Card sender

By driving the storage component to move through the drive mechanism, the card slot of the card issuer is sequentially connected to the card issuing module, which solves the problems of complex structure and large space occupation in the existing technology, and achieves efficient card issuance and improved reliability.

CN223728251UActive Publication Date: 2025-12-26GUANGDONG ELECTRONICS TECH RES INST +1
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Patent Information

Application Number
CN202520151731.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2025-12-26
Estimated Expiration
2035-01-22

AI Technical Summary

Technical Problem

Existing card issuing machines have a complex structure, occupy a large space, and take up even more space when moved, and have a high failure rate.

Method used

A drive mechanism is used to move the storage component along the first direction, so that the two card slots are connected to the card issuing module in sequence. The card issuing module is fixed on the frame to reduce movement. The card slots are used to store cards, and the card issuing module is used to push cards. The structure is simple and reduces the failure rate.

Benefits of technology

By reducing the space occupied and failure rate of the card dispenser, reliability is improved, the number of cards that can be loaded at one time is increased, the structure is simplified, and the cost is reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a card sender, and belongs to the technical field of card senders. The card sender comprises a frame, the frame is provided with a storage module and a card sending module, the storage module comprises a driving mechanism and a storage assembly, the storage assembly comprises two card slots which are arranged in parallel along a first direction, the card slots extend along a vertical direction, so that a plurality of cards are stacked in the card slots along the vertical direction, and the bottom of each card slot is a card outlet. The driving mechanism drives the storage assembly to move in the first direction. The two card slots can be in butt joint with the card issuing module through the respective card outlets in sequence, and the card issuing module can push the cards at the butt joint card outlets to a read-write area of an external reader-writer, so that the occupied space is reduced, and the failure rate is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a card dispenser technical field especially relates to a card dispenser. BACKGROUND

[0002] In the related art, in order to improve the one-time card loading capacity of the card dispenser, a multi-card slot mode is used, that is, the card dispenser comprises at least two card slots and a card dispensing mechanism. Initially, the card dispensing mechanism corresponds to the position of one card slot, and card dispensing in the card slot is realized. After the cards in the previous card slot are dispensed, the card dispensing mechanism moves to the position of the next card slot, and card dispensing in the next card slot is realized, thereby realizing card dispensing in multiple card slots. However, the card dispensing mechanism has a relatively complex structure and occupies a large space. After moving, the occupied space is further increased, and the failure rate is also increased. SUMMARY

[0003] The utility model aims at providing a card dispenser, which reduces the occupied space and reduces the failure rate.

[0004] To achieve this purpose, the utility model adopts the following technical scheme:

[0005] A card dispenser comprises a frame, and the frame is provided with:

[0006] A storage module comprises a driving mechanism and a storage assembly. The storage assembly comprises two card slots arranged in parallel along a first direction. The card slots extend along a vertical direction, so that multiple cards are stacked in the card slots along the vertical direction. The bottom of the card slot is an ejection port. The driving mechanism drives the storage assembly to move along the first direction.

[0007] A card dispensing module. The two card slots can be connected to the card dispensing module through the respective ejection ports. The card dispensing module can push the cards in the connected ejection ports to the reading and writing area of the external reader.

[0008] In some possible embodiments, the frame is provided with a first guide assembly, and the storage assembly is connected to the frame through the first guide assembly along the first direction.

[0009] In some possible embodiments, the storage assembly comprises a bottom plate, a vertical plate and a spacing plate. The vertical plate has a through slot extending along the vertical direction. The spacing plate is arranged in the through slot to form two card slots. The bottom plate is arranged at the bottom of the vertical plate and the spacing plate. One side of the vertical plate and the bottom plate towards the second direction forms the ejection port. The bottom plate is provided with a communication hole communicating with the ejection port. The card dispensing module passes through the communication hole to connect with the card slot and push the cards along the second direction. The first direction and the second direction are arranged at an angle.

[0010] In some possible implementation manners, the driving mechanism is arranged at the bottom of the bottom plate, and the bottom of the bottom plate is provided with a seat plate, and the driving mechanism is connected to the seat plate.

[0011] In some possible implementation manners, the card sending module comprises a first card pushing mechanism, which is capable of pushing the card in the card outlet to the read-write area in a second direction, and the first direction and the second direction are arranged at an angle.

[0012] In some possible implementation manners, the card sending module further comprises a second card pushing mechanism, which is capable of being connected to the first card pushing mechanism and the read-write area respectively, the second card pushing mechanism is capable of pushing the card in the second direction to the read-write area, and the second card pushing mechanism is capable of pushing the card in the second direction to a waste card box outside.

[0013] In some possible implementation manners, the second card pushing mechanism comprises a driving motor, a fixed frame and a traction wheel set arranged on the fixed frame, the driving motor and the fixed frame are fixedly arranged on the frame, the traction wheel set comprises a driving wheel and a driven wheel rotating in opposite directions, the first card pushing mechanism is capable of pushing the card between the driving wheel and the driven wheel, and the driving motor is capable of driving the driving wheel to rotate to drive the card to move and the driven wheel to rotate.

[0014] In some possible implementation manners, the card sending module further comprises a guide groove assembly arranged between the first card pushing mechanism and the second card pushing mechanism, the first card pushing mechanism pushes the card along the guide groove assembly to be connected to the second card pushing mechanism, a guide inclined plate is arranged between the guide groove assembly and the second card pushing mechanism, the second card pushing mechanism is capable of pushing the card to the guide inclined plate, the guide inclined plate is inclined downward and connected to the waste card box outside, so that the waste card box collects the card.

[0015] In some possible implementation manners, the storage module and the card sending module are both provided with at least two, at least two card sending modules are arranged in a third direction, at least two storage modules are arranged in the third direction, the storage module and the card sending module are arranged one by one, and the first direction and the third direction are perpendicular.

[0016] In some possible implementation manners, a paper bill printing unit is further arranged on the frame.

[0017] The utility model discloses the beneficial effects of:

[0018] The utility model provides a kind of card dispenser, two card slots are moved by drive mechanism drive storage assembly, to be in turn with card issuing module butt joint, realize the card of multiple card slots storage is issued in turn, increase disposable card loading amount.And card issuing module is fixed on frame and keeps unmoved, reduce ground occupied area, reduce occupied space.Card slot is only used to store card, and card issuing module is used to push card, it includes power structure, structure is more complex, by fixed setting, reduce failure rate, improve reliability, and then improve the reliability of card dispenser. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is the schematic diagram of card dispenser provided by the embodiment of the utility model;

[0020] Figure 2 It is the plan view of card dispenser provided by the embodiment of the utility model;

[0021] Figure 3 It is the schematic diagram of storage module provided by the embodiment of the utility model;

[0022] Figure 4 It is Figure 3 the local enlarged view of A of

[0023] Figure 5 It is the schematic diagram of card issuing module under one viewing angle provided by the embodiment of the utility model;

[0024] Figure 6 It is the schematic diagram of card issuing module under another viewing angle provided by the embodiment of the utility model;

[0025] Figure 7 It is Figure 6 the local enlarged view of B of

[0026] In the figure:

[0027] 1, frame;11, first mounting plate;12, second mounting plate;13, first guide component;131, optical axis;132, guide block;

[0028] 2, storage module;21, drive mechanism;211, second motor;212, second belt transmission component;213, lead screw;214, nut;22, storage assembly;221, bottom plate;222, vertical plate;223, spacing plate;224, card slot;225, card outlet;226, communication hole;227, seat plate;228, baffle;

[0029] 3. Card issuing module; 31. First card pushing mechanism; 311. First motor; 312. Synchronous belt assembly; 313. Support plate; 314. Second guide assembly; 32. Second card pushing mechanism; 321. Drive motor; 322. Fixing frame; 323. Traction wheel set; 324. First belt transmission assembly; 325. Gear transmission assembly; 326. Rotating shaft; 33. Guide groove assembly; 34. Guide inclined plate; 35. Mounting side plate;

[0030] 4. Paper coupon printing unit;

[0031] 5. Monitoring components;

[0032] 100. Cards. Detailed Implementation

[0033] To make the technical problems solved by this utility model, the technical solutions adopted, and the technical effects achieved clearer, the technical solutions of the embodiments of this utility model will be further described in detail below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0034] In the description of this utility model, unless otherwise explicitly specified and limited, the terms "connected," "linked," and "fixed" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; 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; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0035] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.

[0036] like Figures 1-7As shown, the embodiment provides a card dispenser, which comprises a frame 1, a storage module 2 and a card dispensing module 3 arranged on the frame 1. The storage module 2 comprises a driving mechanism 21 and a storage assembly 22, the storage assembly 22 comprises two card slots 224 arranged in parallel along a first direction, the card slots 224 extend along a vertical direction, so that a plurality of cards 100 are stacked in the card slots 224 along the vertical direction, the bottom of the card slot 224 is a card outlet 225, and the driving mechanism 21 drives the storage assembly 22 to move along the first direction. The two card slots 224 can be connected to the card dispensing module 3 through the respective card outlets 225 in sequence, and the card dispensing module 3 can push the cards 100 connected to the card outlets 225 to the reading and writing area of an external reader to realize the card dispensing function.

[0037] The driving mechanism 21 drives the storage assembly 22 to move along the first direction, that is, drives the two card slots 224 to move along the first direction, so that the two card slots 224 are connected to the card dispensing module 3 through the respective card outlets 225 in sequence. For example, the first card slot 224 is connected to the card dispensing module 3, and the cards 100 in the first card slot 224 are sequentially dispensed from bottom to top. When all the cards 100 in the first card slot 224 are dispensed, the driving mechanism 21 drives the storage assembly 22 to move, and the second card slot 224 is connected to the card dispensing module 3, and the cards 100 in the second card slot 224 are sequentially dispensed from bottom to top. By arranging two card slots 224, the one-time card loading capacity is improved. Alternatively, when the cards 100 in the second card slot 224 are dispensed, the first card slot 224 can be loaded, and when the cards 100 in the second card slot 224 are dispensed, the driving mechanism 21 drives the two card slots 224 to move along the reverse direction of the first direction, so that the first card slot 224 is connected to the card dispensing module 3 again, avoiding downtime.

[0038] The driving mechanism 21 drives the storage assembly 22, that is, the two card slots 224, to move to be connected to the card dispensing module 3 in sequence, to complete the action of switching the card slots 224, thereby realizing the sequential dispensing of the multiple card slots 224, and increasing the one-time card loading capacity. The card dispensing module 3 is fixed on the frame 1 and remains stationary, reducing the ground occupation area and the occupied space. The card slot 224 is only used for storing the card 100, and the card dispensing module 3 is used for pushing the card 100, which includes a power structure and is relatively complex. By being fixedly arranged, the failure rate is reduced, the reliability is improved, and the reliability of the card dispenser is improved. The card outlet 225 is located at the bottom of the card slot 224, and the multiple cards 100 are stacked along the vertical direction. When the bottommost card 100 is pushed by the card dispensing module 3 to the reading and writing area, the card 100 adjacent to the bottommost card 100 is automatically shifted to the bottom under the action of gravity to be pushed by the card dispensing module 3 to the reading and writing area. No power structure is needed to drive the card 100 to be connected to the card dispensing module 3, thereby saving the power structure and reducing the cost, simplifying the structure and reducing the occupied space.

[0039] Exemplarily, the first direction and the second direction are horizontal directions, and the third direction is a vertical direction. The first direction is an X direction, the second direction is a Y direction, and the third direction is a Z direction. The first direction, the second direction, and the third direction are perpendicular to each other in pairs.

[0040] The storage module 2 and the card issuing module 3 are each provided with at least two card issuing modules 3 arranged along the third direction, and at least two storage modules 2 arranged along the third direction. The storage module 2 and the card issuing module 3 are arranged one by one. By increasing the storage module 2 and the card issuing module 3, the one-time card loading capacity is further increased, and the two card issuing modules 3 simultaneously issue cards, thereby improving the work efficiency.

[0041] In this embodiment, two card issuing modules 3 and two storage modules 2 are provided. In other embodiments, three or more card issuing modules 3 and a corresponding number of storage modules 2 can be provided. Optionally, the storage module 2 is provided with three or more card slots 224, and the card slots 224 are sequentially connected to the card issuing module 3. By increasing the number of card slots 224, the one-time card loading capacity is further increased.

[0042] Optionally, the frame 1 includes a first mounting plate 11 and two second mounting plates 12 mounted on the first mounting plate 11, so that the frame 1 has a U shape. The storage module 2 and the card issuing module 3 are arranged on the first mounting plate 11 and located between the two second mounting plates 12.

[0043] As shown in FIGS. 1, 2, and 3, the card issuing device 1 includes a frame 1, a storage module 2, and a card issuing module 3. Figure 1 As shown in FIGS. 1, 2, and 3, the card issuing device 1 includes a frame 1, a storage module 2, and a card issuing module 3. Figure 4 As shown in FIGS. 1, 2, and 3, the card issuing device 1 includes a frame 1, a storage module 2, and a card issuing module 3. The storage assembly 22 includes a bottom plate 221, a vertical plate 222, and a partition plate 223. The vertical plate 222 has a through slot extending along the vertical direction. The partition plate 223 is arranged in the through slot to form two card slots 224. The bottom plate 221 is arranged at the bottom of the vertical plate 222 and the partition plate 223. The side of the vertical plate 222 and the bottom plate 221 facing the second direction forms a card outlet 225. The bottom plate 221 is provided with a communication hole 226 communicating with the card outlet. The card issuing module 3 passes through the communication hole 226 to be connected to the card slot 224 and push the card 100 along the second direction. The first direction and the second direction are arranged at an angle. The card issuing module 3 pushes the card 100 to move along the second direction, so that the card 100 is moved out of the card outlet 225 on the side of the second direction, thereby preventing structural interference.

[0044] The storage assembly 22 is formed by a plurality of plate structures, which is simple and light in structure and easy to move. Exemplarily, the storage assembly 22 further includes a baffle 228. The bottom plate 221 is located at the bottom. The vertical plate 222 includes three plates. One plate is arranged along the second direction with the baffle 228. The other two plates and the partition plate are arranged along the first direction. The partition plate is located at the middle position. By arranging the baffle 228, the plurality of cards 100 is prevented from falling.

[0045] As shown in Figure 3 and Figure 4 In an embodiment, the driving mechanism 21 is arranged at the bottom of the bottom plate 221, the bottom of the bottom plate 221 is provided with a seat plate 227, and the driving mechanism 21 drives the seat plate 227. The driving mechanism 21 comprises a second motor 211, a second belt transmission assembly 212, a lead screw 213 and a nut 214 matched with the lead screw 213; the second motor 211 drives the input end of the second belt transmission assembly 212, i.e. the driving pulley, and the output end of the second belt transmission assembly 212, i.e. the driven pulley, is connected to the lead screw 213. After the second motor 211 operates, the lead screw 213 is driven to rotate by the second belt transmission assembly 212, thereby driving the nut 214 to move, and the storage assembly 22 connected with the nut 214 to move. The seat plate 227 arranged at the bottom of the bottom plate 221 facilitates connection. Exemplarily, the seat plate 227 and the bottom plate 221 are connected vertically. In other embodiments, the driving mechanism 21 can drive connection on the vertical plate 222, which is not limited.

[0046] As shown in Figure 1 and Figure 4 The frame 1 is provided with a first guide assembly 13, and the storage assembly 22 is slidably connected to the frame 1 in the first direction through the first guide assembly 13. By arranging the first guide assembly 13, the moving precision of the storage assembly 22 is improved. Optionally, the second guide assembly 314 is provided with two, and the first guide assembly 13 comprises an optical axis 131 and a guide block 132. Two optical axes 131 are installed in parallel on two second mounting plates 12, and one guide block 132 is installed on the bottom plate 221, and the other guide block 132 is installed on the side of the vertical plate 222 opposite to the baffle 228. The guide block 132 is provided with a guide light hole, and the optical axis 131 passes through the guide light hole, thereby realizing the guiding effect on the storage assembly 22.

[0047] Optionally, when a plurality of storage modules 2 are arranged, the storage assemblies 22 of the plurality of storage modules 2 are guided by the first guide assembly 13, and the bottom plate 221 and the vertical plate 222 of the storage assembly 22 are both provided with corresponding guide blocks 132, i.e. one optical axis 131 can be correspondingly installed on the guide blocks 132 on the plurality of storage assemblies 22, thereby simplifying the structure.

[0048] As shown in Figures 5-7As shown, the card issuing module 3 comprises mounting side plates 35 fixed on the bottom plate 221, which are used to support the first pushing card mechanism 31, the guide groove assembly 33, the guide inclined plate 34 and the second pushing card mechanism 32 installed in the second direction in turn. The first pushing card mechanism 31 pushes the card 100 along the guide groove assembly 33 to be docked with the second pushing card mechanism 32; the second pushing card mechanism 32 continues to push the card 100 to be docked with the read-write area, or can also push the card 100 to be docked with the guide inclined plate 34, the second pushing card mechanism 32 can push the card 100 to the guide inclined plate 34, which is inclined downward and docked with the external waste card box to collect the card 100. After the card 100 is pushed to the read-write area, the external read-write device writes the (vehicle) information into the card 100 through the antenna, and after the read-write succeeds, the card issuing module 3, i.e. the second pushing card mechanism 32, issues the card 100, and if the card 100 fails to read and write, the card issuing module 3 pushes the card 100 into the external waste card box.

[0049] Exemplarily, the first pushing card mechanism 31 comprises a first motor 311, a synchronous belt assembly 312, a supporting plate 313 and a second guide assembly 314; the second guide assembly 314 comprises a guide rail and a sliding block slidingly connected to the guide rail, the guide rail extends along the second direction and is installed on the side surface of the mounting side plate 35, the first motor 311 drives the driving pulley of the synchronous belt assembly 312 to drive the synchronous belt assembly 312, the supporting plate 313 is connected to the synchronous belt of the synchronous belt assembly 312 and connected to the sliding block, so as to realize the movement of the supporting plate 313 along the second direction. The supporting plate 313 at least partially penetrates the communication hole 226 to lift the card 100, and the end of the supporting plate 313 is provided with a convex rib, which can push the card 100 along one side of the second direction, so as to push the card 100 to be docked with the second pushing card mechanism 32. The other side of the convex rib along the second direction has a guide surface, which guides the bottom of the card 100 in the returning process after the card 100 is pushed, so as to facilitate the returning of the supporting plate 313 to the preset position to dock with the current bottom card 100 and lift it.

[0050] Exemplarily, the guide groove assembly 33 comprises two guide plates corresponding to the two mounting side plates 35, which ensure that the card 100 pushed by the first pushing card mechanism 31 moves along the guide plate to prevent deviation and improve the moving accuracy. The space between the two guide plates forms an avoiding space for avoiding the first pushing card mechanism 31.

[0051] Exemplarily, the second card pushing mechanism 32 is capable of pushing the card 100 to the read-write area along the positive direction of the second direction, and is capable of pushing the card 100 to the waste card box outside along the reverse direction of the second direction. Further, the second card pushing mechanism 32 comprises a driving motor 321, a fixed frame 322 and a traction wheel set 323 arranged on the fixed frame 322. The driving motor 321 and the fixed frame 322 are fixedly arranged on the frame 1. The traction wheel set 323 comprises a driving wheel and a driven wheel rotating in opposite directions. The first card pushing mechanism 31 is capable of pushing the card 100 to the space between the driving wheel and the driven wheel. The driving motor 321 is capable of driving the driving wheel to rotate to drive the card 100 to move and drive the driven wheel to rotate. The driving motor 321 rotates in the positive direction to drive the card 100 to move in the positive direction, and rotates in the reverse direction to drive the card 100 to move in the reverse direction, which is convenient for control.

[0052] Further, the second card pushing mechanism 32 further comprises two first belt transmission assemblies 324, two gear transmission assemblies 325, four rotating shafts 326 and four traction wheel sets 323. The rotating shafts 326 extend along the first direction. The four rotating shafts 326 are respectively named as a first shaft, a second shaft, a third shaft and a fourth shaft. The first shaft and the second shaft are arranged above along the second direction, and the third shaft and the fourth shaft are arranged below along the second direction. The first shaft and the second shaft are respectively provided with two driving wheels corresponding to each other. The third shaft and the fourth shaft are respectively provided with two driven wheels corresponding to each other. The third shaft is below the first shaft, and the fourth shaft is below the second shaft. One first belt transmission assembly 324 is transmissionally connected between the first motor 311 and the first shaft, and the other first belt transmission assembly is transmissionally connected between the second shaft and the first shaft. The two gear transmission assemblies 325 are arranged along the second direction. Two driving gears are respectively in one-to-one correspondence with the first shaft and the second shaft, and two driven gears are respectively in one-to-one correspondence with the third shaft and the fourth shaft, so as to realize that one driving motor 321 drives the four rotating shafts 326 to rotate synchronously, which can realize synchronous rotation and reduce the number of driving structures, simplify the structure and save the cost. By increasing the number of traction wheel sets 323, the contact area with the card 100 is increased, and the stability of pushing the card 100 is improved.

[0053] The installation side plate 35 is provided with four position sensors, two of which are arranged at two limit positions of the first push-clamping mechanism 31 along the second direction, respectively. When the tray 313 returns to the initial position, the first position sensor detects the tray 313 and sends a signal to make the first motor 311 drive forward rotation to make the tray 313 move forward. When the tray 313 moves to the limit position of the second push-clamping mechanism 32, the second position sensor detects the tray 313 and sends a signal to make the first motor 311 drive reverse rotation to make the tray 313 move backward; in addition, the driving motor 321 drives forward rotation to make the card 100 continue to move forward. The other two position sensors are arranged at two limit positions of the second push-clamping mechanism 32 for pushing the card 100, respectively, to detect the current position of the card 100 in the second push-clamping mechanism 32 or whether there is a card 100 on the second push-clamping mechanism 32, which is set according to the requirement and will not be described herein.

[0054] The card issuing machine further comprises a paper coupon printing unit 4 arranged on the frame 1. In major holidays such as the Spring Festival and the National Day, in order to facilitate free passage of vehicles, the highway management department will issue paper coupons at the entrance, at this time, the card issuing execution unit is suspended, the paper coupon printing unit 4 prints the (vehicle) information on the paper coupon and issues it to the driver. The paper coupon printing unit 4 is prior art and can be applied without further description.

[0055] The card issuing machine further comprises a monitoring assembly 5, which, for example, comprises a circuit board, for controlling the operation of the driving mechanism 21 and the card issuing module 3, and specifically comprises controlling the rotation of the second motor 211, the first motor 311 and the driving motor 321 in the driving mechanism 21.

[0056] The toll lane computer is in communication connection with the monitoring assembly 5, the reader-writer and the paper coupon printing unit 4 of the card issuing machine through RS232 serial ports. The monitoring assembly 5 of the card issuing machine reports the real-time state to the upper computer (toll lane computer) and receives the control instructions issued by the lane software of the upper computer and issues them to the corresponding execution units. The card issuing module 3 is used to push the card 100 to the reading and writing area, the reader-writer writes the vehicle information into the card 100, and the card issuing module 3 issues the card 100. If the card 100 in the current working card slot 224 is issued, the second motor 211 of the storage module 2 drives the card slot 224 with the card 100 to move to the card issuing module 3 above for docking, to complete the switching of the card slot 224.

[0057] Obviously, the above embodiments of the present application are merely examples for clearly illustrating the present application, and are not intended to limit the implementation modes of the present application. For those skilled in the art, other different forms of changes or variations can be made on the basis of the above description. Here, it is not necessary and also impossible to exhaust all the implementation modes. Any modification, equivalent replacement and improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application claims.

Claims

1. A card issuing machine characterized by comprising: Frame (1) is provided with: Storage module (2) comprising driving mechanism (21) and storage assembly (22), the storage assembly (22) comprises two clamping slots (224) arranged in parallel along the first direction, the clamping slot (224) extends along the vertical direction, so that a plurality of cards (100) are stacked in the clamping slot (224) along the vertical direction, the bottom of the clamping slot (224) is the card outlet (225), the driving mechanism (21) drives the storage assembly (22) to move along the first direction; Card issuing module (3), two clamping slots (224) can be connected with card issuing module (3) through respective card outlet (225) in sequence, card issuing module (3) can push card (100) of the connected card outlet (225) to the read-write area of external read-write device.

2. The card dispenser according to claim 1, wherein The frame (1) is provided with a first guide assembly (13), and the storage assembly (22) is slidably connected to the frame (1) along the first direction through the first guide assembly (13).

3. The card dispenser of claim 1, wherein The storage assembly (22) comprises a bottom plate (221), a vertical plate (222) and a spacing plate (223), the vertical plate (222) has a through slot extending along the vertical direction, the spacing plate (223) is arranged in the through slot to form two clamping slots (224), the bottom plate (221) is arranged at the bottom of the vertical plate (222) and the spacing plate (223), one side of the vertical plate (222) and the bottom plate (221) towards the second direction forms the card outlet (225), and the bottom plate (221) is provided with a communication hole (226) communicating with the card outlet, the card issuing module (3) passes through the communication hole (226) to connect with the clamping slot (224) and push the card (100) along the second direction, the first direction and the second direction are arranged at an angle.

4. The card dispenser of claim 3, wherein The driving mechanism (21) is arranged at the bottom of the bottom plate (221), and the bottom of the bottom plate (221) is provided with a seat plate (227), and the driving mechanism (21) is drivingly connected with the seat plate (227).

5. The card dispenser of claim 1, wherein The card issuing module (3) comprises a first card pushing mechanism (31), which can push the card (100) of the card outlet (225) along the second direction to the read-write area, and the first direction and the second direction are arranged at an angle.

6. The card dispenser of claim 5, wherein, The card issuing module (3) further comprises a second card pushing mechanism (32), which can be connected with the first card pushing mechanism (31) and the read-write area respectively, the second card pushing mechanism (32) can push the card (100) along the positive direction of the second direction to the read-write area, and the second card pushing mechanism (32) can push the card (100) along the negative direction of the second direction to the waste card box outside.

7. The card dispenser of claim 6, wherein The second pushing and clamping mechanism (32) comprises a driving motor (321), a fixed frame (322) and a traction wheel set (323) arranged on the fixed frame (322), the driving motor (321) and the fixed frame (322) are fixedly arranged on the frame (1), the traction wheel set (323) comprises a driving wheel and a driven wheel rotating in opposite directions, the first pushing and clamping mechanism (31) can push the card (100) to the driving wheel and the driven wheel, and the driving motor (321) can drive the driving wheel to rotate to drive the card (100) to move and the driven wheel to rotate.

8. The card dispenser of claim 6, wherein, The card issuing module (3) further comprises a guide groove assembly (33), the guide groove assembly (33) is arranged between the first pushing and clamping mechanism (31) and the second pushing and clamping mechanism (32), the first pushing and clamping mechanism (31) pushes the card (100) along the guide groove assembly (33) to be connected with the second pushing and clamping mechanism (32); a guide inclined plate (34) is arranged between the guide groove assembly (33) and the second pushing and clamping mechanism (32), the second pushing and clamping mechanism (32) can push the card (100) to the guide inclined plate (34), the guide inclined plate (34) is inclined downward and connected with the waste card box outside, so that the waste card box collects the card (100).

9. The card dispenser of claim 1, wherein, The storage module (2) and the card issuing module (3) are arranged at least two, at least two card issuing modules (3) are arranged along a third direction, at least two storage modules (2) are arranged along the third direction, the storage module (2) and the card issuing module (3) are arranged one by one, and the first direction and the third direction are perpendicular.

10. The card dispenser according to any of claims 1-9, characterized in that Further comprising a paper bill printing unit (4) arranged on the frame (1).