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Dual Input Digitally Controlled Broadband Three-Stage Doherty Power Amplifier With Back-Off Reconfigurability

机译:双输入数字控制宽带三级Doherty功率放大器,具有备用重新配置性

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This article presents a design strategy to improve the bandwidth of the three-stage Doherty Power Amplifier (DPA) by controlling the phase difference between the dual RF inputs digitally. The theory also proposes multiple back-off reconfigurability without using tuning elements and extra circuitry. The proposed theory is validated by demonstration of a dual-input three-stage DPA which is designed and implemented using Wolfspeed's GaN HEMT transistors. The measured results show a drain efficiency of 50.4 - 58% and 46.1 - 65.4% at 12 dB and 6 dB back-off respectively, over the frequency range of 550-900 MHz. Over this 350 MHz band, the drain efficiency is between 53.97% and 71.5% at saturation, corresponding to 48.3% fractional bandwidth. The measurement results also show that both the back-offs are reconfigurable by changing the drain bias of main and first auxiliary power amplifier. The modulated measurements are carried with a 10 MHz LTE signal with a PAPR of 11.75 dB. The high average efficiency of 51.6%, 54.9%, and 52.6% is reported at 600, 700, and 800 MHz, respectively, at an average power of around 30 dBm. The measurement results validate the theory proposed making the presented DPA as a potential candidate for future wireless transmitters.
机译:本文介绍了通过控制数字距离输入的双RF输入之间的相位差来改善三级Doherty功率放大器(DPA)的带宽。理论还提出了在不使用调谐元件和额外电路的情况下提出多次退缩性重新配置性。通过使用WolfSpeed的GaN HEMT晶体管设计和实施的双输入三级DPA来验证所提出的理论。测量结果分别显示出50.4-58%和46.1-65.4%的排水效率,分别在550-900MHz的频率范围内为12dB和6 dB。在该350 MHz的带中,饱和度的排水效率为53.97%和71.5%,对应于48.3%的分数带宽。测量结果还表明,通过改变主和第一辅助功率放大器的漏极偏压来重新配置回退。调制测量以10MHz LTE信号携带,具有11.75dB的PAPR。在600,700和800MHz的平均功率下,高平均效率为51.6%,54.9%和52.6%,平均功率约为30 dBm。测量结果验证了所提出的理论,使呈现的DPA作为未来无线发射器的潜在候选者。

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