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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >A Zero-Voltage-Switching Contour-Based Power Amplifier With Minimal Efficiency Degradation Under Back-Off
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A Zero-Voltage-Switching Contour-Based Power Amplifier With Minimal Efficiency Degradation Under Back-Off

机译:基于零电压开关轮廓的功率放大器,在回退时具有最低的效率下降

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摘要

A switching power amplifier (PA) architecture that offers up to 13 dB of output power back-off without any drain efficiency degradation is presented. The proposed zero-voltage-switching (ZVS) contour-based PA employs a series class-E PA in conjunction with duty cycle modulation and a proposed tunable impedance transformation network. So-called ZVS conditions that ensure ideally 100% drain efficiency are satisfied not just at peak output power, but over the 13-dB back-off range. Theoretical analyses of losses in the PA and the impedance transformation network are also presented to prove that drain efficiency actually improves with back-off. Measurement results of a 100-MHz PA built using discrete components on an FR4 printed circuit board showing drain efficiency greater than or equal to the peak efficiency (40%) at all output power levels are also presented.
机译:提出了一种开关功率放大器(PA)架构,该架构可提供高达13 dB的输出功率补偿,而不会降低任何漏极效率。提出的基于零电压开关(ZVS)轮廓的功率放大器采用串联E类功率放大器,结合占空比调制和提出的可调阻抗变换网络。不仅在峰值输出功率上,而且在13dB的回退范围内,都可以满足确保理想的100%漏极效率的所谓ZVS条件。还对功率放大器和阻抗转换网络中的损耗进行了理论分析,以证明漏极效率实际上随着补偿的提高而提高。还显示了使用FR4印刷电路板上的分立元件构建的100 MHz PA的测量结果,显示在所有输出功率水平下,漏极效率均大于或等于峰值效率(40%)。

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