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Octave Bandwidth Doherty Power Amplifier Using Multiple Resonance Circuit for the Peaking Amplifier

机译:倍频放大器使用倍频带宽的倍频Doherty功率放大器

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This paper presents a broadband Doherty power amplifier (DPA) design with an octave bandwidth based on a new load network consisting of a quasi-lumped impedance transformer for the carrier amplifier, a multiple resonance circuit for the peaking amplifier, and a broadband post-matching network. The quasi-lumped impedance transformer and the multiple resonance circuit were designed based on accurate equivalent circuits for internal components inside the packaged transistor. Based on power bandwidth analysis, optimum susceptance provided by the multiple resonance circuit at the peaking amplifier, was obtained. The proposed broadband DPA was designed using 45 W gallium-nitride high electron mobility transistor for both carrier and peaking amplifiers. For continuous-wave signals in frequency range of 0.9 to 1.8 GHz, the implemented broadband DPA exhibited a drain efficiency of 54.2% to 73.4% at peak output power of 49.7 to 51.4 dBm and a drain efficiency of 41.7% to 58.0% at output back-off of 6 dB. For the down-link long-term evolution signal with a channel bandwidth of 10 MHz and a peak-to-average power ratio of 6.5 dB, a drain efficiency of 41.3% to 57.4% and an adjacent channel leakage power ratio of -22.5 to -30.2 dBc at an average output power of 43.2 to 449 dBm were achieved at an octave bandwidth.
机译:本文提出了一个宽带八度带宽Doherty功率放大器(DPA)设计,该设计基于一个新的负载网络,该负载网络包括用于载波放大器的准集总阻抗变压器,用于峰值放大器的多重谐振电路以及宽带后匹配网络。准集总阻抗变压器和多重谐振电路是基于封装晶体管内部内部组件的精确等效电路而设计的。基于功率带宽分析,获得了峰值放大器处的多重谐振电路提供的最佳电纳。拟议的宽带DPA是使用45 W氮化镓高电子迁移率晶体管设计的,用于载波放大器和峰值放大器。对于0.9至1.8 GHz频率范围内的连续波信号,已实现的宽带DPA在49.7至51.4 dBm的峰值输出功率下表现出54.2%至73.4%的漏极效率,而在输出回波处表现出41.7%至58.0%的漏极效率。 -关闭6 dB。对于信道带宽为10 MHz,峰均功率比为6.5 dB,漏极效率为41.3%至57.4%,相邻信道泄漏功率比为-22.5至5,000的下行长期长期演进信号在一个倍频程带宽下,平均输出功率为43.2至449 dBm时为-30.2 dBc。

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