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Efficiency Enhancement of Class-E Power Amplifiers at Low Drain Voltage

机译:低漏极电压下E类功率放大器的效率增强

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摘要

In this paper, the output power, phase response, and drain efficiency of a class-E power amplifier with shunt capacitance, composed of nonlinear and linear capacitance, is analyzed to manifest the cause of efficiency degradation at low drain dc supply voltage $(V_{rm dc})$. Analysis also shows that the drain efficiency at low $V_{rm dc}$ can be improved by reducing the on-duty ratio; a simple efficiency enhancement method with gate dc bias voltage adjustment is proposed. Numerical and simulated results are given in comparison to show the validity of the theoretical analysis and the proposed method. An experimental class-E amplifier, designed at 100 MHz, is measured; the drain efficiency declines by 14% at 0.8 V $V_{rm dc}$ compared to the highest efficiency. With the optimized gate dc bias voltage, the 7.5% drain efficiency improvements and 9.26-dB dynamic range extension are measured at low $V_{rm dc}$ in the experiment.
机译:本文分析了由非线性和线性电容组成的具有并联电容的E类功率放大器的输出功率,相位响应和漏极效率,以揭示低漏极直流电源电压$(V_ {rm dc})$。分析还表明,通过降低占空比,可以提高低$ V_ {rm dc} $时的漏极效率。提出了一种通过栅极直流偏置电压调整的简单效率提高方法。比较了数值和仿真结果,表明了理论分析和所提出方法的有效性。测量了设计为100 MHz的实验性E类放大器;与最高效率相比,在0.8 V $ V_ {rm dc} $时,漏极效率下降了14%。通过优化的栅极直流偏置电压,在实验中以低V_ {rm dc} $测量了7.5%的漏极效率提高和9.26 dB的动态范围扩展。

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