Abstract:
An organic electroluminescent display device includes first and second substrates bonded together, the first and second substrates having a plurality of pixel regions, each pixel region includes a central portion and first and second portions at both sides of the central portion, a driving element on an inner surface of the first substrate within each of the plurality of pixel regions, the driving element being disposed in the central portion, first and second connection electrodes contacting the driving element and disposed in the first and second portions, a first electrode on an inner surface of the second substrate, an organic electroluminescent layer on the first electrode, and a second electrode on the organic electroluminescent layer, the second electrode contacting the first and second connection electrodes.
Abstract:
A method of forming a polysilicon thin film transistor is disclosed in the present invention. The method includes forming a buffer layer on a transparent substrate, forming an amorphous silicon layer on the buffer layer, crystallizing the amorphous silicon layer into a polysilicon layer using a sequential lateral solidification (SLS) method, patterning the polysilicon layer to form a polysilicon active layer, performing a rapid thermal annealing (RTA) process to the polysilicon active layer under a H2 atmosphere, performing a rapid thermal oxidation (RTO) process to form a silicon-oxidized layer on the polysilicon active layer after the RTA process, and forming a metal layer over the transparent substrate to cover the silicon-oxidized layer.
Abstract:
An LCD panel of high resolution (with decreased pixel pitch) and a method for manufacturing the same. In the LCD panel, the even numbered data lines are formed only up to the cell region of a substrate and then extended up to the pad region using conductive patterns. With the use of refracted conductive patterns, the even numbered data pads could be extended from the even numbered data lines and arranged parallel to the odd-numbered data pads along the longitudinal direction of odd-numbered data lines, thereby decreasing the pitch. Instead of using the conductive patterns, the even numbered data lines may be made longer than the odd numbered data lines in the pad region and may be refracted appropriately to arrange the even numbered data pads in parallel to the odd numbered data pads along the longitudinal direction of the odd numbered data lines.
Abstract:
An In-Plane switching mode LCD device includes a plurality of gate and data lines crossing each other to define a plurality of pixel regions, a plurality of thin film transistor (TFT) formed at crossing points of the gate and data lines to be alternately positioned along lower and upper side pixel regions adjacent to corresponding gate lines, a plurality of storage lines disposed in an offset configuration to be parallel with the gate lines along the TFT regions, a plurality of pixel electrodes within the pixel regions to be connected to drain electrodes of the TFTs, and a plurality of common electrodes disposed at fixed intervals from the pixel electrodes to be connected to the storage lines.
Abstract:
A liquid crystal display device includes a transparent insulating substrate, a gate line and a gate electrode on the transparent insulating substrate, a gate insulating film, an active layer, an ohmic contact layer, source and drain electrodes and a data line on the transparent insulating substrate, a passivation film formed on the transparent insulating substrate including the source and drain electrodes and the data line, a polarizing film formed on the passivation film, and a pixel electrode formed on at least the polarizing film.
Abstract:
An in-plane switching mode liquid crystal display device includes a plurality of gate lines and data lines defining a plurality of pixels, a driving device in each of the pixels, a pixel electrode in each of the pixels and a common electrode completely overlapping a data line in width.
Abstract:
An array substrate for a liquid crystal display (LCD) device includes a plurality of gate lines extending along a first direction on a first substrate, a plurality of data lines extending along a second direction on the first substrate, the gate and data lines defining a pixel region by crossing each other, a thin film transistor formed at a portion adjacent to a cross point of the gate and data lines, the thin film transistor having a gate electrode, an active layer, a source electrode extending from the data line, and a drain electrode spaced apart from the source electrode, the source and drain electrodes contacting the active layer via source and drain contact holes, wherein a first portion of the active layer corresponding to the source electrode has an area wider than other portions of the active layer corresponding to the gate electrode and the drain electrode to include areas of the source electrode and the source contact hole, and a pixel electrode in the pixel region, the pixel electrode being electrically connected to the drain electrode.
Abstract:
The present invention relates to a liquid crystal display and a method of fabricating the same that is capable of reducing an optical pumping current. The liquid crystal display comprises a gate line having a bending part in at least one side, a data line crossing the gate line on the first substrate, a pixel electrode formed at a pixel area defined by the gate line and the data line, a drain electrode of a thin film transistor connected to the pixel electrode, and a semiconductor layer overlapping at least part of the gate line, the drain electrode, and the data line to form a channel of the thin film transistor, wherein the bending part is disposed between the drain electrode and the data line.
Abstract:
An aging circuit for an organic electro luminescence device includes a plurality of pixels arranged in a matrix at intersection areas of row lines and column lines and an aging circuit having at least one aging AC voltage source to apply a specific aging AC voltage pulse to the pixels.
Abstract:
A color filter substrate for a liquid crystal display device includes a polarizing substrate, a black matrix positioned on the polarizing substrate, a color filter layer positioned on the black matrix, and a common electrode positioned on the color filter layer.