Abstract:
The invention relates to a method of manufacturing a liquid crystal display, comprising forming a color filter array substrate including at least a red (R) color filter and a green (G) color filter; disposing a thin film transistor array substrate oppositely to the color filter array substrate; sealing a liquid crystal layer between the color filter array substrate and the thin film transistor array substrate; and disposing a backlight unit to a surface of the thin film transistor array substrate, said backlight unit providing white light having an adjusted blue spectrum using at least a light emitting diode (LED) unit.
Abstract:
A liquid crystal display including a thin film transistor array substrate comprising sub-pixel regions, a color filter array substrate oppositely disposed to the thin film transistor array substrate, the color filter array substrate comprising color filters corresponding to at least a part of the sub-pixel regions, a liquid crystal layer formed between the color filter array substrate and the thin film transistor array substrate and a backlight unit configured to provide white light having an adjusted blue spectrum to a surface of the thin film transistor array substrate using at least a light emitting diode (LED) unit.
Abstract:
An apparatus for driving a liquid crystal display device disclosed includes a timing controller and a data buffer for storing first and second data control signals from the timing controller, the data buffer having a first buffer and a second buffer, each of the first and second buffers capable of storing an equal number of data control signals, wherein the first buffer stores the first data control signals and the second buffer stores second data control signals. The apparatus for driving a liquid crystal display device also includes a liquid crystal display panel having a first display area and a second display area, each display area having data lines. In addition, the apparatus for driving a liquid crystal display device includes a data driver having a first data driver portion for supplying the first data signals to the data lines in the first display area in a first horizontal direction and a second data driver portion for supplying the second data signals to the data lines in the second display area in a second horizontal direction opposite to the first horizontal direction.
Abstract:
An apparatus and method for driving an LCD device is disclosed, in which resolution of images can be improved by the difference in gray level between adjacent pixels of video data. The apparatus for driving an LCD device includes an LCD panel having a plurality of gate lines and a plurality of data lines, a data converter analyzing the difference in gray level between adjacent pixels of input video data and outputting modulated video data if the difference of gray level between adjacent pixels is larger than a reference value, a timing controller aligning and outputting the modulated video data, a gate driver supplying scan pulses to the gate lines of the LCD panel, and a data driver supplying the modulated video data to the data lines of the LCD panel.