首页> 外文期刊>International Journal of Photoenergy >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,改善亮度均匀性

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摘要

This paper proposes a novel pixel circuit design and driving method for active-matrix organic light-emitting diode (AM-OLED) displays that use low-temperature polycrystalline-silicon thin-film transistors (LTPS-TFTs) as driving element. The automatic integrated circuit modeling simulation program with integrated circuit emphasis (AIM-SPICE) simulator was used to verify that the proposed pixel circuit, which comprises five transistors and one capacitor, can supply uniform output current. The voltage programming method of the proposed pixel circuit comprises three periods: reset, compensation with data input, and emission periods. The simulated results reflected excellent performance. For instance, when Delta V-TH = +/- 0.33 V, the average error rate of the OLED current variation was low (< 0.8%), and when Delta VTH-OLED = + 0.33 V, the error rate of the OLED current variation was 4.7%. Moreover, when the I x R (current x resistance) drop voltage of a power line was 0.3 V, the error rate of the OLED current variation was 5.8%. The simulated results indicated that the proposed pixel circuit exhibits high immunity to the threshold voltage deviation of both the driving poly-Si TFTs and OLEDs, and simultaneously compensates for the I x R drop voltage of a power line.
机译:本文针对采用低温多晶硅薄膜晶体管(LTPS-TFT)作为驱动元件的有源矩阵有机发光二极管(AM-OLED)显示器,提出了一种新颖的像素电路设计和驱动方法。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)模拟器来验证所提议的由五个晶体管和一个电容器组成的像素电路可以提供均匀的输出电流。提出的像素电路的电压编程方法包括三个周期:复位,数据输入补偿和发射周期。仿真结果反映了出色的性能。例如,当Delta V-TH = +/- 0.33 V时,OLED电流变化的平均误差率很低(<0.8%),而当Delta VTH-OLED = + 0.33 V时,OLED电流的误差率变化为4.7%。此外,当电源线的I×R(电流×电阻)下降电压为0.3V时,OLED电流变化的错误率为5.8%。仿真结果表明,所提出的像素电路对驱动多晶硅TFT和OLED的阈值电压偏差均具有较高的抗扰性,并同时补偿了电源线的I x R下降电压。

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