Abstract:
A data driving apparatus and method for a liquid crystal display wherein a digital to analog converter part is driven on a time-division basis to increase the number of output channels of a data driving IC without excessively increasing a chip area or by reducing a chip area in comparison to the existing chip area, thereby reducing the number of data driving IC's and TCP's. In the apparatus, a multiplexor part performs a time-division of input pixel data to output the time-divided pixel data. A digital to analog converter part converts the pixel data from the multiplexor part into pixel voltage signals. A demultiplexor part selectively supplies the pixel voltage signals from the digital to analog converter part to a plurality of output lines of the demultiplexor part. A sampler and holder part samples and holds the pixel voltage signals from the demultiplexor part to output the sampled and held pixel voltage signals to a plurality of data lines of the liquid crystal display.
Abstract:
A method of fabricating an organic electroluminescence display device includes the steps of forming a first electrode; forming an emissive layer on the first electrode using a solvent and a polymer, the solvent having a surface tension less than 30 dyne/cm and a boiling point greater than 200 degrees centigrade; and forming a second electrode on the emissive layer.
Abstract:
A touch panel integrated liquid crystal display device includes a liquid crystal display panel, a touch panel formed on the liquid crystal display panel, a polarizer formed between the liquid crystal display panel and the touch panel, a first adhesive formed between the touch panel and the polarizer, and a second adhesive formed between the polarizer and the liquid crystal display panel, wherein an adhesive strength of the second adhesive is larger than an adhesive strength of the first adhesive.
Abstract:
A liquid crystal display (LCD) including an LCD panel having a plurality of gate lines running in parallel in one direction and a plurality of data lines running in parallel perpendicular to the gate lines, gate input drivers for providing gate signals to the gate lines of the LCD panel, data input drivers for providing data signals to the data lines of the LCD panel and a back light unit on a lower part of the LCD panel having a light guide plate and at least two light emitting elements in the same plane with the light guide plate on opposite sides of the light guide plate, wherein the two light emitting elements are turned on and off alternately with respect to each other.
Abstract:
A liquid crystal display device and a method of fabricating the same are disclosed in the present invention. The liquid crystal display device includes first and second substrates including a plurality of liquid crystal display panel regions, each liquid crystal display panel region having an active region and a dummy region, a sealant outside the liquid crystal display panel regions, a dummy column spacer on the dummy region to control a liquid crystal flow, a buffer region between the sealant and the dummy column spacer to accommodate a liquid crystal, and a liquid crystal layer between the first and second substrates.
Abstract:
A direct-type back light device includes a plurality of luminescent lamps, a rectangular frame having holes formed along opposing sides with the luminescent lamps inserted into the holes, a reflecting plate formed at a bottom surface of the rectangular frame, and at least one lamp holder attached to the reflecting plate and supporting the luminescent lamps.
Abstract:
A data driving apparatus for a liquid crystal display includes a digital-to-analog converter part for converting input pixel data into a plurality of pixel signals and time-dividing the converted pixel data signals to time-divided pixel signals, wherein the number of the converted pixel signals is greater than that of the time-divided pixel signals, at least two output buffer parts for sequentially receiving the pixel signals from the digital-to-analog converter part, buffering the time-divided pixel signals, and outputting the buffered time-divided pixel signals to a plurality of data lines, at least two of the plurality of output buffer parts being commonly connected to the digital-to-analog converter part, and a timing controller for controlling the digital-to-analog converter part and the output buffer parts and time-dividing the pixel data supplied to the digital-to-analog converter part into at least two regions to sequentially supply the time-divided pixel data to the data lines.
Abstract:
A method is disclosed for manufacturing an array substrate for use in a display device. The method includes providing a base substrate, forming a gate line on the base substrate using a first mask, forming sequentially a gate insulating layer, a semiconductor layer and a metal layer over the base substrate and the gate line, patterning the metal layer using a second mask to form a data line and a metal portion on the semiconductor layer, forming a protection layer over the data line, the metal portion and the semiconductor layer, forming a photoresist pattern on the protection layer over the data line using a third mask to define a first structure, applying at least two separate etching steps on the first structure to leave the gate insulating layer of a uniform thickness over the gate line and to pattern layers below the photoresist pattern, and forming a pixel electrode over a portion of the gate insulating layer on the gate line using a fourth mask.
Abstract:
A structure for assembling a flat display having a flat display module for displaying images with a case for fitting the flat display module therein includes a plurality of joining parts formed at a rear surface of the flat display module; and a plurality of conformable joining parts formed in the case in conformity with the joining parts of the flat display module, the plurality of conformable joining parts being engaged with the plurality of joining parts in a fit manner.
Abstract:
A structure for mounting a display housing to a monitor stand of a monitor having a flat display, the display housing for the flat display, and a stand bracket for holding the display housing, includes fastening members at the stand bracket, and coupling members fixed to a rear case of the flat display in correspondence to the fastening members, wherein the fastening members are directly fastened to the coupling members respectively, to mount the display housing to the stand bracket.