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Distortion Modeling of Feedback Two-Stage Amplifier Compensated With Miller Capacitor and Nulling Resistor

机译:补偿了米勒电容器和调零电阻的反馈两级放大器的失真建模

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摘要

Accurate distortion modeling of feedback amplifier with Miller compensation is the main subject of this paper. Inspired by traditional Rosenstark method, a nonlinear signal-flow-based method has been developed. Based on the proposed method, the nonlinear coefficients of each gain stage can be evaluated exactly and the rules of cascading, feedback can be found conveniently. As a result, the second- and third-order harmonic distortion factors are obtained in a simple manner. The application range includes all kinds of Miller compensation strategies with or without feedforward compensation path. The distortion modeling of a two-stage opamp compensated with Miller capacitor and nulling resistor is used to show versatility of the proposed method. In addition, simplified distortion factor expressions, approximate characteristic frequencies of the distortion factors and the value of external configuration resistors for canceling the second-order harmonic components at DC are also derived and can be used to accelerate distortion evaluation of opamp designs. Accuracy of the method was verified by comparing the results between theoretical analysis and transistor level simulation.
机译:具有米勒补偿的反馈放大器的精确失真建模是本文的主题。受传统Rosenstark方法的启发,已开发出一种基于非线性信号流的方法。基于该方法,可以准确地评估每个增益级的非线性系数,并方便地找到级联,反馈的规则。结果,以简单的方式获得了二阶和三阶谐波失真因子。应用范围包括各种带或不带前馈补偿路径的米勒补偿策略。利用米勒电容器和调零电阻补偿的两级运算放大器的失真模型,证明了该方法的通用性。此外,还推导了简化的失真因数表达式,失真因数的近似特征频率以及用于消除DC处的二次谐波分量的外部配置电阻器的值,​​这些值可用于加速运算放大器设计的失真评估。通过比较理论分析和晶体管级仿真之间的结果,验证了该方法的准确性。

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