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Design of Doherty Power Amplifier Using Load-pull X-Parameters

机译:使用负载拉动X参数设计Doherty功率放大器

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The design of Doherty power amplifier (DPA) using load-pull X-parameter model is demonstrated in this paper. A 10 W GaN HEMT transistor is employed for the PA designing. As soon as the X-parameter model is extracted, its performance is validated. Compared with the circuit model provided by the device manufacture, the used X-parameters gives an excellent prediction. The region of the load Smith chart leads to optimal output power and drain efficiency (DE) can be accurately identified as critical to amplifier design. The input and output matching networks are designed using a Chebyshev low-pass architecture, and a step-im-pedance converter structure is used to design the output synthesis network. Finally, a DPA was designed and fabricated. The realized DPA achieves a saturation output power over 41 dBm in the frequency band of 1.4 GHz – 1.6 GHz, a saturation DE over 58%, and 6dB output power back-off (OBO) efficiency over 46%. The comparison between the measured results of the realized DPA and the used load-pull X-parameter model is also given, and it shows that the X-parameter model can be applied for DPA designing with high-fidelity.
机译:本文演示了使用负载拉X参数模型的Doherty功率放大器(DPA)的设计。使用10W GaN HEMT晶体管用于PA设计。一旦提取X参数模型,它的性能就会验证。与设备制造提供的电路模型相比,所用的X参数提供了出色的预测。负载史密斯图的区域导致最佳输出功率,可以准确地识别出漏极效率(DE)对放大器设计至关重要。输入和输出匹配网络使用Chebyshev低通架构设计,并且使用梯级初始转换器结构来设计输出合成网络。最后,设计和制造了DPA。实现的DPA在1.4GHz - 1.6 GHz的频带,饱和度DE的频带中实现了超过41dBm的饱和输出功率,超过58%,6dB输出功率回关闭(OBO)效率超过46%。还给出了实现DPA的测量结果与所使用的负载拉X参数模型之间的比较,并表明X参数模型可以应用于高保真的DPA设计。

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