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Driving Scheme Using MIS Photosensor for Luminance Control of AMOLED Pixel

机译:MIS光电传感器驱动AMOLED像素亮度的驱动方案

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摘要

This paper presents a new driving scheme utilizing an in-pixel metal-insulator-semiconductor (MIS) photosensor for luminance control of active-matrix organic light-emitting diode (AMOLED) pixel. The proposed 3-TFT circuit is controlled by an external driver performing the signal readout, processing, and programming operations according to a luminance adjusting algorithm. To maintain the fabrication simplicity, the embedded MIS photosensor shares the same layer stack with pixel TFTs. Performance characteristics of the MIS structure with a ${hbox{nc}}{hbox{--}}{hbox{Si}}:{hbox{H}}/a{hbox{-}}{hbox{Si}}:{hbox{H}}$ bilayer absorber were measured and analyzed to prove the concept. The observed transient dark current is associated with charge trapping at the insulator–semiconductor interface that can be largely eliminated by adjusting the bias voltage during the refresh cycle. Other factors limiting the dynamic range and external quantum efficiency are also determined and verified using a small-signal model of the device. Experimental results demonstrate the feasibility of the MIS photosensor for the discussed driving scheme.
机译:本文提出了一种新的驱动方案,该方案利用像素内金属绝缘体半导体(MIS)光电传感器来控制有源矩阵有机发光二极管(AMOLED)像素的亮度。所提出的3-TFT电路由外部驱动器控制,该外部驱动器根据亮度调节算法执行信号读取,处理和编程操作。为了保持制造的简便性,嵌入式MIS光电传感器与像素TFT共享同一层堆栈。带有 $ {hbox {nc}} {hbox {-}} {hbox {Si}}:{hbox {H}的MIS结构的性能特征} / a {hbox {-}} {hbox {Si}}:{hbox {H}} $ 双层吸收剂进行了测量和分析,以证明这一概念。观察到的瞬态暗电流与绝缘体-半导体界面处的电荷俘获有关,通过在刷新周期内调节偏置电压可以大大消除电荷。还使用设备的小信号模型确定并验证了限制动态范围和外部量子效率的其他因素。实验结果证明了MIS光电传感器用于所讨论的驱动方案的可行性。

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