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PIXEL DRIVING ARCHITECTURE AND LIQUID CRYSTAL DISPLAY PANEL

机译:像素驱动架构和液晶显示面板

摘要

A pixel driving architecture and a liquid crystal display panel. In the pixel driving architecture, an n-th column of TFTs (T) are evenly arranged at positions on an n-th column of subpixels (P) in proximity to an n-th data line (D(n)); in the n-th column of subpixels (P), longitudinally adjacent upper and lower four subpixels (P) or two subpixels (P) are set as a pixel group (PG), the n-th data line (D(n)) sets a signal cycle corresponding to each pixel group (PG) to define the polarity of each subpixel (P) in the pixel group (PG), so that upper and lower two adjacent pixel groups (PG) are provided with a polarity inversion at where the two border each other, in addition to that, the adjacent two columns of subpixels (P) are opposite in polarity, thus achieving a display effect similar to dot inversion, allowing pixel opening areas to be neatly arranged, eliminating display defects such as bright and dark lines and irregular marks, preventing color shift, reducing power consumption, and increasing display quality.
机译:像素驱动架构和液晶显示面板。在像素驱动架构中,第n列TFT(T)均匀地布置在子像素(P)的第n列上靠近第n条数据线(D(n))的位置;在第n列子像素(P)中,将在纵向上相邻的上下四个子像素(P)或两个子像素(P)设置为像素组(PG),即第n条数据线(D(n))设置与每个像素组(PG)相对应的信号周期,以定义像素组(PG)中每个子像素(P)的极性,从而使上下两个相邻像素组(PG)的极性反转。两者彼此相邻,此外,相邻的两列子像素(P)极性相反,从而获得类似于点反转的显示效果,允许像素开口区域整齐地排列,从而消除了诸如明亮之类的显示缺陷。深色线条和不规则标记,可防止颜色偏移,降低功耗并提高显示质量。

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