首页> 外文会议>Conference on Liquid Crystals; 20031013-20031017; Zakopane; PL >Electrooptics of antiferroelectric orthoconic reflective displays
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Electrooptics of antiferroelectric orthoconic reflective displays

机译:反铁电正圆锥反射显示器的电光学

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The contrast of antiferroelectric liquid crystal (AFLC) displays working on transmissive mode is degraded by the presence of pretransitional effect. Contrast is significantly enhanced by the use of orthoconic materials, i.e., AFLC mixtures with 45° smectic cone half angle. However, current orthoconic materials usually show short helical pitch ( < 1 μm), what hinders the surface stabilization of the material with standard alignments. Indeed, cell thickness should be small compared to helical pitch, in order to surface-stabilize the material. Cell thickness nonetheless cannot be arbitrarily chosen, since AFLCs behave as linear retardation plates whose performance is a function of optical path. In the case of transmissive cells, thickness is fixed about 1.5-2 μm, i.e., wider than helical pitch. As an alternative, the use of reflective cells has been proposed. In these cells, the optical path is doubled; therefore, the same optical performance can be obtained, in principle, with 0.8-1 蘭 reflective cells than with transmissive cells twice as thick, whereas surface-stabilization is improved. In this work, the electrooptical behavior of orthoconic reflective cells is studied. Multiplexed seven-level driving schemes have been employed for dynamic analysis of orthoconic displays, allowing video-rate multiplexed analogue grayscale.
机译:反铁电液晶(AFLC)显示器在透射模式下的对比度会因过渡前效应的存在而降低。通过使用正圆锥形材料(即具有45°近晶锥半角的AFLC混合物)可以显着增强对比度。但是,当前的正圆锥材料通常显示出较短的螺距(<1μm),这阻碍了材料在标准对准条件下的表面稳定性。实际上,为了使材料表面稳定,与螺旋螺距相比,孔的厚度应该较小。但是,由于AFLC就像线性相位差板一样起作用,其性能是光程的函数,因此不能任意选择单元厚度。在透射单元的情况下,厚度固定为约1.5-2μm,即比螺旋节距宽。作为替代方案,已经提出使用反射单元。在这些单元中,光路加倍;因此,原则上,使用0.8-1兰反射单元比使用透射单元厚两倍的透射单元可以获得相同的光学性能,而提高了表面稳定性。在这项工作中,研究了正圆锥反射单元的电光行为。多路复用的七级驱动方案已用于正交圆锥显示器的动态分析,允许视频速率多路复用的模拟灰度。

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