Optimising AIGaN/GaN HFET designs for high efficiency

C. Roff, A. Sheikh, J. Benedikt, P. Tasker, K. Hilton, J. O. Maclean, D. Hayes, M. Uren, T. Martin
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引用次数: 4

Abstract

This paper uses measured waveforms to demonstrate how to optimise GaN HFET PA designs in order to achieve high power and high efficiency. Efficiency values of 80% were achieved at a power density of 3 Wmm-4. The design procedure shows how waveform engineering, i.e. a combination of RF current and voltage waveform measurements, bias control and active harmonic load-pull, allow maximum performance to be achieved. The significant role of the device output capacitance in GaN designs that utilise large voltage swings is also explained, and a simple method for limiting the effect of Cds 5 is presented.
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优化AIGaN/GaN HFET设计,提高效率
本文使用测量波形来演示如何优化GaN HFET PA设计,以实现高功率和高效率。在功率密度为3 Wmm-4时,效率值达到80%。设计程序显示了波形工程,即射频电流和电压波形测量,偏置控制和有源谐波负载-拉力的组合,如何实现最大性能。还解释了器件输出电容在利用大电压波动的GaN设计中的重要作用,并提出了一种限制cd5影响的简单方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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