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Three-Stage Load Modulated Power Amplifier With Efficiency Enhancement at Power Back-Off

机译:三级负载调制功率放大器,在电源退避时具有更高的效率

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摘要

This article presents the analysis and design of a three-stage load modulated power amplifier (PA), in which three amplifiers, each with different biasing, are connected to a four-port coupler. It is illustrated that, by properly configuring current relationships between the three amplifiers, this new load modulated PA can provide flexible output power back-off (OBO) and achieve high efficiency within a large OBO range. A detailed theoretical analysis and design methodology are given. In this architecture, the OBO level can be adjusted by simply setting bias conditions of the relevant amplifiers that correspond to the current relationships. Therefore, after circuit fabrication, the OBO range can still be reconfigured without redesigning the circuit. To validate the proposed approach, a prototype operating at 3.45 GHz is demonstrated and implemented with gallium nitride (GaN) transistors. The measured saturated output power reaches 45 dBm with 70.1 drain efficiency. At 6-/8-/10-dB OBO, the fabricated PA can provide up to 62.1/53.8/47.3 drain efficiency, respectively. When driven by a 60-MHz 9-dB peak-to-average power ratio (PAPR) long-term evolution (LTE) signal, the PA provides 34-dBm average output power with 44.3 average efficiency. Moreover, measurement results prove that the PA can offer efficiency enhancement when the OBO is reconfigured to 8 or 12 dB after fabrication.
机译:本文介绍了三级负载调制功率放大器(PA)的分析和设计,其中三个放大器(每个放大器具有不同的偏置)连接到一个四端口耦合器。结果表明,通过正确配置三个放大器之间的电流关系,这种新型负载调制PA可以提供灵活的输出功率回退(OBO),并在较大的OBO范围内实现高效率。给出了详细的理论分析和设计方法。在这种架构中,只需设置与电流关系相对应的相关放大器的偏置条件,即可调整OBO电平。因此,在电路制造后,OBO系列仍然可以重新配置,而无需重新设计电路。为了验证所提出的方法,演示了一个工作频率为3.45 GHz的原型,并使用氮化镓(GaN)晶体管实现。测得的饱和输出功率达到45 dBm,漏极效率为70.1%。在 6/8/10dB OBO 下,制造的 PA 可分别提供高达 62.1%/53.8%/47.3% 的漏极效率。当由 60MHz 9dB 峰均功率比 (PAPR) 长期演进 (LTE) 信号驱动时,PA 可提供 34dBm 的平均输出功率和 44.3% 的平均效率。此外,测量结果证明,当 OBO 在制造后重新配置为 8 或 12 dB 时,PA 可以提供效率提升。

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