Abstract:
A liquid crystal display system is provided. The liquid crystal display system includes a backlight module, an LCD panel, and polarized glasses. The LCD panel includes a first polarizer, a liquid crystal layer, an array substrate, and a color film substrate. The polarized glasses include a second polarizer. The direction of the polarized light axis of the second polarizer is perpendicular to the direction of the polarized light axis of the first polarizer when the polarized glasses are used for displaying the display picture of the LCD panel. A private display can be performed for specific users by the present invention.
Abstract:
The present invention provides a pixel structure including a plurality of pixel cells arranged in a matrix. The pixel cells are defined by a plurality of scan lines and data lines that being mutually intersected. Each pixel cell includes a first discharge control switch, a second discharge control switch, a main pixel area and a sub-pixel region is disposed adjacent the latter. The main pixel area includes a main pixel electrode and a main charge control switch. The sub-pixel area includes a sub-pixel electrode and a sub-charge control switch. The main pixel electrode receives display signals by the main charge control switch. The sub-pixel electrode receives display signals by the sub-charge control switch. The scan line transmitting scan signals of its present pixel cell and the sub-pixel electrode of the above pixel cell are connected by said first discharge control switch.
Abstract:
A display panel including an array substrate and a COF substrate is provided. The COF is provided with a plurality of welded lead lines. The array substrate includes a metal layer disposed on a surface of the substrate, a silicon nitride layer disposed on a surface of the metal layer, and a plurality of terminal wires disposed in a spaced arrangement in a welding region on a surface of the second silicon nitride layer. The welding region between the adjacent terminal wires is provided with through holes, which expose the metal layer. The risk of corrosion and breakage of the welded lead lines on the COF substrate is effectively reduced.
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:
The present invention provides an array substrate. The array substrate includes a base substrate, a first metal layer, an insulating layer, and a second metal layer subsequently formed on the base substrate. The first metal layer is scan lines or charge sharing lines of the array substrate. The second metal layer is one of a source electrode and drain electrode of a charge sharing thin film transistor of the array substrate. The first metal layer, the second metal layer, and the insulating layer between them stack together to forma charge sharing capacitor of the array substrate. The present invention further provides the liquid crystal display panel and the liquid crystal display device with the above-mentioned array substrate. By means of array substrate, the present invention can increase the pixel aperture ratio.
Abstract:
A stereoscopic display device, an LCD panel, and an array substrate are provided. The array substrate includes gate lines, share lines, and a switching circuit including a vertical switching circuit, a first switch, a second switch, and an inverter. The first switch includes a gate, a first terminal, and a second terminal; respectively connected with the vertical switching circuit, the Nth share line, and the (N+X)th gate line. The second switch includes a gate, a first terminal, and a second terminal; respectively connected with the vertical switching circuit, the Nth share line, and a control signal. The inverter disposes between the gate of the first or second switch and the vertical switching circuit. The share lines can be independent controlled and low color shift effect is achieved. No additional IC chips and COFs are required, and solving the image blurs and the brightness difference of the two eyes.
Abstract:
A pixel structure, a liquid crystal display panel and a driving method thereof are provided. The pixel structure includes multiple pixels arranged in an array. Each pixel includes adjacently disposed main and sub pixel areas. The main pixel area includes a first pixel electrode and a first control switch. The sub pixel area includes a second pixel electrode, a third pixel electrode, a second control switch and a third control switch. The first and second control switches are turned on by a first scan signal. The main and sub pixel areas are charged by a data signal to have a first potential. The third control switch is turned on by a second scan signal and thereby the third and second pixel electrodes electrically communicate with each other, so that the second and third pixel electrodes are made to have a second potential different from the first potential.
Abstract:
A liquid crystal display includes a substrate defining an active area and a non-active area surrounding the active area, a sealant located on the non-active area for hermetically connecting with another substrate to seal a crystal liquid layer between the substrate and the another substrate, and an alignment film barrier wall formed on the non-active area and located between the sealant and the active area. The barrier wall has a wave-shaped configuration consisting of protrusions projecting toward the active area and recesses recessed from the active area. When liquid polyimide is applied to the substrate to from an alignment film, the liquid polyimide is injected at fronts of the protrusions; then the liquid polyimide flows along the wave-shaped barrier wall to enter the recesses thereof.
Abstract:
A thin-film transistor array substrate and a liquid crystal display panel are provided. The thin-film transistor array substrate includes a substrate, a thin-film transistor array, a color resisting layer and an alignment film The substrate includes a first surface and a second surface opposing to each other. The first surface has a revealing region and a non-revealing region surrounding the revealing region. The thin-film transistor array is arranged on the first surface of the substrate. The color resisting layer is arranged on the thin-film transistor array and has a trench located correspondingly to the non-revealing region. The alignment film is arranged on the color resisting layer.
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.