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Reflective and Transflective Liquid Crystal Displays for Low-Power Mobile Applications

机译:适用于低功率移动应用的反射式和半反射式液晶显示器

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We describe the main features of current reflective and transflective liquid crystal displays (LCDs) for low-power mobile applications. The reflective LCD is relatively simple but not readable in dark environment, and the transflective LCD involves complicated fabrication processes. We demonstrate two types of transflective liquid crystal displays (LCDs) in a single gap geometry to overcome these problems. One type of our transflective LCD with a single gap has multimodes based on the homogeneous alignment and the hybrid alignment, with a low helical twisting power. This multimode transflective LCD was fabricated by a single-step exposure of the ultraviolet (UV) light through an array of metal reflectors used as an amplitude photomask which gives an alternating homogeneous and homeotropic LC configuration. The single-step UV exposure produces no variations of the cell gap. In such configuration, the electro-optical disparity between the transmissive region and the reflective region was found to be significantly reduced by the low helical twisting power of the chiral dopant. Another type having a single cell gap and a single LC mode was developed using a patterned retardation layer. In this transflective configuration, a single LC mode of the 60° twisted nematic LC was used for both transmissive and reflective applications. The patterned retardation layer was fabricated using a reactive mesogen by photo-patterning. The measured electro-optic characteristics of the single mode transflective LCD agree well with numerical simulations.
机译:我们描述了用于低功率移动应用的电流反射和半反射式液晶显示器(LCD)的主要功能。反射型LCD相对简单,但是在黑暗环境中不可读,而透反射型LCD涉及复杂的制造工艺。我们展示了两种类型的半透半反式液晶显示器(LCD),可以克服这些问题。我们的一种具有单间隙的半透半反式LCD具有基于均匀排列和混合排列的多模,具有较低的螺旋扭曲能力。这种多模式半透半反式LCD是通过紫外线(UV)光通过金属反射器阵列的一步曝光而制成的,该金属反射器用作振幅光掩模,从而提供交替的均匀和垂直液晶结构。单步紫外线照射不会产生细胞间隙的变化。在这种配置中,发现通过手性掺杂剂的低螺旋扭曲能力,透射区域和反射区域之间的电光差异被显着减小。使用图案化的延迟层开发了具有单个单元间隙和单个LC模式的另一种类型。在这种透反射配置中,将60°扭曲向列型LC的单个LC模式用于透射和反射应用。使用反应性液晶元通过光图案化来制造图案化的延迟层。单模半透半反LCD的电光特性与数值模拟吻合得很好。

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