Abstract:
A liquid crystal display panel transferring apparatus capable of transferring a liquid crystal display (LCD) panels with various models, the apparatus including a first main body to affix a liquid crystal display (LCD) panel formed on a substrate; and at least one second main body extendable from the first main body to adjust an area to affix the LCD panel; a third main body extendable from the second main body. The transferring apparatus may include an impact applying unit formed at the third main body to apply an impact to the substrate at an outer periphery of the LCD panel.
Abstract:
A liquid crystal display device includes first and second substrates facing and spaced apart from each other; a gate line on an inner surface of the first substrate; a data line crossing the gate line to define a plurality of first sub-pixel regions for displaying color, and a second sub-pixel region for adjusting a viewing angle; a thin film transistor connected to the data line and the gate line; a plurality of first pixel electrodes in each of the plurality of first sub-pixel regions; a plurality of first common electrodes alternating with the plurality of first pixel electrodes in each of the plurality of first sub-pixel regions; a second pixel electrode in the second sub-pixel region; a second common electrode in the second sub-pixel region, the second common electrode facing the second pixel electrode; and a liquid crystal layer between the first and second substrates, wherein a first common voltage is applied to the plurality of first common electrodes, and a second common voltage different from the first common voltage is applied to the second common electrode.
Abstract:
A liquid crystal display device includes first and second substrates facing and spaced apart from each other, each of the first and second substrates having a first sub-pixel region, a second sub-pixel region, a third sub-pixel region, a fourth sub-pixel region and a fifth sub-pixel region for adjusting a viewing angle, the first, second, third and fourth sub-pixel regions surrounding the fifth sub-pixel region; a liquid crystal layer between the first and second substrates; a plurality of first pixel electrodes in each of the first, second, third and fourth sub-pixel regions on the first substrate; a plurality of first common electrodes in each of the first, second, third and fourth sub-pixel regions on the first substrate, the plurality of first common electrodes alternating with the plurality of first pixel electrodes; a second pixel electrode in the fifth sub-pixel region on the first substrate; and a second common electrode in the fifth sub-pixel region on the second substrate, the second common electrode facing the second pixel electrode.
Abstract:
Provided is a light emitting diode array including: a plurality of light emitting chips spaced apart from one another by a predetermined distance; and a fixing member that positions the plurality of light emitting chips at predetermined heights and/or predetermined directions. Also provided are methods for manufacturing the light emitting diode array, a backlight assembly including the light emitting diode array, and a liquid crystal display device including the light emitting diode array.
Abstract:
A method for fabricating a liquid crystal display device including forming an active pattern on a substrate, the active pattern including lateral surface partially having a non-planar shape, forming a gate electrode on the active pattern, the gate electrode crossing the lateral surfaces of the active pattern, forming a source electrode and a drain electrode electrically connected to predetermined regions of the active pattern, and forming a pixel electrode electrically connected to the drain electrode.
Abstract:
A liquid crystal display device includes a liquid crystal display panel having a number of gate lines, a gate driver having a number of gate channels, wherein the number of gate channels is different than the number of gate lines, and a timing controller to apply a gate shift clock signal to the gate driver, the gate shift clock signal having at least one dummy shift clock signal.
Abstract:
A spray nozzle for use in the manufacture of an image display device includes a first body having a first injection hole, and a second body configured to be rotatably coupled to the first body and having a second injection hole to inject fluid that is supplied thereinto from the first injection hole.
Abstract:
A liquid crystal dispensing system includes a container for containing liquid crystal; a liquid crystal measuring sensor proximate the container; a discharge pump for pumping liquid crystal from the container, and a nozzle for dispensing liquid crystal discharged from the discharge pump onto a substrate. In an exemplary embodiment, the crystal dispensing system includes a control unit for controlling a discharge amount of liquid crystal discharged from the discharge pump and calculating and compensating a dispensing amount of liquid crystal based on an amount of measured liquid crystal in the container.
Abstract:
A liquid crystal display device, in which a viewing angle is controlled, and a viewing angle controlling method are provided. A liquid crystal display device includes at least one pixel including at least one color sub-pixel and at least one white sub-pixel, wherein liquid crystal molecules in the white sub-pixel are aligned to be driven in a different direction than liquid crystal molecules in the color sub-pixel.
Abstract:
A fabricating apparatus and method for a flat panel display device, are discussed. According to an embodiment, the apparatus includes a chamber including a movable susceptor for supporting the substrate thereon; a first detecting part to detect a descending distance of the susceptor; a robot arm to move the substrate; a second detecting part to detect a separation status of the substrate from the susceptor; and a controller to control a movement of the robot arm in accordance with the detection results of the first and second detecting parts.