Abstract:
In the technical field of display, a display device for solving the technical problem of fanout mura of the pixels controlled by the wires located at both sides of a fanout is provided. The display device according to the present disclosure comprises a substrate and a chip on film connected to the fanout on the substrate through a bounding lead. The bounding lead comprises a plurality of parallel wires, each of the wires comprising a conductive portion and all or some of the wires each comprising a non-conductive portion. In the bounding lead, the areas of the conductive portions of the wires gradually decrease from the wires located at both ends of the bounding lead to those located at the center thereof. The present disclosure can be applied to display devices, such as liquid crystal television and liquid crystal display, etc.
Abstract:
The present invention discloses a method for manufacturing a color filter, a color filter, and a liquid crystal panel. The method comprises: providing a substrate; and forming a plurality of color resistances on the substrate one by one using a color resistance forming process, with boundaries of adjacent color resistances being overlapped with each other. The color resistance forming process comprises: coating a photoresist material on the substrate to form a color resistance unit thereof; exposing the color resistance unit, with a light intensity received at the boundary of the color resistance unit being smaller than that received by the main body of the color resistance unit. Through the present invention, dark pixel lines at the boundary overlaps can be eliminated, and transmittance of the product can be enhanced.
Abstract:
The present invention provides a scan driving circuit and display panel. The scan driving circuit comprises a plurality of scan driving units, each of which comprises a fan-out line, a plurality of switch sets, a plurality of control lines and a plurality of scan lines. The control lines are connected to at least one of the switches of each of the switch sets individually and the fan-out line is connected to the scan lines through the switch sets, such that the scan lines are turned on separately under control of the fan-out line and the control lines. By the above mentioned solution, the present invention drives a plurality of scan lines by one fan-out line such that an amount of the gate driving chips in the fan-out block and the layout space of the fan-out line can be reduced.
Abstract:
A pixel cell and an active matrix liquid crystal display are disclosed. The pixel cell includes a first scanning line, a second scanning line, and a thin film transistor set. The thin film transistor set includes a first thin film transistor and a second thin film transistor. The parasitic capacitance Cgd of the thin film transistor set satisfies the equation: Cgd=C1+C2. Wherein the change in capacitance of both c1 and c2 are inverse to each other by the same amount such that summation of a value of capacitance change in both c1 and c2 is equal to zero. In this way, the display detects result from different values of the parasitic capacitance of the pixel cells in different locations are overcome.
Abstract:
A driver circuit and a liquid crystal display panel for reducing IC malfunction are provided. The driver circuit includes a source driver IC, a gate driver IC, and a wire on array, wherein the source driver IC and the gate driver IC connects through the wire on array. The source driver IC provides a signal to the gate driver IC through the wire on array. The driver circuit further includes a negative feedback module electrically connected with the wire on array to be configured to keep the wire on array voltage constant. This invention also provides a liquid crystal display panel using the driver circuit. Through the above method of this invention the driver circuit and a liquid crystal display panel for reducing IC malfunction can avoid the gate driver IC to generate the malfunction caused by the voltage fluctuation of the array and improve the display quality of the liquid crystal display panel.