Abstract:
An apparatus for manufacturing a liquid crystal display device includes a unitary vacuum processing chamber, upper and lower stages confronting each other at upper and lower spaces inside the vacuum processing chamber to bond a first and second substrates, and a first substrate lifting system formed in the lower stage for lifting the second substrate.
Abstract:
An apparatus for cutting liquid crystal display panels and a cutting method using the same are disclosed in the present invention. The apparatus includes a first scribing unit sequentially forming a plurality of first scribing lines on surfaces of first and second mother substrates having unit liquid crystal display panels and cutting the first and second mother substrates along the first scribing lines, a first turning unit turning the cut first and second mother substrates by 90null, and at least two second scribing units sequentially forming a plurality of second scribing lines on the surfaces of the first and second mother substrates and cutting the first and second mother substrates along the second scribing lines.
Abstract:
A liquid crystal dispensing apparatus for dispensing liquid crystal onto a substrate includes a liquid crystal container, a nozzle structure, and a valve structure. The liquid crystal container contains the liquid crystal to be dispensed. The nozzle structure is disposed at a lower portion of the liquid crystal container, and the liquid crystal is dispensed through the nozzle structure onto the substrate. The valve structure is disposed to control flow of the liquid crystal from the liquid crystal container to the nozzle structure in accordance with a gas pressure provided from a gas input of the liquid crystal container. The liquid crystal container may be formed of substantially entirely of metal. An inside surface of the liquid crystal container may include a fluorine resin.
Abstract:
An apparatus for manufacturing a liquid crystal display includes a unitary vacuum processing chamber having a substrate entrance, a loader part to load first and second substrates through the substrate entrance, one of the first and second substrates having a liquid crystal material disposed thereupon, upper and lower stages disposed within the vacuum processing chamber for affixing the first and second substrates, a stage moving system for providing relative movement between the upper and lower stages, and a vacuum generating system for evacuating an interior of the vacuum processing chamber.
Abstract:
A liquid crystal display device includes first and second substrates facing each other with a predetermined space therebetween, a liquid crystal material layer disposed between the first and second substrates, a seal pattern formed between the first and second substrates to surround the liquid crystal material layer, and a blocking layer formed over a first surface of the second substrate to cover the seal pattern.
Abstract:
A liquid crystal display system is disclosed, that includes rear cover having a coupling boss formed therein, a liquid crystal module positioned in the rear cover and having a plurality of protruding structures formed at both sides thereof, a bracket coupled to the liquid crystal module by a groove receiving the protruding structures of the liquid crystal module, and having a hole formed at a location corresponding to the coupling boss of the rear cover, and a fixing tool inserted into the hole of the bracket and the boss of the rear cover.
Abstract:
A liquid crystal display device includes a substrate, first and second gate lines on the substrate, wherein each gate line has at least one gate electrode, a gate insulating layer above the gate lines, at least one data line crossing over the gate lines, a first semiconductor layer above a gate electrode of the first gate line, a source electrode connected to the data line and overlapping a first side of the first semiconductor layer, a drain electrode overlapping a second side of the first semiconductor layer, a second semiconductor layer adjacent to and above the second gate line, an upper electrode covering the second semiconductor layer and at least partially overlapping the second gate line, a passivation layer above the drain electrode and the upper electrode, contact holes in the passivation layer above the drain electrode and the second semiconductor layer and a pixel electrode on the passivation layer that is connected to the drain electrode and the upper electrode through the contact holes.
Abstract:
A liquid crystal display device includes a first substrate, a plurality of gate and data lines formed crossing each other on the first substrate to define a plurality of pixel areas, an insulating layer formed on the plurality of gate and data lines, a plurality of pixel electrodes formed within the plurality of pixel areas, a plurality of separators formed on the insulating layer between the plurality of pixel electrodes, and a second substrate facing the first substrate.
Abstract:
An apparatus and a method of driving a touch panel that increases an analog-digital converting range includes a first resistive layer having first and second electrodes formed facing each other along opposing edges of the first resistive layer in a first direction, and a second resistive layer having third and fourth electrodes formed facing each other along opposing edges of the second resistive layer in a second direction. The apparatus also includes a high potential controller for selectively connecting one of the first and third electrodes to a high potential voltage supplied from a high potential voltage source and a low potential controller for selectively connecting one of the second and fourth electrodes to a low potential voltage. Further, a variable resistor is employed for reducing a voltage of the high potential voltage between the high potential controller and the high potential power voltage source.
Abstract:
A liquid crystal display includes a color filter substrate having a red, green and blue color filters formed thereon as a matrix, a thin film transistor array substrate having liquid crystal cells of red, green and blue pixels corresponding to the red, green and blue color filters, wherein each liquid crystal cell has a thin film transistor and a liquid crystal layer between the color filter substrate and the thin film transistor array substrate, wherein a first channel width/length ratio is provided for a thin film transistor in the liquid crystal cell of a first color pixel that is different from a second channel width/length ratio provided for a thin film transistor in the liquid crystal cell of a second color pixel.