certificate issuing cabinet
By setting up a checkpoint and storage device in the card issuance cabinet, and using transfer and detection components to simplify the card transportation process, the problem of too many drive modules in the existing technology is solved, thereby achieving the effects of reducing costs and improving transportation accuracy.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN ADVANCE CARD TECH
- Filing Date
- 2025-05-26
- Publication Date
- 2026-05-22
AI Technical Summary
The existing card issuing cabinets have too many driving modules during the card pushing process, which leads to high production and assembly difficulty and increased costs.
Design a card issuing cabinet, which has a card slot on the cabinet body, a card dispensing device and a storage device on both sides, and uses a transfer device to transport the card from the storage compartment to the card dispensing device, and performs detection in the process, reducing the number of drive modules and simplifying the card transportation process.
It reduces the difficulty and cost of producing and assembling the card issuing cabinet, while improving the accuracy and stability of card delivery and simplifying the card issuing process.
Smart Images

Figure CN224266935U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of card issuance technology, and in particular to a card issuance cabinet. Background Technology
[0002] In modern society, card issuing cabinets are widely used in financial institutions, such as bank debit card, credit card, and gold card issuing cabinets. However, most current card issuing cabinets use a multi-stage drive method to send cards out of the cabinet, which makes the card issuing process more complicated, requires more parts, increases the difficulty of production and assembly of card issuing cabinets, and increases costs. Utility Model Content
[0003] The main purpose of this utility model is to propose a card issuing cabinet that aims to reduce the number of drive modules in the card issuing process, reduce accessories, and lower costs.
[0004] To achieve the above objectives, the card issuing cabinet proposed in this utility model includes:
[0005] The cabinet is provided with a latch, and a card release device is provided outside the latch.
[0006] A storage device, disposed within the cabinet, includes a storage compartment and a transfer component. The transfer component receives the identification cards from the storage compartment and transports the cards out of the card reader.
[0007] The first detection element is disposed between the storage device and the card dispensing element. The first detection element has a clearance opening to avoid the transfer element. When the transfer element moves to the clearance opening, the card can be detected by the first detection element and can be transported to the card dispensing element through the card slot.
[0008] In one embodiment, the transfer component is disposed below the storage compartment, the cabinet is provided with a guide rod, the guide rod extends between the storage compartment and the first detection component, and the transfer component is slidably connected to the guide rod.
[0009] In one embodiment, the transfer component includes a carrying part and a pushing part. The carrying part is slidably connected to the guide rod, and the pushing part is elastically rotatably connected to the carrying part. On the side facing the first detection component, the pushing part pushes against the card.
[0010] In one embodiment, the storage device further includes a first motor and a conveyor belt, the transfer component is connected to the conveyor belt, the first motor is driven and connected to the conveyor belt, the conveyor belt and the guide rod are arranged side by side and located on the horizontal side of the clearance opening.
[0011] In one embodiment, the first detection element is configured as a weighing element. At one end of the first detection element adjacent to the transfer element, the card issuing cabinet is also provided with a guide structure. The upper surface of the first detection element is higher than the upper surface of the transfer element that carries the card, and lower than the side surface of the transfer element that pushes against the card. The guide structure is used to guide the card to move onto the first detection element.
[0012] In one embodiment, the card dispensing component includes clamping wheels spaced vertically apart and a first sensor, the first sensor being used to identify the card, and the clamping wheels being used to transfer the card from the first detection component to the card dispensing component.
[0013] In one embodiment, a second detection element is provided at the lower part of the card dispensing component, the second detection element being used to detect the first information of the card.
[0014] In one embodiment, a third detection element is provided on the upper part of the card dispensing component, the third detection element being used to detect the second information of the card.
[0015] In one embodiment, the card issuing cabinet is further provided with a card return compartment, which is located above the first detection device. The cabinet body is provided with a card return port between the card return compartment and the card issuing device. The card return compartment is used to collect the card that has been incorrectly identified by the first detection device, the second detection device, or the third detection device.
[0016] In one embodiment, the card issuing cabinet is further provided with a card retrieval device, and the cabinet body is provided with a card retrieval slot. The position and height of the card retrieval slot are configured to be a comfortable height for users. The card retrieval slot and the card passage slot are horizontally spaced apart. The card dispensing device slides vertically in the space between the card passage slot and the card retrieval slot to transfer the card to the card retrieval device.
[0017] In one embodiment, the card issuing cabinet includes a plurality of storage devices and a plurality of first detection components. The cabinet body is provided with a plurality of card-passing slots. The plurality of storage devices, the plurality of first detection components and the plurality of card-passing slots are arranged in a one-to-one correspondence. The plurality of storage devices are arranged in a vertical array.
[0018] The technical solution of this utility model involves setting a card passage on the cabinet, with a card dispensing device and a storage device on each side of the card passage. The storage device holds identification cards in its storage compartment, and a transfer component of the storage device transfers the cards from the storage compartment to the card dispensing device. The transfer component carries the cards to a clearance opening of a first detection component, where the cards are detected. The transfer component can then continue moving to transport the cards from the card passage to the card dispensing device, or the card dispensing device can directly remove the cards from the first detection component. This reduces the need for a drive module between the transfer component and the card dispensing device. The transfer component alone can transport the cards from the storage compartment to the card dispensing device, and the first detection component can detect the cards during this process. This reduces the number of drive components in the card transport process, lowers the complexity of the card transport control system, and reduces costs. Attached Figure Description
[0019] 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 some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0020] Figure 1 A schematic diagram of a structure of an embodiment of the card issuing cabinet provided by this utility model;
[0021] Figure 2 for Figure 1 A schematic diagram of the structure in which the storage device and the first detection component are combined;
[0022] Figure 3 for Figure 1 A magnified view of a section at point A in the middle;
[0023] Figure 4 for Figure 1 A structural diagram of the first four pieces tested and the guiding structure;
[0024] Figure 5 for Figure 1 A schematic diagram of the structure of the center-out card;
[0025] Figure 6 for Figure 1 A cross-sectional view of the China Securities Card Issuance Counter;
[0026] Figure 7 for Figure 6 A magnified view of a section at point B.
[0027] Explanation of icon numbers:
[0028] 100. Cabinet body; 110. Through-slot; 120. Card ejector; 121. Clamping wheel; 122. Second detection component; 123. First sensor; 130. Card retrieval component; 140. Card retrieval slot; 150. Third detection component; 160. Return to slot; 170. Guide rod;
[0029] 200. Storage device; 210. Storage compartment; 220. Transfer component; 221. Bearing unit; 222. Pushing unit; 230. First motor; 240. Conveyor belt; 250. Guide component; 300. First detection component; 310. Clearance opening; 320. Guide inclined wall; 400. Card return compartment; 500. Certificate.
[0030] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0031] 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 scope of protection of the present utility model.
[0032] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.
[0033] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0034] In existing technologies, card issuing cabinets may employ multi-segment transmission mechanisms, such as combinations of gear drives, chain drives, and belt drives, to push cards out of the management cabinet. For example, a motor drives a drive gear, which in turn drives a driven gear. The driven gear then drives the card pushing device via a chain or belt. During the outward pushing process, the card passes through multiple paths, each corresponding to a different functional area, such as an outbound transfer area, a detection area, a vertical transfer area, and a direct card dispensing area. For each functional area, existing technologies have different drive devices for transferring cards between adjacent functional areas. However, the drive devices between adjacent functional areas require their own drive components, sensors, receiving and pushing modules to achieve continuous card transfer. This increases the number of drive devices, raises the manufacturing and assembly difficulty of the card issuing cabinet, and also increases the complexity of the card pushing control system, thus increasing costs.
[0035] This utility model proposes a card issuing cabinet.
[0036] Please refer to Figures 1 to 3 In one embodiment of this utility model, the card issuing cabinet includes:
[0037] Cabinet 100, cabinet 100 is equipped with a through slot 110, and a card release device 120 is provided outside the through slot 110;
[0038] Storage device 200, disposed within cabinet 100, includes storage compartment 210 and transfer component 220. Transfer component 220 receives the ID card 500 from storage compartment 210 and transports the ID card 500 through card slot 110.
[0039] The first detection element 300 is disposed between the storage device 200 and the card dispensing element 120. The first detection element 300 has a clearance opening 310 for avoiding the transfer element 220. When the transfer element 220 moves to the clearance opening 310, the card 500 can be detected by the first detection element 300 and can be transported to the card dispensing element 120 through the card slot 110.
[0040] The technical solution of this utility model is to set a checkpoint 110 on the cabinet 100, and set a card dispensing component 120 and a storage device 200 on both sides of the checkpoint 110 respectively. The storage compartment 210 of the storage device 200 contains a card 500, and the card 500 in the storage compartment 210 is transferred to the card dispensing component 120 by the transfer component 220 of the storage device 200. The transfer component 220 carries the card 500 to the clearance opening 310 of the first detection component 300. The card 500 is detected by the first detection component 300. Then the transfer component 220 can continue to move to transport the card 500 from the checkpoint 110 to the card dispensing component 120, or the card dispensing component 120 can directly take the card 500 off the first detection component 300. In this way, the drive module between the transfer component 220 and the card dispensing component 120 can be reduced. The card 500 in the storage compartment 210 can be transported to the card dispensing component 120 using the transfer component 220. During this process, the card 500 can be detected by the first detection component 300. This reduces the number of drive components in the process of transporting the card 500, reduces the complexity of the control system for the external transport of the card 500, and reduces costs.
[0041] It should be noted that the cards 500 in the storage compartment 210 can freely enter the transfer unit 220 from the storage compartment 210, and are then transported by the transfer unit 220 to the card dispensing unit 120. If the transfer unit 220 is located below the storage compartment 210, the transfer unit 220 will transport a predetermined number of cards 500 from the lower part of the storage compartment 210 to the first detection unit 300 and the card dispensing unit 120 each time. Alternatively, the transfer unit 220 can be located on the side of the storage compartment 210, and the storage compartment 210 will transport a predetermined number of cards 500 to the transfer unit 220 on the side through the guide wall. This allows the cards 500 in the storage compartment 210 to be transported to the card dispensing unit 120 by the transfer unit 220 in a driveless manner, reducing the number of drive modules required to transport the cards 500. Meanwhile, regarding the method by which the transfer component 220 transports the card 500 towards the card issuing component 120, the transfer component 220 can transport the card 500 by sliding, such as in a straight line, or by rotating, such as in an arc. Furthermore, the card 500 can be an information card for assets such as a debit card, credit card, gold card, or social security card.
[0042] Specifically, for the first detection component 300, the clearance opening 310 is adapted to the movement direction of the transfer component 220. Alternatively, it can be set according to the positional relationship between the storage compartment 210, the first detection component 300, and the checkpoint 110, such as by referring to the movement mode of the transfer component 220 from the storage compartment 210 to the clearance opening 310 and from the clearance opening 310 towards the checkpoint 110. The first detection component 300 can detect the appearance, weight, internal chip identification, or external label identification of the card 500, etc. Depending on the different detection targets, there are different layout forms between the first detection component 300 and the transfer component 220 to adapt to different detection methods during the movement of the transfer component 220 in the clearance opening 310. When the first detection component 300 is used to detect the weight of the card 500, after the card 500 is transported to the first detection component 300, the card 500 is only supported by the first detection component 300. When the first detection component 300 is used to detect the appearance of the card 500, after the card 500 is transported to the first detection component 300, the surface of the card 500 is not blocked by other components. When the first detection component 300 is used to detect the internal chip of the card 500, the part of the card 500 where the chip is located is not blocked by the transfer component 220. In this process, the transfer component 220 transfers the ID card 500 to the first detection component 300. After the first detection component 300 completes the detection, the transfer component 220 can continue to move in the clearance opening 310 and push the ID card 500 through the checkpoint 110 to the card dispensing component 120. Alternatively, at this time, the card dispensing component 120 has already picked up the first detection component 300 and can directly take away the ID card 500 without the transfer component 220 continuing to transfer and transport the ID card 500.
[0043] In one embodiment, please refer to Figure 2 , Figure 3 and Figure 7The transfer component 220 is positioned below the storage compartment 210. The cabinet 100 is equipped with a guide rod 170, which extends between the storage compartment 210 and the first detection component 300. The transfer component 220 is slidably connected to the guide rod 170. The guide rod 170 provides a clear movement path and direction for the transfer component 220, allowing it to slide along a predetermined trajectory between the storage compartment 210 and the first detection component 300. Simultaneously, the guide rod 170 supports the transfer component 220, enabling it to withstand the weight of the card 500 and various forces during the transfer process. This ensures that the transfer component 220 does not experience swaying, deviation, or other instability during movement, thereby guaranteeing that the card 500 can be accurately transferred from the storage compartment 210 to the first detection component 300, and then to the card dispensing component 120, improving the accuracy and stability of the transfer. Without loss of generality, two guide rods 170 are configured and positioned below the storage compartment 210. The lower part of the storage compartment 210 is open, allowing the cards 500 at the bottom to automatically fall onto the guide rods 170. The transfer component 220 then transports the cards 500 from the guide rods 170 to the first detection component 300, and then to the card dispensing component 120. This reduces the number of loading modules for transporting cards 500 from the storage compartment 210 by the transfer component 220, thus reducing the number of accessories. Of course, in other embodiments, a chute can also be provided on the channel wall of the transfer component 220, allowing the transfer component 220 to slide along the chute and transport the cards 500 towards the first detection component 300.
[0044] Regarding the structural form of the transfer component 220, please refer to the following in this embodiment: Figures 2 to 4 , Figure 7The transfer component 220 includes a support portion 221 and a pushing portion 222. The support portion 221 is slidably connected to the guide rod 170, and the pushing portion 222 is elastically rotatably connected to the support portion 221. On the side facing the first detection component 300, the pushing portion 222 pushes against the card 500. It should be noted that the pushing portion 222 and the support portion 221 are elastically rotatably connected, with the pushing portion 222 protruding from the support portion 221 towards the side carrying the card 500 and rotatably connected to the support portion 221. A torsion spring is provided at the rotatable connection, or a compression spring is sandwiched between the pushing portion 222 and the support portion 221, so that the pushing portion 222 can maintain its protruding posture from the support portion 221. During the sliding process of the transfer component 220 toward the first detection component 300, the pushing part 222 can maintain its posture of pushing the card 500, ensuring that the card 500 always maintains a stable transmission state, reducing instability such as shaking and offset during the transmission of the card 500, and improving the accuracy and reliability of the card 500 transmission. Simultaneously, during the resetting process of the transfer component 220, the side of the pushing part 222 away from the first detection component 300 is pressed by the card 500 in the storage compartment 210 and rotates back into the bearing part 221, preventing the card 500 at the bottom of the storage compartment 210 from being pushed away from the storage compartment 210, thereby ensuring the reliability of the transfer component 220 pushing the card 500 to the first detection component 300 next time. Without loss of generality, the side of the pushing part 222 away from the first detection component 300 is set as an inclined surface, and the side facing the first detection component 300 is set as a vertical wall. Of course, in other embodiments, a driving component can also be provided on the transfer component 220 to control the pushing part 222 to protrude or retract from the bearing part 221, so as to ensure the accuracy and reliability of pushing the card 500.
[0045] In one embodiment, please refer to Figures 2 to 4The storage device 200 also includes a first motor 230 and a conveyor belt 240. A transfer component 220 is connected to the conveyor belt 240, and the first motor 230 is driven by the conveyor belt 240. The conveyor belt 240 and the guide rod 170 are arranged side-by-side and located on the horizontal side of the clearance opening 310. It should be noted that the conveyor belt 240 and the guide rod 170 are distributed in parallel. The first motor 230 transmits power to the conveyor belt 240 through gears, or the output end of the first motor 230 directly drives the conveyor belt 240. The transfer component 220 is fixedly connected to a section of the conveyor belt 240. After the first motor 230 drives the conveyor belt 240, the transfer component 220 slides synchronously along the guide rod 170 under the traction of the conveyor belt 240. Thus, by positioning the conveyor belt 240 on the horizontal side of the clearance opening 310, the conveyor belt 240 can be prevented from occupying the moving space of the transfer component 220, increasing the moving stroke of the transfer component 220. This, in turn, enables the transfer component 220 to transport the card 500 from the storage compartment 210 to the card dispensing component 120, ensuring the stability of the transfer component 220 in transporting the card 500. Of course, in other embodiments, the storage device 200 can also drive the transfer component 220 to slide between the clearance opening 310 and the storage compartment 210 via a stepper motor.
[0046] For the detection target of the first detection item 300, in this embodiment, the setting is based on the difference in weight between the cards 500. For example, different types of gold cards will have different weight parameters. Please refer to [the relevant documentation]. Figures 2 to 4 , Figure 7The first detection piece 300 is configured as a weighing piece. At the end of the first detection piece 300 adjacent to the transfer piece 220, the card issuing cabinet is also provided with a guide structure. The upper surface of the first detection piece 300 is higher than the upper surface of the transfer piece 220 that carries the card 500, and lower than the side surface of the transfer piece 220 that pushes against the card 500. The guide structure is used to guide the card 500 to move onto the first detection piece 300. It should be noted that the guiding structure includes a guide member 250, which is disposed between the first detection member 300 and the transfer member 220. The upper surface of the guide member 250 is configured as an inclined surface and is inclined upward from the transfer member 220 toward the upper surface of the first detection member 300. This guide member 250 guides the card 500 pushed by the transfer member 220 to slide onto the upper surface of the first detection member 300, thereby causing the lower surface of the card 500 to abut against the upper surface of the first detection member 300 and maintain a gap with the lower surface of the transfer member 220. This ensures that the first detection member 300 can accurately obtain the weight information of the card 500, so that the card 500 meets the user's card retrieval requirements. The transfer member 220, at the clearance opening 310, still has a component similar to the pushing part 222 that can push the card 500 horizontally, thereby ensuring that the transfer member 220 transports the card 500 from the first detection member 300 to the card dispensing member 120. In addition, the guiding structure also includes a guide ramp 320 disposed on the side of the first detection element 300 facing the storage compartment 210. After being guided by the guide element 250, the card 500 enters the guide ramp 320 and then continues to slide to the upper surface of the first detection element 300, forming that under the guidance of the guiding structure, the card 500 on the transfer element 220 slides to the upper surface of the first detection element 300. Of course, in other embodiments, the first detection element 300 can also be configured as a card reader, such as an RFID / NFC card reader (radio frequency identification module, RFID Reader, / near field communication module, NFC Reader), and the chip inside the card 500 is exposed vertically from the transfer element 220.
[0047] In one embodiment, please refer to Figures 5 to 7The card dispensing component 120 includes clamping wheels 121 spaced vertically apart and a first sensor 123. The first sensor 123 is used to identify the ID card 500, and the clamping wheels 121 are used to transfer the ID card 500 from the first detection component 300 to the card dispensing component 120. It should be noted that, when the card dispensing component 120 clamps the ID card 500 without affecting the first detection component 300's detection of the ID card 500, while the ID card 500 is pushed to the first detection component 300 for detection by the transfer component 220, a portion of the ID card 500 is also clamped by the card dispensing component 120. After the first detection component 300 completes the detection, the clamping wheels 121 rotate, thereby sucking the ID card 500 through the card slot 110 and keeping it stable within the card dispensing component 120. Correspondingly, the transfer component 220 does not need to push the ID card 500 to the card dispensing component 120 again to complete the transfer of the ID card 500 to the card dispensing component 120; or, when the detection by the first detection component 300 requires maintaining independent... In the case of immediate operation, the card 500 is first transported by the transfer component 220 to the first detection component 300 for detection. After the first detection component 300 completes the detection of the card 500, the transfer component 220 continues to move within the clearance opening 310, pushing the card 500 at least partially out of the card slot 110 and being clamped by the clamping wheels 121 of the card dispensing component 120. At this time, the first sensor 123 recognizes the card 500 and drives the clamping wheels 121 through the controller to swallow the card 500 into the card dispensing component 120, maintaining stability between the upper and lower rows of clamping wheels 121. Then, the transfer component 220 returns to the storage compartment 210 to carry out the next card 500 transport task. In this way, the stability of the transfer of the card 500 between the transfer component 220 and the card dispensing component 120 ensures the efficient operation of the card dispensing cabinet. Of course, in other embodiments, after the first sensor 123 of the card dispenser 120 recognizes that the first detection piece 300 has a card 500, the gripper provided on the card dispenser 120 will clamp the card 500 on the first detection piece 300 through the card slot 110 and then transfer it to the outside.
[0048] In one embodiment, please refer to Figures 5 to 7 The lower part of the card dispenser 120 is provided with a second detection element 122, which is used to detect the first information of the card 500. It should be noted that the first information may be information such as the weight, appearance, and internal chip of the card 500. In this embodiment, the first information is configured as the information of the internal chip of the card 500. Correspondingly, the second detection element 122 is configured as a card reader to identify whether the card 500 currently in the card dispenser 120 is the card 500 required by the user, or to detect whether the chip of the current card 500 is usable. If the first information of the card 500 is detected to be inconsistent with the requirements or to be abnormal, the system can take corresponding measures, such as refusing to dispense the card, issuing an alarm, or recording abnormal information.
[0049] Similarly, in this embodiment, please refer to Figures 5 to 7A third detection element 150 is provided on the upper part of the card dispensing component 120. The third detection element 150 is used to detect the second information of the card 500. It should be noted that the second information can be the label information on the outside of the card 500, such as a QR code, barcode, or graphic information, or it can be the user identity information recorded in the internal chip, or the appearance, weight, and other parameter information of the card 500. In this embodiment, the second information is configured as the label information on the surface of the card 500. Correspondingly, the third detection element 150 is configured as a scanner to identify whether the relevant additional information of the card 500 on the current card dispensing component 120, such as production information and quality information, is consistent with the previous detection data. If the second information of the card 500 is detected to be inconsistent with the requirements or to be abnormal, the system can take corresponding measures, such as refusing to dispense the card, issuing an alarm, or recording abnormal information. In this embodiment, the third detection element 150 is disposed on the upper part of the card dispensing element 120 and moves together with the card dispensing element 120. In other embodiments, the third detection element 150 may also be disposed above the card dispensing element 120 and does not move together with the card dispensing element 120.
[0050] Furthermore, in this embodiment, please refer to Figure 1 , Figure 6 and Figure 7The card issuing cabinet also includes a card return compartment 400, located above the first detection unit 300. A card return port 160 is provided between the card return compartment 400 and the card issuing unit 120 in the cabinet body 100. The card return compartment 400 is used to collect cards 500 that have been incorrectly identified by the first detection unit 300, the second detection unit 122, or the third detection unit 150. It can be understood that the card return compartment 400 provides a centralized collection point for cards 500 that have been incorrectly identified by the first detection unit 300, the second detection unit 122, or the third detection unit 150. When a card 500 is found to have a problem, it can be uniformly collected into the card return compartment 400, preventing these problematic cards 500 from continuing to interfere with or cause errors in the normal card output process. Meanwhile, separating erroneous cards 500 from normal cards 500 prevents them from mixing, helping to maintain the accuracy and efficiency of normal card output from the card issuing cabinet. Specifically, the card return compartment 400 is positioned above the first detection unit 300, adjacent to the cabinet wall where the card slot 110 is located. The card dispensing unit 120 transfers cards 500 on the other side of this cabinet wall and can transport erroneous cards 500 to the card return compartment 400 via the card return slot 160 based on the detection signals output by the first detection unit 300, the second detection unit 122, or the third detection unit 150. This reduces the number of components involved in card 500 retrieval and ensures the compactness of the card issuing cabinet. Of course, in other embodiments, the card return compartment 400 can also be set on one side of the card dispensing component 120. After the first detection component 300, the second detection component 122 or the third detection component 150 detects that the card 500 is incorrect, the card dispensing component 120 can directly transport the incorrect card 500 to the card return compartment 400 in the original direction.
[0051] For the user to retrieve the card, in one embodiment, please refer to... Figure 1 and Figure 6The card issuing cabinet is also equipped with a card retrieval device 130, and the cabinet body 100 is equipped with a card retrieval slot 140. The height of the card retrieval slot 140 is configured to be comfortable for users. The card retrieval slot 140 and the card passage slot 110 are horizontally spaced. The card dispensing device 120 slides vertically in the space between the card passage slot 110 and the card retrieval slot 140 to transfer the card 500 to the card retrieval device 130. It should be noted that there are multiple storage devices 200 with different heights. The card dispensing device 120 transfers the card 500 from the corresponding card passage slot 110 of each storage device 200 to the card retrieval slot 140 at a comfortable height for the user, and then the user retrieves it through the corresponding card retrieval device 130. This ensures the user's comfort in retrieving the card. The comfortable height is set according to the user's comfort in raising their arm to retrieve the card, and can be 1.3 meters, 1.5 meters, or 1.1 meters, etc. The card retrieval slot 140 and the card passage slot 110 are horizontally spaced. Depending on the location of the storage device 200, they can be directly horizontally opposite each other or horizontally staggered. The card dispensing component 120 slides vertically within the space between them to transfer the card 500 to the card retrieval component 130, avoiding wasted space and making the internal structure of the card issuing cabinet more compact and efficient. In this way, the card dispensing component 120 rationally plans the transfer path and retrieval operation of the card 500, ensuring that the card 500 can smoothly reach the retrieval position, avoiding complex transfer structures and operations, further simplifying the user's card retrieval process, and better adapting to card issuing cabinets with multiple storage devices 200. Furthermore, the number and arrangement of the card retrieval slots 140 and the card retrieval component 130 can be specifically configured according to the location and distribution of the storage devices 200 within the cabinet 100, allowing users to perform more targeted operations when retrieving cards and enabling manual judgment of card retrieval accuracy.
[0052] In one embodiment, please refer to Figure 1 and Figure 6The card issuing cabinet includes multiple storage devices 200 and multiple first detection components 300. The cabinet body 100 is provided with multiple card passage slots 110. The multiple storage devices 200, multiple first detection components 300, and multiple card passage slots 110 are arranged in a one-to-one correspondence. The multiple storage devices 200 are arranged in a vertical array. It should be noted that, according to the above embodiment, the components corresponding to the multiple storage devices 200 also include multiple card retrieval slots 140, multiple card retrieval components 130, multiple card return compartments 400, and multiple card return slots 160. The number of second detection components 122, third detection components 150, and card dispensing components 120 can be set according to the number or type of horizontally distributed storage devices 200. Thus, the multiple storage devices 200, multiple first detection components 300, multiple card-passing slots 110, multiple card-retrieving slots 140, and multiple card-retrieving components 130 are all correspondingly set up, ensuring that the cards 500 have clear paths and corresponding relationships from storage and detection to transfer. Each card 500 in each storage device 200 is detected by a dedicated first detection component 300, and then subsequent operations are performed through the corresponding card-passing slot 110, facilitating precise management of the cards 500. In addition, the multiple storage devices 200 are arranged vertically in an array, which can make full use of the vertical space of the cabinet 100 and increase the capacity of the card issuing cabinet. The cards 500 in the storage devices 200 placed in different vertical positions may be of different types, in which case the corresponding card-retrieving components 120, second detection components 122, and third detection components 150 need to be horizontally distributed according to the different vertically placed storage devices 200. Of course, if the cards 500 in two or more vertically placed storage devices 200 are of the same type, the corresponding card dispensing device 120, the second detection device 122 and the third detection device 150 can be the same group. The cards 500 in the corresponding storage device 200 can be transferred to the corresponding card retrieval device 130 and card retrieval slot 140 by the drive motor and control program.
[0053] The above description is merely an exemplary embodiment of the present utility model and does not limit the patent scope of the present utility model. Any equivalent structural transformations made based on the technical concept of the present utility model and the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.
Claims
1. A card issuing cabinet, characterized in that, include: The cabinet is provided with a latch, and a card release device is provided outside the latch. A storage device, disposed within the cabinet, includes a storage compartment and a transfer component. The transfer component receives the identification cards from the storage compartment and transports the cards out of the card reader. The first detection element is disposed between the storage device and the card dispensing element. The first detection element has a clearance opening to avoid the transfer element. When the transfer element moves to the clearance opening, the card can be detected by the first detection element and can be transported to the card dispensing element through the card slot.
2. The card issuing cabinet as described in claim 1, characterized in that, The transfer component is located below the storage compartment, and the cabinet is provided with a guide rod that extends between the storage compartment and the first detection component. The transfer component is slidably connected to the guide rod.
3. The card issuing cabinet as described in claim 2, characterized in that, The transfer component includes a bearing part and a pushing part. The bearing part is slidably connected to the guide rod, and the pushing part is elastically rotatably connected to the bearing part. On the side facing the first detection component, the pushing part pushes against the card.
4. The card issuing cabinet as described in claim 2, characterized in that, The storage device further includes a first motor and a conveyor belt. The transfer component is connected to the conveyor belt, and the first motor is driven and connected to the conveyor belt. The conveyor belt and the guide rod are arranged side by side and located on the horizontal side of the clearance opening.
5. The card issuing cabinet as described in claim 1, characterized in that, The first detection component is configured as a weighing component. At one end of the first detection component adjacent to the transfer component, the card issuing cabinet is also provided with a guide structure. The upper surface of the first detection component is higher than the upper surface of the transfer component that carries the card, and lower than the side surface of the transfer component that pushes against the card. The guide structure is used to guide the card to move onto the first detection component.
6. The card issuing cabinet as described in claim 1, characterized in that, The card dispensing component includes clamping wheels spaced vertically apart and a first sensor. The first sensor is used to identify the card, and the clamping wheels are used to transfer the card from the first detection component to the card dispensing component.
7. The card issuing cabinet as described in claim 1, characterized in that, The lower part of the card dispenser is provided with a second detection element, which is used to detect the first information of the card; And / or, a third detection element is provided on the upper part of the card dispensing component, the third detection element being used to detect the second information of the card.
8. The card issuing cabinet as described in claim 7, characterized in that, The card issuing cabinet is also equipped with a card return compartment, which is located above the first detection device. The cabinet body is provided with a card return port between the card return compartment and the card issuing device. The card return compartment is used to collect the card that has been incorrectly identified by the first detection device, the second detection device, or the third detection device.
9. The card issuing cabinet as described in claim 1, characterized in that, The card issuing cabinet is also equipped with a card retrieval device. The cabinet body is equipped with a card retrieval slot. The position and height of the card retrieval slot are configured to be comfortable for users. The card retrieval slot and the card passage slot are horizontally spaced. The card dispensing device slides vertically in the space between the card passage slot and the card retrieval slot to transfer the card to the card retrieval device.
10. The card issuing cabinet as described in any one of claims 1 to 9, characterized in that, The card issuing cabinet includes multiple storage devices and multiple first detection components. The cabinet body is provided with multiple card slots. The multiple storage devices, multiple first detection components and multiple card slots are arranged in a one-to-one correspondence. The multiple storage devices are arranged in a vertical array.