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Driving Waveform Design of Electrowetting Displays Based on an Exponential Function for a Stable Grayscale and a Short Driving Time

机译:基于稳定灰度的指数函数和短驾驶时间的指数函数驱动电润湿显示的波形设计

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摘要

The traditional driving waveform of the electrowetting display (EWD) has many disadvantages, such as the large oscillation of the target grayscale aperture ratio and a long time for achieving grayscale. Therefore, a driving waveform based on the exponential function was proposed in this study. First, the maximum driving voltage value of 30 V was obtained by testing the hysteresis curve of the EWD pixel unit. Secondly, the influence of the time constant on the driving waveform was analyzed, and the optimal time constant of the exponential function was designed by testing the performance of the aperture ratio. Lastly, an EWD panel was used to test the driving effect of the exponential-function-driving waveform. The experimental results showed that a stable grayscale and a short driving time could be realized when the appropriate time constant value was designed for driving EWDs. The aperture ratio oscillation range of the gray scale could be reduced within 0.95%, and the driving time of a stable grayscale was reduced by 30% compared with the traditional driving waveform.
机译:电润湿显示器(EWD)的传统驱动波形具有许多缺点,例如目标灰度孔径比的大振荡以及实现灰度的长时间。因此,本研究提出了基于指数函数的驱动波形。首先,通过测试EWD像素单元的滞后曲线来获得30V的最大驱动电压值。其次,分析了时间常数对驱动波形上的影响,并通过测试孔径比的性能来设计指数函数的最佳时间常数。最后,使用EWD面板来测试指数函数驱动波形的驱动效果。实验结果表明,当设计适当的时间恒定值以驱动EWD时,可以实现稳定的灰度和短驾驶时间。灰度比振荡范围可以减少0.95%,与传统驱动波形相比,稳定灰度的驱动时间减少了30%。

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