Abstract:
A liquid crystal display and a method for manufacturing the liquid crystal display are provided. The liquid crystal display comprises a first substrate and a second substrate that are spaced apart from each other, and spacers disposed between the first substrate and the second substrate and in contact with the first substrate and the second substrate. Elevating layers are disposed on the second substrate and in contact with the spacers, and each of the elevating layers is structured with a cross section including a laterally extending portion and a longitudinally extending portion. According to the present disclosure, the problem of moving mura of the liquid crystal display can be significantly alleviated.
Abstract:
A pixel structure and a liquid crystal display device are disclosed. The pixel structure is formed on a substrate. The substrate includes at least two scan lines and at least one data line formed thereon. The pixel structure includes a main pixel, a first subpixel, and a second subpixel. The main pixel is electrically coupled to one of the two scan lines and the data line. The first subpixel is electrically coupled to the two scan lines and the data line. The second subpixel is electrically coupled to the two scan lines and the first subpixel. The present invention is capable of solving the color shift problem without a high frequency driving method and a large number of scan lines.
Abstract:
The present invention proposes a manufacturing method of a liquid crystal display panel. The method includes: injecting liquid crystal molecules having monomers into a liquid crystal box; detecting an alternating-current deflection voltage between a transparent electrode of an array substrate and a transparent electrode of a color filter substrate in connection areas of the liquid crystal display panel; applying the alternating-current deflection voltage between the transparent electrode of the array substrate and the transparent electrode of the color filter substrate when values of the alternating-current deflection voltage are all equal to a setting value; irradiating the liquid crystal display panel to form the polymer alignment films.
Abstract:
The present invention provides a liquid crystal display comprising a display unit, wherein the display unit is capable of working in a first display mode and a second display mode, each pixel of the display unit includes a red sub-pixel, a green sub-pixel, a blue sub-pixel, and a white sub-pixel; the display unit drives the red sub-pixel, green sub-pixel, blue sub-pixel, and white sub-pixel to emit light in the first display mode, and drives the red sub-pixel, green sub-pixel, and blue sub-pixel to emit flight without driving the white sub-pixel to emit light in the second display mode. The present invention further provides a method for controlling imaging of the liquid crystal display.
Abstract:
A pixel structure and a liquid crystal display device are disclosed. The pixel structure is formed on a substrate. The substrate includes at least two scan lines and at least one data line formed thereon. The pixel structure includes a main pixel, a first subpixel, and a second subpixel. The main pixel is electrically coupled to one of the two scan lines and the data line. The first subpixel is electrically coupled to the two scan lines and the data line. The second subpixel is electrically coupled to the two scan lines and the first subpixel. The present invention is capable of solving the color shift problem without a high frequency driving method and a large number of scan lines.
Abstract:
A photomask (2) for optical alignment and an optical alignment method. By aligning the tail ends of first light-transmission patterns (313) which form a first photomask figure (3), and aligning the front ends of second light-transmission patterns (413), which form a second photomask figure (4) in the photomask (2), the un-exposed or underexposed areas do not exist at the tail ends of first substrate units (11) and the front end of second substrate units (12) during the process of optical alignment, thereby the problem existed in the traditional optical alignment manufacture process, that the brightness of a display is not uniform due to existing unexposed or underexposed areas, is solved, meanwhile, the reduction of the distance between the first substrate units (11) and the second substrate units (12) on a substrate is facilitated, thereby the utilization rate of the substrate is improved.
Abstract:
A display module and a display device are provided. The display module includes a display panel and a front frame. The display panel includes a display region and a non-display region both located at a side of a light emitting surface. The non-display region is disposed at a peripheral area of the display panel and is provided with a test pad electrically connected to a wiring of the display region. The front frame includes a front plate opposite to at least a portion of the non-display region and having an electric conduction portion for conducting away an electrical current and an insulation portion for insulating the electric conduction portion from the test pad on the display panel.
Abstract:
A liquid crystal display and a method for manufacturing the liquid crystal display are provided. The liquid crystal display comprises a first substrate and a second substrate that are spaced apart from each other, and spacers disposed between the first substrate and the second substrate and in contact with the first substrate and the second substrate. Elevating layers are disposed on the second substrate and in contact with the spacers, and each of the elevating layers is structured with a cross section including a laterally extending portion and a longitudinally extending portion. According to the present disclosure, the problem of moving mura of the liquid crystal display can be significantly alleviated.
Abstract:
The present invention discloses a color filter substrate and a liquid crystal panel. The color filter substrate includes a substrate a transparent conductive film, a black array, and an auxiliary conductive layer. Wherein the black array is arranged on the substrate and the transparent conductive film is disposed on the black array. Wherein the auxiliary conductive layer is disposed over a surface of the substrate facing the black array, and has at least portions arranged between the substrate and the black array. By these arrangements, the present invention can effectively reduce the brightness interference of the liquid crystal panel, while increasing the adhesion of the auxiliary conductive layer in addition, this arrangement can effectively avoid the damage to the transparent conductive film by the auxiliary conductive layer.
Abstract:
Disclosed here is the technical field of liquid crystal display, and in particular to a color filter and a liquid crystal display with the color filter. The color filter has a plurality of diaphragm groups, each diaphragm group consists of at least one red diaphragm, at least one green diaphragm and at least one blue diaphragm, wherein the diaphragms of at least one of said diaphragm groups are configured in such a sequence that color cast caused by a RC delay of a pixel signal can be compensated.