Abstract:
An array substrate for a fringe field switching mode liquid crystal display device comprises a gate line on a substrate; a gate electrode connected to the gate line; a gate insulating layer on the gate line and the gate electrode; a semiconductor layer on the gate insulating layer and corresponding to the gate electrode; source and drain electrodes on the semiconductor layer and spaced apart from each other, the source electrode having first and second sub-source layers, the drain electrode having first and second sub-drain layers. Also disclosed in a method of fabricating a fringe field switching mode liquid crystal display device.
Abstract:
An array substrate for a fringe field switching mode liquid crystal display device comprises a gate line on a substrate; a gate electrode connected to the gate line; a gate insulating layer on the gate line and the gate electrode; a semiconductor layer on the gate insulating layer and corresponding to the gate electrode; source and drain electrodes on the semiconductor layer and spaced apart from each other, the source electrode having first and second sub-source layers, the drain electrode having first and second sub-drain layers. Also disclosed in a method of fabricating a fringe field switching mode liquid crystal display device.
Abstract:
A method of forming an inorganic insulating layer on a substrate comprises supplying a mixed gas between the substrate and a target, and generating a plasma between the substrate and the target. The target comprises a silicon-based material. The method further comprises depositing a plurality of ions from the plasma on the substrate.
Abstract:
An array substrate for an in-plane switching mode liquid crystal display device includes a substrate, a gate line along a first direction on the substrate, a data line along a second direction and crossing the gate line to define a pixel region, a common line on the substrate, a thin film transistor connected to the gate and data lines, a pixel electrode in the pixel region and connected to the thin film transistor, the pixel electrode including horizontal parts along the first direction, and a common electrode in the pixel region and connected to the common line, the common electrode including horizontal portions along the first direction, wherein the pixel electrode and the common electrode are formed on a same layer.
Abstract:
A liquid crystal display (LCD) device includes an array substrate; a gate line formed on the array substrate; a data line formed on the array substrate crossing the gate lines; a thin film transistor formed on the array substrate, the thin film transistor being formed at an intersection between the gate line and the data line; a pixel electrode formed on the array substrate and connected to the thin film transistor; an insulating interlayer formed on an entire surface of the array substrate; a common electrode formed on the insulating interlayer and having a plurality of slits; a metal line formed on the insulating interlayer overlapping the data line and the common electrode; a color filter substrate attached to the array substrate; and a liquid crystal layer formed between the array substrate and the color filter substrate.
Abstract:
An array substrate for an in-plane switching mode liquid crystal display device includes a substrate, a gate line along a first direction on the substrate, a data line along a second direction and crossing the gate line to define a pixel region, a thin film transistor connected to the gate and data lines, a pixel electrode in the pixel region and connected to the thin film transistor, and a common electrode in the pixel region and arranged in an alternating pattern with the pixel electrode, wherein each of the pixel electrode and the common electrode includes a transparent conductive pattern, and one of the pixel electrode and the common electrode further includes an opaque conductive pattern having a more narrow width than the transparent conductive pattern.
Abstract:
The present invention discloses a liquid crystal display device which can improve quality of image by reducing a leakage current by a backlight, and a fabrication method thereof. The liquid crystal display device includes: first and second substrates; a plurality of gate lines aligned on the first substrate in a first direction; gate electrodes connected to the gate lines; a plurality of data lines for defining a plurality of pixels by vertically crossing the gate lines; source electrodes and drain electrodes formed on the gate electrodes and separated from the data lines with a predetermined gap; pixel electrodes formed in the pixel regions and electrically connected to the drain electrodes; connecting patterns for electrically connecting the data lines to the source electrodes; semiconductor layers disposed between the gate electrodes and the source/drain electrodes; and a liquid crystal layer formed between the first and second substrates.
Abstract:
An array substrate for a liquid crystal display device includes a substrate, a gate line on the substrate, a thin film transistor including a gate electrode of the gate line, a gate insulating layer over the gate electrode, an active layer on the gate insulating layer and ohmic contact layers on the active layer, and source and drain electrodes over the ohmic contact layers, a pixel electrode electrically connected to the drain electrode, a data line electrically connected to the source electrode and crossing the gate line, a common electrode spaced apart from the pixel electrode, and a passivation layer directly between the pixel electrode and the common electrode and directly between the source and drain electrodes.
Abstract:
A liquid crystal display (LCD) device includes: a first substrate divided into a pixel part and first and second pad parts; a gate electrode and a gate line formed at the pixel part of the first substrate; an active pattern as an island formed over the gate electrode with a first insulation film interposed therebetween, and having a width smaller than the gate electrode; an ohmic-contact layer formed on source and drain regions of the active pattern on the first substrate; source and drain electrodes formed as islands over the gate electrode of the first substrate and electrically connected with the source and drain regions of the active pattern via the ohmic-contact layer; a data line formed on the pixel part of the first substrate and crossing the gate line to define a pixel region; a pixel electrode formed at the pixel region and electrically connected with the drain electrode; a second insulation film formed on the first substrate; and a second substrate attached to the first substrate in a facing manner.
Abstract:
An array substrate for an IPS mode LCD device includes a gate line in a first direction on a substrate and a data line in a second direction over the substrate; a metal and a common lines in the second direction on the substrate and includes a plurality of first and second protruding portions in the first direction, respectively; a TFT connected to the gate and data lines; an insulating layer over the metal and common lines; a common electrode over the insulating layer and including a first common portion in the second direction and a plurality of second common portions in the first direction; and a pixel electrode over the insulating layer and including a first pixel portion in the second direction and a plurality of second pixel portions in the first direction, wherein the plurality of second common and pixel portions are alternately arranged.