Coin pushing machine with quick-release coin placing groove

By integrating the coin slot and the coin limiting ring into a single coin-feeding mechanism and optimizing the track design, the problems of cumbersome disassembly and assembly and poor coin movement in traditional coin pushers have been solved, achieving convenient maintenance and energy saving.

CN223611965UActive Publication Date: 2025-11-28禹欣甫
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Patent Information

Application Number
CN202423218156.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-11-28
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Traditional coin pushers have cumbersome coin slots that are difficult to disassemble and consume a lot of electricity. The track design can cause coins to move unevenly or get stuck, increasing the frequency of malfunctions.

Method used

The coin slot and coin limiting ring are integrated into a single coin placement mechanism, which is connected to the machine via a snap-fit ​​method, simplifying the assembly and disassembly process. An arc-shaped channel gap is added to the output track to reduce coin resistance.

Benefits of technology

It improves maintenance efficiency, reduces the frequency of failures, ensures smooth coin movement, and reduces power consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a coin pushing machine with a quick-release coin placing groove. The coin pushing machine comprises a machine table, the coin placing mechanism is detachably mounted on the machine table in a buckling manner; the coin placing mechanism comprises a coin placing disc and a coin limiting ring; the coin accommodating disc is used for accommodating a plurality of coins and is fixedly connected above the coin limiting ring; the coin limiting ring is an annular disc body with a central through hole; the coin limiting ring comprises a plurality of buckling parts, the machine table is provided with a plurality of buckled parts, and the coin limiting ring is buckled on the buckled parts; wherein the lower part of the coin placing disc is provided with a lower opening which is overlapped with the upper part of the central through hole of the coin limiting ring; the rotating chassis is arranged on the machine table and is positioned in the central through hole of the coin limiting ring; the rotating chassis is used for pushing the coins of the coin placing mechanism into a conveying track on the machine table; and the output track is connected with an outlet at the rear upper end of the conveying track and is used for guiding the coins output by the conveying track upwards.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a coin outlet device, in particular to a coin pusher with quick detachable coin slot. BACKGROUND

[0002] The coin pusher (COIN HOPPER) of the prior art game machine is a very important coin medium tool in the game process, and the coin pusher must be used to move the coins to the machine for game use in the whole game process. The traditional coin pusher uses a coin slot to accommodate a plurality of coins, and the coins are driven by a motor and a rotating disc to be transmitted upward through a track. The coin slot of the above-mentioned prior art coin pusher is installed above the rotating disc of the coin pusher through a coin limiting ring, wherein the coin limiting disc is installed around the rotating disc of the coin pusher by screwing and then the coin slot is installed above the coin limiting disc. Such structure needs to remove the coin slot first, then use a screwdriver to remove the screws of the coin limiting disc, and finally remove the coin limiting disc from the machine base, which is relatively cumbersome and inconvenient. Moreover, the track of the traditional coin pusher, whether it is an arc segment or a straight segment in the track, adopts the same internal gap, but such uniform gap makes the effective accommodation space of the arc segment for the coins smaller than that of the straight segment, so that the arc segment easily forms a larger resistance to the coins, which easily causes the coins to move unsmoothly or to be stuck, and also increases the driving current required by the motor, resulting in increased power consumption. Therefore, the utility model hopes to propose a brand-new coin pusher with quick detachable coin slot to solve the above-mentioned defects of the prior art. SUMMARY

[0003] Therefore, the utility model aims to solve the above-mentioned problems of the prior art, and proposes a coin pusher with quick detachable coin slot, which integrates the coin slot and the coin limiting ring separated and installed in the traditional way into a coin mechanism, and connects the coin limiting ring to the machine table by buckling, so that the whole coin mechanism can be removed from the machine table by only removing the connection between the coin limiting ring and the machine table, without the need for additional screwdrivers or any removal tools, which is quite convenient and fast in disassembly and assembly, and can improve the maintenance efficiency of the machine table. Moreover, the arc segment on the output track of the utility model adopts a larger channel gap to form a larger accommodation space, reduces the moving resistance of the coins, makes the coins move more smoothly, and prevents the coins from being stuck in the arc segment, so that the structure of the utility model can make the overall maintenance more convenient and reduce the failure frequency.

[0004] To achieve the above object the utility model discloses a kind of pusher with quick-release type coin slot, comprising: a machine table;A coin placing mechanism, detachably buckling mode is installed on the machine table;The coin placing mechanism includes a coin placing disc and a coin limiting ring, the coin placing disc is used to accommodate multiple coins, and is fixedly connected above the coin limiting ring;Wherein the coin limiting ring of the coin placing mechanism is buckling mode installed on the machine table;The coin limiting ring is annular disc body with a central perforation;The coin limiting ring includes multiple buckling parts, the machine table has multiple buckled parts, and the multiple buckling parts are buckled in the multiple buckled parts;Wherein the coin placing disc below has a lower opening and the central perforation of the coin limiting ring overlaps above;A rotating base plate is installed on the machine table, wherein the coin limiting ring is around the outside of the rotating base plate, and the rotating base plate is located in the central perforation of the coin limiting ring;The rotating base plate is rotatable structure, for rotating the each coin of the coin placing mechanism and pushing into the conveying track located on the machine table by rotating mode from front to back upwards;And an output track is connected the outlet of the rear upper end of the conveying track, which is track extending from below to above, for guiding the coin output by the conveying track upwards. BRIEF DESCRIPTION OF DRAWINGS

[0005] The utility model will be explained in further detail in connection with the drawings and specific embodiments.

[0006] Figure 1 The front side schematic view of the element combination of the utility model is shown.

[0007] Figure 2 The structure schematic view of the coin placing mechanism of the utility model is shown.

[0008] Figure 3 The schematic view of the machine table of the utility model is shown.

[0009] Figure 4 The combined front side schematic view of the machine table and the output track of the utility model is shown.

[0010] Figure 5 The partial element exploded view of Figure 4 is shown.

[0011] Figure 6 The schematic view of another structure of the sub-track of the utility model is shown.

[0012] Figure 7 The partial element exploded view of Figure 6 is shown.

[0013] Figure 8 The structure diagram of the sub-track of the utility model is shown.

[0014] Figure 9 The rear view of the slide pushing mechanism of the utility model is shown.

[0015] Figure 10 A rear side view showing elements of the sliding and pushing mechanism of the present utility model;

[0016] Figure 11 A rear view showing the sliding and pushing mechanism of the present utility model;

[0017] Figure 12 A schematic view showing the coin moving path of the present utility model;

[0018] Figure 13 A partial enlarged view showing Figure 1 the present utility model;

[0019] Figure 14 A partial sectional view showing the output track of the present utility model;

[0020] Figure 15 A schematic view showing the elements of the accommodating space of the present utility model;

[0021] Figure 16 A combined side view showing the rotating shaft, rotating disc, light sensor and driving motor of the present utility model.

[0022] BRIEF DESCRIPTION OF DRAWINGS

[0023] 1, machine table; 3, coin; 10, coin limiting ring; 11, buckle part; 12, buckled part; 14, accommodating space; 20, rotating base; 21, disc body perforation; 22, rotating shaft; 30, conveying track; 50, sliding blocking piece; 51, driving motor; 54, groove; 60, sliding and pushing mechanism; 62, spring; 64, sliding block; 65, sensor; 68, controller; 72, rotating disc; 74, notch; 76, light sensor; 80, coin placing disc; 81, lower opening; 90, output track; 91, inner side wall surface; 92, arc-shaped track; 94, straight line track; 95, guide channel; 96, sub-track; 97, connecting plate; 100, coin placing mechanism; 101, central perforation; 111, rear side buckle; 112, front side buckle plate; 113, buckle claw; 114, front side buckle; 115, rear side buckle hole; 116, buckle groove; 118, positioning block; 119, positioning hole; 301, outlet; 641, rotating rod; 642, rotating shaft; 651, sensing end; 652, transverse blocking plate; 653, protruding part; 661, right sliding groove; 662, left sliding groove; 663, right groove; 664, left groove; 761, light projector; 762, light receiver; 921, output end; 931, right output channel; 932, left output channel; 941, input end; 951, outlet end; 961, front plate; 962, rear plate; 963, upper exposed part; 964, lower exposed part. DETAILED DESCRIPTION

[0024] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Many specific details are set forth in the following description to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Those skilled in the art can make similar extensions without departing from the spirit of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.

[0025] Example:

[0026] Please refer to Figures 1 to 16 As shown, the coin pusher of this utility model with a quick-release coin slot includes the following components: a machine base 1; and a coin placement mechanism 100, which is detachably and snap-fitted onto the machine base 1. Figure 1 As shown, the coin placement mechanism 100 includes a coin tray 80 and a coin limiting ring 10. The coin tray 80 is used to hold multiple coins 3 and is fixedly connected above the coin limiting ring 10, forming an inseparable connection structure with the coin limiting ring 10. In this embodiment, the coin limiting ring 10 can be fixedly connected to the coin tray 80 by means of screwing, bonding, welding, or riveting. The coin limiting ring 10 of the coin placement mechanism 100 is installed on the machine base 1 by a snap-fit ​​method. The coin limiting ring 10 is an annular disc with a central perforation 101. The coin limiting ring 10 includes multiple fastening parts 11, and the machine base 1 has multiple fastened parts 12, with the multiple fastening parts 11 respectively fastening to the multiple fastened parts 12. The multiple fastening parts 11 of the coin limiting ring 10 include at least one rear fastener 111 located on the front side of the coin limiting ring 10, and at least one front fastener plate 112 extending outward from the front side of the coin limiting ring 10. Each rear fastener 111 includes an outwardly extending latch 113. The plurality of fastened portions 12 of the machine 1 include at least one rear latch hole 115 and at least one front fastener 114. The latch 113 of each rear fastener 111 of the coin limit ring 10 engages with a corresponding rear latch hole 115. For example... Figure 13 As shown, the front fastener 114 is pivotally connected to the front side of the machine base 1 and is a pivotable structure. The front fastener 114 has a fastening groove 116. In the assembled state of the coin placement mechanism 100 and the machine base 1, the front fastening plate 112 of the coin limiting ring 10 is fastened into the corresponding fastening groove 116 of the front fastener 114. The front fastener 114 can be engaged with or disengaged from the front fastening plate 112 by pivoting. The plurality of fastening portions 11 of the coin limiting ring 10 also include at least one positioning block 118. In the assembled state of the coin placement mechanism 100 and the machine base 1, the at least one positioning block 118 passes through the at least one positioning hole 119 located on the machine base 1 to position the coin placement mechanism 100 on the machine base 1 and prevent the coin placement mechanism 100 from being displaced by the vibration of the machine base 1 during operation.

[0027] like Figure 2 As shown, the coin tray 80 has a lower opening 81 that overlaps above the central perforation 101 of the coin limiting ring 10. Preferably, the coin tray 80 is transparent or semi-transparent. A rotating base 20 is mounted on the machine base 1, wherein, after assembly, the coin limiting ring 10 surrounds the outer side of the rotating base 20, which is located inside the central perforation 101 of the coin limiting ring 10. The rotating base 20 is rotatable and is used to push the coins 3 of the coin placement mechanism 100 into a conveyor track 30 extending from front to back and upward on the machine base 1 by rotation. The rotating base 20 is driven by a drive motor 51. Figure 15The driving motor 51 is located in a receiving space 14 below the machine 1. A shaft (not shown) of the driving motor 51 is directly connected to the rotating shaft 22 at the bottom of the rotating base 20 or indirectly connected through a gear. When the driving motor 51 is started, the shaft of the driving motor 51 will drive the rotating shaft 22 at the bottom of the rotating base 20, thus driving the rotating base 20 to rotate and drive the coin 3 to the conveying track 30. A rotating disc 72 is installed on the rotating shaft 22 between the driving motor 51 and the rotating base 20. The rotating disc 72 has a plurality of gaps 74. A light sensor 76 is installed on one side of the rotating disc 72. The light sensor 76 is used to project light through the gaps 74 of the rotating disc 72 and receive the light passing through the gaps 74 or the light reflected by the rotating disc 72. According to the received signals, the rotation condition of the rotating disc 72 is determined, and a sensing signal is generated according to the condition. The light sensor 76 includes a light projector 761 and a light receiver 762. The rotating disc 72 is located between the light projector 761 and the light receiver 762. The light projector 761 is used to project light through the gaps 74, and the light receiver 762 is used to receive the light passing through the gaps 74 or the light reflected by the rotating disc 72. According to the received signals, the rotation condition of the rotating disc 72 is determined. A controller 68 receives the sensing signal from the light sensor 76, and determines whether the rotation condition of the rotating disc 72 is normal. When the controller 68 detects that the rotation condition of the rotating disc 72 is abnormal, the speed of the driving motor 51 is adjusted or the driving motor 51 is stopped to protect the entire mechanism. When the controller 68 detects that the rotating disc 72 does not rotate within a set time, the driving motor 51 is stopped to protect the driving motor 51 and prevent the driving motor 51 from being damaged. The at least one rear side buckle hole 115 is located at the upper rear side of the rotating base 20. The at least one front side buckle 114 is located at the lower front side of the rotating base 20. The at least one positioning block 118 is located around the bottom of the central hole 101. The at least one positioning hole 119 is located around the outer periphery of the rotating base 20. An output track 90 is connected to the outlet 301 at the upper rear end of the conveying track 30. The output track 90 is an upwardly extending track for guiding the coin 3 output from the conveying track 30 upwardly.

[0028] As Figure 14The output track 90 is formed by at least one arc-shaped track 92 and at least one straight track 94. The gap height of the guide channel 95 of the arc-shaped track 92 is greater than the gap height of the guide channel 95 of the straight track 94. The gap height of the guide channel 95 is the distance between the two inner side walls 91 inside the corresponding arc-shaped track 92 or straight track 94. Preferably, the gap height of the guide channel 95 of the straight track 94 is at least 1.27 times the thickness of the coin 3, and the gap height of the guide channel 95 of the arc-shaped track 92 is at least 1.3 times the gap height of the guide channel 95 of the straight track 94. Figure 14 The dimensions of the elements shown in the figures are only schematic and not actual dimensions. In this embodiment, the gap height of the guide channel 95 of the arc-shaped track 92 is 3 mm, the gap height of the guide channel 95 of the straight track 94 is 2.3 mm, and the thickness of the coin 3 is 1.8 mm. The shapes of the arc-shaped track 92 and the straight track 94 shown in the figures are not intended to limit the scope of the present application. In fact, the arc-shaped track 92 and the straight track 94 can be formed in various different shapes as needed to output the coin 3 to the desired location. The above design allows the coin 3 to have a larger rotation space when passing through the arc-shaped track 92, so that the output track 90 can have a smaller radius of curvature at the curved section, thereby reducing the overall volume occupied by the output track 90. This not only makes the overall mechanism more compact, but also allows various curved sections to be arranged in a smaller accommodation space. Figures 4 to 8 As shown, the arc-shaped track 92 and the straight track 94 are each formed by at least one sub-track 96. The sub-track 96 includes a front plate 961 and a rear plate 962. The front plates 961 and the rear plates 962 of all the sub-tracks 96 form an interlaced series structure. A portion of the front plate 961 and the rear plate 962 of each sub-track 96 abut against each other, and the abutment forms the guide channel 95. The un-abutted portions of the front plate 961 and the rear plate 962 form an upper exposed portion 963 and a lower exposed portion 964. The corresponding upper exposed portion 963 and the lower exposed portion 964 of adjacent two sub-tracks 96 abut against each other. Figure 5 As shown, the lower exposed portion 964 of the sub-track 96 is located on the lower side of the rear plate 962, and the upper exposed portion 963 of the sub-track 96 is located on the upper side of the front plate 961. Figures 7 to 8 As shown, the lower exposed portion 964 of the sub-track 96 is located on the lower side of the front plate 961, and the upper exposed portion 963 of the sub-track 96 is located on the upper side of the rear plate 962. Figure 4As shown in FIG. 9A, the output track 90 is formed by at least one arc track 92 and at least one straight track 94 connected in series. The arc track 92 and the straight track 94 connected in series are connected by a connecting plate 97. The connecting plate 97 is installed on the front side of the output end 921 of the arc track 92. The input end 941 of the straight track 94 is connected to the output end 921 of the arc track 92 and is opposite to the connecting plate 97. As shown in FIG. 9B, the connecting plate 97 is installed on the front side of the output end 921 of the arc track 92. The input end 941 of the straight track 94 (i.e. the lower exposed part 964 of the sub-track front plate 961) is connected to the rear side of the output end 921 of the arc track 92 and is opposite to the connecting plate 97. As shown in FIG. 9C, the connecting plate 97 is installed on the rear side of the output end 921 of the arc track 92. The input end 941 of the straight track 94 (i.e. the lower exposed part 964 of the sub-track rear plate 962) is connected to the front side of the output end 921 of the arc track 92 and is opposite to the connecting plate 97. Therefore, the sub-tracks 96 can be arranged in different staggered manners. The connecting plate 97 can be installed on the front side or the rear side of the sub-tracks 96, which improves the convenience of installation. Figure 4 As shown in FIG. 9B, the connecting plate 97 is installed on the front side of the output end 921 of the arc track 92. The input end 941 of the straight track 94 (i.e. the lower exposed part 964 of the sub-track front plate 961) is connected to the rear side of the output end 921 of the arc track 92 and is opposite to the connecting plate 97. Figure 6 As shown in FIG. 9C, the connecting plate 97 is installed on the rear side of the output end 921 of the arc track 92. The input end 941 of the straight track 94 (i.e. the lower exposed part 964 of the sub-track rear plate 962) is connected to the front side of the output end 921 of the arc track 92 and is opposite to the connecting plate 97. Therefore, the sub-tracks 96 can be arranged in different staggered manners. The connecting plate 97 can be installed on the front side or the rear side of the sub-tracks 96, which improves the convenience of installation. Figures 9 to 11 As shown in FIG. 9D, the upper ends of the output track 90 are formed with a right output channel 931 and a left output channel 932, which are connected to the exit end 951 above the guide channel 95. The right output channel 931 and the left output channel 932 are not parallel to the guide channel 95. In the drawings, the right output channel 931 and the left output channel 932 are horizontal channels and are perpendicular to the guide channel 95. The exit end 951 of the guide channel 95 is installed with a sliding mechanism 60. The sliding mechanism 60 includes a spring 62, a left sliding groove 662 on the left output channel 932, and a right sliding groove 661 on the right output channel 931. The left sliding groove 662 and the right sliding groove 661 are symmetrical. A sliding block 64 is installed in the right sliding groove 661 or the left sliding groove 662. One end of the spring 62 is fixed to the output track 90, and the other end is connected to the sliding block 64. The left sliding groove 662 extends outward and upward to the left upper side of the upper end of the guide channel 95. The right sliding groove 661 extends outward and upward to the right upper side of the upper end of the guide channel 95. The sliding block 64 is installed on a rotating rod 641, which is connected to the spring 62. One end of the rotating rod 641 is pivoted to a rotating shaft 642, which is above the output track 90. The rotating rod 641 is used to drive the sliding block 641 to move in the left sliding groove 662 or the right sliding groove 661. The sliding block 64 is located at the inner end of the left sliding groove 662 or the right sliding groove 661 and is inside the exit end 951 of the guide channel 95. Figure 9 and Figure 10The rear view of the sliding mechanism 60 shown illustrates that when the slider 64 is installed in the right slide groove 661, the coin 3 moves from the guide channel 95 to the slider 64, and the slider 64 is pushed by the coin 3 to the outer end of the right slide groove 661. Figure 9 (Showing its movement along direction D), allowing the coin 3 to pass through the slider 64 and enter the left output channel 932. The slider 64 retracts to the inner end of the groove 66 by the elastic force of the spring 62, pushing the coin 3 outward, causing the coin 3 to be ejected outward from the left output channel 932 (as shown). Figure 9 (As shown in direction C). Figure 11 A rear view showing another application example of the sliding mechanism 60, wherein when the slider 64 is installed in the left slide groove 662, the coin 3 moves from the guide channel 95 to the slider 64, and the slider 64 is pushed by the coin 3 to the outer end of the left slide groove 662. Figure 11 (Showing its movement along direction E), allowing the coin 3 to pass through the slider 64 and enter the right output channel 931. The slider 64 retracts to the inner end of the groove 66 by the elastic force of the spring 62, pushing the coin 3 outward, causing the coin 3 to be ejected outward from the right output channel 931 (as shown). Figure 11 (As shown in direction B). This utility model also includes a sensor 65 installed on the right output channel 931 or the left output channel 932. The sensor 65 includes a sensing end 651 located outside the left slide 662 or the right slide 661; the sensing end 651 is used to sense the coin 3 in the right output channel 931 or the left output channel 932 to calculate the number of coins 3 passing through. There is a left groove 664 above the left slide 662; there is a right groove 663 above the right slide 661, wherein the sensor 65 is installed in the left groove 664 or the right groove 663. A transverse baffle 652 is detachably installed above the left slide 662 or the right slide 661, which is used to guide the coin 3 to be ejected laterally from the right output channel 931 or the left output channel 932. The transverse baffle 652 includes a protrusion 653 located above the outlet of the right output channel 931 or the left output channel 932. Figure 9 As shown, when the slider 64 is located within the right slide groove 661, the protrusion 653 of the transverse baffle 652 is located above the outlet of the left output channel 932; as Figure 11 As shown, when the slider 64 is located within the left slide 662, the protrusion 653 of the transverse baffle 652 is positioned above the outlet of the right output channel 931. Therefore, when the coin 3 pushes against the slider 64 and is output from the right output channel 931 or the left output channel 932, the protrusion 653 of the transverse baffle 652 can prevent the coin 3 from being ejected upwards, thus limiting the range of movement of the coin 3. Figure 3 andFigure 12 As shown in the figure, the rotating disc 20 has a plurality of disc body perforations 21, the conveying track 30 is an annular track located below the plurality of disc body perforations 21 of the rotating disc 20, the coin 3 dropped into the rotating disc 20 by the coin dropping mechanism 100 falls into the conveying track 30 through the plurality of disc body perforations 21, and the rotating disc 20 pushes the coin 3 along the conveying track 30 through its bottom.

[0029] Figure 12 The dashed line A in the figure shows the moving path of the coin 3 in the conveying track 30 and the output track 90. The conveying track 30 is connected to the output track 90, and a sliding stopper 50 is arranged at the output track 90. The sliding stopper 50 is installed in a groove 54 and can move along the groove 54. When the coin 3 passes through the sliding stopper 50, the sliding stopper 50 is pushed out by the coin 3, so that the coin 3 can enter the output track 90; when the coin 3 enters the output track 90, the sliding stopper 50 slides back to the groove 54 below to support the coin 3 in the output track 90, so as to reduce the moving resistance of the coin 3 in the output track 90 to the coin 3 in the conveying track 30. The advantage of the utility model is that the coin dropping slot and the coin limiting ring which are separately installed in the traditional way are integrated into a coin dropping mechanism, and the coin limiting ring is connected to the machine in a snap-fit manner, so that the coin dropping mechanism can be removed from the machine by only removing the connection between the coin limiting ring and the machine, without the need of using a pick or any dismounting tool, which is quite convenient and fast in dismounting, and can improve the maintenance efficiency of the machine. Moreover, the arc-shaped section on the output track has a larger channel gap, thereby forming a larger accommodation space, reducing the moving resistance of the coin, making the coin move more smoothly, and preventing the coin from being stuck in the arc-shaped section. Therefore, the structure of the utility model can make the overall maintenance more convenient and reduce the failure frequency.

[0030] Obviously, the described embodiments are only a part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

Claims

1. A coin pusher with a quick-release coin slot, characterized in that, include: One machine; A coin-holding mechanism is detachably and snap-fitted onto a machine platform. The coin-holding mechanism includes a coin-holding tray and a coin-limiting ring. The coin-holding tray is used to hold multiple coins and is fixedly connected above the coin-limiting ring. The coin-limiting ring is snap-fitted onto the machine platform. The coin-limiting ring includes multiple fastening parts, and the machine platform has multiple fastened parts, with the multiple fastening parts snapping onto the multiple fastened parts respectively. The coin-limiting ring is an annular disc with a central perforation, and the coin-holding tray has a lower opening that overlaps above the central perforation of the coin-limiting ring. A rotating base is mounted on the machine platform, wherein the coin limiting ring surrounds the outer side of the rotating base, and the rotating base is located inside the central perforation of the coin limiting ring; the rotating base is a rotatable structure, used to push each coin of the coin placement mechanism into a conveyor track located on the machine platform that extends from front to back and upward by rotating. as well as An output track is connected to the upper rear outlet of the conveyor track. It is an upward-extending track used to guide the coins output from the conveyor track upward.

2. The coin pusher with a quick-release coin slot according to claim 1, characterized in that, The coin-limiting ring has multiple fastening parts, including at least one rear fastener located on the front side of the coin-limiting ring and at least one front fastener plate extending outward from the front side of the coin-limiting ring; each rear fastener includes an outwardly extending fastening claw; the multiple fastened parts of the machine include at least one rear fastening hole and at least one front fastener; the fastening claw of each rear fastener of the coin-limiting ring engages with a corresponding rear fastening hole; the front fastener is pivotally connected to the front side of the machine and is a pivotable structure, and the front fastener has a fastening groove; in the assembled state of the coin-feeding mechanism and the machine, the front fastener plate of the coin-limiting ring engages with the corresponding fastening groove of the front fastener; the front fastener engages with the front fastener plate or disengages from the front fastener plate by pivoting.

3. The coin pusher with a quick-release coin slot according to claim 2, characterized in that, The coin-limiting ring also includes at least one positioning block. When the coin-holding mechanism is assembled with the machine, the at least one positioning block passes through at least one positioning hole on the machine to position the coin-holding mechanism on the machine and prevent the coin-holding mechanism from being displaced by vibrations during machine operation. The at least one rear fastening hole is located on the upper rear side of the rotating base. The at least one front fastener is located on the lower front side of the rotating base. The at least one positioning block is located around the bottom of the central through hole. The at least one positioning hole is located around the outer periphery of the rotating base.

4. The coin pusher with a quick-release coin slot according to claim 1, characterized in that, A guide channel is formed between the two inner sidewalls of the output track to allow the coin to pass through; the output track is formed by connecting at least one arc track and at least one straight track; wherein the gap height of the guide channel of the arc track is greater than the gap height of the guide channel of the straight track; the gap height of the guide channel is the distance between the two inner sidewalls located inside the corresponding arc track or straight track.

5. The coin pusher with a quick-release coin slot according to claim 4, characterized in that, The gap height of the guide channel of the straight track is at least 1.27 times the thickness of the coin, and the gap height of the guide channel of the curved track is at least 1.3 times the gap height of the guide channel of the straight track.

6. The coin pusher with a quick-release coin slot according to claim 4, characterized in that, The arc-shaped track and the straight track are each formed by connecting at least one sub-track; each sub-track includes a front plate and a rear plate, and the front plates and rear plates of all sub-tracks form an interlaced connection structure, wherein a portion of the front plate and the rear plate of each sub-track is connected to each other, and the guide channel is formed between the connection points; the unconnected portions of the front plate and the rear plate form an upper exposed portion and a lower exposed portion; the upper exposed portions and the lower exposed portions of two adjacent sub-tracks are connected to each other.

7. The coin pusher with a quick-release coin slot according to claim 1, characterized in that, The output track is formed by connecting at least one arc track and at least one straight track in series; wherein the arc track and the straight track connected in series are connected by a connecting plate, which is installed on the front or rear side of the output end of the arc track, and the input end of the straight track is connected to the output end of the arc track and is aligned with the opposite side of the connecting plate.

8. The coin pusher with a quick-release coin slot according to claim 1, characterized in that, The output track has a guide channel formed between its two inner side walls, allowing the coin to pass through. A right output channel and a left output channel are formed on the upper left and right sides of the output track, respectively connected to the outlet ends of the guide channels. The right and left output channels are not parallel to the guide channels. A sliding mechanism is installed at the outlet end of the guide channels. The sliding mechanism includes: a spring, a left slide groove on the left output channel, a right slide groove on the right output channel, and a slider installed in either the right or left slide groove. One end of the spring is fixed to the output track, and the other end is connected to the slider. The slider is mounted on a rotating rod, which connects to the spring. One end of the rotating rod is pivotally connected to a rotating shaft located above the output track. The rotating rod is used to move the slider within the left or right slide groove.

9. The coin pusher with a quick-release coin slot according to claim 8, characterized in that, Also includes: A sensor is installed on the right output channel or the left output channel; the sensor includes a sensing end located outside the left slide or the right slide; the sensing end is used to sense the coin in the right output channel or the left output channel and calculate the number of coins passing through; there is a left groove above the left slide; there is a right groove above the right slide, wherein the sensor is installed in the left groove or the right groove; a detachable transverse baffle is installed above the left slide or the right slide, which is used to guide the coin to be ejected laterally from the right output channel or the left output channel.

10. The coin pusher with a quick-release coin slot according to claim 1, characterized in that, The transport track is a circular track; A sliding stop is provided at the connection between the conveyor track and the output track. The sliding stop is installed in a groove and can move along the groove. When the coin passes through the sliding stop, the sliding stop is pushed outward by the coin, allowing the coin to enter the output track. When the coin enters the output track, the sliding stop slides back down below the groove to support the coin in the output track.

11. The coin pusher with a quick-release coin slot according to claim 6, characterized in that, When the lower exposed portion of the sub-track is located on the lower side of the rear plate, the upper exposed portion of the sub-track is located on the upper side of the front plate; when the lower exposed portion of the sub-track is located on the lower side of the front plate, the upper exposed portion of the sub-track is located on the upper side of the rear plate.

12. The coin pusher with a quick-release coin slot according to claim 1, characterized in that, It also includes a space for housing a drive motor located below the machine platform. A spindle of the drive motor is directly connected to a rotating shaft at the bottom of the rotating base, or indirectly connected via gears. The drive motor drives the rotating base to rotate, thus conveying the coin to the conveyor track. A rotating disk is mounted on the rotating shaft and located between the drive motor and the rotating base. The rotating disk has multiple notches. A light sensor is mounted on one side of the rotating disk, used to project light through the notches and receive light passing through the notches, or to receive light reflected from the rotating disk. Based on these received signals, the rotation status of the rotating disk is determined, and a sensing signal is generated accordingly. The light sensor includes a light projector and a light receiver, with the rotating disk located between the light projector and the light receiver. A controller receives the sensing signal from the light sensor and determines whether the rotation status of the rotating disk is normal. When the controller detects an abnormality in the rotating disk, it can adjust the speed of the drive motor or stop the operation of the drive motor.