Abstract:
A method of forming a thin film transistor includes forming a gate electrode on a substrate, forming a gate insulating layer on the gate electrode, forming an amorphous silicon layer on the gate insulating layer, crystallizing the amorphous silicon layer within an active region corresponding to the gate electrode to form a polycrystalline silicon layer, etching the amorphous silicon layer such that an etch rate of amorphous silicon is greater than an etch rate of polycrystalline silicon to form a semiconductor layer of polycrystalline silicon in the active region, and forming source and drain electrodes on the semiconductor layer.
Abstract:
An In-Plane Switching mode liquid crystal display device includes a first substrate and a second substrate, a plurality of gate lines and data lines defining a plurality of pixels on the first substrate, a driving device disposed in each of the plurality of pixels, at least one pair of a first electrode and a second electrode arranged in each of the plurality of pixels to generate a horizontal electric field, a black matrix formed on the second substrate and having a slot around the plurality of pixels, and a liquid crystal layer formed between the first substrate and the second substrate.
Abstract:
A liquid crystal module includes a liquid crystal panel, a backlight unit disposed to supply light to the liquid crystal panel, the backlight unit including at least one lamp housing, a plurality of wires extending from the at least one lamp housing, and at least one connector housing electrically connected to the at least one lamp housing through the plurality of wires. The connector housing includes an outer wall having a hollow there-in, a screw hole and a wire hole and being formed as a polyhedral shape, and a plurality of connectors disposed at an opposite side of the wire hole.
Abstract:
A method for cutting a liquid crystal display panel includes forming a first scribe line along attached first and second mother substrates to form a first region having a plurality of first-sized LCD panels and a first edge of the first region and to form a second region having a plurality of second-sized LCD panels and a first edge of the second region, separating the plurality of first-sized LCD panels formed at the first region into individual first-sized LCD panels, and separating the plurality of second-sized LCD panels formed at the second region into individual second-sized LCD panels.
Abstract:
The disclosed invention is with regard to a liquid crystal display panel including a substrate having a plurality of layers formed thereon, and having a first surface region and a second surface region on a surface of an uppermost layer of the plurality of layers, wherein the first and second surface regions having different surface characteristics in reaction to a particular liquid, and a spacer formed on the second surface region.
Abstract:
A liquid crystal display (LCD) device includes a substrate including a pixel region and a driving circuit region, first and second semiconductor layers within the pixel region and the driving circuit region, a gate insulating layer on the substrate, first and second gate electrodes on the gate insulating layer, and a storage capacitor electrode on the gate insulating layer within the pixel region, first conductive source and drain regions within the first semiconductor layer, second conductive source and drain regions within the second semiconductor layer, a first insulating interlayer on the substrate, a pixel electrode on the first insulating interlayer overlapping the storage capacitor electrode, a second insulating interlayer on the substrate including the pixel electrode, a plurality of contact holes exposing the pixel electrode and the first and second source and drain regions, and first and second source and drain electrodes connected with the first and second source and drain regions through the contact holes.
Abstract:
A backlight assembly includes a plurality of optical sheets, a frame for housing the plurality of optical sheets and a light unit, the frame having a guide portion positioned along a first side of the frame positioned from an end portion of the frame by a first distance, the guide portion having a guide hole positioned to correspond to a hole through a portion of the frame, an open upper portion positioned along a lateral direction opposing the guide hole, and an overlapping portion overlapping the guide hole to form a boundary of the open upper portion, a first wire connected to a first end of the lamp unit and inserted through the guide hole of the guide portion and the hole through the portion of the frame to be overlapped by the overlapping portion, and a second wire connected to a second end of the lamp unit and inserted through the open upper portion and the guide hole.
Abstract:
A driving circuit for a liquid crystal display device includes a reference voltage source, a first switch connected to the reference voltage source, a second switch connected to the first switch, a PUMP signal generator connected to the first and second switches, the PUMP signal generator oppositely adjusting the first and second switches, a capacitive element connected to the first and second switches, a third switch connected to the second switch, and a reset voltage source connected to the third switch.
Abstract:
A method of manufacturing a phase-difference film includes printing and hardening an alignment film on a substrate, coating a liquid crystal material on the hardened alignment film, and irradiating polarized ultraviolet light on the coated liquid crystal material to control an alignment direction of the liquid crystal material.
Abstract:
The present invention discloses a method of fabricating a touch panel for a liquid crystal display device including forming a parent touch panel having a plurality of unit touch panels and a parent polarizer, laminating the parent touch panel and the parent polarizer, and cutting the laminated parent touch panel and parent polarizer into a plurality of single touch panel units and forming a plurality of polarizer integrated touch panels.