Abstract:
A liquid crystal display including a liquid crystal display panel having a liquid crystal cell at each intersection area of gate lines and data lines, a video processor generating processed data to implement a brightness level at a specific area of the liquid crystal display panel that is different from a remaining area of the liquid crystal display panel, and a position designator designating the specific area of the liquid crystal display panel where the processed data is implemented.
Abstract:
A backlight unit includes a light guide plate, at least two lamps arranged along a side of the light guide plate for irradiating light onto the light guide plate, and a plurality of lamp housings having different shapes for enclosing each of the lamps.
Abstract:
An electric field alignment method of a ferroelectric liquid crystal display device includes connecting a plurality of thin film transistors arranged along a first direction to a plurality of data lines in an offset configuration between adjacent data lines, supplying a turn-ON voltage at a level greater than a threshold voltage of the thin film transistors during an electric field alignment of ferroelectric liquid crystal material of the ferroelectric liquid crystal display device at least more than two successive times to a plurality of gate lines arranged along a second direction, and supplying voltages of opposite polarity to the adjacent data lines during the electric field alignment while maintaining a voltage of a ferroelectric liquid crystal cell of the ferroelectric liquid crystal display device during the electric field alignment.