Abstract:
An image display method and an image display device are provided. The image display method includes: acquiring an environmental image in a backlight direction of a display panel; determining a viewing position of a user, and determining a background image capable of being viewed by the user through the display panel from the environmental image; determining an image compensation parameter of the display panel in accordance with an image parameter of the background image; and controlling the display panel to compensate for a to-be-displayed image in accordance with the image compensation parameter.
Abstract:
The embodiments of the present disclosure propose a substrate, a method for manufacturing the same, and a display device comprising the substrate. The substrate comprises a supporting base; and a light scattering layer disposed such that a projected region of the light scattering layer on the supporting base is located in a light transmission formation region of the supporting base, and the light scattering layer has a light scattering structure configured to scatter incident light.
Abstract:
The present application discloses a touch substrate including a base substrate; a touch electrode layer on a base substrate comprising a plurality of columns of first touch electrodes, a plurality of rows of second touch electrodes, and a plurality of columns of electrode bridges in a same layer and made of a same electrode material; and a black matrix layer on the base substrate. The plurality of columns of first touch electrodes are insulated from the plurality of rows of second touch electrodes, and cross over the plurality of rows of second touch electrodes forming a plurality of intersections. A plurality of first touch electrode in each column are electrically connected by a plurality of electrode bridges. A plurality of second touch electrode in each row are electrically connected by the black matrix layer.
Abstract:
The present disclosure provides a touch panel, a method for producing the same and a display apparatus. The touch panel includes: a first substrate, a second substrate opposed to the first substrate, a display medium layer between the first substrate and the second substrate, a black matrix arranged on one of the first substrate and the second substrate, a plurality of driving electrode units and a plurality of inductive electrode units arranged alternatively on the other one of the first substrate and the second substrate, and each of the plurality of driving electrode units or the plurality of inductive electrode units includes a plurality of transparent electrodes and projections of boundaries of the transparent electrodes onto the substrate having the black matrix are covered by the black matrix or coincide with the range of the black matrix.
Abstract:
An organic light emitting touch display panel, a manufacturing method thereof, and a display device are provided. The organic light emitting touch display panel includes: a base substrate; touch detection units disposed on the base substrate, each of the touch detection units includes a photosensitive element; signal input lines and signal output lines disposed on the base substrate, the signal input lines and the signal output lines correspond to the touch detection units one to one respectively, each of the signal input lines connects to an input end of the photosensitive element in its corresponding touch detection unit, each of the signal input lines configures to load a touch detection signal; each of the signal output lines connects to an output end of the photosensitive element in its corresponding touch detection unit, each of the signal output lines configures to output a current of the photosensitive element.
Abstract:
The present application discloses a touch substrate including a base substrate; a touch electrode layer on a base substrate comprising a plurality of columns of first touch electrodes, a plurality of rows of second touch electrodes, and a plurality of columns of electrode bridges in a same layer and made of a same electrode material; and a black matrix layer on the base substrate. The plurality of columns of first touch electrodes are insulated from the plurality of rows of second touch electrodes, and cross over the plurality of rows of second touch electrodes forming a plurality of intersections. A plurality of first touch electrode in each column are electrically connected by a plurality of electrode bridges. A plurality of second touch electrode in each row are electrically connected by the black matrix layer.
Abstract:
There is provided a gate driving circuit and driving method thereof, and display apparatus. The method comprises: performing gate drive scanning on shift register units located in a first region in the gate driving circuit; performing touch scanning after the gate drive scanning of the shift register units in the first region is completed; scanning again a last stage of shift register unit located in the first region before the touch scanning is completed, so that the last stage of shift register unit located in the first region pre-charges a first stage of shift register unit located in a second region; and performing gate drive scanning on shift register units located in the second region in the gate driving circuit, the last stage of shift register unit located in the first region connected in cascades with the first stage of shift register unit located in the second region.
Abstract:
A fingerprint identification module, a fingerprint identification device and a display device are provided. The fingerprint identification module includes a transparent substrate, an emission part, a receiving part and a moving part, wherein the emission part and the receiving part are provided adjacent to opposite edges of the transparent substrate, and the emission part and the receiving part are fixed on the moving part, wherein, light emitted from the light sources is incident in the transparent substrate at a first angle θ1 so as to be propagated in the transparent substrate in a total reflection form; the transparent substrate is provided with an adjusting structure configured to allow the light to exit; the receiving part is configured to receive the light exiting through the adjusting structure; and the moving part is configured to allow the emission part and the receiving part to be moved.
Abstract:
A force touch display device, comprising a display panel and a force touch detecting module, wherein the force touch detecting module is arranged opposite to the display panel, and the force touch detecting module is configured to detect an amount of deformation of the force touch display device so as to determine a force level of a touch force. A force touch control method is also disclosed.
Abstract:
The present disclosure provides an array substrate, a flexible display device and an electronic device. The array substrate includes a flexible substrate, and an array layer formed on the flexible substrate. The flexible substrate is bendable, and the array layer includes: signal transmission lines including a plurality of data lines and a plurality of gate lines which are arranged on the flexible substrate in a crisscross manner so as to define a plurality of subpixel regions; and a TFT arranged at each subpixel region and connected to the corresponding data line and gate line. At least portions of the signal transmission lines are formed as bending curves whose travelling direction is parallel to a side of the flexible substrate.