Fusion type attendance check-in terminal

By designing an integrated attendance check-in terminal with a hanging bracket, liquid storage tank, and cotton block structure, the problems of recognition accuracy, hygiene and safety, and installation flexibility of traditional equipment have been solved, achieving efficient, stable, and convenient attendance management.

CN121725528APending Publication Date: 2026-03-24HUAINAN NORMAL UNIV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-25
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Traditional time and attendance devices suffer from limitations in recognition accuracy, hygiene and safety hazards, insufficient installation flexibility, and limited functionality. They are particularly difficult to balance efficient recognition, hygiene protection, and flexible installation in public places or during pandemics.

Method used

An integrated attendance check-in terminal was designed, which adopts a hanging bracket liquid storage tank and cotton block structure, combines multiple biometric identification technologies, and is fixed with double-sided tape and screws to achieve stable installation. It supports online/offline dual mode and automated report generation.

Benefits of technology

It improves the accuracy and hygiene of biometric identification, ensures the stability and flexibility of installation, and enhances management efficiency and the convenience of data synchronization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of sign-in terminals, in particular to a fusion type attendance sign-in terminal which comprises a fusion type sign-in terminal body, the two sides of the fusion type sign-in terminal body are each sleeved with a buckle plate, the buckle plates are installed on a wall surface, a hanging frame is hung on the surfaces of the buckle plates, a liquid storage groove is formed in the hanging frame, and a reserved groove is formed in the surface of the hanging frame; a cotton block is inserted into the reserved groove, a cotton core is fixed to the bottom of the cotton block, and the bottom end of the cotton core is soaked in clear water or alcohol contained in the liquid storage groove. The system has the beneficial effects that through structural innovation and function integration, the problems of traditional attendance checking equipment in the aspects of recognition accuracy, sanitation and safety, installation flexibility and management efficiency are solved, and the system has remarkable market application value and social benefits; through the clear water storage tank and the cotton block of the suspension bracket, the user can quickly wet and dry the fingers, and fingerprint identification failure caused by the skin state is avoided; the buckle plate is preliminarily bonded with the terminal through the double faced adhesive tape in the embedded groove and then is reinforced through the screws, and the installation stability is ensured.
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Description

Technical Field

[0001] The present invention relates to the technical field of sign-in terminals, specifically a combined attendance sign-in terminal. Background Art

[0002] With the increasing demand for intelligent management, attendance sign-in devices are increasingly widely used in scenarios such as enterprises, schools, and conferences. Traditional attendance devices mostly rely on single biometric technologies (such as fingerprint or face recognition), but there are the following problems in actual use: Limited recognition accuracy: Dry, stained or peeling fingers may cause fingerprint recognition failure, requiring repeated operations or manual intervention, reducing efficiency. Hygiene and safety hazards: High-frequency contact of multiple people with the same recognition area is likely to cause cross-infection, especially in public places or during the epidemic, and there is a lack of real-time disinfection function. Insufficient installation flexibility: Traditional devices are mostly installed through fixed brackets or drilling, making it difficult to adapt to different wall materials (such as tiles, glass), and the disassembly and maintenance costs are high. Functional singularity: Most devices only support the online mode, with data synchronization delay in offline scenarios, and lack management functions such as automatic report generation.

[0003] In the prior art, although there are attendance terminals integrating multiple recognition methods, they do not solve the influence of finger status on recognition and hygiene problems, and the installation structure is complex, making it difficult to balance stability and convenience. Therefore, there is an urgent need for a combined attendance sign-in terminal with high-efficiency recognition, hygiene protection, and flexible installation. Summary of the Invention

[0004] The purpose of the present invention is to provide a combined attendance sign-in terminal to solve the problems raised in the above background art.

[0005] To achieve the above purpose, the present invention provides the following technical solution: A combined attendance sign-in terminal, including a combined sign-in terminal. Both sides of the combined sign-in terminal are sleeved with buckle plates, the buckle plates are installed on the wall, a hanging rack is suspended on the surface of the buckle plate, a liquid storage tank is opened inside the hanging rack, a reserved slot is opened on the surface of the hanging rack, a cotton block is inserted into the reserved slot, a cotton core is fixed at the bottom of the cotton block, and the bottom end of the cotton core is immersed in the clear water or alcohol contained in the liquid storage tank.

[0006] Preferably, the buckle plate has a "匚"-shaped plate structure. An embedding groove is opened on one side plate of the buckle plate, a double-sided adhesive is fixed inside the embedding groove, the double-sided adhesive is bonded to the surface of the combined sign-in terminal, and a screw is screwed on the surface of the buckle plate. The screw penetrates through the buckle plate and is screwed on the surface of the combined sign-in terminal.

[0007] Preferably, an installation plate is integrally formed on the other side plate of the buckle plate. A reserved hole is opened on the surface of the installation plate, and rubber gaskets are fixed on the other side plate of the installation plate and the buckle plate.

[0008] Preferably, the suspension bracket is a "convex"-shaped block. Elastic hanging plates are fixed to both the top surface and the bottom surface of the suspension bracket. The elastic hanging plates are "L"-shaped strips. One end of each elastic hanging plate is inserted into a notch formed on the surface of the buckle plate. The width of the notch is equal to the width of the elastic hanging plate. A pull ring is fixed to one end of each elastic hanging plate.

[0009] Preferably, the reserved groove is an "L"-shaped groove. A through hole connecting to the liquid storage tank is formed on the bottom surface of the reserved groove. The thickness of the cotton block is less than the height of the bottom groove body of the reserved groove.

[0010] Preferably, a liquid injection port is formed on the surface of the suspension bracket. A sealing head is inserted into the liquid injection port. The liquid injection port is a "convex"-shaped circular hole. The sealing head is a "convex"-shaped circular block. External threads are provided on the surface of the sealing head, and internal threads are provided on the surface of the liquid injection port. After the sealing head is inserted into the liquid injection port, the internal threads and the external threads are engaged and connected.

[0011] Preferably, a rubber sealing sheet is fixed to the surface of the suspension bracket. The rubber sealing sheet covers the reserved groove. A rubber clamping strip is integrally formed at the top end of the rubber sealing sheet. The rubber clamping strip is inserted into a clamping groove formed on the surface of the suspension bracket. The clamping groove is a groove body with a circular notch at the break. The rubber clamping strip is a circular strip. The diameter of the circular surface of the rubber clamping strip is greater than the height of the groove opening of the clamping groove.

[0012] Compared with the prior art, the beneficial effects of the present invention are as follows: The integrated attendance check-in terminal proposed by the present invention, through structural innovation and function integration, solves the pain points of traditional attendance devices in terms of recognition accuracy, hygiene and safety, installation flexibility, and management efficiency, and has significant market application value and social benefits; through the clean water storage tank and cotton block of the suspension bracket, users can quickly moisten their dry fingers to avoid fingerprint recognition failure caused by skin conditions; the buckle plate initially bonds the terminal through the double-sided adhesive in the embedding groove and is then reinforced with screws to ensure installation stability and avoid the risk of terminal detachment. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 is a schematic structural diagram of the present invention; Figure 2 is a schematic structural diagram of the connection between the buckle plate and the suspension bracket of the present invention; Figure 3 is Figure 2 a sectional view of the structure at A-A in Figure 4 is Figure 2 a sectional view of the structure at B-B in Figure 5 is a schematic structural diagram of the buckle plate of the present invention; Figure 6 is a schematic structural diagram of the suspension bracket of the present invention.

[0014] In the figure: integrated attendance check-in terminal 1, buckle plate 2, mounting plate 201, reserved hole 202, rubber gasket 203, embedded groove 204, double-sided adhesive 205, screw 206, notch 207, suspension bracket 3, liquid storage tank 301, reserved groove 302, through port 303, liquid injection port 304, card slot 305, cotton block 4, cotton core 401, end cap 5, rubber sealing piece 6, rubber clamping strip 601, elastic hanging plate 7, pull ring 701. Detailed implementation manners

[0015] In order to clearly and completely describe the purpose, technical solution of the present invention, and make the advantages more clear, the following further details the embodiments of the present invention with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are some embodiments of the present invention, rather than all embodiments, and are only used to explain the embodiments of the present invention, and are not used to limit the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the scope of protection of the present invention.

[0016] Please refer to Figures 1 to 6 , the present invention provides a technical solution: an integrated attendance check-in terminal, including an integrated attendance check-in terminal 1. Both sides of the integrated attendance check-in terminal 1 are sleeved with buckle plates 2. The buckle plates 2 are installed on the wall. The buckle plates 2 are in a "U"-shaped plate structure. An embedded groove 204 is opened on one side plate of the buckle plate 2. A double-sided adhesive 205 is fixed inside the embedded groove 204. The double-sided adhesive 205 is bonded to the surface of the integrated attendance check-in terminal 1. A screw 206 is screwed on the surface of the buckle plate 2. The screw 206 penetrates through the buckle plate 2 and is screwed on the surface of the integrated attendance check-in terminal 1; an installation plate 201 is integrally formed on the other side plate of the buckle plate 2. A reserved hole 202 is opened on the surface of the installation plate 201. And a rubber gasket 203 is fixed on the other side plate of the installation plate 201 and the buckle plate 2.

[0017] The integrated check-in terminal 1 is an intelligent device that integrates multiple biometric technologies and mobile attendance functions. It can achieve efficient check-in through face recognition, fingerprint, QR code, RFID, GPS / Wi-Fi positioning, etc., and supports functions such as online / offline dual modes, real-time data synchronization, and automatic report generation. It is applicable to scenarios such as enterprises, schools, and conferences, and can significantly improve management efficiency and data security; The surface of the double-sided adhesive 205 is pre-bonded with release paper. When installing the mounting buckle 2, the release paper is removed from the surface of the double-sided adhesive 205, and then the two buckles 2 are respectively buckled on both sides of the integrated check-in terminal 1. At this time, the double-sided adhesive 205 is bonded to the surface of the integrated check-in terminal 1 to prevent the buckle 2 from falling off the integrated check-in terminal 1. Subsequently, a screw 206 is passed through the buckle 2 and then screwed to the surface of the integrated check-in terminal 1, so as to reinforce the connection of the buckle 2 on the integrated check-in terminal 1; Lean the integrated check-in terminal 1 equipped with two buckles 2 against the wall, drill through the reserved hole 202 with an electric drill to make a hole in the wall, and insert a bolt or expansion tube through the reserved hole 202 and then into the hole in the wall to fix the mounting plate 201 on the wall.

[0018] In order to moisten and disinfect dry fingers, the following is proposed: A suspension bracket 3 is hung on the surface of the buckle 2. A liquid storage tank 301 is opened inside the suspension bracket 3, and a reserved groove 302 is opened on the surface of the suspension bracket 3. A cotton block 4 is inserted into the reserved groove 302. A cotton core 401 is fixed at the bottom of the cotton block 4, and the bottom end of the cotton core 401 is immersed in the clear water or alcohol contained in the liquid storage tank 301; The suspension bracket 3 is a "convex" shaped block, and elastic hanging plates 7 are fixed on both the top surface and the bottom surface of the suspension bracket 3. The elastic hanging plate 7 is an "L" shaped strip, and one end of the elastic hanging plate 7 is inserted into a notch 207 opened on the surface of the buckle 2. The width of the notch 207 is equal to the width of the elastic hanging plate 7, and a pull ring 701 is fixed at one end of the elastic hanging plate 7; The reserved groove 302 is an "L" shaped groove, and a through hole 303 connecting the liquid storage tank 301 is opened on the bottom surface of the reserved groove 302. The thickness of the cotton block 4 is less than the height of the bottom groove body of the reserved groove 302.

[0019] Alcohol and clear water are respectively added to the liquid storage tanks 301 inside the two suspension brackets 3. The liquid inside the liquid storage tank 301 is transferred to the cotton block 4 through the cotton core 401. A user with dry fingers presses the fingers on the cotton block 4, and the clear water adsorbed by the cotton block 4 is dipped on the fingers. The two fingers are rubbed against each other to moisten the fingers. The moistened fingers can avoid recognition failure when opened; After punching the card, press the cotton block 4 on the top of the suspension bracket 3 filled with alcohol with the fingers. After the alcohol adheres to the fingers, the two fingers are rubbed against each other to disinfect the fingers. The suspension bracket 3 is hung on the buckle 2 through the elastic hanging plate 7. After pinching the pull ring 701 to tension the end of the elastic hanging plate 7 and pulling it out of the notch 207, the connection between the suspension bracket 3 and the buckle 2 is revoked, and the suspension bracket 3 can be removed from the buckle 2.

[0020] In order to achieve the replenishment of liquid to the liquid storage tank 301, the following is proposed: A liquid injection port 304 is provided on the surface of the suspension bracket 3. A sealing head 5 is inserted into the interior of the liquid injection port 304. The liquid injection port 304 is a "convex"-shaped circular port, and the sealing head 5 is a "convex"-shaped circular block. External threads are provided on the surface of the sealing head 5, and internal threads are provided on the surface of the liquid injection port 304. After the sealing head 5 is inserted into the liquid injection port 304, the internal threads and the external threads are in mating connection; a rubber sealing piece 6 is fixed on the surface of the suspension bracket 3. The rubber sealing piece 6 covers the reserved groove 302. A rubber clamping strip 601 is integrally formed at the top end of the rubber sealing piece 6. The rubber clamping strip 601 is inserted into a clamping groove 305 provided on the surface of the suspension bracket 3. The clamping groove 305 is a groove body with a circular port at the break, and the rubber clamping strip 601 is a circular strip. The diameter of the circular surface of the rubber clamping strip 601 is greater than the height of the groove opening of the clamping groove 305.

[0021] When liquid replenishment is required, after the sealing head 5 is unscrewed and removed from the liquid injection port 304, a syringe is used to inject the required liquid into the liquid storage tank 301, and the sealing head 5 is screwed back to seal the liquid injection port 304; when the integrated attendance check-in terminal 1 is idle, the rubber sealing piece 6 is turned up to cover the reserved groove 302, and the rubber clamping strip 601 is pushed to insert into the clamping groove 305. At this time, the rubber sealing piece 6 seals the reserved groove 302, reducing the evaporation of liquid from the reserved groove 302 to the outside.

[0022] Usage method of the integrated attendance check-in terminal: Tear off the release paper from the surface of the double-sided adhesive 205, and buckle two buckle plates 2 on both sides of the integrated attendance check-in terminal 1 respectively, so that the double-sided adhesive 205 adheres to the surface of the terminal to prevent the buckle plate 2 from falling off. A screw 206 passes through the side plate of the buckle plate 2 and is screwed on the surface of the integrated attendance check-in terminal 1 to strengthen the connection between the buckle plate 2 and the terminal. Lean the integrated attendance check-in terminal 1 assembled with the buckle plate 2 against the wall surface, and use an electric drill to drill a hole in the wall surface through the reserved hole 202. Insert a bolt or an expansion tube through the reserved hole 202 and into the hole in the wall surface to fix the mounting plate 201. The rubber gasket 203 can buffer vibrations and prevent the mounting plate 201 from directly contacting the wall surface. Align the elastic hanging plates 7 on the top and bottom surfaces of the suspension bracket 3 with the notch 207 on the surface of the buckle plate 2, and press the elastic hanging plates 7 to insert them into the notch 207 to complete the fixation of the suspension bracket 3. If disassembly is required, pinch the pull ring 701 to tension the end of the elastic hanging plate 7 and pull it out of the notch 207 to remove the suspension bracket 3. Unscrew and remove the sealing head 5, use a syringe to inject water or alcohol into the liquid storage tank 301 through the liquid injection port 304, screw the sealing head 5 back and tighten it, and seal the liquid injection port 304 through the mating of the internal and external threads. Ensure that the bottom end of the cotton wick 401 is completely immersed in the liquid in the liquid storage tank 301, and the liquid is transferred to the cotton block 4 through the cotton wick 401.

[0023] Press your dry fingers onto the cotton pad 4 at the top of the hanging bracket 3, which contains clean water. The water absorbed by the cotton pad 4 will adhere to the surface of your fingers. Rub your two fingers together to evenly moisten the surface of your fingers and prevent fingerprint recognition failure due to dryness. After swiping your card, press your fingers onto the cotton pad 4 at the top of the hanging bracket 3, which contains alcohol. The alcohol will adhere to the surface of your fingers. Rub your two fingers together to disinfect your fingers.

[0024] When the integrated check-in terminal 1 is idle, the rubber sealing strip 6 is flipped up to cover the reserved groove 302, and the rubber card strip 601 is pushed into the card slot 305. The rubber sealing strip 6 seals the reserved groove 302 to reduce liquid evaporation. The liquid level in the liquid storage tank 301 is checked periodically. If replenishment is needed, the "liquid filling and sealing" steps are repeated.

[0025] Through the above steps, the integrated attendance terminal can achieve efficient installation, stable operation, and convenient maintenance, while meeting the requirements for finger moisture and disinfection, thus improving the accuracy and hygiene of biometric attendance.

[0026] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A converged attendance check-in terminal, comprising a converged check-in terminal (1), characterized in that: Both sides of the integrated signing terminal (1) are sleeved with buckle plates (2). The buckle plates (2) are installed on the wall surface. A suspension bracket (3) is hung on the surface of the buckle plate (2). A liquid storage tank (301) is provided inside the suspension bracket (3). A reserved groove (302) is provided on the surface of the suspension bracket (3). A cotton block (4) is inserted into the reserved groove (302). A cotton core (401) is fixed to the bottom of the cotton block (4). The bottom end of the cotton core (401) is immersed in the clear water or alcohol contained in the liquid storage tank (301).

2. The integrated attendance check-in terminal according to claim 1, characterized in that: The buckle plate (2) has a "C"-shaped plate structure. An embedding groove (204) is provided on one side plate of the buckle plate (2). A double-sided adhesive (205) is fixed inside the embedding groove (204). The double-sided adhesive (205) is bonded to the surface of the integrated signing terminal (1). A screw (206) is screwed on the surface of the buckle plate (2). The screw (206) penetrates through the buckle plate (2) and is screwed on the surface of the integrated signing terminal (1).

3. The integrated attendance check-in terminal according to claim 2, characterized in that: An installation plate (201) is integrally formed on the other side plate of the buckle plate (2). A reserved hole (202) is provided on the surface of the installation plate (201). And a rubber gasket (203) is fixed on the other side plate of the installation plate (201) and the buckle plate (2).

4. The integrated attendance check-in terminal according to claim 1, characterized in that: The suspension bracket (3) has a "convex"-shaped block. Elastic hanging plates (7) are fixed on both the top surface and the bottom surface of the suspension bracket (3). The elastic hanging plate (7) has an "L"-shaped strip. One end of the elastic hanging plate (7) is inserted into a notch (207) provided on the surface of the buckle plate (2). The width of the notch (207) is equal to the width of the elastic hanging plate (7). A pull ring (701) is fixed at one end of the elastic hanging plate (7).

5. The integrated attendance check-in terminal according to claim 1, characterized in that: The reserved groove (302) has an "L"-shaped groove. A through hole (303) connecting the liquid storage tank (301) is provided on the bottom surface of the reserved groove (302). The thickness of the cotton block (4) is less than the height of the bottom groove body of the reserved groove (302).

6. The integrated attendance check-in terminal according to claim 1, characterized in that: A liquid injection port (304) is provided on the surface of the suspension bracket (3). A sealing head (5) is inserted into the liquid injection port (304). The liquid injection port (304) has a "convex"-shaped round hole. The sealing head (5) has a "convex"-shaped round block. External threads are provided on the surface of the sealing head (5). Internal threads are provided on the surface of the liquid injection port (304). After the sealing head (5) is inserted into the liquid injection port (304), the internal threads and the external threads are in threaded connection.

7. The integrated attendance check-in terminal according to claim 1, characterized in that: A rubber sealing piece (6) is fixed on the surface of the suspension bracket (3). The rubber sealing piece (6) covers the reserved groove (302). A rubber clamping strip (601) is integrally formed at the top end of the rubber sealing piece (6). The rubber clamping strip (601) is inserted into a clamping groove (305) provided on the surface of the suspension bracket (3). The clamping groove (305) has a groove body with a circular port at the break. The rubber clamping strip (601) has a circular strip. The diameter of the circular surface of the rubber clamping strip (601) is greater than the height of the groove opening of the clamping groove (305).