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Miniaturized Wilkinson Power Dividers Utilizing Capacitive Loading

机译:利用电容负载的小型威尔金森功率分配器

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摘要

This letter reports the miniaturization of a planar Wilkinson power divider by capacitive loading of the quarter wave transmission lines employed in conventional Wilkinson power dividers. Reduction of the transmission line segments from lambda/4 to between lambda/5 and lambda/12 are reported here. The input and output lines at the three ports and the lines comprising the divider itself are coplanar waveguide (CPW) and asymmetric coplanar stripline (ACPS), respectively. The 10 GHZ power dividers are fabricated on high resistivity silicon (HRS) and alumina wafers. These miniaturized dividers are 74% smaller than conventional Wilkinson power dividers, and have a return loss better than +30 dB and an insertion loss less than 0.55 dB. Design equations and a discussion about the effect of parasitic reactance on the isolation are presented for the first time.
机译:这封信报道了常规威尔金森功率分配器中采用的四分之一波传输线的电容性负载,从而使平面威尔金森功率分配器小型化。此处报道了传输线段从lambda / 4减少到lambda / 5和lambda / 12之间。三个端口处的输入和输出线以及组成分压器本身的线分别是共面波导(CPW)和不对称共面带状线(ACPS)。 10个GHZ功率分配器在高电阻率的硅(HRS)和氧化铝晶片上制造。这些微型分频器比传统的威尔金森功率分频器小74%,回波损耗优于+30 dB,插入损耗小于0.55 dB。首次提出了设计方程式,并讨论了寄生电抗对隔离的影响。

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