CN211201433U - Anti-cracking system of intelligent lock, intelligent door and intelligent door lock - Google Patents

Anti-cracking system of intelligent lock, intelligent door and intelligent door lock Download PDF

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Publication number
CN211201433U
CN211201433U CN201921236196.9U CN201921236196U CN211201433U CN 211201433 U CN211201433 U CN 211201433U CN 201921236196 U CN201921236196 U CN 201921236196U CN 211201433 U CN211201433 U CN 211201433U
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China
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controller
chip
port
lock
touch
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CN201921236196.9U
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Chinese (zh)
Inventor
沈汉标
王妙玉
童威云
王�义
邓泉铃
刘双
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Guangdong Hotata Smart Home Co Ltd
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Guangdong Ketyoo Intelligent Technology Co Ltd
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Abstract

The utility model discloses a system of explaiing is prevented to intelligence lock through setting up main control unit, touch control ware and sub-controller, constitutes three kinds of control system, carries out triple protection control to unblanking of intelligence lock, has improved the security of intelligence lock greatly, has solved among the prior art problem that there is great potential safety hazard in intelligence lock. The utility model also provides an intelligent lock and intelligent door of preventing breaking open.

Description

Anti-cracking system of intelligent lock, intelligent door and intelligent door lock
Technical Field
The utility model relates to an intelligence lock especially relates to an intelligence lock prevent explaiing the system, have prevent intelligent lock that explains, prevent the intelligent door of explaiing.
Background
Compared with the traditional mechanical lock, the intelligent lock does not need to use a key, such as fingerprints, passwords and the like, has the advantages of convenience and simplicity in unlocking, high grade and the like, and is more and more popular with people. However, with the popularization of smart locks, the security of smart locks is also a concern. The existing intelligent lock generally inputs fingerprints, passwords, patterns, card swiping and the like through input equipment to realize unlocking of the intelligent lock, but the existing intelligent lock is lack of verification on unlocking, has larger potential safety hazard and leak, is easy to be utilized by lawbreakers, and causes personal or property safety of users.
SUMMERY OF THE UTILITY MODEL
In order to overcome the not enough of prior art, one of the purposes of the utility model is to provide a system is explained in preventing of intelligence lock, it can solve among the prior art the problem that there is the potential safety hazard in the intelligence lock.
The utility model discloses a second purpose provides an intelligent lock that prevents explaiing, and it can solve among the prior art intelligent lock and have the problem of potential safety hazard.
The utility model discloses a third of the purpose provides an intelligent door of preventing explaiing, and it can solve among the prior art intelligent lock and have the problem of potential safety hazard.
The utility model discloses an one of the purpose adopts following technical scheme to realize:
a cracking prevention system of an intelligent lock comprises a touch control system, a main control system and an auxiliary control system, wherein the touch control system comprises a touch controller and touch keys connected with the touch controller, and the touch controller is electrically connected with the touch keys and receives touch signals of the touch keys; the auxiliary control system comprises an auxiliary controller and an unlocking motor connected with the auxiliary controller, wherein the auxiliary controller is used for driving the unlocking motor to work and controlling a lock body connected with the unlocking motor to unlock; the main control system comprises a main controller; the touch controller and the sub-controller are respectively electrically connected with the main controller; the main controller is used for receiving a touch signal of the touch controller, verifying the touch signal and sending a control instruction to the sub controller so that the sub controller drives the unlocking motor to work according to the control instruction; the main controller is also used for controlling the reset operation of the touch controller and the sub controller.
Further, the device also comprises a third-party circuit module; when the third-party circuit module is electrically connected with the main controller, the main controller is used for receiving and verifying data sent by the third-party circuit module, and then executing corresponding operation according to a verification result; when the third-party circuit module is electrically connected with the touch controller or the third-party circuit module is electrically connected with the sub-controller, the main controller receives data sent by the third-party circuit module through the touch controller or the sub-controller, matches and verifies the data, and then executes corresponding operation according to a verification result.
Further, the third-party circuit module includes, but is not limited to, one or more of the following functional modules in combination: fingerprint module, bluetooth module, infrared ray module, voice module, pronunciation broadcast module, WIFI module and warning module.
Further, the master controller comprises a chip U2, a capacitor C76 and a capacitor C9; the ports 19 and 20 of the chip U2 are connected with a power supply; port 17 and port 18 of chip U2 are grounded; the port 19 and the port 20 of the chip U2 are grounded through a filter circuit consisting of a capacitor C76 and a capacitor C9; the port 42 of the chip U2 is connected with the touch controller, and the ports 41, 53 and 54 are connected with the sub controller; the model of the chip U2 is R5F100 MG.
Further, the touch controller includes a chip U12, a capacitor C41, a capacitor C43, a resistor R59, and a resistor R60; port 24 of chip U12 is connected to port 41 of the host controller; the port 42 of the chip U12 is connected with the port 8 of the chip U2, the port 9 of the chip U12 is connected with the port 21 of the chip U2 through a resistor R59, and the port 10 of the chip U12 is connected with the port 22 of the chip U2 through a resistor R60; the model of the chip U12 is CY8C 4045-S412.
Further, the sub-controller includes a chip IC2, a capacitor C8, and a capacitor EC 1; a port 10 of the chip IC2 is grounded, a port 11 of the chip IC2 is connected with a power supply, a port 11 of the chip IC2 is also grounded through a filter circuit consisting of a capacitor C8 and a capacitor EC1, the port 25 of the chip IC2 is connected with a port 41 of a chip U2, a port 30 of the chip IC2 is connected with a port 53 of the chip U2, and a port 29 of the chip IC2 is connected with a port 52 of the chip U2; wherein the model number of the chip IC2 is R5F100 FE.
The second purpose of the utility model is realized by adopting the following technical scheme:
an anti-cracking intelligent door lock comprises a door lock front panel, a door lock rear panel, a lock body arranged between the door lock front panel and the door lock rear panel, and an anti-cracking system of the intelligent lock adopted as one of the purposes of the utility model; a main control panel is arranged in the front panel of the door lock, a rear control panel is arranged in the rear panel of the door lock, and the main control panel and the rear control panel are electrically connected through a connecting wire; the main controller and the touch controller are both installed on the main control panel, the auxiliary controller is installed on the rear control panel, and the auxiliary controller is electrically connected with the lock body through the unlocking motor.
Furthermore, the main control panel is fixedly arranged on the front panel of the door lock through main control panel screws, and the rear control panel is fixedly arranged on the rear panel of the door lock through rear control panel screws.
Furthermore, the main control panel and the rear control panel are both provided with connecting wire plugging connectors, one end of each connecting wire is connected with the connecting wire plugging connector on the main control panel, and the other end of each connecting wire is connected with the connecting wire plugging connector on the rear control panel.
The third purpose of the utility model is realized by adopting the following technical scheme:
an anti-cracking intelligent door comprises a door plate and an anti-cracking intelligent door lock which is installed on the door plate and is adopted as the second purpose of the utility model; the intelligent door lock comprises a door plate, a door lock front panel, a door lock rear panel, a lock body and a door lock, wherein the door lock front panel of the intelligent door lock is arranged on the outer side of the door plate, the door lock rear panel of the intelligent door lock is arranged on the inner side of the door plate, and the lock body is arranged in the; be equipped with the trompil on the door plant, the trompil is used for passing the connecting wire of main control board and back control board, and then realizes that main control board and back control board pass through connecting wire electric connection.
Compared with the prior art, the beneficial effects of the utility model reside in that:
the utility model discloses an adopt three kinds of control system: the touch controller, the main controller and the auxiliary controller realize triple protection of the intelligent lock, and then the problem that the intelligent lock has large potential safety hazards in the prior art is solved.
Drawings
Fig. 1 is a schematic view of an installation structure of the anti-cracking intelligent door lock provided by the utility model;
FIG. 2 is a schematic structural diagram of the main control board in FIG. 1;
FIG. 3 is a schematic structural diagram of the rear control panel of FIG. 1;
FIG. 4 is a circuit schematic of the master controller of FIG. 1;
FIG. 5 is a schematic circuit diagram of the touch controller of FIG. 1;
FIG. 6 is a schematic circuit diagram of the sub-controller of FIG. 1;
FIG. 7 is a circuit diagram of voice playback;
fig. 8 is a circuit diagram of a buzzer;
fig. 9 is a circuit diagram of the anti-pry module.
In the figure: 1. a main controller; 2. a touch controller; 3. a sub-controller; 4. a main control panel; 5. a rear control panel; 6. a connecting wire; 7. a door lock front panel; 8. a door lock rear panel; 9. a lock body; 10. a door panel; 401. A main control panel screw; 402. a first connection line is connected with the plug connector; 501. rear control panel screws; 502. the second connecting wire is connected with the plug connector.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and the detailed description, and it should be noted that the embodiments or technical features described below can be arbitrarily combined to form a new embodiment without conflict.
Example one
The utility model provides a system of preventing cracking of intelligence lock, this system are through setting up three control system, also are major control system, vice control system and touch control system, realize the control of unblanking of intelligence lock, for the intelligence lock provides triple protection, can effectively prevent to explain the means.
The touch control system at least comprises a touch controller and a touch key connected with the touch controller. The touch controller is electrically connected with the touch keys and receives touch signals of the touch keys.
The auxiliary control system at least comprises an auxiliary controller and an unlocking motor connected with the auxiliary controller. The sub-controller is used for driving the unlocking motor to work, and further controlling the unlocking of the lock body connected with the unlocking motor.
The master control system at least comprises a master controller. The touch controller and the sub-controller are respectively electrically connected with the main controller. The main controller is used for receiving the touch signal of the touch controller and verifying the touch signal, and is also used for sending an unlocking instruction to the auxiliary controller, so that the auxiliary controller drives the unlocking motor to work according to the unlocking instruction, the lock body is further controlled to be unlocked, and the control of the intelligent lock is realized.
Additionally, the utility model discloses a guarantee this system security, still control touch control ware and sub-controller's operation that resets through main control unit. That is, when an abnormality occurs in the touch controller or the sub-controller, the reset operation of the touch controller or the sub-controller is controlled by the main controller.
For example, when there is static electricity, intercom, tesla, etc., it can cause the touch controller to malfunction. When the main controller detects that the touch controller is not flexible or abnormal, a reset signal is sent to the touch controller to control the touch controller to reset. In addition, when the main controller sends an instruction to the touch controller and does not obtain correct reply within the preset time, the touch controller is considered to be abnormal; or, when the main controller receives data verification of the touch controller and fails to pass the preset number of times, the touch controller is considered to be abnormal.
In addition, the main controller verifies the touch signal sent by the touch controller, for example, obtains an unlocking password from the touch signal, and then compares the unlocking password with an unlocking password stored in the system to judge whether the unlocking password is consistent with the unlocking password.
When the verification is passed, an unlocking instruction is generated and sent to the auxiliary controller, so that the auxiliary controller drives the unlocking motor to act, and the lock body is unlocked. Because the touch controller is connected with the touch key, namely, the digital password unlocking can be realized through the touch key.
When the verification fails, the current input is considered to be wrong, the main controller cannot generate an unlocking instruction, and unlocking of the intelligent lock cannot be achieved. At this time, the main controller may control other circuit modules, such as a voice module, to prompt the user that the input is incorrect.
Of course, this system not only can realize that the digital code unblanks, can also realize unblanking of other modes, for example bluetooth unblanking, fingerprint unblanking, pattern unblanking etc..
For example, when the bluetooth unlocking is adopted, a bluetooth module needs to be arranged in the system, the anti-cracking system is connected with external mobile equipment through the bluetooth module, and a bluetooth signal sent by external mobile equipment is received.
The system is realized by adopting three control systems, and the controller of each control system is programmable, namely, a programmable main control program is arranged in the main controller, a touch control program is arranged in the touch controller, and a sub-control program is arranged in the sub-controller. The functions of each controller are realized by setting corresponding programmable programs in each controller.
Therefore, if it is needed to realize bluetooth unlocking, the bluetooth module and any one of the controllers in the system can be used, that is: and the Bluetooth unlocking can be realized by connecting the Bluetooth lock with the main controller or the touch controller or the auxiliary controller.
That is to say: when bluetooth module is connected with main control unit, main control unit can directly receive the bluetooth signal that outside mobile device sent through bluetooth module and verify, when passing through the verification, generates the instruction of unblanking and sends for the sub-controller for the work of motor is unblanked according to the instruction control of unblanking to the sub-controller, controls unblanking of lock body, has realized that the bluetooth of intelligence lock unblanks.
When the Bluetooth module is connected with the auxiliary controller or the touch controller, the main controller needs to receive a Bluetooth signal sent by an external mobile device through the Bluetooth module through the auxiliary controller or the touch controller and verifies the Bluetooth signal, and when the verification is passed, an unlocking instruction is generated and sent to the auxiliary controller, so that the auxiliary controller controls the operation of an unlocking motor according to the unlocking instruction, the unlocking of the lock body is controlled, and the Bluetooth unlocking of the intelligent lock is realized.
Because each controller is internally provided with a programmable control program, the system has stronger expansibility, namely when a certain function is needed, only the circuit module with the corresponding function needs to be electrically connected with any one controller in the system, and then the communication connection between the circuit module with the corresponding function and the main controller can be realized by carrying out corresponding logic programming through the programmable control program in the corresponding controller, so that the main controller receives and verifies the signal sent by the circuit module, and then executes corresponding operation according to the verification result, such as generating a corresponding control instruction to control corresponding equipment to work.
That is, the corresponding functions can be appropriately extended according to the service requirements. For example, an infrared module, a WIFi module, an infrared module, a bluetooth module, an alarm module, etc. only need to connect the circuit module with the corresponding function to any one of the controllers in the system: the main controller, the auxiliary controller and the touch controller are connected to realize corresponding functions.
Of course, the above functions can also be electrically connected with the sub controller or the touch controller according to actual conditions, and the corresponding functions are realized through the communication between the sub controller or the touch controller and the main controller.
The utility model provides an intelligence lock is verified to open the door and is needed three control system, also needs three controllers such as touch control ware, main control unit and sub-controller to accomplish in coordination promptly, realizes the triple protection of intelligence lock, can prevent effectively that various means of explaiing from. And simultaneously, the utility model discloses still control very coarse analog control ware, sub-controller's operation that resets through main control unit, can avoid the condition emergence that leads to unblanking because interference signal's existence.
Example two
Based on embodiment one, as shown in fig. 1-3, the utility model also provides an intelligent lock of preventing explaiing, this intelligent lock includes lock front panel 7, lock rear panel 8, lock body 9 and the aforesaid system of preventing explaiing of an intelligent lock.
Wherein, install main control panel 4 on the lock front panel 7, install back control panel 5 on the lock rear panel 8, main control panel 4 is connected through connecting wire 6 with back control panel 5. The main control board 4 is mounted with the main controller 1 and each circuit module connected to the main controller 1. The main control board 4 is also provided with a touch controller 2 and circuit modules connected with the touch controller 2. The sub-controller 3 and each circuit module connected with the sub-controller 3 are installed on the rear control panel 5, and the sub-controller 3 is connected with the lock body 9 through an unlocking motor. The sub-controller 3 controls the lock body 9 by driving the unlocking motor to work.
In addition, in order to guarantee the swift installation of connecting wire 6, the utility model discloses still through installing first connecting wire connector 402 on main control panel 4, install second connecting wire connector 502 on the back control panel 5. One end of the connection wire 6 is inserted into the first connection plug connector 402, and the other end is inserted into the second connection plug connector 502.
The main controller 1 and the touch controller 2 are installed on the main control panel 4, and the sub-controller 3 is installed on the rear control panel 5. The main control panel 4 is connected with the rear control panel 5 through a connecting wire 6, the sub-controller 3 is installed on the rear control panel 5, and the main controller 1 and the touch controller 2 are installed on the main control panel 4. Therefore, when the sub-controller 3 and the touch controller 2 are electrically connected with the main controller 1, extra wires are not needed for connection, cables are saved, and the circuit is simple.
Further, as shown in fig. 2 and 3, the main control board 4 is fixedly connected to the door lock front panel 7 by a main control board screw 401. Similarly, the rear control panel 5 is fixedly connected to the door lock rear panel 8 by a rear control panel screw 501.
In addition the utility model discloses main control unit, touch controller and sub-controller's circuit schematic diagram has still been given.
As shown in fig. 4, a circuit diagram of the main controller. The main controller comprises a chip U2, a capacitor C76 and a capacitor C9, wherein C76 and C9 are filter capacitors. For example, the chip U2 has a model number R5F100 MG.
As shown in fig. 5, a circuit diagram of the touch controller is shown. The touch controller comprises a chip U12, a capacitor C41, a capacitor C43, a resistor R59 and a resistor R60. Wherein, C41, C43 are power supply filter capacitance, and R59, R60 are serial port resistance. For example, the model number of the chip U12 is: CY8C 4045-S412.
As shown in fig. 6, a circuit diagram of the sub-controller. The sub-controller comprises a chip IC2, a capacitor C8 and a capacitor EC 1. Wherein, C41, C43 are power supply filter capacitance, and R59, R60 are serial port resistance. For example, the chip IC2 has the following model: R5F100 FE.
Specifically, the method comprises the following steps: the ports 19 and 20 of the chip U2 are connected with a power supply; port 17 and port 18 of chip U2 are grounded; the ports 19 and 20 of the chip U2 are grounded through a filter circuit consisting of a capacitor C76 and a capacitor C9.
Port 24 of chip U12 is connected to port 41 of the host controller; the port 42 of the chip U12 is connected to the port 8 of the chip U2, the port 9 of the chip U12 is connected to the port 21 of the chip U2 via a resistor R59, and the port 10 of the chip U12 is connected to the port 22 of the chip U2 via a resistor R60.
The port 10 of the chip IC2 is grounded, the port 11 of the chip IC2 is connected with a power supply, the port 11 of the chip IC2 is further grounded through a filter circuit consisting of a capacitor C8 and a capacitor EC1, the port 25 of the chip IC2 is connected with the port 41 of the chip U2, the port 30 of the chip IC2 is connected with the port 53 of the chip U2, and the port 29 of the chip IC2 is connected with the port 52 of the chip U2.
In addition, the utility model discloses still provide the circuit diagram of voice broadcast, as shown in fig. 7, for example main control unit carries out voice broadcast through controlling WTN6_ DATA and WTN6_ BUSY control chip U10.
As shown in fig. 8, for example, a circuit diagram of a buzzer, the main controller controls the buzzer to generate through the port BUZ. The buzzer can be a key tone and an alarm tone. That is to say, when alarming, the circuit can be adopted to realize the playing of the alarm sound, and when pressing the key, the main controller can control the circuit to realize the playing of the key sound.
As shown in fig. 9, for example, the circuit diagram of the anti-picking module, the main controller is connected to the circuit diagram of the anti-picking module through DESTR L Y _ CHK, for example, the spring plate is pressed down normally, and the port 2 and the port 3 are disconnected, and the spring plate is bounced up in case of alarm, and the port 2 and the port 3 are short-circuited.
EXAMPLE III
Based on embodiment one and embodiment two, the utility model also provides an intelligent door of preventing explaiing, as shown in fig. 1-3, the utility model provides a preferred embodiment, this intelligent door includes the door plant and installs the intelligent lock of preventing explaiing on the door plant, specifically is: a door lock front panel 7 of the intelligent door lock is installed on one side of a door plate 10, a door lock rear panel 8 of the intelligent door lock is installed on the other side of the door plate 10, and a lock body 9 of the intelligent door lock is installed in the door plate.
In order to facilitate the connection between the main control panel 4 and the rear control panel 5 of the intelligent door lock, an opening is formed in the intelligent door, so that a connecting line between the main control panel 4 and the rear control panel 5 can penetrate through the opening to realize the connection between the main control panel and the rear control panel.
The main control board 4 is installed between the door lock front panel 7 and the door panel 10, so that the main controller 1, the touch controller 2 and the corresponding circuit module are installed between the door lock front panel 7 and the door panel 10. Similarly, the rear control board 5 is installed between the door lock rear panel 8 and the door panel 10, so that the sub-controller 3, the unlocking motor, and the corresponding circuit module are installed between the door lock rear panel 8 and the door panel 10.
Preferably, in order to prevent picking the lock, the utility model discloses install lock rear panel 8 in the inboard of door, also be the sub-controller 3 promptly, the motor of unblanking all installs the inboard at the door, can avoid the condition of forced picking the lock to take place.
In addition, in the actual use process, the main functions realized by the touch controller, the main controller and the sub-controller are different due to the different installation positions of the main control panel and the rear control panel on the door panel. For example, the sub-controller is installed inside the door panel, and therefore, when the sub-controller is connected to the bluetooth module, signal delay may occur, and although theoretically, it may implement a corresponding function, in an actual use process, in order to avoid data signal delay and the like, it is preferable to select to connect the bluetooth module to the main controller or the touch controller, and a problem of data signal delay caused by the sub-controller being installed inside the door panel may be avoided. Similarly, for each functional circuit module, a better connection mode is preferred when the circuit module is connected with the controller during an actual installation process, and therefore, in connection with the fourth embodiment, descriptions of functions implemented by three controllers are given below:
and the touch controller is mainly used for sending the touch signal of the touch key to the main controller or receiving a reset signal or other control instructions returned by the main controller to execute corresponding operation. Certainly, also can be according to the demand of reality, be connected bluetooth module, infrared ray module, WIFI module etc. with touch controller, then transmit the data signal that bluetooth module, infrared ray module, WIFI module sent to main control unit through touch controller, realize that the bluetooth unblanks, the infrared ray is unblanked, whether someone passes through, functions such as networking detect.
For example, when the user presses a first touch key, the main controller receives the touch signal through the touch controller, recognizes that the currently pressed key is the first touch key, and then sends a control instruction to the touch controller, so as to control the L ED lamp corresponding to the first touch key to flash, thereby prompting the user that the first touch key is pressed.
And the secondary controller is mainly used for controlling the work of the unlocking motor. Certainly, corresponding functional modules can be set according to actual requirements, such as a state monitoring module, a voice module, a WIFI module and the like for the lock body. For example, the sub-controller may send the received voice information to the main controller, so that the main controller controls the corresponding speaker to play the voice information.
The intelligent lock comprises a main controller, a Bluetooth module, a fingerprint module and the like, wherein the main controller is mainly responsible for the cooperative work of all modules in the whole system, such as the verification operation of various modes for a door lock, Bluetooth communication, anti-prying control, L ED lamp tube display, voice guidance, clock information, electric quantity detection, fingerprint module and the like.
Of course, the above functions can also be electrically connected with the sub controller or the touch controller according to actual conditions, and the corresponding functions are realized through the communication between the sub controller or the touch controller and the main controller.
Example four
The utility model also provides another embodiment, a control method of intelligent lock prevents breaching is applied to the intelligent lock of preventing breaching of embodiment two, and it includes following step:
step S1, initialization step: after the system is powered on, the main controller detects whether the connection of each third-party circuit module connected with the main controller is normal or not, detects whether the connection of the touch controller or the sub-controller and the main controller is normal or not, and further detects whether the connection of each third-party circuit module connected with the touch controller or the sub-controller is normal or not.
That is, after the system is powered on, it is necessary to detect whether the communication between each circuit module and the corresponding controller, and between the controllers, is normal.
Step S2, verification step: the method comprises the steps of receiving and verifying a data signal sent by a third-party circuit module connected with the main controller through the main controller, and/or receiving and verifying a touch signal sent by the touch controller, and/or receiving and verifying a data signal sent by the third-party circuit module connected with the touch controller through the touch controller, and/or receiving and verifying a data signal sent by the third-party circuit module connected with the sub controller through the sub controller, and executing corresponding operation according to a verification result.
The main controller is used for verifying the data signals sent by the circuit modules with the functions and controlling the corresponding equipment to work according to the verification result. The touch controller and the sub-controller are both used for forwarding data signals sent by the circuit modules connected with the touch controller and the sub-controller to the main controller.
Step S3, an unlocking step: and an unlocking instruction is sent to the auxiliary controller through the main controller, so that the auxiliary controller controls the unlocking motor to work according to the unlocking instruction to drive the lock body to unlock.
The sub-controller is connected with the lock body through the unlocking motor and is further used for driving the unlocking motor to act according to the unlocking instruction sent by the main controller, and unlocking control of the lock body is achieved.
Step S4, a reset step: when the main controller detects that the touch controller or the sub-controller is abnormal, the main controller sends a reset instruction to the touch controller or the sub-controller, so that the touch controller or the sub-controller is reset. When the touch controller or the auxiliary controller is abnormal, the main controller controls the reset operation of the touch controller and the auxiliary controller, the normal operation of the system is guaranteed, and meanwhile the risk that the intelligent lock is cracked can be solved. For example, once signal interference occurs in the existing intelligent lock, the intelligent lock can be easily cracked. When the system works, the unlocking of the intelligent lock can be realized only by ensuring the normal operation of the three controllers, so that the main controller can reset the touch controller only when the touch controller fails, the system can work normally, and the safety performance of the intelligent lock is greatly improved.
Step S5: when the main controller fails to pass the verification, the main controller controls the work of an alarm module connected with the main controller to prompt that the input is wrong.
EXAMPLE five
The utility model also provides an electronic equipment, it includes memory, treater and the computer program that stores on the memory and can operate in the processing, the treater carries out realize when the procedure as the step of the control method of the intelligent lock that prevents breaking open as described in the article.
EXAMPLE six
The present invention also provides a computer readable storage medium having a computer program stored thereon, wherein the computer program when executed by the processor implements the steps of the method for controlling an anti-tamper intelligent door lock as described herein.
The above embodiments are only preferred embodiments of the present invention, and the protection scope of the present invention cannot be limited thereby, and any insubstantial changes and substitutions made by those skilled in the art based on the present invention are all within the protection scope of the present invention.

Claims (10)

1. The utility model provides an intelligence lock prevent system of cracking which characterized in that: the touch control system comprises a touch controller and touch keys connected with the touch controller, wherein the touch controller is electrically connected with the touch keys and receives touch signals of the touch keys; the auxiliary control system comprises an auxiliary controller and an unlocking motor connected with the auxiliary controller, wherein the auxiliary controller is used for driving the unlocking motor to work and controlling a lock body connected with the unlocking motor to unlock; the main control system comprises a main controller; the touch controller and the sub-controller are respectively electrically connected with the main controller; the main controller is used for receiving a touch signal of the touch controller, verifying the touch signal and sending a control instruction to the sub controller so that the sub controller drives the unlocking motor to work according to the control instruction; the main controller is also used for controlling the reset operation of the touch controller and the sub controller.
2. The anti-cracking system of the intelligent lock as claimed in claim 1, wherein: the circuit also comprises a third-party circuit module; when the third-party circuit module is electrically connected with the main controller, the main controller is used for receiving and verifying data sent by the third-party circuit module, and then executing corresponding operation according to a verification result; when the third-party circuit module is electrically connected with the touch controller or the third-party circuit module is electrically connected with the sub-controller, the main controller receives data sent by the third-party circuit module through the touch controller or the sub-controller, matches and verifies the data, and then executes corresponding operation according to a verification result.
3. The anti-cracking system of the intelligent lock as claimed in claim 2, wherein: the third party circuit module includes but is not limited to one or more of the following functional modules in combination: fingerprint module, bluetooth module, infrared ray module, voice module, pronunciation broadcast module, WIFI module and warning module.
4. The anti-cracking system of the intelligent lock as claimed in claim 1, wherein: the main controller comprises a chip U2, a capacitor C76 and a capacitor C9; the ports 19 and 20 of the chip U2 are connected with a power supply; port 17 and port 18 of chip U2 are grounded; the port 19 and the port 20 of the chip U2 are grounded through a filter circuit consisting of a capacitor C76 and a capacitor C9; the port 42 of the chip U2 is connected with the touch controller, and the ports 41, 53 and 54 are connected with the sub controller; the model of the chip U2 is R5F100 MG.
5. The anti-cracking system of the intelligent lock as claimed in claim 4, wherein: the touch controller comprises a chip U12, a capacitor C41, a capacitor C43, a resistor R59 and a resistor R60; port 24 of chip U12 is connected to port 41 of the host controller; the port 42 of the chip U12 is connected with the port 8 of the chip U2, the port 9 of the chip U12 is connected with the port 21 of the chip U2 through a resistor R59, and the port 10 of the chip U12 is connected with the port 22 of the chip U2 through a resistor R60; the model of the chip U12 is CY8C 4045-S412.
6. The anti-cracking system of the intelligent lock as claimed in claim 5, wherein: the sub-controller comprises a chip IC2, a capacitor C8 and a capacitor EC 1; a port 10 of the chip IC2 is grounded, a port 11 of the chip IC2 is connected with a power supply, a port 11 of the chip IC2 is also grounded through a filter circuit consisting of a capacitor C8 and a capacitor EC1, the port 25 of the chip IC2 is connected with a port 41 of a chip U2, a port 30 of the chip IC2 is connected with a port 53 of the chip U2, and a port 29 of the chip IC2 is connected with a port 52 of the chip U2; wherein the model number of the chip IC2 is R5F100 FE.
7. The utility model provides an intelligent lock of anti-rupture which characterized in that: the anti-cracking system comprises a door lock front panel, a door lock rear panel, a lock body arranged between the door lock front panel and the door lock rear panel and the intelligent lock as claimed in any one of claims 1 to 6; a main control panel is arranged in the front panel of the door lock, a rear control panel is arranged in the rear panel of the door lock, and the main control panel and the rear control panel are electrically connected through a connecting wire; main control unit, touch controller all install on the main control board, and sub controller installs on the control panel of back to sub controller is through unblanking motor and lock body electric connection.
8. The intelligent anti-crack door lock of claim 7, wherein: the main control panel is fixedly arranged on the front panel of the door lock through main control panel screws, and the rear control panel is fixedly arranged on the rear panel of the door lock through rear control panel screws.
9. The intelligent anti-crack door lock of claim 7, wherein: and connecting wire plugging connectors are arranged on the main control panel and the rear control panel, one end of each connecting wire is connected with the connecting wire plugging connector on the main control panel, and the other end of each connecting wire is connected with the connecting wire plugging connector on the rear control panel.
10. The utility model provides an intelligence door with prevent breaing which characterized in that: the intelligent door lock comprises a door plate and an anti-cracking door lock according to any one of claims 7 to 9, wherein the anti-cracking door lock is arranged on the door plate; the intelligent door lock comprises a door plate, a door lock front panel, a door lock rear panel, a lock body and a door lock, wherein the door lock front panel of the intelligent door lock is arranged on the outer side of the door plate, the door lock rear panel of the intelligent door lock is arranged on the inner side of the door plate, and the lock body is arranged in the; be equipped with the trompil on the door plant, the trompil is used for passing the connecting wire of main control board and back control board, and then realizes that main control board and back control board pass through connecting wire electric connection.
CN201921236196.9U 2019-08-01 2019-08-01 Anti-cracking system of intelligent lock, intelligent door and intelligent door lock Active CN211201433U (en)

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Application Number Priority Date Filing Date Title
CN201921236196.9U CN211201433U (en) 2019-08-01 2019-08-01 Anti-cracking system of intelligent lock, intelligent door and intelligent door lock

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Application Number Priority Date Filing Date Title
CN201921236196.9U CN211201433U (en) 2019-08-01 2019-08-01 Anti-cracking system of intelligent lock, intelligent door and intelligent door lock

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110453992A (en) * 2019-08-01 2019-11-15 广东科徕尼智能科技有限公司 A kind of the anti-of smart lock cracks system, intelligent door, intelligent door lock, method and device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110453992A (en) * 2019-08-01 2019-11-15 广东科徕尼智能科技有限公司 A kind of the anti-of smart lock cracks system, intelligent door, intelligent door lock, method and device

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