Abstract:
The present invention provides a touch substrate and a touch screen. The touch substrate comprises first electrodes and electrodes which intersect with each other, each first electrode includes a plurality of first metal meshes, adjacent first metal meshes are connected through a connection portion, each second electrode includes a plurality of second metal meshes, adjacent second metal meshes are connected through a connection bridge, the first metal meshes, the second metal meshes and the connection portion are in the same layer, and an insulation layer is provided between the layer in which the connection portion is located and the layer in which the connection bridge is located, at least a part of edges of the first metal mesh is provided with a first side strip thereat, the first side strip is adjacent to a corresponding second metal mesh and is connected to the first metal mesh.
Abstract:
The present disclosure provides a touch panel, its manufacturing method and a touch display panel. A bridging point member of a bridging line, through which sensing electrodes in the touch panel are electrically connected to each other, is provided with at least one via-hole, so as to provide the bridging point member with a hollowed-out pattern.
Abstract:
The present invention provides an in-cell touch screen and a drive method thereof. The in-cell touch screen comprises a first substrate and a first electrode layer provided above the first substrate, wherein, the first electrode layer comprises touch control drive electrodes, touch control sensing electrodes and touch control amplification electrodes, which are mutually insulated, the touch control amplification electrodes are provided in a gap between the touch control drive electrodes and the touch control sensing electrodes, during a display phase, at least the touch control drive electrodes and the touch control sensing electrodes are applied with a common voltage, and during a touch control phase, the touch control drive electrodes are applied with a touch control drive signal, and the touch control sensing electrodes output touch control sensing signals.
Abstract:
A touch substrate includes a base substrate and at least one driving electrode chain and at least one sensing electrode chain each of which is arranged parallel to each other on the base substrate. Each driving electrode chain includes a plurality of driving electrodes which are connected in series, and each sensing electrode chain includes a plurality of sensing electrodes which are connected in series. The driving electrodes and/or the sensing electrodes are made of a metal conductor, and a plurality of light transmissive regions are provided in each of the driving electrodes and/or the sensing electrodes made of the metal conductor. The touch substrate can be touched and controlled normally and can transmit light normally, while the surface resistance of each of the driving electrodes and/or the sensing electrodes therein is decreased greatly. Thus, the power consumption and production cost of the touch substrate is further decreased.
Abstract:
The invention provides an array substrate, a display device and a driving method thereof. The array substrate comprises a plurality of gate lines and data lines, the gate lines and the data lines define a plurality of pixel units arranged in an array, each of which comprises a common electrode and a pixel electrode, wherein the common electrodes of at least part of the pixel units are formed as touch driving electrodes, at least part of the data lines are formed as touch sensing electrodes, wherein the touch driving electrodes and the touch sensing electrodes are insulated from each other; the touch driving electrodes are applied with common voltages during a display period, and are applied with touch scan signals during a touch period; and the touch sensing electrodes are applied with data signals during the display period, and generate and output coupling signals during the touch period.
Abstract:
A touch control unit includes a control module, a sensing module, and an output module. The control module is connected to a control line and the sensing module. The sensing module is connected to the control line and the output module. The output module is connected to a sensing line and an output line. The control module is used for writing a charging voltage into the sensing module under control of a control signal output from the control line. The sensing module is used for generating a sensing voltage and outputting the sensing voltage to the output module. The output module is used for outputting a touch signal to the output line under control of the sensing signal output from the sensing line. The technical solutions according to the present invention increase the sensitivity of a touch and the display quality of a picture.
Abstract:
A display substrate, a method for fabricating the same and a display device are disclosed. The display substrate includes: a base substrate and a plurality of pixel sets disposed on the base substrate, each of the pixel sets comprising: four first sub-pixels (21), four second sub-pixels (22), four third sub-pixels (23) and four fourth sub-pixels (24), sub-pixels of each of the pixel-sets are arranged into a 4×4 matrix; among four pixel rows of each of the pixel sets, a first sub-pixel (21), a second sub-pixel (22), a third sub-pixel (23) and a fourth sub-pixel (24) are sequentially arranged in one of the pixel rows, a second sub-pixel (22), a third sub-pixel (23), a fourth sub-pixel (24) and a first sub-pixel (21) are sequentially arranged in one of the pixel rows, a fourth sub-pixel (24), a first sub-pixel (21), a second sub-pixel (22) and a third sub-pixel (23) are sequentially arranged in one of the pixel rows, and a third sub-pixel (23), a fourth sub-pixel (24), a first sub-pixel (21) and a second sub-pixel (22) are sequentially arranged in one of the pixel rows. The display substrate improves the display quality of the displayed images.
Abstract:
A pixel driving circuit includes: a driving transistor, a data write circuit, a threshold compensation circuit, a first capacitor, and a second capacitor. A gate of the driving transistor is coupled to a first node, a first electrode is coupled to a second node, and a second electrode is coupled to a third node. The data write circuit is configured to transmit a signal of a data signal terminal to the second node in response to a signal of a first gate driving signal terminal. The threshold compensation circuit is configured to communicate the first node with the third node in response to a signal of a second gate driving signal terminal. The first capacitor is coupled between the first node and the first gate driving signal terminal. The second capacitor is coupled between the first node and the second gate driving signal terminal.
Abstract:
A driving circuit, a driving method, a driving module and a display device are provided. The driving circuit includes a driving signal generation circuit, a gating circuit, an output control circuit, an output circuit, a voltage control circuit and a third control node control circuit. The third control node control circuit is electrically connected to the first node and the third control node respectively, and is configured to control the potential of the third control node according to the potential of the first node.
Abstract:
A display substrate, a manufacturing method thereof and a display apparatus are provided. The display substrate includes a display region including N pixel groups in a first direction and a peripheral region; each pixel group includes at least one row of pixel regions; the display substrate includes: first and second reset lines; wherein each row of pixel regions corresponds to one first reset line and one second reset line; (N+M) first shift register units are arranged along the first direction; an output terminal of an ith first shift register unit is connected to a second reset line corresponding to an (i−M)th row of pixel regions; an output terminal of a jth first shift register unit is connected to a first reset line corresponding to a jth row of pixel regions through a signal transmission line; N is an integer greater than 2, M is a preset positive integer, M+1≤i≤N+M, 1≤j≤N, and i and j are both integers; orthographic projections of the signal transmission line and at least one of the first shift register units on the base substrate overlaps with each other.