Abstract:
A liquid crystal display device includes a substrate, a black matrix layer on the substrate and having a first plurality of openings, a color filter layer on the black matrix layer and having a second plurality of openings, and a plurality of column spacers each contacting the substrate through the first plurality and second plurality of openings.
Abstract:
A liquid crystal display includes an array substrate, a data line, a gate line, a first and a second storage wiring, and a second substrate. The data line is disposed on the array substrate and intersects the gate line near a first pixel region. A second substrate, such as a color filter substrate, includes a second pixel region that corresponds to the first pixel region. The first storage wiring is positioned near an edge of the array substrate and the second storage wiring is disposed on the second substrate near an edge of the second substrate.
Abstract:
An array substrate for a liquid crystal display device includes gate and data lines crossing on a substrate, common lines parallel to and between the gate lines, thin film transistors at crossing portions of the gate and data lines, and a pixel electrode. The common lines define pixel regions, which are each divided into first and second regions by the corresponding gate line. The thin film transistors each include a gate electrode in a first direction, a semiconductor layer on the gate electrode, and source and drain electrodes on the semiconductor layer in a second direction. The source and drain electrodes cross the gate electrode in each of the first and second regions. The pixel electrode is connected to the drain electrode.
Abstract:
An organic electroluminescent device includes first and second substrates spaced apart from each other, the first and second substrates including a first region and a second region, the second region outside the first region and including a concave portion, an array element on an inner surface of the first substrate, the array element including a switching element, an organic electroluminescent diode on an inner surface of the second substrate, a connection electrode electrically connecting the array element and the organic electroluminescent diode, the connection electrode between the first and second substrates, and a bar-type desiccant in the concave portion of the second region between the first and second substrates.
Abstract:
A liquid crystal display device includes: a plurality of gate lines and a plurality of data lines crossing the plurality of gate lines that define the plurality of pixel regions that define a plurality of pixel regions on a first substrate; a plurality of thin film transistors each residing in a pixel region, wherein the plurality of thin film transistors are symmetrically formed with respect to a central gate line and wherein paired transistors reside on opposite sides of the central gate line; and a black matrix including a first portion overlying the central gate line and the paired transistors, a second portion overlying the plurality of thin film transistors, and an additional part that is integral with the second portion and renders the black matrix symmetrical with respect to the first portion.
Abstract:
Disclosed is a liquid crystal display device to minimize resistance difference between link lines. The liquid crystal display device includes a liquid crystal panel including a display unit in which pixels are provided in the form of a matrix and a plurality of pad units provided at a peripheral portion in at least one side of the display unit and including a plurality of connection pads having widths different from each other, and a tape carrier package including a plurality of output pads corresponding to the plurality of pad units, in which driving integrated circuits are mounted on the output pads to drive the liquid crystal panel, and the output pads have widths different from each other corresponding to the plurality of connection pads.
Abstract:
Provided are an organic electro-luminescence display device and a method of manufacturing the same. The organic electro-luminescence display device includes a first substrate, a second substrate facing the first substrate and including an organic electro-luminescence diode, and a sealant interposed between the first substrate and the second substrate to seal the organic electro-luminescence diode from outside and attach the first substrate to the second substrate. Herein, the sealant is formed of a frit glass.
Abstract:
A backlight is provided. The backlight unit includes a bottom frame having a topside and a backside. At least one lamp is disposed on the topside of the bottom frame. A socket connector is disposed on a backside of the bottom frame. The socket connector is connected to the fluorescent lamp. A backlight circuit board having a plug connector is connected to the socket connector.
Abstract:
An backlight assembly is provided. The backlight assembly includes a substrate, a light guide plate, a plurality of adhesive tapes, and guide grooves. The substrate includes conductive patterns supplying power to a light source device, and the light guide plate is disposed to form the same plane as that of the light source device. The plurality of adhesive tapes are attached at predetermined intervals in a region where the substrate and the light guide plate overlap each other. The guide grooves are formed in a region where the adhesive tapes are attached.
Abstract:
A liquid crystal display device including a first liquid crystal display panel disposed between a first cover and a second cover, a second liquid crystal display panel disposed between the first cover and the second cover, wherein a rear face of the second liquid crystal display panel faces a rear face of the first liquid crystal display panel, a main frame disposed between the first and second liquid crystal display panels, and a plate to connect the second liquid crystal display panel to the main frame.