Abstract:
A liquid crystal display is disclosed. The liquid crystal display comprises a gate line, a data line, a first common line and a continuous second common line. The gate line is disposed on a substrate, and the data line intersects the gate line. The first common line is parallel with the gate line and the second common line intersects through the gate line. By this invention, the first common lines and second common lines of pixels can form a reticular structure for reducing RC delay effect of the common line.
Abstract:
Embodiments of the present invention employ resistance compensation to broaden voltage reading range of readout lines connected to a processing chip of an in cell touch panel. The resolution of the in cell touch panel is increased under the condition that the number of pins of the processing chip is not increased or is unchanged.
Abstract:
A data line repair structure for a liquid crystal display panel. The data line repair structure includes a first repair line parallel to a scan line and crossing the first end of a data line; a second repair line parallel to the data line and connected to a gate driving chip; and a third repair line parallel to the scan line and crossing the second end of the data line. When the data line has a broken point, the source driving chip transmits a data signal to a pixel electrode through the first repair line, the second repair line, and the third repair line.
Abstract:
A grounding structure for a display device is provided. The grounding structure includes a substrate, a first connecting pad, a second connecting pad, a connecting structure and a grounding line. The first and second connecting pads are disposed on the substrate. The connecting structure electrically connects the first and second connecting pads. The first grounding line is disposed on the substrate, and has a length larger than two thirds of the projected length of the connecting structure on the surface of the substrate.
Abstract:
A touch panel and a touch display device are disclosed, in which the touch panel includes a substrate, a touch component layer and a shielding-electrode film. The substrate has a surface. The touch component layer is disposed on the surface of the substrate and includes a metallic layer, an electrode layer, a protection layer and a hard coat layer. The protection layer is disposed between the metallic layer and the electrode layer. The hard coat layer at least covers the metallic layer and the electrode layer. The shielding-electrode film is disposed on the hard coat layer of the touch component layer, wherein the touch component layer is located between the substrate and the shielding-electrode film, and a resistance of the shielding-electrode film is greater than a resistance of the electrode layer.
Abstract:
A data line repair structure for a liquid crystal display panel is disclosed. The data line repair structure includes a first repair line parallel to the scan line and crossing a first end of the data line; a fourth repair line formed in an oblique line area of the liquid crystal panel, coupled to the first repair line; a second repair line parallel to the data line, coupled to the gate driving chip and the fourth repair line; a third repair line parallel to the scan line, coupled to the second repair line and separated from a second end of the data line; and a floating line connected between the third repair line and the second end of the data line when the data line has a broken point.
Abstract:
A data line repair structure for a liquid crystal display panel is disclosed. The data line repair structure includes a first repair line parallel to the scan line and crossing a first end of the data line; a fourth repair line formed in an oblique line area of the liquid crystal panel, coupled to the first repair line; a second repair line parallel to the data line, coupled to the gate driving chip and the fourth repair line; a third repair line parallel to the scan line, coupled to the second repair line and separated from a second end of the data line; and a floating line connected between the third repair line and the second end of the data line when the data line has a broken point.
Abstract:
A circuit of a liquid crystal display device for generating common voltages comprises an initial voltage source, an inverter, and a panel common voltage input port. The initial voltage source generates an initial voltage. The voltage signal from the panel common voltage input port passes through the inverter to become a compensation voltage. The initial voltage is compensated by the compensation voltage to result in a compensated common voltage. The compensated common voltage supplies the panel of the liquid crystal display device.
Abstract:
A touch panel and a touch display device are disclosed, in which the touch panel includes a substrate, a touch component layer and a shielding-electrode film. The substrate has a surface. The touch component layer is disposed on the surface of the substrate and includes a metallic layer, an electrode layer, a protection layer and a hard coat layer. The protection layer is disposed between the metallic layer and the electrode layer. The hard coat layer at least covers the metallic layer and the electrode layer. The shielding-electrode film is disposed on the hard coat layer of the touch component layer, wherein the touch component layer is located between the substrate and the shielding-electrode film, and a resistance of the shielding-electrode film is greater than a resistance of the electrode layer.
Abstract:
A touch panel is provided. The touch panel having a pixel area and a sensing area includes a first substrate and an opposite second substrate. A press sensing spacer is disposed on the sensing area of the first substrate. A press sensing stage is disposed on the sensing area of the second substrate, corresponding to the press sensing spacer. An alignment layer is disposed over the second substrate, covering the press sensing stage and the pixel area of the second substrate. In an embodiment, the height of the press sensing stage is greater than the height from the surface of the second substrate at the pixel area to the bottom of the alignment layer by at least 0.05 μm.