Desktop type fuse box
By introducing a palm vein unlocking module and a wake-up module into the desktop safe box, the problem of difficulty in fast unlocking caused by the small fingerprint recognition area in the existing technology is solved, realizing fast unlocking of a larger recognition area and improving the convenience and security of operation in emergency situations.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-25
- Publication Date
- 2026-04-03
AI Technical Summary
Existing desktop safes are not ideal for quick unlocking in emergency situations due to the small size of the fingerprint recognition area.
The palm vein unlocking module is used for unlocking, combined with a wake-up module and a locking device, to achieve unlocking operations over a larger recognition area and avoid direct contact.
It enables quick and convenient unlocking in emergency situations, improving both security and convenience.
Smart Images

Figure CN224078953U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of insurance devices, and more particularly to a desktop insurance box. Background Technology
[0002] Existing desktop safes are generally flat and use fingerprint unlocking to open their top cover. However, the small size of the fingerprint sensor makes it difficult to quickly unlock the safe in an emergency. Utility Model Content
[0003] In view of this, the present invention provides a desktop safe box to solve the problem of slow unlocking in the prior art.
[0004] To achieve one, some, or all of the above objectives, or other objectives, this utility model proposes:
[0005] A desktop safe box, comprising:
[0006] The box body has a cavity inside for storing items, and the cavity has an opening;
[0007] A lid, which is mounted on the box and can open or close the opening;
[0008] The locking device has a closed state and an unlocked state. When the locking device is in the closed state, it locks the relative position between the cover and the box to close the opening; when the locking device is in the unlocked state, it releases the lock between the cover and the box to open the opening.
[0009] The palm vein unlocking module is installed on the box or cover and is electrically connected to the locking device. It is used to acquire palm vein information and drive the locking device to switch to the unlocked state.
[0010] Preferably, the palm vein unlocking module includes a recognition panel for acquiring palm vein information, the recognition panel is horizontally mounted on the top surface of the box, and the opening is made on the top surface of the box.
[0011] Preferably, the box has a front end and a rear end, the palm vein unlocking module is installed at the middle position of the top surface of the front end, the opening extends from the top surface of the front end to the top surface of the rear end, and the cover is rotatably installed on the rear end.
[0012] Preferably, the desktop safe also includes a wake-up module, which is installed next to the palm vein unlocking module and electrically connected to the palm vein unlocking module for waking up the palm vein unlocking module.
[0013] Preferably, the wake-up module is an infrared sensor to detect whether an object is approaching the palm vein unlocking module.
[0014] Preferably, the wake-up module is a touch switch or a button.
[0015] Preferably, the box body includes a rigid box body, a rigid panel, and a partition. The cavity is opened in the rigid box body, and the rigid box body also has an installation cavity. The installation cavity and the cavity are separated by the partition. The rigid panel is fixedly installed in the rigid box body and closes the installation cavity. The palm vein unlocking module is installed on the rigid panel.
[0016] The desktop safe also includes a power supply and a control board, both of which are installed in the mounting cavity. The palm vein unlocking module, locking device, and power supply are all electrically connected to the control board.
[0017] Preferably, the desktop safe also includes a hinge, which is installed inside the cavity;
[0018] The rear end of the box also has a connecting opening and a downward-extending notch;
[0019] The cover includes a top plate, a baffle, and a connecting part. The top plate is used to open or close the opening. The baffle is set perpendicular to the top plate and is used to open or close the notch. The connecting part is set at the connection between the top plate and the baffle. The rotating shaft passes through the connecting part and rotates to connect them.
[0020] Preferably, the desktop safe also includes a display module and a power supply. The display module is mounted on the box body, and the power supply is located inside the box body. The display module is electrically connected to the power supply and the palm vein unlocking module.
[0021] The display module is always on, and the display module is used to display at least the power supply's power information.
[0022] Preferably, the ratio between the length and height of the box is between 2:1 and 6:1.
[0023] Implementing the embodiments of this utility model will have the following beneficial effects:
[0024] After adopting the aforementioned desktop safe box, a palm vein unlocking module is set up to unlock the device by recognizing the user's palm veins. The recognition area is wider and does not require direct contact with the user's palm, making the unlocking operation more convenient, especially for quick unlocking in emergency situations. Attached Figure Description
[0025] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0026] Figure 1A schematic diagram of the overall external structure of one embodiment. Figure 1 .
[0027] Figure 2 A schematic diagram of the overall external structure of one embodiment. Figure 2 ;
[0028] Figure 3 A schematic diagram of the overall external structure of one embodiment. Figure 3 ;
[0029] Figure 4 This is a schematic diagram of one embodiment where the locking device is in the open state and the cover is opened.
[0030] Figure 5 This is a schematic diagram of the box structure in one embodiment;
[0031] Figure 6 Schematic diagram of an explosive assembly structure according to one embodiment Figure 1 ;
[0032] Figure 7 Schematic diagram of an explosive assembly structure according to one embodiment Figure 2 ;
[0033] Figure 8 Schematic diagram of an explosive assembly structure according to one embodiment Figure 3 ;
[0034] Figure 9 This is a schematic diagram of the bottom surface of a rigid panel in one embodiment;
[0035] Figure 10 for Figure 7 Enlarged view of point A in the middle;
[0036] Figure 11 This is a schematic diagram of the connection structure between the mechanical unlocking module and the locking device in one embodiment.
[0037] Figure 12 This is a schematic diagram of the internal structure of a locking device according to one embodiment;
[0038] Figure 13 This is a simplified schematic diagram of the distribution of information processing elements on a control board according to one embodiment;
[0039] in:
[0040] Box body 1, cavity 100, opening 101, outer surface of box body 102, first limiting boss 103, second limiting boss 104, rigid box body 105, rigid panel 106, partition 107, mounting cavity 108, notch 109, bottom plate 1051, side wall 1052, locking element 1053, fixing boss 1054, hook 1055, slot 1056, bottom surface of rigid panel 1061, top surface of box body 1000, front end 1001, rear end 1002, top surface of front end 10011, top surface of rear end 10021;
[0041] 2. Cover body, 201. Outer surface of the cover body, 202. Top plate, 203. Baffle, 204. Connecting part, 2000. Top surface of the cover body;
[0042] Locking device 3, housing 31, electric drive structure 32, linkage structure 33, lock structure 34, lock hook 35, triggering part 36, inclined slider structure 37, lock groove 311, push rod 331, spring 332, gear set 333, transmission gear 341;
[0043] Electrical unlocking module 4, palm vein unlocking module 41, password lock module 42, recognition panel 411, palm vein processing element 412, input panel 421, password processing element 422;
[0044] Set button 5;
[0045] Mechanical unlocking module 6, lock cylinder 61, lever 62, swing component 63, swing boss 631;
[0046] 7. Unlock key, 8. Wake-up module, 9. Function button, 10. Timing unit, 11. Display module, 12. Power supply, 13. Control board, 14. Rotating shaft, 15. Torsion spring, 16. Main switch. Detailed Implementation
[0047] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains; the terminology used herein in the specification is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention; the terms "comprising" and "having," and any variations thereof, in the specification, claims, and accompanying drawings of this invention are intended to cover non-exclusive inclusion. The terms "first," "second," etc., in the specification, claims, or accompanying drawings of this invention are used to distinguish different objects, not to describe a particular order.
[0048] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the present invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0049] To enable those skilled in the art to better understand the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.
[0050] See appendix Figures 1 to 13 This utility model proposes a desktop safe box, including a box body 1, a cover 2, a locking device 3, an electric unlocking module 4, and a setting button 5. This desktop safe box is designed for use on a desktop; therefore, the length-to-height ratio of the box body 1 is between 2:1 and 6:1, preferably 5:1.
[0051] The box body 1 has a cavity 100 for storing items, and the cavity 100 has an opening 101. The lid 2 is installed on the box body 1 and can open or close the opening 101.
[0052] Locking device 3 has a closed state and an unlocked state. When locking device 3 is in the closed state, it locks the relative position between cover 2 and box 1 to close opening 101, as shown in the attached figure. Figure 1 As shown; when the locking device 3 is in the unlocked state, the lock between the cover 2 and the box 1 is released to open the opening 101, as shown in the attached diagram. Figure 4 As shown.
[0053] The electric unlocking module 4 is installed on the housing 1 or the cover 2, preferably on the top surface 1000 of the housing 1 or the top surface 2000 of the cover 2. The electric unlocking module 4 is electrically connected to the locking device 3. The electric unlocking module 4 has a setting state and an identification state. When the electric unlocking module 4 is in the setting state, it is used to input the unlocking parameters for the locking device 3; when the control module is in the identification state, it is used to obtain unlocking information to control the state of the locking device 3.
[0054] Therefore, the electronic unlocking module 4 has pre-programmed unlocking parameters. After comparing the acquired unlocking information with the pre-programmed parameters, if the unlocking information matches, an unlocking signal is sent, causing the locking device 3 to switch to the unlocked state, thus opening the cover 2. Because the setting button 5 is located on the outer surface 102 of the box 1, its operation is more convenient. The setting button 5 is activated only when the locking device 3 is in the unlocked state, ensuring its security.
[0055] When this desktop safe is used for the first time, the user needs to manually enter the unlocking information because the electric unlocking module 4 has not yet been entered with the correct unlocking parameters. In this embodiment, the setting button 5 is electrically connected to the electric unlocking module 4, and the setting button 5 is located on the outer surface 102 of the box body 1 or the outer surface 201 of the cover 2. The accompanying drawings only show an embodiment where the setting button 5 is located on the outer surface 102 of the box body 1. During the entry process, the locking device 3 is in the unlocked state, and activating the setting button 5 will allow the electric unlocking module 4 to enter the setting state, at which point the parameters within the electric unlocking module 4 can be adjusted.
[0056] See appendix Figure 1 and 11 Upon initial use, since the cover 2 cannot be opened using the electric unlocking module 4, this embodiment also includes a mechanical unlocking module 6 and an unlocking key 7. The mechanical unlocking module 6 is installed on the housing 1 and is drivenly connected to the locking device 3. The unlocking key 7 is matched with the mechanical unlocking module 6 and is used to change the state of the locking device 3 through the mechanical unlocking module 6. That is, during initial use, the user can use the unlocking key 7 to unlock the mechanical unlocking module 6, thereby driving the locking device 3 to the unlocked state.
[0057] For the specific structure of the mechanical unlocking module 6, please refer to the appendix. Figure 6 , 7 In one embodiment (8, 10, and 11), the mechanical unlocking module 6 specifically includes a lock cylinder 61, a lever 62, and a swinging component 63. The lock cylinder 61 is mounted on the housing 1, the lever 62 is mounted on the lock cylinder 61 and can rotate with the unlocking key 7, and the swinging component 63 is rotatably mounted inside the housing 1 and can be driven by the lever 62. The locking device 3 includes a housing 31, an electric drive structure 32, a linkage structure 33, a lock structure 34, and a lock hook 35. The housing 31 is mounted inside the housing 1, and the electric drive structure 32, linkage structure 33, and lock structure 34 are all mounted inside the housing 31. The lock hook 35 is mounted on the cover 2. When the cover 2 closes the opening 101, the lock hook 35 is locked at the lock structure 34. The electric drive structure 32 and the linkage structure 33 are both driven by the lock structure 34 to drive the lock structure 34 to lock or unlock the lock hook 35; that is, the electric drive structure 32 and the linkage structure 33 can each independently drive the lock structure 34.
[0058] The locking structure can be a conventional smart lock structure 34, or as shown in the attached diagram. Figure 12 The following structure is shown:
[0059] The outer casing 31 has a locking groove 311, and the locking structure 34 is arranged in a ring shape, with one end of the locking structure 34 extending into the locking groove 311. The locking structure 34 also has a transmission tooth 341. The linkage structure 33 includes a push rod 331, a spring 332, and a gear set 333. The gear set 333 meshes with the transmission tooth 341 on the locking structure 34. The push rod 331 can move vertically and is driven by the gear set 333. The spring 332 is sleeved on the push rod 331 and abuts against the push rod 331 and the inner wall of the outer casing 31. When the push rod 331 moves vertically upward, it can drive the gear set 333 to rotate, thereby causing the locking structure 34 to rotate and move away from the lock hook 35, thus releasing the lock hook 35. Then, the spring 332 is used to move the push rod 331 downward and reset, that is, the locking structure 34 moves in the opposite direction and returns to its initial position. The end of the locking structure 34 that extends into the locking groove 311 has an inclined surface. When the locking hook 35 is pressed down, it can abut against this inclined surface, thereby driving the locking structure 34 to rotate until the locking hook 35 passes over this end of the locking structure 34. The locking structure 34 then resets under the elastic force of the spring 332 and locks the position of the locking hook 35. The electric drive structure 32 can be a push rod motor. The output end of the push rod motor abuts against the push rod 331. When the electric unlocking module 4 sends an unlocking signal, the push rod motor pushes the push rod 331 upward, thereby driving the locking structure 34 to open the locking hook 35. In addition, the lower end of the push rod 331 extends out of the housing 31 and forms a trigger part 36. The swing member 63 can rotate to abut against the trigger part 36, thereby completing the docking of the mechanical unlocking module 6 and the locking device 3. When the unlocking key 7 is inserted into the lock cylinder 61 and rotated, the lever 62 rotates simultaneously, driving the swing member 63 to swing until the swing member 63 reaches the trigger part 36, causing the push rod 331 to be pushed upward, thus unlocking the lock hook 35. Both the swing member 63 and the trigger part can be provided with inclined surfaces. The swing member 63 and the trigger part 36 contact at the two inclined surfaces to form an inclined slider structure 37. This inclined slider structure 37 converts the horizontal swinging motion of the swing member 63 into the vertical sliding motion of the push rod 331.
[0060] In addition, a first limiting boss 103 and a second limiting boss 104 are also provided inside the housing 1. A swinging boss 631 is provided on the swinging member 63. The swinging boss 631 moves between the first limiting boss 103 and the second limiting boss 104, and can abut against either the first limiting boss 103 or the second limiting boss 104. When the swinging boss 631 abuts against the first limiting boss 103, the swinging member 63 moves away from the triggering part; when the swinging boss 631 abuts against the second limiting boss 104, the swinging member 63 contacts the triggering part and lifts the entire push rod 331. The function of the first limiting boss 103 and the second limiting boss 104 is to limit the swing angle of the swinging member 63.
[0061] Further, see appendix. Figure 1 The electronic unlocking module 4 includes at least a palm vein unlocking module 41, which is mounted on the top surface 1000 of the housing 1. This module is used to acquire the user's palm vein information, and the unlocking parameters include at least palm vein unlocking parameters, i.e., the user's palm vein pattern information. When the user needs to open the cover 2, the user's palm moves to the sensing area of the palm vein unlocking module 41. The module acquires the user's palm vein information and compares it with the recorded palm vein unlocking parameters. If the information matches, the locking device 3 will switch to the unlocked state, allowing the cover 2 to be opened. Compared to fingerprint recognition, palm vein recognition has a larger and wider recognition area and does not require direct contact with the user's palm, making unlocking more convenient, especially for quick unlocking in emergency situations.
[0062] Furthermore, to save power, the palm vein unlocking module 41 is configured in a normally closed mode, meaning that at least a portion of the palm vein unlocking module 41 is normally powered off, reducing its energy consumption. The desktop safe also includes a wake-up module 8, which is installed beside and electrically connected to the palm vein unlocking module 41 to wake it up. The wake-up module 8 is preferably an infrared sensor to detect if an object is near the palm vein unlocking module 41. For example, when a user's palm approaches the palm vein unlocking module 41, the wake-up module 8 senses the user's hand and fully wakes the palm vein unlocking module 41, causing it to start working. The infrared sensor can be as shown in the attached... Figure 1 The design shown surrounds the palm vein unlocking module, or employs a hidden design where the infrared sensor is covered within the sensing area of the palm vein unlocking module. In other embodiments, the wake-up module can also be a touch switch, button, or other similar element, requiring the user to manually touch the switch or press the button to activate the palm vein unlocking module.
[0063] In addition, the electronic unlocking module 4 may also include a combination lock module 42. Correspondingly, the desktop safe also includes multiple function buttons 9, located on the outer surface 102 of the box body 1 or the outer surface 201 of the cover 2, and connected to the combination lock module 42 for entering a password. The aforementioned unlocking parameters also include password parameters, i.e., the correct password combination information. Therefore, the user can also unlock the combination lock module 42 by entering a password, thus enabling the locking device 3 to enter the unlocked state.
[0064] Furthermore, the desktop safe also includes a timing unit 10, which is electrically connected to the combination lock module 42 and multiple function buttons 9. At least one of the function buttons 9 serves as a setting button 5. The timing unit 10 is used to identify the pressing time of the function button 9 and to cause the electric unlocking module 4 to enter the setting or identification state based on the pressing time of the function button 9. For example, if the timing unit 10 detects that the pressing time of the function button 9 is less than 1 second, it is determined to be a short press; if the pressing time of the function button 9 is greater than 1 second, it is determined to be a long press. When a function button 9 serving as a setting button 5 is pressed briefly, the timing unit 10 will determine that the electrical signal generated after it is pressed is the electrical signal generated by the function button 9, which is used to enter the password into the combination lock module 42, that is, the electric unlocking module 4 is in the identification state; when a function button 9 serving as a setting button 5 is pressed long, the timing unit 10 will determine that the electrical signal generated after it is pressed is the electrical signal generated by the setting button 5, which can cause the corresponding electric unlocking module 4 to enter the setting state.
[0065] For example, there are two setting buttons 5. The two setting buttons 5 are used to put the palm vein unlocking module 41 and the password lock module 42 into the setting state, respectively, and correspondingly, the two function buttons 9 are used as the two setting buttons 5.
[0066] Further, see appendix. Figures 5 to 8 The housing 1 includes a rigid housing body 105, a rigid panel 106, and a partition 107. The rigid housing body 105, the partition 107, and the cover 2 are all made of metal, such as aluminum alloy, while the rigid panel 106 is made of plastic. A cavity 100 is formed in the rigid housing body 105. The rigid housing body 105 also has an installation cavity 108. The installation cavity 108 and the cavity 100 are separated by the partition 107. The rigid panel 106 is fixedly installed on the rigid housing body 105 and closes the installation cavity 108. At least a portion of the electrically unlocking module 4 is installed on the rigid panel 106. The desktop safe also includes a display module 11, a power supply 12, and a control board 13. The display module 11 is mounted on a rigid panel 106. The power supply 12 and control board 13 are both mounted in a mounting cavity 108, with the control board 13 attached to the bottom surface 1061 of the rigid panel 106. This optimizes the spatial layout of the mounting cavity 108, providing more space for the electric unlocking module 4. The electric unlocking module 4, locking device 3, setting button 5, function button 9, display module 11, and power supply 12 are all electrically connected to the control board 13. The display module 11 is used to display the power information of the power supply 12 to prompt the user to charge or replace the power supply 12.
[0067] The rigid housing 105 includes a base plate 1051, side walls 1052, and a locking member 1053. The base plate 1051, side walls 1052, and cover 2 together form a cavity 100. A fixing boss 1054 is provided on the side of the side wall 1052 facing the cavity 100. The locking member 1053 is located inside the cavity 100 and is used to fix the fixing boss 1054 and the base plate 1051. The locking member 1053 is threaded and passes through the fixing boss 1054 to be threaded onto the base plate 1051. This design prevents the locking member 1053 from being exposed on the surface of the housing 1, preventing others from opening the base plate 1051 without unlocking the locking device 3, thus improving security.
[0068] Specifically, the base plate 1051 is provided with a hook 1055, and the side wall 1052 is provided with a slot 1056. The hook 1055 is engaged in the slot 1056, and the connection between the base plate 1051 and the side wall 1052 is completed by the combination of the engagement and the locking element 1053. In addition, the side wall 1052, the base plate 1051, and the cover 2 are all made of die-cast metal.
[0069] Specifically, as shown in the attached document Figure 4 , 5 As shown in Figures 9 and 13, the palm vein unlocking module 41 includes an identification panel 411 and a palm vein processing element 412. The identification panel 411 is mounted in the middle of the rigid panel 106 and is used to scan palm vein information. The lock cylinder 61 is located on the side wall 1052 of the rigid housing 105, and both the identification panel 411 and the lock cylinder 61 are located at the front end 1001. The combination lock module 42 includes an input panel 421 and a combination processing element 422. Function buttons 9 are located on the input panel 421, which is mounted on the rigid panel 106. The input panel 421 and the display module 11 are located on opposite sides of the identification panel 411. (See attached figure) Figure 13 As shown, the palm vein processing element 412, the password processing element 422, the timing unit 10, and other information processing elements are all integrated on the control board 13, where information is centrally processed.
[0070] Furthermore, to facilitate quick opening of the locking device 3 in an emergency, in a preferred embodiment, the housing 1 has a front end 1001 and a rear end 1002. The palm vein unlocking module 41, setting button 5, and function button 9 are all installed on the top surface 10011 of the front end 1001, while the lock cylinder 61 is located on the side wall 1052 of the front end 1001. The opening 101 extends from the top surface 10011 of the front end 1001 to the top surface 10021 of the rear end 1002, and the cover 2 is rotatably installed on the rear end 1002. Specifically, the recognition panel 411 is horizontally installed in the middle of the top surface 10011 of the front end 1001. In an emergency, when a user wants to unlock the device, their palm will subconsciously flatten to the middle of the front end 1001, and the recognition panel 411, located in the middle of the top surface 10011 of the front end 1001, can immediately collect the user's palm vein information, saving the user the time of searching for the recognition panel 411.
[0071] Furthermore, the desktop safe also includes a pivot 14, which is installed within the cavity 100 and located at the rear end 1002. The cover 2 is rotatably mounted on the pivot 14. The rear end 1002 of the safe also has a notch 109 extending downward from the opening 101. The cover 2 includes a top plate 202, a baffle 203, and a connecting part 204. The top plate 202 can swing around the pivot 14 to open or close the opening 101. The baffle 203 is perpendicular to the top plate 202 and is used to open or close the notch 109. The connecting part 204 is located at the connection between the top plate 202 and the baffle 203. The entire cover 2 is connected to the pivot 14 through the connecting part 204. Specifically, the pivot 14 passes through the connecting part 204 and a torsion spring 15 is provided on the pivot 14. The torsion spring 15 is connected to the cover and the rigid box body 105. When the locking device 3 is in the unlocked state, the torsion spring 15 is used to automatically open the opening 101 of the top plate 202. The rotating shaft 14 is located inside the mounting cavity 108 and is blocked by the top plate 202 and the baffle 203, so that the rotating shaft 14 is not exposed and the security is improved.
[0072] Furthermore, as shown in the appendix Figure 5 As shown, the safe also includes a main switch 16. The control panel 13 is electrically connected to the power supply 12 via the main switch 16. The main switch 16 is mounted on the partition 107, and a portion of the main switch 16 protrudes into the cavity 100. The main switch 16 is used to turn the entire desktop safe on or off, and can only be operated after the cover 2 is opened.
[0073] In addition, a wireless communication module can be installed on the control board 13 to facilitate remote control by the user. Furthermore, an automatic alarm can be set to sound if the number of unlocking errors exceeds a preset limit.
[0074] Obviously, the embodiments described above are only some embodiments of this utility model, not all embodiments. The accompanying drawings show preferred embodiments of this utility model, but do not limit the patent scope of this utility model. This utility model can be implemented in many different forms; rather, the purpose of providing these embodiments is to provide a more thorough and comprehensive understanding of the disclosure of this utility model. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing specific embodiments, or make equivalent substitutions for some of the technical features. Any equivalent structures made using the content of this utility model specification and drawings, directly or indirectly applied to other related technical fields, are similarly within the patent protection scope of this utility model.
Claims
1. A desktop safe, characterized in that, The desktop safe box comprises a box body (1) and a cover body (2), wherein the box body (1) is internally provided with a cavity (100) for accommodating articles, and the cavity (100) is provided with an opening (101); the cover body (2) is mounted on the box body (1) and can open or close the opening (101); a locking device (3) is provided, which has a closed state and an unlocked state; when the locking device (3) is in the closed state, the relative position between the cover body (2) and the box body (1) is locked to close the opening (101); when the locking device (3) is in the unlocked state, the locking between the cover body (2) and the box body (1) is released to open the opening (101); a palm vein unlocking module (41) is mounted on the box body (1) or the cover body (2) and is electrically connected with the locking device (3), and is used for acquiring palm vein information and driving the locking device (3) to change to the unlocked state. The palm vein unlocking module (41) comprises an identification panel (411) for acquiring palm vein information, and the identification panel (411) is horizontally mounted on the top surface (1000) of the box body (1), and the opening (101) is formed in the top surface (1000) of the box body (1). The box body (1) has a front end (1001) and a rear end (1002), the palm vein unlocking module (41) is mounted at the middle position of the top surface (10011) of the front end (1001), the opening (101) extends from the top surface (10011) of the front end (1001) to the top surface (10012) of the rear end (1002), and the cover body (2) is rotatably mounted on the rear end (1002). The desktop safe box further comprises a wake-up module (8) mounted beside the palm vein unlocking module (41) and electrically connected with the palm vein unlocking module (41), and is used for waking up the palm vein unlocking module (41). The wake-up module (8) is an infrared sensor for detecting whether an object is close to the palm vein unlocking module (41).
2. A desk-top safe as claimed in claim 1 wherein, The wake-up module (8) is a touch switch or a key.
3. A desk-top safe as claimed in claim 2 wherein, The box body (1) comprises a hard box body (105), a hard panel (106) and a partition plate (107), the cavity (100) is formed in the hard box body (105), the hard box body (105) is further provided with a mounting cavity (108), the mounting cavity (108) and the cavity (100) are separated by the partition plate (107), the hard panel (106) is fixedly mounted on the hard box body (105) and closes the mounting cavity (108), and the palm vein unlocking module (41) is mounted on the hard panel (106).
4. The desktop safe of claim 1, wherein, The desktop safe box further comprises a power supply (12) and a control board (13), and the power supply (12) and the control board (13) are mounted in the mounting cavity (108), and the palm vein unlocking module (41), the locking device (3) and the power supply (12) are electrically connected with the control board (13).
5. A desk-top safe as claimed in claim 4 wherein, 6. A desk-top safe as defined in claim 4 wherein, 7. A desk-top safe as defined in claim 1 wherein, 8. A desk-top safe as defined in claim 3 wherein, The desktop safe box further comprises a rotating shaft (14) installed in the cavity (100); The rear end (1002) of the box body (1) is further provided with a notch (109) extending downward and communicating with the opening (101); The cover body (2) comprises a top plate (202), a baffle (203) and a connecting part (204), the top plate (202) is used for opening or closing the opening (101), the baffle (203) is perpendicular to the top plate (202), the baffle (203) is used for opening or closing the notch (109), the connecting part (204) is arranged at the connection between the top plate (202) and the baffle (203), and the rotating shaft (14) penetrates through the connecting part (204) and is rotationally connected.
9. The desktop safe of claim 1, wherein, The desktop safe box further comprises a display module (11) and a power supply (12), the display module (11) is installed on the box body (1), the power supply (12) is located in the box body (1), and the display module (11) is electrically connected with the power supply (12) and the palm vein unlocking module (41). The display module (11) is always lighted, and the display module (11) is at least used for displaying power information of the power supply (12).
10. The desktop safe of claim 1, wherein, The ratio between the length and the height of the box body (1) ranges from 2:1 to 6:1.