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A Driving System for Fast and Precise Gray-Scale Response Based on Amplitude–Frequency Mixed Modulation in TFT Electrowetting Displays

机译:TFT电润湿显示器中基于幅度-频率混合调制的快速精确灰度响应驱动系统

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摘要

The gray-scale display which is driven by PWM (pulse width modulation) in TFT (thin film transistor) electrowetting displays (EWDs) has some shortcomings, such as large amplitude of oil oscillation in pixels and slow response speed for displaying gray scale. In this paper, an amplitude–frequency mixed modulation driving system is proposed to improve the response speed of driving gray scale and enhance the oil stability when the gray scale is displayed. In the initial stage of the driving process, the oil is driven by a high voltage to close to the target luminance, and the driving voltage is then decreased to stabilize the oil. The electrowetting hysteresis curve was used to calculate the relation model between the driving voltage and the luminance of the pixel in the system, and the driving voltage value of the pixel at each driving stage was then set to make the oil precisely and rapidly stabilize at the target luminance value. In the output driving platform, the amplitude–frequency mixed modulation is realized based on the source IC, which was used to realize digital-to-analog conversion. An 8 inch EWD was tested using an Admesy colorimeter, and the experimental results show that the pixel response time is reduced by 70% and the gray-scale oscillation is reduced by 80%.
机译:TFT(薄膜晶体管)电润湿显示器(EWD)中由PWM(脉冲宽度调制)驱动的灰度级显示具有一些缺点,例如像素中的油振动幅度大,并且显示灰度级的响应速度较慢。本文提出了一种幅频混合调制驱动系统,以提高驱动灰阶的响应速度,增强显示灰阶时的油稳定性。在驱动过程的初始阶段,机油被高压驱动以接近目标亮度,然后降低驱动电压以稳定机油。使用电润湿滞后曲线来计算系统中驱动电压和像素亮度之间的关系模型,然后设置每个驱动阶段像素的驱动电压值,以使油精确且快速地稳定在油中。目标亮度值。在输出驱动平台上,基于源IC实现幅度-频率混合调制,用于实现数模转换。使用Admesy色度计测试了8英寸EWD,实验结果表明像素响应时间减少了70%,灰度级振荡减少了80%。

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