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首页> 外文期刊>Solid-State Circuits, IEEE Journal of >Design of A Transformer-Based Reconfigurable Digital Polar Doherty Power Amplifier Fully Integrated in Bulk CMOS
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Design of A Transformer-Based Reconfigurable Digital Polar Doherty Power Amplifier Fully Integrated in Bulk CMOS

机译:基于变压器的可重构数字极性Doherty功率放大器的设计,该放大器完全集成在体CMOS中

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This paper presents a digital polar Doherty power amplifier (PA) fully integrated in a 65 nm bulk CMOS process. It achieves +27.3 dBm peak output power and 32.5% peak PA drain efficiency at 3.82 GHz and 3.60 GHz, respectively. The proposed digital Doherty PA architecture optimizes the cooperation of the main and auxiliary amplifiers and achieves superior back-off efficiency enhancement (a maximum 47.9% improvement versus the corresponding Class-B operation). This digital intensive architecture also allows in-field PA reconfigurability which both provides robust PA operation against antenna mismatches and allows flexible trade-off optimization on PA efficiency and linearity. Transformer-based passives are employed as the Doherty input and output networks. The input 90 signal splitter is realized by a 6-port folded differential transformer structure. The active Doherty load modulation and power combining at the PA output are achieved by two transformers in a parallel configuration. These transformer-based passives ensure an ultra-compact PA design (2.1 mm) and broad bandwidth (24.9% for 1 dB P bandwidth). Measurement with 1 MSym/s QPSK signal shows 3.5% rms EVM with +23.5 dBm average output power and 26.8% PA drain efficiency. Measurement with 16-QAM signal exhibits the PA's flexibility on optimizing efficiency and linearity.
机译:本文介绍了完全集成在65 nm体CMOS工艺中的数字极性Doherty功率放大器(PA)。它在3.82 GHz和3.60 GHz时分别达到+27.3 dBm峰值输出功率和32.5%峰值PA漏极效率。拟议中的数字Doherty PA架构优化了主放大器和辅助放大器的协作,并实现了出色的后退效率增强(与相应的B类操作相比,最大提高了47.9%)。这种数字密集型架构还可以实现现场PA的可重配置性,既可以针对天线失配提供强大的PA操作,又可以在PA效率和线性度上进行灵活的折衷优化。基于变压器的无源器件被用作Doherty输入和输出网络。输入90信号分配器由6端口折叠式差分变压器结构实现。 PA输出端的有源Doherty负载调制和功率合并是通过并联配置的两个变压器实现的。这些基于变压器的无源器件可确保超紧凑的PA设计(2.1 mm)和宽带宽(1 dB P带宽为24.9%)。使用1 MSym / s QPSK信号进行的测量显示,EVM为3.5%rms,平均输出功率为+23.5 dBm,PA漏极效率为26.8%。使用16-QAM信号进行测量显示了PA在优化效率和线性度方面的灵活性。

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