Abstract:
The present disclosure provides a display substrate such that each pixel unit of the display substrate includes a switching circuit and a control circuit, and the switching circuit is connected to a corresponding gate line, a control circuit of a respective pixel unit, and a corresponding pixel electrode. The control circuit is configured to transmit a data signal on a corresponding data line to a switching circuit of the respective pixel unit under control of a corresponding control signal line, and n is an integer not less than 2. The present disclosure further provides a display device including the above display substrate and a driving method for the above display substrate.
Abstract:
The present application discloses an array substrate, a display panel and a display apparatus having the same, and a fabricating method thereof. The array substrate includes a base substrate; a first electrode and a second electrode, the first electrode and the second electrode being two different electrodes selected from a pixel electrode and a common electrode; and a thin film transistor including an active layer, an etch stop layer on a side of the active layer distal to the base substrate, a first node, and a second node.
Abstract:
The present disclosure provides a method for fabricating an array substrate. The method includes providing a substrate; forming a first pattern on the substrate including a plurality of signal lines and a plurality of electrostatic discharge (ESD) lines, wherein an ESD line is configured to connect two signal lines; and removing a portion of each ESD line during a process for forming a second pattern over the first pattern to disconnect the two signal lines.
Abstract:
A method, a control device, and a control system for controlling a mirror display device are disclosed. The method for controlling the mirror display device includes: sensing luminance information of a viewing environment; calculating a luminance of a display image and a luminance of a reflection image based on the luminance information; and controlling the luminance of the display image and the luminance of the reflection image in the mirror display device based on the calculated result. The method for controlling the mirror display device enables the luminance of the display image and the luminance of the reflection image in the mirror display device to be changed in accordance with the luminance information of the viewing environment at the same time.
Abstract:
An electrostatic discharge protection circuit, a display substrate and a display apparatus are disclosed. The electrostatic discharge protection circuit includes: a first conductive portion, having an end portion; and at least one electrostatic discharge portion, arranged on a same layer as the first conductive portion and spaced from the end portion of the first conductive portion, the at least one electrostatic discharge portion being configured to discharge electrostatic charges generated at the end portion of the first conductive portion.
Abstract:
Embodiments of the present disclosure relate to a data driving circuit, a driving method thereof, an array substrate, and a display panel. The data driving circuit includes a data driver, a multiplex circuit, and a control circuit. The data driver includes M data output terminals, and each of the data output terminals provides a data signal to L data lines via the multiplex circuit. The multiplex circuit includes M×L switch groups, and each of the switch groups includes N switch tubes and is coupled between one data line and the corresponding data output terminal. Each switch tube is coupled to one of L×N gate control terminals of the control circuit. Each gate control terminal is coupled to M switch tubes that are spaced apart from each other by (L×N×1) switch tubes. In the embodiments, M is an integer, and L and N are integers greater than or equal to 2.
Abstract:
A circuit substrate has a first area and a second area. The second area includes a rounded corner region and a first rectangular region connected to the rounded corner region. The first rectangular region extends along a second direction. The circuit substrate includes: a plurality of gate lines disposed in the first area, and a gate driver on array (GOA) circuit disposed in the second area. The GOA circuit including at least one GOA unit disposed in the rounded corner region and a GOA unit disposed in the first rectangular region. Along the first direction, a length of a GOA unit in the rounded corner region is less than a length of the GOA unit in the first rectangular region; and along the second direction, a width of the GOA unit in the rounded corner region is greater than a width of the GOA unit in the first rectangular region.
Abstract:
A shift register includes a pull-up control circuit, a pull-up circuit, a pull-down control circuit, a pull-down circuit, and a reset circuit. The pull-down circuit is connected to the pull-down node, the pull-up node, a second control terminal, a first voltage terminal, and a signal output terminal, and is configured to pull down potentials of the pull-up node and the signal output terminal to a potential of the first voltage terminal under the control of the pull-down node; moreover, the pull-down circuit is further configured to pull down potentials of the pull-up node and the signal output terminal to a potential of the first voltage terminal under the control of a signal from the second control terminal.
Abstract:
The present disclosure provides a display substrate, a display panel, a display device and a method for producing the display substrate. The display substrate includes a base substrate and a black matrix formed on the base substrate, the black matrix having physical portions and a first gap region between the physical portions, the first gap region being aligned with a clock signal line of a gate driving circuit on an opposite substrate, wherein at least one layer of first color resist is provided in the first gap region.
Abstract:
A touch screen, a driving method thereof and a display device. Common electrodes (9) of at least part of pixel units (5) on an array substrate (1) form a plurality of touch driving electrodes (3) each comprising at least one common electrode (9); the plurality of touch driving electrodes (3) are grouped into a plurality of touch driving electrode groups (101, 102) each comprising at least one touch driving electrode (3), and a plurality of touch sensing electrodes (4) are formed on a color filter substrate (2), the touch driving electrodes (3) and the touch sensing electrodes (4) are disposed to be intersected horizontally and vertically. Further, a driving circuit (10) is further provided, during a display period in a display time for one frame of picture, a common electrode signal is transferred by the driving circuit (10) to all of the touch driving electrodes (3), while during a touch period in the display time for the one frame of picture, a touch scan signal is only transferred by the driving circuit (10) to the respective touch driving electrodes in one of the touch driving electrode groups (101, 102).