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A Novel Voltage-Programmed Pixel Circuit with Poly-Si TFTs for AMOLED Displays

机译:一种新颖的带有多晶硅TFT的电压编程像素电路,用于AMOLED显示器

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摘要

In this paper, we propose a novel voltage-programmed pixel circuit with polysilicon thin-flim transistors (poly-Si TFTs) for active matrix organic light-emitting diode (AMOLED) displays, which consists of one programming transistor, one driving transistor, four switching transistors and two storage capacitors, respectively. Specifically, the proposed pixel circuit is able to not only efficiently compensate for the threshold variations of TFTs, but also largely suppresses the electrical degradations of the devices caused by the long-term electrical stress. Moreover, the mobility variation of the driving transistor can be compensated as well. The simulation has been performed by HSPICE, and results indicate that the average values of nonuniformities are, respectively, 7.3% as the threshold-voltage varies by +/- 0.5 V and 2.1%, as the mobility of the driving transistor varies by +/- 20%, both of which are much lower than that of the conventional two-transistor and one-capacitor (2T1C) pixel. Furthermore, since the OLED is reverse-biased during the nonemission phases, the lifetime of OLED will be extended naturally. As a consequence, the proposed pixel circuit can substantially improve the display performance.
机译:本文针对有源矩阵有机发光二极管(AMOLED)显示器,提出了一种新型的带有多晶硅薄膜晶体管(poly-Si TFT)的电压编程像素电路,该电路由一个编程晶体管,一个驱动晶体管,四个晶体管组成。开关晶体管和两个存储电容器。具体地,提出的像素电路不仅能够有效地补偿TFT的阈值变化,而且能够很大程度上抑制由长期电应力引起的器件的电劣化。而且,也可以补偿驱动晶体管的迁移率变化。通过HSPICE进行了仿真,结果表明,当阈值电压变化+/- 0.5 V时,不均匀性的平均值分别为7.3%;当驱动晶体管的迁移率变化+/-时,不均匀性的平均值分别为7.3% -20%,两者均远低于常规的两晶体管和一个电容器(2T1C)像素。此外,由于OLED在非发射阶段被反向偏置,因此OLED的寿命将自然延长。结果,提出的像素电路可以显着改善显示性能。

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