Abstract:
A liquid crystal display device having one of the substrates including: gate signal lines extending in a row direction; data signal lines extending in a column direction; pixel electrodes and thin-film transistors, which are disposed according to pixels arrayed in the row direction and the column direction; a first insulating film formed between the pixel electrodes and the thin-film transistors; and a common electrode disposed opposite to the pixel electrodes on a liquid crystal layer side. The pixel electrodes are directly formed on a transparent substrate constituting the one of the substrates. In each of the pixels, the pixel electrode is electrically connected to a conduction electrode of the thin-film transistor through a first contact hole formed in the first insulating film, and the conduction electrode and the pixel electrode overlap each other in a plan view in a region where the first contact hole is formed.
Abstract:
A display device includes a plurality of pixels arranged in a matrix. Each of the plurality of pixels includes a transistor and a pixel electrode arranged above the transistor through a first protective film and a second protective film. Among the plurality of pixels, the pixel electrodes of two pixels adjacent in a column direction are connected to corresponding source electrodes of the two pixels through second and third contact holes respectively. The second and third contact holes are formed in the first protective film within a first contact hole that is formed in the second protective film.
Abstract:
A gate line (40) has a two-layered structure comprising a lower gate line (40a) made of material identical to a pixel electrode (70), and positioned in the same layer as the pixel electrode (70), and an upper gate line (40b) layered on the lower gate line (40b), and made of material having a higher electrical conductivity than the transparent conductive material. According to this structure, it is possible to reduce the number of times performing exposure processes in manufacturing an in-plane switching type liquid crystal panel.
Abstract:
Provided is a liquid crystal display device including: gate lines formed in a first direction on a second transparent substrate; data lines formed in a second direction; first transparent common electrodes; a protective insulating film; transparent pixel electrodes arranged in the first direction and the second direction and formed so as to be opposed to the first transparent common electrodes on a surface of the protective insulating film; thin film transistors connected to the transparent pixel electrodes; a second transparent common electrode formed on the surface of the protective insulating film; and a liquid crystal layer formed on the protective insulating film, the transparent pixel electrodes, and the second transparent common electrode. The second transparent common electrode covers the gate lines and the data lines through intermediation of the protective insulating film.
Abstract:
A display device includes a plurality of pixels arranged in a matrix. Each of the plurality of pixels includes a transistor and a pixel electrode arranged above the transistor through a first protective film and a second protective film. Among the plurality of pixels, the pixel electrodes of two pixels adjacent in a column direction are connected to corresponding source electrodes of the two pixels through second and third contact holes respectively. The second and third contact holes are formed in the first protective film within a first contact hole that is formed in the second protective film.
Abstract:
A liquid crystal display includes a first substrate and a second substrate opposed to each other with liquid crystal therebetween. A first pixel including a first TFT element and a first pixel electrode formed of a transparent conducting layer and disposed over the first substrate. A second pixel, adjacent to the first pixel, including a second TFT element and a second pixel electrode formed of a transparent conducting layer and disposed over the first substrate. A gate signal line disposed over the first substrate, is connected to the first and the second TFT elements. A drain signal line disposed over the first substrate and between the first and the second pixel electrodes, is connected to the second TFT element. A counter electrode formed of a transparent conducting layer and disposed over the first substrate, and is overlapped with the first and the second pixel electrodes and the drain signal line.
Abstract:
A liquid crystal display device includes: a first display panel displaying a color image; and a second display panel displaying a monochrome image. Each of the first and the second display panels includes: source lines extending in a first direction; gate lines extending in a second direction; pixels; and pixel electrodes. Each of pixel electrodes among at least one of the first display panel and the second display panel, includes slits extending in the first direction. Each of pixel electrodes includes: a first edge and a second edge that are opposed to each other and extend in the first direction; a third edge connecting one ends of the first edge and the second edge; and a fourth edge connecting another ends of the first edge and the second edge. The third edge and the fourth edge are respectively inclined at predetermined angles with respect to the second direction.
Abstract:
A liquid crystal display device includes: a first display panel displaying a color image, and a second display panel displaying a black-and-white image. The first display panel includes a first pixel corresponding to a first transmission area transmitting light having first color, a second pixel corresponding to a second transmission area transmitting light having second color, and a third pixel corresponding to a third transmission area transmitting light having third color. The second display panel includes a fourth pixel overlapping the first pixel, and a fifth pixel overlapping the second pixel and the third pixel. An area of the fourth pixel is different from an area of the fifth pixel.
Abstract:
A gate line (40) has a two-layered structure comprising a lower gate line (40a) made of material identical to a pixel electrode (70), and positioned in the same layer as the pixel electrode (70), and an upper gate line (40b) layered on the lower gate line (40b), and made of material having a higher electrical conductivity than the transparent conductive material. According to this structure, it is possible to reduce the number of times performing exposure processes in manufacturing an in-plane switching type liquid crystal panel.
Abstract:
A liquid crystal display device includes a lower electrode and a plurality of upper electrodes opposed to the lower electrode formed in the first substrate. At least one first upper electrode and at least one second upper electrode of the plurality of upper electrodes are formed in each of the plurality of pixels. Each of the first upper electrodes has a plurality of slits that extend in a first direction, each of the second upper electrodes has a plurality of slits that extend in a second direction which is different from the first direction, and the first and second upper electrodes are electrically isolated from each other.