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Design of a Wideband Doherty Power Amplifier with High Efficiency for 5G Application

机译:高效率为5G应用的宽带多晶功率放大器设计

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摘要

This paper discusses the design of a wideband class AB-C Doherty power amplifier suitable for 5G applications. Theoretical analysis of the output matching network is presented, focusing on the impact of the non-ideally infinite output impedance of the auxiliary amplifier in back off, due to the device’s parasitic elements. By properly accounting for this effect, the designed output matching network was able to follow the desired impedance trajectories across the 2.8 GHz to 3.6 GHz range (fractional bandwidth = 25%), with a good trade-off between efficiency and bandwidth. The Doherty power amplifier was designed with two 10 W packaged GaN HEMTs. The measurement results showed that it provided 43 dBm to 44.2 dBm saturated output power and 8 dB to 13.5 dB linear power gain over the entire band. The achieved drain efficiency was between 62% and 76.5% at saturation and between 44% and 56% at 6 dB of output power back-off.
机译:本文讨论了适用于5G应用的宽带AB-C Doherty功率放大器的设计。由于设备的寄生元件,提出了输出匹配网络的理论分析,重点关注辅助放大器的非理想无限输出阻抗的影响。通过适当地核对这种效果,设计的输出匹配网络能够遵循2.8 GHz至3.6 GHz范围(分数带宽= 25%)的所需阻抗轨迹,效率和带宽之间的良好权衡。 Doherty功率放大器设计有两个10 W包装的GaN Hemts。测量结果表明,它在整个频段上提供了43dBm至44.2dBm饱和输出功率和8 dB至13.5dB的线性功率增益。在饱和度下实现的排水效率为62%至76.5%,在6 dB输出电源下的44%和56%之间。

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