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A full Ka-band waveguide-based spatial power-combining amplifier using e-plane anti-phase probes

机译:使用e平面反相探头的基于全Ka波段波导的空间功率合并放大器

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A full Ka-band solid-state power amplifier has been presented and designed using a waveguide-based spatial power-combining technique based on E-plane anti-phase probes. The power divider/combiner employed in this design provides not only a high power-combining efficiency over a full waveguide bandwidth, but also efficient heat sinking for the active power devices. A simple design approach for the power divider/combiner has been developed. The measured insertion loss of the power divider/combiner is less than 0.25dB across the 26–40GHz band. The measured output saturated power of the solidstate amplifier is higher than 27.5dbm over the entire Ka-band. The obtained power-combining efficiency is from 83% to 90% in this frequency band. These results indicate that the proposed power-combining scheme is suitable for implementation of low cost, broadband power amplifiers operating at millimeter wave frequency.
机译:提出并设计了一个全Ka波段固态功率放大器,并使用基于E平面反相探头的基于波导的空间功率合并技术进行了设计。此设计中采用的功率分配器/组合器不仅在整个波导带宽上提供了很高的功率组合效率,而且还为有源功率器件提供了有效的散热效果。已经开发出一种简单的功率分配器/组合器设计方法。在26-40GHz频带内,测得的功率分配器/组合器的插入损耗小于0.25dB。固态放大器的测量输出饱和功率在整个Ka波段上都高于27.5dbm。在该频带中,获得的功率组合效率为83%至90%。这些结果表明,提出的功率组合方案适合于实现以毫米波频率工作的低成本宽带功率放大器。

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