Abstract:
A liquid crystal display is provided. A photo-alignment layer thereof includes a polyimide and a crosslinker including an alkylene group (—CnH2n—, where n is a natural number) and a plurality of crosslinking end groups, wherein the plurality of crosslinking end groups include at least two types of end groups or end group derivatives, each type having a different available functional group.
Abstract:
A manufacturing method of a liquid crystal display, including: applying a photoalignment agent on a substrate; baking the applied photoalignment agent; forming a photoalignment layer by irradiating the baked photoalignment agent with polarized light; baking the photoalignment layer; and removing at least one decomposed unit by cleaning the baked photoalignment layer using a cleaning solution including at least one of propylene glycol monomethyl ether, propylene glycol monomethyl ether acetate, or ethyl lactate.
Abstract:
A display panel includes an array substrate, an opposite substrate facing the array substrate, and a liquid crystal layer disposed between the array substrate and the opposite substrate. The array substrate includes a display area and a non-display area surrounding the display area, and the non-display area includes a first non-display area disposed adjacent to a side portion of the display area and a second non-display area other than the first non-display area. The first non-display area overlaps the opposite substrate. The array substrate and the opposite substrate have the same or substantially the same area and a wire member is disposed under the array substrate to be connected to an external circuit module. Accordingly, the display panel does not need an extra space for the wire member, and thus the non-display area is reduced.
Abstract:
A liquid crystal display includes: a signal controller configured to receive an input image signal corresponding to a gray from the outside, and an image signal corrector configured to correct the input image signal. The image signal corrector is configured to shift a first input image signal value corresponding to a black gray by a first value based on a common voltage, is configured to shift a second input image signal value corresponding to a halftone gray by a second value based on the common voltage, and is configured to shift a third input image signal value corresponding to a white gray by a third value based on the common voltage. The first value and the second value are larger than a kickback voltage of each of the black gray and the halftone gray, and the third value is the same as a kickback voltage of the white gray.
Abstract:
In a sealant dispenser and a method of sealing a display panel using the sealant dispenser, the sealant dispenser includes a tracking part, a nozzle part and a body. The tracking part tracks a tracking line on a base substrate, the base substrate is divided into a display area and a non-display area. The nozzle part is spaced apart from the tracking part, and injects a sealant from an end portion of the nozzle part and forms a seal line on the base substrate at a same time the tracking part tracks the tracking line. The tracking part and the nozzle part are mounted on the body.
Abstract:
A display device includes: a first display panel including a display area and a peripheral area, a flexible film disposed in the peripheral area, a thin film transistor disposed on the display area while being adjacent to the flexible film, a second display panel facing the first display panel and a sealant disposed in the peripheral area of the first display panel to attach the first display panel and the second display panel, and the first display panel includes: a substrate, a data wiring layer disposed on the substrate and in contact with a side end of the flexible film, a semiconductor layer disposed on the data wiring layer, an interlayer insulating layer disposed on the semiconductor layer and a gate wiring layer disposed on the interlayer insulating layer.