Paper
15 June 1992 Active backplane spatial light modulators using chiral smectic liquid crystals (Invited Paper)
William A. Crossland, Martin J. H. Birch, A. B. Davey, David G. Vass
Author Affiliations +
Proceedings Volume 1665, Liquid Crystal Materials, Devices, and Applications; (1992) https://doi.org/10.1117/12.60405
Event: SPIE/IS&T 1992 Symposium on Electronic Imaging: Science and Technology, 1992, San Jose, CA, United States
Abstract
We consider the addressing requirements associated with some analogue and binary electro- optic effects in chiral smectic liquid crystals driven from silicon VLSI backplanes. This class of liquid crystals offers major improvements in switching speed over electro-optic effects in nematic liquid crystals, but their non-RMS response to impressed voltages leads to addressing difficulties. Their spontaneous polarization also leads to limitations in using pixel drive circuits resembling dynamic random access memory cells (DRAMs), which are commonplace in display technology. Some illustrative examples of the performance of electro-optic effects with currently available materials are given, followed by a discussion of the problems associated with the charging phenomena occurring when ferroelectric liquid crystals are driven from active backplane drive circuits. Addressing schemes are then considered, particularly those that are aimed at providing electro-optic modulators with continuous optical access and with no temporal noise in their transfer characteristic, such as might be needed in optical switching devices. Some examples of experimental pixel circuits are given.
© (1992) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
William A. Crossland, Martin J. H. Birch, A. B. Davey, and David G. Vass "Active backplane spatial light modulators using chiral smectic liquid crystals (Invited Paper)", Proc. SPIE 1665, Liquid Crystal Materials, Devices, and Applications, (15 June 1992); https://doi.org/10.1117/12.60405
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Cited by 6 scholarly publications and 5 patents.
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KEYWORDS
Liquid crystals

Switching

Electrodes

Electro optics

Polarization

Transistors

Binary data

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