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Scaling theory of liquid-crystal displays addressed by thin-film transistors

机译:薄膜晶体管解决液晶显示器的缩放理论

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The proposed scaling theory for designing thin-film transistor/liquid-crystal displays (TFT/LCD's) addresses the need for a new design theory for fabricating TFT panels. A constant field is assumed, the same as for MOSFET scaling. A constant voltage is assumed based on the fact that the operational voltages of liquid-crystal cells are not easily scaled. Scaling is found to improve the gate delay and offset voltage characteristics in spite of the narrower busline width and the smaller pixel capacitance. The same improvements are observed even in larger, higher-resolution panels. This scheme to scale the pixel capacitance can be extended to an unloaded-pixel scheme in which there is no storage capacitance in the pixels. The trade-off in this scheme is between a short charging-time constant and a large aperture ratio, and a large voltage offset and a short discharging-time constant. The scaling theory is shown to be a valuable tool to design the next-generation TFT panels.
机译:提出的用于设计薄膜晶体管/液晶显示器(TFT / LCD)的缩放理论满足了对用于制造TFT面板的新设计理论的需求。假定为恒定场,与MOSFET缩放相同。基于液晶单元的工作电压不容易缩放的事实,假定恒定电压。尽管母线宽度更窄且像素电容更小,但缩放仍可改善栅极延迟和偏移电压特性。即使在较大的高分辨率面板中也观察到相同的改进。缩放像素电容的方案可以扩展到其中像素中没有存储电容的无像素方案。该方案的权衡是在较短的充电时间常数和较大的开口率之间,以及较大的电压偏移和较短的放电时间常数之间。缩放理论被证明是设计下一代TFT面板的有价值的工具。

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