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Common-Mode Stability Test and Design Guidelines for a Transformer-Based Push-Pull Power Amplifier

机译:基于变压器的推挽功率放大器的共模稳定性测试与设计指南

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摘要

We report design guidelines for a transformer-based push-pull power amplifier (PA) with a systematic stability test carried out in the complex frequency domain. By detecting the right half-plane zeros of the impedance matrix & x2019;s determinant, the common-mode (CM) instability in a differential PA were accurately estimated with the established frequencies from the analysis. In the stability test, the parasitic series coupling capacitance of the input transformer and the parasitic inductance from the gate (base) biasing line were identified as the two primary mechanisms of the CM instability in a transformer-based PA contingent on stability. Based on the analysis of the instability mechanisms, useful stabilization methods were proposed and discussed for a robust push-pull PA design with a well-balanced performance. An onboard transformer-based push-pull PA was implemented for the verification purpose, and the effects of parasitic inductance on the stability had been investigated. The simulated and measured results corresponded well with the proposed analysis.
机译:我们报告了基于转换器的推挽功率放大器(PA)的设计指南,并在复杂频域中进行了系统的稳定性测试。通过检测阻抗矩阵和X2019的右半平面零; S的决定簇,用来自分析的建立的频率精确地估计差分PA中的共模(CM)不稳定性。在稳定性测试中,输入变压器的寄生串联耦合电容和来自栅极(基座)偏置线的寄生电感被识别为CM在基于稳定性的基于变压器的PA中的CM不稳定性的两个主要机制。基于对不稳定机制的分析,提出了有用的稳定方法,并讨论了具有良好平衡性能的强大推拉PA设计。基于板载变压器的推挽PA用于验证目的,并研究了寄生电感对稳定性的影响。模拟和测量结果与所提出的分析相对应。

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