Abstract:
A touch substrate includes: a plurality of first touch electrodes and a plurality of second touch electrodes provided on a base substrate within a touch region and being intersected each other laterally and longitudinally; a plurality of first binding patterns and a plurality of second binding patterns provided at a side of the touch region; and first signal lines connecting the first touch electrodes to the first binding patterns, and second signal lines connecting the second touch electrodes to the second binding patterns, wherein the first signal lines and the second signal lines are provided in different layers, and a projection of a region in which the first signal lines are located on the base substrate and a projection of a region in which the second signal lines are located on the base substrate have partially overlapped regions.
Abstract:
Disclosed is a touch substrate, including a base substrate; a plurality of first touch electrodes and a plurality of second touch electrodes arranged on the base substrate, wherein the plurality of first touch electrodes and the plurality of second touch electrodes have an overlapping area and are electrically insulated from each other; and a plurality of touch units arranged on the base substrate. Each of the touch units includes at least two first touch electrodes and at least one second touch electrode, and the at least two first touch electrodes in each touch unit are connected in parallel. By arranging at least two first touch electrodes connected with each other in parallel in each touch unit, the channel resistance is reduced effectively, and a large-sized touch product is realized. A method of fabricating a touch substrate, a display panel, and a display device are further disclosed.
Abstract:
A touch screen includes a first substrate; a touch sensing structure including a first touch layer and a second touch layer; a first flexible circuit board and a second flexible circuit board, wherein the first touch layer and the second touch layer are respectively provided on both sides of the first substrate, the first touch layer includes at least one first electrode lead wire, and the second touch layer comprises at least one second electrode lead wire, the first flexible circuit board and the second flexible circuit board are respectively pressed on both sides of the first substrate, the first electrode lead wire is electrically connected with the first flexible circuit board, and the second electrode lead wire is electrically connected with the second flexible circuit board.
Abstract:
A touch screen and a fabricating method thereof and a touch device are provided. The touch screen comprises: a substrate, a touch electrode layer positioned above the substrate, and an organic insulating layer positioned beneath the touch electrode layer. At least a peripheral area of the touch electrode layer comprises a hollow area having a hollow pattern. The hollow area is at least arranged in an area where the peripheral area overlaps with the organic insulating layer. The hollow pattern allows the organic insulating layer to be partially exposed and allows the touch electrode layer to maintain electrical communication. The fabricating method of the touch screen comprises: forming an organic insulating layer above a substrate; and forming a touch electrode layer above the organic insulating layer.
Abstract:
The present invention relates to an array substrate and a display device. The array substrate comprises a first thin film transistor arranged on a non-display area of the array substrate and a second thin film transistor arranged on a display area of the array substrate, a part of a first active layer corresponding to a region between a first source and a first drain in the first thin film transistor forms a first trench, and a part of a second active layer corresponding to a region between a second source and a second drain in the second thin film transistor forms a second trench, the first trench has at least one first bent portion, the second trench has a second bent portion, and bending angles of the first bent portion and the second bent portion are the same or explementary angles.
Abstract:
An array substrate and a manufacturing method thereof, a display panel, and a display device are provided. The array substrate includes a substrate; a source-drain metallic layer and a first passivation metallic protective layer formed in sequence on the substrate, the source-drain metallic layer including a source electrode and a drain electrode not contacted with each other; a conductive protection layer formed on the substrate on which the first passivation metallic protection layer has been formed; and a pixel electrode formed on the substrate on which the conductive protection layer has been formed, the pixel electrode contacting the conductive protection layer.
Abstract:
An apparatus and a method for implementing touch feedback is provided. The method for implementing touch feedback includes determining a touch region corresponding to a touch operation in response to the touch operation on a touch display device, processing an image to be displayed based at least in part on the touch region wherein the processing includes adjusting image features of the image to be displayed in the touch region, and displaying the processed image to be displayed on the touch display device.
Abstract:
An OLED display panel, a packaging method thereof, and an OLED display device are provided. The OLED display panel comprises a substrate and a cover plate opposite to the substrate. An OLED device is provided on the substrate. The cover plate is attached onto the substrate so that the OLED device is located between the substrate and the cover plate. A packaging structure is provided between the substrate and the cover plate. The packaging structure surrounds periphery of the OLED device to hermetically package the OLED device in a dry and anti-oxidation manner. The packaging structure provided in periphery of the OLED device between the substrate and the cover plate in the OLED display panel can not only absorb moisture and oxygen well, but also hermetically package the OLED device more tightly, thereby protecting the OLED display panel against erosion of moisture and oxygen and ensuring better hermetical packaging effects.
Abstract:
A pixel unit, including: a pixel electrode, a gate electrode, a gate electrode line connected with the gate electrode, a source electrode, a data line connected with the source electrode, a second electrode disposed in a same layer as the pixel electrode, a first drain electrode connected with the pixel electrode, and a second drain electrode connected with the second electrode; the first drain electrode and the second drain electrode and the source electrode are provided with a channel therebetween, and the first drain electrode and the second drain electrode do not contact each other; along a direction of the data line, the edge of the second electrode is parallel with the edge of the pixel electrode and the two do not contact. An array substrate, a pixel driving method and a display device are further disclosed for overcoming the phenomenon of light leakage of the edge of the pixel unit caused by reduction of the width of the black matrix.