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Power amplifier architectures with discrete power control for high average efficiency

机译:具有离散功率控制的功率放大器架构可实现高平均效率

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This paper focuses and provides experimental data for reconfigurable class-AB power amplifiers capable to adjust their linear power handling capability according with the application requirements. This feature is aimed at optimizing the energy requirement of the PAs. Two architectures and technologies have been considered. The first is based on SiGe HBTs with different sizes, it shows a CW PAE around 38% for the state 1 and 42% for state 2 respectively when terminated with optimum terminations. This circuit is conceived to be involved in a 1-bit step envelope tracking architecture, in which a factor two of improvement in terms of average PAE has been demonstrated. The second technique consists in controlling the output back-off of a GaN HEMT PA resulting in a significant increase of the efficiency through an, in principle, arbitrary power dynamic range. The prototype demonstrated an average PAE enhancement at 7 dB back-off of 2.1 and a maximum linear output power can be achieved up to 30 dBm, when driven by a 2.14 GHz WCDMA signal.
机译:本文重点介绍并提供了可重构AB类功率放大器的实验数据,这些功率放大器能够根据应用要求调整其线性功率处理能力。此功能旨在优化PA的能量需求。已经考虑了两种架构和技术。第一种基于具有不同尺寸的SiGe HBT,当以最佳端接方式端接时,状态1的CW PAE和状态2的CW PAE分别约为38%和42%。该电路被认为与1位步进包络跟踪体系结构有关,其中已证明了平均PAE改善的二分之一。第二种技术在于控制GaN HEMT PA的输出补偿,从而在原则上通过任意功率动态范围显着提高效率。该原型演示了在2.1dB的7 dB补偿下平均PAE增强,当由2.14 GHz WCDMA信号驱动时,最大线性输出功率可以达到30 dBm。

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