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Physical behavior of nematic liquid crystals using the in-plane switching mode
Journal article

Physical behavior of nematic liquid crystals using the in-plane switching mode

Masahito Oh-E, Masuyuki Ohta and Katsumi Kondo
Molecular Crystals and Liquid Crystals Science and Technology Section A: Molecular Crystals and Liquid Crystals, Vol.299, pp.401-406
1997

Abstract

Condensed Matter Physics
We have investigated the switching and response mechanism of the in-plane switching (IPS) mode which is a novel technique for wide viewing-angle liquid crystal displays. In the IPS mode, an in-plane electric field is applied to the liquid crystals along the direction parallel to the plane of the substrates First, it was made clear that it was the electric field and not the voltage that drove the liquid crystals in the IPS mode. An inversely proportional relationship between the threshold voltage and the cell gap was found to hold. Second the relaxation time of the liquid crystals when removing the electric field was described as a proportional relationship to the square of cell gap. A thinner cell gap also proved to be effective to obtain fast response time in the IPS mode. In contrast, the electric field strength governed the switchmg-on time when applying the in-plane electric field.

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