A track payout device for a large scale gaming apparatus
Patent Information
- Application Number
- CN202521877530.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-01
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-09-01
AI Technical Summary
[0002]在大型游戏设备中,游戏与玩家自身的互动体验非常重要,现有的大型游戏设备中,玩家在游戏过程中,从游戏币的出币到玩家获得游戏币奖励的过程,基本上都是在游戏机内部完成,玩家无法直观地观察到,可视性差,不具备展示性,玩家只能从送奖区域的出币口观察到游戏币的掉落,玩家的目标性和中奖时反馈的刺激体验效果都很差,无法满足玩家所见即所得的需求
Smart Images

Figure CN224723632U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of game consoles, and in particular to a track-based prize delivery device for large-scale game equipment. Background Technology
[0002] In large-scale gaming machines, the interactive experience between the game and the player is crucial. In existing large-scale gaming machines, the process from the dispensing of game coins to the player receiving game coin rewards is basically completed inside the machine. Players cannot observe this process directly, resulting in poor visibility and a lack of demonstration. Players can only observe the game coins falling from the coin dispenser in the reward area. The player's sense of purpose and the stimulating experience of winning are both poor, failing to meet the player's need for "what you see is what you get". Utility Model Content
[0003] The purpose of this invention is to overcome the shortcomings of the prior art and provide a track-based prize delivery device for large-scale gaming equipment.
[0004] According to one aspect of the present invention, a track-based prize-delivery device for large-scale gaming equipment is provided, comprising:
[0005] Closed chain track;
[0006] The drive unit drives the chain track for transmission.
[0007] Multiple carriages, which are set on chain tracks and whose bottoms can be opened and closed;
[0008] A first detection device for detecting whether the carriage has been conveyed to the coin replenishment position is located on the side of the chain track.
[0009] A second detection device is used to detect whether a car is empty. This second detection device is located on the side of the chain track.
[0010] When the second detection device detects that the carriage is empty, the coin loading device of the game equipment will fill the carriage with game coins.
[0011] A third detection device, located on the side of the chain track, is used to detect whether the carriage has been conveyed to the prize delivery position; and
[0012] The drive unit opens the bottom of the carriage to pour game coins into the prize-giving area of the game device.
[0013] This utility model's track-based prize delivery device works as follows: When a player wins a game coin reward, the drive component drives the chain track to move the carriage to the coin replenishment position. At this point, the first detection device detects that the carriage has moved to the coin replenishment position, and the drive component stops working, meaning the chain track stops moving. Then, the second detection device checks if the carriage is empty. If it is empty, the game equipment's coin loading device fills the carriage with game coins. If the carriage is full, the drive component drives the chain track to continue moving. The first and second detection devices check the coin replenishment position and empty status of the next carriage until all the game coins delivered by the game equipment have been delivered. If a player wins the grand prize during the game, the carriage moves to the prize delivery position under the chain track. At this point, the third detection device detects that the carriage has moved to the prize delivery position, the drive component stops working, meaning the chain track stops moving. Then, the drive component opens the bottom of the carriage to release the game coins inside. Coins are poured into the prize-giving area of the game device. The drive component drives the chain track to continue conveying the coins. The third detection device detects the prize-giving position of the next carriage. The drive component then opens the bottom of the next carriage to pour the game coins into the prize-giving area of the game device. This process continues until all the game coins in all carriages are poured into the prize-giving area. Then, under the conveyor of the chain track, the carriage returns to the coin replenishment position, and the entire process is repeated. This utility model's track-based prize-giving device has an overall train-shaped appearance. From the moment the game device dispenses coins to the moment the player receives the game coin reward, the player can directly observe the entire process, which has a strong visual impact and can achieve a reward display effect. The player's goal-orientation and the stimulating experience of receiving a reward are both enhanced. If the player receives a reward, the carriage will come to the player and release the game coins in the carriage, improving the player's interactive experience in large-scale game devices and satisfying the player's need for "what you see is what you get".
[0014] Preferably, a baffle is provided at the bottom of the carriage, and the first detection device is a first slotted photoelectric sensor, which is electrically connected to the driving component.
[0015] When the baffle is housed in the U-shaped groove of the first slotted photoelectric sensor, the driving component stops working.
[0016] Therefore, when the carriage moves to the coin replenishment position, the baffle at the bottom of the carriage is accommodated in the U-shaped groove of the first slot-type photoelectric sensor. At this time, the first slot-type photoelectric sensor is triggered and generates a switching signal to control the drive component to stop working.
[0017] Preferably, the two opposite side walls of the carriage are provided with coaxial through holes, and the second detection device is a through-beam photoelectric sensor.
[0018] Therefore, when the carriage moves to the coin replenishment position, if the carriage is empty, there is no obstruction between the two perforations on the two opposite side walls of the carriage, and the through-beam photoelectric sensor is triggered. The through-beam photoelectric sensor generates a switching signal, controlling the drive component to stop working. The coin loading device of the game equipment fills the carriage with game coins. The number of game coins filled in each carriage can be set by the coin loading device. If the carriage is full, the two perforations on the two opposite side walls of the carriage are obstructed, and the through-beam photoelectric sensor is not triggered. The drive component drives the chain track to continue conveying, and so on, until all the game coins delivered by the game equipment are delivered.
[0019] Preferably, a baffle is provided at the bottom of the carriage, and the third detection device is a second slotted photoelectric sensor, which is electrically connected to the driving component.
[0020] When the baffle is housed in the U-shaped groove of the second slotted photoelectric sensor, the driving component stops working.
[0021] Therefore, when the carriage moves to the prize delivery position, the baffle at the bottom of the carriage is housed in the U-shaped groove of the second slot-type photoelectric sensor. At this time, the second slot-type photoelectric sensor is triggered and generates a switching signal to control the drive component to stop working.
[0022] Preferably, the carriage includes a frame-shaped body, two side panels, a floor plate, and a chassis.
[0023] The bottoms of both side plates are mounted on the chassis, and the two side plates are arranged in parallel. The chassis has a connecting part for connection with the chain track.
[0024] The frame-shaped body is housed between two side panels, and both sides of the frame-shaped body are slidably connected to the two side panels respectively.
[0025] The bottom plate is housed between two side plates and is located below the frame-shaped body. A pivot is provided on one side of the bottom plate, with its two ends respectively located on the two side plates and rotatably connected to them. On the other side of the bottom plate, there are abutment plates arranged at an obtuse angle to the bottom plate. A driving device can drive the abutment plates to move up and down.
[0026] When the base plate is horizontal, the abutment plate slopes downwards.
[0027] Therefore, the carriage is installed on the chain track via a connecting part. When the chain track is used for transmission, it drives the carriage to move. The space enclosed by the frame-shaped carriage and the bottom plate can hold game coins. When the carriage moves to the prize delivery position, the drive device drives the abutment to move upward, and the bottom plate flips upward around the pivot. Since the abutment and the bottom plate are arranged at an obtuse angle and the pivot is located on the side of the bottom plate away from the abutment, the bottom plate will lift the frame-shaped carriage. The distance between the bottom of the frame-shaped carriage and the side of the bottom plate where the pivot is located increases, opening the carriage. At this time, due to the inclined arrangement of the bottom plate, the game coins in the space enclosed by the frame-shaped carriage and the bottom plate will be poured into the prize delivery area of the game equipment. Then, the drive device drives the abutment to move downward, and the bottom plate flips downward around the pivot. At the same time, the frame-shaped carriage moves downward under the action of gravity. When the bottom plate flips downward to a horizontal state, the bottom of the frame-shaped carriage and the bottom plate are closed. At this time, the space enclosed by the frame-shaped carriage and the bottom plate can be filled with game coins again.
[0028] Preferably, the carriage also includes two connecting rods, the tops of the two side panels are connected by the two connecting rods, and the frame-shaped carriage is accommodated between the two connecting rods.
[0029] Therefore, the connection between the two side panels via two connecting rods ensures the overall stability of the carriage, and the frame-shaped body housed between the two connecting rods prevents it from tipping over during upward or downward movement.
[0030] Preferably, the inner wall of the side panel is provided with a slide rail, and the outer wall of the frame-shaped box is provided with a slider adapted to the slide rail, the slider sliding on the slide rail.
[0031] Therefore, through the cooperation of the slider and the slide rail, the frame-shaped box can move smoothly upward or downward.
[0032] Preferably, the chain track is provided with support rods on both sides, which are aligned with the direction of the chain track, and the chassis is provided with wheels, which are located on the support rods and can roll along the support rods.
[0033] Therefore, when the chain track is used for transport, the carriage can roll smoothly along the support rod through the wheels, and the support rod can prevent the carriage from tipping over during the movement.
[0034] Preferably, the driving device is an electric push rod, and the third detection device is electrically connected to the electric push rod, which can drive the stop plate to move up and down.
[0035] Therefore, when the carriage moves to the prize delivery position, the third detection device detects that the carriage has moved to the prize delivery position, the drive component stops working, that is, the chain track stops conveying, and then the push rod of the electric push rod extends upward, pushing the bottom plate upward, and the bottom of the frame-shaped carriage and the bottom plate are in an open state. The game coins in the carriage are poured into the prize delivery area of the game equipment. Then the push rod of the electric push rod retracts downward, and the bottom plate flips downward with the pivot as the center of rotation under the action of gravity. The frame-shaped carriage moves downward under the action of gravity until the bottom of the frame-shaped carriage and the bottom plate are in a closed state. At this time, the space enclosed by the frame-shaped carriage and the bottom plate can be filled with game coins again.
[0036] Preferably, it also includes a micro switch, with a pressure rod on the push rod of the electric actuator, and the micro switch located below the pressure rod. The micro switch is electrically connected to the drive component.
[0037] When the pressure bar presses against the micro switch, the drive component drives the chain track to move.
[0038] Therefore, after the game coins in the carriage are poured into the prize-giving area of the game equipment, the push rod of the electric push rod retracts downward. When the pressure rod on the push rod of the electric push rod presses against the micro switch, the micro switch generates a switching signal, which controls the drive component to start working. The chain track starts to convey the game coins in the next carriage into the prize-giving area of the game equipment, or the carriage returns to the coin replenishment position, and the whole process is repeated. Attached Figure Description
[0039] Figure 1 This is a schematic diagram of the structure of a track-based prize-giving device for large-scale gaming equipment according to the present invention;
[0040] Figure 2 for Figure 1 An enlarged structural diagram of point A in the track-based prize delivery device shown;
[0041] Figure 3 for Figure 1 An enlarged structural schematic diagram of point B in the track-based prize delivery device shown;
[0042] Figure 4 for Figure 1 The diagram shows the structural layout of the carriages in the track-based prize delivery device.
[0043] Figure 5 for Figure 4 The diagram shows the structure of the carriage with the frame-type body and floor plate in an open state.
[0044] Figure 6 for Figure 5 A structural schematic diagram of the carriage from another perspective;
[0045] Figure 7 for Figure 4 The diagram shows the disassembled structure of the carriage. Detailed Implementation
[0046] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0047] In the description of this utility model, it should be understood that the terms "upper," "lower," "front," "rear," "left," "right," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. In the description of this utility model, unless otherwise stated, "a plurality of" means two or more. It should be noted that, unless otherwise explicitly specified and limited, the terms "installed," "connected," "linked," and "set up" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal communication between two components.
[0048] See Figures 1 to 7 A track-based prize-delivery device for large-scale gaming equipment includes a chain track 1, a drive component 2, a carriage 3, a first detection device, a second detection device, a third detection device, a drive device, a micro switch 8, and a gaming machine 100.
[0049] See Figure 1 The chain track 1 is installed on the game machine 100. The chain track 1 is closed and arranged in a ring. On both sides of the chain track 1, there are support rods 11 that run in the same direction as the chain track 1. The support rods 11 are installed on the game machine 100.
[0050] See Figure 1 The drive component 2 is installed on the game machine 100. The drive component 2 can drive the chain track 1 to move. The drive component 2 may include a motor and a gear. The gear is installed on the rotating shaft of the motor and meshes with the chain track 1. When the motor drives the gear to rotate, the rotating gear can drive the chain track 1 to move.
[0051] See Figure 1Multiple carriages 3 are installed on the chain track 1, with a certain distance between adjacent carriages 3. When the chain track 1 is used for transmission, it can drive the carriages 3 to move.
[0052] The bottom of carriage 3 can be opened and closed; for details, please refer to [reference needed]. Figures 4 to 7 The carriage 3 includes a frame-shaped body 301, two side panels 302, a floor plate 303, a chassis 304, and two connecting rods 305. The bottoms of the two side panels 302 are fixed to the chassis 304, and the two side panels 302 are arranged in parallel. The tops of the two side panels 302 are connected by the two connecting rods 305. The frame-shaped body 301 is housed between the two side panels 302 and located between the two connecting rods 305. The two sides of the frame-shaped body 301 are slidably connected to the two side panels 302 respectively. The floor plate 303 is housed between the two side panels 302 and is located below the frame-shaped body 301. A rotating shaft 3031 is fixed on one side of the base plate 303, and abutment plates 3032 arranged at an obtuse angle to the base plate 303 are formed on the other side of the base plate 303. The driving device can drive the abutment plates 3032 to move up and down. The two ends of the rotating shaft 3031 are respectively installed on the two side plates 302, and the rotating shaft 3031 is rotatably connected to the side plates 302. If bearings are installed on the side plates 302, the two ends of the rotating shaft 3031 are respectively inserted into the inner rings of the bearings on the two side plates 302. The base plate 303 can be rotated up or down with the rotating shaft 3031 as the rotation center. When the base plate 303 is in a horizontal state, the abutment plates 3032 are in a downward slope position. Figure 4 (As shown in the diagram), a connecting part 3041 connected to the chain track 1 is installed on the chassis 304. The carriage 3 can be fixed to the chain track 1 through the connecting part 3041. Wheels 3042 are installed on the chassis 304. Each carriage 3 has three wheels 3042, two wheels 3042 are located on one side of the carriage 3, and one wheel 3042 is located on the other side of the carriage 3. The wheels 3042 abut downwards against the support rod 11. When the chain track 1 drives the carriage 3 to move, the wheels 3042 at the bottom of the carriage 3 can roll along the support rod 11. The carriage 3 is installed on the chain track 1 through the connecting part 3041. When the chain track 1 is used for conveying, the chain track 1 drives the carriage 3 to move. The space enclosed by the frame-shaped carriage 301 and the bottom plate 303 can hold game coins. When the carriage 3 moves to the prize delivery position, the drive device drives the abutment plate 3032 to move upward. The bottom plate 303 rotates upward around the pivot 3031. Since the abutment plate 3032 and the bottom plate 303 are arranged at an obtuse angle and the pivot 3031 is located on the side of the bottom plate 303 away from the abutment plate 3032, the bottom plate 303 will lift the frame-shaped carriage 301. The distance between the bottom of the frame-shaped carriage 301 and the side of the bottom plate 303 where the pivot 3031 is located increases, thus opening the carriage. Figure 5 , Figure 6(As shown in the diagram), at this time, due to the inclined arrangement of the base plate 303, the game coins in the space enclosed by the frame-shaped box 301 and the base plate 303 will be poured into the prize-giving area of the game device. Then, the driving device drives the bottom plate 3032 to move downward, and the base plate 303 flips downward about the rotating shaft 3031 as the rotation center. At the same time, the frame-shaped box 301 moves downward under the action of gravity. When the base plate 303 flips downward to a horizontal state, the bottom of the frame-shaped box 301 and the base plate 303 are in a closed state. Figure 4 (As shown in the state), at this time, the space enclosed by the frame-shaped box 301 and the bottom plate 303 can be used to hold game coins again. The two side plates 302 are connected by two connecting rods 305 to ensure the overall stability of the box 3. The frame-shaped box 301 is housed between the two connecting rods 305 to prevent the frame-shaped box 301 from tipping over during upward or downward movement. When the chain track 1 is used for transmission, the box 3 can roll smoothly along the bearing rod 11 through the wheel 3042. The bearing rod 11 can prevent the box 3 from tipping over during movement.
[0053] The two sides of the frame-shaped body 301 are slidably connected to two side panels 302, respectively. For details, please refer to [reference needed]. Figure 5 and Figure 7 Both side panels 302 have longitudinally arranged slide rails 3021 installed on their inner walls. Both opposite outer walls of the frame-shaped body 301 have sliders 3011 that are adapted to the slide rails 3021. The sliders 3011 slide on the slide rails 3021. Through the cooperation between the sliders 3011 and the slide rails 3021, the frame-shaped body 301 can move smoothly up or down between the two side panels 302.
[0054] The first detection device can detect whether carriage 3 has been moved to the coin replenishment position. For details, please refer to [link / reference]. Figure 1 and Figure 2 The first detection device is a first slotted photoelectric sensor 4, which is installed on the game machine platform 100. The first slotted photoelectric sensor 4 is located on the inner side of the chain track 1. The installation position of the first slotted photoelectric sensor 4 is the coin replenishment position. A baffle 31 is installed on the chassis 304. The first slotted photoelectric sensor 4 is connected to the drive component 2 through a wiring harness. When the carriage 3 moves to the coin replenishment position, the baffle 31 at the bottom of the carriage 3 is accommodated in the U-shaped slot of the first slotted photoelectric sensor 4. At this time, the first slotted photoelectric sensor 4 is triggered and generates a switch signal, which controls the drive component 2 to stop working, that is, the chain track 1 stops conveying, in preparation for the second detection device to detect whether the carriage 3 is empty.
[0055] The second detection device can detect whether carriage 3 is empty. For details, please refer to [link / reference needed]. Figure 1 and Figure 2The second detection device is a through-beam photoelectric sensor 5, which is positioned approximately opposite to the first slotted photoelectric sensor 4. The transmitter and receiver of the through-beam photoelectric sensor 5 are both mounted on the game machine platform 100 and positioned opposite each other. The transmitter and receiver of the through-beam photoelectric sensor 5 are located on opposite sides of the chain track 1, and their mounting height is higher than that of the first slotted photoelectric sensor 4. (See reference...) Figures 4 to 7 The frame-shaped carriage 301 has coaxial perforations 32 formed on its two opposite side walls. When the carriage 3 moves to the coin replenishment position, if the carriage 3 is empty, there is no obstruction between the two perforations 32 on the two opposite side walls of the frame-shaped carriage 301, and the through-beam photoelectric sensor 5 is triggered. The through-beam photoelectric sensor 5 generates a switch signal, controlling the drive component 2 to stop working, that is, the chain track 1 stops conveying. At this time, the coin loading device of the game device fills the carriage 3 with game coins. The number of game coins in each carriage 3 can be set by the coin loading device. If the carriage 3 is full, there is an obstruction between the two perforations 32 on the two opposite side walls of the frame-shaped carriage 301, and the through-beam photoelectric sensor 5 is not triggered. The drive component 2 drives the chain track 1 to continue conveying. The through-beam photoelectric sensor 5 detects whether the next carriage 3 is empty. This process continues until all the game coins delivered by the game device are delivered.
[0056] The third detection device can detect whether carriage 3 has been delivered to the prize delivery location. For details, please refer to [link / reference needed]. Figure 1 and Figure 3 The third detection device is the second slotted photoelectric sensor 6, which is installed on the game machine platform 100. The second slotted photoelectric sensor 6 is located on the inner side of the chain track 1. The second slotted photoelectric sensor 6 is connected to the drive component 2 through a wiring harness. The installation position of the second slotted photoelectric sensor 6 is the prize delivery position. When the carriage 3 moves to the prize delivery position, the baffle 31 at the bottom of the carriage 3 is accommodated in the U-shaped slot of the second slotted photoelectric sensor 6. At this time, the second slotted photoelectric sensor 6 is triggered and generates a switch signal, which controls the drive component 2 to stop working, that is, the chain track 1 stops conveying, in preparation for the drive device to drive the abutment plate 3032 to move upward.
[0057] The drive unit can drive the bottom of the frame-type body 301 and the bottom plate 303 to open or close. For details, please refer to [link / reference]. Figure 3The driving device is an electric push rod 7. The second slotted photoelectric sensor 6 is connected to the electric push rod 7 via a wiring harness. The push rod of the electric push rod 7 is located below the bottom plate 3032 of the carriage 3. A micro switch 8 is installed on the game machine table 100. A pressing rod 71 is installed on the push rod of the electric push rod 7. The micro switch 8 is located below the pressing rod 71. The micro switch 8 is connected to the driving component 2 via a wiring harness. When the pressing rod 71 presses against the micro switch 8, the driving component 2 drives the chain track 1 to move. When the carriage 3 moves to the prize delivery position, the baffle 31 at the bottom of the carriage 3 is accommodated in the U-shaped groove of the second slotted photoelectric sensor 6. At this time, the second slotted photoelectric sensor 6 is triggered and generates a switch signal, controlling the driving component 2 to stop working, that is, the chain track 1 stops moving. Then the push rod of the electric push rod 7 extends upward and pushes the bottom plate 3032 upward. The bottom of the frame-shaped carriage 301 and the bottom plate 303 are in an open state. Figure 5 , Figure 6 As shown in the diagram, the game coins in carriage 3 are poured into the prize-giving area of the game device. Then, the push rod of electric push rod 7 retracts downward, and the bottom plate 303 flips downward around the pivot 3031 under the action of gravity. The frame-shaped carriage 301 moves downward under the action of gravity until the bottom of the frame-shaped carriage 301 is in a closed state with the bottom plate 303. Figure 4 (As shown in the diagram), at this time, the space enclosed by the frame-shaped box 301 and the bottom plate 302 can be used to hold game coins again. During the process of the electric push rod 7 retracting downwards, when the pressure rod 71 on the push rod of the electric push rod 7 presses against the micro switch 8 (at this time, the bottom of the frame-shaped box 301 and the bottom plate 303 are already in a closed state), the micro switch 8 generates a switch signal, controls the drive component 2 to start working, and the chain track 1 starts to convey, pouring the game coins in the next carriage 3 into the prize area of the game device or the carriage 3 returns to the coin replenishment position, and then the whole process is repeated.
[0058] See Figure 3 In order to make reasonable use of the space on the game machine 100, the installation positions of the second slotted photoelectric sensor 6 and the electric push rod 7 are arranged back and forth along the conveying direction of the chain track 1. A separate chassis 304 can be fixed at the front of all carriages 3 as the "head", ensuring that when the "head" triggers the second slotted photoelectric sensor 6, the carriage 3 closest to the "head" moves to the position of the electric push rod 7.
[0059] The drive component 2, the first slot-type photoelectric sensor 4, the through-beam photoelectric sensor 5, the second slot-type photoelectric sensor 6, the electric push rod 7, and the micro switch 8 can also be connected to the controller of the game device. The working mode of the drive component 2 can be set by the controller of the game device so that the entire track prize delivery device works in coordination.
[0060] See Figures 1 to 7In this utility model's track-based reward delivery device, if a player receives a reward of game coins in the game, the drive component 2 drives the chain track 1 to move, and the chain track 1 moves the carriage 3 to the coin replenishment position. At this time, the first slot-type photoelectric sensor 4 detects that the carriage 3 has moved to the coin replenishment position, and the drive component 2 stops working, that is, the chain track 1 stops conveying. Then, the through-beam photoelectric sensor 5 detects whether the carriage 3 is empty. If it is empty, the game device's coin loading device fills the carriage 3 with game coins. If it is full, the drive component 2 drives the chain track 1 to continue conveying, and the first slot... The photoelectric sensor 4 and the through-beam photoelectric sensor 5 detect the coin replenishment position and whether the car is empty in the next carriage 3 until all the game coins delivered by the game device are delivered. If the player wins the grand prize during the game, the carriage 3 moves to the prize delivery position under the transmission of the chain track 1. At this time, the second slotted photoelectric sensor 6 detects that the carriage 3 has moved to the prize delivery position, the drive component 2 stops working, that is, the chain track 1 stops transmitting, and then the push rod of the electric push rod 7 pushes the abutment plate 3032 upward, and the bottom of the frame-shaped carriage 301 and the bottom plate 303 are in an open state, so that the... The game coins in carriage 3 are poured into the prize-giving area of the game equipment. Drive component 2 drives chain track 1 to continue conveying. The second slotted photoelectric sensor 6 detects the prize-giving position of the next carriage 3. The push rod of electric push rod 7 pushes the abutment plate 3032 on the next carriage 3 upward. The bottom of the frame-shaped box body 301 on carriage 3 and the bottom plate 303 are opened to pour the game coins in carriage 3 into the prize-giving area of the game equipment. This continues until all the game coins in all carriages 3 are poured into the prize-giving area of the game equipment. Then, under the conveying of chain track 1, carriage 3 returns to the coin replenishment area. The location and recycling process of this utility model's track-based prize delivery device, with an overall appearance resembling a train, allows players to intuitively observe the entire process from the game device distributing coins to the player receiving the coin reward. It has a strong display effect, achieving a reward display effect. The player's goal and the stimulating experience of receiving the reward are both enhanced. For example, when the player receives the reward, the carriage 3 will come in front of the player and release the game coins in carriage 3, improving the player's interactive experience in large-scale game devices and satisfying the player's need for what they see and get.
[0061] The above descriptions are merely some embodiments of this utility model, intended to illustrate the technical means of this utility model, and are not intended to limit the technical scope of this utility model. Any obvious improvements made to this utility model by those skilled in the art based on existing common knowledge fall within the protection scope of this utility model.
Claims
1. A track-based prize-delivery device for large-scale gaming equipment, characterized in that, include: Closed chain track; A drive component that drives a chain track for transmission; Multiple carriages, the carriages being mounted on chain tracks, with the bottom of the carriages capable of opening and closing; A first detection device for detecting whether the carriage has been conveyed to the coin replenishment position is located on the side of the chain track. A second detection device for detecting whether a carriage is empty is located on the side of the chain track. When the second detection device detects that the carriage is empty, the coin loading device of the game equipment will fill the carriage with game coins. A third detection device for detecting whether the carriage has been transported to the prize delivery position is located on the side of the chain track. and A drive unit that can drive the bottom of the carriage to open so that game coins in the carriage can be poured into the prize-giving area of the game device.
2. The track-based prize-delivery device according to claim 1, characterized in that, The bottom of the carriage is equipped with a baffle plate. The first detection device is a first slotted photoelectric sensor, which is electrically connected to the driving component. When the baffle is housed in the U-shaped groove of the first slotted photoelectric sensor, the driving component stops working.
3. The track-based prize-delivery device according to claim 1, characterized in that, The two opposite side walls of the carriage are respectively provided with coaxial through holes, and the second detection device is a through-beam photoelectric sensor.
4. The track-based prize-delivery device according to claim 1, characterized in that, The bottom of the carriage is equipped with a baffle plate, and the third detection device is a second slotted photoelectric sensor, which is electrically connected to the drive component. When the baffle is housed in the U-shaped groove of the second slotted photoelectric sensor, the driving component stops working.
5. The track-based prize-delivery device according to any one of claims 1 to 4, characterized in that, The carriage includes a frame-shaped body, two side panels, a floor, and a chassis. The bottoms of both side plates are mounted on the chassis, and the two side plates are arranged in parallel. The chassis is provided with a connecting part for connection with the chain track. The frame-shaped body is housed between two side panels, and both sides of the frame-shaped body are slidably connected to the two side panels respectively. The bottom plate is housed between two side plates and is located below the frame-shaped body. A pivot is provided on one side of the bottom plate, with its two ends respectively located on the two side plates and rotatably connected to them. A stop plate is provided on the other side of the bottom plate, arranged at an obtuse angle to the bottom plate. A driving device can drive the stop plate to move up and down. When the base plate is horizontal, the abutment plate slopes downwards.
6. The track-based prize-delivery device according to claim 5, characterized in that, The carriage also includes two connecting rods, and the tops of the two side panels are connected by the two connecting rods. The frame-shaped carriage is housed between the two connecting rods.
7. The track-based prize-delivery device according to claim 5, characterized in that, The inner wall of the side panel is provided with a slide rail, and the outer wall of the frame-shaped box is provided with a slider that matches the slide rail, and the slider slides on the slide rail.
8. The track-based prize-delivery device according to claim 5, characterized in that, The chain track is provided with support rods on both sides, which are aligned with the direction of the chain track. The chassis is provided with wheels, which are located on the support rods and can roll along the support rods.
9. The track-based prize-delivery device according to claim 5, characterized in that, The driving device is an electric push rod, and the third detection device is electrically connected to the electric push rod. The electric push rod can drive the abutment to move up and down.
10. The track-based prize-delivery device according to claim 9, characterized in that, It also includes a micro switch. The push rod of the electric actuator has a pressure rod, and the micro switch is located below the pressure rod. The micro switch is electrically connected to the drive component. When the pressure bar presses against the micro switch, the drive component drives the chain track to move.