Abstract:
The present invention provides an array substrate, a flat display panel and a manufacturing for the same. The array substrate includes a substrate, a common electrode disposed on the substrate, an insulation layer disposed on the common electrode, wherein, the insulation layer includes multiple first regions and multiple second regions, and the first regions and the second regions are disposed alternately, and multiple pixel electrodes respectively disposed on the first regions of the insulation layer. Wherein, a thickness of the first regions and a thickness of the second regions are different. Through above way, the electric field strength between pixel electrodes and the electric field strength above the pixel electrodes can be adjusted in order to increase the display quality of the flat display panel.
Abstract:
Related to is a detection circuit, a liquid crystal display panel and a method for manufacturing the liquid crystal display panel. The detection circuit comprises a control switch unit, which is arranged between a test signal input terminal and a signal line of the liquid crystal display panel, and includes a first switch transistor and a second switch transistor connected in series. During test, the first switch transistor and the second switch transistor is kept on, so that a test signal is transmitted to the signal line of the liquid crystal display panel; after completion of the test, the second switch transistor is kept off, and a control terminal of the first switch transistor is in shorted connection with its first terminal, so as to reduce leakage current flowing into the signal line of the liquid crystal display panel through the second switch transistor. The liquid crystal display panel provided with this detection circuit can effectively reduce the risk of electric leakage without affecting its normal operation, thus ensuring the quality of the image display.
Abstract:
A tri-gate display panel is provided, comprising: a plurality of pixel units each including three sub-pixel units for displaying different colors, wherein each sub-pixel unit is provided with a thin film transistor which has its source connected to a charge electrode of the sub-pixel unit via a capacitor of the sub-pixel unit per se; a plurality of gate lines which are successively arranged along a first direction of the display panel, so as to connect to gates of the thin film transistors of corresponding sub-pixel units; a plurality of data lines, which are successively arranged along a second direction of the display panel, so as to connect to drains of the thin film transistors of corresponding sub-pixel units; and a fanout area including a plurality of fanout lines, wherein output terminals of the plurality of fanout lines are arranged in accordance with the plurality of gate lines and are in pair-wise cross connections to the plurality of gate lines. According to the present disclosure, charging differences between different colors of sub-pixels can be reduced. Hence, color shifting of a blending picture at two sides of the panel can be avoided and display effects can be improved.
Abstract:
An array substrate and a display panel are disclosed. The array substrate includes at least one data line, at least one scanning line, and a pixel cell defined by the data line and the scanning line. The pixel cell includes an ITO thin film and at least one metallic layer below the ITO thin film. The ITO thin film electrically connects to the metallic layer via a through hole. The ITO thin film includes a slit arranged between the ITO thin film and the through hole, and the slit is arranged to avoid the disclination lines so as to improve the display performance.
Abstract:
An anti-colorcast display panel is provided, comprising horizontal scanning lines and vertical data lines. It further includes sub-pixels disposed between adjacent scanning lines and adjacent data lines and arranged in a form of array. Every m×n sub-pixels form a pixel unit. Each sub-pixel includes a transistor whose gate is connected to the scanning line, source is connected to the data line, and drain is connected to two capacitors. The connections of the transistors in corresponding sub-pixels in each pixel unit are same. The data line will connect two adjacent sub-pixels in one row respectively when connecting the sources in the pixel unit, while the gates of the two adjacent sub-pixels are connected to the upper and lower scanning line. The extent of colorcast can be suppressed when implementing color mixing with the present invention, thus improving the color-displaying effect of the display panel, especially for the narrow-frame monitor.
Abstract:
An array substrate and a display panel are disclosed. The array substrate includes at least one data line, at least one scanning line, and a pixel cell defined by the data line and the scanning line. The pixel cell includes an ITO thin film and at least one metallic layer below the ITO thin film. The ITO thin film electrically connects to the metallic layer via a through hole. The ITO thin film includes a slit arranged between the ITO thin film and the through hole, and the slit is arranged to avoid the disclination lines so as to improve the display performance.
Abstract:
An anti-colorcast display panel is provided, comprising horizontal scanning lines and vertical data lines. It further includes sub-pixels disposed between adjacent scanning lines and adjacent data lines and arranged in a form of array. Every m×n sub-pixels form a pixel unit. Each sub-pixel includes a transistor whose gate is connected to the scanning line, source is connected to the data line, and drain is connected to two capacitors. The connections of the transistors in corresponding sub-pixels in each pixel unit are same. The data line will connect two adjacent sub-pixels in one row respectively when connecting the sources in the pixel unit, while the gates of the two adjacent sub-pixels are connected to the upper and lower scanning line. The extent of colorcast can be suppressed when implementing color mixing with the present invention, thus improving the color-displaying effect of the display panel, especially for the narrow-frame monitor.