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首页> 外文期刊>Display Technology, Journal of >Pixel Design Optimization of Fringe-Field Switching Mode for Applying Negative Liquid Crystals in High-Resolution Mobile Displays
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Pixel Design Optimization of Fringe-Field Switching Mode for Applying Negative Liquid Crystals in High-Resolution Mobile Displays

机译:在高分辨率移动显示器中应用负液晶的边缘场切换模式的像素设计优化

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摘要

We demonstrate an optimized fringe-field switching pixel structure to apply negative liquid crystals (nLCs) for high-resolution mobile displays. Pixel transmittance can be improved by applying nLCs, but the driving voltage increases because Δε of the nLC is lower than that of the positive LC (pLC). In spite of applying an nLC, a similar driving voltage can be achieved by changing the pixel structure. It is easy to obtain a low driving voltage in a strong electric field by applying a thinner passivation layer using photo acryl (PAC). In addition, while the edge electrodes of the conventional Vcom-on-top (VOT) structure are operated with in-plane switching, all electrodes of the pixel-on-top (POT) structure are operated with fringe-field switching. Therefore, the driving voltage can be reduced by applying a POT structure with PAC. Furthermore, crosstalk can be improved because the capacitance (Cdp) between data lines and pixel electrodes is reduced by applying a POT structure. As a result, applying the proposed structure with nLC has two advantages. First, transmittance increases by more than 20% based on 4.5-in-high definition pixels. Second, crosstalk in the POT structure is more stable than that in the VOT structure, despite variations in low gate voltage (VGL). Consequently, because of higher transmittance and stable crosstalk, the proposed POT structure with nLC can be used for mobile displays.
机译:我们演示了一种优化的边缘场切换像素结构,可将负液晶(nLC)用于高分辨率移动显示器。通过应用nLC可以提高像素的透射率,但是由于nLC的Δε低于正LC(pLC)的Δε,因此驱动电压增加。尽管应用了nLC,但可以通过更改像素结构来实现类似的驱动电压。通过使用光丙烯酸(PAC)涂覆更薄的钝化层,很容易在强电场中获得低驱动电压。另外,尽管传统的Vcom-on-top(VOT)结构的边缘电极通过平面内开关操作,但是Pon-top-top(POT)结构的所有电极均通过边缘场开关操作。因此,可以通过将POT结构与PAC一起应用来降低驱动电压。此外,由于通过应用POT结构减小了数据线与像素电极之间的电容(Cdp),因此可以改善串扰。结果,将所提出的结构与nLC一起应用具有两个优点。首先,基于4.5英寸高清像素,透射率增加了20%以上。其次,尽管低栅极电压(VGL)有所变化,但POT结构中的串扰比VOT结构中的串扰更稳定。因此,由于较高的透射率和稳定的串扰,所提出的具有nLC的POT结构可用于移动显示器。

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