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X-Band High-Efficiency Continuous Class B Power Amplifier GaN MMIC Assisted by Input Second-Harmonic Tuning

机译:X频段高效连续等级B功放GaN MMIC输入二次谐波调谐

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摘要

This paper presents a high-efficiency continuous class B power amplifier MMIC (Monolithic Microwave Integrated Circuit) from 8 GHz to 10.5 GHz, fabricated with 0.25 μm GaN-on-SiC technology. The Pedro load-line method was performed to calculate the optimum load of the GaN field-effect transistor (FET) for efficiency enhancement. Optimized by an output second-harmonic tuned network, fundamental to second-harmonic impedance, mapping was established point-to-point within a broad frequency band, which approached the classic continuous class B mode with an expanded high-efficiency bandwidth. Moreover, the contribution to the output capacitance of the FET was introduced into the output second-harmonic tuned network, which simplified the structure of the output matching network. Assisted by the second-harmonic source-pull technique, the input second-harmonic tuned network was optimized to improve the efficiency of the power amplifier over the operation band. The measurement results showed 51−59% PAE (Power Added Efficiency) and 19.8−21.2 dB power gain with a saturated power of 40.8−42.2 dBm from 8 GHz to 10.5 GHz. The size of the chip was 3.2 × 2.4 mm2.
机译:本文介绍了高效率的连续B类功率放大器MMIC(单片微波集成电路),从8 GHz到10.5 GHz,采用0.25μm甘尾技术制造。进行佩德罗负载线方法以计算GaN场效应晶体管(FET)的最佳负载,以实现效率增强。通过输出二次谐波调谐网络优化,对二次谐波阻抗的基础,映射被建立在宽频带内的点对点,这与扩展的高效带宽接近经典连续B类模式。此外,将FET的输出电容的贡献引入到输出的第二谐波调谐网络中,这简化了输出匹配网络的结构。由二次谐波源拉技术辅助,优化输入的第二谐波调谐网络以提高操作带上功率放大器的效率。测量结果显示,PAE(电力增加效率)和19.8-21.2dB功率增益,饱和功率为40.8-42.2 dBm,从8 GHz到10.5 GHz。芯片的大小为3.2×2.4 mm2。

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