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Design considerations on wideband envelope termination for high efficiency RF power amplifiers

机译:高效射频功率放大器宽带包络端接的设计注意事项

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摘要

Design approach of wideband envelope termination (ET) for high efficiency RF power amplifiers (PAs) is discussed, considering power loss subject to design constraints including envelope bandwidth, inductor quality factor, and transistor output impedance. Analysis shows that the optimum ET topology depends on the design constraints. For LTE-advanced transmission with 80 MHz channel bandwidth, a novel wideband ET is designed using an AC-terminated third-order LC filter (LCF-ET), providing 3 dB envelope impedance bandwidth of 150 MHz. Measured results demonstrate 1.75 dB envelope power loss and −39.2 dB normalised root-mean-square error with the LTE envelope signals. For the LTE signal with 10.3 dB peak-to-average power ratio, the average power efficiency of an ideal Class-A RF PA with the LCF-ET prototype is calculated as 33.4% from the measured 1.75 dB envelope power loss, which exceeds 4.7% and 24.0% average power efficiency of conventional Class-A and Class-B PAs without ET.
机译:讨论了考虑到功率损耗受包括包络带宽,电感器品质因数和晶体管输出阻抗等设计约束的功耗,讨论了用于高效射频功率放大器(PA)的宽带包络终端(ET)的设计方法。分析表明,最佳的ET拓扑取决于设计约束。对于具有80 MHz信道带宽的LTE先进传输,使用交流端接的三阶LC滤波器(LCF-ET)设计了新型宽带ET,可提供150 MHz的3 dB包络阻抗带宽。测量结果表明,LTE包络信号的包络功率损耗为1.75 dB,归一化均方根误差为-39.2 dB。对于具有10.3 dB峰均功率比的LTE信号,采用LCF-ET原型的理想A类RF PA的平均功率效率从测得的1.75 dB包络功率损耗计算为33.4%,超过4.7不带ET的常规A类和B类PA的平均功率效率分别为%和24.0%。

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