Abstract:
The present invention provides a pixel structure, which includes a TFT substrate (20), a CF substrate (30) and a liquid crystal layer (40). The TFT substrate (20) includes a first transparent substrate (22) and a pixel electrode (24). The CF substrate (30) includes a second transparent substrate (32) and a common electrode (34). The pixel electrode (24) includes a first sub pixel electrode (26) and a second sub pixel electrode (28). The common electrode (34) includes a first sub common electrode (36) and a second sub common electrode (38). The first sub pixel electrode (26) and the first sub common electrode (36) have a first voltage difference and the second sub pixel electrode (28) and the second sub common electrode (38) have a second voltage difference. The first voltage difference is greater than or less than the second voltage difference.
Abstract:
The present disclosure discloses a driving circuit of display panel and the quality test method thereof. The driving circuit comprises a control circuit and a gate driving circuit. The control circuit comprises a first control output terminal used to output a first control signal and a second control output terminal used to output a second control signal. The gate driving circuit comprises a driving input terminal. In normal display mode, the driving input terminal receives the first control signal from the first control output terminal; in test mode, the driving input terminal receives the second control signal from the second control output terminal.
Abstract:
The present invention provides an array substrate and a liquid crystal display panel. The array substrate includes a pixel unit, and a drive circuit and a control circuit corresponding to the pixel unit. The pixel unit includes a first pixel electrode and a second pixel electrode. The drive circuit is for inputting a display signal to the pixel unit. The control circuit is for charging a potential on the first pixel electrode or the second pixel electrode and thereby making the first pixel electrode and the second pixel electrode to have a voltage difference therebetween. The control circuit is disposed inn a vertical projection region on the array substrate of an opaque region. By using the above solution, the present invention can reduce color shift and increase aperture ratio.
Abstract:
The present invention provides a manufacture method of the color filter, comprising: sequentially deposing a metal layer and a black matrix layer on a substrate; implementing a patterning process to the black matrix layer with a half tone mask; removing the metal layer in the color filter area and the black matrix layer in the through hole area; coating a RGB color filter layer in the color filter area; deposing a transparent metal layer on the substrate to form a transparent electrode. The present invention improves the display quality of the liquid crystal display panels.
Abstract:
A display panel and a display device are provided. The display panel has a color filter substrate, a thin film transistor array substrate, a liquid crystal layer, and a sealing element. The sealing element is disposed on a non-active area of a liquid crystal cell. The sealing element has at least four sealing sections having beginnings and ends connected to each other. The sealing sections have at least one sealant segment and at least one color resist segment. The at least one sealant segment and the at least one color resist segment are integrated with each other. A narrow frame of the display panel is achieved.
Abstract:
A liquid crystal panel includes a plurality of pixels arranged in a matrix form, a plurality of charge-filling gate lines, and a plurality of charge-sharing gate lines. Each pixel column electrically couples to one charge-filling gate line and one charge-sharing gate line. The charge-sharing gate line electrically coupled with the n-th pixel column is electrically coupled with the charge-filling gate line electrically coupled with the (n+m)-th pixel column The charge-filling gate line electrically coupled with each pixel column is inputted with first driving signal when the liquid crystal panel is driven in a 2D display mode and is inputted with second driving signals when the liquid crystal panel is driven in a 3D display mode. In addition, a driving method of the liquid crystal panel and the liquid crystal device incorporating the liquid crystal panel are disclosed.
Abstract:
A liquid crystal panel and a liquid crystal display are disclosed. The liquid crystal panel includes an array substrate, a color filtering substrate opposite to the array substrate, and a liquid crystal layer between the array substrate and the color filtering substrate. The array substrate includes scanning lines. The color filtering substrate includes a black matrix (BM) and a common electrode. The scanning lines correspond to the BM. The common electrode covers the BM. The common electrode is provided with a hollow structure corresponding to the scanning lines such that the liquid crystal located corresponding to the locations of the hollow structure are prevented from being twisted when the scanning line applies scanning voltage and the common electrode applies public voltage. In this way, the group of light spots is avoided when the displacement occurs between the array substrate and the color filtering substrate.
Abstract:
A liquid crystal display panel is disclosed. The liquid crystal display panel comprises a testing region, which comprises testing lines. The testing lines comprise data short lines and scan short lines and a static-electron-protection circuit. The static-electron-protection circuit is disposed between the testing lines and the common welding lead wires. The static-electricity-protection circuit is used to release the static electrons generated on the data lines or the scan lines through the common lines, when static electrons during the liquid crystal display manufacturing process of the data lines or the scan lines are generated.
Abstract:
A liquid crystal display apparatus having a wire-on-array structure is disclosed. The liquid crystal display apparatus has a plurality of driving IC units, a plurality of first conductive-wire sets and second conductive-wire sets. The driving IC units are arranged at intervals in a peripheral circuit area around the active area of the liquid crystal display apparatus. The first conductive-wire sets and the second conductive-wire sets are connected alternately between every two of the plurality of driving IC units. Each first conductive-wire set has a conducting structure for connecting to a common electrode. The arrangement of the first conductive-wire sets and the second conductive-wire sets facilitates achievement of thin bezel design.
Abstract:
A display panel, a pixel structure and a driving method thereof are disclosed. The pixel structure comprises a plurality of sub pixels, and each sub pixel comprises a first display area, a second display area, and a third display area. According to the pixel structure of the present disclosure, the color shift phenomenon during 2D display can be reduced, the aperture ratio thereof can be improved, and the cross-talk phenomenon during 3D display can be avoided effectively.