Hostname: page-component-586b7cd67f-2brh9 Total loading time: 0 Render date: 2024-11-28T14:48:52.371Z Has data issue: false hasContentIssue false

Electrooptic Characteristics of Polymer Stabilized Flcd: Application to field Sequential Fullcolor Display

Published online by Cambridge University Press:  10 February 2011

T. Takahashi
Affiliation:
Liquid Crystal Institute, Science University of Tokyo in Yamaguchi, Onoda, Yamaguchi 756-0884, Japan
H. Furue
Affiliation:
Liquid Crystal Institute, Science University of Tokyo in Yamaguchi, Onoda, Yamaguchi 756-0884, Japan
T. Miyama
Affiliation:
Liquid Crystal Institute, Science University of Tokyo in Yamaguchi, Onoda, Yamaguchi 756-0884, Japan
M. Shikaday
Affiliation:
Liquid Crystal Institute, Science University of Tokyo in Yamaguchi, Onoda, Yamaguchi 756-0884, Japan
R. Kurihara
Affiliation:
Liquid Crystal Institute, Science University of Tokyo in Yamaguchi, Onoda, Yamaguchi 756-0884, Japan
S. Kobayashi
Affiliation:
Liquid Crystal Institute, Science University of Tokyo in Yamaguchi, Onoda, Yamaguchi 756-0884, Japan
Get access

Abstract

Liquid crystal displays (LCDs) will be classified into miniature display, reflective type, projection type, direct view type, and holography type. All of these LCDs will be widely utilized in the coming multimedia network era. Along with this trends, in the first part of this paper we will discuss the social background of this research. In this paper we will place an emphasis on a polymer stabilized (PS) FLCD that is featured by fast response speed (40 µsec), high contrast (230:1) with grayscale, wide viewing angle, and high resolution (4001p/mmn). The PS-FLCD, which is referred to as Liquid Crystal Optical Diode owing to its strong asymmetric electrooptical characteristics, will be a promising technology for displaying a moving video image, and optical computing.

Type
Research Article
Copyright
Copyright © Materials Research Society 1999

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

REFERENCES

[1] Tani, C.: Report in the meeting of the research committee of information display of JTTAS, on February 6, (1998).Google Scholar
[2] Takeya, K.: ibid.Google Scholar
[3] Shanks, I. A.: Electronics Lett, 10 90 (1974).Google Scholar
[4] Clark, M. G. and Shanks, I. A.: SID Dig. Tech. Papers 13 172 (1982).Google Scholar
[5] Vatne, R., Johnson, P. A. Jr., andBos, P. J.: SID Dig. Tech. Papers 14 28 (1983).Google Scholar
[6] Bos, P. J. and Koehier, K. R.: Proc. JPN Display 86 360 (1986).Google Scholar
[7] Hasebe, H. and Kobayashi, S.: SID Dig. Tech. Papers 16 81 (1985).Google Scholar
[8] Tanaka, T., Hasebe, H. and Kobayashi, S.: Proc. JPN Display86 360 (1986).Google Scholar
[9] Makino, T., Kiyota, Y., Yoshihara, T., Shiroto, H. and Inoue, H.: 1998 Liquid Crystal Sympo. of Jpn. Liquid Crystal Society 3–3b, 204 (1998).Google Scholar
[10] Uchida, T., Saitoh, K., Miyasita, T. and Suzuki, M.: Proc. IDRC97 37 (1997).Google Scholar
[11] Fume, H., Miyama, T., Iimura, Y., Hasebe, H., Takatsu, H. and Kobayashi, S.: Jpn. J. Appl. Phys. 36, L1517 (1997).Google Scholar