Abstract:
A liquid crystal display panel includes a first substrate, an image display part formed on the first substrate and having a plurality of pixels arranged thereon, a plurality of gate and source drivers for supplying signals to the pixels, a controller for supplying control signals to the gate and source drivers, at least one conductive line at a corner portion of the first substrate, the conductive line connecting the controller and the gate drivers, and a plurality of transparent electrode segments overlapping the conductive line with at least one intermediate film interposed therebetween.
Abstract:
A flat panel display device for a small module application is disclosed in the present invention. The flat display device includes a DC/DC converter supplying a DC voltage, a timing controller connected to the DC/DC converter, the timing controller outputting a gate control signal and a data control signal, a first level shifter at the circuit unit amplifying the gate control signal and the data control signal for the timing controller, a second level shifter at the display panel amplifying the gate control signal and the data control signal amplified by the first level shifter, a plurality of gate lines and data lines crossing one another, a gate driver connected to a first end of each of the gate lines, the gate driver outputting a scan signal according to the gate control signal amplified by the second level shifter, and a data driver connected to a second end of each of the data lines, the data driver outputting a gray level voltage according to the data control signal amplified by the second level shifter.
Abstract:
A bump structure for testing a liquid crystal display panel includes a plurality of pads arranged at a pad region along an edge portion of a liquid crystal display panel and connected to one of a gate line and a data line, a driver IC arranged to be electrically connected to the plurality of pads, and a test bump electrically connected to at least one of the plurality of pads and arranged at the pad region except within a region where the driver IC is mounted.
Abstract:
An electro luminescence display device having a display area and a non-display area includes a plurality of display organic light emission layers formed in the display area and a dummy organic light emission layer formed in the non-display area.
Abstract:
A liquid crystal display device includes a liquid crystal display panel having a plurality of liquid crystal cells arranged in a matrix configuration, a printed circuit board having a drive circuit mounted thereon to drive the liquid crystal display panel, a supporter main for supporting the liquid crystal display panel, at least one hole formed in the printed circuit board, and at least one projected parts protruding from the supporter main, wherein the projected part is inserted into the hole to affix the printed circuit board to the supporter main.
Abstract:
A liquid crystal display device includes a plurality of gate lines and data lines on a first substrate defining a plurality of pixel regions, a thin film transistor within the pixel regions, a pixel electrode within the pixel regions, and at least one TiOx layer provided with the thin film transistor.
Abstract:
A liquid crystal display device includes a plurality of data lines arranged along a first direction on a substrate, a plurality of gate lines arranged a second direction perpendicular to the first direction on the substrate to define a plurality of pixel regions, each of the gate lines having at least one first set of protrusions and depressions, a driving device within each of the pixel regions, a pixel electrode within each of the pixel regions, and a metal layer overlapping each of the gate lines to create a storage capacitor.
Abstract:
An apparatus and method for driving a liquid crystal display device are disclosed in the present invention. The liquid crystal display device includes a plurality of data lines in a vertical direction, a plurality of gate lines in a horizontal direction to cross the data lines, and a plurality of liquid crystal cells along with each gate line, wherein one of the data lines applies a video signal to at least three liquid crystal cells.
Abstract:
An in-plane switching mode liquid crystal display device includes first and second substrates, a plurality of gate lines and data lines on the first substrate to define a plurality of pixel areas, a driving element in each of the pixel areas of the first substrate, at least one first and second electrodes in each of the pixel areas of the first substrate, a black matrix on the second substrate, the black matrix being made of a black resin material having resistance not greater than 108null cm and a dielectric constant not less than 14, and a liquid crystal layer between the first and second substrates
Abstract:
A data-driving a liquid crystal display includes a first multiplexer array for alternately changing a supplying sequence of time-divided pixel data and time-divided pixel data, a second multiplexer array for alternately outputting the time-divided pixel data with an unshifted output channel of the time-divided pixel data and outputting the time-divided pixel data shifted to the right side by one channel in response to a control signal, a digital-to-analog converter array converting the time-divided pixel data into analog pixel signals having a polarity opposite to the pixel data of adjacent channels, a third multiplexer array for alternately outputting the pixel signals with an unshifted output channel of the pixel signals and outputting the pixel signals shifted to the left side by one channel in response to the control signal, and a demultiplexer array for alternately changing a supplying sequence of the time-divided pixel signals for each horizontal period and each frame.