Abstract:
A display device, including a first substrate including at least one pixel, each pixel including first, second, third, and fourth pixels; a second substrate opposing the first substrate; and first, second, and third color filters on the second substrate corresponding to the first, second, and third pixels, respectively, the first, second, and third color filters, respectively, overlapping portions of the fourth pixel, the fourth pixel being adjacent to the first, second, and third color filters.
Abstract:
A display device includes substrate including a red pixel area, a green pixel area, a blue pixel area, and a white pixel area, a gate line and a data line on the substrate, a thin film transistor connected to each of the gate line and the data line, an insulating layer on the gate line, the data line, and the thin film transistor, the insulating layer having grooves in the red pixel area, the green pixel area, and the blue pixel area, respectively, a reflective layer on the insulating layer, the reflective layer being in the red pixel area, the green pixel area, and the blue pixel area, a color filter in each of the grooves of the insulating layer, and a transparent pixel electrode on the color filter and the insulating layer, the transparent pixel electrode being connected to the thin film transistor.
Abstract:
A display device includes a first substrate and a second substrate opposing each other, a reflecting layer, which reflects light incident on the reflecting layer, on the first substrate, a polarizing layer which is disposed on the second substrate and includes a polarizing portion that polarizes light incident on the polarizing portion and a reflecting portion that reflects light incident on the reflecting portion, a liquid crystal layer between the reflecting layer and the polarizing layer, and a retardation layer between the liquid crystal layer and the polarizing layer.
Abstract:
A liquid crystal display (LCD) device includes: a first substrate and a second substrate disposed opposite to each other; a liquid crystal layer disposed between the first substrate and the second substrate; a gate line and a data line disposed on the first substrate; a transistor connected to the gate line and the data line; a pixel electrode disposed in a pixel region of the first substrate; a connecting electrode connecting the pixel electrode and the transistor; a common electrode overlapping the pixel electrode; a protection layer disposed between the pixel electrode and the common electrode; and a black matrix disposed on the protection layer, the black matrix defining the pixel region. The black matrix includes: a horizontal portion extending along the gate line and a vertical portion extending along the data line and overlaps the data line and at least one of the pixel electrode and the common electrode.
Abstract:
A display device includes: a substrate at which red, green, blue, and white display areas are defined; first, second, and third organic layers having transmittance for white light and disposed on the substrate at the green, blue, and white display areas, respectively; a red color filter on the substrate at the red display area; a green color filter on the first organic layer at the green display area; and blue color filter on the second organic layer at the blue display area. A thickness of the third organic layer is greater than each of thicknesses of the first and second organic layers.
Abstract:
A display device includes a liquid crystal display panel including a first substrate, a second substrate facing the first substrate and including a reflective layer, and a liquid crystal layer disposed between the first and second substrates, a light control member disposed on the liquid crystal display panel and including a first optical part, and a polarizing member disposed on the light control member and including a polarizer. The liquid crystal layer includes a first liquid crystal molecule adjacent to the first substrate, and a long axis of the first liquid crystal molecule projected on the first substrate is aligned in a first direction. An extending direction of a long axis of the first optical part projected on the first substrate is parallel to the first direction, and the polarizer has a transmission axis extending in a second direction.
Abstract:
A display device includes a first substrate, a thin film transistor on the first substrate, a passivation layer on the thin film transistor, a reflective layer on the passivation layer, a color filter on the reflective layer, the reflective layer having a substantially same shape as that of the color filter in a plan view, a first insulating layer on the color filter, a pixel electrode on the first insulating layer, a second substrate opposing the first substrate, and a liquid crystal layer between the first substrate and the second substrate.
Abstract:
A liquid crystal display device including a display substrate coupled to an opposite substrate, with a liquid crystal layer therebetween. The display substrate includes pixel electrodes insulated from a common electrode. The pixel electrodes have branch electrodes arranged respectively in a plurality of pixel areas. A plurality of domains is defined in the plurality of pixel areas along column and row directions. The branch electrodes extend in a first direction respectively in domains arranged on an N'th row (N is a positive integer); the branch electrodes extend in both the first direction and a second and different direction in domains arranged on an [N+1]'th row; and the branch electrodes extend in the second direction respectively in domains arranged on an [N+2]'th row.
Abstract:
A thin film transistor substrate a display area that includes pixels connected to gate lines and data lines crossing the gate lines, a non-display area disposed adjacent to the display area, data pads disposed in the non-display area and each being connected to a first end of a corresponding data line of the data lines, first transistors disposed in the non-display area and each being connected to a second end of the corresponding data line of the data lines, OS pads connected to the second end of the data lines, and repair lines disposed in the non-display area along a vicinity of the display area and arranged while interposing the first transistors therebetween. The OS pads are overlapped with the first transistors and the repair lines.
Abstract:
A reflective LCD device is capable of measuring a cell-gap even after an attachment process of an LCD panel includes: a first substrate including a display area and a non-display area around the display area; a second substrate opposing the first substrate; a liquid crystal layer disposed between the first substrate and the second substrate; and a plurality of pixels disposed on the first substrate. The plurality of pixels includes: a plurality of first pixels disposed on the display area and each of the plurality of first pixels including a reflective layer; and at least one second pixel not including the reflective layer.