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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >A Mixed Topology for Broadband High-Efficiency Doherty Power Amplifier
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A Mixed Topology for Broadband High-Efficiency Doherty Power Amplifier

机译:宽带高效Doherty功率放大器的混合拓扑

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摘要

In this paper, a mixed topology for high efficiency, broadband Doherty power amplifier (DPA) is proposed. The transistor gate biases are set to deep Class-AB for the carrier device and deep Class-C for the peaking device, which enable the DPA to achieve its high efficiency. However, this biasing scheme leads to an inadequate back-off range, which in the past limited applicability. To compensate for this reduced back-off range, a "pi-type" harmonic injection network (HIN) is integrated into the DPA thereby allowing the second harmonic to be injected between the two active devices. This achieves waveform engineering, which enhances the output power of the peaking amplifier. However, the use of this HIN leads to a reduction in bandwidth due to a mismatch at the fundamental frequency. A bandwidth compensation technique is then proposed, thereby reducing the peaking device drain impedance variation. This mitigates the reduction in bandwidth as a result of the HIN. A high-efficiency DPA is prototyped based on two identical 10-W gallium nitride HEMTs. Measurement results show that a drain efficiency of greater than 60% is achieved at 5.3-6-dB output back-off power from 1.4 to 2.1 GHz.
机译:本文提出了一种用于高效宽带Doherty功率放大器(DPA)的混合拓扑。对于载波设备,将晶体管栅极偏置设置为AB级深,对于峰值设备将其栅极偏置设置为C级深,这使DPA能够实现其高效率。但是,该偏置方案导致退避范围不足,这在过去有限的适用性。为了补偿减小的退避范围,将“π型”谐波注入网络(HIN)集成到DPA中,从而允许将二次谐波注入两个有源设备之间。这样可以实现波形工程,从而提高峰值放大器的输出功率。但是,由于基频不匹配,使用这种HIN会导致带宽减小。然后提出了带宽补偿技术,从而降低了峰值器件漏极阻抗的变化。这减轻了由于HIN导致的带宽减少。基于两个相同的10瓦氮化镓HEMT原型化了一个高效DPA。测量结果表明,在1.4至2.1 GHz的5.3-6 dB输出补偿功率下,漏极效率达到60%以上。

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