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Design of Adaptive Highly Efficient GaN Power Amplifier for Octave-Bandwidth Application and Dynamic Load Modulation

机译:用于倍频带宽应用和动态负载调制的自适应高效GaN功率放大器的设计

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摘要

This paper presents a novel adaptive power amplifier (PA) architecture for performing dynamic-load-modulation. For the first time, a dynamically-load-modulated PA design that achieves octave bandwidth, high power and high efficiency simultaneously is experimentally demonstrated. This PA design is based on a commercial GaN HEMT. The output matching scheme incorporates a broadband static matching for high-efficiency at the maximum power level and a wideband dynamic matching for efficiency enhancement at power back-offs. The impedance and frequency tunability is realized using silicon diode varactors with a very high breakdown voltage of 90 V. Experimental results show that a dynamic-load-modulation from maximum power to 10-dB back-off is achieved from 1 to 1.9 GHz, with a measured performance of $approx$ 10-W peak power, $approx$ 10-dB gain, 64%–79% peak-power efficiency, and 30%–45% efficiency at 10-dB power back-off throughout this band.
机译:本文提出了一种用于执行动态负载调制的新型自适应功率放大器(PA)架构。首次通过实验证明了一种动态负载调制的功率放大器设计,该设计同时实现倍频程带宽,高功率和高效率。此PA设计基于商用GaN HEMT。输出匹配方案结合了宽带静态匹配以在最大功率水平下实现高效率,以及宽带动态匹配以在功率补偿时提高效率。使用具有90 V极高击穿电压的硅二极管变容二极管可实现阻抗和频率可调性。实验结果表明,在1至1.9 GHz的频率范围内,可实现从最大功率到10dB补偿的动态负载调制。在整个频段内,在10dB功率回退下测得的性能约为10W峰值功率,约10dB增益,64%至79%峰值功率效率以及30%至45%效率。

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