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SID Symposium Digest of Technical Papers | 2006

P-147: Stressed Liquid Crystal Materials for Fast Display Application

John L. West; Guoqiang Zhang; Anatoliy Glushchenko; Byeong-Seob Ban

Stressed liquid crystals (SLCs), novel materials decoupling switching speed and cell thickness, are used in electrically controlled phase retardation devices. First, we discuss the structure and optical properties of SLCs. Then, we present the electro-optical performance of SLC-based fast display devices. Finally, we discuss some practical application factors of SLCs such as display operation temperature range, voltage holding ratio, and thermal stability.


Archive | 2008

COLOR FILTER SUBSTRATE, ELECTROPHORETIC DISPLAY DEVICE HAVING THE SAME, AND METHOD OF MANUFACTURING THE SAME

Byeong-Seob Ban


Archive | 2006

Nematic liquid crystal composition

Byeong-Seob Ban


Archive | 2003

Liquid crystal composition having high-speed response property and liquid crystal display using the same

Yong-Kuk Yun; Bong-Hee Kim; Bong-Sung Seo; Byeong-Seob Ban


Archive | 2002

Nematic liquid crystal compound, and liquid crystal composition having high speed and high temperature comprising the same

Byeong-Seob Ban; Yong-Kuk Yun; Bong-Sung Seo; Bong-Hee Kim; Dongsik Sakong


Archive | 2007

THIN FILM TRANSISTOR ARRAY PANEL AND A LIQUID CRYSTAL DISPLAY INCLUDING THE SAME

Jong-Lae Kim; Byeong-Seob Ban; So-Youn Park; Joon-Hak Oh


Archive | 2008

Phase difference compensation film, display panel assembly having the compensation film and method of manufacturing the same

Byeong-Seob Ban


Archive | 2008

METHOD OF MANUFACTURING ELECTROPHORETIC DISPLAY DEVICE

Byeong-Seob Ban; Sung-sik Shin; Nam-Seok Roh; Sang-Il Kim; Woo-Jae Lee; Mi-jung Han


Archive | 2003

High-speed high-temperature nematic liquid crystal composition and liquid crystal display comprising the same

Yong-Kuk Yun; Bong-Hee Kim; Bong-Sung Seo; Byeong-Seob Ban


Archive | 2010

Liquid crystal display including buffer electrodes with higher voltage than pixel electrodes, on same layer with pixel electrodes, and overlapping a gate line

Jong-Lae Kim; Byeong-Seob Ban; So-Youn Park; Joon-Hak Oh

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