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1-V Rail-to-Rail CMOS OpAmp With Improved Bulk-Driven Input Stage

机译:具有改进的批量驱动输入级的1V轨至轨CMOS运算放大器

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摘要

This paper introduces a CMOS operational amplifier with rail-to-rail input and output voltage ranges, suitable for operation in extremely low-voltage environments. The approach is based on a bulk-driven input stage with extended input common-mode voltage range, in which the effective input transconductance is enhanced by means of a partial positive feedback loop. As a result, a gain and gain-bandwidth product performance similar to that of an amplifier using a gate-driven approach is obtained. Output rail-to-rail operation is achieved by means of a push-pull stage, which is biased in class-AB by using a static feedback loop, thus avoiding frequency limitations inherent in dynamic-feedback tuning schemes. The proposed two-stage operational amplifier was designed to operate with a 1-V supply, and a test chip prototype was fabricated in 0.35-mum standard CMOS technology. The experimental performance features an open-loop DC gain higher than 76 dB and a closed-loop unity-gain bandwidth above 8 MHz when a 1-MOmegapar17-pF load is connected to the amplifier output
机译:本文介绍了一种具有轨至轨输入和输出电压范围的CMOS运算放大器,适用于极低压环境下的工作。该方法基于具有扩展的输入共模电压范围的体驱动输入级,其中有效的输入跨导通过部分正反馈环路增强。结果,获得了类似于使用栅极驱动方法的放大器的增益和增益带宽乘积性能。输出轨到轨操作是通过推挽级实现的,该推挽级通过使用静态反馈环路在AB类中进行偏置,从而避免了动态反馈调谐方案固有的频率限制。拟议中的两级运算放大器设计为以1V电源工作,并且测试芯片原型采用0.35微米标准CMOS技术制造。实验性能具有将1-MOmegapar17-pF负载连接到放大器输出时的开环DC增益高于76 dB,闭环单位增益带宽高于8 MHz的特点

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