130nm CMOS多相开关电容功率放大器

Wen Yuan, J. Walling
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引用次数: 8

摘要

介绍了一种多相开关电容功率放大器。由于相外信号的组合,笛卡尔组合结构的输出功率和效率降低。多相结构减少了组合基向量之间的相位差,与笛卡尔组合器相比,增加了输出功率和效率。由相位发生器产生16个等间隔相位,每个相位的相对振幅在电容器阵列的底板上加权,并在公共顶板上组合,从而产生线性放大。MP-SCPA的峰值输出功率和PAE分别为26 dBm和24.9%。当放大LTE信号时,平均输出功率和PAE分别为20.9 dBm和15.2%,同时实现< -30 dBc的ACLR和3.5% -rms的EVM。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A multiphase switched capacitor power amplifier in 130nm CMOS
This paper presents a multiphase switched-capacitor power amplifier (MP-SCPA). Cartesian combining architectures suffer reduced output power and efficiency owing to combination of out-of-phase signals. The multiphase architecture reduces the phase difference between the basis vectors that are combined, increasing the output power and efficiency compared to the Cartesian combiners. 16 equally spaced phases are produced by a phase generator with each phase's relative amplitude weighted on the bottom plate of a capacitor array and combined on a common top plate, resulting in linear amplification. The MP-SCPA delivers a peak output power and PAE of 26 dBm and 24.9%, respectively. When amplifying an LTE signal the average output power and PAE are 20.9 dBm and 15.2%, respectively while achieving <;-30 dBc ACLR and 3.5 %-rms EVM.
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