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Electrically Tunable Color for Full-Color Reflective Displays

机译:用于全彩色反射显示器的电动调音颜色

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Conventional reflective displays based on either color filter/polarizer or stacked color layers suffer from its marginal performance in terms of brightness, color, and cost. In this paper, we will present new full-color reflective display architecture: Electrically Tunable Color (ETC). In this display architecture, both color generation and its change are through the coupling of a cholesteric liquid crystal in its planar state and an in-plane electric field. Unlike the conventional cholesteric liquid crystal display, in which one liquid crystal layer only reflects one preset color, in ETC the in-plane field that is predominantly normal to the helix unwinds the helix to result a color shift from its initial color. We have fabricated such devices in our laboratory and demonstrated large color change covering all three primary colors with a single ETC pixel. Another advantage of ETC is its faster time response. Time response data will be presented and compared with model. Switching voltages depend much on cell parameters, in particular on the electrode configuration. Measured switch voltage vs. these parameters will be shown and challenging issue in voltage reduction will be discussed. Finally, we will propose full-color display architectures based on ETC and analyze their cost/performance.
机译:根据任一彩色滤光片/偏振或层叠着色层的常规反射式显示器从亮度,颜色,和成本方面其界限性能受到影响。在本文中,我们将提出新的全彩色反射显示器结构:电可调颜色(ETC)。在这种显示器结构,两者颜色产生和它的变化是通过在其平面状态的胆甾醇型液晶和面内电场的耦合。不像常规的胆甾型液晶显示器,其中,一个液晶层仅反映一个预设颜色,在ETC面内场是主要垂直于所述螺旋解开螺旋导致从其初始颜色的色移。我们已经在实验室制造此类设备并展示了大量的颜色变化涵盖所有三种原色与单个像素ETC。 ETC的另一个优点是它的速度更快时间响应。时间响应数据将呈现与模型进行了比较。开关电压很大程度上取决于细胞参数,特别是在电极结构。测量开关电压对这些参数将被示出和在电压降低具有挑战性的问题进行讨论。最后,我们将提出一种基于ETC全彩显示屏结构,并分析其成本/性能。

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