Abstract:
An electrode array of IPS-LCD has a comb-shaped common electrode made by patterning a bottom-metal layer, respectively disposed and a comb-shaped pixel electrode made by patterning an inter-metal layer, and a connecting layer made by patterning a top-metal layer. The comb-shaped common electrode has a bar and a plurality of comb-teeth extending in a first Y-direction. The comb-shaped pixel electrode has a bar and a plurality of comb-teeth that extend in a second Y-direction and are inter-digitated with the comb-teeth of the common electrode. The connecting layer is electrically connected to one end of the comb-teeth of the pixel electrode and covers part of the bar of the common electrode. In addition, two strip-shaped metal-shielding layers made by patterning the top-metal layer are disposed over the comb-teeth of the common electrode to eliminate crosstalk.
Abstract:
The present invention provides a driving circuit and the driving method for driving gate control lines G_1 . . . G_N. The gate control lines G_1 . . . G_N are evenly divided into L groups. The driving circuit comprises a gate line control logic circuit, a first level shifter module, a second level shifter module and a multipliexer. The first level shifter module is controlled by the gate line control logic circuit, and scans the driving lines D_1 . . . D_K in each time slot to drive the driving lines one by one, wherein L*KnullN. The second level shifter module is controlled by the gate line control logic circuit, and scans the L groups in each time frame to select the L groups one by one. The multiplexer is used to connect the driving lines D_1 . . . D_K to the gate control lines of a selected group, and connect the gate control lines of unselected groups to a predetermined power line.
Abstract:
The present invention provides an apparatus for synchronously displaying patterns on panels during testing wherein the panels are driven by SG cards. The apparatus comprises a synchronization activator generating a first signal, a pattern selector generating a second signal identifying one of the patterns, and a controller connected to the SG cards and simultaneously activating the SG cards driving all the panels to display the pattern identified by the second signal when receiving the first signal.
Abstract:
A static electricity discharging loader for sheet materials is utilized discharging the static electricity on stacked sheet materials and the sheet materials are stacked on the static electricity discharging loader and the loader comprises a container to contain the sheet materials, a static electricity discharging device with a static electricity discharging brush and when the sheet materials is taken out the container, the sheet materials will contact the static electricity discharging brush and then remove the static electricity on it so that the sheet materials are taken out from the container smoothly.
Abstract:
A peeling device comprises a frame, two support rollers and a take-up roller pivotally connected to the frame, and a driving device mounted on the frame for driving the take-up roller rotating relative to the frame. The axis of the take-up roller is parallel to the two support roller. When the driving device drives the take-up roller rotating relative to the frame, the polarizing film will be wound on the take-up roller till the polarizing film is completely peeled out of the LCD panel. It should be noted that one of the two support rollers is positioned between the take-up roller and the other of the two support rollers, and therefore the LCD panel is loaded on two support rollers and the take-up roller dose not apply force to the LCD panel. The present invention further provides a method for peeling the polarizing film from the LCD panel by means of the peeling device according to the present invention.
Abstract:
A method for fabricating a thin film transistor (TFT) is provided. The method includes steps of a) providing an insulation substrate, b) forming a conductive layer on the insulation substrate, c) defining the conductive layer as a gate conducting structure by a first photolithography and etch process, d) forming a gate insulation layer, a channel layer, a junction layer, a source/drain layer and a data line layer in sequence, and etching the data line layer, the source/drain layer and the junction layer by a second photolithography and etch process to form a source/drain structure and a data line structure, and e) heat-treating the junction layer to reduce resistance between the source/drain structure and the channel layer.
Abstract:
An integrated gate driver circuit includes a control circuit, a plurality of drive stages and a plurality of discharge transistors. The control circuit is configured to output a plurality of clock signals within a frame period and to output a discharge enabling signal within a blanking period of the frame period. Each of the drive stages receives the clock signals and includes an output terminal configured to output a gate driving signal. Each of the discharge transistors is coupled to the output terminal of one of the drive stages and discharges the output terminal according to the discharge enabling signal thereby eliminating the voltage fluctuation of the output terminal in the blanking period.
Abstract:
The present invention discloses a gate driver circuit. The gate driver circuit includes a plurality of driving units electrically connected in series, wherein the gate driver circuit receives a plurality of frequency signals and the driving units transmit a plurality of output signals sequentially. Furthermore, each driving unit includes a primary circuit, a first voltage regulator circuit and a second voltage regulator circuit.
Abstract:
An integrated gate driver circuit includes a control circuit, a plurality of drive stages and a plurality of discharge transistors. The control circuit is configured to output a plurality of clock signals within a frame period and to output a discharge enabling signal within a blanking period of the frame period. Each of the drive stages receives the clock signals and includes an output terminal configured to output a gate driving signal. Each of the discharge transistors is coupled to the output terminal of one of the drive stages and discharges the output terminal according to the discharge enabling signal thereby eliminating the voltage fluctuation of the output terminal in the blanking period.
Abstract:
The present invention provides an organic light emitting diode touch display panel including a substrate, a plurality of first electrodes and a plurality of second electrodes disposed on the substrate, a plurality of light emitting layers, a plurality of dielectric layers, a plurality of first electrode stripes, and a plurality of second stripes. Each light emitting layer is disposed on each first electrode, and each dielectric layer is disposed on each second electrode. Each first electrode stripe is disposed on the light emitting layers in each row, and each second electrode stripe is disposed on the dielectric layers in each row. Each first electrode, each light emitting layer and each first electrode stripe form an organic light emitting diode, and each second electrode, each dielectric layer and each second electrode stripe form a touch sensing capacitor.