Design of a 17-21 GHz Power Amplifier Based on an Extended Resistive Continuous Mode

Chupeng Yi, Yang Lu, Ziyue Zhao, Hengshuang Zhang, Bochao Zhao, Peixian Li, Xiao-hua Ma, Yue Hao
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Abstract

In this paper, an efficiency improvement method in multistage power amplifier (PA) is proposed. Combined with the power stage transistor operate in continuous class-F and the driver stage transistor operate in continuous class-F-1, the power-added efficiency (PAE) of multistage PA can be further improved. Meanwhile, a large power push ratio is adopted to determine the size of transistors at each stage and a voltage divider circuit is used to maintain the same bias. The proposed method was verified by implementing an MMIC PA utilizing a 0.1 $\mu \text{mGaAs}$ pHEMT process. The PA is used for the 17–21 GHz satellite communication system with a saturated output power of 1 W and an average PAE higher than 44% while having a small signal gain of 23 dB.
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基于扩展电阻连续模式的17-21 GHz功率放大器设计
提出了一种提高多级功率放大器效率的方法。结合功率级晶体管工作在连续f类和驱动级晶体管工作在连续f -1类,可以进一步提高多级PA的功率附加效率(PAE)。同时,采用较大的功率推比来确定每级晶体管的尺寸,并采用分压电路来保持相同的偏置。通过使用0.1 $\mu \text{mGaAs}$ pHEMT进程实现MMIC PA验证了所提出的方法。该放大器用于17 - 21ghz卫星通信系统,饱和输出功率为1w,平均PAE高于44%,信号增益较小,为23db。
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