Abstract:
A liquid crystal panel and the array substrate thereof are disclosed. The array substrate includes a switch controller respectively connects with the first scanning line and the second scanning line. In the 2D displaying mode, the switch controller turns on the first scanning line and the second scanning line in turn. In the 3D displaying mode, the switch controller turns on the first scanning line, and turns off the second scanning line. With such configuration, the flicker issues in the 3D displaying mode may be improved and the manufacturing cost is prevented from getting higher.
Abstract:
This invention discloses a liquid crystal display panel and an array substrate. The liquid crystal display device comprises a first substrate, a second substrate, a liquid crystal layer sandwiched between the first substrate and the second substrate. There are a plurality of scan lines and data lines on the first substrate. The liquid crystal display panel are divided into multiple pixel areas by the scan lines and data lines. The area of the main pixel area is getting larger and the area of the sub-pixel area is getting smaller from a edge to a center of the liquid crystal display panel, and voltage applied on the sub-pixel area when displaying is smaller than the main pixel area. This design enhances the brightness uniformity of the liquid crystal display panel and eliminate the whiting issues in the side edges.
Abstract:
Disclosed are a liquid crystal display panel, and a drive structure and a drive method thereof. The drive structure comprises a plurality of gate lines, a plurality of sets of charge and share gate lines, a plurality of switch units, a first drive signal line, a second drive signal line, a third drive signal line, a fourth drive signal line, and a low-voltage signal line. A plurality of switch units is used in conjunction with corresponding timing signals to achieve separate control of the functions of voltage charging and voltage sharing.
Abstract:
The present disclosure relates to a mask plate, an exposure method thereof, and a liquid crystal display panel including the mask plate. On the mask plate, a plurality of pattern regions is arranged in a gradient variation from the center of the mask plate to the edges thereof according to the deformation degree of the exposure mask. The method for exposing the mask plate comprises the following steps of, (a) providing an exposure mask in a horizontal state, and measuring the deformation degree of the exposure mask; (b) arranging, on the mask plate, a plurality of pattern regions, the dimensions of which change in a gradient manner from the center of the mask plate to the edges thereof according to the deformation degree of the exposure mask; and (c) completing the exposure of the mask plate. The mask plate according to the present disclosure can compensate the effect of deformation of the exposure mask on the exposure area of the mask plate.
Abstract:
The present invention provides a liquid crystal display panel and a cell method thereof. The liquid crystal display panel comprises a TFT array substrate (100), a color filter substrate (200) and sealant (300) located between the TFT array substrate (100) and the color filter substrate (200), and the surrounding region of the TFT array substrate (100) is provided with the a plurality of WOA (120) and the surrounding region of the color filter substrate (200) is provided with a black matrix (220), and the silt region of the black matrix (220) is formed with a plurality of slits (223) corresponding to the sealant (300), and thus to allow the ultraviolet light penetrating the black matrix (220), and the sealant (223) to irradiate on the sealant (300) for speeding up the solidification without forming the slits on the WOA (120), and the width of the WOA (120) is narrow.
Abstract:
The present disclosure relates an array substrate and a liquid crystal panel. A plurality of sets of gate lines are arranged on the array substrate, each set of gate line at least includes a first gate line and a second gate line, each set of gate line is arranged corresponding to a switch unit, the switch unit is alternately applied the inputted scanning signal on the first gate line and the second gate line. Through the above-describe manner, the present disclosure is possible to resolve the problems of the image sticking and the inconsistent of the left and right eyes brightness when the large-size panel displaying the 3D image, and thus enhance the quality of 3D image.
Abstract:
Disclosed is an array substrate, a liquid crystal display panel, and a driving method. The array substrate includes a plurality of pixel units, which is arranged in a pixel matrix; and a plurality of data lines, which is arranged to run through the pixel units. With respect to each of the data lines inside of boundary data lines of the pixel matrix, two pixel units electrically connected thereto in sequence are located in adjacent rows and at adjacent columns in the pixel matrix. The array substrate improves an aperture ratio of the pixel unit, which contributes to improvement of the quality of images.
Abstract:
Disclosed are a liquid crystal display panel, and a drive structure and a drive method thereof. The drive structure comprises a plurality of gate lines, a plurality of sets of charge and share gate lines, a plurality of switch units, a first drive signal line, a second drive signal line, a third drive signal line, a fourth drive signal line, and a low-voltage signal line. A plurality of switch units is used in conjunction with corresponding timing signals to achieve separate control of the functions of voltage charging and voltage sharing.
Abstract:
The present disclosure discloses a liquid crystal panel, including an array substrate and a color filter substrate formed oppositely to the array substrate and a LC layer sandwiched between the array substrate and the color filter substrate, and a seal formed around the LC layer. A wall is formed on a position of the array substrate next to the seal and toward the LC layer. Multiple color resister units are sequentially connected on a coplanar face to form the wall. The color resister A is formed by more than three color resisters sequentially arranged and the adjacent color resisters the two color resister units A are different. The present disclosure provides a liquid crystal display device.
Abstract:
Disclosed are a liquid crystal display panel and a liquid crystal display device for improving display brightness uniformity. The liquid crystal display panel includes a display substrate, a source driving circuit and a plurality groups of gate driving circuits. Each gate driving circuit includes a gate driving chip and a group of fan-out circuits, and resistances of wirings of different groups of fan-out circuits gradually increase along a direction away from the source driving circuit. The liquid crystal panel can improve brightness uniformity in different positions while displaying.