Abstract:
An array substrate, a display panel and a display device are provided. The array substrate includes: multiple gate lines and multiple data lines, where the gate lines are insulated from and intersect with the data lines, which define multiple pixel units; a pixel electrode layer, where the pixel electrode layer includes multiple pixel electrodes, and the pixel electrodes are disposed in the pixel units; a common electrode layer, where the common electrode layer includes multiple common electrodes, and the common electrode serves as a touch electrode; and multiple auxiliary electrodes, where the auxiliary electrode is electrically connected to the touch electrode, is disposed in a different conductive layer from the pixel electrode, and overlaps with at least one of the pixel electrodes. In this way, the storage capacitance is increased, and the display device has an improved display effect as compared with the conventional technology.
Abstract:
It is provided an array substrate and a display device. The array substrate includes a first substrate. Multiple first common electrodes and multiple second common electrodes are arranged above the first substrate, where the first and second common electrodes are configured to serve as common electrodes in a display phase and serve as touch sensing electrodes in a touch sensing phase. The first common electrodes are arranged in a different film layer from the second common electrodes, and projections of first common electrodes on the first substrate are adjacent to or overlap with projections of second common electrodes adjacent to the first common electrodes on the first substrate in a first direction.
Abstract:
An array substrate is provided. The array substrate includes a display region and a non-display region; the display region includes a first display region, a second display region, and a third display region arranged in sequence; the non-display region includes a first control module and a second control module; the display region is configured with a plurality of electrode blocks; the electrode blocks located in the first display region are connected with the first control module; the electrode blocks located in the third display region are connected with the second control module; the second display region includes at least one column of the electrode blocks, regarding each of the at least one column, some of the electrode blocks are connected with the first control module, and others are connected with the second control module. Accordingly, vision disparity can be avoided by alternately connecting the electrode blocks with different control modules.
Abstract:
An array substrate, a display panel, and a display device are disclosed. The array substrate includes: multiple gate lines, multiple data lines and multiple touch lines. The multiple data lines and multiple touch lines are insulated from each other, and extend in parallel directions. Each of the touch lines includes multiple line conductive portions and multiple connectors. The line conductive portions are located in the same layer with the gate lines and each of the line conductive portions is located between two adjacent gate lines. The connectors are located in a different conductive layer from the line conductive portions and the connectors connect two adjacent line conductive portions through a via hole. The coupling capacitance between the line conductive portions and the touch electrode positionally corresponding thereto may be reduced, to ensure a high accuracy of a touch operation for the display device.
Abstract:
The present disclosure provides a liquid crystal panel and a method for manufacturing the same. The liquid crystal display panel includes: first and second substrates disposed opposite to each other; a liquid crystal layer including a plurality of liquid crystal molecules and disposed between the first and second substrates; first and second alignment layers disposed on the first and second substrates and facing the liquid crystal layer; and first and second electrode both disposed on the first substrate, so that an electric field is formed between the first and second electrodes when a voltage is applied to the first and second electrodes. The first electrode has a plurality of slits, each of which has an end region and a central region adjacent to the end region, and the alignment layers at the end region and the central region have different alignment directions.
Abstract:
A liquid crystal display panel includes: a first polarization layer, a second polarization layer, and a liquid crystal layer located between the two polarization layers. Liquid crystal molecules in the liquid crystal layer are initially aligned along a first direction. At least one first region and at least one second region are defined in the first polarization layer and the second polarization layer. In the first region, the absorption axis of the first polarization layer extends along the first direction while the absorption axis of the second polarization layer is perpendicular to the first direction. In the second region, the absorption axis of the first polarization layer extends along a second direction while the absorption axis of the second polarization layer is perpendicular to the second direction. A first angle formed by the second direction and the first direction is greater than 0 degree but less than 90 degrees.
Abstract:
A polarizer and fabrication method thereof, a display panel and a display device are provided. The polarizer includes an organic film capable of being aligned during a polarization treatment. The organic film includes at least one first region having a first polarization axis and at least one second region having a second polarization axis. A direction of the first polarization axis is different from a direction of the second polarization axis.
Abstract:
An array substrate and a display panel. The array substrate includes an active region and a peripheral circuitry region surrounding the active region; a plurality of scan lines and a plurality of data lines intersected with and insulated from the scan lines; a plurality of pixel driving circuit units disposed at intersection areas between the scan lines and the data lines; a plurality of first electrodes respectively electrically connected to the plurality of pixel driving circuit units and disposed in the active region and the peripheral circuitry region of the array substrate; and a plurality of first connection lines configured to electrically connect the pixel driving circuit units to the corresponding first electrodes.
Abstract:
A display device is disclosed. The display device includes a first display substrate, an opposite substrate, and a sealing material forming a sealed area including a display area, where the sealing material is disposed between the first display substrate and the opposite substrate. The first display substrate includes a substrate and a flexible thin film, where the flexible thin film includes a first area entirely covering the display area, and a second area beyond the substrate. In addition, a first circuit is disposed on the first area, and a second circuit is disposed on the second area.
Abstract:
A display panel and a display device, where the display panel includes a display region and a frame region surrounding the display region. The display panel includes a peripheral touch structure disposed in the frame region and an internal touch structure disposed in the display region.