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Design of broadband microwave power amplifiers via fettweis representation of brune functions

机译:通过布鲁特函数的fettweis表示设计宽带微波功率放大器

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In this paper, an X-Band power amplifier prototype is designed over the frequency band of 8 GHz-10 GHz with mixed lumped and distributed elements using so called “Yarman and Fettweis Double Matching-Parametric Approach” and “Design with Mixed Elements Technique” developed by Yarman, Aksen and Fettweis. The proposed algorithms employ three major steps. In the first step, lumped element prototype is generated employing the Fettweis representation of Brune functions. In the second step, lumped element prototype is replaced with its almost equivalent mixed element counterpart. In the last one, electric performance of the overall mixed element amplifier is re-optimized for the maximum power output and the flat transducer power gain. In the course of amplifier design, Cree's 70 W GaN HEMT transistor CGHV1J070D is utilized. It is shown that the mixed element power amplifier is capable of delivering 50 W continuous power with 50% power added efficiency over the frequency band of 8 GHz-10 GHz.
机译:在本文中,使用所谓的“ Yarman和Fettweis双重匹配参数方法”和“使用混合元素技术设计”,在8 GHz-10 GHz频带上设计了具有混合集总和分布元素的X波段功率放大器原型。由Yarman,Aksen和Fettweis开发。所提出的算法采用了三个主要步骤。第一步,使用Brunt函数的Fettweis表示法生成集总元素原型。第二步,将集总元素原型替换为其几乎等效的混合元素副本。在最后一个中,针对最大功率输出和平坦的换能器功率增益,重新优化了整个混合元件放大器的电性能。在放大器设计过程中,使用了Cree的70 W GaN HEMT晶体管CGHV1J070D。结果表明,混合元件功率放大器能够在8 GHz-10 GHz频带上以50%的功率附加效率提供50 W的连续功率。

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