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A Compensation System using Analog Voltage Adder with Continuous Output for AMOLED Display Drivers

机译:使用具有连续输出的模拟电压加法器的AMOLED显示驱动器补偿系统

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An on-chip compensation system which is composed of an analog voltage adder and an 8-bit R-C digital-to-analog converter (DAC) is proposed for active matrix organic light-emitting diode (AMOLED) display drivers. The proposed analog voltage adder uses two groups of rail-to-rail input MOSFETs, which can work alternately, thereby extending the effective driving time (EDT) to 100%. The 8-bit R-C DAC is composed of a 5-bit R-DAC and a 3-bit C-DAC. The 3-bit C-DAC shares the capacitors with the analog voltage adder, reducing the layout area by 65% compared to the conventional method. This work is implemented in an industrial 0.18-μm CMOS technology. The measurement results show that the maximum INL of the system is 0.254 LSB, while the maximum DNL is 0.506 LSB. The layout area is only 9180 μm2 per channel.
机译:提出了一种由模拟电压加法器和8位R-C数模转换器(DAC)组成的片上补偿系统,用于有源矩阵有机发光二极管(AMOLED)显示驱动器。拟议的模拟电压加法器使用两组轨到轨输入MOSFET,它们可以交替工作,从而将有效驱动时间(EDT)延长至100%。 8位R-C DAC由5位R-DAC和3位C-DAC组成。 3位C-DAC与模拟电压加法器共享电容器,与传统方法相比,可将布局面积减小65%。这项工作是在工业0.18μmCMOS技术中实现的。测量结果表明,系统的最大INL为0.254 LSB,而最大DNL为0.506 LSB。布局面积仅为9180μm 2 每个频道。

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