Intelligent vehicle lock based on dynamic two-dimensional code
A dynamic two-dimensional code, intelligent technology, applied in the direction of non-mechanical drive locks, electric locks, bicycle locks, etc., can solve the problem of no safety device, unsolved power supply problems of locks, etc., to prevent electromagnetic interference, Improved anti-theft performance and complete functions
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Embodiment 1
[0031]Embodiment 1: A smart car lock based on a dynamic two-dimensional code, including a housing, a holding mechanism 14, a locking device, a safety device 15, a display screen 4, an alarm device 16, a power supply battery 7 and a controller 8, the housing The body includes an outer shell and an inner shell, the inner shell includes a control part 17 and a locking part 1, the outer shell facing the control part is provided with a display screen 4, and the locking device includes a locking lever 5, a locking ring 3 and a dial The control part 17 is arranged on one side of the locking part 1, the locking part 1 is provided with a sliding groove, and the locking ring 3 is arranged inside the sliding groove and along the sliding groove. sliding inside, the locking device straddles the control part and the locking part, safety devices are provided on both sides of the locking device, and the control part 17 is also provided with a first drive mechanism, the safety device 15 , an a...
Embodiment 2
[0032] Embodiment 2: A smart car lock based on a dynamic two-dimensional code, including a housing, a locking lever 5, a lock ring 3, a holding mechanism 14, a toggle button 2, a safety device 15, a display screen 4, an alarm device 16, a power supply Battery 7 and controller 8, the housing includes an outer shell and an inner shell, the inner shell includes a control part 17 and a locking part 1, and the outer shell facing the control part is provided with a display screen 4, and the control part 17 is arranged on one side of the locking part 1, the locking part 1 is provided with a sliding groove, the locking ring 3 is arranged inside the sliding groove and slides along the sliding groove, the locking rod 5 One end of the locking rod 5 is arranged in the control part 17 and extends toward the lock ring 3 of the locking part 1 and is engaged with the lock ring 3. The control part 17 is also provided with a first Drive mechanism, described safety device 15, alarm device 16 and...
Embodiment 3
[0040] Embodiment 3, on the basis of Embodiment 2, the controller of this embodiment can use an STM32 controller, and this embodiment is also equipped with a Bluetooth module and a gyroscope module. The working process of this embodiment is as follows: through the STM32 controller, the two-dimensional code is regularly refreshed and displayed on the LCD screen, and the mobile phone APP scans the two-dimensional code to connect to the bluetooth module of the system. When the bluetooth module receives the unlock signal from the mobile phone APP Then pass it to STM32 to control the rotation of the steering gear to realize the process of simulating unlocking. Based on the consideration of energy saving and environmental protection, the LCD screen has also added a sleep state design. The screen will go out four minutes after the power is turned on. If the mobile phone APP is connected to the system at this time, the operation of unlocking and closing the lock can still be performed....
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