A card dealing machine storage base and a shared card dealing device

By introducing an automated locking component and control circuit board into the card dealer's storage base, the problem of unreliable locking of the shared card dealer's storage base is solved, enabling convenient and safe equipment management, and making it suitable for the efficient use of shared card dealer equipment.

CN224270097UActive Publication Date: 2026-05-26WEIXING CHUANGKE(SHENZHEN)TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WEIXING CHUANGKE(SHENZHEN)TECH CO LTD
Filing Date
2025-04-23
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing card-dealing machine storage bases suffer from issues such as excessive manual intervention and unreliable locking in shared usage scenarios, making it difficult to meet the needs for fast and secure storage and retrieval.

Method used

A card dealer storage base was designed, which adopts a first locking component and a first control circuit board. The locking plate is driven by a stepper motor to move between the locked position and the unlocked position to realize automatic locking and unlocking. It is also equipped with an electromagnetic locking component and a second control circuit board to control the extension and retraction of the iron core pin. Combined with a communication module and a user identification module, the device can be intelligently managed.

Benefits of technology

It achieves precise locking and unlocking without manual intervention, improving operational convenience and security, preventing the card dealer and power bank from being removed or moved without authorization, and is suitable for efficient management of shared card dealer equipment.

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Abstract

This utility model provides a card dealing machine storage base and a shared card dealing device, relating to the technical field of card dealing equipment. The card dealing machine storage base includes: a base body, a first locking component, and a first control circuit board. The base body has a card dealing machine storage slot for accommodating the card dealing machine, and an assembly cavity communicating with the card dealing machine storage slot through a first connecting hole. The first locking component is disposed within the assembly cavity and includes a movable locking plate, which can move between a locked position (passing through the first connecting hole to insert into a first card slot on the card dealing machine) and an unlocked position (returning to the assembly cavity). The first control circuit board is assembled within the assembly cavity and electrically connected to the first locking component for controlling the movement of the locking plate. This design provides advantages such as convenient operation, reliable locking, and high security.
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Description

Technical Field

[0001] This utility model relates to the field of card dealing equipment technology, and in particular to a card dealing machine storage and retrieval base and a shared card dealing device. Background Technology

[0002] A card dealing machine is a device used for automatic shuffling and dealing of cards, widely used in card games (such as poker, mahjong, Texas Hold'em, etc.). It offers advantages such as fast shuffling and dealing, anti-cheating measures, and increased efficiency.

[0003] Currently, card dealing machines are generally purchased and used by families or specific venues. With the rapid development of smart entertainment devices and the sharing economy, some companies are applying shared card dealing machine equipment to scenarios such as card rooms and entertainment venues. Users can reserve, rent, and return card dealing machines through mobile devices or platform systems, improving the utilization efficiency of the equipment. Most existing card dealing machine storage and retrieval bases use traditional manual locking structures, such as mechanical pins and buckles. These structures suffer from problems such as excessive manual intervention and unreliable locking, making it difficult to meet the needs for fast and secure storage and retrieval in shared usage scenarios.

[0004] Therefore, a card dealing machine storage base and shared card dealing device that are easy to operate, have reliable locking, and are highly secure need to be designed. Utility Model Content

[0005] The purpose of this utility model is to address the defects and deficiencies of the existing technology by providing a card dealing machine storage and retrieval base and a shared card dealing device, which solves at least one of the above-mentioned technical problems and has the advantages of convenient operation, reliable locking, and high security.

[0006] To achieve the above objectives, this utility model provides a card dealing machine storage and retrieval base, comprising:

[0007] The base body has a card dealer storage slot for accommodating the card dealer, and an assembly cavity that communicates with the card dealer storage slot through a first connecting hole;

[0008] A first locking assembly, disposed within the assembly cavity, includes a movable locking plate that can move between a locking position where it passes through the first communicating hole to be inserted into a first card slot on the card dealer and an unlocking position where it retracts into the assembly cavity.

[0009] A first control circuit board is assembled inside the assembly cavity and electrically connected to the first locking assembly for controlling the movement of the locking plate.

[0010] Optionally, the first locking assembly further includes a stepper motor; the locking plate is connected to the output end of the stepper motor and has a first end that can be rotated and inserted into the first card slot of the card dealer under the drive of the stepper motor.

[0011] Optionally, the first locking assembly further includes a first sensor and a second sensor electrically connected to the first control circuit board. The first sensor is used to detect whether the locking plate is in the locked position, and the second sensor is used to detect whether the locking plate is in the unlocked position.

[0012] Optionally, the locking plate further has a second end opposite to the first end; the first sensor is used to sense the second end when the locking plate is rotated to the locked position; the second sensor is used to sense the first end when the locking plate is rotated to the unlocked position.

[0013] Optionally, the locking piece is V-shaped, and a sleeve portion is provided at the lower part near the second end, the sleeve portion being fixedly connected to the output end of the stepper motor.

[0014] Optionally, the first and second sensors are microswitches.

[0015] Optionally, the base body further includes:

[0016] A power bank storage compartment is provided on the base body for accommodating power banks and has a second communication hole that communicates with the assembly cavity;

[0017] An electromagnetic locking assembly, disposed within the assembly cavity, includes a retractable iron core pin; the iron core pin can move between a locked position where it passes through the second connecting hole to insert into the second card hole of the power bank and an unlocked position where it exits the second card hole;

[0018] The second control circuit board is assembled in the assembly cavity and electrically connected to the electromagnetic locking assembly, and is used to control the extension and retraction of the iron core pin.

[0019] Optionally, a sealing component is movably connected to the opening of the power bank storage compartment, the sealing component comprising:

[0020] A rotating shaft is fitted to the base body and located on one side of the compartment opening;

[0021] A sealing cap, one end of which is rotatably connected to the rotating shaft;

[0022] A torsion spring is sleeved on the rotating shaft, with one working arm abutting the bottom of the sealing cover and the other working arm abutting the inner wall of the base body;

[0023] The sealing cover automatically closes to seal the compartment opening after the power bank is removed, and rotates around the pivot and is stored in the power bank storage compartment when the power bank is placed in.

[0024] Optionally, the card dealer access base also includes:

[0025] A communication module, electrically connected to the first control circuit board, is used to enable data communication with the server.

[0026] The user identification module is electrically connected to the first control circuit board and is used to identify user identity information;

[0027] A first state detection switch is installed in the card dealer storage slot and electrically connected to the first control circuit board, used to detect the placement status of the card dealer in the card dealer storage slot.

[0028] The power management module is electrically connected to the first control circuit board and is used to distribute power and control power consumption of each power-consuming component of the card dealer's storage base, and to manage the charging of the card dealer.

[0029] Another aspect of this utility model provides a shared card dealing device, including a card dealing machine storage base as described above, and a card dealing machine used in conjunction with the card dealing machine storage base; the first card hole is the card dealing port of the card dealing machine; the base body is provided with a user interaction identification code for initiating a rental operation.

[0030] Compared with the prior art, the advantages of this application are:

[0031] Because the card dealer's storage base is equipped with a first locking component, which, under the control of a first control circuit board, drives the locking plate to move between the locked and unlocked positions, it can automatically lock and unlock the card dealer. This technical solution requires no manual intervention and can precisely control the locking action, effectively preventing the card dealer from being removed or moved in an unauthorized state. It has the advantages of convenient operation, reliable locking, and high security. Attached Figure Description

[0032] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the provided drawings without creative effort.

[0033] Figure 1 This is a schematic diagram of the structure of the shared card dealing device according to an embodiment of the present invention;

[0034] Figure 2 This is an exploded view of the shared card dealing device according to an embodiment of the present invention;

[0035] Figure 3 This is a top view of the card dealer's storage base according to an embodiment of the present invention;

[0036] Figure 4This is a front view diagram of the shared card dealing device with the power bank hidden in an embodiment of the present invention.

[0037] Figure 5 for Figure 4 A cross-sectional view along line AA, showing the card dealer in a locked state;

[0038] Figure 6 for Figure 5 The cross-sectional view shown is a change from the locked state to the unlocked state;

[0039] Figure 7 This is an exploded view of part of the structure of the card dealer's storage base according to an embodiment of the present utility model;

[0040] Figure 8 This is a schematic diagram of the structure of the base body after the bottom plate is hidden in an embodiment of this utility model;

[0041] Figure 9 This is a schematic diagram of the structure of the first locking component and the first control circuit board according to an embodiment of the present utility model;

[0042] Figure 10 This is another structural schematic diagram of the first locking component and the first control circuit board according to an embodiment of the present utility model;

[0043] Figure 11 This is a schematic diagram of the base body structure in an embodiment of the present utility model;

[0044] Figure 12 This is a schematic diagram of the power bank storage compartment and sealing assembly according to an embodiment of the present invention;

[0045] Figure 13 This is another structural schematic diagram of the power bank storage compartment and sealing assembly according to an embodiment of the present invention;

[0046] Figure 14 This is an exploded structural diagram of the power bank storage compartment, the ejector assembly, and the base plate according to an embodiment of the present utility model;

[0047] Figure 15 This is an exploded structural diagram of the power bank storage compartment and ejection assembly according to an embodiment of the present invention.

[0048] Explanation of reference numerals in the attached figures

[0049] 1000-Shared Card Dealing Equipment;

[0050] 100-Card Dealer Storage Base;

[0051] 1-Base body; a-Deck dealer storage slot; b-Assembly cavity; o1-First connecting hole; 11-Base plate; 12-Upper shell; 13-Fastener; c-Power bank storage compartment; o2-Second connecting hole; 14-Spindle mounting base;

[0052] 2-First locking assembly; 21-Stepper motor; 22-Locking plate; 221-First end; 222-Second end; 223-Sleeve portion; 23-First sensor; 24-Second sensor;

[0053] 31-First control circuit board; 32-Second control circuit board;

[0054] 4-Electromagnetic locking assembly; 41-Iron core pin;

[0055] 5-Sealing assembly; 51-Spindle; 52-Sealing cover; 521-Cover body; 522-Spindle lug; 53-Torsion spring;

[0056] 6-Ejector assembly; 61-Guide post; 62-Guide sleeve; 63-Ejector spring; 64-Ejector pin; 641-Retaining ring; 65-Ejector through hole;

[0057] 81 - First state detection switch; 82 - Second state detection switch;

[0058] 91-First charging contact; 92-Second charging contact; 93-Charging interface;

[0059] 200 - Card Dealer; o3 - First Card Slot;

[0060] 300 - Power bank; o4 - Second card slot. Detailed Implementation

[0061] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0062] It should be noted that the terms "center," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "top," "bottom," "inner," "outer," "back," "side," and "circumferential" used in this utility model to indicate the orientation or positional relationship are 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 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. In addition, the terms "first" and "second" are only used to distinguish multiple parts or structures with the same or similar structures, and do not indicate any special limitation on the arrangement order or connection relationship.

[0063] Please refer to Figures 1 to 13 One embodiment of this utility model provides a card dealer storage base 100, including: a base body 1, a first locking component 2 and a first control circuit board 31.

[0064] The base body 1 is made of a material with a certain supporting strength. Optionally, the base body 1 has a card dealer storage slot a and an assembly cavity b. The card dealer storage slot a is used to accommodate the card dealer 200. Understandably, the card dealer storage slot a has a shape that matches at least a portion of the outer contour of the card dealer 200. To facilitate the removal of the card dealer 200, in this embodiment, the card dealer storage slot a is located at the upper end of the base body 1 and its depth is less than the height of the card dealer 200. Of course, in other embodiments, the depth of the card dealer storage slot a may be greater than or equal to the height of the card dealer 200, and no specific limitation is made here. The assembly cavity b is disposed inside the base body 1 and communicates with the card dealer storage slot a through a first communicating hole o1. The assembly cavity b is used to assemble various functional components of the card dealer access base 100. Optionally, in this embodiment, the base body 1 includes a base plate 11 and an upper shell 12; the base plate 11 and the upper shell 12 are assembled by fasteners 13 to form the base body 1, and the assembly cavity b is formed inside it. The upper end of the upper housing 12 has a card dealer storage slot a.

[0065] The first locking component 2 is disposed within the assembly cavity b. It includes a movable locking plate 22. The size, shape, and movement trajectory of the locking plate 22 are designed to pass through the first connecting hole o1 and be inserted into the first locking hole o3 on the corresponding card dealer 200, or to retract into the assembly cavity b, thereby achieving locking and unlocking of the card dealer 200. When the card dealer 200 needs to be fixed, the locking plate 22 moves to the locking position under the drive of a control signal, passes through the first connecting hole o1, and inserts into the first locking hole o3 of the card dealer 200; when the card dealer 200 needs to be removed, the locking plate 22 retracts from the first connecting hole o1 into the assembly cavity b and moves to the unlocking position, thereby releasing the locked state of the card dealer 200.

[0066] With this structural design, the locking plate 22 can move linearly or rotate within the assembly cavity b. It can lock and release the card dealer 200 by passing through the connecting hole inside the base. There is no need for an external exposed structure. The overall design is compact and the operation is safe and stable.

[0067] The first control circuit board 31 is assembled in the assembly cavity b and electrically connected to the first locking assembly 2, used to control the movement of the locking piece 22 between the locked position and the unlocked position. Understandably, the first locking assembly 2 also includes a drive mechanism for controlling the movement of the locking piece 22. The first control circuit board 31 is electrically connected to the drive mechanism to control the movement of the locking piece 22 by controlling the movement of the drive mechanism.

[0068] Because the card dealer's storage base 100 is equipped with a first locking component 2, which, under the control of the first control circuit board 31, drives the locking plate 22 to move between the locked and unlocked positions, it can automatically lock and unlock the card dealer 200. This technical solution requires no manual intervention and can precisely control the locking action, effectively preventing the card dealer 200 from being removed or moved in an unauthorized state. It has the advantages of convenient operation, reliable locking, and high security.

[0069] To achieve precise control of the movement of the locking plate 22, optionally, please refer to... Figure 2 , Figures 4 to 9 In this embodiment, the driving mechanism is a stepper motor 21. The locking plate 22 is connected to the output end of the stepper motor 21 and has a first end 221 that can be rotatably inserted into the first card slot o3 of the card dealer 200 under the drive of the stepper motor 21. When the stepper motor 21 drives the output shaft to rotate according to the control signal, the locking plate 22 rotates around the axis accordingly, thereby realizing the action of inserting or withdrawing from the first card slot o3. This further improves the precise control of the movement of the locking plate 22.

[0070] For example, when the locking plate 22 rotates to a specific angle under the drive of the stepper motor 21, its first end 221 passes through the first connecting hole o1 of the base and inserts into the first locking hole o3 of the card dealer 200, thus locking the card dealer 200. When unlocking is required, the stepper motor 21 rotates in the opposite direction, driving the first end 221 of the locking plate 22 to exit the locking hole and retract into the assembly cavity b, thereby unlocking the card dealer 200. To avoid interference with the rotational movement of the locking plate 22, it is understandable that both the first connecting hole o1 and the first locking hole o3 need to have a certain width.

[0071] To address the issue of the unknown position of locking piece 22 and the lack of status feedback in the control system, alternatively, please refer to... Figure 5 , Figure 6 , Figure 9 and Figure 10 In this embodiment, the first locking component 2 further includes a first sensor 23 and a second sensor 24. Both the first sensor 23 and the second sensor 24 are electrically connected to the first control circuit board 31. The first sensor 23 is used to detect whether the locking plate 22 is in the locked position, and the second sensor 24 is used to detect whether the locking plate 22 is in the unlocked position. Understandably, when the first sensor 23 senses the locking plate 22, it indicates that the locking plate 22 is in the locked position, generating a status signal for the locked position and sending it to the first control circuit board 31; when the second sensor 24 senses the locking plate 22, it indicates that the locking plate 22 is in the unlocked position, generating a status signal for the unlocked position and sending it to the first control circuit board 31. In this way, real-time sensing of the locking plate 22's status can be achieved, realizing closed-loop feedback of the locking component's working status.

[0072] Alternatively, please refer to Figure 9 and Figure 10 In this embodiment, the locking plate 22 further has a second end 222 opposite to the first end 221. The first sensor 23 is used to sense the second end 222 when the locking plate 22 rotates to the locked position; the second sensor 24 is used to sense the first end 221 when the locking plate 22 rotates to the unlocked position. Of course, in other embodiments, the first sensor 23 is used to sense the second end 222 when the locking plate 22 rotates to the locked position; and the second sensor 24 is used to sense the second end 222 when the locking plate 22 rotates to the unlocked position. No specific limitations are imposed here.

[0073] Alternatively, please refer to Figure 10 In this embodiment, the first sensing element 23 and the second sensing element 24 are microswitches. A touch signal is generated when the first end 221 or the second end 222 of the locking plate 22 touches the microswitch. Specifically, in this embodiment, the microswitch generates a corresponding touch signal through the compression or reset of its spring. Of course, in other embodiments, the first sensing element 23 and the second sensing element 24 can also be implemented using conventional sensing devices such as Hall effect sensors, photoelectric sensors, or magnetic switches, and the locking plate 22 can be provided with a corresponding sensing trigger structure. When the locking plate 22 rotates to the locked position, its second end 222 or a specific position aligns with the first sensing element 23, thereby triggering a sensing signal; when the locking plate 22 rotates to the unlocked position, its first end 221 aligns with the second sensing element 24, triggering a corresponding signal. No specific limitations are imposed here.

[0074] To reduce the space occupied by the locking piece 22 in the assembly cavity b and the length of the first connecting hole o1; optionally, please refer to Figure 9 and Figure 10 In this embodiment, the locking piece 22 is V-shaped, and a sleeve portion 223 is provided at its lower part near the second end 222. The sleeve portion 223 is fixedly connected to the output end of the stepper motor 21. Of course, if the space occupied by the locking piece 22 in the assembly cavity b and the length of the first connecting hole o1 are not considered, in other embodiments, the locking piece 22 can also be set in a straight line shape, which is not specifically limited here.

[0075] To enable the card dealer's storage base 100 to also function as a power bank storage unit 300, optionally, please refer to... Figure 2 Figure 6 , Figure 7 ,and Figure 12 In this embodiment, the base body 1 also includes: a power bank storage compartment c, an electromagnetic locking component 4, and a second control circuit board 32.

[0076] A power bank storage compartment c is disposed on the base body 1 to accommodate a power bank 300, and has a second communicating hole o2 communicating with the assembly cavity b. Understandably, the power bank storage compartment c has a shape that matches at least a portion of the outer contour of the power bank 300. To facilitate the removal of the power bank 300, in this embodiment, the power bank storage compartment c is disposed at the upper end of the base body 1 and its depth is less than the height of the power bank 300. Of course, in other embodiments, the depth of the power bank storage compartment c may be greater than or equal to the height of the power bank 300; no specific limitation is made here.

[0077] The electromagnetic locking assembly 4 is disposed within the assembly cavity b and includes a retractable iron core pin 41. The iron core pin 41 can move between a locked position, in which it passes through the second connecting hole o2 to insert into the second latch hole o4 of the power bank 300, and an unlocked position, in which it exits the second latch hole o4. Understandably, in addition to the iron core pin 41, the electromagnetic locking assembly 4 also includes: an electromagnet (not shown in the figure), a return spring (not shown in the figure), a housing structure (not shown in the figure), electrical wiring terminals (not shown in the figure), etc. Specifically, the electromagnetic locking assembly 4 is conventional technology, and therefore will not be elaborated upon here.

[0078] The second control circuit board 32 is assembled in the assembly cavity b and electrically connected to the electromagnetic locking assembly 4, and is used to control the extension and retraction of the iron core pin 41.

[0079] In this way, the card dealer's storage base 100 can also automatically lock and unlock the power bank 300, effectively preventing the power bank 300 from being removed or moved without authorization.

[0080] For easier removal of the power bank 300 after unlocking, please refer to... Figure 3 , Figure 14 and Figure 15 In this embodiment, the card dealer storage base 100 further includes an ejection assembly 6. The ejection assembly 6 includes: a guide post 61, a guide sleeve 62, an ejection spring 63, and an ejector pin 64.

[0081] The guide post 61 is mounted on the base plate 11, and the guide sleeve 62 is vertically mounted at the bottom of the power bank storage compartment c. A push-out through hole o5 is provided on the power bank storage compartment c corresponding to the axis of the guide sleeve 62. The ejector pin 64 has a retaining ring 641 near its center. An ejector spring 63 is sleeved on the lower end of the ejector pin 64 and the guide post 61, with one end abutting against the retaining ring 641 of the ejector pin 64 and the other end abutting against the base plate 11. The ejector pin 64, fitted with the ejector spring 63, is at least partially inserted into the guide sleeve 62, and its upper end can extend out of the push-out through hole o5 of the power bank storage compartment c.

[0082] When the power bank 300 is located in the power bank storage compartment c and is in the locked state, the power bank 300 presses down the ejector pin 64, and the ejector pin 64 compresses the ejector spring 63. When the power bank 300 is in the unlocked state, the ejector spring 63 returns to its original position, causing the ejector pin 64 to push the power bank 300 upward, so that the power bank 300 can be taken out.

[0083] To prevent dust and other debris from easily entering the open storage compartment c after the power bank 300 is removed, which could affect the normal operation of the internal electrical components or locking mechanism, optionally, please refer to... Figure 7 , Figures 11 to 13 In this embodiment, a sealing component 5 is movably connected to the opening of the power bank storage compartment c. Optionally, the sealing component 5 includes: a rotating shaft 51, a sealing cover 52, and a torsion spring 53.

[0084] The pivot 51 is assembled to the base body 1 and located on one side of the compartment opening. Specifically, the inner wall of the power bank storage compartment c of the assembly cavity b of the base body 1 has a pivot mounting seat 14, and the pivot 51 is fixedly installed in the pivot mounting seat 14.

[0085] One end of the sealing cover 52 is rotatably connected to the rotating shaft 51. Specifically, the sealing cover 52 includes a cover body 521 that can seal the opening of the power bank storage compartment c, and a rotating shaft lug 522 that extends outward from one end of the cover body 521 to be rotatably connected to the rotating shaft 51.

[0086] The torsion spring 53 is sleeved on the rotating shaft 51, with one working arm abutting the bottom of the sealing cover 52 and the other working arm abutting the inner wall of the base body 1. Specifically, the end of the torsion spring 53 away from the sealing cover 52 abuts the inner wall of the power bank storage compartment c.

[0087] The sealing cover 52 automatically closes to seal the compartment opening after the power bank 300 is removed, and rotates around the pivot 51 and is stored in the power bank storage compartment c when the power bank 300 is put in.

[0088] Thus, the sealing cover 52 automatically closes the compartment opening after the power bank 300 is removed, effectively preventing dust, moisture, debris, etc. from entering the power bank storage compartment c; and when the power bank 300 is stored, the sealing cover 52 automatically retracts into the power bank storage compartment c, resulting in a simple structure.

[0089] To enable intelligent and networked device management of the card-dealing machine storage base 100 for use in shared scenarios, optionally, please refer to... Figure 2 , Figure 3 , Figure 7 and Figure 12 In this embodiment, the card dealer storage base 100 further includes: a communication module (not shown in the figure), a user identification module (not shown in the figure), a first state detection switch 81, a second state detection switch 82, and a power management module (not shown in the figure).

[0090] The communication module is electrically connected to either the first control circuit board 31 or the second control circuit board 32 to enable data communication with the server. This allows it to receive unlocking commands from the card dealer 200 and / or the power bank 300 and upload status information from the card dealer 200 and / or the power bank 300.

[0091] The user identification module is electrically connected to the first control circuit board 31 and is used to identify user identity information. Specifically, the user identification module collects user identity information and sends it to the server to complete authorization.

[0092] The first state detection switch 81 is installed in the card dealer storage slot a and is electrically connected to the first control circuit board 31 to detect the placement status of the card dealer 200 in the card dealer storage slot a.

[0093] The second state detection switch 82 is installed in the power bank storage compartment c and is electrically connected to the second control circuit board 32 to detect the placement status of the power bank 300 in the power bank storage compartment c.

[0094] Optionally, the first state detection switch 81 and the second state detection switch 82 are also microswitches.

[0095] The power management module is electrically connected to the first control circuit board 31 and the second control circuit board 32, and is used to distribute power and control power consumption of each electrical component of the card dealer storage base 100, and to manage the charging of the card dealer 200 and the power bank 300. Specifically, the electrical components of the card dealer storage base 100 include, but are not limited to: the first locking component 2, the first control circuit board 31, the second control circuit board 32, the first sensor 23, the second sensor 24, the communication module, the user identification module, the first state detection module, the second state detection module, the first locking component 2, and the electromagnetic locking component 4.

[0096] Specifically, the power management module includes a first charging contact 91, a second charging contact 92, and a charging interface 93. The first charging contact 91 is located in the card dealer storage slot a and is used to charge the card dealer. The second charging contact 92 is located in the power bank storage compartment c and is used to charge the power bank. The charging interface 93 is located on one side of the base body 1 and is electrically connected to the second control circuit board 32 and the power management module for connecting to an external power source.

[0097] Please refer to Figures 1 to 13Another aspect of this utility model embodiment provides a shared card dealing device 1000, including a card dealing machine storage base 100 as described above, and a card dealing machine 200 used in conjunction with the card dealing machine storage base 100. Optionally, the first card slot o3 is the card dealing port of the card dealing machine 200. Of course, in some other embodiments, an independent first card slot o3 can also be provided on the card dealing machine 200, and there is no specific limitation. Optionally, the shared card dealing device 1000 also includes a power bank 300 used in conjunction with the card dealing machine storage base 100. The base body 1 is provided with a user interaction identification code (not shown in the figure) for initiating a rental operation. The user interaction identification code is linked with the communication module, the first control circuit board 31 and the second control circuit board 32, and is used to initiate user authentication and the unlocking process of the card dealing machine 200 and / or the power bank 300 after the user scans the code. Optionally, the user interaction identification code can be a QR code. Specifically, the rental, return, and billing procedures between the card dealer storage base 100, the card dealer 200, and the power bank 300 in the shared card dealing device 1000 are conventional technical methods in this field, and therefore will not be elaborated upon here. Since the shared card dealing device 1000 possesses all the structures and connections of the card dealer storage base 100, it has all the advantages of the card dealer storage base 100, and will not be described in detail here.

[0098] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the substance of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.

Claims

1. A card dealing machine storage base, characterized in that, include: The base body (1) has a card dealer storage slot (a) for accommodating a card dealer (200) and an assembly cavity (b) communicating with the card dealer storage slot (a) through a first connecting hole (o1). A first locking assembly (2) is disposed in the assembly cavity (b) and includes a movable locking piece (22) which is movable between a locked position in which it passes through the first connecting hole (o1) to be inserted into the first card hole (o3) on the card dealer (200) and an unlocked position in which it retracts into the assembly cavity (b). The first control circuit board (31) is assembled in the assembly cavity (b) and electrically connected to the first locking assembly (2) for controlling the movement of the locking piece (22).

2. The card dealing machine storage base as described in claim 1, characterized in that, The first locking assembly (2) further includes a stepper motor (21); the locking plate (22) is connected to the output end of the stepper motor (21) and has a first end (221) that can be rotated and inserted into the first card hole (o3) of the card dealer (200) under the drive of the stepper motor (21).

3. The card dealer storage base as described in claim 2, characterized in that, The first locking assembly (2) further includes a first sensor (23) and a second sensor (24) electrically connected to the first control circuit board (31). The first sensor (23) is used to detect whether the locking piece (22) is in the locked position, and the second sensor (24) is used to detect whether the locking piece (22) is in the unlocked position.

4. The card dealing machine storage base as described in claim 3, characterized in that, The locking plate (22) also has a second end (222) opposite to the first end (221); the first sensing element (23) is used to sense the second end (222) when the locking plate (22) is rotated to the locking position; the second sensing element (24) is used to sense the first end (221) when the locking plate (22) is rotated to the unlocking position.

5. The card dealer storage base as described in claim 4, characterized in that, The locking piece (22) is V-shaped, and a sleeve part (223) is provided at the lower part near the second end (222). The sleeve part (223) is fixedly connected to the output end of the stepper motor (21).

6. The card dealing machine storage base as described in claim 4, characterized in that, The first sensing element (23) and the second sensing element (24) are micro switches.

7. The card dealing machine storage base as described in claim 1, characterized in that, The base body (1) also includes: A power bank storage compartment (c) is disposed on the base body (1) for accommodating a power bank (300) and has a second communication hole (o2) communicating with the assembly cavity (b); An electromagnetic locking assembly (4) is disposed in the assembly cavity (b) and includes a retractable iron core pin (41); the iron core pin (41) can move between a locked position in which it passes through the second connecting hole (o2) to insert into the second card hole (o4) of the power bank (300) and an unlocked position in which it exits the second card hole (o4); The second control circuit board (32) is assembled in the assembly cavity (b) and electrically connected to the electromagnetic locking assembly (4) for controlling the extension and retraction of the iron core pin (41).

8. The card dealing machine storage base as described in claim 7, characterized in that, A sealing cover (52) assembly is movably connected to the opening of the power bank storage compartment (c), the sealing cover (52) assembly comprising: A rotating shaft (51) is fitted to the base body (1) and located on one side of the compartment opening; The sealing cap (52) is rotatably connected at one end to the rotating shaft (51); A torsion spring (53) is sleeved on the rotating shaft (51), and one working arm abuts the bottom of the sealing cover (52) and the other working arm abuts the inner wall of the base body (1); The sealing cover (52) automatically closes to seal the opening after the power bank (300) is removed, and rotates around the pivot (51) and is stored in the power bank storage compartment (c) when the power bank (300) is put in.

9. The card dealing machine storage base as described in any one of claims 1-8, characterized in that, Also includes: The communication module is electrically connected to the first control circuit board (31) and is used to realize data communication with the server; The user identification module is electrically connected to the first control circuit board (31) and is used to identify user identity information; A first state detection switch (81) is set in the card dealer storage slot (a) and electrically connected to the first control circuit board (31) for detecting the placement state of the card dealer (200) in the card dealer storage slot (a); The power management module is electrically connected to the first control circuit board (31) and is used to distribute power and control power consumption of each power component of the card dealer access base, and to realize the charging management of the card dealer (200).

10. A shared card dealing device, characterized in that, Includes a card dealer access base as described in any one of claims 1-9, and a card dealer (200) used in conjunction with the card dealer access base; the first card slot (o3) is the card dealer port of the card dealer (200); the base body (1) is provided with a user interaction identification code for initiating a rental operation.