Smart safe
By designing a smart safe, which utilizes a lock box base, top cover, lock tongue, lock gate, and decoding device, the problem of important items being scattered and lost during travel is solved, achieving the effect of safe storage and convenient retrieval.
Patent Information
- Application Number
- CN202210264848.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-03-17
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2042-03-17
AI Technical Summary
In existing technologies, important items are easily scattered in suitcases or bags when traveling, resulting in inconvenience, high risk of loss, and time-consuming and laborious retrieval.
A smart safe deposit box was designed, which consists of a lock base, a top cover, a lock tongue, a lock gate, a decoding device, and a drive device. The lock gate is controlled by a password to create a closed space, ensuring the safe storage and convenient retrieval of items.
It enables the safe storage of important items, prevents loss, and improves the convenience and security of access. It is suitable for carrying with you or fixing in a designated location.
Smart Images

Figure CN114562176B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of anti-theft technology, and in particular to an intelligent safe deposit box. Background Technology
[0002] When traveling, people often need to store car keys, house keys, cards, mobile phones, medicines, and other items. Currently, people carry these items with them, placing them in suitcases or carry-on bags. This method of storage has the following disadvantages:
[0003] First, carrying these items can affect your travel destinations. In some tourist areas where you cannot carry these items, you will need to go to a storage place to store them, which is very troublesome.
[0004] Second, these items are very important. Losing them while traveling can cause a lot of trouble.
[0005] Third, since these items are scattered in suitcases or bags, they often need to be searched for when needed, which is time-consuming, laborious, and prone to damage.
[0006] Therefore, how to properly safeguard these important items when people travel becomes a headache. Summary of the Invention
[0007] To overcome the above-mentioned shortcomings, the present invention provides an intelligent safe deposit box, which has a simple structure and can safely store important personal items to avoid loss.
[0008] The technical solution adopted by this invention to solve its technical problem is as follows: an intelligent safe deposit box, including a lock box base, a top cover, a latch, a lock gate, a decoding device, and a driving device. One side of the top cover is hinged to one side of the lock box base. The lock gate is movably mounted on the other side of the top cover. The latch is fixedly mounted on a retractable seat. The lock gate can be engaged and fixedly connected with the latch. The driving device can drive the lock gate to move to achieve engagement or disengagement with the latch. The decoding device can control the start and stop of the driving device through a password. A closed storage space for items can be formed between the lock box base and the top cover.
[0009] As a further improvement of the present invention, the lock tongue is provided with a concave groove structure, the lock gate is rotatably mounted on the upper cover, the lock gate is provided with an eccentric block, the eccentric block can be inserted into or removed from the concave groove structure of the lock tongue as the lock gate rotates, and the side wall of the upper concave groove structure of the lock tongue facing the opening direction of the lock box seat stops on the surface of the eccentric block of the lock gate.
[0010] As a further improvement of the present invention, the concave groove structure on the lock tongue is an arc-shaped groove, and the eccentric block on the lock gate is an arc-shaped block that matches the curvature of the arc-shaped groove, and the sum of the central angle of the arc-shaped groove and the central angle of the arc-shaped block is less than 360 degrees.
[0011] As a further improvement of the present invention, the upper cover is also provided with an elastic clip, which can be elastically engaged with the locking tongue.
[0012] As a further improvement of the present invention, a locking tongue slot is also formed on the upper cover, and the other end of the locking tongue can be inserted into the locking tongue slot. The elastic element is an elastic steel wire installed on the side wall of the locking tongue slot. A steel wire groove extending in the direction perpendicular to the opening of the upper cover is formed on the side wall of the locking tongue facing away from the locking gate. The elastic steel wire can be accommodated in the steel wire groove and closely abut against the bottom surface of the steel wire groove.
[0013] As a further improvement of the present invention, a latch seat is fixedly provided on the inner side wall of the lock box seat, a T-shaped latch slot is formed in the latch seat, and a structure with increased width is formed at one end of the latch. One end of the latch is inserted into the latch slot of the latch seat, and the structure with increased width at one end of the latch stops on the inner side wall of the opening end of the latch slot.
[0014] As a further improvement of the present invention, the latch is a cylindrical structure, and the width of one end is increased by a radially protruding baffle located on the two opposite sidewalls of the cylindrical structure. The latch slot inside the latch seat matches the shape of one end of the latch. A positioning hole extending perpendicularly to the opening direction of the upper cover is provided on the sidewall of the latch seat. A positioning pin is fixedly provided inside the lock box seat, and the positioning pin is inserted into the positioning hole on the sidewall of the latch seat.
[0015] As a further improvement of the present invention, the upper cover is provided with a semi-circular first lock gate mounting groove and a lock gate cover. The lock gate cover is formed with a semi-circular second lock gate mounting groove. The lock gate cover can be fixedly installed on the upper cover. The first lock gate mounting groove and the second lock gate mounting groove are spliced together to form a cylindrical insertion hole for the lock gate to be rotated and inserted. The side wall of the first lock gate mounting groove or the second lock gate mounting groove is provided with an arc-shaped limiting groove coaxial with the lock gate. The outer circumferential side wall of the lock gate is provided with a radial protrusion. The radial protrusion can be slidably inserted into the arc-shaped limiting groove.
[0016] As a further improvement of the present invention, the decoding device is an electronic control panel, and the driving device is a motor. The electronic control panel is equipped with a password recognition module, a motor controller, and a power supply device. The password recognition module can identify whether the input password is correct. The password recognition module is electrically connected and communicates with the motor controller. The motor controller can control the motor to rotate to realize the locking or unlocking of the lock. The power supply device supplies power to the password recognition module, the motor controller, and the motor. The surface of the top cover facing the lock box seat is equipped with a top cover switch. The top cover switch is electrically connected and communicates with the motor controller. The top cover switch is equipped with a contact. The lock box seat is equipped with a trigger surface. When the top cover and the lock box seat are closed, the trigger surface can trigger the contact on the top cover switch.
[0017] As a further improvement of the present invention, the structure in which one side of the upper cover is hinged to the other side of the lock box seat is as follows: a lock plate slot is provided on one side wall of the lock box seat, the lock plate extending along the depth direction of the lock box seat, a lock plate is fixedly inserted in the lock plate slot, a bushing is fixedly provided at one end of the lock plate facing the opening direction of the lock box seat, two lugs are fixedly spaced on one side of the upper cover, and a hinge shaft hole is coaxially provided on the two lugs, the bushing on the lock plate can be inserted between the two lugs of the upper cover, and the central hole of the bushing is coaxially aligned with the hinge shaft hole on the lug, and a hinge shaft is also provided, the hinge shaft is axially stopped and inserted into the central hole of the bushing and the hinge shaft hole of the lug.
[0018] The beneficial effects of this invention are as follows: This invention forms a closed space by locking the lock box base and the top cover together with a locking tongue and a locking gate. This space is used to store important items such as keys, cards, mobile phones, and medicines, preventing these items from being scattered inside the bag and making them easy to access. Furthermore, since the lock box base and the top cover are locked, they cannot be opened without a password, which improves the security of storing such important items and prevents them from being stolen. It is also convenient to carry around or fix in a designated location, making it convenient to store and access important items. Attached Figure Description
[0019] Figure 1 This is an exploded perspective view of the present invention;
[0020] Figure 2 This is a perspective view of the lock box base of the present invention;
[0021] Figure 3 This is an exploded perspective view of the top cover of the present invention;
[0022] Figure 4 This is a schematic diagram of the open state of the present invention;
[0023] Figure 5 This is a schematic diagram of the locked state of the present invention;
[0024] Figure 6 This is a front view of the locking tongue of the present invention;
[0025] Figure 7 This is a schematic diagram illustrating the installation principle of the locking plate of the present invention;
[0026] Figure 8 This is a perspective view of the locking gate of the present invention;
[0027] Figure 9 This is a schematic diagram of the locking tongue and locking gate in the unlocked state of the present invention;
[0028] Figure 10 This is a schematic diagram of the locking tongue and locking gate in the locked state of the present invention. Detailed Implementation
[0029] Example: An intelligent safe includes a lock box base 1, a top cover 2, a latch 3, a lock gate 4, a decoding device, and a driving device. One side of the top cover 2 is hinged to one side of the lock box base 1. The lock gate 4 is movably mounted on the other side of the top cover 2. The latch 3 is fixedly mounted on a retractable seat. The lock gate 4 can be engaged and fixedly connected with the latch 3. The driving device can drive the lock gate 4 to move to achieve engagement or disengagement with the latch 3. The decoding device can control the start and stop of the driving device through a password. A closed storage space 5 for items can be formed between the lock box base 1 and the top cover 2.
[0030] A closed storage space 5 is formed between the lock box base 1 and the top cover 2. The lock box base 1 is generally open box-shaped and is used to place items such as car keys, home door lock keys, cards, mobile phones, and medicines. After placing items, the top cover 2 is placed on the opening of the lock box base 1. The lock gate 4 on the top cover 2 and the lock tongue 3 on the lock box base 1 are engaged and connected to fix the top cover 2 and the other side of the lock box base 1 to form a locking structure. When unlocking is required, the correct password is entered, and the lock gate 4 is driven by the drive device to move and disengage from the lock tongue 3 to unlock. At this time, the top cover 2 can be opened to take out the items in the lock box base 1. The lock box base 1 can also be equipped with a hook 16 for hanging on people's clothes or bags for easy carrying.
[0031] The latch 3 is provided with a concave groove structure 6. The lock gate 4 is rotatably mounted on the upper cover 2. The lock gate 4 is provided with an eccentric block 7. The eccentric block 7 can be inserted into or removed from the concave groove structure 6 of the latch 3 as the lock gate 4 rotates. The side wall of the concave groove structure 6 on the latch 3 facing the opening direction of the lock box seat 1 stops against the surface of the eccentric block 7 of the lock gate 4. Locking is achieved by rotating the locking gate 4 so that its eccentric block 7 is aligned with the recessed slot structure 6 on the locking tongue 3. Conversely, unlocking is achieved when the locking gate 4 is rotated so that its eccentric block 7 separates from the recessed slot structure 6 on the locking tongue 3. This simple structure makes the safe compact and space-saving. In addition to this locking structure, a ring buckle can be formed on the locking tongue 3 and a hook can be formed on the locking gate 4. Rotating the locking gate 4 causes the hook to engage with the ring buckle for locking or disengaging. Alternatively, the locking gate 4 can slide linearly on the upper cover 2 along the direction perpendicular to the opening direction, with a matching slot on the locking tongue 3. The upper cover 2 and the lock box seat 1 can be locked by inserting the locking gate 4 into the slot of the locking tongue 3. These are all equivalent replacement structures that can be easily conceived by those skilled in the art based on this patent and are within the scope of protection of this patent.
[0032] The recessed groove structure 6 on the locking tongue 3 is an arc-shaped groove, and the eccentric block 7 on the locking gate 4 is an arc-shaped block that matches the curvature of the arc-shaped groove, and the sum of the central angle of the arc-shaped groove and the central angle of the arc-shaped block is less than 360 degrees. The locking gate 4 is preferably a cylindrical structure with an arc-shaped block formed by a notch design on its side wall. By rotating the locking gate 4, the outer circumference of the locking gate 4 is inserted into the arc-shaped groove of the locking tongue 3 to achieve locking. The notch on the locking gate 4 is aligned with the arc-shaped groove on the locking tongue 3 to achieve unlocking. Alternatively, the position of the locking gate 4 and the arc-shaped groove can be designed as a cam-like structure to achieve locking and unlocking. The arc-shaped groove and the arc-shaped block cooperate to facilitate the rotation of the locking gate 4 to achieve locking and unlocking. In addition, the concave groove can also be a pit or a square groove, etc. The eccentric block 7 can be an inverted structure. It slides into the concave groove through the inverted structure to achieve engagement and positioning with the concave groove. It continues to rotate forward and slides out from the other side of the concave groove to achieve unlocking. These are all equivalent replacement structures that can be easily conceived by those skilled in the art based on this patent and are within the scope of protection of this patent.
[0033] The upper cover 2 is also equipped with an elastic latch, which can elastically engage with the latch 3. When the upper cover 2 is closed, during the period when the drive device moves the lock gate 4 to the locked state, the elastic latch and the latch 3 automatically form an elastic engagement, locking the latch 3 and preventing the closed upper cover 2 from automatically opening again. When unlocking, after entering the correct password, the lock gate 4 turns to the unlocked state. Since the elastic latch and the latch 3 are in an elastic engagement state at this time, the elastic latch can also prevent the upper cover 2 from automatically opening. It requires manual force to open, thus preventing items in the lock box 1 from falling to the ground.
[0034] The upper cover 2 also has a latch slot 11. The other end of the latch 3 can be inserted into the latch slot 11. The elastic element is an elastic steel wire 12 installed on the side wall of the latch slot 11. A steel wire groove 13 extending along the direction perpendicular to the opening of the upper cover 2 is formed on the side wall of the latch 3 facing away from the locking gate 4. The elastic steel wire 12 can be accommodated in the steel wire groove 13 and closely abut against the bottom surface of the steel wire groove 13. When the upper cover 2 is closed, the latch 3 is inserted into the latch slot 11 of the upper cover 2, and the elastic steel wire 12 will automatically engage with the steel wire groove 13 of the latch 3, forming an elastic engagement with the latch 3. It plays a certain positioning role for the latch 3. The upper cover 2 can only be opened when subjected to a certain external force. In order to prevent the elastic steel wire 12 from interfering with the latch 3 when the upper cover 2 is closed, thus preventing it from closing smoothly, it is best to form a chamfered or rounded surface at the end of the latch 3 to form a guide structure, so that the elastic steel wire 12 can easily close when the upper cover 2 is closed. The automatic sliding into the wire groove 13 of the latch 3 and its elastic engagement and positioning can be achieved by using an elastic wire 12 or a cantilever elastic arm, with a protrusion formed at the end of the cantilever elastic arm. The protrusion engages with the recess on the side wall of the latch 3 to achieve elastic engagement. Alternatively, a radially extending elastic pin structure can be formed on the side wall of the latch slot 11, which engages with the recess on the side wall of the latch 3 through its elastic extension and contraction. These are all equivalent replacement structures that can be easily conceived by those skilled in the art based on this patent and are within the scope of protection of this patent.
[0035] A latch seat 8 is fixedly provided on the inner side wall of the lock box seat 1. A T-shaped latch slot 11 is formed in the latch seat 8. A width-increasing structure 9 is formed at one end of the latch 3. One end of the latch 3 is inserted into the latch slot 11 of the latch seat 8. The width-increasing structure 9 at one end of the latch 3 stops on the inner side wall of the opening end of the latch slot 11.
[0036] The T-shaped latch slot 11 inside the latch seat 8 accommodates one end of the latch 3. The latch 3 is blocked by the side wall of the latch slot 11 in the opening direction and cannot be dislodged, thus realizing the positioning of the latch 3 inside the latch seat 8.
[0037] The latch 3 is a cylindrical structure, and the width dimension of one end is increased by the structure 9, which is a radially outward protruding baffle located on the two opposite side walls of the cylindrical structure. The latch slot 11 inside the latch seat 8 matches the shape of one end of the latch 3. A positioning insertion hole is provided on the side wall of the latch seat 8, which extends perpendicularly to the opening direction of the upper cover 2. A positioning pin 10 is fixedly provided inside the lock box seat 1, and the positioning pin 10 is inserted into the positioning insertion hole on the side wall of the latch seat 8.
[0038] The positioning pin 10 is inserted into the positioning hole of the latch seat 8, which realizes the fixed positioning of the latch seat 8, prevents the latch 3 from rotating with the latch seat 8, ensures that the latch 3 and the latch 4 are aligned, and ensures that the upper cover 2 can be locked smoothly after closing. Ideally, a raised positioning protrusion is set on the bottom surface of the lock box seat 1. The positioning protrusion is non-circular or eccentrically set with the latch 3. A matching positioning groove is set on one end face of the latch 3. When the latch 3 and the latch seat 8 on it are assembled into the lock box seat 1, it plays a role in preventing the latch 3 from rotating and positioning it.
[0039] The upper cover 2 is provided with a semi-circular first lock gate mounting groove 14 and a lock gate cover 15. The lock gate cover 15 has a semi-circular second lock gate 4 mounting groove. The lock gate cover 15 can be fixedly installed on the upper cover 2. The first lock gate mounting groove 14 and the second lock gate 4 mounting groove are spliced together to form a cylindrical insertion hole for the lock gate 4 to be rotatably inserted. The side wall of the first lock gate mounting groove 14 or the second lock gate 4 mounting groove is provided with an arc-shaped limiting groove 17 coaxial with the lock gate 4. The outer circumferential side wall of the lock gate 4 is provided with a radial protrusion 18. The radial protrusion 18 can be slidably inserted into the arc-shaped limiting groove 17.
[0040] The locking gate 4 is rotatably positioned by a cylindrical insertion hole formed by the semi-circular first locking gate mounting groove 14 and the second locking gate 4 mounting groove on the upper cover 2 and the locking gate cover 15. The locking gate cover 15 can be fixed to the inside of the upper cover 2 by a connector, which facilitates the assembly of the locking gate 4. By setting a radial protrusion 18 on the locking gate 4, which cooperates with the arc-shaped limiting groove 17 on the inner wall of the cylindrical insertion hole, the rotation angle of the locking gate 4 is limited, preventing the locking gate 4 from disengaging from the locking tongue 3 after locking, and ensuring that the upper cover 2 and the lock box seat 1 maintain a stable locking state after locking.
[0041] The decoding device is an electronic control panel 19, and the driving device is a motor 20. The electronic control panel 19 contains a password recognition module, a motor controller, and a power supply. The password recognition module can identify whether the input password is correct. The password recognition module is electrically connected to the motor controller, which can control the rotation of the motor 20 to unlock or lock the gate 4. The power supply provides power to the password recognition module, the motor controller, and the motor 20. The upper cover 2 has an upper cover switch 21 on its surface facing the lock box seat 1. The upper cover switch 21 is electrically connected to the motor controller and has a contact. The lock box seat 1 has a trigger surface 22. When the upper cover 2 and lock box seat 1 are closed, the trigger surface 22 can trigger the contact on the upper cover switch 21. When the upper cover 2 is closed, the trigger surface 22 on the lock box seat 1 will trigger the upper cover switch 21, and the motor 20 will rotate counterclockwise, driving the gate 4 to the locked position (e.g., Figure 10As shown), the latch 3 is fixed to the lock box seat 1, so the upper cover 2 is locked in this state. When unlocking is required, the correct password is entered on the electronic control panel 19, and the motor 20 will rotate clockwise, driving the lock gate 4 to the unlock position (as shown). Figure 9 As shown in the figure, the lock 4 disengages from the lock tongue 3, at which point the upper cover 2 can be opened.
[0042] The structure in which one side of the upper cover 2 is hinged to the other side of the lock box seat 1 is as follows: a lock plate slot 23 is provided on one side wall of the lock box seat 1, the lock plate 24 extends along the depth direction of the lock box seat 1, a lock plate 24 is fixedly inserted in the lock plate slot 23, a bushing 25 is fixedly provided at one end of the lock plate 24 facing the opening direction of the lock box seat 1, two lugs 26 are fixedly spaced on one side of the upper cover 2, and a hinge shaft 27 hole is coaxially provided on the two lugs 26. The bushing 25 on the lock plate 24 can be inserted between the two lugs 26 of the upper cover 2, and the center hole of the bushing 25 is coaxially aligned with the hinge shaft 27 hole on the lug 26. A hinge shaft 27 is also provided, and the hinge shaft 27 is inserted into the center hole of the bushing 25 and the hinge shaft 27 hole of the lug 26 in an axially stopped manner.
[0043] When it is necessary to open the upper cover 2, the upper cover 2 can rotate 90° around the hinge axis 27, such as... Figure 4 As shown. An exploded view of the entire rotating hinge structure is shown below. Figure 1 As shown.
[0044] During assembly, the bushing 25 on the locking plate 24 is placed between the two lugs 26 on the upper cover 2. The hinge shaft 27 is inserted from the side into the hinge shaft 27 hole on the lug 26 and the center hole of the bushing 25, thus assembling and positioning the lug 26 and the bushing 25 of the locking plate 24.
[0045] Then, the entire assembly is placed on the lock housing 1. Ideally, the upper end of one side wall of the lock housing 1 should form an arc-shaped support surface that matches the bushing 25, ensuring a tight fit between the bushing 25 and the arc-shaped support surface on the upper end of one side wall of the lock housing 1. Simultaneously, the locking plate 24 is inserted into the locking plate slot 23 on the side wall of the lock housing 1. Then, two pins are hammered in from the outer side of the lock housing 1 (or pins can be hammered in from the other side and then riveted on the outer side) for fixation. Figure 6 As shown.
[0046] The above structure enables the top cover 2 and the lock box seat 1 to be hinged together by a single locking piece 24, avoiding the hinge structure of two locking pieces 24, thus saving energy, cost, and space.
Claims
1. An intelligent safe deposit box, characterized in that: The system includes a lock box base (1), a top cover (2), a latch (3), a lock gate (4), a decoding device, and a driving device. One side of the top cover is hinged to one side of the lock box base. The lock gate is movably mounted on the other side of the top cover. The latch is fixedly mounted on the lock box base. The lock gate can be engaged and fixedly connected with the latch. The driving device can drive the lock gate to move to achieve engagement or disengagement with the latch. The decoding device can control the start and stop of the driving device through a password. A closed space for storing items (5) can be formed between the lock box base and the top cover. The latch has an inwardly recessed slot structure (6). The lock gate is rotatably mounted on the top cover. The lock gate has an eccentric block (7). The eccentric block can be inserted into or removed from the inner part of the latch as the lock gate rotates. Inside the recessed slot structure, the side wall of the recessed slot structure on the lock tongue facing the opening direction of the lock box seat stops against the surface of the eccentric block of the lock gate. The upper cover is also provided with an elastic clip, which can be elastically engaged with the lock tongue. The specific structure is as follows: the upper cover also forms a lock tongue slot (11), and the other end of the lock tongue can be inserted into the lock tongue slot. The elastic clip is an elastic steel wire (12) installed on the side wall of the lock tongue slot. A steel wire groove (13) extending along the vertical opening direction of the upper cover is formed on the side wall of the lock tongue facing away from the lock gate. The elastic steel wire can be accommodated in the steel wire groove and closely abuts the bottom surface of the steel wire groove. A chamfered surface or rounded corner surface is formed at the end of the lock tongue. The lock box seat is also equipped with a hook for hanging on a person's clothes or a bag.
2. The intelligent safe deposit box according to claim 1, characterized in that: The recessed groove structure on the latch is an arc-shaped groove, and the eccentric block on the lock is an arc-shaped block that matches the curvature of the arc-shaped groove. The sum of the central angle of the arc-shaped groove and the central angle of the arc-shaped block is less than 360 degrees.
3. The intelligent safe deposit box according to claim 1, characterized in that: A latch seat (8) is fixedly provided on the inner side wall of the lock box seat. A T-shaped latch slot is formed in the latch seat. A width-increasing structure (9) is formed at one end of the latch. One end of the latch is inserted into the latch slot of the latch seat. The width-increasing structure at one end of the latch stops on the inner side wall of the opening end of the latch slot of the latch seat.
4. The intelligent safe deposit box according to claim 3, characterized in that: The latch is a cylindrical structure, with one end of its width increased by a radially protruding baffle located on the two opposite sidewalls of the cylindrical structure. The latch slot inside the latch seat matches the shape of one end of the latch. A positioning hole extending perpendicularly to the opening direction of the upper cover is provided on the sidewall of the latch seat. A positioning pin (10) is fixedly provided inside the lock box seat, and the positioning pin is inserted into the positioning hole on the sidewall of the latch seat.
5. The intelligent safe deposit box according to claim 1, characterized in that: The upper cover is provided with a semi-circular first lock mounting groove (14) and a lock cover (15). The lock cover has a semi-circular second lock mounting groove. The lock cover can be fixedly installed on the upper cover. The first lock mounting groove and the second lock mounting groove are spliced together to form a cylindrical insertion hole for the lock to rotate and insert. The side wall of the first lock mounting groove or the second lock mounting groove is provided with an arc-shaped limiting groove (17) coaxial with the lock. The outer circumferential wall of the lock is provided with a radial protrusion (18). The radial protrusion can be slidably inserted into the arc-shaped limiting groove.
6. The intelligent safe deposit box according to claim 1, characterized in that: The decoding device is an electronic control panel (19), and the driving device is a motor (20). The electronic control panel is equipped with a password recognition module, a motor controller, and a power supply device. The password recognition module can identify whether the input password is correct. The password recognition module is electrically connected to the motor controller for communication. The motor controller can control the motor to rotate to realize the lock opening or closing. The power supply device supplies power to the password recognition module, the motor controller, and the motor. The top cover is equipped with a top cover switch (21) on the side of the top cover facing the lock box seat. The top cover switch is electrically connected to the motor controller for communication. The top cover switch is equipped with a contact. The lock box seat is equipped with a trigger surface (22). When the top cover and the lock box seat are closed, the trigger surface can trigger the contact on the top cover switch.
7. The intelligent safe deposit box according to claim 1, characterized in that: The structure in which one side of the upper cover is hinged to the other side of the lock box seat is as follows: a lock plate slot (23) extending along the depth direction of the lock box seat is provided on one side wall of the lock box seat. A lock plate (24) is fixedly inserted in the lock plate slot. A bushing (25) is fixedly provided at one end of the lock plate facing the opening direction of the lock box seat. Two lugs (26) are fixedly spaced on one side of the upper cover. A hinge shaft hole is provided on the two lugs coaxially. The bushing on the lock plate can be inserted between the two lugs of the upper cover. The central hole of the bushing is coaxially aligned with the hinge shaft hole on the lug. A hinge shaft (27) is also provided. The hinge shaft is inserted into the central hole of the bushing and the hinge shaft hole of the lug in an axially stopped manner.
Citation Information
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