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Compensation method of antiferroelectric liquid crystal device characteristic variation caused by temperature changing

机译:温度变化引起的反铁电液晶器件特性变化的补偿方法

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Abstract: The antiferroelectric liquid crystal (AFLC) display is promising for it's tristable switching, no-ghost effect and good mechanical stability. Recently, Yamamoto et al. have realized the full-color AFLC display with analog gradation based on in-pixel domain switching. One of the advantages of AFLC device compared with FLC device is that it can realize gray level display. But AFLCD characteristics has dependence of temperature. In our experiment, AFLCD was prepared to study this problem. The panel's threshold voltage, cone angle, response time, contrast ratio and electro-optical curves was measured at variable temperature. And we discussed the mechanism of gray level's distortion while the temperature changed in the case of the same driving scheme applied. At last we brought out a proposal to solve this problem. The electro-optic curves of AFLCD in a temperature range was measured. Some temperature sensors were put on the panel to detect it's temperature, and we set a temperature standard. Compared the detected temperature and the standard, and then adjust the electric wave forms to get the same gray levels at variable temperature.!5
机译:摘要:反铁电液晶显示器具有三稳态开关,无重影效应和良好的机械稳定性,因此具有广阔的前景。最近,Yamamoto等人。基于像素内域切换,已经实现了具有模拟灰度的全色AFLC显示器。与FLC器件相比,AFLC器件的优点之一是可以实现灰度显示。但是AFLCD的特性与温度有关。在我们的实验中,AFLCD准备研究此问题。在可变温度下测量面板的阈值电压,锥角,响应时间,对比度和电光曲线。并讨论了在采用相同驱动方案的情况下温度变化时灰度失真的机理。最后,我们提出了解决这个问题的建议。测量了在温度范围内AFLCD的电光曲线。面板上放置了一些温度传感器以检测其温度,我们设置了温度标准。将检测到的温度与标准值进行比较,然后调整电波形以在可变温度下获得相同的灰度级。!5

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