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用于三层多色分段电润湿显示器的可扩展制造与测试工艺

Scalable Fabrication and Testing Processes for Three-Layer Multi-Color Segmented Electrowetting Display.

作者信息

Yang Guisong, Tang Biao, Yuan Dong, Henzen Alex, Zhou Guofu

机构信息

Guangdong Provincial Key Laboratory of Optical Information Materials and Technology & Institute of Electronic Paper Displays, South China Academy of Advanced Optoelectronics, South China Normal University, Guangzhou 510006, China.

National Center for International Research on Green Optoelectronics, South China Normal University, Guangzhou 510006, China.

出版信息

Micromachines (Basel). 2019 May 23;10(5):341. doi: 10.3390/mi10050341.

Abstract

Colorful electrowetting displays (EWD) present many challenges, such as scalability and electro-optical performance improvement (e.g., brightness, color gamut, and contrast ratio). The first full investigation of scalable fabrication and testing processes for multi-color segmented EWD with potentially unprecedented electro-optical performance is proposed. A three-layer architecture is employed to achieve colorful EWD, where the key components are three primary color layers (cyan, magenta, and yellow), switched independently. Unlike previous reports referred to herein, which used the same fabrication and testing processes for each layer, this architecture facilitates a uniform performance, improves yield, and simplifies the process for colorful EWD. With an aperture ratio greater than 80%, National Television Standards Committee (NTSC) color gamut area greater than 63%, switching speed lower than 12 ms, and DC driving voltage below 22V, the testing results of colorful EWD are proven successfully by using our proposed processes. The processes investigated in this paper have greatly improved efficiency, suitable for a high-volume of full-color EWD.

摘要

彩色电润湿显示器(EWD)面临诸多挑战,例如可扩展性以及电光性能提升(如亮度、色域和对比度)。本文首次全面研究了具有潜在前所未有的电光性能的多色分段式EWD的可扩展制造和测试工艺。采用三层架构来实现彩色EWD,其中关键组件是三个独立切换的原色层(青色、品红色和黄色)。与本文中提及的先前报告不同,先前报告对每层使用相同的制造和测试工艺,而这种架构有助于实现均匀性能、提高良品率并简化彩色EWD的工艺。通过使用我们提出的工艺,彩色EWD的测试结果得到成功验证,其孔径比大于80%,美国国家电视标准委员会(NTSC)色域面积大于63%,切换速度低于12毫秒,直流驱动电压低于22V。本文所研究的工艺极大地提高了效率,适用于大批量全彩EWD。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87ef/6562537/97b84a2534f2/micromachines-10-00341-g001.jpg

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