Abstract:
Provided are a display panel and a display device. The display panel includes a base substrate, at least one first type touch electrode block and at least one second type touch electrode block in a first layer and insulated with each other, touch signal lines in a second layer, and an insulation layer between the first layer and the second layer. The first type touch electrode block is connected to one or more touch signal lines via multiple first through holes running through the insulation layer, and the second type touch electrode block is connected to one or more touch signal lines via multiple second through holes running through the insulation layer. In a column containing the first type touch electrode block, the second distance of at least one second type touch electrode block is smaller than the first distance of the first type touch electrode block.
Abstract:
An array substrate and a display panel are provided according to embodiments, which include: a first substrate; multiple data lines and multiple scan lines located on a first side of the first substrate. The multiple data lines and multiple scan lines define a pixel array. The pixel array includes multiple sub-pixels. A length of each of the sub-pixels in an extension direction of the data lines is less than a width of each of the sub-pixels in an extension direction of the scan lines. The pixel array includes multiple first pixel groups and multiple second pixel groups arranged in a matrix form. A type of each of the sub-pixels included in the first pixel groups is different from a type of each of the sub-pixels in the second pixel groups. The first pixel groups and the second pixel groups are arranged alternately.
Abstract:
A bidirectional scanning unit, a driving method and a gate driving circuit are provided. The bidirectional scanning unit includes a first-stage sub unit and a second-stage sub unit, the bidirectional scanning unit can output a scanning signal stage by stage in a direction from the first-stage sub unit to the second-stage sub unit, and can also output a scanning signal stage by stage in a direction from the second-stage sub unit to the first-stage sub unit. The first-stage sub unit coordinates with the second-stage sub unit in a scanning process, when one of the first-stage sub unit and the second-stage sub unit outputs the scanning signal, the other of the first-stage sub unit and the second-stage sub unit does not output the scanning signal.
Abstract:
An array substrate and a display panel are provided according to embodiments, which include: a first substrate; multiple data lines and multiple scan lines located on a first side of the first substrate. The multiple data lines and multiple scan lines define a pixel array. The pixel array includes multiple sub-pixels. A length of each of the sub-pixels in an extension direction of the data lines is less than a width of each of the sub-pixels in an extension direction of the scan lines. The pixel array includes multiple first pixel groups and multiple second pixel groups arranged in a matrix form. A type of each of the sub-pixels included in the first pixel groups is different from a type of each of the sub-pixels in the second pixel groups. The first pixel groups and the second pixel groups are arranged alternately.
Abstract:
An array substrate, a manufacturing method, a touch display panel, a touch display apparatus are provided. The manufacturing method includes: forming a gate on a substrate; forming a first insulating layer covering the gate; forming an active layer and a sensing resistor; forming a first electrode layer covering the sensing resistor; forming a source and a drain; etching the first doped layer at a part being not overlapped with the source and the drain, reserving the first electrode layer to cover the sensing resistor; forming a second insulating layer covering the source and the drain; etching the second insulating layer at a part being overlapped with the sensing resistor to expose the first electrode layer; forming a second electrode layer, and etching the first/second electrode layer at a part where the first/second electrode layer is overlapped with the sensing resistor to expose the sensing resistor.
Abstract:
A bi-directional scanning unit, a driving method and a gate driving circuit are provided. The bi-directional scanning unit includes a first stage subunit and a second stage subunit. The bi-directional scanning unit outputs a scanning signal stage by stage in a direction from the first stage subunit to the second stage subunit and outputs a scanning signal stage by stage in a direction from the second stage subunit to the first stage subunit. During the scanning, the first stage subunit and the second stage subunit cooperate with each other, so that one of the stage subunits does not output a scanning signal while the other one outputs a scanning signal. With the technical solutions according to the embodiments, the bi-directional scanning unit can output two-stage scanning signals stage by stage, have a simplified structure, and satisfy diverse demands on the gate driving circuit.
Abstract:
A bidirectional scanning unit, a driving method and a gate driving circuit are provided. The bidirectional scanning unit includes a first-stage sub unit and a second-stage sub unit, the bidirectional scanning unit can output a scanning signal stage by stage in a direction from the first-stage sub unit to the second-stage sub unit, and can also output a scanning signal stage by stage in a direction from the second-stage sub unit to the first-stage sub unit. The first-stage sub unit coordinates with the second-stage sub unit in a scanning process, when one of the first-stage sub unit and the second-stage sub unit outputs the scanning signal, the other of the first-stage sub unit and the second-stage sub unit does not output the scanning signal.
Abstract:
A shift register, a driving method thereof, and a gate driving circuit. The shift register includes a first transistor, with a control terminal thereof electrically connected to a first control node; a scan driving unit; a reset unit; a maintaining control unit; a first potential maintaining unit, with a control terminal thereof electrically connected to a second control node, an input terminal thereof electrically connected to a third level signal line, and an output terminal thereof electrically connected to the first control node; and a second potential maintaining unit, with a first control terminal thereof electrically connected to the second control node, a second control terminal thereof electrically connected to a second clock signal line, an input terminal thereof electrically connected to a fourth level signal line, and an output terminal thereof electrically connected to the output terminal of the shift register.
Abstract:
Provided are a display panel and a display device. The display panel includes a base substrate, at least one first type touch electrode block and at least one second type touch electrode block in a first layer and insulated with each other, touch signal lines in a second layer, and an insulation layer between the first layer and the second layer. The first type touch electrode block is connected to one or more touch signal lines via multiple first through holes running through the insulation layer, and the second type touch electrode block is connected to one or more touch signal lines via multiple second through holes running through the insulation layer. In a column containing the first type touch electrode block, the second distance of at least one second type touch electrode block is smaller than the first distance of the first type touch electrode block.
Abstract:
A shift register includes a forward/backward scan-control module, configured to transmit a signal of a forward-scan-signal terminal or a signal of a backward-scan-signal terminal to a first node; an interlock module, configured to transmit a signal of a first voltage terminal to a second node, and transmit a signal of a second voltage terminal to the first node; a pull-down module, configured to transmit the signal of the first voltage terminal to a gate-signal output terminal; an output module, configured to transmit a signal of a second clock-signal terminal to the gate-signal output terminal; and a reset module, configured to transmit the signal of the second voltage terminal to the first node, and transmit the signal of the first voltage terminal to the gate-signal output terminal. The disclosed shift register can prevent leakage of the first node, and thus improve the quality and the performance of the shift register.