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Driving Waveform Design Based on Response Latency Analysis of Electrophoretic Displays

机译:基于电泳显示器响应延迟分析的驱动波形设计

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摘要

The display quality, as well as the speed of electrophoretic displays (EPDs), is highly affected by the design of driving waveforms. A typical driving waveform contains the phases of image erase, particle activation, and driving each pixel to the target gray level. Due to the difficulty of modeling a complete EPD device, the designers still lack a systematic approach to driving waveform design. In this paper, we study the property of the viscosity of the suspension, characterize the response latency of the device, and propose a new driving waveform. The experimental results show that the proposed approach can effectively reduce driving time while still maintaining good image quality.
机译:驱动波形的设计极大地影响了显示质量以及电泳显示器(EPD)的速度。典型的驱动波形包含图像擦除,粒子激活以及将每个像素驱动到目标灰度级的阶段。由于难以建模完整的EPD设备,设计人员仍然缺乏系统的方法来驱动波形设计。在本文中,我们研究了悬浮液的粘度特性,表征了设备的响应潜伏期,并提出了新的驱动波形。实验结果表明,该方法可以有效减少驱动时间,同时保持良好的图像质量。

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