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首页> 外文期刊>Japanese journal of applied physics >Improvement in Brightness Uniformity by Compensating for the Threshold Voltages of Both the Driving Thin-Film Transistor and the Organic Light-Emitting Diode for Active-Matrix Organic Light-Emitting Diode Displays
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Improvement in Brightness Uniformity by Compensating for the Threshold Voltages of Both the Driving Thin-Film Transistor and the Organic Light-Emitting Diode for Active-Matrix Organic Light-Emitting Diode Displays

机译:通过补偿用于有源矩阵有机发光二极管显示器的驱动薄膜晶体管和有机发光二极管的阈值电压来改善亮度均匀性

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摘要

In this paper, we propose a novel pixel design and driving method for active-matrix organic light-emitting diode (AM-OLED) displays using low-temperature polycrystalline silicon thin-film transistors (LTPS-TFTs). The proposed threshold voltage compensation circuit, which comprised five transistors and two capacitors, has been verified to supply uniform output current by simulation work using the automatic integrated circuit modeling simulation program with integrated circuit emphasis (AIM-SPICE) simulator. The driving scheme of this voltage programming method includes four periods: precharging, compensation, data input, and emission. The simulated results demonstrate excellent properties such as low error rate of OLED anode voltage variation (<1%) and high output current. The proposed pixel circuit shows high immunity to the threshold voltage deviation characteristics of both the driving poly-Si TFT and the OLED.
机译:在本文中,我们提出了一种使用低温多晶硅薄膜晶体管(LTPS-TFT)的有源矩阵有机发光二极管(AM-OLED)显示器的新型像素设计和驱动方法。拟议的阈值电压补偿电路由五个晶体管和两个电容器组成,已通过使用带有集成电路重点的自动集成电路建模仿真程序(AIM-SPICE)模拟器通过仿真工作得到了验证,可以提供均匀的输出电流。该电压编程方法的驱动方案包括四个时段:预充电,补偿,数据输入和发射。仿真结果显示出优异的性能,例如OLED阳极电压变化的错误率低(<1%)和高输出电流。所提出的像素电路对驱动多晶硅TFT和OLED的阈值电压偏差特性表现出较高的抗扰性。

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  • 来源
    《Japanese journal of applied physics》 |2010年第5issue2期|P.05EB04.1-05EB04.4|共4页
  • 作者单位

    Department of Electronic Engineering, National Taiwan University of Science and Technology, Taipei 106, Taiwan, R.O.C. Graduate Institute of Electro-Optical Engineering, National Taiwan University of Science and Technology, Taipei 106, Taiwan, R.O.C.;

    rnDepartment of Electronic Engineering, National Taiwan University of Science and Technology, Taipei 106, Taiwan, R.O.C.;

    rnDepartment of Electronic Engineering, National Taiwan University of Science and Technology, Taipei 106, Taiwan, R.O.C.;

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