ITE Transactions on Media Technology and Applications
Online ISSN : 2186-7364
ISSN-L : 2186-7364
Regular Section
[Paper] Fabrication and Driving Technology of Thick Film Liquid Crystal Devices Using Polymer Walls
Yasuo YamamotoMasakazu NakataniMamoru HayakawaNaonobu YoshiTakahiro IshinabeHiroyasu SatoQiang ChenHideo Fujikake
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2026 年 14 巻 1 号 p. 119-126

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In recent years, reflectarrays that reflect incident radio waves in arbitrary authdirections have become a promising technology for expanding the service range of 5G and communication standards. In this study, we propose a structure in which liquid crystal layers are divided by polymer walls, and the gap between the walls is adjusted. The results confirmed that the polymer walls can stabilize the liquid crystal alignment and the proposed structure is effective in accelerating the fall response of thick-film liquid crystals.

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© 2026 The Institute of Image Information and Television Engineers
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