Abstract:
An apparatus for forming alignment layer includes a printing stage for supporting a substrate thereon, at least one inkjet head having at least one spray hole above the printing stage, the spray hole spraying an alignment material onto the substrate, a head support supporting the inkjet head, a pitch measuring unit adjacent to the inkjet head, and a display unit displaying measured results provided by the pitch measuring unit.
Abstract:
An in-plane switching mode liquid crystal display device including first and second substrates having an array region and a sealant region along a periphery of the array region, a sealant in the sealant region attaching the first and second substrates, a metallic black matrix formed in the sealant region and in the array region of the first substrate, a color filter on the metallic black matrix, an organic layer on the color filter and a liquid crystal layer between the first and second substrates.
Abstract:
A touch panel display apparatus includes an upper sheet having an upper transparent film formed of one of a crystalline transparent conductive material and an amorphous transparent conductive material, and a lower sheet having a lower transparent film formed of one of an other one of the crystalline transparent conductive material and the amorphous transparent conductive material.
Abstract:
A method for fabricating a liquid crystal panel includes providing first and second mother substrates having a plurality of panel regions, forming a plurality of array substrates in the plurality of panel regions of the first mother substrate, forming a plurality of color filter substrates in the panel regions of the second mother substrate, forming a first alignment film over the first mother substrate, rubbing the first alignment film covering the first mother substrate, attaching the first and second mother substrates, and cutting the attached mother substrates into a plurality of liquid crystal panels.
Abstract:
An LCD device and a method of driving the same are disclosed, to improve a picture quality by realizing a rapid response speed, wherein the LCD device comprises an image display part which includes liquid crystal cells formed in respective regions defined by a plurality of gate and data lines; a timing controller which modulates data inputted according to a first frame frequency to modulation data to realize a rapid response speed of liquid crystal, and outputs the modulation data or data to a second frame frequency; a gate driver which generates gate on voltages under control of the timing controller, and supplies the gate on voltages to the gate lines in sequence; and a data driver which converts the modulation data or data supplied from the timing controller to a data voltage, and supplies the data voltage to the data line in synchronization with the gate on voltage.
Abstract:
This invention relates to a flat panel display device that is adaptive for perfectly compensating a panel defect by performing an electrical compensation on pixels in a panel defect location, and a method of controlling a picture quality thereof. A flat panel display device according to an embodiment of the present invention includes a display panel which has a non-defect area and a panel defect area; a memory which stores a first compensation, a second compensation data, a third compensation data, a fourth compensation data, and a fifth compensation data; a compensation part; and a driver for driving the display panel in use of the data modulated by the compensation part.
Abstract:
A shift register which is capable of performing bi-directional scanning is disclosed. The shift register includes first and second voltage input lines to which first and second voltages are input, respectively with the phases of the first and second voltages being opposite to each other; a plurality of stages dependently connected to a plurality of clock signal input lines which input a plurality of clock signals whose phases are sequentially delayed, wherein each stage includes: a scan direction controller to selectively output the first and second voltages thereto, according to first and second start pulses, and for controlling scan direction, a node controller to control voltages of first and second nodes according to a signal output from the scan direction controller, and an output unit to output a clock signal from one of the plurality of clock signal input lines thereto according to the voltage of each of the first and second nodes. The shift register can perform forward and reverse direction scans as first and second voltages whose phases are opposite to one another are selectively output thereto according to output signals from previous and next stages.
Abstract:
A sequential lateral solidification device, for enhancing optical characteristics of the device and for preventing damage caused by an ablation of a crystallization thin film, is disclosed. The device includes a laser light source generating a laser beam, a projection lens focusing the laser beam generated from the laser light source onto a substrate, a laser beam splitter between the projection lens and the substrate that passes the laser beam generated from the laser light source to irradiate the substrate and that blocks the laser beam reflected back from the substrate towards the projection lens, and a stage having the substrate mounted thereon.
Abstract:
A liquid crystal dispensing system includes a container to contain liquid crystal to be dispensed, a discharge pump to receive the liquid crystal from the container and to discharge the liquid crystal, a nozzle to dispense the liquid crystal discharged from the discharge pump onto a substrate, and a control unit to control a dispensing amount of liquid crystal discharged from the discharge pump and to compensate the dispensing amount when the dispensing amount of liquid crystal exceeds a limitation value.
Abstract:
A liquid crystal display device of the present invention comprises: a liquid crystal display panel; a cholesteric liquid crystal layer in the liquid crystal panel; a data controller having a connection with the liquid crystal display panel, wherein the data controller receives red, green and blue data signals from an external source and provides the signals to the liquid crystal panel; and a data amplifying circuit in the data controller, the data amplifying circuit selecting one of the red, green and blue data signals and then overdriving the selected data signal.