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Video-rate multiplexed driving scheme for passive antiferroelectric liquid crystal displays

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Warianty tytułu
Konferencja
XV Liquid Crystal Conference: Chemistry, Physics and Applications ; (15 ; 12-17.10-2003 ; Zakopane, Poland)
Języki publikacji
EN
Abstrakty
EN
Antiferroelectric liquid crystals have been applied to high-end multiplexed displays. The interest on these materials chiefly comes up from their capability of being multiplex addressed with no need of active matrices. Antiferroelectric grey levels arise from a double symmetric hysteresis loop that can be stabilized by a constant holding voltage. Driving schemes are compatible with passive multiplexing, but limitations appear when the multiplexing rate increases. To avoid these limitations, new driving schemes for high multiplexing level at video rate have been designed. The problem of accumulated voltage on bias level arising from data voltages is tackled as well.
Twórcy
autor
  • Dpt. Tecnologiá Fotónica, ETSI Telecomunicación, Universidad Politécnica de Madrid, Ciudad Universitaria, 28040 Madrid, Spain
  • Dpt. Tecnologiá Fotónica, ETSI Telecomunicación, Universidad Politécnica de Madrid, Ciudad Universitaria, 28040 Madrid, Spain
autor
  • Dpt. Tecnología Fotónica, ETSI Telecomunicación, Universidad Politécnica de Madrid, Ciudad Universitaria, 28040 Madrid, Spain
autor
  • Dpt. Tecnologiá Fotónica, ETSI Telecomunicación, Universidad Politécnica de Madrid, Ciudad Universitaria, 28040 Madrid, Spain
autor
  • Dpt. Tecnologiá Fotónica, ETSI Telecomunicación, Universidad Politécnica de Madrid, Ciudad Universitaria, 28040 Madrid, Spain
autor
  • Dpt. Tecnología Electrónica, Escuela Politécnica Superior-UCIIIM, c/Butarque 15, 28911 Leganés, Spain
  • Institute of Chemistry, Military University of Technology, 2 Kaliskiego Str., 00-908 Warsaw, Poland
Bibliografia
  • 1. N. Yamamoto, N. Koshoubu, K. Mori, K. Nakamura, and Y. Yamada, “Full-colour antiferroelectric liquid crystal display”, Ferroelectrics 149, 295 (1993).
  • 2. E. Tajima, S. Kondoh, and Y. Suzuki, “5.5 inch video graphic array antiferroelectric display”, Ferroelectrics 149, 255 (1993).
  • 3. I. Abdulhalim, “Optimisation of antiferroelectric liquid crystal devices at the degeneration point”, J. Appl. Phys. 93, 4930 (2003).
  • 4. M. Johno, K. Itoh, J. Lee, Y. Ouchi, H. Takezoe, A. Fukuda, and T. Kitazume, “Temporal and spatial behavior of the field-induced transition between antiferroelectric and ferroelectric phases in chiral smectics”, Jpn. J. Appl. Phys. 29, L107 (1990).
  • 5. P. Rudquist, J.G. Meier, J.P.F. Lagerwall, K. D'have, and S.T. Lagerwall, “Tilt plane orientation in antiferroelectric liquid crystal cells and the origin of the pretransitional effect”, Phys. Rev. E 66, 061708 (2002).
  • 6. S.T. Lagerwall, K. D'have, and P. Rudquist, “Future antiferroelectric liquid crystal displays”, SID’01 Int. Symp. Digest 32, 120 (2001).
  • 7. X. Quintana, J.L. Gayo, C. Rodrigo, V. Urruchi, and J.M. Otón, “Addressing waveforms for tristable AFLCs in active matrix displays”, Ferroelectrics 246, 211 (2000).
  • 8. J.M. Otón, “Antiferroelectric liquid crystal displays”, Proc. 15th Conf. Liq. Cryst., Zakopane, Poland, 23 (2003).
  • 9. M. Watanabe, Y. Shimano, H. Okada, and H. Onnagawa, “Optimization method of memory characteristics in antiferroelectric liquid crystals”, Jpn. J. Appl. Phys. 36, 767 (1997).
  • 10. H. Okada, M. Watanabe, H. Onnagawa, and K. Miyashita, “New grey level control technique and its characterization for antiferroelectric liquid crystal cells”, Jpn. J. Appl. Phys. 34, L375 (1995).
  • 11. J.M. Otón, C. Toscano, V. Urruchi, J.L. Gayo, X. Quintana, and L. Sirleto, “Reflective SLMs based on antiferroelectric and V-shape liquid crystals”, 9th Int. Topical Meeting on Optics of Liquid Crystals OLC’01, Sorrento, Italy, 2001.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BWA2-0009-0021
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