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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Current Programming Method with Voltage-Variation-Sensing and Current-Feedback Operations for Active Matrix Organic Light-Emitting Diodes
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Current Programming Method with Voltage-Variation-Sensing and Current-Feedback Operations for Active Matrix Organic Light-Emitting Diodes

机译:有源矩阵有机发光二极管的电压变化和电流反馈操作的电流编程方法

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摘要

In active matrix organic light-emitting diodes (AMOLEDs), there are two driving methods: voltage programming and current programming methods. The voltage programming method has a short programming time, but its uniformity is sensitive to the characteristics of driving thin film transistors (TFTs). On the other hand, the current programming method is insensitive to the characteristics of driving TFTs but has a long programming time. Therefore, we propose a new driving method with voltage-variation-sensing and current-feedback operations to resolving these problems. The proposed driving method is carried out to detect the voltage variations of a current digital-to-analog converter (DAC), and a fast charging/discharging panel using an additional current source. A programming method using an additional current source is a successive approximation method. In successive approximation methods, charging or discharging through the voltage variation of the current DAC is selected. However the voltage variation of the current DAC is small, thus, we proposed a detection circuit using a unit gain operational amplifier. Simulation results show that the current through an organic light-emitting diodes (OLEDs) reaches a values of 17 nA in 20 μs when the data programming time is 52 μs in a 2.2-in. quarter-video graphic array (qVGA) of AMOLEDs. For the remaining 32 μs, the current DAC compensates the current difference.
机译:在有源矩阵有机发光二极管(AMOLED)中,有两种驱动方法:电压编程和电流编程方法。电压编程方法的编程时间短,但是其均匀性对驱动薄膜晶体管(TFT)的特性敏感。另一方面,当前的编程方法对驱动TFT的特性不敏感,但是具有长的编程时间。因此,我们提出了一种具有电压变化感应和电流反馈操作的新驱动方法来解决这些问题。提出的驱动方法用于检测电流数模转换器(DAC)的电压变化以及使用附加电流源的快速充电/放电面板。使用附加电流源的编程方法是逐次逼近方法。在逐次逼近方法中,选择通过电流DAC的电压变化进行充电或放电。然而,电流DAC的电压变化很小,因此,我们提出了一种使用单位增益运算放大器的检测电路。仿真结果表明,当数据编程时间为2.2 in时为52μs时,通过有机发光二极管(OLED)的电流在20μs内达到17 nA的值。四分之一视频图形阵列(qVGA)的AMOLED。对于剩下的32 s,电流DAC补偿电流差。

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