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Improving Electrophoretic Particle Motion Control in Electrophoretic Displays by Eliminating the Fringing Effect via Driving Waveform Design

机译:通过驱动波形设计消除边缘效应改善电泳显示器中的电泳粒子运动控制

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摘要

Electrophoretic display is realized by controlling colored nanoparticles moving in micrometer spaces via electrophoresis. The quality of information display is therefore affected by the unsynchronized particle moving speed and the mismatched electric signal according to the crosstalk of the electric field and inhomogeneous material distribution. In this work, we analyzed the mechanism of a fringe phenomenon that affected the information display quality of electrophoretic displays (EPDs). Electrical driving waveforms (voltage signals) are designed to reduce the fringe phenomenon. By using the optimizing driving waveform, we proposed that the fringe phenomenon is quantified as gray value that can be diminished by 25.5, while keeping a response time of 200 ms.
机译:电泳显示是通过控制通过控制在微米空间中移动的有色纳米粒子来实现的。因此,根据电场的串扰和不均匀的材料分布,不同步的粒子移动速度和不匹配的电信号会影响信息显示的质量。在这项工作中,我们分析了影响电泳显示器(EPD)信息显示质量的条纹现象的机理。电驱动波形(电压信号)旨在减少条纹现象。通过使用优化的驱动波形,我们提出将条纹现象量化为可以减少25.5的灰度值,同时保持200 ms的响应时间。

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