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A New AMOLED Pixel Circuit With Pulsed Drive and Reverse Bias to Alleviate OLED Degradation

机译:新型带脉冲驱动和反向偏置的AMOLED像素电路可减轻OLED的退化

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This paper proposes a new pixel circuit for an active matrix organic light-emitting diode (OLED) display, which consists of five thin-film transistors (TFTs) and one capacitor. This circuit develops techniques of pulsed drive and reverse bias to achieve desired emitted brightness levels and elongate OLED life times, respectively. A current mirror is also adopted in the circuit to minimize emission nonuniformity of the OLED panel. The required input data voltages for varied displayed gray levels are calculated based on analytically known TFT and OLED models and the designed circuit architecture. The designed pixel circuit is simulated with realistic TFT models for validating expected performance to realize 256 gray levels and minimizing nonuniformity. The designed circuit is implemented in a 2.4-in quarter video graphics array panel, which shows favorable performance for minimizing display nonuniformity and alleviating OLED degradation. In addition, a closeness is clearly observed among analytical predictions, simulations, and experimental measurements.
机译:本文提出了一种用于有源矩阵有机发光二极管(OLED)显示器的新型像素电路,该电路由五个薄膜晶体管(TFT)和一个电容器组成。该电路开发了脉冲驱动和反向偏置技术,以分别实现所需的发射亮度水平和延长OLED寿命。电路中还采用了电流镜,以最大程度地减少OLED面板的发射不均匀性。根据分析上已知的TFT和OLED模型以及设计的电路架构,计算出变化的显示灰度级所需的输入数据电压。使用现实的TFT模型对设计的像素电路进行仿真,以验证期望的性能以实现256灰度级并最大程度地减少不均匀性。设计的电路在2.4英寸四分之一的视频图形阵列面板中实现,显示出有利的性能,可最大程度地减少显示不均匀并减轻OLED的退化。另外,在分析预测,模拟和实验测量之间可以清楚地观察到紧密性。

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