Theoretical and Experimental Results of Substrate Effects on Microstrip Power Divider Designs

S. Mahmood, A. Al-hindawi
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引用次数: 0

Abstract

The effects of substrate materials on the design of microstrip power divider are investigated theoretically and experimentally. Three dielectric substrate materials, Duroid 3003, G10/FR4 epoxy Glass, and Duroid 3010, are chosen to be studied. A three-way two-stage power divider is designed at S-band frequency of 2.25 GHz and etched on each studied substrate separately. The substrate effects on the characteristics and performance of the microsrip circuits are studied taking into consideration the large difference in dielectric constant and the dissipation factor. The circuit designs presented here are analyzed using the Genesys CAD program and implemented and tested experimentally. The simulated and measured results are compared and discussed, and they indicate that significant changes in the characteristics of the microstrip power divider are observed.
衬底对微带分压器设计影响的理论与实验结果
从理论上和实验上研究了衬底材料对微带分压器设计的影响。选择三种介质基板材料Duroid 3003、G10/FR4环氧玻璃和Duroid 3010进行研究。在2.25 GHz的s波段设计了一种三路两级功率分压器,并分别蚀刻在每个研究的衬底上。考虑到介电常数和耗散系数的较大差异,研究了衬底对微带电路特性和性能的影响。本文采用Genesys CAD程序对电路设计进行了分析,并进行了实验实现和测试。仿真结果与实测结果进行了比较和讨论,结果表明微带功率分压器的特性发生了显著变化。
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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