Watt-Level Triple-Mode Quadrature SFCPA with 56 Peaks for Ultra-Deep PBO Efficiency Enhancement Using IQ Intrinsic Interaction and Adaptive Phase Compensation

Bingzheng Yang, H. Qian, Yiyang Shu, Jie Zhou, Xun Luo
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引用次数: 2

Abstract

The low cost power amplifiers (PAs) with power back-off (PBO) efficiency enhancement are dramatically demanded in modern wireless communication. The CMOS digital PAs (DPAs) and digital transmitters (TXs) [1]–[7] are developed due to the merits of high efficiency, high integration, and low cost. To achieve higher date rate, the quadrature digital TXs are preferred, which do not need the CORDIC and phase modulator in polar TXs. To improve deep PBO efficiency of DPA, the Class-G Doherty [3], hybrid Doherty with impedance boosting [4], load modulation [5], switched transformer [6], switched/floated capacitor power amplifier (SFCPA) [7], etc. are developed. To further enhance ultra-deep PBO efficiency, a watt-level triple-mode quadrature SFCPA with 56 efficiency peaks using IQ intrinsic impedance interaction and adaptive phase compensation is proposed, which achieves efficiency enhancement at 0/2/3/6/8/9/12/14/15/18/21dB PBOs.
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基于IQ本征相互作用和自适应相位补偿的56峰瓦特级三模正交SFCPA超深度PBO效率增强
在现代无线通信中,对具有功率回退(PBO)效率的低成本功率放大器的需求越来越大。CMOS数字放大器(dpa)和数字发射机(TXs)[1] -[7]因其高效率、高集成度和低成本的优点而得到发展。为了获得更高的数据速率,正交数字TXs是首选,它不需要极性TXs中的CORDIC和相位调制器。为了提高DPA的深度PBO效率,开发了g类Doherty[3]、阻抗增强混合Doherty[4]、负载调制[5]、开关变压器[6]、开关/浮电容功率放大器(SFCPA)[7]等。为了进一步提高超深PBO效率,提出了一种具有56个效率峰的瓦级三模正交SFCPA,采用IQ本质阻抗相互作用和自适应相位补偿,实现了0/2/3/6/8/9/12/14/15/18/21dB PBO效率的提高。
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