Abstract:
A liquid crystal display device displays images by applying an electric field substantially parallel to an insulating substrate between a pixel electrode and a common electrode placed across from each other. The liquid crystal display device has a capacitor terminal connected to the pixel electrode and placed opposite to a capacitor electrode with an insulating layer therebetween. The pixel electrode has at least two voltage supply paths to the capacitor terminal.
Abstract:
The present invention relates to a liquid crystal display device of In-Plane Switching mode. The liquid crystal display device includes a common electrode having an overlap portion in which the common electrode is overlapped with a source line. The common electrode has separating areas for line disconnection recovery outside of the overlap portion. The separating areas disconnect the overlap portion from other portion of the common electrode at least between which and a pixel electrode is generated an electric field.
Abstract:
A liquid crystal display device of so-called an In-Plane Switching mode in which an electric field substantially parallel to substrates is applied to a liquid crystal layer by applying a voltage between a pixel electrode and a common electrode is disclosed. In the liquid crystal display device, a source line is overlapped with a part of a common electrode with an insulation film interposed therebetween. The insulation film has a plurality of layers of insulation films.
Abstract:
A method of driving a liquid crystal display device of IPS mode is disclosed. The liquid crystal display device includes a pair of substrates, a liquid crystal layer placed between the substrates, gate lines placed above one of the substrates, source lines placed to cross the gate lines with an insulative layer interposed therebetween, a switching element placed near the crossing point of the gate lines and the source lines, and a pixel electrode connected to the source lines through the switching element. A signal voltage required for image display is supplied to the pixel electrode by the source line through the switching element. The method sets an average value of the signal voltage in such a way that an average value of a positive polarity voltage and a negative polarity voltage of the pixel electrode varies with a grayscale to be displayed, and inputs the average value of the signal voltage to the pixel electrode.
Abstract:
The present invention is a thin film transistor array substrate includes: an insulating substrate; a first metallic pattern formed on said insulting substrate; an insulating film provided on said first metallic pattern; a semiconductor pattern provided on said insulating film; and a second metallic pattern provided on said semiconductor pattern; wherein said second metallic pattern is surrounded by said semiconductor pattern.