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Liquid Crystal Light Shutters for Simultaneous Control of Haze and Transmittance

机译:用于同时控制雾度和透射率的液晶灯百叶窗

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Recently, see-through displays have been attracted much attention as next-generation displays. There are two basic technologies by which we can realize a see-through display: organic light-emitting diodes (OLEDs) and liquid crystal (LC) displays. The pixel structure of a see-through display includes a transparent window area through which the background image can be seen. Therefore, background images are always seen along with the displayed image. In addition, a see-through display using OLEDs cannot provide the black color. As a result, a see-thorough display exhibits poor visibility. This inevitable problem can be solved by placing a light shutter at the back of a see-through display. Light shutter technology can be divided into two types; light absorption and light scattering. Light shutter based on light absorption can be used to control the transmittance, but it cannot block the object behind the display panel completely. Light shutters based on light scattering can be used to control the haze, but it cannot provide black color. To realize a high-visibility see-through display, we need a light shutter by which we can control haze and transmittance simultaneously. In this talk we would like to introduce technologies for LC light shutters by which we can block the background image and provide black color by utilizing light scattering and absorption effects simultaneously.
机译:最近,透视显示被吸引了很多关注,因为下一代显示器。我们可以实现两种基本技术,我们可以实现透视显示:有机发光二极管(OLED)和液晶(LC)显示器。透视显示的像素结构包括透明窗口区域,可以通过该透明窗口区域看到背景图像。因此,始终看到背景图像与所显示的图像一起看。另外,使用OLED的透视显示器不能提供黑色。结果,渗透显示呈现差。通过将透明挡板放置在透视显示的后面,可以解决这种不可避免的问题。灯光快门技术可分为两种类型;光吸收和光散射。基于光吸收的光快门可用于控制透射率,但它不能完全阻挡显示面板后面的物体。基于光散射的轻挡板可用于控制雾度,但不能提供黑色。为了实现高可见性透视显示,我们需要一个轻快的快门,我们可以同时控制雾霾和透射率。在这次谈话中,我们想向LC灯百叶窗引入技术,我们可以通过同时利用光散射和吸收效果来阻止背景图像并提供黑色。

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