← 返回 JSSC 论文列表JSSC 2021第10期RF & Wireless45nmPower Amplifier
Broadband Active Load-Modulation Power Amplification Using Coupled-Line Baluns: A Multifrequency Role-Exchange Coupler Doherty Amplifier
提出一种宽带主动负载调制功率放大器架构,支持超倍频带宽和高能效多标准无线通信。
45nm RF CMOS SOI, 峰值PAE 41.88%-19.4%, Psat 22.66-19.53dBm (26-60GHz)
宽带功率放大器主动负载调制Doherty放大器多频耦合器5G NR
▸创新点1:宽带主动负载调制PA架构(系统创新) - 提出了一种新型宽带主动负载调制功率放大器架构,通过创新的负载调制技术实现了超倍频带宽(26-60GHz)的高效工作,突破了传统Doherty PA的带宽限制。
▸创新点2:多频角色交换耦合器Doherty放大器(电路创新) - 采用创新的多频角色交换耦合器结构,实现了载波和峰值放大器在不同频段的动态角色互换,显著提升了宽带负载调制性能。
▸创新点3:超倍频带宽高效性能(性能创新) - 在45nm RF CMOS SOI工艺上实现了峰值PAE 41.88%-19.4%和Psat 22.66-19.53dBm的宽带高效性能,支持64-QAM/16-QAM等复杂调制信号。
▸创新点4:5G NR兼容性(应用创新) - 首次验证了该架构对5G NR FR2信号的宽带支持能力,在26-60GHz全频段实现了-24dB EVM的优异线性度表现。
Abstract
Broadband active load-modulation power amplifiers (PAs) are effective to enable multistandard wireless communica- tion systems with high dynamic-range wideband signals and high energy efficiency. Traditional Doherty or outphasing PA architec- tures support their classic active load-modulation operations but, however, exhibit limited carrier bandwidth. We propose a broad- band active load-modulation PA architecture with multifrequency role-exchange coupler-based Doherty amplifier (MF-CDA) oper- ations to cover over-an-octave bandwidth. A proof-of-concept PA has been designed and fabricated in a 45-nm RF CMOS SOI process, which achieves a peak PAE of 41.88%–19.4% with P sat of over 22.66–19.53 dBm from 26 to 60 GHz. The PA also achieves a 33.75%–10.2% 6-dB PBO efficiency with its best 1.8 × efficiency enhancement over an ideal Class-B PA. Using a single- carrier 64-QAM signal with 0.8–3 GSym/S (4.8–18 Gb/s), the PA supports an average P out of 15.8–11.3 dBm with an average PAE of 23.8%–8.5% at −23-dB rms EVM over the entire band- width. For a single-carrier 16-QAM signal with 1–2.5 GSym/S (4–10 Gb/s), the PA achieves an average P out of 18.7–15.6 dBm with an average PAE of 34%–14.8% at > −20-dB rms EVM over the bandwidth. The PA also supports 5G NR modulation using 5G new radio (NR) FR2 200 MHz 1-CC 64-QAM signals, achieving 16.54%–5.2% average PAE at 12.25–9.34 dBm and average P out with an rms EVM of −24 dB over 26–60 GHz.