CN220747931U - Intelligent lock with intelligent lock core and door with intelligent lock - Google Patents

Intelligent lock with intelligent lock core and door with intelligent lock Download PDF

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Publication number
CN220747931U
CN220747931U CN202322451875.0U CN202322451875U CN220747931U CN 220747931 U CN220747931 U CN 220747931U CN 202322451875 U CN202322451875 U CN 202322451875U CN 220747931 U CN220747931 U CN 220747931U
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China
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module
lock
lock core
control module
intelligent
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CN202322451875.0U
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Chinese (zh)
Inventor
赵晨
祝志凌
桑胜伟
黄兴主
陈万国
陈晨
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Zhejiang Deboman Intelligent Manufacturing Co ltd
Zhejiang Deshiman Technology Intelligence Co ltd
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Zhejiang Deboman Intelligent Manufacturing Co ltd
Zhejiang Deshiman Technology Intelligence Co ltd
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Priority to CN202322451875.0U priority Critical patent/CN220747931U/en
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Abstract

The utility model relates to the technical field of intelligent locks, and discloses an intelligent lock with an intelligent lock core and a door with the intelligent lock, which comprises the following components: the system comprises a first intelligent lock system, a second intelligent lock system and a total control module, wherein the first intelligent lock system comprises a verification module, an unlocking motor and a main power module, and the main power module supplies power to the verification module, the unlocking motor and the main power module; the second intelligent lock system comprises a lock cylinder energy storage module, a lock cylinder interaction module and a lock cylinder motor, wherein the lock cylinder energy storage module is used for supplying power for the lock cylinder interaction module and the lock cylinder motor; the master control module is electrically connected with the verification module, the master power module, the lock cylinder energy storage module and the lock cylinder motor respectively, and is configured to be performed by one of the master power module and the lock cylinder energy storage module. The intelligent lock solves the problem that the intelligent lock needs to rely on a portable power supply when the power supply is exhausted or needs to rely on a mechanical key to unlock the door.

Description

Intelligent lock with intelligent lock core and door with intelligent lock
Technical Field
The utility model relates to the technical field of intelligent locks, in particular to an intelligent lock with an intelligent lock core and a door with the intelligent lock.
Background
The intelligent lock is different from a common mechanical lock, is provided with an automatic electronic sensing locking system, and can automatically lock when the door is automatically sensed to be in a closed state. The intelligent lock can unlock the door lock by means of identifying and comparing biological information such as fingerprints, touch screens, encrypted door cards and the like or password information and the like.
In the related art, an intelligent lock generally relies on a power supply carried by the intelligent lock to provide power for a main control system and other loads. When the power supply of the intelligent lock is exhausted, a user generally searches for a power supply such as a charger or a battery pack for emergency power supply to unlock.
According to the above related art, the inventor believes that it is troublesome for a user to find a portable power source such as a charger when the smart lock power source is exhausted, and the user generally does not carry a mechanical key after using the smart lock, which brings great inconvenience to the user.
Disclosure of Invention
In view of the above, the utility model provides an intelligent lock with an intelligent lock core and a door with the intelligent lock, so as to solve the problem that the intelligent lock needs to rely on a portable power supply when the power supply is exhausted or needs to rely on a mechanical key to unlock the door.
In a first aspect, the utility model provides an intelligent lock with an intelligent lock core, comprising a first intelligent lock system, a first intelligent lock system and a second intelligent lock system, wherein the first intelligent lock system comprises a verification module, an unlocking motor and a main power module, the verification module is used for detecting and comparing biological information or password information of a user, and sending a signal of successful matching after the biological information or password information of the user is successfully matched, the unlocking motor is used for receiving an unlocking command and driving a lock to unlock after receiving the unlocking command, and the main power module is used for supplying power for the verification module and the unlocking motor; the second intelligent lock system comprises a lock cylinder interaction module, a lock cylinder motor and a lock cylinder energy storage module, wherein the lock cylinder interaction module is used for receiving and comparing key information stored by a user mobile device, sending a successfully matched signal after the key information is successfully matched, the lock cylinder motor is used for receiving an unlocking command and driving a lock to unlock after receiving the unlocking command, and the lock cylinder energy storage module is used for supplying power for the lock cylinder interaction module and the lock cylinder motor; the master control module is electrically connected with the verification module, the unlocking motor, the main power supply module, the lock cylinder interaction module, the lock cylinder motor and the lock cylinder energy storage module respectively, and is used for receiving a successfully matched signal sent by the verification module or the lock cylinder interaction module, sending an unlocking command to the unlocking motor or the lock cylinder motor after receiving the successfully matched signal, and being configured to be powered by one of the main power supply module and the lock cylinder energy storage module.
The beneficial effects are that: in the normal use process, the main power supply module supplies power to the main control module, the first intelligent lock system completes detection and comparison of biological information or password information of a user and performs unlocking action, and the electric quantity of the main power supply module is not consumed at the moment; when the electric quantity of the main power supply module is exhausted, the second intelligent lock system starts to work, the lock cylinder energy storage module supplies power to the intelligent lock, a user performs information interaction with the lock cylinder interaction module through the mobile device to complete information matching of a secret key, and the lock is driven by the lock cylinder motor to complete unlocking actions.
In an alternative embodiment, the master control module includes a master control module and a lock core control module, the master control module is electrically connected with the unlocking motor, the verification module and the main power module, the lock core control module is electrically connected with the lock core energy storage module, the lock core interaction module and the lock core motor, the master control module is configured to receive a successfully matched signal from the verification module and send an unlocking command to the unlocking motor, the lock core control module is configured to receive successfully matched information from the lock core interaction module and send an unlocking command to the lock core motor, the master control module is configured to be powered by the main power module, and the lock core control module is configured to be powered by the lock core energy storage module.
The beneficial effects are that: the main control module controls the modules in the first intelligent lock system, the modules in the first intelligent lock system and the main control module are powered by the main power supply module, the lock cylinder control module controls the modules in the second intelligent lock system, and the lock cylinder control module and the modules in the second intelligent lock system are powered by the lock cylinder energy storage module, so that when the modules in the first intelligent lock system fail or the electric quantity of the main power supply module is exhausted, users can independently complete unlocking by using the second intelligent lock system, the condition that the users need to rely on a mechanical key to unlock due to the failure of the intelligent lock system is avoided, and convenience is further improved.
In an alternative embodiment, the main power module is electrically connected to the lock cylinder energy storage module, and is used for charging the lock cylinder energy storage module in case the lock cylinder energy storage module is not full.
The beneficial effects are that: the lock core energy storage module is charged through the main power module, the electric quantity of the lock core energy storage module is kept full under the condition that the main power module is somewhat, the condition that the electric quantity of the lock core energy storage module is insufficient for supporting the second intelligent lock system to work when the electric quantity of the main power module is exhausted is avoided, the working time of the second intelligent lock system is prolonged as much as possible, and longer time is striven for a user to charge the intelligent lock or replace a battery.
In an alternative embodiment, the lock cylinder energy storage module is a lithium battery or a super capacitor.
The beneficial effects are that: the applicability of the intelligent lock to accessories is improved, and the dependence on specific accessories is reduced, so that the production cost is reduced.
In an alternative embodiment, the system further comprises a display module, a voice module and a networking module, wherein the display module, the voice module and the networking module are all electrically connected with the main control module, and the display module, the voice module and the networking module are all configured to be powered by the main power module.
The beneficial effects are that: through display module, voice module and networking module user can obtain intelligent lock's operating condition and other relevant information through multiple route, makes intelligent lock's use more intelligent and convenient.
In an alternative embodiment, the master control module is electrically connected to the lock cylinder control module, and the master control module is configured to send key information to the lock cylinder control module.
The beneficial effects are that: when a user needs to bind mobile equipment such as a mobile phone and the intelligent lock when using the intelligent lock for the first time, the master control module is electrically connected with the lock core control module, so that when the user is bound with the master control device of the first intelligent lock system, the master control module sends a key generated by the master control module or the mobile equipment of the user to the lock core control module without secondary binding between the user and the module of the second intelligent lock system, the operation is simplified, and the user experience is improved.
In an alternative embodiment, the lock cylinder interaction module is a bluetooth module.
The beneficial effects are that: the range limitation of the Bluetooth module enables the lockset to be safer, meanwhile, the Bluetooth module is wide in application range, and most of modern mobile terminal equipment such as mobile phones and tablets are provided with the Bluetooth module, so that requirements on the mobile terminal equipment of users are reduced, and convenience is improved.
In an alternative embodiment, the verification module includes any one or more of a fingerprint module, a password module, and a face recognition module.
The beneficial effects are that: fingerprint module, face identification module and cipher module all need not the user to carry other equipment or article cooperation to the information of discernment is all difficult to imitate, verifies convenient and the security is high.
In an alternative embodiment, the lock cylinder energy storage module is configured to support the second smart lock system to unlock the lock more than 50 times when fully charged.
The beneficial effects are that: the cruising ability of the second intelligent lock system enables a user to have sufficient time to charge, replace or repair the intelligent lock under the condition that the user can unlock.
In a second aspect, the utility model also provides a door with the intelligent lock, and the intelligent lock with the intelligent lock core is arranged.
The beneficial effects are that: because the door with the intelligent lock comprises the intelligent lock with the intelligent lock core, the door with the intelligent lock has the same effect as the intelligent lock with the intelligent lock core, and the details are not repeated here.
Drawings
In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the drawings that are needed in the description of the embodiments or the prior art will be briefly described, and it is obvious that the drawings in the description below are some embodiments of the present utility model, and other drawings can be obtained according to the drawings without inventive effort for a person skilled in the art.
FIG. 1 is a diagram of the information interaction relationship of an intelligent lock with an intelligent lock core according to an embodiment of the present utility model;
FIG. 2 is a diagram of the power supply relationship of an intelligent lock with an intelligent lock core according to an embodiment of the present utility model;
FIG. 3 is a diagram showing the information interaction relationship between a master control module and a lock cylinder control module and other modules according to an embodiment of the present utility model;
fig. 4 is a power supply relationship diagram of a master control module and a lock cylinder control module, and a first intelligent lock system and a second intelligent lock system according to an embodiment of the present utility model.
Reference numerals illustrate:
100. a master control module; 101 a main control module; 102 a lock cylinder control module; 200. a verification module; 300. a lock core interaction module; 400. unlocking a motor; 500. a lock core motor; 600. a main power module; 700. a lock cylinder energy storage module; 800. other loads.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present utility model more apparent, the technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model, and it is apparent that the described embodiments are some embodiments of the present utility model, but not all embodiments of the present utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
In the related art, most intelligent locks need to temporarily supply power to the intelligent lock or change a battery to enable the intelligent lock to resume working by searching for a charger when the power supply quantity of the intelligent lock is exhausted, or the user can unlock the intelligent lock by using a mechanical key, but the user generally cannot carry the mechanical key after using the intelligent lock, and the user also hardly carries the charger or the battery with him, so great inconvenience is brought to the user.
This application is to the condition that the user need rely on precious portable power source or mechanical key that charges to unblank when intelligent lock power supply is spent, a system that possesses two sets of ability to possess the intelligent lock of two sets of powers, one set of system and one set of power cooperation satisfy the daily use needs of intelligent lock system, and another set of system and another set of power cooperation are unblanked the intelligent lock under emergency such as first set of power electric quantity is spent, the user need not to rely on portable power source or mechanical key to unblank, and the user has sufficient time to charge to the intelligent lock under the circumstances that can unblank, change operations such as battery or maintenance, greatly promote user experience.
Embodiments of the present utility model are described below with reference to fig. 1 to 4.
As shown in fig. 1 and 2, according to an aspect of the present utility model, there is provided an intelligent lock device provided with an intelligent lock cylinder, including: the first intelligent lock system, the intelligent lock system includes a verification module 200, an unlocking motor 400 and a main power module 600, the verification module 200 is used for detecting and comparing the biological information or the password information of the user, and sending a signal of successful matching after the biological information or the password information of the user is successfully matched, the unlocking motor 400 is used for receiving an unlocking command and driving the lockset to unlock after receiving the unlocking command, and the main power module 600 is used for supplying power to the verification module 200 and the unlocking motor 400;
the second intelligent lock system comprises a lock cylinder interaction module 300, a lock cylinder motor 500 and a lock cylinder energy storage module 700, wherein the lock cylinder interaction module 300 is used for receiving and comparing key information stored by a user mobile device, sending out a successfully matched signal after the key information is successfully matched, the lock cylinder motor 500 is used for receiving an unlocking command and driving a lock to unlock after the unlocking command is received, and the lock cylinder energy storage module 700 is used for supplying power for the lock cylinder interaction module 300 and the lock cylinder motor 500;
the master control module 100 is electrically connected with the verification module 200, the unlocking motor 400, the main power module 600, the lock cylinder interaction module 300, the lock cylinder motor 500 and the lock cylinder energy storage module 700, respectively, and the master control module 100 is configured to receive a signal of successful matching sent by the verification module 200 or the lock cylinder interaction module 300, send an unlocking command to the unlocking motor 400 or the lock cylinder motor 500 after receiving the signal of successful matching, and be powered by one of the main power module 600 and the lock cylinder energy storage module 700.
Specifically, the first intelligent lock system performs unlocking operation under the condition that the main power module 600 is powered on, the verification module 200 collects and compares biological information or password information of a user, the verification module 200 sends a signal of successful matching to the overall control module 100 under the condition that the information matching is successful, the overall control module 100 sends an unlocking command to the unlocking motor 400 after receiving the signal of successful matching, the electric lock motor drives the lockset to unlock after receiving the unlocking command, an unlocking process under a normal working state is completed, the modules working in the unlocking process under the normal working state are powered on by the main power module 600, and the electric quantity of the lock cylinder energy storage module 700 is not consumed;
the second intelligent lock system performs unlocking work under the condition that the electric quantity of the main power supply module 600 is exhausted, key information stored by the mobile equipment of the user is collected and compared by the lock cylinder interaction module 300, the lock cylinder interaction module 300 sends a signal of successful matching to the total control module 100 under the condition that the key matching is successful, the total control module 100 sends an unlocking command to the lock cylinder motor 500 after receiving the signal of successful matching, the lock cylinder motor 500 drives the lock to unlock after receiving the unlocking command, and the unlocking process under the emergency state that the electric quantity of the main power supply module 600 is exhausted is completed. The modules working in the unlocking process in the emergency state are all powered by the lock cylinder energy storage module 700, so that the normal work of each module is ensured.
In this embodiment, on the one hand, the second intelligent lock system has independent unlocking capability and possesses independent power supply, need not to rely on portable power source or mechanical key to unblank when main power module 600 electric quantity is spent, thereby promotes the convenience of use and promotes the practicality, on the other hand, because the second intelligent lock system can independently accomplish the flow of unblanking, when arbitrary module trouble in the first intelligent lock, the user still can unlock through the second intelligent lock system, has greatly promoted intelligent lock reliability and convenience.
As shown in fig. 3 and 4, in one embodiment, the overall control module 100 includes a master control module 101 and a key cylinder control module 102, the master control module 101 is electrically connected with the unlocking motor 400, the authentication module 200, and the main power module 600, the key cylinder control module 102 is electrically connected with the key cylinder energy storage module 700, the key cylinder interaction module 300, and the key cylinder motor 500, respectively, the master control module 101 is configured to receive a successful match signal from the authentication module 200 and send an unlocking command to the unlocking motor 400, the key cylinder control module 102 is configured to receive a successful match message from the key cylinder interaction module 300 and send an unlocking command to the key cylinder motor 500, the master control module 101 is configured to be powered by the main power module 600, and the key cylinder control module 102 is configured to be powered by the key cylinder energy storage module 700.
Specifically, in the case that the main power module 600 is powered on, the verification module 200 sends a signal that the information matching is successful to the main control module 101 in the state that the information matching is successful, and the main control module 101 sends an unlocking command to the unlocking motor 400 after receiving the signal that the information matching is successful;
in the case that the power of the main power module 600 is exhausted, the lock cylinder interaction module 300 transmits a signal of successful information matching to the lock cylinder control module 102 in a state of successful information matching, and the lock cylinder control module 102 transmits an unlocking command to the lock cylinder motor 500 after receiving the signal of successful information matching.
When any module in the main control module 101 or the first intelligent lock system fails, the user performs unlocking through the cooperation of the second intelligent lock system and the lock cylinder control module 102.
In this embodiment, the total control module 100 includes the master control module 101 and the lock core control module 102, so that the situation that the user needs to rely on a mechanical key to unlock due to the failure of any module in the master control module 101 or the first intelligent lock system is successfully avoided, and convenience is further improved.
In one embodiment, the main power module 600 is electrically connected to the key cylinder energy storage module 700, and the main power module 600 is used to charge the key cylinder energy storage module 700 in case the power of the key cylinder energy storage module 700 is not full.
In this embodiment, the main power module 600 charges the lock core energy storage module 700, so that the charge of the power of the lock core energy storage module 700 is maintained under the condition that the main power module 600 is somewhat, the situation that the power of the lock core energy storage module 700 is insufficient to support the second intelligent lock system to work when the power of the main power module 600 is exhausted is avoided, the working time of the second intelligent lock system is prolonged as much as possible, and a longer time is strived for a user to charge the intelligent lock or replace a battery.
In one embodiment, the lock cylinder energy storage module 700 is a lithium battery or a super capacitor.
Specifically, a lithium battery or a super capacitor adopted by the energy storage module can support the second intelligent lock system to be independently unlocked for at least more than 50 times, so that the cruising ability of the second intelligent lock system is ensured.
In this embodiment, the lock core energy storage module 700 adopts a lithium battery or a super capacitor to supply power for the second intelligent lock system, so that the applicability of the intelligent lock with the intelligent lock core to accessories is improved, and the dependence on specific accessories is reduced, thereby facilitating mass production and reducing production cost.
In one embodiment, other loads 800 are also included, the other loads 800 including a display module, a voice module, and a networking module, each of which is electrically connected to the main control module 101, the display module, the voice module, and the networking module being configured to be powered by the main power module 600.
Specifically, the display module is a display screen arranged on the intelligent lock, and information, state and operation prompt of the intelligent lock are displayed to a user in an image or text mode; the voice module is a loudspeaker arranged on the intelligent lock and used for playing voice prompts to a user or giving an alarm; and the networking module accesses the first intelligent lock system into the Internet, so that the remote interaction between the first intelligent lock system and the equipment end is completed.
Further, the remote interaction target may be a mobile device of the user, such as a mobile phone, a tablet computer, a smart bracelet, etc., or may be an information terminal of the police.
In this embodiment, the user may obtain the working state and other relevant information of the intelligent lock through multiple ways through the display module, the voice module and the networking module, so that the intelligent lock is more intelligent and convenient to use.
In one embodiment, the master control module 101 is electrically connected to the key cylinder control module 102, and the master control module 101 is configured to send key information to the key cylinder control module 102.
Specifically, when the user uses the smart lock for the first time, the mobile device such as a mobile phone and the smart lock need to be bound, the key information is generated by the main control module 101 or the mobile device of the user, the main control module 101 synchronously sends the key information to the lock core control module 102, and the key information is received and stored by the lock core control module 102.
In this embodiment, the master control module 101 sends the key generated by the master control module 101 or the user mobile device to the lock core control module 102 without secondary binding between the user and the module of the second smart lock system, which simplifies the operation and improves the user experience.
In one embodiment, lock cylinder interaction module 300 is a bluetooth module.
In this embodiment, the range limitation of the bluetooth module makes the lock safer, and bluetooth module application scope is very wide simultaneously, and modern mobile terminal devices such as cell-phone, tablet are mostly equipped with bluetooth module, has consequently reduced the requirement to user's mobile terminal device, promotes the convenience.
In one embodiment, the authentication module 200 includes any one or more of a fingerprint module, a password module, and a face recognition module.
It should be further noted that, when the authentication module 200 includes a plurality of fingerprint modules, password modules, and face recognition modules, the authentication module 200 may be configured differently according to the user's selection.
Specifically, the verification module 200 may be configured to send a signal of successful matching after the information compared by the various modules is successfully matched; under another configuration, the verification module 200 may be configured to send a signal of successful matching after the information compared by any one of the multiple modules is successfully matched, so that the user may freely select the configuration mode of the verification module 200 according to the need.
In this embodiment, fingerprint module, face identification module and cryptographic module all need not the user to carry other equipment or article cooperation to the information of discernment is all difficult to imitate, verifies convenient and the security is high.
According to an embodiment of the present utility model, in another aspect, there is also provided a door with an intelligent lock, using the intelligent lock with an intelligent lock core according to any of the above embodiments.
In one embodiment, the lock cylinder energy storage module 700 is configured to be able to support the second smart lock system to unlock the lock 50 more times when fully charged.
Specifically, the lock cylinder energy storage module 700 selects a lithium battery or super capacitor with sufficient maximum power storage capacity to support the operation of the second smart lock system.
In this embodiment, the lock cylinder energy storage module 700 with sufficient maximum electric storage capacity is selected to ensure the cruising ability of the second intelligent lock system, so that the user has sufficient time to perform operations such as charging, battery replacement or maintenance on the intelligent lock under the condition that the user can unlock the lock.
In this embodiment, because the smart lock that possesses the smart lock core that sets up on the door has first smart lock system and second smart lock system simultaneously, first smart lock system is by main power module 600 power supply, second smart lock system is by lock core energy storage module 700 power supply, and the unblock flow can independently be accomplished to first smart lock system and second smart lock system, therefore the user need not to rely on portable power source or mechanical key to unblank when main power module 600 electric quantity is exhausted, thereby promote the practicality of use convenience, on the other hand, because including lock core motor 500 in the second smart lock system, when unblanking motor 400 trouble, the user still can pass through the second smart lock system.
Although embodiments of the present utility model have been described in connection with the accompanying drawings, various modifications and variations may be made by those skilled in the art without departing from the spirit and scope of the utility model, and such modifications and variations fall within the scope of the utility model as defined by the appended claims.

Claims (10)

1. An intelligent lock with an intelligent lock core, comprising:
the first intelligent lock system comprises a verification module (200), an unlocking motor (400) and a main power supply module (600), wherein the verification module (200) is used for detecting and comparing biological information or password information of a user, and sending a signal of successful matching after the biological information or password information of the user is successfully matched, the unlocking motor (400) is used for receiving an unlocking command and driving a lockset to unlock after the unlocking command is received, and the main power supply module (600) is used for supplying power for the verification module (200) and the unlocking motor (400);
the second intelligent lock system comprises a lock cylinder interaction module (300), a lock cylinder motor (500) and a lock cylinder energy storage module (700), wherein the lock cylinder interaction module (300) is used for receiving and comparing key information stored by a user mobile device, and sending a signal of successful matching after the key information is successfully matched, the lock cylinder motor (500) is used for receiving an unlocking command and driving a lock to unlock after the unlocking command is received, and the lock cylinder energy storage module (700) is used for supplying power for the lock cylinder interaction module (300) and the lock cylinder motor (500);
the master control module (100) is electrically connected with the verification module (200), the unlocking motor (400), the main power supply module (600), the lock cylinder interaction module (300), the lock cylinder motor (500) and the lock cylinder energy storage module (700) respectively, the master control module (100) is used for receiving a successfully matched signal sent by the verification module (200) or the lock cylinder interaction module (300) and sending an unlocking command to the unlocking motor (400) or the lock cylinder motor (500) after receiving the successfully matched signal, and the master control module (100) is configured to be powered by one of the main power supply module (600) and the lock cylinder energy storage module (700).
2. The smart lock with smart lock core of claim 1, wherein the overall control module (100) comprises a master control module (101) and a lock core control module (102), the master control module (101) is electrically connected with the unlocking motor (400), the authentication module (200) and the master power module (600) respectively, the lock core control module (102) is electrically connected with the lock core energy storage module (700), the lock core interaction module (300) and the lock core motor (500) respectively, the master control module (101) is configured to receive a successfully matched signal from the authentication module (200) and send an unlocking command to the unlocking motor (400), the lock core control module (102) is configured to receive successfully matched information from the lock core interaction module (300) and send an unlocking command to the lock core motor (500), the master control module (101) is configured to be powered by the master power module (600), and the lock core control module (102) is configured to be powered by the lock core energy storage module (700).
3. The intelligent lock with intelligent lock core according to claim 2, characterized in that the main power supply module (600) is electrically connected with the lock core energy storage module (700), and the main power supply module (600) is used for charging the lock core energy storage module (700) in case the power of the lock core energy storage module (700) is not full.
4. The intelligent lock with the intelligent lock core according to claim 3, wherein the lock core energy storage module (700) is a lithium battery or a super capacitor.
5. The smart lock with the smart lock core of claim 3, further comprising a display module, a voice module, and a networking module, wherein the display module, the voice module, and the networking module are all electrically connected with the master control module (101), and wherein the display module, the voice module, and the networking module are all configured to be powered by the master power module (600).
6. The intelligent lock with the intelligent lock core according to claim 3, wherein the main control module (101) is electrically connected with the lock core control module (102), and the main control module (101) is used for sending key information to the lock core control module (102).
7. The smart lock with the smart lock cylinder of claim 6, wherein the lock cylinder interaction module (300) is a bluetooth module.
8. The smart lock with the smart lock core of claim 1, wherein the authentication module (200) comprises any one or more of a fingerprint module, a password module, and a face recognition module.
9. The smart lock with smart lock core of claim 1, wherein the lock core energy storage module (700) is configured to support the second smart lock system to unlock the lock more than 50 times when fully charged.
10. Door with intelligence lock, its characterized in that: a smart lock provided with a smart lock core according to any one of claims 1 to 8.
CN202322451875.0U 2023-09-08 2023-09-08 Intelligent lock with intelligent lock core and door with intelligent lock Active CN220747931U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322451875.0U CN220747931U (en) 2023-09-08 2023-09-08 Intelligent lock with intelligent lock core and door with intelligent lock

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322451875.0U CN220747931U (en) 2023-09-08 2023-09-08 Intelligent lock with intelligent lock core and door with intelligent lock

Publications (1)

Publication Number Publication Date
CN220747931U true CN220747931U (en) 2024-04-09

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Application Number Title Priority Date Filing Date
CN202322451875.0U Active CN220747931U (en) 2023-09-08 2023-09-08 Intelligent lock with intelligent lock core and door with intelligent lock

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