Abstract:
A lifting device for vehicle-mounted equipment and a vehicle having the same are provide. The lifting device comprises: a housing (1) adapted to disposed in a dashboard having an opening; a cover-flipping mechanism (6) disposed pivotably in the housing (1) and having a first end with a cover plate (7) for opening and closing the opening; and a lifting-box assembly (3), onto which the vehicle-mounted equipment is adapted to be mounted, the lifting-box assembly (3) being disposed in the housing (1), connected to a second end of the cover-flipping mechanism (6), and configured to be vertically movable between an extended position, in which the cover plate (7) opens the opening and the vehicle-mounted equipment is extended out of the dashboard through the opening, and a retracted position, in which the vehicle-mounted equipment is retracted into the dashboard through the opening and the cover plate (7) closes the opening.
Abstract:
A remote control system for driving a vehicle, a vehicle intelligent key device and a remote control method for driving a vehicle are provided. The remote control system comprises: a vehicle intelligent key device (102), configured to send a starting signal and control signal; and a vehicle (101), configured to receive the starting signal and the control signal, to start a remote control mode according to the starting signal, and to control a driving state of the vehicle (101) according to the control signal, wherein the vehicle (101) comprises an automatic transmission (207) and an electrical park brake (208), and the automatic transmission (207) is configured to receive the control signal, and to control the electrical park brake (208) to loosen a parking cable of the vehicle (101), to feed back a state of the parking cable and to set a gear of a gearbox to be "Driving" or "Reverse" when the vehicle(101) is in the remote control mode.
Abstract:
A vehicle intelligent key device and a vehicle are provided. The vehicle intelligent key device comprises: a starting key (101); a direction controlling key (102); a wireless communication module (103), configured to communicate with the vehicle wirelessly; and a controlling module (104), connected to the starting key (101), the direction controlling key (102) and the wireless communication module (103) respectively, and configured to control the wireless communication module (103) to send a starting signal or a direction controlling signal to the vehicle when the starting key (101) or the direction controlling key (102) is activated. The vehicle intelligent key device may control a vehicle to run at a low speed. Furthermore, with the vehicle intelligent key device, a user may park or take a vehicle in a narrow space conveniently.
Abstract:
A method and a system for controlling vehicle electric power, and a vehicle comprising the same, are provided. The method includes converting a first voltage supplied by at least one of a startup generator and a storage battery of the vehicle into a second voltage, and controlling the at least one of the startup generator and the storage battery to supply power to a first device with the first voltage, and to supply power to a second device with the second voltage. The system includes a startup generator and a storage battery, configured to supply a first voltage, and a converter configured to convert the first voltage into a second voltage. At least one of the startup generator and the storage battery is configured to supply power to a first device with the first voltage, and to supply power to a second device with the second voltage.
Abstract:
A remote control system for driving a vehicle, a vehicle intelligent key device (102) and a remote control method for driving a vehicle are provided. The remote control system comprises: a vehicle intelligent key device (102), configured to send a starting signal and a control signal; a vehicle, configured to receive the starting signal or the control signal, to start a remote control mode according to the starting signal, and to control a driving state of the vehicle according to the control signal and to control the vehicle to quit the remote control mode when a predetermined condition is satisfied.
Abstract:
Provided are a remote control system for driving a vehicle (101), a vehicle intelligent key device (102) and a remote control method for driving the vehicle (101). The remote control system comprises: a vehicle intelligent key device (102), configured to send a starting signal and a control signal; and a vehicle (101), configured to receive the starting signal and the control signal, to start a remote control mode according to the starting signal and to control a driving state of the vehicle (101) according to the control signal, wherein the vehicle (101) comprises an electric power steering module (401) configured to control a steering wheel of the vehicle (101) to turn according to the control signal when the vehicle (101) is in the remote control mode. The driver outside the vehicle can use the remote control method to park the vehicle in a narrow space.
Abstract:
A luminous wheel hub comprises: a wheel hub body (40), a luminous device (1) disposed on the wheel hub body (40), and an energy transformation device (2) adapted to connect with a power supply. The energy transformation device (2) comprises a first coil (21) adapted to be fixed on a caliper bracket (3) and a second coil (22) configured to rotate with the wheel hub body (40). The energy transformation device (2) is configured to output a current to the luminous device (1) only when the first coil (21) overlaps the second coil (22). A wheel and a vehicle comprising the luminous wheel hub are also provided.
Abstract:
A remote control system for driving a vehicle, a vehicle intelligent key device and a remote control method are provided. The remote control system comprises: a vehicle intelligent key device (102) configured to send a starting signal and control signal; and a vehicle (101) configured to receive the starting signal and the control signal, to start a remote control mode according to the starting signal, and to control a driving state of the vehicle (101) according to the control signal.
Abstract:
A flip device for vehicle-mounted equipment comprises a housing (16), a cover frame (7) mounted onto the top of the housing (16), a mounting bracket (6) for mounting the vehicle-mounted equipment thereon, a slide mechanism (12) disposed within the housing (16), and a power assembly (2) mounted within the housing (16) for driving the sliding mechanism (12) to slide linearly in the housing (16). The mounting bracket (6) is pivotably mounted, at a portion adjacent to a first end thereof, onto the cover frame (7), so that the mounting bracket (6) is rotatable between an extended position in which the mounting bracket (6) is extended out of the cover frame (7) and a folded position in which the mounting bracket (6) is received in the cover frame (7). The slide mechanism (12) is slidable in a longitudinal direction and connected to the mounting bracket (6) so as to drive the mounting bracket (6) to flip between the extended position and the folded position. The flip device can improve the mounting flexibility of the vehicle-mounted equipment and increase the humanization and comfortability of the vehicle.
Abstract:
A license plate device comprises: a first shell (110) having a transparent region (111) forming a first predetermined logo pattern and a non transparent region (112); a second shell (150) fixedly connected with the first shell (110), with a sealed accommodating space; a light guide plate (120) disposed between the bottom plate (130) and the first shell (110) which is formed with an accommodating groove (122); and a circuit board (140) disposed between the light guide plate (120) and the second shell (150) which is formed with an illuminating element (141) on a surface thereof facing toward the light guide plate (120) to be accommodated in the accommodating groove (122), in which the light guide plate (120) is formed with a plurality of microprism structures (121) configured to transmit at least a part of light emitted by the illuminating element (141) penetrating through the light guide plate (120) from a face of the light guide plate (120) facing the first shell (110).