Intelligent lock reset assembly and intelligent lock

Through the contact or separation of the trigger and the triggered member in the smart lock reset component, the problem of users having difficulty obtaining power when the smart lock machine is locked is solved, and the intelligent lock reset without external power is realized and the use of conventional unlocking methods is achieved.

CN223193368UActive Publication Date: 2025-08-05DESSMANN CHINA MACHINERY & ELECTRONICS +1
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Patent Information

Application Number
CN202422443639.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-09
Publication Date
2025-08-05
Estimated Expiration
2034-10-09

AI Technical Summary

Technical Problem

When the smart locking machine is locked, users have difficulty obtaining power, which leads to inconvenience in unlocking.

Method used

An intelligent lock reset assembly is designed, including a reset circuit, a triggered member and a trigger. The trigger can be moved between the first position and the second position, and the on-off of the reset circuit is controlled by contacting or separating the triggered member and resetting the smart lock.

Benefits of technology

When the smart lock machine is locked, the smart lock can be reset without an external power supply. Users can unlock it using conventional unlocking methods such as fingerprint recognition and facial recognition, which is more convenient to operate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of intelligent locks, and discloses an intelligent lock reset assembly and an intelligent lock, the intelligent lock reset assembly comprises a reset circuit, a triggered piece and a triggering piece, the reset circuit is electrically connected with a power supply of an intelligent lock body, the triggering piece is connected to the reset circuit, and the triggering piece is connected to the intelligent lock body and can move between a first position and a second position. When the control system of the intelligent lock body crashes, a user drives the triggering piece to move from the first position to the second position, at the moment, the triggering piece makes contact with the triggered piece, the reset circuit is switched on after the triggered piece is triggered, and therefore the intelligent lock body is reset, the control system of the intelligent lock body returns to the last locking state, and then the control system can work normally. A user can unlock by using conventional unlocking modes such as fingerprint recognition and face recognition. When the control system of the intelligent lock body crashes, a user can reset the intelligent lock body without using an external power supply, and unlocking is more convenient.
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Description

Technical Field

[0001] The present application relates to the technical field of smart locks, and in particular to a smart lock reset component and a smart lock. Background Art

[0002] A smart lock is a door lock that combines traditional mechanical locks with modern electronic technology. It uses electronic technology to achieve a variety of unlocking methods such as passwords, fingerprints, and face recognition, while retaining the security and convenience of traditional mechanical locks.

[0003] Smart locks rely on a control system, which can inevitably freeze. Therefore, control systems often include a reset circuit. When this circuit is activated, the smart lock resets, returning the control system to its previous locked state. This allows users to unlock the lock using conventional methods like fingerprint and facial recognition.

[0004] In the related art, the reset circuit of the smart lock is provided with an interface, which requires a power supply to be plugged into the interface through a connecting wire to connect the reset circuit. However, the control system freeze is often an emergency, and it is difficult for the user to obtain power, resulting in inconvenience in unlocking the lock. Utility Model Content

[0005] In view of this, the present application provides a smart lock reset component and a smart lock to solve or improve the problem that when the smart lock freezes, the user has difficulty obtaining power, resulting in inconvenience in unlocking.

[0006] In a first aspect, the present application provides a smart lock reset assembly, comprising: a reset circuit, a triggered component, and a trigger component, wherein the reset circuit is electrically connected to the power supply of the smart lock body, the trigger component is connected to the reset circuit, and the trigger component is connected to the smart lock body and can move between a first position and a second position, wherein:

[0007] When the triggering member is in the first position, the triggering member is separated from the triggered member, and the reset circuit is disconnected;

[0008] When the triggering member is in the second position, the triggering member contacts and triggers the triggered member, the reset circuit is connected, and the smart lock body is reset.

[0009] Optionally, the trigger member includes a sliding cover and a first trigger portion connected to the sliding cover, the sliding cover is slidably connected to the smart lock body, and the sliding cover can slide between the first position and the second position, wherein

[0010] When the sliding cover slides to the first position, the first triggering portion is separated from the triggered component, and the reset circuit is disconnected;

[0011] When the sliding cover slides to the second position, the first triggering part contacts and triggers the triggered part, the reset circuit is connected, and the smart lock body is reset.

[0012] Optionally, a mechanical keyhole is provided on the smart lock body, wherein,

[0013] When the sliding cover slides to the first position, the sliding cover covers the mechanical key hole;

[0014] When the sliding cover slides to the second position, the sliding cover leaves the mechanical keyhole.

[0015] Optionally, the sliding cover can also slide between the first position and a third position. When the sliding cover slides to the third position, the sliding cover leaves the mechanical keyhole, the first triggering part is separated from the triggered part, and the reset circuit is disconnected.

[0016] Optionally, the first position, the third position and the second position are sequentially arranged along the sliding direction of the sliding cover.

[0017] Optionally, the trigger member includes a flip cover and a second trigger portion connected to the flip cover, the flip cover is flippably connected to the smart lock body, and the flip cover can flip between the first position and the second position, wherein,

[0018] When the flip cover is flipped to the first position, the second triggering portion is separated from the triggered component, and the reset circuit is disconnected;

[0019] When the flip cover is flipped to the second position, the second triggering part contacts and triggers the triggered part, the reset circuit is connected, and the smart lock body is reset.

[0020] Optionally, a mechanical keyhole and a locking structure are provided on the smart lock body, and the flip cover can also flip between the first position and the third position. When the locking structure is switched to the locked state, the flip cover is restricted from flipping from the first position to the third position. When the locking structure is switched to the unlocked state, the flip cover can flip from the first position to the third position, wherein,

[0021] When the flip cover is flipped to the first position, the flip cover covers the mechanical key hole;

[0022] When the flip cover is flipped to the second position, the locking structure switches between a locked state and an unlocked state;

[0023] When the flip cover is flipped to the third position, the flip cover leaves the mechanical key hole.

[0024] Optionally, the triggered component includes a button connected to the reset circuit, and the trigger component includes a pressing portion, wherein:

[0025] When the trigger is in the first position, the pressing portion is separated from the button, and the reset circuit is disconnected;

[0026] When the trigger is in the second position, the pressing portion contacts and presses the button, and the reset circuit is turned on.

[0027] Optionally, the triggered component includes a contact connected to the reset circuit, and the trigger component includes a conductive component, wherein:

[0028] When the trigger member is in the first position, the contact is separated from the conductive member and the reset circuit is disconnected;

[0029] When the trigger member is in the second position, the conductive member contacts the contact point, and the reset circuit is connected.

[0030] In a second aspect, the present application also provides a smart lock, comprising any of the smart lock reset components described above.

[0031] The present application provides a smart lock reset component, including a reset circuit, a triggered component and a trigger component. The reset circuit is electrically connected to the power supply of the smart lock body so that the power supply of the smart lock body can power the reset circuit. The trigger component is connected to the reset circuit. When the trigger component is triggered, the reset circuit is connected, and the smart lock body is reset, and the control system of the smart lock body returns to the state when it was last locked. The trigger component can be movably connected to the smart lock body so that it can move between a first position and a second position. When the control system of the smart lock body crashes, the user drives the trigger component to move from the first position to the second position. At this time, the trigger component contacts the triggered component, and after the triggered component is triggered, the reset circuit is connected, thereby resetting the smart lock body and returning the control system of the smart lock body to the state when it was last locked. After that, the control system can work normally, and the user can unlock it using conventional unlocking methods such as fingerprint recognition and facial recognition. When the control system of the smart lock body crashes, the user can reset the smart lock body without using an external power supply, making unlocking more convenient. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] In order to more clearly illustrate the specific implementation methods of this application or the technical solutions in related technologies, the following is a brief introduction to the drawings required for use in the specific implementation methods or related technical descriptions. Obviously, the drawings described below are some implementation methods of this application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0033] Figure 1 This is a front view of a sliding cover of a smart lock reset assembly according to an embodiment of the present application when it is in a second position;

[0034] Figure 2 A side view of a sliding cover of a smart lock reset assembly according to an embodiment of the present application when the sliding cover is in a second position;

[0035] Figure 3 This is a front view of a sliding cover of a smart lock reset assembly according to an embodiment of the present application when it is in a first position;

[0036] Figure 4 A side view of a sliding cover of a smart lock reset assembly according to an embodiment of the present application when the sliding cover is in a first position;

[0037] Figure 5 A side view of another smart lock reset assembly according to an embodiment of the present application when the sliding cover is in the second position;

[0038] Figure 6 A side view of another smart lock reset assembly according to an embodiment of the present application when the sliding cover is in a first position;

[0039] Figure 7 A side view of a flip cover of another smart lock reset assembly according to an embodiment of the present application when it is in a first position;

[0040] Figure 8 A side view of a flip cover of another smart lock reset assembly according to an embodiment of the present application when it is in a third position;

[0041] Figure 9 A side view of a flip cover of another smart lock reset assembly according to an embodiment of the present application when it is in a first position;

[0042] Figure 10 This is a side view of another smart lock reset assembly according to an embodiment of the present application when the flip cover is in the third position.

[0043] Description of reference numerals:

[0044] 1. Smart lock body; 2. Sliding cover; 3. Flip cover; 4. Button; 5. Pressing part; 6. Contact; 7. Conductive part; 8. Mechanical keyhole. DETAILED DESCRIPTION

[0045] To make the purpose, technical solutions, and advantages of the embodiments of the present application more clear, the technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without making creative efforts shall fall within the scope of protection of this application.

[0046] The following combination Figures 1 to 10 , describing the embodiments of the present application.

[0047] According to an embodiment of the present application, on the one hand, a smart lock reset component is provided, comprising a reset circuit, a triggered component, and a trigger component. The control system of the smart lock body 1 is powered by the power supply of the smart lock body 1, and the reset circuit is electrically connected to the power supply of the smart lock body 1 so that the power supply of the smart lock body 1 can power the reset circuit. The trigger component is connected to the reset circuit. When the trigger component is triggered, the reset circuit is connected, and the smart lock body 1 is reset. The control system of the smart lock body 1 returns to the state when it was last locked.

[0048] The trigger is movably connected to the smart lock body 1 , and the trigger can move between a first position and a second position relative to the smart lock body 1 .

[0049] Under normal circumstances, the trigger is in the first position, at which point the trigger is separated from the triggered component, the triggered component is not triggered, and the reset circuit is disconnected. When the control system of the smart lock body 1 freezes, the user drives the trigger from the first position to the second position, at which point the trigger contacts the triggered component, triggering the triggered component and connecting the reset circuit. This resets the smart lock body 1 and returns the control system of the smart lock body 1 to the state it was in when it was last locked. After this, the control system can operate normally and the user can unlock the lock using conventional unlocking methods such as fingerprint recognition and facial recognition.

[0050] With this arrangement, when the control system of the smart lock body 1 crashes, the user can reset the smart lock body 1 without using an external power supply, making unlocking more convenient.

[0051] After the triggering member contacts and triggers the triggered member, the triggering member is moved from the second position back to the first position, so that the triggering member is separated from the triggered member, so as to facilitate resetting when there is a reset requirement next time.

[0052] In one embodiment, Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 7 and Figure 8As shown, the triggered member includes a button 4, which is connected to the smart lock body 1 and is connected to the reset circuit, so that when the button 4 is pressed, the reset circuit is connected. The trigger member includes a trigger body and a pressing portion 5, which is connected to the trigger body. The trigger body is movably connected to the smart lock body 1, so that the trigger body can be switched between a first position and a second position.

[0053] Under normal circumstances, the trigger body is in the first position, at which point the pressing portion 5 is separated from the button 4, the button 4 is not pressed, and the reset circuit is disconnected. When the control system of the smart lock body 1 crashes, the user drives the trigger body from the first position to the second position, at which point the pressing portion 5 presses the button 4, connecting the reset circuit and resetting the smart lock body 1.

[0054] In one embodiment, Figure 5 、 Figure 6 、 Figure 9 and Figure 10 As shown, the triggered part includes a contact 6, the triggering part includes a triggering part body and a conductive part 7, the conductive part 7 is connected to the triggering part body, and the triggering part body can be movably connected to the smart lock body 1, so that the triggering part body can be connected between the first position and the second position.

[0055] Under normal circumstances, the trigger body is in the first position, at which point the conductive member 7 is separated from the contact 6, and the reset circuit is disconnected. When the control system of the smart lock body 1 freezes, the user drives the trigger body from the first position to the second position, at which point the conductive member 7 contacts the contact 6, connecting the reset circuit and resetting the smart lock body 1.

[0056] The contacts 6 can be set as two separate ones, and the conductive member 7 can be a metal sheet. When the trigger body moves from the first position to the second position, the two separated contacts 6 are respectively connected to the conductive member 7, so that the two contacts 6 are connected through the conductive member 7, so that the reset circuit is connected.

[0057] In an optional embodiment, if Figures 1 to 6 As shown, the trigger member includes a slide cover 2 and a first trigger portion, which is connected to the slide cover 2. The first trigger portion is connected to the slide cover 2. A slide groove is provided on the smart lock body 1, and a slide rail is provided on the slide cover 2. The slide rail on the slide cover 2 is slidably arranged in the slide groove, so that the slide cover 2 is slidably connected to the smart lock body 1. Therefore, when the slide cover 2 slides along the smart lock body 1, the trigger member slides between the first position and the second position, and the triggered member is connected to the smart lock body 1.

[0058] When the slide cover 2 slides to the first position, the first triggering portion is separated from the triggered member and the reset circuit is disconnected. When the slide cover 2 slides to the second position, the first triggering portion contacts the triggered member, the triggered member is triggered and the reset circuit is connected.

[0059] With this arrangement, when the control system of the smart lock body 1 crashes, the user drives the slide cover 2 to slide from the first position to the second position, so that the triggered component is triggered and the reset circuit is connected, thereby resetting the smart lock body 1, making operation more convenient.

[0060] The first triggering portion may be a protrusion provided on the sliding cover 2 .

[0061] In a combined embodiment, Figures 1 to 4 As shown, the triggered member includes a button 4, the slide 2 is the trigger member body, and the first trigger portion on the slide 2 is the pressing portion 5. The first trigger portion is connected to the inner side of the slide 2, and the button 4 is connected to the smart lock body 1 and is located on the inner side of the slide 2.

[0062] Under normal circumstances, the slider 2 is in the first position, the first trigger unit is separated from the button 4, the button 4 is not pressed, and the reset circuit is disconnected. When the control system of the smart lock body 1 freezes, the user drives the slider 2 from the first position to the second position, and the first trigger unit presses the button 4, which connects the reset circuit and resets the smart lock body 1.

[0063] In another combination embodiment, Figure 5 and Figure 6 As shown, the triggered member includes a contact 6, the slide 2 is the trigger member body, and the first trigger portion on the slide 2 is the conductive member 7. The first trigger portion is connected to the inner side of the slide 2, and the contact 6 is connected to the smart lock body 1 and is located on the inner side of the slide 2.

[0064] Under normal circumstances, the slider 2 is in the first position, at which point the conductive member 7 is separated from the contact 6, disconnecting the reset circuit. When the control system of the smart lock body 1 freezes, the user drives the slider 2 from the first position to the second position, at which point the conductive member 7 contacts the contact 6, connecting the reset circuit and resetting the smart lock body 1.

[0065] In a further embodiment, Figures 1 to 6 As shown, the smart lock body 1 is provided with a mechanical keyhole 8. Inserting a mechanical key into the mechanical keyhole 8 can directly unlock the smart lock body 1. When the sliding cover 2 slides to the first position, the sliding cover 2 covers the mechanical keyhole 8, blocking the mechanical keyhole 8. When the sliding cover 2 slides to the second position, the sliding cover 2 leaves the mechanical keyhole 8, revealing the mechanical keyhole 8.

[0066] In this way, if the control system freezes, the user drives the slider 2 from the first position to the second position, causing the triggering element to be triggered by the first triggering portion on the slider 2, thereby energizing the reset circuit and resetting the smart lock body 1. The user can then unlock the smart lock using conventional unlocking methods such as fingerprint recognition and facial recognition. If the reset fails, the mechanical keyhole 8 is exposed, allowing the user to directly unlock the lock using the mechanical key. This provides users with more options when the control system of the smart lock body 1 freezes.

[0067] In a further embodiment, the sliding cover 2 can also slide between the first position and the third position. When the sliding cover 2 slides to the third position, the sliding cover 2 leaves the mechanical keyhole 8, and the first triggering portion is separated from the triggered member.

[0068] With this arrangement, if the control system freezes and the user needs to unlock the door using the mechanical key, they can drive the slide cover 2 from the first position to the third position. At this point, the slide cover 2 will move away from the mechanical key hole 8, and the mechanical key hole 8 will be exposed, allowing the user to directly unlock the door using the mechanical key. However, at this point, the first triggering unit will be separated from the triggered component, and the reset circuit will not be triggered, thus preventing the reset circuit from being ineffectively connected.

[0069] If the user needs to unlock the smart lock using conventional unlocking methods such as fingerprint recognition and facial recognition, the user can drive the slider 2 to slide from the first position to the second position, so that the triggering member is triggered by the first triggering portion on the slider 2, the reset circuit is connected, the smart lock body 1 is reset, and the user can unlock the smart lock using conventional unlocking methods. If the reset fails, the mechanical key hole 8 is exposed at this time, and the user can directly use the mechanical key to unlock the smart lock.

[0070] In a further embodiment, the first position, the third position, and the second position are sequentially arranged, i.e., the third position is located between the first position and the second position. When the slider 2 slides from the first position to the second position, it passes through the third position. When the user moves the slider 2 from the first position to the third position, the mechanical keyhole 8 leaks, but the reset circuit is not engaged. However, when the slider 2 is further slid to the second position, the reset circuit is engaged.

[0071] In this way, the user can directly slide the sliding cover 2 from the third position to the second position without returning to the first position, which makes the operation more convenient.

[0072] In an optional embodiment, if Figures 7 to 10 As shown, the triggering member includes a flip cover 3 and a second triggering portion, the second triggering portion being connected to the flip cover 3. A hinged seat is provided on the smart lock body 1, and a first side of the flip cover 3 is rotatably connected to the hinged seat, thereby enabling the flip cover 3 to be reversibly connected to the smart lock body 1. The second side of the flip cover 3 can rotate about the first side, thereby causing the flip cover 3 to flip relative to the smart lock body 1. When the flip cover 3 flips, it can flip between a first position and a second position. The triggered member is connected to the smart lock body 1.

[0073] When the flip cover 3 is flipped to the first position, the second triggering portion is separated from the triggered member and the reset circuit is disconnected. When the flip cover 3 is flipped to the second position, the second triggering portion contacts the triggered member, the triggered member is triggered and the reset circuit is connected.

[0074] With this arrangement, when the control system of the smart lock body 1 crashes, the user drives the flip cover 3 to flip from the first position to the second position, so that the triggered member is triggered and the reset circuit is connected, thereby resetting the smart lock body 1 and making the operation more convenient.

[0075] The second triggering portion may be a protrusion provided on the flip cover 3 .

[0076] In a combined embodiment, Figure 7 and Figure 8 As shown, the triggered member includes a button 4, the flip cover 3 is the trigger member body, and the second trigger portion on the flip cover 3 is the pressing portion 5. The second trigger portion is connected to the inner side of the second side of the flip cover 3, and the button 4 is connected to the smart lock body 1 and is located on the inner side of the second side of the flip cover 3.

[0077] Under normal circumstances, the flip cover 3 is in the first position, the second trigger unit is separated from the button 4, the button 4 is not pressed, and the reset circuit is disconnected. When the control system of the smart lock body 1 crashes, the user drives the flip cover 3 to flip from the first position to the second position, at which time the second trigger unit presses the button 4, connecting the reset circuit and resetting the smart lock body 1.

[0078] In another combination embodiment, Figure 9 and Figure 10 As shown, the triggered member includes a contact 6, the flip cover 3 is the trigger member body, and the second trigger part on the flip cover 3 is the conductive member 7. The second trigger part is connected to the inner side of the flip cover 3, and the contact 6 is connected to the smart lock body 1 and is located on the inner side of the flip cover 3.

[0079] Under normal circumstances, the flip cover 3 is in the first position, at which point the conductive member 7 is separated from the contact 6, and the reset circuit is disconnected. When the control system of the smart lock body 1 freezes, the user drives the flip cover 3 to flip from the first position to the second position, at which point the conductive member 7 contacts the contact 6, connecting the reset circuit and resetting the smart lock body 1.

[0080] In an optional embodiment, if Figures 7 to 10As shown, the smart lock body 1 is provided with a mechanical keyhole 8 and a locking structure. The flip cover 3 can also flip between a first position and a third position when flipped. When the flip cover 3 is flipped to the first position, the flip cover 3 can cover the mechanical keyhole 8. When the flip cover 3 is flipped to the third position, the flip cover 3 is away from the mechanical keyhole 8, at which point the mechanical keyhole 8 leaks out. When the locking structure switches to the locked state, the flip cover 3 is restricted from flipping from the first position to the third position. When the locking structure switches to the unlocked state, the restriction on the flip cover 3 is lifted, and the flip cover 3 can flip from the first position to the third position.

[0081] When the flip cover 3 is flipped from the first position to the second position, the state of the locking structure is switched. When the flip cover 3 is flipped from the first position to the second position again, the state of the locking structure is switched again.

[0082] Under normal circumstances, the flip cover 3 is in the first position, and the locking mechanism is locked. If the control system of the smart lock body 1 freezes, the user drives the flip cover 3 from the first position to the second position. At this time, the conductive member 7 contacts the contact 6, energizing the reset circuit and resetting the smart lock body 1. At this point, the control system can operate normally, and the user can unlock the smart lock using conventional unlocking methods such as fingerprint recognition and facial recognition.

[0083] At the same time, when the flip cover 3 is flipped to the second position, the locking mechanism switches to the unlocked state. After returning to the first position, the flip cover 3 can be flipped to the third position, allowing the flip cover 3 to move away from the mechanical keyhole 8, thereby exposing the mechanical keyhole 8. At this point, the user can insert the mechanical key into the mechanical keyhole 8 to directly unlock the smart lock body 1. This provides the user with more options in the event that the control system of the smart lock body 1 freezes.

[0084] Thereafter, the flip cover 3 is flipped from the third position to the first position, covering the mechanical keyhole 8. The flip cover 3 is then flipped from the first position to the second position, causing the locking mechanism to switch to the locked state. Once the flip cover 3 returns to the first position, it is restrained by the locking mechanism and cannot be flipped to the third position, thereby ensuring that the flip cover 3 protects the mechanical keyhole 8.

[0085] Specifically, the locking structure is a push-type lock. A push-type lock is a commonly used structure that locks or unlocks two components by physically pressing. It includes a push rod and a base, wherein the push rod is connected to the first component and the base is connected to the second component. When the push rod is inserted into the base and pressed in the direction of insertion into the base, the push rod connects with the mechanical structure in the base to form a lock, thereby fixedly connecting the first component and the second component. When the push rod is inserted into the base and pressed in the direction of insertion into the base, the push rod separates from the mechanical structure in the base and unlocks, allowing the push rod to separate from the base and the first component to separate from the second component.

[0086] In this way, the push rod is connected to the inner side surface of the second side of the flip cover 3, and the base is connected to the smart lock body 1 and is located on the inner side of the second side of the flip cover 3. Under normal circumstances, the flip cover 3 is in the first position, the push rod is inserted into the base, and the push rod is connected to the mechanical structure in the base to form a lock. When the flip cover 3 is pressed to flip the flip cover 3 to the second position, the push rod is pressed in the direction of insertion into the base, and the push rod is separated from the mechanical structure in the base and unlocked. At this time, the push rod can leave the base and the flip cover 3 can be flipped from the first position to the third position. After the flip cover 3 returns to the first position, the push rod is inserted into the base. At this time, when the flip cover 3 is pressed again to flip the flip cover 3 to the second position, the push rod is pressed in the direction of insertion into the base, and the push rod is connected to the mechanical structure in the base to form a lock. After the flip cover 3 returns to the first position, it cannot be flipped to the third position.

[0087] According to an embodiment of the present application, on the other hand, a smart lock is also provided, including any of the above smart lock reset components. The technical effect brought by the smart lock is consistent with that of the smart lock reset component, so it will not be repeated.

[0088] Although the embodiments of the present application are described in conjunction with the accompanying drawings, those skilled in the art may make various modifications and variations without departing from the spirit and scope of the present application, and such modifications and variations shall fall within the scope defined by the present application.

Claims

1. A smart lock reset component, characterized in that: include: A reset circuit, a triggered component and a trigger component, wherein the reset circuit is electrically connected to a power supply of the smart lock body (1), the trigger component is connected to the reset circuit, and the trigger component is connected to the smart lock body (1) and can move between a first position and a second position, wherein: When the triggering member is in the first position, the triggering member is separated from the triggered member, and the reset circuit is disconnected; When the triggering member is in the second position, the triggering member contacts and triggers the triggered member, the reset circuit is connected, and the smart lock body (1) is reset.

2. The smart lock reset assembly according to claim 1, characterized in that: The trigger member comprises a sliding cover (2) and a first trigger portion connected to the sliding cover (2); the sliding cover (2) is slidably connected to the smart lock body (1); the sliding cover (2) can slide between the first position and the second position, wherein When the sliding cover (2) slides to the first position, the first triggering portion is separated from the triggered component, and the reset circuit is disconnected; When the sliding cover (2) slides to the second position, the first triggering portion contacts and triggers the triggered component, the reset circuit is connected, and the smart lock body (1) is reset.

3. The smart lock reset assembly according to claim 2, characterized in that: The smart lock body (1) is provided with a mechanical keyhole (8), wherein: When the sliding cover (2) slides to the first position, the sliding cover (2) covers the mechanical keyhole (8); When the sliding cover (2) slides to the second position, the sliding cover (2) leaves the mechanical keyhole (8).

4. The smart lock reset assembly according to claim 3, characterized in that: The sliding cover (2) can also slide between the first position and a third position. When the sliding cover (2) slides to the third position, the sliding cover (2) leaves the mechanical keyhole (8), the first triggering part is separated from the triggered part, and the reset circuit is disconnected.

5. The smart lock reset assembly according to claim 4, characterized in that: The first position, the third position and the second position are arranged in sequence along the sliding direction of the sliding cover (2).

6. The smart lock reset assembly according to claim 1, characterized in that: The trigger member comprises a flip cover (3) and a second trigger portion connected to the flip cover (3); the flip cover (3) is flipably connected to the smart lock body (1); the flip cover (3) can be flipped between the first position and the second position, wherein: When the flip cover (3) is flipped to the first position, the second triggering portion is separated from the triggered component, and the reset circuit is disconnected; When the flip cover (3) is flipped to the second position, the second triggering portion contacts and triggers the triggered member, the reset circuit is connected, and the smart lock body (1) is reset.

7. The smart lock reset assembly according to claim 6, characterized in that: The smart lock body (1) is provided with a mechanical keyhole (8) and a locking structure, and the flip cover (3) can also flip between the first position and the third position. When the locking structure switches to the locked state, the flip cover (3) is restricted from flipping from the first position to the third position. When the locking structure switches to the unlocked state, the flip cover (3) can flip from the first position to the third position, wherein, When the flip cover (3) is flipped to the first position, the flip cover (3) covers the mechanical keyhole (8); When the flip cover (3) is flipped to the second position, the locking structure switches between a locked state and an unlocked state; When the flip cover (3) is flipped to the third position, the flip cover (3) leaves the mechanical keyhole (8).

8. The smart lock reset assembly according to claim 1, characterized in that: The triggered component includes a button (4) connected to the reset circuit, and the trigger component includes a pressing portion (5), wherein: When the trigger member is in the first position, the pressing portion (5) is separated from the button (4), and the reset circuit is disconnected; When the trigger member is in the second position, the pressing portion (5) contacts and presses the button (4), and the reset circuit is turned on.

9. The smart lock reset assembly according to claim 1, characterized in that: The triggered component includes a contact (6) connected to the reset circuit, and the trigger component includes a conductive component (7), wherein: When the trigger member is in the first position, the contact (6) is separated from the conductive member (7), and the reset circuit is disconnected; When the trigger member is in the second position, the conductive member (7) contacts the contact point (6), and the reset circuit is connected.

10. A smart lock, characterized in that: Includes the smart lock reset component according to any one of claims 1-9.