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A reliable model for the compensation loop of multistage amplifiers at high frequency

机译:可靠的多级放大器高频补偿环路模型

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PurposeMultistage amplifiers require a reliable frequency compensation solution to remain stable in a closed-loop configuration. A frequency compensation scheme creates an inner negative feedback loop amongst different amplifying stages and shapes the frequency response such that an unconditionally stable single-pole amplifier results for closed-loop operation. The frequency compensation loop is thus responsible for the placement of the poles and zeros and the final stability of multistage amplifiers. An amplifier incorporating a sophisticated frequency compensation network cannot be, however, analyzed in the presence of a complex ac feedback loop. The purpose of this study is to provide a reliable model for the compensation loop of multistage amplifiers at the higher frequencies.Design/methodology/approachIn this paper, the major part of the amplifier, including a two-port network comprising the compensation network, is characterized using a reliable feedback model.FindingsThe model integrates all the frequency-dependent components of the frequency compensation network, and it can evaluate the nondominant real or complex poles of an amplifier.Originality/valueThe reliability of the proposed model is verified through analysis of the frequency response of the amplifiers and by comparing the analytic results with the simulation results in standard CMOS process.
机译:目的多级放大器需要可靠的频率补偿解决方案,以在闭环配置中保持稳定。频率补偿方案会在不同的放大级之间创建一个内部负反馈环路,并对频率响应进行整形,从而为闭环操作提供了无条件稳定的单极放大器。因此,频率补偿环路负责极点和零点的放置以及多级放大器的最终稳定性。但是,如果存在复杂的交流反馈环路,则无法分析包含复杂频率补偿网络的放大器。这项研究的目的是为多级放大器在较高频率下的补偿环路提供可靠的模型。设计/方法/方法本文中,放大器的主要部分包括一个由补偿网络组成的两端口网络,使用可靠的反馈模型对特征进行发现。发现该模型集成了频率补偿网络的所有与频率相关的组件,并且可以评估放大器的非主导实数或复数极点。原始性/值通过对模型的分析验证了所提出模型的可靠性。放大器的频率响应,以及将分析结果与标准CMOS工艺中的仿真结果进行比较。

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