Abstract:
The present invention provides an array substrate, a manufacturing method thereof and a display panel. The array substrate comprises a base, the base comprises a display region for displaying and a periphery region outside the display region, a plurality of lead wires extending from the display region to the periphery region are provided on a first side of the base, a plurality of conductive via-holes are provided in the periphery region of the base, the conductive via-holes are electrically connected with the respective lead wires and provided with conductive material therein, the lead wires are electrically connected to a second side of the base through the respective conductive via-holes; a back-side structure electrically connected with the conductive via-holes is provided on the second side of the base, and the back-side structure comprises a plurality of lead wire pads electrically connected with the respective conductive via-holes.
Abstract:
A display apparatus includes a display panel, a mirror switching screen, a first photosensitive sensor, a first flexible circuit board and a driver board. The mirror switching screen is disposed on a light-exit side of the display panel. The first photosensitive sensor is configured to sense a light intensity of ambient light at a side of the mirror switching screen away from the display panel. The first flexible circuit board includes a bonding portion, a component portion and a wiring portion. The bonding portion is electrically connected to the mirror switching screen. The first photosensitive sensor is disposed on a side of the component portion proximate to the mirror switching portion. The wiring portion has lines electrically connected to the first photosensitive sensor and bonding pads of the bonding portion. The driver board is electrically connected to the wiring portion of the first flexible circuit board.
Abstract:
Provided are an anti-dazzling display device, an anti-dazzling display method, and an interior rearview mirror. The anti-dazzling display device includes a sensor unit, a display unit, and an anti-dazzling unit on a light exit side of the display unit. The anti-dazzling unit is configured to adjust a reflectivity of incident ambient light and a transmittance of image light exited from the display unit in response to a light intensity of ambient light sensed by the sensor unit.
Abstract:
The present disclosure discloses a backlight module and a manufacturing method thereof. The backlight module includes: a light guide plate, a reflection structure arranged on one side of the light guide plate and a diffusion structure arranged on the other side of the light guide plate; the reflection structure being switchable between a reflection state that reflects light and a transmission state that transmits light; the diffusion structure being switchable between a scattering state that scatters light and a transmission state that transmits light. The present disclosure also relates to a display device comprising the backlight module.
Abstract:
A splint and an operation method thereof are provided. The splint includes a plurality of plates and a splint adjustment device. The splint adjustment device is connected to the plurality of plates and configured to allow the plurality of plates to move relatively close to each other or relatively away from each other. At least one of the plurality of plates comprises at least two split portions, and the at least two split portions are configured to be separated from each other or be combined with each other, so as to allow a space surrounded by the plurality of plates to be opened or closed.
Abstract:
A wearable apparatus, an anti-peeping display system and an anti-peeping display method are disclosed. The anti-peeping display system includes a display apparatus and a wearable apparatus, the display apparatus is configured to display infrared images, the wearable apparatus acquires the infrared images and converts the infrared images to original images, and the original images are visible images.
Abstract:
The disclosure relates to the field of cycle technologies, and particularly to a wheel and a cycle. The wheel comprises a rim, a tire covering an outer periphery face of the rim, and a friction power device sandwiched between the rim and the tire; wherein the friction power device can produce a frictional current when pressed by the rim and/or the tire.
Abstract:
A vehicle-mounted system and a vehicle are disclosed. The vehicle-mounted system includes a vehicle lamp system, the vehicle lamp system includes a direction changing unit or/and a light intensity adjusting unit and a vehicle lamp; the vehicle lamp is arranged on a front side of a vehicle body and configured to emit light; the direction changing unit is arranged on a light emergent side of the vehicle lamp, and configured to change a transmission direction of light that is incident on the direction changing unit and emitted by the vehicle lamp; and the light intensity adjusting unit is configured to adjust intensity of the light emitted by the vehicle lamp.
Abstract:
A vehicle travelling prediction method includes: acquiring a first distance between a current vehicle and an intersection where a traffic light is located in an advancing direction of the current vehicle, and determining a state of the traffic light; when the traffic light is in a first state where the current vehicle is allowed to cross the intersection, acquiring a first time period within which the traffic light is changed to be in a second state where the current vehicle is not allowed to cross the intersection; acquiring a detection result of a vehicle in a same lane, the detection result including a detection result of a vehicle behind the current vehicle and/or an obstacle vehicle; and outputting a prediction result indicating whether or not the current vehicle is capable of crossing the intersection in accordance with the first time period, the first distance and the detection result.
Abstract:
An array substrate and a wearable device are provided. The array substrate includes a base substrate. A first surface of the base substrate is provided with a plurality of first signal lines having a concentric arc shape and a plurality of second signal lines linearly arranged along a radial direction of the first signal lines. A first driving circuit connected to the respective first signal lines is provided on the first surface or a second surface of the base substrate and a second driving circuit connected to the respective second signal lines is provided on the first surface or a second surface of the base substrate. In the array substrate, since the first driving circuit and the second driving circuit are both positioned within a display region, the screen proportion of the display region is improved, thereby achieving a narrow bezel design or even bezel-free design for the wearable device.