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Odd-Mode Instability Analysis of fT-Doubler Hybrid Power Amplifiers Based on GaN-HEMT

机译:基于GaN-HEMT的FT-DOWBLER混合动力放大器的奇数稳定性分析

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This brief is aimed to investigate and resolve the odd-mode instability of a hybrid high-frequency power amplifier (PA) based on the f(T)-doubler technique. A description of odd-mode stability based on pole-zero identification is performed to provide insight into the causes of the odd-mode oscillation. The unwanted right half poles (RHPs) at frequencies less than the unity gain frequency, resulting from the circuit configuration, corrupt the PA operation. Reducing the length of the interconnects and tuning the values of the circuit elements is a conventional approach to get rid of the RHPs. However, in practice, in hybrid technology, there is poor control over interconnects. Besides, changing the circuit elements to prevent the odd-mode instability results in performance degradations such as a reduction in power gain, output power, power added efficiency (PAE), and unity current gain frequency (f(T)). A proposed f(T)-doubler PA using Wilkinson combiner with a calculated odd-mode resistor is exploited to overcome the odd-mode oscillation and relax the trade-off between odd-mode stability and performance of the PA. The measurement of the modified f(T)-doubler GaN-HEMT PA with Wilkinson combiner demonstrates a broadband PA with a stable behavior.
机译:本简要旨在根据F(T)-doubler技术来研究和解决混合高频功率放大器(PA)的奇数模式不稳定性。基于极零识别的奇数模式稳定性的描述以提供对奇数模式振荡的原因的洞察。不需要的右半极(RHPS)在频率小于Unity增益频率,由电路配置产生损坏PA操作。减小互连的长度并调整电路元件的值是摆脱RHP的传统方法。然而,在实践中,在混合技术中,对互连的控制差。此外,改变电路元件以防止奇数模式不稳定性导致性能下降,例如功率增益的降低,输出功率,功率增加效率(PAE)和单位电流增益频率(F(T))。利用具有计算出的奇模式电阻的Wilkinson Combiner的建议的F(t)-doubler Pa克服奇数模式振荡,并在奇数模式稳定性和PA的性能之间放松权衡。使用Wilkinson Combiner的改进的F(T)-doubler GaN-HEMT PA的测量演示了具有稳定行为的宽带PA。

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