A New Millimeter-wave Multi-way Power Dividing/Combining Network Based on Waveguide-Microstrip E-plane Dual-Probe Structure

Xiaoqiang Xie, R. Xu, Rui Diao, Weigan Lin
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引用次数: 10

Abstract

This paper presents a new millimeter-wave four- way power dividing/combining network, based on waveguide- microstrip E-plane dual-probe structure. With a good heat sinking property and an easy fabrication process, this compact E- plane dual-probe structure fulfills waveguide-to-microstrip transition and power dividing/combining simultaneously, and has a loss of about 0.2dB in whole Ka-band, indicated by the results of electromagnetic field simulation. Connecting these two dual- probe tri-port networks symmetrically with a waveguide E-T hybrid, a millimeter-wave four-way power dividing/combining network is fabricated, and the measured loss of 0.4dB is obtained in 32GHz-38GHz. With convenience of integrating solid-sate high power MMIC devices, this broadband low loss millimeter-wave four-way symmetric microstrip integrated power dividing/combining network can realize millimeter solid-state high power combining with a high efficiency.
基于波导-微带e平面双探头结构的毫米波多路功率分/合并网络
提出了一种基于波导-微带e平面双探头结构的毫米波四路功率分合网络。该结构具有良好的散热性能和简单的制作工艺,同时实现了波导到微带的转换和功率分/合并,整个ka波段的损耗约为0.2dB。将这两个双探头三端口网络用波导E-T混合电路对称连接,制成毫米波四路分合功率网络,在32GHz-38GHz频段测量损耗为0.4dB。该宽带低损耗毫米波四路对称微带集成功率分合网络可以方便地集成固态大功率MMIC器件,实现高效率的毫米波固态大功率分合。
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