Abstract:
An LCD(Liquid Crystal Display) is provided to realize the reduction of size, by disposing a gate driving integrated circuit and a data driving integrated circuit at the same side of an LCD panel, thereby producing a compact display device. An LCD panel(200) displays an image. A plurality of data driving integrated circuits(DIC) are disposed at a first side of the LCD panel to drive data lines of the LCD panel. A gate driving integrated circuit(GIC) is disposed at the first side of the LCD panel. A plurality of signal transmission lines(299) are formed at a second side of the LCD panel, and electrically connected to the gate driving integrated circuit. A plurality of connection lines(280) connect the signal transmission lines and the gate lines respectively.
Abstract:
A case top and a manufacturing method thereof are provided to fabricate plural case tops by means of one sheet of plate, thereby reducing the manufacturing cost. A case top encloses the front edge and side surface of an LCD(Liquid Crystal Display) module. A plate to be worked as the case top is prepared. Thereafter, the plate is cut with the shapes of one or more case top development figures. The cut plates are bent and thereafter, the unconnected corners of bent plates are fixed. The cut plate includes a side member(122) for enclosing each side of the LCD module. A front wing member(124) is formed at a side of the side member and encloses the front edge of the LCD module. A rear wing member is formed at another side of the side member and encloses one or more portions of the rear edge of the LCD panel. When the cut plate is bent, the front wing member is bent vertically to the side member and the rear wing member is bent oppositely to the front wing member.
Abstract:
An LCD(Liquid Crystal Display) is provided to prevent partial darkening of a screen due to black spots by capturing black spots generated on a liquid crystal display panel due to ion impurities into a non-display area. A liquid crystal display panel(210) includes a lower and upper glass substrates and a display area. A plurality of data lines(DL1~DLm) and gate lines(GL1~GLm) are formed on the lower glass substrate. The display area includes pixels that are formed by intersection between the plurality of data lines and gate lines. A capture line(220) captures black spots remaining in the display area. The capture line is connected to a common ground to which the data lines are connected in common. The capture line is formed of a conductive material. A current applied from the data lines to the common ground flows through the capture line.
Abstract:
A probe unit and a method of testing a liquid crystal panel using the same are provided to improve alignment accuracy and the degree of planarization by contacting a probe bar with a conductive material patterned on a bottom surface to the liquid crystal panel and testing the liquid crystal panel. A tap(400) is connected to a PCB (printed circuit board)(500). A bridge tap(450) inverts a signal received from the tap. A probe bar(300) is connected to the bridge tap. A conductive material is patterned on a bottom surface of the probe bar. The tap is connected to a driver integrated circuit. The probe bar is formed of glass. The tap is formed of an FPCB (flexible PCB). The conductive material includes an aluminum alloy (AlNd).
Abstract:
A TFT-LCD(Thin Film Transistor-Liquid Crystal Display) and a method of manufacturing the TFT-LCD are provided to form a bar-shaped metal layer when source and drain electrode are formed to repair a gate line using the metal layer when the gate line is cut. A TFT-LCD includes a gate line(210), a data line(220), a TFT(T), a pixel electrode(260) and a bar-shaped metal layer. The gate line is formed on a substrate in one direction. The data line intersects the gate line to define a pixel region. The TFT includes a gate electrode extended from the gate line, an intrinsic and impurity-doped amorphous silicon layer formed on the gate electrode, a source electrode extended from the data line and a drain electrode opposite to the source electrode. The pixel electrode is connected to the drain electrode and formed in the pixel region. The metal layer is formed on the gate line and electrically insulated from the gate line.
Abstract:
An apparatus for transferring a substrate is provided to reduce alternative time by partly alternating only a center gear and minimize abrasion and damage of a gear. An apparatus for transferring a substrate includes a plurality of substrate transferring shafts(120), a plurality of transferring rollers, an upper gear(130), a middle gear(135), a lower gear(140). The substrate transferring shafts are installed to a transferring line with a regular interval in a row. The transferring rollers are installed to each transferring shafts and transfer the substrate. The upper gear is installed to an edge of each substrate transferring shaft. The middle gear meshes with the upper gear. The lower gear rotates the middle gear by the rotation of the motor with being engaged with the middle gear.
Abstract:
A box processing system is provided to handle boxes automatically, rapidly, and efficiently guarantee the safety of operators, improve a cleaning process, and effectively remove particles in boxes. A box processing system includes a box loading unit(310), a box rotating unit(320,360), and a cleaning chamber(340). The box loading unit loads boxes(300). The box rotating unit includes a cap remover(321) for removing caps of boxes moved by a loader(311) and a rotator(323) for rotating the boxes. The cleaning chamber cleans boxes transferred from the box rotating unit through a transfer unit. The cleaning chamber includes an automatic cleaning part(340a) for cleaning the boxes through a nozzle and a manual cleaning part(340b) for manually cleaning the boxes. The box processing system further includes a cap transfer unit for transferring box caps.
Abstract:
A thin film transistor array substrate and a manufacturing method thereof are provided to prevent deterioration of display quality by preventing off-current from being generated in a semiconductor pattern. Gate lines(102) and data lines(104) are intersected each other, with a gate insulating layer(144) being interposed between the lines. A thin film transistor(106) is formed on an intersecting region of the gate line and the data line. A pixel electrode(118) is connected to the thin film transistor. The thin film transistor has a gate electrode(108) connected to the gate line, a semiconductor pattern(147) overlapped with the gate electrode, a source electrode(110) connected to the semiconductor pattern and the data line, and an oxide layer(160) covering the gate electrode.
Abstract:
An apparatus for applying a sealant is provided to suppress the defect of sealant patterns due to interference between a laser and a bracket by forming a space for preventing the interference between the laser and the bracket. A dispenser head(120) has a nozzle(126) for applying a sealant on a substrate. A distance measuring unit measures a distance between the nozzle and the substrate using a light. A first groove(150a) and a second groove(150b) are formed on the dispenser head to prevent interference between the light and the dispenser head. The dispenser head includes a syringe(122) for storing the sealant, and a bracket(124) joined to a lower portion of the syringe. The nozzle is formed on a lower surface of the bracket.
Abstract:
An LCD is provided to remove an abnormal phenomenon formed on a screen due to external particles which are generated when a lower cover and a main support are assembled, by improving a joining structure between the lower cover and the main support. A lower cover includes a bottom face and at least one lateral face(132b). A protrusion(132c) is extended from the lateral face of the lower cover, wherein one side surface of the protrusion is embossed. A lamp is provided at the lateral face of the lower cover. A light guiding plate is disposed on the lower cover to guide the light emitted from the lamp. A main support is inwardly joined to the lateral face and the protrusion of the lower cover, wherein the joined portion of the main support corresponding to the protrusion portion of the lower cover is opened. An LCD panel is disposed on the main support.