Modular intelligent desktop cabinet
Patent Information
- Application Number
- CN202522411904.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-13
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-11-13
AI Technical Summary
使用时,寻找起来费时费力,印章管理效率低下;且可能出现混淆、丢失等现象,更严重的,可能出现盗用印章,违规用章等情况,从而对用章单位造成重大损失
[0006]本申请通过设置桌面柜控制板与印控台连接,再通过桌面柜控制板对抽屉模块进行连接,能够对桌面柜中的印章进行统一管理,快速准确地取用印章,且能保证印章存放的安全性,提高了印章使用效率,节约了人力成本,同时能够实现印章管理的标准化和可追溯化。
Smart Images

Figure CN224791924U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of intelligent IoT stamp cabinet technology, specifically relating to a modular intelligent desktop cabinet. Background Technology
[0002] A seal control station is a device for managing and controlling seals. Typically, after a user's application for seal use is approved, they first verify their legal identity at the station, then retrieve the appropriate seal (or place it into an automatic stamping device) for stamping. During automatic stamping, the station uses a camera to track the device, verifying the identity of the document being stamped and supervising the seal usage until the process is complete. The seal control station utilizes IoT technology for remote authorization and management of seals, achieving intelligent seal usage, saving labor costs, and improving risk control capabilities.
[0003] When there are many seals, they are usually placed in a seal cabinet and managed by a designated person. However, this process is time-consuming and laborious to find, resulting in low seal management efficiency. Furthermore, issues such as confusion and loss can occur, and more seriously, seal theft and unauthorized use can lead to significant losses for the unit using the seals. Relying on manual seal management cannot guarantee compliant, secure, and efficient seal use. Utility Model Content
[0004] To address the aforementioned technical problems, this utility model provides a modular intelligent desktop cabinet that can work in conjunction with a seal control station to centrally manage a large number of seals, enabling quick and accurate retrieval of seals while ensuring the security of seal storage. This improves seal usage efficiency, saves labor costs, and simultaneously achieves standardization and traceability in seal management.
[0005] To achieve the above technical objectives, the technical solution adopted by this utility model is as follows: the modular intelligent desktop cabinet is connected to the printing console, and includes: Desktop cabinet outer frame; At least one drawer module, said drawer module being detachably connected to the outer frame of the desktop cabinet; A desktop cabinet control panel is mounted on the outer frame of the desktop cabinet or the drawer module. The desktop cabinet control panel is electrically connected to the drawer module and, under the action of the printing control console, enables the corresponding stamp in the drawer module to be removed or retracted.
[0006] This application connects the desktop cabinet control panel to the seal control station, and then connects the drawer module through the desktop cabinet control panel. This enables unified management of the seals in the desktop cabinet, quick and accurate retrieval of seals, and ensures the security of seal storage. It improves the efficiency of seal use, saves labor costs, and achieves standardization and traceability of seal management.
[0007] Furthermore, the drawer module includes a stamp storage section and an RFID antenna disposed above the stamp storage section. The RFID antenna is used to read the RFID tag of the stamp in the stamp storage section. The RFID antenna and the stamp storage section are capable of relative movement. An RFID reader / writer electrically connected to the RFID antenna is also provided inside the desktop cabinet. The desktop cabinet control board is electrically connected to the RFID reader / writer and is used to identify stamp information.
[0008] The desktop cabinet control board is electrically connected to the RFID reader, which in turn is electrically connected to the RFID antenna. The RFID antenna then reads the information from the RFID tag on the seal, enabling the desktop cabinet control board to identify the seal's identity and status. Furthermore, the relative movement between the RFID antenna and the seal storage unit allows for the efficient and accurate retrieval of the required seal.
[0009] Furthermore, the drawer module includes a drawer bottom plate and a stamp box disposed on the drawer bottom plate for storing stamps, the drawer bottom plate and the stamp box constituting the stamp storage part; the stamp box is covered by an antenna box, and the stamp box is slidably connected to the antenna box, the RFID antenna is disposed in the antenna box and located above the stamp box.
[0010] The stamp box and antenna box provide protection for the stamp box and RFID antenna, respectively.
[0011] Furthermore, the RFID antenna is an RFID antenna matrix, and an antenna cover plate is connected below the RFID antenna matrix.
[0012] The RFID antenna matrix can provide dense and accurate reading of the RFID tag information of the seal, preventing missed readings, thereby ensuring that the seal can be found quickly and accurately, and improving the efficiency of seal use; the antenna cover plate protects and supports the RFID antenna.
[0013] Furthermore, the two sides and the rear side of the drawer bottom plate extend upward to form a drawer side plate and a drawer back plate, respectively, and the drawer side plate is slidably connected to the antenna box; the drawer back plate is provided with a door-opening device and a drawer lock hook, which penetrate the rear side of the antenna box; behind the antenna box and inside the outer frame of the desktop cabinet, a drawer electronic lock is provided corresponding to the drawer lock hook and cooperates with the drawer lock hook.
[0014] Automatic ejection of the seal can be achieved by setting a top door latch, drawer lock hook, and electronic drawer lock.
[0015] Furthermore, the drawer side panel is connected to the antenna box via a slide rail assembly.
[0016] Furthermore, the drawer module also includes a drawer door, which is perpendicularly connected to the drawer bottom plate and located in front of the stamp box. The edge of the drawer door is provided with metal tape, which is used to prevent electromagnetic leakage when the radio frequency antenna is working.
[0017] The drawer door, drawer bottom, drawer side panels, drawer back panel, and antenna box form a closed space. The metal tape on the drawer door further enhances the electromagnetic shielding of the drawer module, preventing electromagnetic wave leakage during radio frequency identification. This allows for more accurate and efficient identification of seal information and improves the efficiency of seal usage.
[0018] Furthermore, the stamp box includes several stamp compartments, each compartment comprising a cover plate and a body. The cover plate is connected to the body via an elastic element. The body is equipped with an electronic lock, and the cover plate has a locking hook. The locking hook and the electronic lock work together to unlock and lock, opening and closing the cover plate.
[0019] The combination of the seal compartment locking hook and the seal compartment electric lock, along with the elastic element, makes the seal compartment cover plate open faster and more convenient, improving the efficiency of seal use.
[0020] Furthermore, the stamp grid cover plate is connected to the stamp grid body via a micro probe disposed on the stamp grid body.
[0021] The micro probe acts as the pivot for opening and closing the stamp cover.
[0022] Furthermore, the drawer module is provided with a drawer main board, and the drawer main board is provided with an ID encoder corresponding to each of the stamp compartments.
[0023] By setting an ID encoder corresponding to each stamp compartment on the main board of each drawer module, the required stamp can be found more accurately and quickly in conjunction with the desktop cabinet control board.
[0024] Furthermore, antenna box limiting plates are provided on both sides inside the outer frame of the desktop cabinet, and the antenna box limiting plates are used to snap the antenna box in place.
[0025] Furthermore, an emergency door lock device is provided on the bottom plate of the drawer, and an emergency lock for the stamp box is provided on the stamp box in conjunction with the emergency door lock device.
[0026] The emergency door lock device allows the seal to be retrieved in the event of a power outage, facilitating the use and safe management of the seal. Attached Figure Description
[0027] The following is a detailed description of the embodiments of this utility model in conjunction with the accompanying drawings: Figure 1 This is a schematic diagram of the overall structure of the modular intelligent desktop cabinet of this application. Figure 1 ; Figure 2 This is a schematic diagram of the overall structure of the modular intelligent desktop cabinet of this application. Figure 2 ; Figure 3 This is a structural diagram of the modular intelligent desktop cabinet of this application with the back door removed from the desktop cabinet frame; Figure 4 This is a structural diagram of the modular intelligent desktop cabinet of this application, without the outer frame and back panel of the desktop cabinet. Figure 5 This is a structural schematic diagram of a single drawer module of the modular intelligent desktop cabinet of this application; Figure 6 This is a schematic diagram of the drawer module of this application without the antenna box and drawer door. Figure 1 ; Figure 7 This is a schematic diagram of the drawer module of this application without the antenna box and drawer door. Figure 2 ; Figure 8 yes Figure 7 A schematic diagram of the middle drawer module without the RFID antenna; Figure 9 This is a structural diagram of the drawer module of this application equipped with an emergency door lock device; Figure 10 This is a structural schematic diagram of the seal box used in this application; Figure 11 This is a schematic diagram of the assembly structure of the seal box and the emergency door lock device in this application; Figure 12 This is a structural diagram of the seal compartment (excluding the seal compartment cover) in this application; The components are as follows: 1-Desktop cabinet outer frame; 2-Drawer module; 201-Antenna box; 2011-RFID antenna; 2012-Antenna cover plate; 2013-Antenna box slide rail mounting plate; 202-Stamp box; 2021-Stamp compartment; 20211-Stamp compartment body; 20212-Stamp compartment cover plate; 20213-Stamp compartment lock hook; 20214-Stamp compartment electric lock; 20215-Miniature probe; 203-Slide rail assembly; 204-Drawer bottom plate; 205-Drawer side panel; 2051-Drawer side panel slide rail mounting plate; 206-Drawer back panel; 2061-Door lifter; 2062 - Drawer lock hook; 207- Drawer electronic lock; 208- Emergency door lock device; 209- Stamp box emergency lock; 210- Drawer mainboard; 211- Drawer mainboard cover; 212- Drawer door; 3- Desktop cabinet outer frame rear door; 4- Rear door emergency lock; 5- Desktop cabinet outer frame bottom plate; 6- External power port; 7- Socket port; 8- Network interface; 9- Fuma wheel; 10- Back panel; 101- Desktop cabinet mainboard; 102- RFID reader; 103- Power supply; 104- Residual current device; 11- Desktop cabinet control board; 12- Antenna box limit plate; 13- Shelf; 14- Desktop cabinet control board connection port. Detailed Implementation
[0028] To enhance understanding of this utility model, it will be described in further detail below with reference to the accompanying drawings and embodiments. These embodiments are only used to explain this utility model and do not limit the scope of protection of this utility model.
[0029] like Figure 1-12 As shown, the modular intelligent desktop cabinet provided in this embodiment is connected to the printing control console and includes: a desktop cabinet outer frame 1; at least one drawer module 2, the drawer module 2 being detachably connected to the desktop cabinet outer frame 1; and a desktop cabinet control board 11, the desktop cabinet control board 11 being disposed on the desktop cabinet outer frame 1 or the drawer module 2, the desktop cabinet control board 11 being electrically connected to the drawer module 2, and enabling the corresponding stamp in the drawer module 2 to be taken out or retracted under the action of the printing control console.
[0030] By connecting the desktop cabinet control board 11 to the seal control console and then connecting the drawer module 2 through the desktop cabinet control board 11, the seals in the desktop cabinet can be managed uniformly, the seals can be retrieved quickly and accurately, the security of the seals can be guaranteed, the efficiency of seal use can be improved, the labor cost can be saved, and the standardization and traceability of seal management can be achieved.
[0031] The modular intelligent desktop cabinet of this application is also provided with a fuma wheel 9 at the bottom; the number of drawer modules 2 can be adjusted according to the needs of the amount of seals to be stored, making the desktop cabinet more flexible in use; the drawer modules 2 are isolated from each other by the shelf 13.
[0032] The upper back of the desktop cabinet frame 1 is provided with a desktop cabinet control board connection port 14, which can be connected to the desktop cabinet control board 11. In this embodiment, the desktop cabinet control board 11 is located inside the desktop cabinet frame 1 and connected to the desktop cabinet frame 1. The middle part of the back of the desktop cabinet frame 1 is provided as the desktop cabinet frame rear door 3. The desktop cabinet frame rear door 3 is provided with a rear door emergency lock 4. The rear door emergency lock 4 can be opened in an emergency by a key. The lower back of the desktop cabinet frame 1 is provided as the desktop cabinet frame bottom plate 5, which is provided with an external power port 6, a socket port 7 and a network interface 8.
[0033] The drawer module 2 includes a stamp storage section and an RFID antenna 2011 disposed above the stamp storage section. The RFID antenna 2011 is used to read the RFID tags of the stamps in the stamp storage section. The RFID antenna 2011 and the stamp storage section are capable of relative movement. An RFID reader 102 electrically connected to the RFID antenna 2011 is also disposed inside the desktop cabinet. The desktop cabinet control board 11 is electrically connected to the RFID reader 102 and is used to identify stamp information.
[0034] The drawer module 2 includes a drawer bottom plate 204 and a stamp box 202 for storing stamps disposed on the drawer bottom plate 204. The drawer bottom plate 204 and the stamp box 202 constitute the stamp storage part. An antenna box 201 is provided on the outside of the stamp box 202, and the stamp box 202 is slidably connected to the antenna box 201. The RFID antenna 2011 is disposed in the antenna box 201 and located above the stamp box 202.
[0035] The RFID antenna 2011 is an RFID antenna 2011 matrix, and an antenna cover plate 2012 is connected below the RFID antenna 2011 matrix.
[0036] The drawer bottom plate 204 extends upward on both sides and the rear side to form a drawer side plate 205 and a drawer back plate 206, respectively. The drawer side plate 205 is slidably connected to the antenna box 201. The drawer back plate 206 is provided with a door jack 2061 and a drawer lock hook 2062, which penetrate the rear side of the antenna box 201. Behind the antenna box 201 and inside the outer frame 1 of the desktop cabinet, a drawer electronic lock 207 is provided corresponding to the drawer lock hook 2062 and cooperating with the drawer lock hook 2062.
[0037] The door release mechanism 2061 is a spring. By setting the door release mechanism 2061, drawer lock hook 2062, and drawer electronic lock 207, the seal can be automatically ejected.
[0038] Open the back door 3 of the desktop cabinet frame. A back panel 10 is provided behind the antenna box 201. The drawer electronic lock 207 is provided on the back panel 10. The back panel 10 is also provided with the desktop cabinet main board 101, RFID reader 102, power supply 103 and leakage current protection device 104, etc. In this embodiment, the power supply 103 is a 12V power supply.
[0039] The drawer side panel 205 is connected to the antenna box 201 via a slide rail assembly 203. In this embodiment, antenna box slide rail mounting plates 2013 are provided on both sides inside the antenna box 201, and drawer side panel slide rail mounting plates 2051 are provided on the outer side of the drawer side panel 205. A three-section slide rail is installed between the two to facilitate the ejection of the stamp box 202 for stamp retrieval. In other embodiments, the sliding connection can also be achieved through the cooperation of a slide rail and a slider.
[0040] The drawer module 2 also includes a drawer door 212, which is vertically connected to the drawer bottom plate 204 and located in front of the stamp box 202. The edge of the drawer door 212 is provided with metal tape, which is used to prevent electromagnetic leakage when the radio frequency antenna is working.
[0041] The stamp box 202 includes several stamp compartments 2021. Each stamp compartment 2021 includes a stamp compartment cover plate 20212 and a stamp compartment body 20211. The stamp compartment cover plate 20212 is connected to the stamp compartment body 20211 through an elastic element disposed on the stamp compartment body 20211. The stamp compartment body 20211 is provided with a stamp compartment electric lock 20214, and the stamp compartment cover plate 20212 is provided with a stamp compartment locking hook 20213. The stamp compartment locking hook 20213 and the stamp compartment electric lock 20214 cooperate to unlock and lock, so that the stamp compartment cover plate 20212 opens and closes.
[0042] The combination of the seal compartment hook 20213 and the seal compartment electric lock 20214, along with the elastic element, makes the seal compartment cover 20212 open faster and more convenient, improving the efficiency of seal usage.
[0043] The seal grid cover plate 20212 is connected to the seal grid body 20211 via a micro probe 20215 disposed on the seal grid body 20211.
[0044] The micro probe 20215 serves as the opening and closing pivot of the seal grid cover plate 20212.
[0045] The drawer module 2 is provided with a drawer main board 210, and the drawer main board 210 is provided with an ID encoder corresponding to each of the stamp compartments 2021. A drawer main board cover 211 is provided on the outside of the drawer main board 210, and the two can be arranged in a coordinated manner.
[0046] Antenna box limiting plates 12 are provided on both sides inside the outer frame 1 of the desktop cabinet. The antenna box limiting plates 12 are used to snap the antenna box 201.
[0047] An emergency door lock device 208 is provided on the bottom plate of the drawer 204. An emergency lock 2061 for the stamp box 202 is provided to cooperate with the emergency door lock device 208.
[0048] In this embodiment, the stamp boxes 202 in the drawer module 2 are divided into two groups, each group consisting of two columns of four stamp compartments 2021. An emergency lock 2061 is installed on one of the front stamp compartments 2021 of each column. An emergency door lock device 208 is installed on the drawer bottom plate 204 corresponding to each column of stamp compartments 2021 in the two groups of stamp boxes 202. The emergency lock 2061 and the emergency door lock device 208 work together to lock the drawer. In an emergency, the drawer can be unlocked with a key.
[0049] In practical use, after the applicant's identity is confirmed through the seal control console, the desktop control board 11 of the modular intelligent desktop cabinet receives the seal usage instruction from the seal control console. The desktop control board 11 confirms the required seal with the RFID radio frequency identification system, that is, it reads the seal RFID tag in the drawer module 2 through the RFID antenna 2011, and then performs seal identification through the RFID reader / writer; then, the desktop control board 11 connects to the desktop cabinet main board 101, and the desktop cabinet main board 101 drives the drawer module 2 (antenna box 201) where the required seal is located. The drawer electronic lock 207 (not moving) and drawer lock hook 2062 unlock, and the push-door device 2061 pushes out the drawer module 2; the desktop cabinet control board 11 connects to the drawer main board 210, and the drawer main board 210 drives the electronic lock 20214 of the stamp compartment 2021 containing the required stamp to unlock with the stamp compartment lock hook 20213, and the stamp compartment cover 20212 opens; the stamp is taken out and stamped; after stamping, the stamp is put back into the stamp compartment 2021, the stamp compartment cover 20212 is closed, the stamp compartment 2021 is locked, and at the same time, the drawer module 2 containing it retracts into the desktop cabinet and is locked. If any problems occur during the above stamping process, the desktop cabinet control board 11 can report to the stamp control console to trigger an alarm reminder. In addition, in case of power failure or desktop cabinet malfunction, an emergency lock can be opened. The desktop cabinet outer frame rear door 3 is equipped with a rear door emergency lock 4, which can be opened from the back with a key. Each stamp box 202 of the drawer module 2 is equipped with a stamp box emergency lock 209 on the stamp compartment 2021 at the front end. It works in conjunction with the emergency door lock device 208 on the drawer bottom plate 204 to lock, and can be unlocked with a key when needed.
[0050] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A modular intelligent desktop cabinet, connected to a printing console, characterized in that, include: Desktop cabinet outer frame; At least one drawer module, said drawer module being detachably connected to the outer frame of the desktop cabinet; A desktop cabinet control panel is mounted on the outer frame of the desktop cabinet or the drawer module. The desktop cabinet control panel is electrically connected to the drawer module and, under the action of the printing control console, enables the corresponding stamp in the drawer module to be removed or retracted.
2. The modular intelligent desktop cabinet according to claim 1, characterized in that, The drawer module includes a stamp storage section and an RFID antenna disposed above the stamp storage section. The RFID antenna is used to read the RFID tags of the stamps in the stamp storage section. The RFID antenna and the stamp storage section are capable of relative movement. An RFID reader / writer electrically connected to the RFID antenna is also provided inside the desktop cabinet. The desktop cabinet control board is electrically connected to the RFID reader / writer and is used to identify stamp information.
3. The modular intelligent desktop cabinet according to claim 2, characterized in that, The drawer module includes a drawer bottom plate and a stamp box disposed on the drawer bottom plate for storing stamps. The drawer bottom plate and the stamp box constitute the stamp storage part. An antenna box is provided on the outside of the stamp box, and the stamp box is slidably connected to the antenna box. The RFID antenna is disposed in the antenna box and located above the stamp box.
4. The modular intelligent desktop cabinet according to claim 3, characterized in that, The two sides and the rear side of the drawer bottom plate extend upward to form drawer side plates and drawer back plates, respectively. The drawer side plates are slidably connected to the antenna box. The drawer back plate is provided with a door jack and a drawer lock hook, which pass through the rear side of the antenna box. Behind the antenna box and inside the outer frame of the desktop cabinet, an electronic lock is provided corresponding to the drawer lock hook and engages with the drawer lock hook.
5. The modular intelligent desktop cabinet according to claim 4, characterized in that, The drawer module also includes a drawer door, which is perpendicularly connected to the drawer bottom plate and located in front of the stamp box. The edge of the drawer door is provided with metal tape, which is used to prevent electromagnetic leakage when the radio frequency antenna is working.
6. The modular intelligent desktop cabinet according to claim 4, characterized in that, The stamp box includes several stamp compartments, each compartment comprising a cover plate and a body. The cover plate is connected to the body via an elastic element. The body is equipped with an electronic lock, and the cover plate has a locking hook. The locking hook and the electronic lock work together to unlock and lock, opening and closing the cover plate.
7. The modular intelligent desktop cabinet according to claim 6, characterized in that, The stamp grid cover plate is connected to the stamp grid body via a micro probe disposed on the stamp grid body.
8. The modular intelligent desktop cabinet according to claim 6, characterized in that, The drawer module is provided with a drawer main board, and the drawer main board is provided with an ID encoder corresponding to each of the stamp compartments.
9. The modular intelligent desktop cabinet according to claim 3, characterized in that, Antenna box limiting plates are provided on both sides of the outer frame of the desktop cabinet, and the antenna box limiting plates are used to snap the antenna box in place.
10. The modular intelligent desktop cabinet according to claim 3, characterized in that, An emergency door lock device is provided on the bottom plate of the drawer, and an emergency lock for the stamp box is provided on the stamp box in conjunction with the emergency door lock device.