Abstract:
The present invention provides a liquid crystal display device and display control method thereof Each sub-pixel of the liquid crystal display device includes multiple display regions and multiple control switches for controlling the display regions to receive corresponding data voltages, wherein, the multiple control switches includes a first control switch set and a second control switch set, and the first control switch set and the second control switch set are connected in parallel with the same data line. Through the above way, the present invention can increase the pixel aperture ratio of the wide-viewing-angle liquid crystal display device and decrease the power consumption.
Abstract:
The present invention provides a liquid crystal display panel and a manufacturing method thereof. The liquid crystal display panel includes a first plate disposing a pad on an inside surface thereof, and a second plate including a glass substrate and at least one coating layer formed on the glass substrate. Opposite the pad of the first plate, the at least one coating layer and the glass substrate of the second plate together forms a blocking groove. The present invention benefits to the narrow frame design and can assure the display effect of the liquid crystal display panel.
Abstract:
The present invention discloses a liquid crystal panel and a color filter substrate thereof. By providing at least one separation line perpendicular to a scan direction of horizontal source signals, a transparent conductive layer of the color filter substrate is divided into a plurality of transparent conductive layer sections, each of which is not connected with the others. When a horizontal crosstalk (H-crosstalk) phenomenon is generated, an adjacent horizontal area is not influenced, so that it can lower the H-crosstalk phenomenon of the liquid crystal panel, so as to increase the display quality of the liquid crystal panel.
Abstract:
The present invention provides a liquid crystal panel, which includes: a thin-film transistor (TFT) substrate, a color filter (CF) substrate opposite to the TFT substrate, and a liquid crystal layer arranged between the TFT substrate and the CF substrate. The TFT substrate includes a first glass substrate and a pixel electrode. The CF substrate includes a second glass substrate and a common electrode. The pixel electrode includes a plurality of pixels, each of which includes a plurality of sub-pixels. Each sub-pixel includes: a first zone and a second zone adjacent to the first zone. The first zone has a liquid crystal cell thickness that is greater than or smaller than a liquid crystal cell thickness of the second zone. The same driving voltage applied to the first and second zones of would result in different electric fields due to the different liquid crystal cell thicknesses.
Abstract:
The present invention provides a liquid crystal panel, which includes: a thin-film transistor (TFT) substrate, a color filter (CF) substrate opposite to the TFT substrate, and a liquid crystal layer arranged between the TFT substrate and the CF substrate. The TFT substrate includes a first glass substrate and a pixel electrode. The CF substrate includes a second glass substrate and a common electrode. The pixel electrode includes a plurality of pixels, each of which includes a plurality of sub-pixels. Each sub-pixel includes: a first zone and a second zone adjacent to the first zone. The first zone has a liquid crystal cell thickness that is greater than or smaller than a liquid crystal cell thickness of the second zone. The same driving voltage applied to the first and second zones of would result in different electric fields due to the different liquid crystal cell thicknesses.