, the main control circuit 90 changes the game state from the normal game state to CZ.

[0182] CZ is a game state (Chance Zone) with a high expectation of transition to the ART game state, and a lottery for transition to ART is conducted during the game in CZ. Then, as shown in FIGS. 14A and 14B, when not winning the lottery for transition to ART (when transition condition (B) is satisfied) in the game in CZ, the main control circuit 90 changes the game state from CZ to the normal game state. On the other hand, when winning the lottery for transition to ART (when transition condition (C) is satisfied) in the game in CZ, the main control circuit 90 changes the game state from CZ to the ART game state. At this time, although not shown in FIG. 14A, the main control circuit 90 changes the game state from CZ to the ART game state (normal ART or CT described later) via the ART preparation state described later.

[0183] As described above, the ART game state starts when the RT state transitions to the RT4 state after the ART winning tag. Note that as shown in FIG. 13A, since the RT4 state transitions from the RT0 to RT2 states via the RT3 state, the ART game state does not start immediately after the ART winning tag. Therefore, in the pachislot machine 1 of this embodiment, the game state during the period from after the ART winning tag until the RT state transitions to the RT4 state is defined as the ART preparation state. And in the game in this ART preparation state, information on the stop operation necessary to transition the RT state to the RT4 state is notified.

[0184] Also, in this embodiment, as shown in FIG. 14A, as the ART game state, two types of states called "normal ART" and "CT (bonus chance)", which have different game characteristics from each other, are provided.

[0185] Normal ART is a game state in which, during a predetermined number of games, stop operations advantageous to the player (for example, a stop operation to display a symbol combination with a large number of medals to be paid out or a stop operation necessary to maintain the RT4 state) are notified. Also, during the game in normal ART, a lottery for transitioning to CT is conducted.

[0186] CT is a game state in which stop operations advantageous to the player are notified and, during a specific period (the period of 8 games in one set), it is possible to extend the continuation period of normal ART. It is a game state that functions as a bonus chance zone. Also, during CT, the game is played without consuming the continuation period of normal ART. Note that the game characteristics during CT will be described in detail later with reference to FIGS. 52A to 52C.

[0187] As shown in FIGS. 14A and 14B, in the game during normal ART, when winning the lottery for transition to CT (when the transition condition (D) is satisfied), the main control circuit 90 shifts the game state from normal ART to CT. Also, in normal ART, when the duration of the normal ART ends (when the transition condition (E) is satisfied), the main control circuit 90 shifts the game state from normal ART to the general game state (normal game state or CZ). Note that in the present embodiment, the duration of normal ART is managed by the number of games, but the present invention is not limited to this, and the method of managing the duration of normal ART is arbitrary. For example, the duration of normal ART may be managed by the number of medals paid out or the difference in the number of medals during normal ART, or may be managed by the number of times of providing notifications (navigation times) that affect the payout of medals during normal ART.

[0188] As shown in FIGS. 14A and 14B, in the game during CT, when the duration of CT (8 games per set) ends (when the transition condition (F) is satisfied), the main control circuit 90 shifts the game state from CT to normal ART.

[0189] Also, as shown in FIG. 14A, in the general game state (normal game state or CZ) or the ART game state (normal ART or CT), when a bonus combination wins (when the transition condition (2) described in FIGS. 13A and 13B is satisfied), the main control circuit 90 shifts the game state from the general game state or the ART game state to the bonus state.

[0190] In the bonus game state, as described above, a lottery for transitioning to ART is conducted. In the bonus game state, if the lottery for transitioning to ART is a non-winning draw (when the transition condition (G) is satisfied), the main control circuit 90 transitions the game state from the bonus game state to the general game state (normal game state or CZ). However, if the game has transitioned from the ART game state (normal ART or CT) to the bonus game state, even if the lottery for transitioning to ART in the bonus game state is a non-winning draw, the main control circuit 90 transitions the game state from the bonus game state to the ART game state (normal ART or CT). On the other hand, in the bonus game state, if the lottery for transitioning to ART is a winning draw (when the transition condition (H) is satisfied), the main control circuit 90 transitions the game state from the bonus game state to the ART game state (normal ART or CT). As described above, at the end of the bonus game state, the RT state transitions to the RT1 state. Therefore, when transitioning the game state from the bonus game state to the ART game state, the main control circuit 90 transitions the game state to the ART game state via the ART preparation state.

[0191] <Configuration of the data table stored in the main ROM> Next, with reference to FIGS. 15 to 27, the configuration of various data tables stored in the main ROM 102 will be described. Note that various data tables used in various lotteries related to the game properties (game properties of CZ, normal ART, and CT) during the general game state and the ART game state will be described separately together with the description of each game property later.

[0192] [Symbol Arrangement Table] First, with reference to FIG. 15, the symbol arrangement table will be described. The symbol arrangement table defines the correspondence between the positions of each symbol in the respective rotation directions of the left reel 3L, the middle reel 3C, and the right reel 3R, and the type of symbol (hereinafter referred to as symbol code (refer to the symbol code table in FIG. 15)) arranged at each position.

[0193] In the symbol arrangement table, when the reel index is detected, the position of the symbol located in the middle area of each reel within the frame of the reel display window 4 is defined as "0". Then, for each reel, in the order of proceeding in the rotation direction of the reel (the direction from the symbol position "19" to the symbol position "0" in Fig. 15) with the symbol position "0" as a reference, "0" to "19" corresponding to the value of the symbol counter are assigned to each symbol as the symbol position.

[0194] That is, by referring to the value of the symbol counter ("0" to "19") and the symbol arrangement table, the types of symbols displayed in the upper area, middle area, and lower area of each reel within the frame of the reel display window 4 can be specified. In this embodiment, 10 types of symbols, namely, "White 7", "Blue 7", "Chili Up 1", "Chili Up 2", "Chili Down", "Replay", "Hat", "Cactus 1", "Cactus 2", and "Cactus 3", are used as symbols.

[0195] Also, in this embodiment, as shown in the symbol code table, "00000001" is assigned as data to the symbol "White 7" (symbol code 1), and "00000010" is assigned as data to the symbol "Blue 7" (symbol code 2). "00000011" is assigned as data to the symbol "Chili Up 1" (symbol code 3), and "00000100" is assigned as data to the symbol "Chili Up 2" (symbol code 4).

[0196] "00000101" is assigned as data to the symbol "Chili Down" (symbol code 5), and "00000110" is assigned as data to the symbol "Replay" (symbol code 6). "00000111" is assigned as data to the symbol "Hat" (symbol code 7), and "00001000" is assigned as data to the symbol "Cactus 1" (symbol code 8). Also, "00001001" is assigned as data to the symbol "Cactus 2" (symbol code 9), and "00001010" is assigned as data to the symbol "Cactus 3" (symbol code 10).

[0197] [Internal lottery table] Next, with reference to FIGS. 16 and 17, an internal lottery table referred to when determining the internal winning combination will be described. Note that FIG. 16 is an internal lottery table referred to in each of the RT0 state to the RT4 state. FIG. 17A is an internal lottery table referred to in the RT5 state, and FIG. 17B is an internal lottery table referred to in the bonus state.

[0198] The internal lottery table is provided for each gaming state and defines the correspondence between various internal winning combinations and the lottery values when each internal winning combination is determined. The lottery values are defined for each setting (settings 1 to 6) for adjusting the expected values of internal winning combinations such as preset bonus combinations and minor combinations. This setting is changed using, for example, the reset switch 76 and the setting key-type switch 54 (see FIG. 7).

[0199] In the internal lottery process of the present embodiment, first, a random number value extracted from a predetermined numerical range (for example, 0 to 65535) by the random number register 0 of the random number circuit 110 is sequentially added with the lottery values defined for each internal winning combination. Next, it is determined whether the lottery result (lottery value + random number value) exceeds 65535 (whether the lottery result overflows). Then, in a predetermined internal winning combination, if the lottery result exceeds 65535, it is determined that the internal winning combination has won. In the internal lottery process of the present embodiment, an example of performing the lottery by adding the lottery value to the extracted random number value has been described, but the present invention is not limited to this, and the lottery value may be subtracted from the random number value, and it may be determined whether the subtraction result (lottery result) is less than "0" (whether the lottery result underflows) to determine the winning / non-winning of the internal lottery.

[0200] Therefore, in the internal lottery process of the present embodiment, the larger the numerical value defined as the lottery value for an internal winning combination, the higher the probability of being determined. The winning probability of each internal winning combination can be represented by "the lottery value defined for each winning number / the number of all possible random number values to be extracted (random number denominator: 65536)".

[0201] In the internal lottery table referred to in each of the RT0 state to the RT4 state, as shown in FIG. 16, basically, according to the type of the RT state, the type of the replay role determined as the internal winning role and the winning probability change. For example, the replay roles related to the names "F_Chili Replay (No. 25)" to "F_Reach Eye Replay D (No. 31)" are not determined as the internal winning role in the RT0 state to the RT3 state, and are determined as the internal winning role only in the RT4 state. In the pachislot machine 1 of the present embodiment, when a replay role related to the names "F_Chili Replay (No. 25)" to "F_Reach Eye Replay D (No. 31)" is determined as the internal winning role during the RT4 state, specific control (flag conversion described later) is performed. This flag conversion will be described in detail later.

[0202] Also, as shown in FIG. 16, in the RT0 state to the RT3 state, although the internal winning roles of each of the names "F_Reach Eye Replay A" to "F_Reach Eye Replay D" may be determined in overlap with the bonus roles related to the names "F_BB1" or "F_BB2" (see No. 3 to 6, 15 to 18), the internal winning roles (replay roles) of each of the names "F_Reach Eye Replay A" to "F_Reach Eye Replay D" are not determined as the internal winning role alone. Therefore, in the present embodiment, when a replay role related to the names "F_Reach Eye Replay A" to "F_Reach Eye Replay D" is determined as the internal winning role during the RT0 state to the RT3 state (when a symbol combination corresponding to the replay role related to the names "F_Reach Eye Replay A" to "F_Reach Eye Replay D" is displayed from the perspective of the player), it means that the bonus role (the name "F_BB1" or "F_BB2") is simultaneously determined as the internal winning role.

[0203] In addition, the RT5 state, which is the state between flags, is a gaming state in which the bonus combination is carried over with the internal winning combination as described above. Therefore, as shown in FIG. 17A, in the internal lottery table referred to in the RT5 state, the carried-over bonus combination is always determined as the internal winning combination. Further, as shown in FIG. 17B, in the internal lottery table referred to in the bonus state, the internal winning combination related to any one of the names "F_RB combination 1" to "F_RB combination 4" always wins the lottery (it is impossible for "losing" to win the lottery).

[0204] [Correspondence table between internal winning combination and symbol combination (winning combination) (symbol combination determination table)] Next, with reference to FIGS. 18 to 23, the correspondence table between the internal winning combination and the symbol combination (symbol combination determination table) will be described. The symbol combination determination table defines the correspondence relationship between various internal winning combinations and the symbol combinations (combinations) that can be displayed on the effective line (center line) associated with each internal winning combination. That is, when the internal winning combination is determined, the type of symbol combination (type of winning display combination) that can be displayed on the effective line is uniquely determined.

[0205] The various data described in the symbol combination column in each symbol combination determination table are data for identifying the symbol combinations that permit display along the effective line set across the left reel 3L, the middle reel 3C, and the right reel 3R. The relationship between each name described in the symbol combination (display combination) column and the specific symbol combination is shown in the winning operation flag storage area of FIGS. 28 to 30 described later.

[0206] In addition, the "○" mark described in the symbol combination determination table indicates a symbol combination (combination) that can be displayed on the effective line in the determined internal winning combination, that is, a display combination that can result in a win. For example, when the internal winning combination "F_Chirirep" is determined, as shown in FIGS. 18 and 19, the symbol combinations related to the combination names "C_Maintain Rep A_01" to "C_Maintain Rep G_01", "C_Chirirep A_01" to "C_Chirirep D_01" can be stopped and displayed. Although the symbol combination determination table does not stipulate the case where the "internal winning combination" is "a miss", this indicates that the display of all symbol combinations stipulated by the symbol combination tables shown in FIGS. 18 to 23 is not permitted.

[0207] In the pachislot 1 of this embodiment, the main control circuit 90 (main CPU 101) performs different stop controls according to the internal winning combination and the game state, and when a predetermined combination is determined as the internal winning combination, it performs rotational stop control on the left reel 3L, the middle reel 3C, and the right reel 3R so that the symbol combinations (combinations) having the corresponding relationships shown in FIGS. 18 to 23 can be displayed. In the correspondence tables shown in FIGS. 18 to 23, all symbol combinations that can be displayed for the determined internal winning combination are listed with an "○" mark, but even a symbol combination with an "○" mark may not be displayed.

[0208] In this embodiment, it has a function of varying the stop control (for example, the symbol to be preferentially drawn in) according to the symbol combinations that can be stopped and displayed and the current game state. Due to the relationship of the symbol to be preferentially drawn in, even a symbol combination with an "○" mark may not be displayed. The correspondence relationship between the type of the internal winning combination and the actually displayed symbol combination will be described with reference to FIGS. 24 and 25 to be described later.

[0209] [Correspondence between the winning combination during the non-flag interval state and the symbol combination to be stopped and displayed] Here, with reference to FIG. 24, the correspondence between the internal winning combination in the gaming state (non-flag-intermediate state) excluding the flag-intermediate state and the symbol combination stopped and displayed will be described. Note that FIG. 24 is a diagram showing the correspondence (some combinations are omitted) between various internal winning combinations that can be determined in the non-flag-intermediate state and the symbol combinations (abbreviations) stopped and displayed when each internal winning combination is determined. Note that the names of the symbol combinations described in FIG. 24 are the "abbreviations" described in the content column shown in the winning operation flag storage areas of FIGS. 28 to 30 described later.

[0210] In the pachislot 1 of this embodiment, a so-called "order-of-push winning combination" is provided, which is a winning combination in which the symbol combination displayed varies according to the order (pushing order) of the player's stop operation. Note that the symbol combination associated with the "correct order of push" described in FIG. 24 is a symbol combination that is advantageous to the player among the symbol combinations displayed according to the order of push, and the symbol combination associated with the "incorrect order of push" is a symbol combination that is disadvantageous to the player among the symbol combinations displayed according to the order of push. When notifying the player of an advantageous stop operation, if the correct order of push is notified and the stop operation is performed according to that notification, the symbol combination associated with the "correct order of push" will be displayed. Also, even in the ART gaming state, an incorrect order of push may be notified, and the details thereof will be described in detail later.

[0211] In this embodiment, for some of the pushing order roles, the correct pushing order is indicated at the end of their names. Specifically, the "1st" at the end of the name of the internal tag-drawing role means that the correct pushing order is such that the first stop operation (the stop operation performed first) is for the left reel 3L. The "2nd" at the end of the name of the internal tag-drawing role means that the correct pushing order is such that the first stop operation is for the middle reel 3C. The "3rd" at the end of the name of the internal tag-drawing role means that the correct pushing order is such that the first stop operation is for the right reel 3R. Also, the "123" at the end of the name of the internal tag-drawing role means that the correct pushing order is in the order of "left, middle, right". The "132" at the end of the name of the internal tag-drawing role means that the correct pushing order is in the order of "left, right, middle". The "213" at the end of the name of the internal tag-drawing role means that the correct pushing order is in the order of "middle, left, right". The "231" at the end of the name of the internal tag-drawing role means that the correct pushing order is in the order of "left, right, middle".

[0212] Also, hereinafter, when the first stop operation is performed on the left reel 3L, the stop operation order, specifically, the pushing orders of "left, middle, right" and "left, right, middle" are also referred to as "sequential pushing". Further, hereinafter, when the first stop operation is performed on the middle reel 3C or the right reel 3R, the stop operation order, specifically, the pushing orders of "middle, left, right", "middle, right, left", "right, middle, left", and "right, left, middle" are also referred to as "irregular pushing".

[0213] In this embodiment, as shown in FIG. 24, the internal winning combination "F_Chili Rep" is a winning combination with different symbol combinations displayed according to the pressing order. When the pressing order is correct, any of the displayable symbol combinations shown in FIGS. 18 to 23 among the symbol combinations related to the abbreviation "Chili Rep" (see FIG. 28 described later) is displayed along the effective line. On the other hand, when the pressing order is incorrect, any of the displayable symbol combinations shown in FIGS. 18 to 23 among the symbol combinations related to the abbreviation "Replay" (see FIG. 28 described later) is displayed along the effective line. When the internal winning combination "F_Chili Rep" is determined, as shown in FIGS. 18 to 23, the symbol combinations related to the combination names "C_Chili Rep A_01", "C_Chili Rep B_01" or "C_Chili Rep C_01" (abbreviations "Single Chili Rep" or "Double Chili Rep": corresponding to the abbreviation "Chili Rep (not 3 consecutive)" in FIG. 28 described later) can be displayed, but the symbol combinations related to the combination names "C_Chili Rep D_01" to "C_1 Certain Chili Rep D_01" (abbreviation "Triple Chili Rep": corresponding to the abbreviation "Chili Rep (3 consecutive)" in FIG. 28 described later) cannot be displayed. That is, the internal winning combination "F_Chili Rep" is a combination that cannot display the symbol combination related to the abbreviation "Triple Chili Rep".

[0214] Also, both the internal winning combinations "F_Certain Chili Rep" and "F_1 Certain Chili Rep" are winning combinations with different symbol combinations displayed according to the pressing order. When the pressing order is correct, any of the displayable symbol combinations shown in FIGS. 18 to 23 among the symbol combinations related to the abbreviation "Chili Rep" (see FIG. 28 described later) is displayed along the effective line. On the other hand, when the pressing order is incorrect, any of the displayable symbol combinations shown in FIGS. 18 to 23 among the symbol combinations related to the abbreviation "Replay" (see FIG. 28 described later) is displayed along the effective line. When the internal winning combination "F_Certain Chili Rep" or "F_1 Certain Chili Rep" is determined, as shown in FIGS. 18 to 23, the symbol combination related to the abbreviation "Triple Chili Rep" can be displayed. That is, the internal winning combinations "F_Certain Chili Rep" and "F_1 Certain Chili Rep" are combinations that can display the symbol combination related to the abbreviation "Triple Chili Rep".

[0215] In addition, the internal lottery winning roles "F_Reach Target Replay A" to "F_Reach Target Replay D" are winning roles with different symbol combinations displayed according to the pressing order. When the pressing order is correct, any of the displayable symbol combinations shown in FIGS. 18 to 23 among the symbol combinations related to the abbreviation "Reach Target Replay" (see FIGS. 28 and 29 described later) is displayed along the effective line. On the other hand, when the pressing order is incorrect, any of the displayable symbol combinations shown in FIGS. 18 to 23 among the symbol combinations related to the abbreviation "Replay" (see FIG. 28 described later) is displayed along the effective line.

[0216] In this embodiment, the correct pressing order for the internal lottery winning roles "F_Chili Replay", "F_Confirmed Chili Replay", "F_1 Confirmed Chili Replay", and "F_Reach Target Replay A" to "F_Reach Target Replay D" during lottery is to perform the first stop operation on the left reel 3L. Therefore, for example, in a game where the internal lottery winning role "F_Reach Target Replay A" is determined, when the player performs the first stop operation on the left reel 3L, the symbol combination related to the abbreviation "Reach Target Replay" is stopped and displayed. Note that the present invention is not limited to this, and the correct pressing order for the internal lottery winning roles "F_Chili Replay", "F_Confirmed Chili Replay", "F_1 Confirmed Chili Replay", and "F_Reach Target Replay A" to "F_Reach Target Replay D" during lottery can be set arbitrarily.

[0217] Also, both the internal lottery winning roles "F_Maintenance Replay A" and "F_Maintenance Replay B" are not winning roles related to the pressing order, and regardless of the pressing order, any of the displayable symbol combinations shown in FIGS. 18 to 23 among the symbol combinations related to the abbreviation "Replay" (see FIG. 28 described later) is displayed along the effective line.

[0218] In addition, the internal lottery-drawing roles "F_Maintenance Replay_1st" to "F_Maintenance Replay_3rd" are all lottery-drawing roles with different symbol combinations displayed according to the pressing order. When the pressing order is correct, any of the displayable symbol combinations shown in FIGS. 18 to 23 among the symbol combinations related to the abbreviation "Replay" (see FIG. 28 described later) is displayed along the valid line. On the other hand, when the pressing order is incorrect, any of the displayable symbol combinations shown in FIGS. 18 to 23 among the symbol combinations related to the abbreviation "RT2 Transition Replay" (see FIG. 28 described later) is displayed along the valid line.

[0219] In addition, the internal lottery-drawing roles "F_RT3 Replay_1st" to "F_RT3 Replay_3rd" are all lottery-drawing roles with different symbol combinations displayed according to the pressing order. When the pressing order is correct, the symbol combination related to the abbreviation "RT3 Transition Replay" (see FIG. 28 described later) is displayed along the valid line. On the other hand, when the pressing order is incorrect, any of the displayable symbol combinations shown in FIGS. 18 to 23 among the symbol combinations related to the abbreviation "Replay" (see FIG. 28 described later) is displayed along the valid line.

[0220] In addition, the internal lottery-drawing roles "F_RT4 Replay_123" to "F_RT4 Replay_3rd" are all lottery-drawing roles with different symbol combinations displayed according to the pressing order. When the pressing order is correct, the symbol combination related to the abbreviation "RT4 Transition Replay" (see FIG. 28 described later) is displayed along the valid line. On the other hand, when the pressing order is incorrect, any of the displayable symbol combinations shown in FIGS. 18 to 23 among the symbol combinations related to the abbreviation "Replay" (see FIG. 28 described later) is displayed along the valid line.

[0221] In addition, the internal lottery-determining roles "F_3-choice Bell_1st" to "F_3-choice Bell_3rd" are all lottery-determining roles with different symbol combinations displayed according to the pressing order. When the pressing order is correct, the symbol combination related to the abbreviation "Bell" (see Fig. 19 described later) is displayed along the valid line. On the other hand, when the pressing order is incorrect, the symbol combination related to the abbreviation "Bell spill pattern" (see Fig. 28 described later), or the symbol combination related to the abbreviation "Single appearance" (see Fig. 30 described later) is displayed.

[0222] In addition, the internal lottery-determining role "F_Common Bell" is not a lottery-determining role according to the pressing order. Regardless of the pressing order, any of the displayable symbol combinations shown in Figs. 18 to 23 among the symbol combinations related to the abbreviation "Bell" (see Fig. 29 described later) is displayed along the valid line. Also, both the internal lottery-determining roles "F_Shabo1" and "F_Shabo2" are not lottery-determining roles according to the pressing order. Regardless of the pressing order, any of the displayable symbol combinations shown in Figs. 18 to 23 among the symbol combinations related to the abbreviation "Cactus" (see Fig. 30 described later) is displayed along the valid line.

[0223] In addition, the internal lottery-determining role "Weak Cherry" is not a lottery-determining role according to the pressing order. Regardless of the pressing order, any of the displayable symbol combinations shown in Figs. 18 to 23 among the symbol combinations related to the abbreviation "Weak Cherry" (see Fig. 30 described later) is displayed along the valid line. Also, both the internal lottery-determining roles "F_Strong Chili1" and "F_Strong Chili2" are not lottery-determining roles according to the pressing order. Regardless of the pressing order, any of the displayable symbol combinations shown in Figs. 18 to 23 among the symbol combinations related to the abbreviation "Strong Cherry" (see Fig. 30 described later) is displayed along the valid line.

[0224] [Correspondence between lottery-determining roles during flag interval state and symbol combinations displayed in stop display] Next, referring to FIG. 25, the correspondence between the internal winning combination and the symbol combination that is stopped and displayed in the inter-flag state will be described. Note that FIG. 25 is a diagram showing the correspondence between the internal winning combination and the symbol combination that is stopped and displayed in the inter-flag state (some combinations are omitted), and in particular, it is a diagram showing whether it is possible to display a symbol combination related to a bonus combination (BB combination) (combination name "C_BB1" or "C_BB2") during the inter-flag state.

[0225] In the "BB establishment availability" column in the correspondence table of FIG. 25, the "○" mark indicates that the symbol combination related to the BB combination can be displayed, and the "×" mark indicates that the symbol combination related to the BB combination cannot be displayed. Note that when the symbol combination related to the BB combination cannot be displayed, the symbol combination related to the combination that is determined to overlap with the bonus combination as the internal winning combination is displayed. For example, when the internal winning combination "F_BB1 + F_Chiriripp" wins (when the internal winning combination "F_BB1" and the internal winning combination "F_Chiriripp" overlap and win), as shown in FIG. 25, it is not possible to stop and display the symbol combination related to the internal winning combination "F_BB1", and the symbol combination related to the internal winning combination "F_Chiriripp" is stopped and displayed.

[0226] Also, during the inter-flag state, when the symbol combination related to the BB combination cannot be displayed and the symbol combination related to the combination that is determined to overlap with the bonus combination is displayed, it may be possible to display only the symbol combination at the correct pressing order as described in FIG. 24, or it may be possible to display only the symbol combination at the incorrect pressing order.

[0227] For example, when the internal lottery winning combination "F_BB1 + F_3-choice bell_1st" wins the lottery, as shown in Fig. 25, since the symbol combination related to the internal lottery winning combination "F_BB1" cannot be stopped from being displayed, the symbol combination related to the internal lottery winning combination "F_3-choice bell_1st" is stopped from being displayed. At this time, only the symbol combination related to the abbreviation "bell" displayed when the pressing order is correct can be displayed, and the symbol combination related to the abbreviation "spilled bell" or "one-piece appearance" displayed when the pressing order is incorrect may not be displayed (see Fig. 24). Also, for example, when the internal lottery winning combination "F_BB1 + F_RT3 replay_1st" wins the lottery, only the symbol combination related to the abbreviation "replay" displayed when the pressing order is incorrect may be displayed, and the symbol combination related to the abbreviation "RT3 transition replay" displayed when the pressing order is correct may not be displayed (see Fig. 24).

[0228] In addition, in the state between flags, as shown in Fig. 25, when the bonus combination (BB combination) and any one of the internal lottery winning combinations "losing", "F_special 1", "F_special 2", and "F_special 3" are determined to overlap, the symbol combination related to the BB combination can be stopped from being displayed.

[0229] [Reel stop initial setting table] Next, with reference to Fig. 26, the reel stop initial setting table will be described. The reel stop initial setting table defines the correspondence relationship between the internal lottery winning combination and various data used in the reel stop control process described later.

[0230] The reel stop initial setting table shown in Fig. 26 defines the correspondence relationship between the internal lottery winning combination (minor winning combination number), the draw priority order table selection table number, the draw priority order table number, and the stop table number. In addition, Fig. 26 also shows the game state to be referred to and the name of the internal lottery winning combination.

[0231] The drawing-in priority table selection table number and the drawing-in priority table number are data used in the selection process of the drawing-in priority table. For example, in the reel stop initial setting table, if the drawing-in priority table number corresponding to the stop table number is defined, data regarding the priority order of the display roles corresponding to the drawing-in priority table number defined in the drawing-in priority table (see FIG. 27 described later) can be obtained. On the other hand, if the drawing-in priority table number corresponding to the stop table number is not defined in the reel stop initial setting table, a drawing-in priority table selection table (not shown) is referred to, and the drawing-in priority table number corresponding to the drawing-in priority table selection table number is determined.

[0232] Here, the stop control of the reel (the method for determining the stop symbol position) in the pachislot machine 1 of the present embodiment will be briefly described. In the present embodiment, after a stop operation is detected by the stop switch, the stop control of the reel is performed so that the rotation of the corresponding reel stops within 190 msec. Specifically, a value of the slip symbol number from "0" to "4" is added to the value of the symbol counter corresponding to the winning reel when the stop operation is detected, and the symbol position corresponding to the obtained value is determined as the symbol position at which the rotation of the reel stops (hereinafter referred to as the "planned stop position"). Note that the symbol position corresponding to the value of the symbol counter corresponding to the winning reel when the stop operation is detected is the symbol position at which the rotation of the reel starts to stop (hereinafter referred to as the "stop start position").

[0233] That is, the slip symbol number is the amount of rotation of the reel from when a stop operation is detected by the stop switch until the rotation of the corresponding reel stops. In other words, it is the number of symbols passing through the middle region of the corresponding reel of the reel display window 4 during the period from when a stop operation is detected by the stop switch until the rotation of the corresponding reel stops. This is grasped by the value of the symbol counter updated after a stop operation is detected by the stop switch.

[0234] Referring to a stop table (not shown), the number of sliding pachinko balls is obtained according to the stop start position of each reel. In this embodiment, the number of sliding pachinko balls is obtained based on the stop table, but this is provisional, and the obtained number of sliding pachinko balls does not immediately determine the planned stop position of the reel. In this embodiment, if there is a more appropriate number of sliding pachinko balls than the number of sliding pachinko balls (hereinafter referred to as "sliding pachinko ball determination data") obtained based on the stop table, the number of sliding pachinko balls is changed by referring to a draw priority table (see FIG. 27 described later). The sliding pachinko ball determination data is referred to in order to determine the search order when comparing priorities for each symbol position from the stop start position to the symbol position four ahead, which is the maximum number of sliding pachinko balls.

[0235] [Draw Priority Table] Next, referring to FIG. 27, the draw priority table will be described. The draw priority table defines the correspondence between the draw data (winning operation flag data) for each type of a winning operation flag storage area (see FIGS. 28 to 30 described later) in each of the draw priority table numbers "00" to "05" and a predetermined priority thereof.

[0236] The draw priority table is used to search for whether there is a more appropriate number of sliding pachinko balls in addition to the number of sliding pachinko balls obtained based on a stop table (not shown). The priority is data that defines the order in which winning symbol combinations (winning operation flags) are preferentially stopped (drawn) among types. Also, in FIG. 27, for convenience of explanation, the combination names of the winning operation flags are described in the column of the draw data (winning operation flag data), but in the actual draw priority table, each draw data is represented by 1-byte data as shown in the winning operation flag storage area (see FIGS. 28 to 30 described later), and a unique symbol combination (winning operation flag) is assigned to each bit in the 1-byte data.

[0237] In the reel stop control of this embodiment, first, the number of sliding pieces is obtained based on a stop table (not shown). However, if there is a more appropriate number of sliding pieces in addition to this number of sliding pieces based on the priority, it is changed to the appropriate number of sliding pieces. That is, in this embodiment, regardless of the number of sliding pieces obtained by the stop table, a more appropriate number of sliding pieces is determined based on the priority of the symbol combinations that allow stop display by the internal winning combination.

[0238] In this embodiment, the stop display (drawing-in) of the symbol combination with a higher priority is performed preferentially over the stop display of the symbol combination with a lower priority.

[0239] Also, in this embodiment, as shown in FIG. 27, not only does the priority of the symbol combination (winning operation flag) differ according to the drawing-in priority table number, but the number of distinguishable priorities also differs. Specifically, when the drawing-in priority table number is "00", the number of distinguishable priorities is 5, and when the drawing-in priority table number is "01" or "04", the number of distinguishable priorities is 4. Also, when the drawing-in priority table number is "02" or "03", the number of distinguishable priorities is 2, and when the drawing-in priority table number is "05", the number of distinguishable priorities is 3.

[0240] Here, the priority when the drawing-in priority table number is "00" will be described, and the description of the priority in other drawing-in priority table numbers will be omitted. For the priority "1" (the highest priority) when the drawing-in priority table number is "00", draw-in data corresponding to the combination names "C_9 pieces A_01", "C_1 sure chili replay C_01", "C_1 sure chili replay D_01", and "C_RT3 replay_01" is defined.

[0241] When the lead-in priority table number is "00" and the priority is "2", the lead-in data corresponding to the combination names "C_strong 2 cards C_01" to "C_strong 2 cards C_09", "C_weak 2 cards B_01" to "C_weak 2 cards B_03", "C_3 cards E_01", "C_3 cards E_02", "C_9 cards F_01" to "C_9 cards F_03", "C_1 certain chili refill B_01", "C_chili refill D_01", and "C_chili refill C_01" is defined.

[0242] When the lead-in priority table number is "00" and the priority is "3", the lead-in data corresponding to the combination names "C_1 certain chili refill A_01", "C_chili refill A_01", "C_chili refill B_01", and "C_maintenance refill E_01" to "C_maintenance refill E_04" is defined.

[0243] When the lead-in priority table number is "00" and the priority is "4", the lead-in data corresponding to the combination names "C_SP1_01", "C_SP2_01", "C_Reach Eye Rep P_01", "C_Reach Eye Rep P_02", "C_Reach Eye Rep O_01", "C_Reach Eye Rep O_02", "C_Reach Eye Rep N_01", "C_Reach Eye Rep N_02", "C_Reach Eye Rep M_01", "C_Reach Eye Rep M_02", "C_Reach Eye Rep L_01" to "C_Reach Eye Rep L_03", "C_Reach Eye Rep K_01" to "C_Reach Eye Rep K_03", "C_Reach Eye Rep J_01", "C_Reach Eye Rep I_01" to "C_Reach Eye Rep I_09", "C_Reach Eye Rep H_01" to "C_Reach Eye Rep H_03", "C_Reach Eye Rep G_01", "C_Reach Eye Rep F_01", "C_Reach Eye Rep F_02", "C_Reach Eye Rep E_01", "C_Reach Eye Rep D_01", "C_Reach Eye Rep D_02", "C_Reach Eye Rep C_01" to "C_Reach Eye Rep C_03", "C_Reach Eye Rep B_01", "C_Reach Eye Rep B_02", "C_Reach Eye Rep A_01", "C_Maintain Rep F_01", "C_Maintain Rep F_02", "C_Maintain Rep D_01" to "C_Maintain Rep D_04", "C_Maintain Rep C_01" to "C_Maintain Rep C_03", "C_Maintain Rep B_01", "C_Maintain Rep B_02", and "C_Maintain Rep A_01" is defined.

[0244] Also, when the lead-in priority table number is "00" and the priority is "5" (the lowest priority), the lead-in data corresponding to the combination names "C_BB1" and "C_BB2" is defined.

[0245] <Configuration of the storage area provided in the main RAM> Next, with reference to FIGS. 28 to 35, the configuration of various storage areas provided in the main RAM 103 will be described.

[0246] [Hit request flag storage area and winning operation flag storage area] First, referring to FIGS. 28 to 30, the configuration of the winning request flag storage area (internal winning lottery staff storage area) and the winning operation flag storage area (display staff storage area) will be described. In the present embodiment, the winning request flag storage area (flag data storage area, winning lottery flag data storage area) and the winning operation flag storage area (winning flag data storage area) have the same configuration as each other.

[0247] In the present embodiment, the winning request flag storage area is composed of winning request storage areas 0 to 11 each represented by 1-byte data, and the winning operation flag storage area is composed of winning operation storage areas 0 to 11 each represented by 1-byte data. Note that the data stored in each storage area of the winning request flag storage area and the winning operation flag storage area is only the 1-byte data in the "Data" column in FIGS. 28 to 30. However, in FIGS. 28 to 30, for convenience of explanation, the symbol combinations of each reel (described in the order of the symbol of the left reel 3L, the symbol of the middle reel 3C, and the symbol of the right reel 3R in the figure), its name (combination name) and abbreviation, and the number of medals paid out are also described in association with the bits of each storage area.

[0248] In each of the winning request flag storage areas 0 to 11, when "1" is stored in a predetermined bit, it indicates that the internal winning lottery staff corresponding to the predetermined bit has won the internal lottery. Also, in each of the winning operation storage areas 0 to 11, when "1" is stored in a predetermined bit, it indicates that the display staff (winning operation flag) corresponding to the predetermined bit has won. That is, when "1" is stored in a predetermined bit, it indicates that the various symbol combinations of the internal winning lottery staff corresponding to the predetermined bit have been displayed on the valid line.

[0249] Also, in the winning request flag storage area and the winning operation flag storage area, as shown in FIGS. 28 to 30, for one bit (flag) in each storage area, there are some to which a plurality of symbol combinations (combinations) are assigned. That is, for such a flag, it means that there are a plurality of symbol combinations (winning possible combinations) that can be stopped and displayed.

[0250] For example, to bit 5 of the winning requirement storage area 5 and the winning operation storage area 5, three symbol combinations are assigned: the symbol combination "Cactus 2" - "White 7" - "Hat" (combination name "C_Maintenance Rep C_01"), the symbol combination "Cactus 2" - "Chili Up 1" - "Hat" (combination name "C_Maintenance Rep C_02"), and the symbol combination "Cactus 2" - "Cactus 2" - "Hat" (combination name "C_Maintenance Rep C_03"). Therefore, when "1" is stored in bit 5 of the winning requirement storage area 5, it indicates that these three symbol combinations can be stopped and displayed on the active line. Also, when "1" is stored in bit 5 of the winning operation storage area 5, it indicates that any one of these three symbol combinations has been displayed on the active line.

[0251] [Carry-over role storage area] Next, with reference to FIG. 31, the configuration of the carry-over role storage area will be described. In this embodiment, the carry-over role storage area is composed of a 1-byte data storage area.

[0252] When the internal lottery result determines the internal winning role "F_BB1" or "F_BB2", the internal winning role (BB role) is stored in the carry-over role storage area as a carry-over role. The carry-over role stored in the carry-over role storage area is held without being cleared until the corresponding symbol combination is displayed on the active line. Also, while a carry-over role is stored in the carry-over role storage area, in addition to the internal winning role determined by the internal lottery, the carry-over role is stored in the winning requirement storage area.

[0253] [Game state flag storage area] Next, with reference to FIG. 32, the configuration of the game state flag storage area will be described. The game state flag storage area is composed of a 1-byte data storage area. In this embodiment, as shown in FIG. 32, a unique bonus type or RT type is assigned to each bit of the game state flag storage area.

[0254] When "1" is stored in a predetermined bit in the game state flag storage area, it indicates that the bonus game or RT corresponding to the predetermined bit is in operation. For example, when "1" is stored in bit 0 of the game state flag storage area, the big bonus "BB" is in operation, indicating that the game state is the BB game state. Also, for example, when "1" is stored in bit 3 of the game state flag storage area, it indicates that the game state is the RT3 state.

[0255] [Operation stop button storage area] Next, referring to FIG. 33, the configuration of the operation stop button storage area will be described. The operation stop button storage area is composed of a 1-byte data storage area and stores an operation stop button flag consisting of 1 byte. In the operation stop button flag, the operation state of the stop button is assigned to each bit.

[0256] For example, when the left stop button 17L is the stop button pressed this time, that is, the operation stop button, "1" is stored in bit 0 of the operation stop button storage area. Also, for example, when the left stop button 17L is the stop button that has not been pressed yet, that is, the valid stop button, "1" is stored in bit 4. The main CPU 101 identifies the stop button pressed this time and the stop button that has not been pressed yet based on the data stored in the operation stop button storage area.

[0257] [Press order storage area] Next, referring to FIG. 34, the configuration of the press order storage area will be described. The press order storage area is composed of a 1-byte data storage area and stores a press order flag consisting of 1 byte.

[0258] In the press order flag, the type of the press order of the stop button is assigned to each bit. For example, when the press order of the stop button is "left, middle, right", "1" is stored in bit 0 of the press order storage area.

[0259] [Symbol Code Storage Area] Next, with reference to FIG. 35, the configuration of the symbol code storage area will be described. In the present embodiment, the symbol code storage area is composed of symbol code storage areas 0 to 11 each represented by 1-byte data. Note that the symbol code storage area has the same configuration as the winning request flag storage area and the winning operation flag storage area (see FIGS. 28 to 30).

[0260] In the symbol code storage area, a "1" is stored in the bit corresponding to the symbol combination (combination) that can be stopped on the active line. Note that after all the reels stop, the symbol codes corresponding to the display roles (winning operation flags) are stored in symbol code storage areas 0 to 11.

[0261] [Relationship between Internal Winning Roles and Various Sub-Flags] In the general gaming state and the ART gaming state, various lotteries by the main control circuit 90 refer to various data tables. In the present embodiment, as parameters used at this time, not only the internal winning roles but also various parameters with different names corresponding to the internal winning roles (hereinafter referred to as "sub-flag (first sub-flag)", "sub-flag EX (second sub-flag)", and "sub-flag D") are used. Therefore, in the present embodiment, the main control circuit 90 performs a process of converting the internal winning roles into various sub-flags (see the sub-flag conversion process, flag conversion process, and sub-flag compression process in FIG. 104 described later). Note that in the present embodiment, as information (communication parameter) regarding the internal winning roles, the sub-flag is set in the start command and transmitted from the main control circuit 90 to the sub-control circuit 200.

[0262] Here, with reference to FIGS. 36 and 37, the correspondence relationship between the internal winning roles and various sub-flags will be described. FIG. 36 is a diagram showing the correspondence relationship between the internal winning roles (minor winning lottery numbers) and various sub-flags, and FIG. 37 is a diagram showing the correspondence relationship between the internal winning roles (special prize winning lottery numbers) and the sub-flags.

[0263] In the flag conversion process of this embodiment, first, a plurality of internal winning tags belonging to the same type are grouped into one sub-flag. In this embodiment, by this flag conversion process, as shown in FIG. 36, 32 types of internal winning tags (small winning tag numbers) related to small roles and replay roles are converted into 18 types of sub-flags ("01" to "18": flag data). For example, the internal winning tags "F_keep_rep_1st (10: small winning tag number)" to "F_keep_rep_3rd (12)" are grouped into the sub-flag "push order rep 1 (09: flag data)". Note that for the internal winning tag "loss", the sub-flag "loss (00)" is assigned.

[0264] Also, in the flag conversion process of this embodiment, as shown in FIG. 36, 19 types of sub-flags ("00" to "18") including the sub-flag "loss (00)" are converted into 9 types of sub-flags EX ("00" to "08": flag data). Therefore, in this conversion process, the sub-flag data can be further compressed. At this time, in this embodiment, the sub-flags are converted into sub-flags EX by lottery (flag conversion lottery). Specifically, the conversion is as follows.

[0265] The sub-flag "loss (00)" is converted into the sub-flag EX "loss (00)" regardless of the result of the flag conversion lottery, and the sub-flag "2-consecutive chili replays (01)" is converted into the sub-flag EX "replay (01)" regardless of the result of the flag conversion lottery.

[0266] The sub-flags "3-consecutive chili replays A (02)" and "3-consecutive chili replays B (03)" are converted into the sub-flag EX "confirmed role (06)" or "3-consecutive chili replays (07)" when winning the flag conversion lottery (in the case of "conversion yes" described later), and are converted into the sub-flag EX "replay (01)" when not winning the flag conversion lottery (in the case of "conversion no" described later).

[0267] When the sub - flags "Reach Target Reel 1(04)" to "Reach Target Reel 4(07)" win the flag conversion lottery, they are converted into sub - flag EX "Determined Role(06)" or "Reach Target Reel(08)", and when they lose the flag conversion lottery, they are converted into sub - flag EX "Replay(01)".

[0268] The sub - flags "Replay(08)" and "Push Order Reel 1(09)" to "Push Order Reel 3(11)" are converted into sub - flag EX "Replay(01)" regardless of the result of the flag conversion lottery, and the sub - flags "Push Order Bell(12)" and "Common Bell(13)" are converted into sub - flag EX "Bell(02)" regardless of the result of the flag conversion lottery.

[0269] The sub - flags "Cactus(14)", "Weak Cherry(15)" and "Strong Cherry(16)" are converted into sub - flag EX "Cactus(03)", "Weak Cherry(04)" and "Strong Cherry(05)" respectively regardless of the result of the flag conversion lottery. Also, the sub - flags "Reach Target 1(17)" and "Reach Target 2(18)" are converted into sub - flag EX "Miss(00)" regardless of the result of the flag conversion lottery.

[0270] As described above, in this embodiment, substantially only the sub - flags "Triple Cherry Reel A(02)", "Triple Cherry Reel B(03)" and "Reach Target Reel 1(04)" to "Reach Target Reel 4(07)" are subject to the flag conversion lottery. The lottery table used for the above - mentioned flag conversion lottery will be described in detail later.

[0271] Furthermore, in the flag conversion process of this embodiment, as shown in FIG. 36, nine types of sub - flag EX ("00" to "08") are converted into seven types of sub - flag D ("00" to "06"). Therefore, in this conversion process, the sub - flag data can be further compressed. In this conversion process, no lottery is performed, and the sub - flag EX and the sub - flag D are associated and converted as follows.

[0272] The sub-flags EX "Loss (00)", "Replay (01)", and "Bell (02)" are converted to the sub-flag D "Loss (00)". The sub-flag EX "Cactus (03)" is converted to the sub-flag D "Cactus (01)", the sub-flag EX "Weak Cherry (04)" is converted to the sub-flag D "Weak Cherry (02)", and the sub-flag EX "Strong Cherry (05)" is converted to the sub-flag D "Strong Cherry (03)".

[0273] Also, the sub-flag EX "Determined Role (06)" is converted to the sub-flag D "Determined Role (04)", the sub-flag EX "Triple Chili Replay (07)" is converted to the sub-flag D "Triple Chili Replay (05)", and the sub-flag EX "Reach Point Replay (08)" is converted to the sub-flag D "Reach Point Replay (06)".

[0274] Also, in the flag conversion process of this embodiment, as shown in FIG. 37, both the internal winning tags "F_BB1 (01: Special Prize Winning Tag Number)" and "F_BB2 (02)" are converted to the sub-flag "BB".

[0275] [Gameplay during Sub-flag EX Conversion] Here, a process of converting the above-described internal winning tags to sub-flags and sub-flags EX, and an example of the gameplay during sub-flag EX conversion will be described with reference to FIGS. 38A and 38B. FIG. 38A is a diagram showing a flag conversion process when the internal winning tag "F_Confirmed Chili Replay" or "F_1 Confirmed Chili Replay" is determined, and FIG. 38B is a diagram showing a flag conversion process when any one of the internal winning tags "F_Reach Point Replay A" to "F_Reach Point Replay D" is determined.

[0276] In the pachislot 1 of this embodiment, when any one of the internal winning tags "F_Confirmed Chili Replay", "F_1 Confirmed Chili Replay", and "F_Reach Point Replay A" to "F_Reach Point Replay D" is independently determined as an internal winning tag during the RT4 game state, a flag conversion lottery is performed. And in this embodiment, when winning this flag conversion lottery, special benefits (for example, an increase in the number of ART games or a CT winning tag) are granted.

[0277] For example, when the internal winning role "F_sure Chililip" or "F_1 sure Chililip" is determined, as shown in FIG. 38A, the internal winning roles "F_sure Chililip" and "F_1 sure Chililip" are converted into sub-flags "3 consecutive Chililip A (02)" and "3 consecutive Chililip B (03)", respectively.

[0278] Next, if the subflags "3 consecutive chili replay A (02)" and "3 consecutive chili replay B (03)" are selected in the flag conversion lottery, they are converted into the subflag EX "3 consecutive chili replay (07)" or "Determined role (06)". On the other hand, if the flag conversion lottery is not selected, both the subflags "3 consecutive chili replay A (02)" and "3 consecutive chili replay B (03)" are converted into the subflag EX "Replay (01)".

[0279] 24, when the internal winning combination "F_sure Chililip" or "F_1 sure Chililip" is won, if the pressing order is correct, a symbol combination related to the abbreviation "3 consecutive Chililip" is displayed, and if the pressing order is incorrect, a symbol combination related to the abbreviation "replay" is displayed. Therefore, in this embodiment, when the internal winning combination "F_sure Chililip" or "F_1 sure Chililip" is determined and the flag conversion lottery is won, both the internal winning combination "F_sure Chililip" and "F_1 sure Chililip" are treated as the combination of the subflag EX "3 consecutive Chililip (07)" or "confirmed combination (06)".

[0280] Then, when the internal winning role "F_sure chililip" or "F_1 sure chililip" is converted into the subflag EX "triple chililip (07)" or "confirmed role (06)" by this flag conversion process, information for displaying the symbol combination related to the abbreviation "triple chililip" is announced (for example, information to the effect that the player should aim for the chili symbol by pressing in order is announced). On the other hand, in this flag conversion process, when the flag conversion lottery becomes a non-winning lottery and the internal winning role "F_sure chililip" or "F_1 sure chililip" is converted into the subflag EX "replay (01)", information for displaying the symbol combination related to the abbreviation "replay" is announced (for example, a pressing order other than the normal pressing (irregular pressing) is announced).

[0281] Also, for example, when any one of the internal lottery winning roles "F_Reach Target Replay A" to "F_Reach Target Replay D" is determined, as shown in FIG. 38B, the internal lottery winning roles "F_Reach Target Replay A" to "F_Reach Target Replay D" are each converted into sub-flags "Reach Target Replay 1 (04)" to "Reach Target Replay 4 (07)".

[0282] Next, when the sub-flags "Reach Target Replay 1 (04)" to "Reach Target Replay 4 (07)" win the flag conversion lottery, they are converted into sub-flag EX "Reach Target Replay (08)" or "Determined Role (06)". On the other hand, if they lose the flag conversion lottery, the sub-flags "Reach Target Replay 1 (04)" to "Reach Target Replay 4 (07)" are converted into sub-flag EX "Replay (01)".

[0283] Note that, as described with reference to FIG. 24, when any one of the internal lottery winning roles "F_Reach Target Replay A" to "F_Reach Target Replay D" wins the lottery, the symbol combination related to the abbreviation "Reach Target Replay" is displayed when the pressing order is correct, and the symbol combination related to the abbreviation "Replay" is displayed when the pressing order is incorrect. Therefore, in this embodiment, when any one of the internal lottery winning roles "F_Reach Target Replay A" to "F_Reach Target Replay D" is determined and wins the flag conversion lottery, all of the internal lottery winning roles "F_Reach Target Replay A" to "F_Reach Target Replay D" are treated as the roles of sub-flag EX "Reach Target Replay (08)" or "Determined Role (06)".

[0284] And when the internal lottery winning roles "F_Reach Target Replay A" to "F_Reach Target Replay D" are converted into, for example, sub-flag EX "Reach Target Replay (08)" or "Determined Role (06)" through this flag conversion process, information for displaying the symbol combination related to the abbreviation "Reach Target Replay" is notified (for example, information instructing the player to aim for the symbol "White 7" by pressing in order is notified). On the other hand, in this flag conversion process, when the flag conversion lottery results in a loss and the internal lottery winning roles "F_Reach Target Replay A" to "F_Reach Target Replay D" are converted into sub-flag EX "Replay (01)", information for displaying the symbol combination related to the abbreviation "Replay" is notified (for example, a pressing order other than pressing in order (irregular pressing) is notified).

[0285] Also, in this embodiment, in the flag conversion process shown in FIGS. 38A or 38B, when a player wins the flag conversion lottery and performs a stop operation according to the notification, a symbol combination related to the abbreviation "Triple Chiri Rep" or "Reach Target Rep" is stopped and displayed on the effective line, and a special privilege is granted. This granting process is, in essence, in terms of processing, to grant a special privilege to the player in response to the pachislot 1 winning the flag conversion lottery. However, for the player, it is possible to make the player feel that a special privilege has been granted due to the display of the symbol combination related to the abbreviation "Triple Chiri Rep".

[0286] In order to enhance the gaming performance of pachislot, in some cases, it may be preferable that the appearance frequency of the symbol combination to which the privilege is granted varies according to the state rather than being constant. Since the stop control (the symbol combination to be displayed) varies depending on the type of internal winning lottery, as a method of varying the appearance frequency of the symbol combination to which the privilege is granted according to the state, a method of varying the winning probability of the internal winning lottery is also conceivable (in pachislot 1, the winning probability of the internal winning lottery can be varied according to the presence or absence of bonus activation and the RT state. For example, as an RT state corresponding to the ART gaming state, not only the RT4 state but also other RT states such as the RT6 state and the RT7 state can be provided). However, since the timing (the transition timing of the RT state) for varying the winning probability of the internal winning lottery is limited, from the perspective of improving the gaming performance (interest), this method lacks flexibility.

[0287] On the other hand, in the pachislot 1 of this embodiment, without changing the winning probability of the internal winning lottery, in addition to the internal lottery for determining the internal winning lottery, by performing a flag conversion lottery and a notification based on the lottery result, the appearance frequency of the symbol combination to which the privilege is granted can be flexibly varied according to the state. That is, in a state where it is easy to win the flag conversion lottery, the appearance frequency of the symbol combination to which the privilege is granted can be increased, and conversely, in a state where it is difficult to win the flag conversion lottery, the appearance frequency of the symbol combination to which the privilege is granted can be decreased.

[0288] <Gameplay during general gaming state> Next, with reference to FIGS. 39A to 39C, the flow of the game during the general gaming state will be described. In the pachislot machine 1 of the present embodiment, during the general gaming state, the gaming state transitions from the normal gaming state to CZ, and then, the gaming state transitions from CZ to the ART gaming state, whereby the transition from the general gaming state (non-ART gaming state) to the ART gaming state is performed (see FIGS. 14A and 14B).

[0289] FIG. 39A is a diagram showing the flow of the game when the gaming state transitions from the normal gaming state to CZ during the general gaming state. As shown in FIG. 39A, the normal gaming state has a low probability state and a high probability state as the lottery states of CZ. These low probability state and high probability state are states in which the expectations of winning the CZ lottery performed during the normal gaming state are different from each other. The low probability state is a state in which it is difficult to win the CZ lottery, and the high probability state is a state in which it is easy to win the CZ lottery. When winning the CZ lottery performed in the game during the normal gaming state, the gaming state transitions from the normal gaming state to CZ.

[0290] In the pachislot machine 1 of the present embodiment, as CZ (Chance Zone), a plurality of chance zones of "CZ1", "CZ2", and "CZ3" are provided. CZ1 to CZ3 are chance zones in which the expectations of winning the ART lottery performed in the game during CZ are different from each other. CZ3 is a chance zone that always wins the ART lottery, and CZ1 and CZ2 are chance zones that win the ART lottery with a predetermined probability. In the CZ lottery performed in the game during the normal gaming state, not only the winning / non-winning of CZ but also the type of CZ (any one of CZ1 to CZ3) to which the transition occurs when winning is determined (see FIG. 41 described later).

[0291] Figure 39B is a diagram showing the flow of the game when the game state transitions from the general game states CZ1 and CZ2 to the ART game state. Both CZ1 and CZ2 are composed of a first half and a second half. The first half is a period in which the rank of the expectation of winning the ART lottery conducted in the game during CZ is raised, and the second half is a period in which the lottery result of the ART lottery based on the rank is notified by a predetermined effect (in this embodiment, a battle effect by a character).

[0292] During CZ1, six levels of modes (modes 1 to 6) are prepared as ranks, and the higher the mode, the higher the expectation of winning the ART lottery. In the first half of CZ1, the game is continuously played for a first predetermined number of games (for example, up to 12 games at most), and a mode promotion lottery is conducted based on the internal winning lottery combination. Then, in the first game of the second half of CZ1, the ART lottery is conducted based on the mode promoted in the first half (the mode at the end of the first half).

[0293] Also, during CZ2, ten levels of points are prepared as ranks, and the higher the points, the higher the expectation of winning the ART lottery. In the first half of CZ2, the game is continuously played for a second predetermined number of games (for example, up to 15 games at most), and a point promotion lottery is conducted based on the internal winning lottery combination. Then, in the first game of the second half of CZ2, the ART lottery is conducted based on the points promoted in the first half (the points at the end of the first half).

[0294] In the second half of CZ1, a battle effect in which the ally character battles against enemy character A is performed, and in the second half of CZ2, a battle effect in which the ally character battles against enemy character B is performed. This battle effect is performed over the game for a third predetermined number of games (for example, up to 4 games at most). Also, the victory or defeat of the battle effect is managed (determined) based on the result of the ART lottery. When winning the ART lottery, the ally character wins in the battle effect, and when not winning, the enemy character wins in the battle effect.

[0295] Also, in the second half of each of CZ1 and CZ2 (during the battle performance), an ART lottery is conducted every game based on the internal lottery role. If one wins the ART lottery, the result of the battle performance is rewritten. For example, if a so-called "rare" role is determined as the internal lottery role during the battle performance, an ART lottery is conducted, and the result of the battle performance is rewritten based on the result.

[0296] In CZ1 and CZ2, if one does not win the ART lottery, one loses in the second half of the battle performance, and basically, the game state then transitions to the normal game state. On the other hand, in CZ1 and CZ2, if one wins the ART lottery, one wins in the second half of the battle performance, and then the game state transitions from CZ to the normal ART state via the ART preparation state. In this embodiment, in the games in the first half of CZ1 and CZ2, freezes may occur, and in that case, the game state transitions from CZ to CT (the bonus chance zone) via the ART preparation state instead of the normal ART.

[0297] FIG. 39C is a diagram showing the flow of the game when the game state transitions from the general game state CZ3 to the ART game state. CZ3 has games continuously played for a fourth predetermined number of games (for example, up to 17 games). And in CZ3, an ART lottery is conducted every game based on the internal lottery role.

[0298] CZ3 ends when one wins the ART lottery, and from the next game onwards, the game state transitions from CZ3 to CT (the bonus chance zone) via the ART preparation state. Also, in CZ3, freezes may occur, and in that case too, from the next game onwards, the game state transitions from CZ3 to CT (the bonus chance zone) via the ART preparation state. On the other hand, in CZ3, if the game period (the fourth predetermined number of games) of CZ3 elapses without winning the ART lottery, the game state transitions from CZ3 to the normal ART state via the ART preparation state. That is, in this embodiment, CZ3 is a chance zone where the transition to the ART game state is certain.

[0299] <Various data tables used during the general gaming state> Next, with reference to FIGS. 40 to 45, various data tables used in the lottery process related to the game performance during the general gaming state will be described. Note that the various data tables described below are stored in the main ROM 102.

[0300] Also, in the various data tables shown below, the information of the lottery values is conceptually shown. "0" in the data table means that a lottery value corresponding to a winning probability of "0%" is defined, "extremely low" means that a lottery value corresponding to a winning probability of "0% to less than 1%" is defined, and "very low" means that a lottery value corresponding to a winning probability of "1% to less than 10%" is defined. Also, "low" in the data table means that a lottery value corresponding to a winning probability of "10% to less than 30%" is defined, "medium" means that a lottery value corresponding to a winning probability of "30% to less than 60%" is defined, and "high" means that a lottery value corresponding to a winning probability of "60% to less than 80%" is defined. Furthermore, "extremely high" in the data table means that a lottery value corresponding to a winning probability of "80% to less than 99%" is defined, "extremely extremely high" means that a lottery value corresponding to a winning probability of "99% to less than 100%" is defined, and "certain" means that a lottery value corresponding to a winning probability of "100%" is defined.

[0301] And in the various data tables shown below, by the lottery random number value extracted from the range of predetermined numerical values (0 to 65535) by the random number register 1 of the random number circuit 110, the lottery values are sequentially subtracted, and an internal lottery is performed by determining whether the result of the subtraction becomes negative (whether so-called "carry" occurs). Note that in this embodiment, an example of determining a win / loss by subtracting the lottery value from the lottery random number value in the lottery process related to the game performance during the general gaming state has been described, but the present invention is not limited to this, and the lottery value may be added to the extracted lottery random number value, and it may be determined whether the addition result exceeds 65536 (whether so-called "overflow" occurs) to determine a win / loss.

[0302] [Normal Medium-High Probability Lottery Table] First, with reference to FIGS. 40A and 40B, the normal medium-high probability lottery table used in the transition lottery of the CZ lottery status (low probability and high probability) will be described. In the pachislot machine 1 of this embodiment, not only is the transition lottery of the CZ lottery status performed based on the internal winning lottery combination every game, but also the transition lottery of the CZ lottery status is performed, for example, at the end of the bonus or at the end of CZ and ART. FIG. 40A is a configuration diagram of the normal medium-high probability lottery table referred to every game during the normal gaming state, and FIG. 40B is a configuration diagram of the normal medium-high probability lottery table referred to, for example, at the time of setting change, at the end of the bonus, or at the end of CZ and ART. Note that the names of the internal winning lottery combinations shown in FIG. 40A correspond to the names of the above-described sub-flags.

[0303] The normal medium-high probability lottery table shown in FIG. 40A defines the correspondence relationship between each combination of the current CZ lottery status and the internal winning lottery combination, the lottery result (low probability / high probability) of the CZ lottery status after the transition, and the information of the lottery value associated with each lottery result.

[0304] As is clear from the normal medium-high probability lottery table shown in FIG. 40A, when the current CZ lottery status is low probability, the CZ lottery status is likely to shift to high probability when the internal winning lottery combination is a combination corresponding to the sub-flag "weak cherry". On the other hand, when the current CZ lottery status is high probability, the CZ lottery status is maintained at high probability when the internal winning lottery combination is a combination corresponding to any of the sub-flags "common bell", "cactus", "weak cherry", and "strong cherry".

[0305] The normal medium-high probability lottery table shown in FIG. 40B defines the correspondence relationship between each situation when referring to this table, the lottery result (low probability / high probability) of the CZ lottery status after the transition, and the information of the lottery value associated with each lottery result. As is clear from the normal medium-high probability lottery table shown in FIG. 40B, the CZ lottery status always shifts to high probability at the end of the bonus.

[0306] [CZ Lottery Table] Next, with reference to FIGS. 41A and 41B, the CZ lottery table used in the CZ lottery will be described. FIG. 41A is a configuration diagram of the CZ lottery table used when performing a CZ lottery based on an internal winning lottery during a normal game state, and FIG. 41B is a configuration diagram of the CZ lottery table used when performing a CZ lottery to determine whether to pull back the CZ, for example, when a CZ failure occurs or when an ART ends. Note that the names of the internal winning lotteries shown in FIG. 41A correspond to the names of the above-described sub-flags.

[0307] The CZ lottery table shown in FIG. 41A defines the correspondence between each combination of the current CZ lottery state and the internal winning lottery, the winning / non-winning (lottery result) of CZ1, CZ2, and CZ3, and the information on the lottery values associated with each lottery result. As is clear from the CZ lottery table shown in FIG. 41A, when the current CZ lottery state is in a high probability, the probability of winning the CZ lottery is higher than when the current CZ lottery state is in a low probability.

[0308] The CZ lottery table shown in FIG. 41B defines the correspondence between the winning / non-winning (lottery result) of CZ1, CZ2, and CZ3 and the information on the lottery values associated with each lottery result at the time of a CZ failure or the end of an ART. When a CZ failure occurs (when non-winning in the ART lottery for CZ1 or CZ2) or at the end of the ART game state, a CZ pull-back lottery is performed using this CZ lottery table.

[0309] [CZ1 Middle Mode-Up Lottery Table] Next, with reference to FIG. 42, the CZ1 middle mode-up lottery table used in the CZ1 middle mode-up lottery performed in the first half of CZ1 will be described. FIG. 42 is a configuration diagram of the CZ1 middle mode-up lottery table. Note that the names of the internal winning lotteries shown in FIG. 42 correspond to the names of the above-described sub-flags.

[0310] The CZ1 medium mode-up lottery table defines the correspondence between each combination of the current mode and the internal lottery winning factor, the result of the mode-up lottery (winning / losing), and the information on the lottery value associated with each lottery result. As shown in FIG. 44A described later, in CZ1, the higher the mode goes up (the higher the value of the mode), the higher the probability of winning the ART lottery. When the mode goes up to mode 6, the ART lottery is sure to win.

[0311] Note that the lottery result "Mode 1UP" in FIG. 42 means that the mode of CZ1 goes up one step, and the lottery result "Mode 2UP" means that the mode of CZ1 goes up two steps. Therefore, for example, in the situation where the current mode is mode 2, if winning the lottery result "Mode 2UP", the mode of CZ1 goes up from mode 2 to mode 4. Also, for example, if winning the lottery result "Mode 6UP_Freeze Occurred", a freeze occurs, and the winning of the ART lottery and the assignment of CT are determined.

[0312] [CZ2 Medium Point Lottery Table] Next, with reference to FIG. 43, the CZ2 medium point lottery table used in the CZ2 point-up lottery performed in the first half of CZ2 will be described. FIG. 43 is a configuration diagram of the CZ2 medium point lottery table. Note that the names of the internal lottery winning factors shown in FIG. 43 correspond to the names of the above-described sub-flags.

[0313] The CZ2 medium point lottery table defines the correspondence relationship between each combination of the current points and the internal lottery winning roles, the result of the point increase lottery (winning / non-winning), and the information of the lottery values associated with each lottery result. As shown in FIG. 44B described later, in CZ2, the higher the points, the higher the probability of winning the ART lottery. When the points reach "Point 10", the ART lottery will surely win. Note that the lottery result "Point 2UP" in FIG. 43 means that "2" is added to the current points of CZ2. For example, when the current points are "2" and winning the lottery result "Point 2UP", the points of CZ2 will increase from "2" to "4". Also, for example, when winning the lottery result of "Point 10UP_Freeze Occurrence", a freeze occurs, and the winning of the ART lottery and the granting of CT are determined.

[0314] [ART lottery table in CZ] Next, with reference to FIGS. 44A to 44C and FIG. 45, the ART lottery table in CZ used in the ART lottery executed in CZ will be described. Note that FIG. 44A is a configuration diagram of the ART lottery table in CZ (for CZ1) used in the first game of the second half of CZ1, FIG. 44B is a configuration diagram of the ART lottery table in CZ (for CZ2) used in the first game of the second half of CZ2, and FIG. 44C is a configuration diagram of the ART lottery table in CZ (common to CZ1 and CZ2, used during the second half battle) used in the second half of CZ1 and CZ2. Also, FIG. 45 is a configuration diagram of the ART lottery table in CZ (for CZ3) used in the ART lottery executed in CZ3. Note that the names of the internal lottery winning roles shown in FIGS. 44C and 45 correspond to the names of the above-mentioned sub-flags.

[0315] The ART lottery table in CZ (for CZ1) shown in FIG. 44A defines the correspondence relationship between the current mode, the result of the ART lottery (presence or absence of winning), and the information of the lottery values associated with each lottery result. Also, the ART lottery table in CZ (for CZ2) shown in FIG. 44B defines the correspondence relationship between the current points, the result of the ART lottery (presence or absence of winning), and the information of the lottery values associated with each lottery result.

[0316] As is clear from the CZ medium ART lottery table (for CZ1) and the CZ medium ART lottery table (for CZ2), in CZ1 and CZ2, the higher the rank (mode or points) in the first half, the easier it is to win the ART lottery.

[0317] The CZ medium ART lottery table (common to CZ1 and CZ2, for use during the second half of the battle) shown in FIG. 44C defines the correspondence between the internal winning role, the result of the ART lottery (whether a win or not), and the information on the lottery value associated with each lottery result. As is clear from the CZ medium ART lottery table (common to CZ1 and CZ2, for use during the second half of the battle), in the second half of CZ1 and CZ2, when a rare role (a role corresponding to the sub-flag "weak cherry", "cactus", or "strong cherry") is determined as the internal winning role, the ART lottery is won with a predetermined probability.

[0318] The CZ medium ART lottery table (for CZ3) shown in FIG. 45 defines the correspondence between each combination of the number of cleared games in CZ3 and the internal winning role, the result of the ART lottery (whether a win or not), and the information on the lottery value associated with each lottery result. As is clear from the CZ medium ART lottery table (for CZ3), in this embodiment, if a win occurs in the ART lottery during CZ3, a win in the CT is also guaranteed.

[0319] <Gameplay during normal ART> Next, with reference to FIGS. 46A and 46B, the flow of the game during the game ART will be described. In the pachislot machine 1 of this embodiment, as described above, as the ART game state, normal ART and CT are provided (see FIGS. 14A and 14B), and the CT is set as the bonus chance zone. Therefore, in this embodiment, the player plays the game aiming to shift to the CT during the game in normal ART.

[0320] [Mode of transition from normal ART to CT] FIG. 46A is a diagram showing a transition mode of a game state from normal ART to CT. In the pachislot machine 1 of the present embodiment, as shown in FIG. 46A, when winning the CT lottery conducted during normal ART, the game state transitions from normal ART to CT. Note that, as shown in FIG. 46A, the pachislot machine 1 of the present embodiment is provided with an ART level and a CT lottery state as parameters that affect various lotteries conducted during normal ART.

[0321] As the ART level, four levels from level 1 to level 4 are provided, and this ART level is mainly controlled (determined) based on the number of continuous (played) games during normal ART. And the ART level affects the determination of the CT lottery state and the flag conversion lottery during normal ART described later.

[0322] As the CT lottery state, four states of low probability, normal, high probability, and ultra-high probability are provided, and the CT lottery state is mainly controlled (determined) based on the ART level, internal winning combination during normal ART, and the like. And the CT lottery state affects the CT lottery conducted during normal ART and the flag conversion lottery during normal ART described later.

[0323] [Flag conversion during normal ART] As described above, in the pachislot machine 1 of the present embodiment, during the RT4 state, that is, during the ART game state, when any one of the internal winning combinations "F_sure chiri replay", "F_1 sure chiri replay", and "F_reach eye replay A" to "F_reach eye replay D" is determined as the internal winning combination alone, a flag conversion lottery is conducted, and special benefits (for example, an addition to the number of ART games or a CT win) are given according to the lottery result. FIG. 46B is a diagram showing an outline of a method of the flag conversion lottery conducted during normal ART.

[0324] In this embodiment, as shown in FIG. 46B, during normal ART, a flag conversion lottery is conducted with reference to the ART level and the CT lottery status. As a result, if the player wins the flag conversion lottery, special privileges are granted, and a navigation (e.g., notification of information instructing the player to aim for a predetermined symbol by pressing in sequence) is performed to stop and display on the active line a symbol combination related to the abbreviation "3 consecutive chiriripu" or a symbol combination related to the abbreviation "reach target ripu". On the other hand, if the player loses the flag conversion lottery, a navigation (e.g., notification of a pressing order other than pressing in sequence) is performed to stop and display on the active line a symbol combination related to the abbreviation "replay".

[0325] When the player performs a stop operation in accordance with this notification (navigation), the symbol combination corresponding to the notification content is stopped and displayed on the active line. Specifically, if the player wins the flag conversion lottery, a symbol combination related to the abbreviation "3 consecutive chiriripu" or a symbol combination related to the abbreviation "reach target ripu" is stopped and displayed on the active line, and if the player loses the flag conversion lottery, a symbol combination related to the abbreviation "replay" is stopped and displayed on the active line.

[0326] <Various data tables used during normal ART> Next, with reference to FIGS. 47 to 51, various data tables used in the lottery process during normal ART will be described. Note that the various data tables described below are stored in the main ROM 102.

[0327] [Flag conversion lottery table during ART] FIGS. 47A and 47B are configuration diagrams of the flag conversion lottery table during ART used in the flag conversion lottery conducted during normal ART.

[0328] In the pachislot 1 according to this embodiment, the flag conversion lottery during the normal ART is conducted in two stages. Specifically, if the internal winning combination "F_Sure Chili Lip" or "F_1 Sure Chili Lip" is won, the first stage of flag conversion lottery is conducted first. If the first stage of flag conversion lottery is won, the second stage of flag conversion lottery is conducted. If the second stage of flag conversion lottery is won, the internal winning combination "F_Sure Chili Lip" or "F_1 Sure Chili Lip" is converted to the subflag EX "3 consecutive Chili Lip". On the other hand, if the first stage of flag conversion lottery or the second stage of flag conversion lottery is not won, the internal winning combination "F_Sure Chili Lip" or "F_1 Sure Chili Lip" is converted to the subflag EX "replay" (treated as a normal replay combination). In addition, if any of the internal winning roles "F_Reach Eye Lip A" to "F_Reach Eye Lip D" is won, only the second stage flag conversion lottery will be held.

[0329] Figure 47A is a diagram of the configuration of the flag conversion lottery table during ART used in the first stage of flag conversion lottery, and Figure 47B is a diagram of the configuration of the flag conversion lottery table during ART used in the second stage of flag conversion lottery.

[0330] The flag conversion lottery table during ART shown in Figure 47A specifies the correspondence between the internal winning role ("F_sure Chililip" or "F_1 sure Chililip"), the lottery result of the first stage flag conversion lottery (no conversion / conversion (tentative)), and the lottery value information associated with each lottery result.

[0331] The ART flag conversion lottery table shown in Figure 47B defines the correspondence between each combination of internal winning combination, ART level, and CT lottery state, the lottery result of the second stage flag conversion lottery (no conversion / conversion), and the lottery value information associated with each lottery result. In addition, in the normal ART, in the game until the CT is won once, the table in the "First time (until the CT is won once)" column of the item "ART level" in Figure 47B is referenced.

[0332] In this embodiment, as shown in FIGS. 47A and 47B, in the first and second stage flag conversion lotteries using the respective ART in flag conversion lottery tables, a lottery is conducted using a random number value (0 to 255) with a probability denominator of "256". Therefore, in this embodiment, it can be considered that the above-described two-stage flag conversion lottery is substantially the same lottery as conducting a single lottery using a random number value with a probability denominator of "65536".

[0333] In recent pachislot machines, it has been required to conduct lotteries related to the appearance of winning balls (such as ART lotteries), which were conventionally conducted on the sub-control board 72 side (hereinafter referred to as the "sub side"), on the main control board 71 side (hereinafter referred to as the "main side"). However, since the capacity of the storage means (main ROM 102) on the main side is limited to a small capacity, a mechanism is required that enables a lottery that suppresses an increase in processing capacity without impairing the game characteristics.

[0334] Regarding this point, in the pachislot machine 1 of this embodiment, by conducting a lottery with a probability denominator of "256" in two stages, a lottery with a probability denominator of "65536" can be conducted, so an increase in the capacity on the main side related to the lottery process can be suppressed. Also, in the second stage lottery, since the ART level, CT lottery status, etc. are referred to, it is possible to conduct a flag conversion lottery according to the current state as well as the internal winning lottery combination, and as a result, a flag conversion lottery with diverse game characteristics can be conducted.

[0335] [ART Level Determination Table] FIGS. 48A and 48B are configuration diagrams of the ART level determination table used when determining the ART level. Note that the ART level determination process is performed at the time of ART winning lottery when the transition to the ART game state is determined and during normal ART. FIG. 48A is a configuration diagram of the ART level determination table used at the time of ART winning lottery, and FIG. 48B is a configuration diagram of the ART level determination table used during normal ART.

[0336] The ART level determination table shown in FIG. 48A defines the correspondence between ART levels 1 to 4 (lottery results) and the information of lottery values associated with each ART level. In this embodiment, when a freeze occurs during ART lottery, ART level 2 is determined as the ART level.

[0337] The ART level determination table shown in FIG. 48B defines the correspondence between each combination of the current ART level and the number of games played in the normal ART (completed), the various ART levels of the destination, and the information of lottery values associated with each ART level of the destination. Further, the ART level determination table shown in FIG. 48B defines the correspondence between each combination of the current ART level and the number of games played in the normal ART at the time of CT entry, the various ART levels of the destination, and the information of lottery values associated with each ART level of the destination. That is, during normal ART, not only can the ART level be transferred when the number of games played in the normal ART (completed) reaches a predetermined number of games, but also the ART level can be transferred at the timing of entering CT during normal ART.

[0338] [High-probability lottery table during normal ART] FIG. 49 is a configuration diagram of the high-probability lottery table during normal ART used when determining the CT lottery state during normal ART.

[0339] The high-probability lottery table during normal ART defines the correspondence between each combination of the current CT lottery state and the internal lottery role, the various CT lottery states of the destination, and the information of lottery values associated with each CT lottery state. The names of the internal lottery roles shown in FIG. 49 correspond to the names of the above-described sub-flags.

[0340] As is clear from the high-probability lottery table in normal ART, when an internal winning lottery combination corresponding to the sub-flag "Triple Cherry Reel (Triple Cherry Reel A and Triple Cherry Reel B)" or the sub-flag "Reach Target Reel (Reach Target Reel 1 to 4)" wins the lottery, the CT lottery state is likely to shift (fall) to "low probability". However, as shown in FIG. 50 described later, when an internal winning lottery combination corresponding to the sub-flag "Triple Cherry Reel" or "Reach Target Reel" wins the lottery, even if the CT lottery state falls, the configuration is such that the CT lottery will definitely result in a win.

[0341] [CT Lottery Table during ART] FIG. 50 is a configuration diagram of the CT lottery table during ART used in the CT lottery conducted during normal ART.

[0342] The CT lottery table during ART defines the correspondence relationship between each combination of the current CT lottery state and the internal winning lottery combination, various lottery results of the CT lottery (non-winning / normal CT / high-probability CT), and the information of the lottery values associated with each lottery result. Note that the names of the internal winning lottery combinations shown in FIG. 50 correspond to the names of the above-described sub-flags.

[0343] In the present embodiment, when a combination corresponding to the sub-flags "Cactus", "Weak Cherry", "Strong Cherry", "Triple Cherry Reel (Triple Cherry Reel A and Triple Cherry Reel B)", "Reach Target Reel (Reach Target Reel 1 to 4)", or "BB" is determined as the internal winning lottery combination, in the CT lottery process using the CT lottery table during ART, a CT lottery is conducted using a random number value in the range where the probability denominator is "256". Also, when an internal winning lottery combination other than these combinations (for example, a combination corresponding to the sub-flags "Replay", "Common Bell", "Push Order Bell", etc.) is determined as the internal winning lottery combination, in the CT lottery process using the CT lottery table during ART, a CT lottery is conducted using a random number value in the range where the probability denominator is "65536".

[0344] In the pachislot machine 1 of this embodiment, two types of CTs, namely, "normal CT" and "high-probability CT", are provided as CTs. In the normal CT and the high-probability CT, the expected values of the number of ART games added during CT (the additional chance zone) are different from each other, and the high-probability CT is a CT in which more ART games are likely to be added than in the normal CT (see FIG. 55 described later).

[0345] [Additional draw table during normal ART] FIG. 51 is a configuration diagram of the additional draw table during normal ART used for the additional draw of the number of ART games performed during normal ART. Note that the names of the internal winning roles shown in FIG. 51 correspond to the names of the above-described sub-flags.

[0346] The additional draw table during normal ART defines the correspondence relationship between the internal winning roles, various draw results of the additional draw (non-winning / additional 10G to 300G), and the information on the draw values associated with each draw result.

[0347] [Gameplay during CT] Next, with reference to FIGS. 52A to 52C, the flow of the game during CT will be described. FIGS. 52A and 52B are mainly diagrams showing an overview of the game flow during CT when the sub-flag EX "3 consecutive chiri rips" wins, and FIG. 52C is a diagram showing an overview of the flag conversion process performed during CT.

[0348] [Game content during CT] In the pachislot machine 1 of this embodiment, in CT, a game of 1 set of 8 times (8 games) is played. During the CT period, for each game, an additional draw of the number of ART games is performed based on the internal winning role. When winning the additional draw, the subtraction of the unit number of games (number of games) of the CT game is not performed. On the other hand, when the additional draw is a non-win, the subtraction of the unit number of games (number of games) of the CT game is performed. Therefore, during the CT period, in a game in which the number of ART games is added, CT does not end, and when 8 games in which the number of ART games is not added are performed within the same set, CT ends.

[0349] In addition, in this embodiment, as shown in FIGS. 52A and 52B, when the sub-flag EX "3-consecutive chiriripu" wins during the CT period, that is, when the internal winning combination "F_confirm chiriripu" or "F_1 confirm chiriripu" wins and also wins the flag conversion lottery, eight CT games in one set are reset (stockpiled). And the set of CT games that have been reset (stockpiled) is started after the set of the CT games ends.

[0350] For example, after seven unit games that lose the additional draw of the number of ART games in the same set are played, when one CT game in which the number of ART games is not increased is played and the CT ends, if the sub-flag EX "3-consecutive chiriripu" wins in this game, the CT game is reset. As a result, after the CT game is reset, the CT does not end until eight unit games that lose the additional draw of the number of ART games are played. Therefore, the game period of the CT becomes longer as the sub-flag EX "3-consecutive chiriripu" wins.

[0351] [Flag conversion during CT] Next, with reference to FIG. 52C, the method of the flag conversion lottery performed during the CT will be described. As described above, in this embodiment, when the sub-flag EX "3-consecutive chiriripu" wins during the CT period (when the internal winning combination "F_confirm chiriripu" or "F_1 confirm chiriripu" wins and also wins the flag conversion lottery), the CT is reset (stockpiled). Also, as shown in the CT flag conversion lottery table of FIG. 54 described later, when the internal winning combination "F_confirm chiriripu" or "F_1 confirm chiriripu" wins during the CT, it always wins the flag conversion lottery (is always converted to the sub-flag EX "3-consecutive chiriripu"). That is, in this embodiment, during the CT, when the internal winning combination "F_confirm chiriripu" or "F_1 confirm chiriripu" wins, the CT is always reset.

[0352] Also, in the flag conversion lottery when any one of the internal lottery winners "F_Reach Eye Reel A" to "F_Reach Eye Reel D" wins the lottery, the winning probability of the flag conversion lottery is controlled based on three types of flag conversion tables (Tables 0 to 2). Specifically, as shown in FIG. 52C, Table 0 is the flag conversion table with the lowest probability of being converted to the sub-flag EX "Reach Eye Reel", Table 1 is the flag conversion table with the second lowest probability of being converted to the sub-flag EX "Reach Eye Reel", and Table 2 is the flag conversion table with the highest probability of being converted to the sub-flag EX "Reach Eye Reel". Note that when winning the lottery for the sub-flag EX "Reach Eye Reel" during CT, as shown in the CT in-set number addition lottery table of FIG. 56 described later, a new CT is assigned.

[0353] Also, in this embodiment, in the normal CT, as shown in FIG. 52C, the flag conversion table is determined based on the ART level. On the other hand, in the high-probability CT, Table 0 is always determined as the flag conversion table regardless of the ART level.

[0354] <Various data tables used during CT> Next, with reference to FIGS. 53 to 56, various data tables used in the lottery process during CT will be described. Note that the various data tables described below are stored in the main ROM 102.

[0355] [Table lottery table during CT] FIG. 53 is a configuration diagram of the table lottery table during CT used when determining the table to be used for the flag conversion lottery from among the three-level flag conversion tables (Tables 0 to 2).

[0356] The table lottery table during CT defines the correspondence relationship between each state such as the ART level and the type of CT to be executed next, the type of the flag conversion table (Tables 0 to 2), and the information of the lottery value associated with each type. Note that the table lottery table during CT is referred to when it is determined that the lottery for CT is won and the transition to CT is made, or at the start of CT.

[0357] [CT Flag Conversion Lottery Table] FIG. 54 is a configuration diagram of a CT in-flag conversion lottery table used in the flag conversion lottery performed during CT.

[0358] The CT in-flag conversion lottery table defines the correspondence between an internal lottery winner (any one of "F_confirm chili replica", "F_1 confirm chili replica", and "F_reach target replica A" to "F_reach target replica D"), the lottery result (no conversion / conversion) of the flag conversion lottery in each flag conversion table (tables 0 to 2), and the information on the lottery value associated with each lottery result. As is clear from the CT in-flag conversion lottery table, when the internal lottery winner "F_confirm chili replica" or "F_1 confirm chili replica" wins the lottery during CT, the flag conversion lottery will surely win the lottery (it will surely be converted to the sub-flag EX "3 consecutive chili replicas").

[0359] [CT Additional Lottery Table] FIG. 55 is a configuration diagram of a CT additional lottery table used in the additional lottery of the number of ART games performed during CT.

[0360] The CT additional lottery table defines the correspondence between each combination of the current CT state and the internal lottery winner, various lottery results of the additional lottery (no win / additional 10 games / ... / additional 300 games), and the information on the lottery value associated with each lottery result. Note that the names of the internal lottery winners shown in FIG. 55 correspond to the names of the above-mentioned sub-flags. When a winner other than the internal lottery winners (sub-flags) shown in FIG. 55 wins the internal lottery, the additional lottery during CT will not win.

[0361] Also, in the additional lottery during normal CT in this embodiment, the form of awarding the additional game number changes according to the number of wins of the sub-flag "3 consecutive chili replicas" (internal lottery winner "F_confirm chili replica" or "F_1 confirm chili replica").

[0362] Specifically, when the number of times the sub-flag "3-consecutive Chiri Rep" is drawn in the same CT set is between 1 and 8 times, the number of bonus games awarded by the lottery results "Bonus_10G" and "Bonus_20G" shown in Figure 55 is 10 games and 20 games respectively. Therefore, in this case, it is easy to determine that the number of bonus games for ART is 10 games. Also, when the number of times the sub-flag "3-consecutive Chiri Rep" is drawn in the same CT set is between 9 and 16 times, the number of bonus games awarded by the lottery results "Bonus_10G" and "Bonus_20G" shown in Figure 55 is both 20 games. That is, the number of bonus games (lottery result) corresponding to the lottery value "extremely high" of the sub-flag "3-consecutive Chiri Rep" in Figure 55 is upgraded to 20 games. Therefore, in this case, it is easy to determine that the number of bonus games for ART is 20 games.

[0363] Also, when the number of times the sub-flag "3-consecutive Chiri Rep" is drawn in the same CT set is between 17 and 24 times, the number of bonus games awarded by the lottery results "Bonus_10G" and "Bonus_20G" shown in Figure 55 is both 30 games. That is, the number of bonus games (lottery result) corresponding to the lottery values "extremely high" and "extremely low" of the sub-flag "3-consecutive Chiri Rep" in Figure 55 is upgraded to 30 games. Therefore, in this case, it is easy to determine that the number of bonus games for ART is "30 games". Furthermore, when the number of times the sub-flag "3-consecutive Chiri Rep" is drawn in the same CT set is 25 times or more, the number of bonus games awarded by the lottery results "Bonus_10G" and "Bonus_20G" shown in Figure 55 is both 50 games. That is, the number of bonus games (lottery result) corresponding to the lottery values "extremely high" and "extremely low" of the sub-flag "3-consecutive Chiri Rep" in Figure 55 is upgraded to 50 games. Therefore, in this case, it is easy to determine that the number of bonus games for ART is "50 games".

[0364] As described above, in the pachislot machine 1 of the present embodiment, it is possible to increase the number of ART games that can be added by one additional draw according to the number of times the sub-flag "Triple Chiri Rep" is drawn during CT. Also, as described above, in the present embodiment, as long as the number of ART games is being increased, CT does not end, and further, when the sub-flag EX "Triple Chiri Rep" is drawn, CT is reset (stocked). Therefore, in the present embodiment, the player can be made to expect an increase in the amount of additional play per game as CT continues, and the interest during CT can be improved. Also, since the number of times the sub-flag "Triple Chiri Rep" is drawn, which is the trigger for increasing the amount of additional play per game, is more than the basic number of game plays (8 times) for one set of CT (9 times or more), it is possible to prevent giving excessive benefits to the player, and a balance of benefits can be achieved between the player and the game parlor.

[0365] Note that in the present embodiment, the number of times the above-described sub-flag "Triple Chiri Rep" (internal lottery winning combination "F_ Certain Chiri Rep" or "F_1 Certain Chiri Rep") is drawn is the number counted during the same CT set, but the present invention is not limited to this. For example, a new CT given when winning the set addition lottery conducted during CT may also be included in the "same CT set".

[0366] [CT Set Addition Lottery Table during CT] FIG. 56 is a configuration diagram of a CT set addition lottery table used in the addition lottery of CT sets conducted during CT.

[0367] The CT set addition lottery table defines the correspondence relationship between each combination of the current CT state and the internal lottery winning combination (sub-flag "Reach Target Rep (Reach Target Rep 1 to 4)"), various lottery results of the addition lottery (non-winning / normal CT winning / high-probability CT winning), and the information on the lottery values associated with each lottery result.

[0368] As is clear from the CT additional lottery table, when winning a lottery for any of the internal lottery roles "F_Reach First Reel A" to "F_Reach First Reel D" during CT, one is certain to win the additional lottery for the CT set (the CT set is surely stocked). Note that the stocked CT set starts after the set of the currently operating CT ends.

[0369] <Gameplay during bonus state> Next, with reference to FIGS. 57A to 57C, the flow of the game during the bonus state will be described. FIG. 57A is a diagram showing the flow of the game when the game state transitions to the bonus state during the general game state (ART non-winning lottery), FIG. 57B is a diagram showing the flow of the game when the game state transitions to the bonus state during normal ART, and FIG. 57C is a diagram showing the flow of the game when the game state transitions to the bonus state during CT.

[0370] Note that in the pachislot machine 1 of this embodiment, as shown in FIGS. 57A to 57C, in terms of gameplay, normal BB and special BB are provided as types of bonuses, and the type of this bonus is determined when transitioning to the bonus state. At this time, when the special BB is determined, after the end of the bonus state, the game state transitions to CT via the ART preparation state. On the other hand, when the normal BB is determined, the destination game state differs depending on the state before transitioning to the bonus state.

[0371] When the game state transitions from the general game state to the normal BB, as shown in FIG. 57A, in the game during the normal BB, an ART lottery is conducted based on the internal lottery role. And when winning this ART lottery, after the end of the bonus state, the game state transitions to normal ART via the ART preparation state. Note that in this case, during the game in the bonus state after winning the ART lottery, an additional lottery for the number of ART games is conducted.

[0372] When the game state transitions from the normal ART to the normal BB, as shown in FIG. 57B, a CT lottery is conducted at the end of the normal BB. The winning probability of this CT lottery is 50%. If a win occurs, after the end of the bonus state, the game state transitions to the CT via the ART preparation state. On the other hand, if the CT lottery is a non-win, after the end of the bonus state, the game state transitions to the normal ART via the ART preparation state. In addition, during the game in the bonus state transitioned from the normal ART, an additional draw lottery for the number of ART games is also conducted.

[0373] When the game state transitions from the CT to the normal BB or the special BB, as shown in FIG. 57C, after the end of the bonus state, the game state transitions to the CT via the ART preparation state. In addition, during the game in the bonus state transitioned from the CT, an additional draw lottery for the number of ART games is also conducted.

[0374] <Various data tables used in the game during the bonus state> Subsequently, with reference to FIGS. 58 to 60, various data tables used in the lottery process conducted during the game in the bonus state will be described. Note that the various data tables described below are stored in the main ROM 102.

[0375] [Bonus type lottery table] FIG. 58 is a configuration diagram of a bonus type lottery table used when determining the bonus type (normal BB, special BB).

[0376] The bonus type lottery table defines the correspondence relationship between each game state (CT and others) before transitioning to the bonus state, various lottery results (bonus type: normal BB / special BB), and information on lottery values associated with each lottery result. Note that the determination process of the bonus type by referring to the bonus type lottery table is performed at the start of the bonus state.

[0377] [Additional draw lottery table for the number of ART games during the bonus] FIG. 59 is a configuration diagram of a bonus ART game number addition lottery table used in an ART lottery and an additional lottery for the number of ART games performed during a game in a bonus state.

[0378] The bonus ART game number addition lottery table defines the correspondence relationship between each combination of the current bonus type and the internal lottery winning combination, various lottery results (non-winning / 5 games / ... / 300 games) of the additional lottery, and the information on the lottery values associated with each lottery result.

[0379] In the present embodiment, in the state of non-winning in the ART lottery (the state until winning the ART lottery in a normal BB shifted from the general game state), the bonus ART game number addition lottery table is used for the ART lottery. Specifically, in the state of non-winning in the ART lottery, when the number of additional games of 1 game or more (50 games or more in the example shown in FIG. 59) is determined by lottery using the bonus ART game number addition lottery table, it wins the ART lottery and the corresponding number of games is given as the ART game number. On the other hand, in the state after winning the ART lottery, the bonus ART game number addition lottery table is used only for the additional lottery of the ART game number.

[0380] [CT lottery table at the end of the bonus] FIG. 60 is a configuration diagram of a CT lottery table at the end of the bonus used in the CT lottery performed at the end of the bonus state.

[0381] The CT lottery table at the end of the bonus defines the correspondence relationship between each combination of the bonus type (normal BB, special BB) and the game state before shifting to the bonus state (during normal CT, during high-probability CT), various lottery results (non-winning / normal CT winning / high-probability CT winning) of the CT lottery, and the information on the lottery values associated with each lottery result. As is clear from the CT lottery table at the end of the bonus, for example, when a normal BB is performed during normal ART, there is a 50% probability of winning the CT lottery at the end of the bonus state.

[0382] [Exceptional game characteristics during general game state] Next, with reference to FIG. 61, an exceptional game flow during the general game state will be described.

[0383] In the basic game state flow of the pachislot 1 of this embodiment, during the general game state, the game state shifts from the normal game state to CZ, and by winning the ART lottery in CZ, the game state shifts to the ART game state. And in this embodiment, the ART game state is realized by performing notification in the RT4 state. Also, in this embodiment, as shown in FIG. 61, transition control of the RT state is performed according to the symbol combination to be stopped and displayed.

[0384] Note that since the symbol combination for shifting the RT state is stopped and displayed according to the order of the player's stop operations (pushing order) (see FIG. 24), even when no notification is performed, the RT state may accidentally shift to the RT4 state. Also, in the RT4 state, since any one of the internal winning roles "F_Reach Target Rep A" to "F_Reach Target Rep D" may be determined, even during the general game state (non-ART), a reach target (symbol combination related to the abbreviation "Reach Target Rep") to which a special privilege is given can be displayed.

[0385] Therefore, in the pachislot 1 of this embodiment, as shown in FIG. 61, when the RT state accidentally shifts to the RT4 state during the general game state (non-ART) and the symbol combination related to the abbreviation "Reach Target Rep" becomes displayable, the game state can be shifted to the ART game state (normal ART) without going through CZ.

[0386] More specifically, in the general gaming state and when any one of the internal winning roles "F_Reach Target Replay A" to "F_Reach Target Replay D" is determined during the RT4 state, a flag conversion lottery is conducted. If the lottery wins the flag conversion lottery, a notification (navigation) for displaying the symbol combination related to the abbreviation "Reach Target Replay" is performed, and the right of ART is granted. On the other hand, when any one of the internal winning roles "F_Reach Target Replay A" to "F_Reach Target Replay D" is determined in the general gaming state and during the RT4 state, if the lottery fails to win the flag conversion lottery, a notification for displaying the symbol combination related to the abbreviation "Replay" is performed, and control is carried out so that the symbol combination related to the abbreviation "Reach Target Replay" is not displayed.

[0387] <Various data tables used in exceptional game control during general gaming state> Next, with reference to FIG. 62, the data table used in the lottery process performed in the exceptional game control during the above-described general gaming state will be described. The data table described below is stored in the main ROM 102.

[0388] [Flag conversion lottery table during non-ART] FIG. 62 is a configuration diagram of the flag conversion lottery table during non-ART used in the flag conversion lottery performed in the game during the general gaming state and during the RT4 state.

[0389] The flag conversion lottery table during non-ART defines the correspondence relationship between the internal winning roles ("F_Reach Target Replay A" to "F_Reach Target Replay D"), the lottery result of the flag conversion lottery (no conversion / conversion), and the information of the lottery value associated with each lottery result.

[0390] <Notification function by main side control> In conventional pachislot machines, during ART, the sub (sub-control board 72) side controls to notify (navigate) information about the reel stop operation (such as the pressing order). However, since the presence or absence of this notification affects the player's profit (so-called payout), in recent years, it has been required to perform the notification on the main (main control board 71) side that manages the player's profit. Therefore, in the pachislot machine 1 of this embodiment, as described above, an instruction monitor (not shown) for notifying the information display 6 controlled on the main side of the stop operation information is provided, and a function for notifying the information of the reel stop operation is provided by the control on the main side.

[0391] Here, FIGS. 63A to 63D show the correspondence between the notification (navigation) performed on the main side and the notification (navigation) performed on the sub side in the pachislot machine 1 of this embodiment. Note that FIG. 63A is a diagram showing the correspondence between the notification (navigation) performed on the main side and the notification (navigation) performed on the sub side in the ART preparation state, and FIG. 63B is a diagram showing the correspondence between the notification (navigation) performed on the main side and the notification (navigation) performed on the sub side during ART (normal ART or CT). Further, FIG. 63C is a diagram showing the correspondence between the notification (navigation) performed on the main side and the notification (navigation) performed on the sub side during the RT5 state (between BB1 flags), and FIG. 63D is a diagram showing the correspondence between the notification (navigation) performed on the main side and the notification (navigation) performed on the sub side during the RT5 state (between BB2 flags).

[0392] In this embodiment, as shown in FIGS. 63A to 63D, on the main (main control board 71) side, the information of the reel stop operation is notified by displaying numerical values from "1" to "11" on the instruction monitor. Note that the numerical values from "1" to "11" displayed on the instruction monitor each uniquely correspond to the content of the stop operation to be notified.

[0393] Specifically, the numerical values "1" to "3" each indicate the type of reel for which the first stop operation is performed. The numerical value "1" means that the first stop operation is performed on the left reel 3L, the numerical value "2" means that the first stop operation is performed on the middle reel 3C, and the numerical value "3" means that the first stop operation is performed on the right reel 3R.

[0394] In addition, the numerical values "4" to "9" respectively indicate the pressing order for notification. The numerical value "4" means that the pressing order is "left, middle, right", the numerical value "5" means that the pressing order is "left, right, middle", the numerical value "6" means that the pressing order is "middle, left, right", the numerical value "7" means that the pressing order is "middle, right, left", the numerical value "8" means that the pressing order is "right, left, middle", and the numerical value "9" means that the pressing order is "right, middle, left".

[0395] Also, the numerical values "10" and "11" respectively notify bonus hands. The numerical value "10" means the symbol combination (symbol "White 7" - symbol "White 7" - symbol "White 7") related to the combination name "C_BB1", and the numerical value "11" means the symbol combination (symbol "Blue 7" - symbol "Blue 7" - symbol "Blue 7") related to the combination name "C_BB2".

[0396] Note that although the numerical values "1" to "11" notified on the main side (indicator monitor) uniquely correspond to the content of the stop operation to be notified, not all players can clearly understand the notified content based on those numerical values. For example, just displaying the numerical value "6" on the indicator monitor on the main side may not allow some players to understand the notified content.

[0397] Therefore, in the pachislot 1 of this embodiment, in addition to the main-side notification, the sub-side also notifies information related to the stop operation of the stop button. Specifically, the display device 11 (projector mechanism 211 and display unit 212) controlled on the sub-side is used to notify information related to the stop operation under the control of the sub-side.

[0398] For example, when notifying the pressing order for performing the first stop operation on the left reel 3L, the main side displays the numerical value "1" on the instruction monitor, and on the sub side, the numerical value "1" is displayed above the left reel 3L within the display screen of the display device 11 to notify that the left reel 3L is the target of the first stop operation. Also, when notifying the pressing order of "center, left, right", the main side displays the numerical value "6" on the instruction monitor, and on the sub side, the numerical value "1" is displayed above the middle reel 3C within the display screen of the display device 11, the numerical value "2" is displayed above the left reel 3L, and the numerical value "3" is displayed above the right reel 3R. This display notifies that the pressing order is in the order of "center, left, right". Also, when the internal winning combination "F_BB1" is determined, the main side displays the numerical value "10" on the instruction monitor, and on the sub side, information regarding the symbol combination of "white 7" - "white 7" - "white 7" is displayed on the display screen of the display device 11 to notify the player of the symbols to aim for.

[0399] Note that the timing for the main side to perform notification can be set to any timing as long as it is within the period of at least one game for which notification is performed. For example, the main side's notification may be performed at the timing when the start operation of the player is detected (received), or at the start of the rotation of the reels, or at the timing when any one of the first stop operation to the third stop operation is detected. On the other hand, the timing for the sub side to perform notification is preferably at least before the first stop operation. Therefore, in the pachislot machine 1 of the present embodiment, notification (navigation) is performed on both the main side and the sub side at the timing when the start operation is detected or at the start of the rotation of the reels. Thereby, before the player performs the stop operation, information on the stop operation is notified on both the main side's instruction monitor and the sub side's display device 11.

[0400] In the ART preparation state, as shown in FIG. 63A, under the control of the main side, notifications (navigations) called "Bell Navi", "Maintain Replay Navi", "RT3 Transition Replay Navi", and "RT4 Transition Replay Navi" are carried out. In "Bell Navi", when the internal winning tags "F_3 Selection Bell_1st" to "F_3 Selection Bell_3rd" are determined, the pressing order for stopping and displaying the symbol combination related to the abbreviation "Bell" (see FIG. 29) on the active line is notified. In "Maintain Replay Navi", when the internal winning tags "F_Maintain Replay_1st" to "F_Maintain Replay_3rd" are determined, the pressing order for stopping and displaying the symbol combination related to the abbreviation "Replay" (see FIG. 28) on the active line is notified. In "RT3 Transition Replay Navi", when the internal winning tags "F_RT3 Transition Replay_1st" to "F_RT3 Transition Replay_3rd" are determined, the pressing order for stopping and displaying the symbol combination related to the abbreviation "RT3 Transition Replay" (see FIG. 28) on the active line is notified. Also, in "RT4 Transition Replay Navi", when the internal winning tags "F_RT4 Transition Replay_123" to "F_RT4 Transition Replay_3rd" are determined, the pressing order for stopping and displaying the symbol combination related to the abbreviation "RT4 Transition Replay" (see FIG. 28) on the active line is notified.

[0401] Also, during the ART game state (normal ART or CT), as shown in FIG. 63B, under the control of the main side, notifications (navigations) called "Bell Navi", "Maintain Replay Navi", "RT3 Transition Replay Navi", and "RT4 Transition Replay Navi" are carried out. Note that in the game during the ART game state (RT4 state), a flag conversion lottery is conducted, and based on the lottery result, the pressing order for displaying the symbol combination related to the abbreviations "3 - Consecutive Chiri Replay", "Reach Point Replay", or "Replay" is notified. However, this notification is carried out only on the sub - side and not on the main side.

[0402] As described above, since the symbol combinations related to the abbreviations "3-consecutive Chili Reels" or "Reach Target Reels" are related to the granting of special privileges, the presence or absence of notification seems to affect the player's profit (number of balls), but in fact, in the pachislot machine 1 of this embodiment, the special privilege is granted based on the lottery result of the flag conversion lottery, so the displayed symbol combination does not affect the privilege to be granted. Therefore, for example, in a state where the player has won the flag conversion lottery, even if the symbol combination related to the abbreviation "Replay" is stopped and displayed, a special privilege is granted. On the other hand, in a state where the player has not won the flag conversion lottery, even if the symbol combination related to the abbreviation "3-consecutive Chili Reels" or "Reach Target Reels" can be stopped and displayed, no special privilege is granted. In the pachislot machine 1 of this embodiment, when the displayed symbol combination does not affect the player's profit (number of balls) in this way, notification is made only on the display device 11 controlled on the sub side without making notification on the main side instruction monitor.

[0403] Also, during the RT5 state (between-flag state), as shown in FIGS. 63C and 63D, information indicating that the player is to aim at the symbol combination related to the bonus combination carried over as an internal winning combination is notified. For example, when the internal winning combination "F_BB1" is carried over, as shown in FIG. 63C, a notification (navi) called "White 7 Navi" is made under the control of the main side. When the internal winning combination "F_BB2" is carried over, as shown in FIG. 63D, a notification (navi) called "Blue 7 Navi" is made under the control of the main side.

[0404] In "White 7 Navi", information on the stop operation for stopping and displaying on the active line the symbol combination corresponding to the internal winning combination "F_BB1", that is, the symbol combination related to the combination name "C_BB1" ("White 7" - "White 7" - "White 7": see FIG. 28), is notified. Also, in "Blue 7 Navi", information on the stop operation for stopping and displaying on the active line the symbol combination corresponding to the internal winning combination "F_BB2", that is, the symbol combination related to the combination name "C_BB2" ("Blue 7" - "Blue 7" - "Blue 7": see FIG. 28), is notified.

[0405] In the state between flags, when a bonus combination and any one of the internal lottery combinations "miss", "F_special 1", "F_special 2", and "F_special 3" are determined, as described in FIG. 24, the symbol combination related to the bonus combination (BB combination) can be stopped and displayed on the active line. However, when an internal lottery combination other than "miss", "F_special 1", "F_special 2", and "F_special 3" and the bonus combination are lottery-winning, the symbol combination related to the bonus combination cannot be stopped and displayed on the active line. Therefore, in the present embodiment, as shown in FIGS. 63C and 63D, only when the carried-over bonus combination and any one of the internal lottery combinations "miss", "F_special combination 1", "F_special combination 2", and "F_special combination 3" are lottery-winning, notification called "White 7 Navigation" or "Blue 7 Navigation" by the main side control is performed. Therefore, in the present embodiment, the notification (navigation) called "White 7 Navigation" or "Blue 7 Navigation" by the main side control can be performed at an appropriate timing when the bonus combination can be won.

[0406] Note that the pachislot machine 1 of the present embodiment is also provided with a function for performing bonus notification, for example, by displaying a bonus confirmation screen or lighting a bonus confirmation lamp. Therefore, on the main side, the navigation called "White 7 Navigation" or "Blue 7 Navigation" may be performed only after notifying (bonus notification) that the bonus combination has been determined as an internal lottery combination.

[0407] As the bonus notification, for example, an effect (so-called continuous effect) performed over a plurality of game periods is generally performed, and an effect that displays a bonus confirmation screen according to the result of this continuous effect is generally performed. If "White 7 Navigation" or the like is performed on the main side during such a continuous effect, the result of the continuous effect may be known halfway, which may damage the interest. Therefore, in the present embodiment, the main control board 71 performs notification (navigation) called "White 7 Navigation" or "Blue 7 Navigation" by the main side control after the bonus notification is performed.

[0408] Incidentally, the method for enabling the main side to grasp the timing at which the bonus notification is made is arbitrary. As one such method, when the bonus role is determined as the internal lottery role, the main control board 71 determines the number of games required until the end of the bonus notification, and after completing the games of this number, a notification (navigation) called "White 7 Navigation" or "Blue 7 Navigation" is considered. More specifically, when the main control board 71 determines the number of games required until the end of the bonus notification, it notifies the sub-control board 72 of this number of games. The sub-control board 72 controls the effects according to this number of games and displays the bonus confirmation screen at the timing when the games of this number are completed, so that the main side can grasp the timing at which the bonus notification is made. That is, the main control board 71 counts the number of unit games after determining the bonus role as the internal lottery role in a state where the bonus role is not carried over, and after the count result reaches a predetermined number, when the bonus role and any one of the internal lottery roles "miss", "F_Special Role 1", "F_Special Role 2", and "F_Special Role 3" are determined as the internal lottery roles, "White 7 Navigation" or "Blue 7 Navigation" is performed.

[0409] Also, as another method, a method of controlling the bonus notification on the main side rather than the sub side is considered. More specifically, when the main control board 71 determines the bonus role as the internal lottery role in a state where the bonus role is not carried over, it determines the effect to be executed on the display device 11 (at least the number of games required for the effect) and notifies the sub-control board 72. By the sub-control board 72 executing the notified effect and displaying the bonus confirmation screen, the main side can grasp the timing at which the bonus notification is made.

[0410] It is also possible to adopt a configuration that enables the main side to grasp the timing at which a bonus notification is made by means other than the two methods described above. In this case, since the main control board 71 cannot receive signals from the sub-control board 72 or the like, it is necessary to grasp the timing at which the bonus notification is made based on signals that the main control board 71 can receive. For example, since the main control board 71 can receive a signal associated with a stop operation, a method of performing a bonus notification when a predetermined stop operation (for example, other than pressing in sequence) is performed while the bonus role is determined as the internal winning role is also conceivable. Specifically, the sub-control board 72 acquires information regarding the internal winning role and information regarding the stop operation from the main control board 71, and performs a bonus notification when the combination of these pieces of information is a predetermined combination. By adopting such a method of bonus notification, since the main control board 71 can also grasp the opportunity for the bonus notification, the main side can grasp the timing at which the bonus notification is made.

[0411] <Explanation of the operation of the main control circuit> Next, with reference to FIGS. 64 to 170, the contents of various processes executed by the main CPU 101 of the main control circuit 90 using a program will be described.

[0412] [Processing at power-on (reset interrupt)] First, the power-on (reset interrupt) processing of Pachislo 1 performed under the control of the main CPU 101 will be described with reference to FIGS. 64 and 65. FIG. 64 is a flowchart showing the procedure of the power-on (reset interrupt) processing, and FIGS. 65A to 65C are diagrams showing an example of the source program for executing the processes of S2, S7, and S8, and S13 in the flowchart, respectively. Note that the power-on (reset interrupt) processing shown in FIG. 64 is executed based on an interrupt request signal output from the interrupt controller 112 of the microprocessor 91 to the main CPU 101 when the power management circuit 93 detects that the supply of the power voltage to the microprocessor 91 has started, and outputs a reset signal to the "XSRST" terminal of the microprocessor 91.

[0413] First, the main CPU 101 determines whether the power supply monitoring port (power supply monitoring means) is in the on state (S1).

[0414] In S1, when the main CPU 101 determines that the power supply monitoring port is in the on state (when S1 is a YES determination), the main CPU 101 repeats the process of S1. Here, the power supply monitoring port being in the on state means that the power supply voltage (DC +5V) supplied to the main CPU 101 is not stable.

[0415] On the other hand, in S1, when the main CPU 101 determines that the power supply monitoring port is not in the on state (when S1 is a NO determination), the main CPU 101 performs initialization processing on the timer circuit 113 (PTC) (S2). In this process, the main CPU 101 performs initial settings for the timer circuit 113. Specifically, the main CPU 101 sets the division ratio in a timer prescaler register (not shown), makes settings such as enabling interrupts in a timer control register (not shown), and sets the initial count value of a timer counter (not shown).

[0416] Next, the main CPU 101 performs initialization processing on the first serial communication circuit 114 (SCU1) between the main control circuit 90 and the sub-control circuit 200, and initialization processing on the second serial communication circuit 115 (SCU2) for the second interface board (S3). Next, the main CPU 101 performs initialization processing on the random number circuit 110 (RDG) (S4). Next, the main CPU 101 performs a write test on the main RAM 103 (S5).

[0417] Next, the main CPU 101 determines whether the writing to the main RAM 103 was performed normally based on the result of the write test (S6).

[0418] In S6, when the main CPU 101 determines that the writing to the main RAM 103 has not been performed normally (when S6 is NO), the main CPU 101 performs the process of S13 described later. On the other hand, in S6, when the main CPU 101 determines that the writing to the main RAM 103 has been performed normally (when S6 is YES), the main CPU 101 acquires the state of the timer control register (not shown) of the timer circuit 113 (S7).

[0419] Next, the main CPU 101 determines whether the current state is the timing of interrupt processing based on the acquired state of the timer control register (S8). Specifically, the main CPU 101 determines whether 1.1172 ms has elapsed since the start of timer counting based on the acquired state of the timer control register.

[0420] In this embodiment, when the timer time of 1.1172 ms is set by the initialization process of the timer circuit 113 in S2, the counting process of the CPU built-in timer is started. Thereafter, the status of the timer circuit 113 can be acquired by reading the information of the timer control register (not shown). And in this embodiment, a bit (discrimination bit) capable of discriminating (referring) whether the current state is the timing of interrupt processing (whether it is in the timer interrupt state) is provided in the timer control register.

[0421] Therefore, in the process of S7 above, the main CPU 101 reads the information of the timer control register (not shown), and in the process of S8, the main CPU 101 refers to the on / off state ("1" / "0") of the discrimination bit in the timer control register to determine whether the current state is the timing of interrupt processing. Note that when 1.1172 ms has elapsed since the start of counting by the timer circuit 113 (if the count value of the timer circuit 113 is 0), the discrimination bit is in the on state.

[0422] In S8, when the main CPU 101 determines that the current state is not the timing for interrupt processing (when S8 is NO), the main CPU 101 returns the process to the process of S7 and repeats the processes after S7.

[0423] On the other hand, in S8, when the main CPU 101 determines that the current state is the timing for interrupt processing (when S8 is YES), the main CPU 101 performs a sum check process (out of specification) (S9). In this process, the main CPU 101 performs a sum check process on the main RAM 103, and this work of the process is performed in an out-of-specification work area (see FIG. 12C) in the main RAM 103. Also, the program used in this sum check process is stored in an out-of-specification area in the main ROM 102 (see FIG. 12B). Note that the details of the sum check process will be described later with reference to FIGS. 79 and 80.

[0424] Also, in S8, when the main CPU 101 determines that the current state is the timing for interrupt processing (when S8 is YES), the main CPU 101 executes an interrupt process (see FIG. 158 described later) before the process of S9. Then, by this interrupt process, a no-operation command is transmitted from the main control circuit 90 (main control board 71) to the sub-control circuit 200 (sub-control board 72).

[0425] After the process of S9, the main CPU 101 determines whether or not the setting key-type switch 54 is in the ON state (S10).

[0426] In S10, when the main CPU 101 determines that the setting key-type switch 54 is in the ON state (when S10 is YES), the main CPU 101 performs the process of S15 described later. On the other hand, in S10, when the main CPU 101 determines that the setting key-type switch 54 is not in the ON state (when S10 is NO), the main CPU 101 determines whether or not the sum check determination result is normal based on the result of the sum check process of S9 (S11).

[0427] In S11, when the main CPU 101 determines that the sum check determination result is not normal (when S11 is a NO determination), the main CPU 101 performs the process of S13 described below. On the other hand, in S11, when the main CPU 101 determines that the sum check determination result is normal (when S11 is a YES determination), the main CPU 101 performs game resume processing (S12). In this process, the main CPU 101 performs a process of returning the game state to the state before power-off detection. Note that the details of the game resume processing will be described later with reference to FIG. 66 below.

[0428] When S6 or S11 is a NO determination, the main CPU 101 displays a character string "rr" indicating an error occurrence on the information display 6 (7-segment LED display) (S13). Thereafter, the main CPU 101 repeats the WDT clear process (S14).

[0429] Here, returning to the process of S10 again, when S10 is a YES determination, the main CPU 101 performs setting change confirmation processing (S15). In this process, the main CPU 101 mainly performs the process of generating and storing a setting change command at the start of setting change. Note that the details of the setting change confirmation processing will be described later with reference to FIG. 68 below.

[0430] Next, the main CPU 101 performs RAM initialization processing (S16). In this process, the main CPU 101 sets the address of "at the time of RAM abnormality or start of setting change" in the game RAM area of the main RAM 103 shown in FIG. 12C as the start address of initialization, and erases (clears) the information from the start address to the final address of the game RAM area. After the process of S16, the main CPU 101 starts the main process described later (refer to FIG. 82 described later).

[0431] In this embodiment, the power-on (reset interrupt) processing is performed as described above. Then, the processing of S2 during the power-on (reset interrupt) processing described above is performed by the main CPU 101 sequentially executing each source code defined in the source program of FIG. 65A.

[0432] In the source program of FIG. 65A, 10 MHz is set as the CPU clock (the supply clock is 20 MHz), 228 is set as the prescaler register setting value, and 49 is set as the initial count value. As a result, 1.1172 ms (= 1 / (10 MHz / 288) × 49) is calculated as the timer time (execution cycle) of the interrupt processing.

[0433] Also, the processing of S7 and S8 during the power-on (reset interrupt) processing described above is performed by the main CPU 101 sequentially executing each source code defined in the source program of FIG. 65B. Specifically, the acquisition process of the state of the timer control register in S7 is executed by the "LD" instruction in FIG. 65B, and the determination process in S8 is executed by the "JBIT" instruction in FIG. 65B. Then, until 1.1172 ms has elapsed since the start of counting by the timer circuit 113, the "LD" instruction in FIG. 65B and the "JBIT" instruction in FIG. 65B are repeatedly executed. When 1.1172 ms has elapsed since the start of counting by the timer circuit 113, an interrupt request signal is output from the timer circuit 113 to the main CPU 101 via the interrupt controller 112. The main CPU 101 starts the interrupt processing in the firs...

Claims

【Claim 1】 Start operation detection means for detecting a start operation by a player, Internal winning combination determination means for determining an internal winning combination with a predetermined probability based on the detection of the start operation by the start operation detection means, Benefit granting determination means for determining by lottery whether to grant, as a benefit, a gaming state advantageous to the player based on information regarding the internal winning combination determined by the internal winning combination determination means, A lottery table provided for each type of information regarding the internal winning combination, which is referred to by the benefit granting determination means, A lottery table selection table for selecting the lottery table associated with the information regarding the currently determined internal winning combination, and comprising: The information regarding the internal winning combination is information commonly set in a plurality of types of internal winning combinations depending on the type thereof, and the type of the information regarding the internal winning combination may change according to the result of the conversion lottery of the information regarding the internal winning combination. In the lottery table selection table, For each type of the information regarding the internal winning combination, a selection value is defined that can determine whether the information regarding the internal winning combination of that type is a lottery target and can specify the arrangement destination of the lottery table associated with the information regarding the internal winning combination of that type, For the selection value of the information regarding the internal winning combination that is not a lottery target, 0 which treats the lottery result by the benefit granting determination means as a loss is defined, For the selection value of the information regarding the internal winning combination that is a lottery target, data other than 0 is defined, The benefit granting determination means has table data acquisition means for acquiring a predetermined address with reference to the lottery table selection table, The selection data for acquiring the selection value and the predetermined address is included in the lottery table selection table, The predetermined address is calculated based on the selection value and the selection data stored in the selection data, which is different from the selection value. A gaming machine characterized by the above.

Citation Information

Patent Citations

  • Game machine

    JP1999216222A

  • Rotary drum game machine

    JP2009000267A

  • Game machine

    JP2009125459A

  • Slot machine

    JP2011224262A

  • Game machine

    JP2012223332A