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A Sampling Switch Design Procedure for Active Matrix Liquid Crystal Displays

机译:一种有源矩阵液晶显示器的采样开关设计流程

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摘要

In the design of an active matrix LCD (Liquid Crystal Display), the ratio of the pixel voltage to the video voltage (RPV) of a pixel is an important factor of the performance of the LCD, since the pixel voltage of each pixel determines its transmitted luminance. Thus, of practical importance is the issue of how to maintain the admissible allowance of RPV of each pixel within a prescribed narrow range. This constraint on RPV is analyzed in terms of circuit parameters associated with the sampling switch and sampling pulse of a column driver in the LCD. With the use of a minimal set of such circuit parameters, a design procedure is described dedicatedly for the sampling switch, which intends to seek an optimal sampling switch as well as an optimal sampling pulse waveform. A number of experimental results show that an optimal sampling switch attained by the proposed procedure yields a source driver with almost 18 less power consumption than the one by manual design. Moreover, the percentage of the RPVs within 100 ± 1 among 270 cases of fluctuations is 88.1 for the optimal sampling switch, but 46.7 for the manual design.
机译:在有源矩阵LCD(液晶显示器)的设计中,像素电压与像素的视频电压(RPV)之比是LCD性能的重要因素,因为每个像素的像素电压决定了其传输亮度。因此,具有实际意义的是如何将每个像素的RPV允许余量保持在规定的窄范围内。根据与LCD中列驱动器的采样开关和采样脉冲相关的电路参数来分析对RPV的这种约束。通过使用最少的此类电路参数集,专门描述了采样开关的设计程序,该程序旨在寻求最佳采样开关以及最佳采样脉冲波形。许多实验结果表明,所提出的程序所获得的最优采样开关产生的源极驱动器比手动设计的功耗降低了近18%。此外,在270种波动情况下,RPV在100±1%范围内的百分比在最优采样开关下为88.1%,而在手动设计下为46.7%。

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