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公开(公告)号:US20040228981A1
公开(公告)日:2004-11-18
申请号:US10653989
申请日:2003-09-04
Applicant: Industrial Technology Research Institute
Inventor: Chi-Chang Liao , Kang-Hung Liu , Ing-Jer Lin , Yi-Chun Wong , Chia-Rong Sheu
IPC: B05D005/06
CPC classification number: G02F1/167
Abstract: The present invention discloses a method for manufacturing an electrophoretic display. The major feature is wrapping the colored and charged particles with photo polymeric material so as to enable an electrophoretic display. The manufacturing process includes steps as proceeding to a polymerization manufacturing process where an assist substrate having a buffer layer is coated with a first layer of photo polymeric material. The first layer of photo polymeric material then undergoes required steps such as conductive layer electrode fabricating. The second layer of photo polymeric material mixture is coated on a substrate having a plurality of electrode patterns. The assist substrate is aligned with the substrate. Then a mask exposure polymerization manufacturing process is performed so as to combining the assist substrate and the substrate and separate the charged particles solution from the polymeric material. The assist substrate is removed from the substrate and the manufacturing process is completed.
Abstract translation: 本发明公开了一种电泳显示器的制造方法。 主要特征是用彩色和带电的微粒包裹光聚合材料,以使电泳显示。 制造方法包括进行到聚合制造过程的步骤,其中具有缓冲层的辅助衬底涂覆有第一层光聚合物材料。 然后,第一层光聚合物材料经历所需的步骤,例如导电层电极制造。 将第二层光聚合材料混合物涂覆在具有多个电极图案的基板上。 辅助衬底与衬底对准。 然后进行掩模曝光聚合制造工艺,以便组合辅助基底和基底,并将带电粒子溶液与聚合物材料分离。 从衬底上去除辅助衬底,并完成制造过程。
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公开(公告)号:US20040105062A1
公开(公告)日:2004-06-03
申请号:US10448669
申请日:2003-05-29
Applicant: Industrial Technology Research Institute
Inventor: Chih-Ming Lai , Yang-Yi Fan , Chia-Rong Sheu , Ching-Yih Chen
IPC: G02F001/1337
CPC classification number: G02F1/133707 , G02F1/133753 , G02F1/134363 , G02F1/1393
Abstract: A wide-viewing angle display device serves as a multi-domain vertical alignment (MVA) mode liquid crystal display (LCD) device or an in-plane switching (IPS) mode liquid crystal display (LCD) device. A plurality of protrusions is formed on the inner surface of the glass substrate, and an electrode array is formed on the tops of the protrusions. Thus, the electrodes are suspended in the liquid crystal cell gap, and a transverse electrical field is generated by the electrodes to drive the liquid crystal molecules.
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