Identity card acceptance service terminal all-in-one machine

By designing an integrated ID card processing terminal that includes a touch screen, camera, self-service coin acceptor, and magnetic components, the problem of inconvenience in making change and retrieving temporary ID cards has been solved, achieving fast and secure ID card retrieval and dustproof equipment.

CN121884499APending Publication Date: 2026-04-17SHANDONG RONGJI WEIYE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHANDONG RONGJI WEIYE TECH CO LTD
Filing Date
2026-03-20
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

The existing ID card processing equipment makes it inconvenient to give change and retrieve the ID card when applying for a temporary ID card, which can easily lead to property loss and security risks.

Method used

Design an integrated ID card processing service terminal, comprising a touch screen, a camera, a self-service coin acceptor, an ID card issuing machine, and a magnetic component. The terminal operates via the touch screen, collects information via the camera, provides change via the self-service coin acceptor, and uses the magnetic component to control the ID card dispensing, ensuring safe and fast ID card issuance.

Benefits of technology

It enables quick retrieval of ID cards, avoids forgetting to give change, reduces property loss, ensures personnel safety, and improves the dustproof effect and operational stability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an identity card acceptance service terminal all-in-one machine, and relates to the technical field of identity card acceptance equipment, the identity card acceptance service terminal all-in-one machine comprises a terminal assembly, a sending-out assembly and a magnetic assembly, the terminal assembly comprises a machine body and a processor, the machine body is provided with an information collection assembly, and the information collection assembly comprises a touch screen and a camera. The identity card acceptance service terminal all-in-one machine comprises a machine body, the inner side of the machine body is provided with a certificate making assembly, the certificate making assembly comprises a certificate making machine and a certificate outlet, the inner side of the machine body is provided with a currency processing assembly, and the currency processing assembly comprises a self-service coin inserting machine and a coin outlet. And meanwhile, the self-service slot machine conveys currency needing change to the top of the pressing plate through the coin outlet, so that a person can take away the retrieved change while taking out a temporary identity card, the person is prevented from forgetting to take back the change, the property loss of the person is reduced, and the self-service slot machine is suitable for acceptance service and certificate making work of the identity card.
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Description

Technical Field

[0001] This disclosure relates to the field of ID card acceptance service equipment technology, and in particular to an integrated ID card acceptance service terminal. Background Technology

[0002] To facilitate quick processing of lost, damaged, or expired ID cards, ID card processing service equipment is often used.

[0003] Patent application CN202511270604.2 discloses a self-service terminal with self-selection payment options, comprising: a terminal host; the terminal body includes a report printing function area, a film printing function area, an interactive display area, and a card reader area; the report printing function area and the interactive display area are arranged side by side above the film printing function area, the card reader area is located on one side of the film output port of the film printing function area, and a barcode scanner is located at the bottom of the interactive display area; the print payment interactive screen displays the UI interface of the self-service printing system, and the homepage of the UI interface displays selection prompts for self-service payment printing, which includes card swiping printing and barcode scanning printing; when a print request is triggered by card swiping or barcode scanning, the UI interface displays a print options page, which includes a report printing option and a simultaneous report and film printing option; when the report printing option is triggered, the UI interface displays a printing process interface prompting the printing process and status; when the simultaneous report and film printing option is triggered... When the print option is triggered, the UI displays the QR code payment interface. After payment is completed, the UI displays the printing process interface, indicating the printing progress and status. The report printer is installed inside the terminal housing. The report outlet extends through the terminal housing and connects to the paper output port of the report printer. The consumables observation window is located below the report outlet, maintaining unobstructed visibility of the report printer's consumables and paper. The film printing module includes a film printer and a film outlet. This terminal allows users to choose their payment path independently within the same self-service terminal, enabling unified interactive arrangement of simultaneous report printing and report film printing, and providing full-process status prompts. It also features a customizable card reader module, supports multiple card interfaces, and offers visualization and maintainability for users and maintenance personnel, improving the success rate and user experience of self-service printing in medical scenarios, and reducing manual intervention and maintenance costs. The patent application number is CN202110694043.Patent No. 4 discloses an integrated automatic temporary ID card production machine. A stack of blank temporary ID cards is stored in a card placement box. When a temporary ID card needs to be produced, a first pushing mechanism pushes the bottom blank temporary ID card horizontally out of the placement box along the bottom gap. A first reflective sensor on the recording mechanism detects the blank temporary ID card entering the recording mechanism, activating a first pressing shaft to send the blank temporary ID card to a first transmission base, and then to a second transmission base via a pressing transmission shaft. A hidden code on the blank card is displayed by an illumination lamp, and simultaneously captured and recorded by a camera. The recorded code is transmitted to a data center. The pre-printed ID card information film is placed on a lifting transition plate. The lifting transition plate moves downwards along the sliding guide rail with the sliding module. When it reaches the lower slotted photoelectric sensor, the upper surface of the lifting transition plate is flush with the second transmission base. At this point, the temporary ID card blank is transferred to the upper surface of the lifting transition plate and aligned with the ID card information film. Then, the second pushing mechanism pushes the filmed temporary ID card into the laminating mechanism. Heated by a heating block and then pressed by a second pressing shaft, the temporary ID card is produced. The system automatically reads the applicant's information and produces temporary ID cards through a fully automated integrated process including automatic material feeding, automatic film peeling, automatic printing, automatic lamination, and automatic lamination. Citizens can obtain their cards immediately, achieving a seamless connection from application to issuance.

[0004] According to the publicly available technical solutions, existing ID card processing equipment has several drawbacks. First, when using coin-operated temporary ID cards, change and the temporary ID card are often dispensed through different exits, which can easily lead to people forgetting to take their money after receiving the temporary ID card, resulting in financial loss. Second, after the temporary ID card is produced, it often needs to be retrieved from the exit, which is particularly inconvenient for first-time users who may not know the location of the exit or retrieve their temporary ID card. Third, after the ID card is retrieved, the conveyor belt can return too quickly, potentially pinching or injuring people, which is detrimental to their safety. Summary of the Invention

[0005] This disclosure aims to at least partially address one of the technical problems in the related art.

[0006] Therefore, the purpose of this disclosure is to provide an integrated terminal for ID card processing services.

[0007] To achieve the above objectives, this disclosure provides an integrated ID card processing service terminal, comprising: a terminal component, a dispensing component, and a magnetic component. The terminal component includes a body and a processor. An information collection component, including a touchscreen and a camera, is installed on the body. An ID card production component, including a production machine and a dispensing slot, is installed inside the body. A currency processing component, including a self-service coin acceptor and a coin dispensing slot, is also installed inside the body. A payment component, including a coin acceptor and a QR code, is installed on the outside of the body. The dispensing component includes a groove and a flap, both installed inside the body. A protective component, including an outer plate and an inner plate, is installed on the flap. A pressure component, including a pressure plate and a piston, is installed on the flap. The plate is equipped with a sensing component, which includes a pressure sensor and a spring. A hydraulic component is mounted on the movable plate, comprising a sleeve and an inner cavity. A connecting component, including a connecting pipe and a conical opening, is mounted on the sleeve. A control component, including a sliding rod and a button, is mounted on the sliding rod, comprising a conical sleeve and an inner groove. The magnetic component includes electromagnet one and electromagnet two. Electromagnet one is bolted to the inner wall of the machine body, and electromagnet two is bolted to the certificate-making machine. A pushing component, including spring two and spring three, is mounted on electromagnet one, comprising a magnetic block and a guide rod. A lifting component, comprising an iron sheet and a copper plate, is mounted on electromagnet two.

[0008] Optionally, the processor is bolted to the inside of the machine body, one side of the touch screen is bolted to the outside of the machine body, the other side of the touch screen extends to the inside of the machine body, the camera is bolted to the top of the machine body, the camera is located at the top of the touch screen, the self-service coin acceptor is bolted to the inside of the machine body, the coin slot is installed at the top of one side of the self-service coin acceptor, the machine body has a slot, the coin slot passes through the slot and extends to the outside of the machine body, the QR code is affixed to the outside of the machine body, the QR code is located at the top of the coin slot, and both the QR code and the coin slot are located on one side of the touch screen.

[0009] Optionally, the certificate-making machine is bolted to the inner wall of the bottom of the machine body, the certificate dispensing port is installed on the top of one side of the certificate-making machine, the coin dispensing port is installed on the bottom of one side of the self-service coin-operated machine, the groove is integrally formed on one side of the machine body, the groove is located on the inner side of the machine body, the certificate dispensing port and the coin dispensing port both extend to the inner side of the groove, the camera and the touch screen are both connected to the processor via wires, and the processor is connected to the self-service coin-operated machine and the certificate-making machine via wires.

[0010] Optionally, the bottom and both sides of the flap are engaged with the inner wall of the groove, the outer plate and the inner plate are integrally formed on the top of both ends of the flap, the outer plate and the inner plate are engaged with the inner wall of both ends of the groove, the outer side of the outer plate is flush with the outer side of the machine body, the sleeve is integrally formed on the top of the flap, and the inner cavity is opened at the bottom of the inner side of the flap.

[0011] Optionally, the pressure plate is disposed on the top of the flap, the piston is integrally formed on the bottom of the pressure plate, the pressure sensor is welded to the top of the flap, the top of the pressure sensor is connected to the bottom of the pressure plate by a spring, the spring is evenly distributed on the top of the pressure sensor, the sleeve is sleeved on the outer side of the bottom of the piston, and the outer side of the pressure plate is respectively clamped on the inner side of the outer plate, the inner plate and the groove.

[0012] Optionally, the top end of the connecting pipe is welded to the bottom of the sleeve, the bottom end of the connecting pipe extends to the bottom of the inner cavity, the inner cavity is connected to the bottom of the sleeve through the connecting pipe, the conical opening is integrally formed on the inner side of the connecting pipe, the bottom end of the sliding rod is welded to the bottom of the inner cavity, the top end of the sliding rod passes through the conical opening and extends to the inner side of the top end of the connecting pipe, the inner groove is opened at the center of the conical sleeve, the conical sleeve is fitted on the outer side of the sliding rod through the inner groove, the outer side of the conical sleeve is stuck on the inner wall of the conical opening, and the outer diameter of the conical sleeve is smaller than the inner diameter of the connecting pipe.

[0013] Optionally, the button is welded to the inner wall at the bottom of the inner cavity. The button is located at the bottom of the conical sleeve. Hydraulic oil is filled on the inner side of the sleeve and the bottom of the inner cavity. The density of the conical sleeve is less than the density of the hydraulic oil. The button is connected to electromagnet two via a wire, and the pressure sensor is connected to electromagnet one via a wire.

[0014] Optionally, the electromagnet is bolted to the bottom of the groove, the electromagnet is located at the bottom of one end of the flap, and the magnetic block is bolted to the bottom of the other end of the flap.

[0015] Optionally, the magnetic block has an opening on its inner side, one end of the guide rod is welded to the outer side of the electromagnet, the other end of the guide rod extends to the inner side of the opening, the opening is fitted onto the outer side of the guide rod, and the magnetic block is connected to the electromagnet via a spring.

[0016] Optionally, the second electromagnet is bolted to one side of the certificate making machine, the bottom end of the third spring is welded to the top of the second electromagnet, the top end of the third spring is welded to the bottom of the iron sheet, the top of the iron sheet is bolted to the bottom of the copper plate, and the bottom of the copper plate is close to the bottom of the magnetic block.

[0017] The technical solution provided in this disclosure may include the following beneficial effects: When in use, personnel operate the machine via a touchscreen to process temporary ID cards. The touchscreen and camera collect facial features and fingerprints, transmitting the information to a processor. The processor verifies the accuracy of the information via an internet platform. Once verification is successful, the touchscreen displays the payment method. For cash payments, the user inserts currency into the coin slot for receiving goods, verifying authenticity, and receiving change. For QR code payments, the user scans the code on the machine with their mobile phone to access internet consumer finance or factoring services. The machine then produces the temporary ID card based on the collected information. After production, the temporary ID card is dispensed through the card dispenser to the top of a pressure plate located in a recess. Simultaneously, the machine dispenses change through the coin dispenser to the top of the pressure plate, allowing users to collect their change along with their ID card, preventing them from forgetting to retrieve it and minimizing financial loss.

[0018] In use, the temporary ID card is pressed downwards by gravity against the pressure plate. The pressure plate, through a spring, presses against a pressure sensor, which activates an electromagnet. The electromagnet, when energized, generates magnetic force, attracting a magnetic block. This magnetic block compresses the spring and moves under the limit of the guide rod, causing the magnetic block to move the movable plate outwards from the groove. This movement also causes the outer and inner plates to move outwards. The inner and outer plates prevent the temporary ID card from falling out during the movable plate's movement. The outer plate seals the groove when not in use, preventing dust from entering and thus avoiding dust affecting the smooth operation of various mechanical devices inside the machine. The movable plate delivers the temporary ID card from the inside of the machine, allowing personnel to quickly locate it without needing to insert their hands into the groove, making it easy to retrieve the temporary ID card quickly.

[0019] In use, when the temporary ID card falls to the top of the pressure plate, the pressure plate compresses the spring, causing the piston to move downward inside the sleeve. The piston pushes the hydraulic oil in the sleeve downward through the connecting pipe to the inner cavity. Simultaneously, the downward flow of hydraulic oil in the connecting pipe pushes the cone sleeve downward inside the cone opening, causing the cone sleeve to move downward outside the slide rod and press the button. Hydraulic oil flows downward between the cone sleeve and the connecting pipe, activating the second electromagnet. The second electromagnet attracts the iron plate through magnetic force. Under the action of magnetic force, the iron plate compresses the third spring, causing the copper plate to move downward, moving it away from the magnetic block. This ensures that the magnetic block can move quickly, allowing the temporary ID card to be quickly dispensed. After the person takes the temporary ID card, the first spring pushes the pressure plate upward, and the cone sleeve... Under buoyancy, the valve moves upward to the inside of the cone opening, the cone sleeve separates from the button, the second electromagnet is turned off, the third spring pushes the iron plate upward, and the iron plate moves the copper plate upward to the bottom of the magnetic block, so that the hydraulic oil can only flow through the tiny gap between the slide rod and the inner groove. Until the pressure of the spring pair of pressure sensors is reduced to a certain extent, the first electromagnet is turned off, the second spring pushes the magnetic block to the left. When the magnetic block moves at the top of the copper plate, through the action of electromagnetic induction and Lenz's law, the magnetic block can only move slowly, so as to drive the flap slowly to the inside of the groove. This avoids the flap from pinching the person's hand due to the fast movement speed, and also avoids the flap from being unable to return to the inside of the groove due to the obstruction of foreign objects, ensuring the subsequent receipt of temporary ID cards.

[0020] Additional aspects and advantages of this disclosure will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of this disclosure. Attached Figure Description

[0021] The above and / or additional aspects and advantages of this disclosure will become apparent and readily understood from the following description of the embodiments taken in conjunction with the accompanying drawings, in which: Figure 1 This is a schematic diagram of the structure of an integrated ID card acceptance service terminal according to an embodiment of this disclosure; Figure 2 This is a cross-sectional schematic diagram of an integrated ID card acceptance service terminal according to an embodiment of this disclosure; Figure 3 This is a cross-sectional view of the groove of an integrated ID card acceptance service terminal according to an embodiment of this disclosure. Figure 1 ; Figure 4 This is a cross-sectional view of the groove of an integrated ID card acceptance service terminal according to an embodiment of this disclosure. Figure 2 ; Figure 5 This is a schematic diagram of the movable plate of an integrated ID card acceptance service terminal according to an embodiment of the present disclosure; Figure 6 This is a cross-sectional schematic diagram of the flap of an integrated ID card acceptance service terminal according to an embodiment of this disclosure; Figure 7 This is a schematic diagram of the pressure plate of the integrated ID card acceptance service terminal according to an embodiment of this disclosure; Figure 8 This is a schematic diagram of the structure of the electromagnet 2 of the integrated ID card acceptance service terminal according to an embodiment of this disclosure; Figure 9 This is a schematic diagram of the conical sleeve of an integrated ID card acceptance service terminal according to an embodiment of this disclosure; Figure 10 This is a cross-sectional view of an integrated ID card acceptance service terminal according to an embodiment of this disclosure; As shown in the figure: 1. Body; 2. Processor; 3. Touch screen; 4. Camera; 5. Self-service coin acceptor; 6. Coin slot; 7. QR code; 8. Certificate issuing machine; 9. Groove; 10. Flip plate; 11. Outer plate; 12. Inner plate; 13. Coin outlet; 14. Certificate outlet; 15. Pressure plate; 16. Pressure sensor; 17. Spring 1; 18. Sleeve; 19. Piston; 20. Connecting pipe; 21. Conical opening; 22. Sliding rod; 23. Conical sleeve; 24. Inner groove; 25. Button; 26. Electromagnet 1; 27. Magnetic block; 28. Guide rod; 29. ​​Spring 2; 30. Electromagnet 2; 31. Spring 3; 32. Iron sheet; 33. Copper plate; 34. Inner cavity. Detailed Implementation

[0022] Embodiments of this disclosure are described in detail below, examples of which are illustrated in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are used only to explain this disclosure, and should not be construed as limiting this disclosure. Rather, embodiments of this disclosure include all variations, modifications, and equivalents falling within the spirit and scope of the appended claims.

[0023] like Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 10As shown in the figure, this disclosure proposes an integrated ID card acceptance service terminal, comprising: a terminal component, the terminal component including a body 1 and a processor 2; an information collection component installed on the body 1, the information collection component including a touch screen 3 and a camera 4; an ID card production component installed on the inner side of the body 1, the ID card production component including an ID card production machine 8 and an ID card dispensing port 14; a currency processing component installed on the inner side of the body 1, the currency processing component including a self-service coin acceptor 5 and a coin dispensing port 13; and a payment component installed on the outer side of the body 1, the payment component including a coin acceptor 6 and a QR code 7; and a dispensing component, the dispensing component including a groove 9 and a flap 10, the groove 9 and the flap 10 being installed on the body 1. Inside, a protective assembly is installed on the flap 10, the protective assembly including an outer plate 11 and an inner plate 12. A pressure assembly is installed on the flap 10, the pressure assembly including a pressure plate 15 and a piston 19. A sensing assembly is installed on the flap 10, the sensing assembly including a pressure sensor 16 and a spring 17. A hydraulic assembly is installed on the flap 10, the hydraulic assembly including a sleeve 18 and an inner cavity 34. A connecting assembly is installed on the sleeve 18, the connecting assembly including a connecting pipe 20 and a conical opening 21. A control assembly is installed on the flap 10, the control assembly including a sliding rod 22 and a button 25. A sliding assembly is installed on the sliding rod 22, the sliding assembly including a conical sleeve 23 and an inner groove 24.The magnetic assembly includes electromagnet 1 26 and electromagnet 2 30. Electromagnet 1 26 is bolted to the inner wall of the machine body 1, and electromagnet 2 30 is bolted to the certificate issuing machine 8. A pushing assembly is mounted on the magnetic assembly, which includes spring 2 29 and spring 30. A translation assembly is connected to electromagnet 1 26, which includes a magnetic block 27 and a guide rod 28. A lifting assembly is mounted on electromagnet 2 30, which includes an iron plate 32 and a copper plate 33. The processor 2 is bolted to the inner side of the machine body 1. One side of the touch screen 3 is bolted to the outer side of the machine body 1, and the other side of the touch screen 3 extends to the inner side of the machine body 1. The camera 4 is bolted to the top of the machine body 1, located at the top of the touch screen 3. The self-service coin acceptor 5 is bolted to... Inside the body 1, the coin slot 6 is installed on the top of one side of the self-service coin-operated machine 5. A slot is provided on the body 1, through which the coin slot 6 passes and extends to the outside of the body 1. The QR code 7 is attached to the outer side of the body 1, located on top of the coin slot 6. Both the QR code 7 and the coin slot 6 are located on one side of the touch screen 3. The certificate-making machine 8 is bolted to the inner wall of the bottom of the body 1. The certificate dispensing port 14 is installed on the top of one side of the certificate-making machine 8. The coin dispensing port 13 is installed on the bottom of one side of the self-service coin-operated machine 5. The groove 9 is integrally formed on one side of the body 1, located inside the body 1. Both the certificate dispensing port 14 and the coin dispensing port 13 extend into the inside of the groove 9. The camera 4 and the touch screen 3 are connected to the processor 2 via wires. The processor 2 is connected to the self-service coin-operated machine 5 and the certificate-making machine 8 via wires.

[0024] Understandably, during use, personnel operate the machine via touchscreen 3 to process temporary ID cards. Touchscreen 3 and camera 4 collect facial features and fingerprints, transmitting this information to processor 2. Processor 2 verifies the accuracy of the personnel's information via an internet platform. Upon successful verification, the touchscreen 3 displays the payment method. When personnel choose cash payment, they insert coins into the coin slot 6 for receiving goods, verifying authenticity, and receiving change via the self-service coin machine 5. If personnel choose QR code payment, then… The user can scan the QR code 7 on the machine body 1 with their mobile phone to collect payments through internet consumer finance and factoring service platforms. Then, the certificate issuing machine 8 will issue a temporary ID card based on the collected personal information. After the certificate is issued, the temporary ID card will be conveyed through the certificate dispensing port 14 to the top of the pressure plate 15 located in the groove 9. At the same time, the self-service coin acceptor 5 will convey the change to be given through the coin dispensing port 13 to the top of the pressure plate 15, so that the person can take the change when taking out the temporary ID card, avoiding the person forgetting to take the change and reducing the person's property loss.

[0025] like Figure 2 , Figure 4 , Figure 5 , Figure 6 and Figure 7 As shown, the bottom and both sides of the flap 10 are engaged with the inner wall of the groove 9. The outer plate 11 and the inner plate 12 are integrally formed on the top of both ends of the flap 10. The outer plate 11 and the inner plate 12 are engaged with the inner walls of both ends of the groove 9. The outer side of the outer plate 11 is flush with the outer side of the machine body 1. The sleeve 18 is integrally formed on the top of the flap 10. The inner cavity 34 is opened at the bottom of the inner side of the flap 10. The pressure plate 15 is set on the top of the flap 10. The piston 19 is integrally formed on the bottom of the pressure plate 15. The pressure sensor 16 is welded to the top of the flap 10. The top of the pressure sensor 16 is connected to the bottom of the pressure plate 15 via springs 17, which are evenly distributed on the top of the pressure sensor 16. The sleeve 18 is fitted onto the outer side of the bottom of the piston 19. The outer side of the pressure plate 15 is respectively secured to the inner sides of the outer plate 11, the inner plate 12, and the groove 9. The top end of the connecting pipe 20 is welded to the sleeve 18. At the bottom, the bottom end of the connecting pipe 20 extends to the bottom of the inner cavity 34. The inner cavity 34 is connected to the bottom of the sleeve 18 through the connecting pipe 20. The conical opening 21 is integrally formed on the inner side of the connecting pipe 20. The bottom end of the sliding rod 22 is welded to the bottom of the inner cavity 34. The top end of the sliding rod 22 passes through the conical opening 21 and extends to the inner side of the top end of the connecting pipe 20. The inner groove 24 is formed at the center of the conical sleeve 23. The conical sleeve 23 is fitted onto the outer side of the sliding rod 22 through the inner groove 24. The outer side of the conical sleeve 23 is fitted onto the inner wall of the conical opening 21. The outer diameter of the conical sleeve 23 is smaller than the inner diameter of the connecting pipe 20. The button 25 is welded to the inner wall at the bottom of the inner cavity 34. The button 25 is located at the bottom of the conical sleeve 23. The inner side of the sleeve 18 and the bottom of the inner cavity 34 are both filled with hydraulic oil. The density of the conical sleeve 23 is less than the density of the hydraulic oil. The button 25 is connected to the electromagnet 20 via a wire. The pressure sensor 16 is connected to the electromagnet 26 via a wire.

[0026] Understandably, during use, the temporary ID card is pressed downwards by gravity against the pressure plate 15. The pressure plate 15, through spring 17, presses against the pressure sensor 16. The pressure sensor 16 activates the electromagnet 26, which generates magnetic force, attracting the magnetic block 27. The magnetic block 27 compresses the spring 29 and moves under the limit of the guide rod 28, causing the magnetic block 27 to move the flap 10 outwards from the groove 9, and also moving the outer plate 11 and inner plate 12 outwards. The inner plate 12 and outer plate 11 prevent the temporary ID card from falling out when the flap 10 moves. The outer plate 11 can seal the groove 9 when not in use, preventing dust from entering and thus preventing dust from affecting the stable operation of various mechanical equipment inside the machine body 1. The flap 10 delivers the temporary ID card from the inside of the machine body 1, allowing personnel to quickly know the location of the temporary ID card without having to insert their hands into the groove 9, making it convenient for personnel to quickly remove the temporary ID card.

[0027] like Figure 1 , Figure 3 , Figure 8 , Figure 9 and Figure 10 As shown, electromagnet 26 is bolted to the bottom of groove 9. Electromagnet 26 is located at the bottom of one end of flap 10. Magnetic block 27 is bolted to the bottom of the other end of flap 10. A through-hole is provided on the inner side of magnetic block 27. One end of guide rod 28 is welded to the outer side of electromagnet 26, and the other end of guide rod 28 extends to the inner side of the through-hole. The through-hole is fitted onto the outer side of guide rod 28. Magnetic block 27 is connected to electromagnet 26 via spring 29. Electromagnet 20 is bolted to one side of certificate making machine 8. The bottom end of spring 31 is welded to the top of electromagnet 21, and the top end of spring 31 is welded to the bottom of iron sheet 32. The top of iron sheet 32 ​​is bolted to the bottom of copper plate 33, and the bottom of copper plate 33 is close to the bottom of magnetic block 27.

[0028] Understandably, during use, when the temporary ID card falls to the top of the pressure plate 15, the pressure plate 15 compresses the spring 17 and drives the piston 19 to move downward inside the sleeve 18. The piston 19 pushes the hydraulic oil in the sleeve 18 downward through the connecting pipe 20 to the inner side of the inner cavity 34. At the same time, the downward flow of hydraulic oil in the connecting pipe 20 pushes the cone sleeve 23 downward inside the cone opening 21, causing the cone sleeve 23 to move downward outside the slide rod 22 and press the button 25. Hydraulic oil flows downward between the cone sleeve 23 and the connecting pipe 20, and the button 25 turns on the electromagnet 30. The electromagnet 30 attracts the iron piece 32 through magnetic force. Under the action of magnetic force, the iron piece 32 compresses the spring 31 downward and drives the copper plate 33 downward, so that the copper plate 33 moves away from the magnetic block 27, thereby ensuring that the magnetic block 27 can move quickly so that the temporary ID card can be quickly delivered. After the person takes away the temporary ID card, the spring 17 will push the pressure plate 15 upward. The cone sleeve 23 moves upward to the inside of the cone opening 21 under its own buoyancy, the cone sleeve 23 separates from the button 25, the electromagnet 2 30 is turned off, the spring 31 pushes the iron plate 32 upward, the iron plate 32 moves the copper plate 33 upward to the bottom of the magnetic block 27, so that the hydraulic oil can only flow through the small gap between the slide rod 22 and the inner groove 24 until the pressure sensor 16 of the spring 17 is reduced to a certain extent, the electromagnet 1 26 is turned off, the spring 29 pushes the magnetic block 27 to the left. When the magnetic block 27 moves on the top of the copper plate 33, through the action of electromagnetic induction and Lenz's law, the magnetic block 27 can only move slowly, so as to drive the flap 10 to move slowly to the inside of the groove 9, so as to avoid the flap 10 moving too fast and causing the outer plate 11 to pinch the person's hand. At the same time, it can also prevent the outer plate 11 from being blocked by foreign objects, so that the flap 10 can not effectively return to the inside of the groove 9, ensuring the subsequent temporary ID card receiving work.

[0029] In the description of this disclosure, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance. Furthermore, in the description of this disclosure, unless otherwise stated, "a plurality of" means two or more.

[0030] Any process or method description in the flowchart or otherwise herein can be understood as representing a module, segment, or portion of code comprising one or more executable instructions for implementing a particular logical function or process, and the scope of preferred embodiments of this disclosure includes additional implementations in which functions may be performed not in the order shown or discussed, including substantially simultaneously or in reverse order depending on the function involved, as will be understood by those skilled in the art to which embodiments of this disclosure pertain.

[0031] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this disclosure. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.

[0032] Although embodiments of the present disclosure have been shown and described above, it is to be understood that the above embodiments are exemplary and should not be construed as limiting the present disclosure. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present disclosure.

Claims

1. An integrated terminal for ID card processing services, characterized in that, include: The terminal component includes a body (1) and a processor (2). An information collection component is installed on the body (1), which includes a touch screen (3) and a camera (4). A certificate-making component is installed on the inside of the body (1), which includes a certificate-making machine (8) and a certificate dispensing port (14). A currency processing component is installed on the inside of the body (1), which includes a self-service coin-operated machine (5) and a coin dispensing port (13). A payment component is installed on the outside of the body (1), which includes a coin-operated port (6) and a QR code (7). The delivery assembly includes a groove (9) and a flap (10), both of which are installed on the inner side of the body (1). A protective assembly is installed on the flap (10), which includes an outer plate (11) and an inner plate (12). A pressure assembly is installed on the flap (10), which includes a pressure plate (15) and a piston (19). A sensing assembly is installed on the flap (10), which includes a pressure sensor (16). And spring 1 (17), a hydraulic assembly is installed on the flap (10), the hydraulic assembly includes a sleeve (18) and an inner cavity (34), a connecting assembly is installed on the sleeve (18), the connecting assembly includes a connecting pipe (20) and a conical opening (21), a control assembly is installed on the flap (10), the control assembly includes a slide rod (22) and a button (25), a sliding assembly is installed on the slide rod (22), the sliding assembly includes a conical sleeve (23) and an inner groove (24); The magnetic assembly includes an electromagnet one (26) and an electromagnet two (30). The electromagnet one (26) is bolted to the inner wall of the machine body (1), and the electromagnet two (30) is bolted to the certificate making machine (8). A pushing assembly is installed on the magnetic assembly. The pushing assembly includes a spring two (29) and a spring three (30). A translation assembly is connected to the electromagnet one (26). The translation assembly includes a magnetic block (27) and a guide rod (28). A lifting assembly is installed on the electromagnet two (30). The lifting assembly includes an iron plate (32) and a copper plate (33).

2. The integrated terminal for ID card processing service according to claim 1, characterized in that: The processor (2) is bolted to the inside of the body (1). One side of the touch screen (3) is bolted to the outside of the body (1). The other side of the touch screen (3) extends to the inside of the body (1). The camera (4) is bolted to the top of the body (1). The camera (4) is located at the top of the touch screen (3). The self-service coin acceptor (5) is bolted to the inside of the body (1). The coin slot (6) is installed at the top of one side of the self-service coin acceptor (5). The body (1) has a slot. The coin slot (6) passes through the slot and extends to the outside of the body (1). The QR code (7) is attached to the outside of the body (1). The QR code (7) is located at the top of the coin slot (6). The QR code (7) and the coin slot (6) are both located on one side of the touch screen (3).

3. The integrated terminal for ID card processing service according to claim 2, characterized in that: The certificate making machine (8) is bolted to the inner wall of the bottom of the machine body (1). The certificate dispensing port (14) is installed on the top of one side of the certificate making machine (8). The coin dispensing port (13) is installed on the bottom of one side of the self-service coin acceptor (5). The groove (9) is integrally formed on one side of the machine body (1). The groove (9) is located inside the machine body (1). The certificate dispensing port (14) and the coin dispensing port (13) both extend to the inside of the groove (9). The camera (4) and the touch screen (3) are both connected to the processor (2) by wires. The processor (2) is connected to the self-service coin acceptor (5) and the certificate making machine (8) by wires.

4. The integrated terminal for ID card processing service according to claim 3, characterized in that: The bottom and sides of the flap (10) are both locked on the inner wall of the groove (9). The outer plate (11) and the inner plate (12) are integrally formed on the top of both ends of the flap (10). The outer plate (11) and the inner plate (12) are locked on the inner wall of both ends of the groove (9). The outer side of the outer plate (11) is flush with the outer side of the machine body (1). The sleeve (18) is integrally formed on the top of the flap (10). The inner cavity (34) is opened at the bottom of the inner side of the flap (10).

5. The integrated terminal for ID card processing service according to claim 4, characterized in that: The pressure plate (15) is set on the top of the flap (10), the piston (19) is integrally formed on the bottom of the pressure plate (15), the pressure sensor (16) is welded to the top of the flap (10), the top of the pressure sensor (16) is connected to the bottom of the pressure plate (15) through a spring (17), the spring (17) is evenly distributed on the top of the pressure sensor (16), the sleeve (18) is sleeved on the outer side of the bottom of the piston (19), and the outer side of the pressure plate (15) is respectively clamped on the inner side of the outer plate (11), the inner plate (12) and the groove (9).

6. The integrated terminal for ID card processing service according to claim 5, characterized in that: The top end of the connecting pipe (20) is welded to the bottom of the sleeve (18). The bottom end of the connecting pipe (20) extends to the bottom of the inner cavity (34). The inner cavity (34) is connected to the bottom of the sleeve (18) through the connecting pipe (20). The conical opening (21) is integrally formed on the inner side of the connecting pipe (20). The bottom end of the sliding rod (22) is welded to the bottom of the inner cavity (34). The top end of the sliding rod (22) passes through the conical opening (21) and extends to the inner side of the top end of the connecting pipe (20). The inner groove (24) is opened at the center of the conical sleeve (23). The conical sleeve (23) is fitted on the outer side of the sliding rod (22) through the inner groove (24). The outer side of the conical sleeve (23) is stuck on the inner wall of the conical opening (21). The outer diameter of the conical sleeve (23) is smaller than the inner diameter of the connecting pipe (20).

7. The integrated terminal for ID card processing service according to claim 6, characterized in that: The button (25) is welded to the inner wall at the bottom of the inner cavity (34). The button (25) is located at the bottom of the conical sleeve (23). The inner side of the sleeve (18) and the bottom of the inner cavity (34) are filled with hydraulic oil. The density of the conical sleeve (23) is less than the density of the hydraulic oil. The button (25) is connected to the second electromagnet (30) by a wire. The pressure sensor (16) is connected to the first electromagnet (26) by a wire.

8. The integrated terminal for ID card processing service according to claim 7, characterized in that: The electromagnet (26) is bolted to the bottom of the groove (9), the electromagnet (26) is located at the bottom of one end of the flap (10), and the magnet (27) is bolted to the bottom of the other end of the flap (10).

9. The integrated terminal for ID card processing service according to claim 8, characterized in that: The magnetic block (27) has an opening on its inner side. One end of the guide rod (28) is welded to the outer side of the electromagnet (26). The other end of the guide rod (28) extends to the inner side of the opening. The opening is fitted on the outer side of the guide rod (28). The magnetic block (27) is connected to the electromagnet (26) through the spring (29).

10. The integrated terminal for ID card processing service according to claim 9, characterized in that: The second electromagnet (30) is bolted to one side of the certificate making machine (8). The bottom end of the third spring (31) is welded to the top of the second electromagnet (31). The top end of the third spring (31) is welded to the bottom of the iron sheet (32). The top of the iron sheet (32) is bolted to the bottom of the copper plate (33). The bottom of the copper plate (33) is close to the bottom of the magnetic block (27).

Citation Information

Patent Citations

  • Integrated temporary identity card automatic making machine

    CN113436396A

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    CN120766401A