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Resistive Second-Harmonic Impedance Continuous Class-F Power Amplifier With Over One Octave Bandwidth for Cognitive Radios

机译:认知无线电的具有超过一个八度带宽的电阻性二次谐波阻抗连续F类功率放大器

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摘要

A novel methodology for designing highly-efficient broadband harmonic-tuned power amplifiers (PAs) with more than one octave bandwidth is presented in this paper. Continuous class-F power amplifiers with resistive second-harmonic impedance is for the first time analyzed and employed in a multi-sub-band mode to enhance the bandwidth of a conventional continuous class-F PA. The load-pull method is employed at both fundamental and harmonic frequencies, and the simplified real frequency technique algorithm is used to design and synthesize the PA matching networks. Experimental results show that the fabricated PA operates from 525 to 1325 MHz, with drain efficiency over 70% and output higher than 39 dBm. Digital predistortion is applied to the PA and the adjacent channel power ratio is improved to more than ${-}40$ dBc.
机译:本文提出了一种新颖的方法,用于设计具有一个以上倍频程带宽的高效宽带谐波调谐功率放大器(PA)。具有电阻性二次谐波阻抗的连续F类功率放大器是首次进行分析,并在多子带模式下使用,以增强传统连续F类PA的带宽。在基频和谐波频率上均采用负载拉方法,并使用简化的实频技术算法来设计和合成功率放大器匹配网络。实验结果表明,制成的功率放大器工作在525至1325 MHz之间,漏极效率超过70%,输出高于39 dBm。将数字预失真应用于PA,并将相邻信道的功率比提高到$ {-} 40 $ dBc以上。

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