E.G. Colgan, F.E. Doany, et al.
Journal of the Society for Information Display
We have characterized the MLC00089 antiferroelectric liquid crystal (AFLC) mixture in terms of tilt angle, reflectance, and response time as a function of applied voltage. The derived highest contrast ratio was about 700 to 1. We also applied the simulated thin-film-transistor (TFT)-type circuit to direct drive a hardwired Si-based chip filled with the AFLC mixture by varying the values of storage capacitor and gate on-time. We found that adding a storage capacitor is effective to increase the signal if the gate on-time of the TFT is shorter than the AFLC response time. We also used quasi-DC driving with a short gate on-time on the hardwired chip as well as a Si-based reflective 1024 × 1280 (SXGA) microdisplay. We have accomplished the effective operation of the microdisplay using 5-frame quasi-DC driving with extrapolated polarity-frame inversion at 360 Hz suitable for field-sequential color displays using pulsed-light sources (light-emitting diodes) as well as optical storage applications. © 2000 Publication Board, Japanese Journal of Applied Physics.
E.G. Colgan, F.E. Doany, et al.
Journal of the Society for Information Display
K.H. Yang
Journal of Applied Physics
Minhua Lu, Thomas Wassick, et al.
ECTC 2015
Minhua Lu, Larry Mok, et al.
InterPACK 2005