Abstract:
A thin film transistor (TFT) substrate includes gate lines, data lines intersecting with the gate lines, a plurality of TFTs, pixel electrodes, and a common electrode insulating the gate lines, the data lines, the TFTs, and the pixel electrode. Each pixel electrode is connected to one of the gate lines and one of the data lines via one of the TFTs. A layer stack including an insulating layer and a passivation layer is sandwiched between the pixel electrodes and the common electrode.
Abstract:
An exemplary liquid crystal display (LCD) includes a casing and a liquid crystal panel accommodated in the casing. The casing includes a frame and a window surrounded by an inner side of the frame. The liquid crystal panel includes an outside surface essentially serving as a display screen for displaying images and a peripheral wall. The liquid crystal panel is attached to the frame, with the inner side of the frame contacting the peripheral wall of the liquid crystal panel, and the display screen exposed outside of the casing.
Abstract:
A thin film transistor (TFT) substrate includes gate lines, data lines intersecting with the gate lines, a plurality of TFTs, pixel electrodes, and a common electrode insulating the gate lines, the data lines, the TFTs, and the pixel electrode. Each pixel electrode is connected to one of the gate lines and one of the data lines via one of the TFTs. A layer stack including an insulating layer and a passivation layer is sandwiched between the pixel electrodes and the common electrode.
Abstract:
A touch-sensitive liquid crystal display (LCD) device includes a first substrate, a second substrate opposite to the first substrate, and a liquid crystal layer sandwiched between the first and second substrates. A first sensing line, a second sensing line, a reference capacitor, and a variable capacitor connected with the reference capacitor in series are arranged on the first substrate. A node between the reference capacitor and the variable capacitor is couple to the first and second sensing lines. A capacitance of the variable capacitor is changeable when acted upon an external pressure.
Abstract:
An exemplary multi-domain vertical alignment liquid crystal display (200) includes a plurality of gate lines (201) configured for providing a plurality of scanning signals and a plurality of data lines (203) configured for providing a plurality of gray scale voltages. The gate lines and data lines cooperatively define a plurality of pixel regions (230) in a matrix. Each pixel region includes a first pixel electrode (213) and a second pixel electrode (223). The first and second pixel electrodes are applied with different gray scale voltages.
Abstract:
A system for displaying images including a display panel and a fabrication method thereof are provided. The method includes forming a first gate line and a second gate line at each row of pixels of the display panel, wherein the first gate lines and the second gate lines are separated and electrically isolated from each other. A first insulating layer is formed to cover the first gate lines and the second gate lines, and a plurality of via holes are formed in the first insulating layer to expose the first gate lines and the second gate lines. Then, a first conductive pattern is formed on the first insulating layer, such that the first gate line at each row of the pixels is electrically connected to the second gate line at an adjacent row of the pixels, by the first conductive pattern, through the via holes.
Abstract:
A thin film transistor substrate, capable of being assembled, is attached to a filter substrate to provide a semi-finished liquid crystal display panel. The thin film transistor substrate includes a base substrate with thin film transistors formed thereon, wiring assemblies formed on the substrate and electrically connected to the corresponding thin film transistors selectively, metal sheets formed on the base substrate, a protection layer formed on the thin film transistors, the wiring assemblies, and the metal sheets, and a buffer module formed on the protection layer. The buffer module is positioned above a projection of a cutting line onto the base substrate, and the surplus materials of the filter substrate are removed along the cutting line.
Abstract:
A pixel circuit for a liquid crystal display panel includes a capacitor unit, a voltage-regulating mechanism, a first switching member, and a second switching member. The liquid crystal display panel includes a plurality of scan lines and data lines. The voltage-regulating mechanism is coupled to the first and second liquid crystal capacitors thereby enabling the first and second liquid crystal capacitors to be configured with different voltages when a voltage is applied to the capacitor unit. The first switching member is coupled to the capacitor unit, one of two corresponding scan lines, and one of two corresponding data lines. The second switching member is coupled to the second liquid crystal capacitor, the other of two corresponding scan lines.
Abstract:
The present invention relates to a TFT substrate and a manufacture method thereof. The TFT substrate includes a substrate, a plurality of signal lines, a common electrode, and a pixel electrode. The signal lines are arranged on the substrate along two perpendicular directions. One of two signal lines perpendicular to each other includes a plurality of segments. Every two segments closed to each other are arranged on two opposite sides of the other signal line of the two signal lines. The TFT substrate further includes a connecting signal line. The connecting signal line is connected to the two segments of the signal line composing a plurality of segments. The common electrode is arranged in a same layer as the connecting signal line and overlaps the signal line transferring image signals along a direction perpendicular to the substrate.
Abstract:
A touch-sensitive liquid crystal display (LCD) device includes a first substrate, a second substrate generally opposite to the first substrate, a liquid crystal layer sandwiched between the first substrate and the second substrate, a first scan line, a data line perpendicular to the first scan line, a sensing line parallel to the data line, and a first transistor formed at an inner side of the first substrate adjacent to the liquid crystal layer, and a common electrode formed at an inner side of the second substrate adjacent to the liquid crystal layer. A gate of the first transistor is electrically connected to the first gate line. A drain of the first transistor is electrically connected to sensing line. A source of the first transistor is electrically connectable to the common electrode depending on an external pressure applied on the second substrate.