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Design and Experimental Measurement of Input and Output Couplers for a 6–18-GHz High-Power Helix Traveling Wave Tube Amplifier

机译:用于6-18GHz大功率螺旋行波管放大器输入和输出耦合器的设计和实验测量

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In this article, two types of compact and effective input and output couplers for a 6-18 GHz 5-kW-level helix traveling wave tube (TWT) are designed, fabricated, and cold- tested. The input coupler section includes an impedance transformer, a conical coaxial window, and a transition to a subminiature version A (SMA) connector for a radio frequency (RF) input. For achieving a high-power output, a new type of double-ridged waveguide window is used in the output coupling section. The output coupling structure consists of a standard double-ridged waveguide (WRD650), an impedance transformer, a square sapphire window, and a coaxial to double-ridged waveguide transition. The commercially available 3-D electromagnetic simulation software package CST is used to further optimize these structures, including couplers terminated with an actual complex helix slow-wave structure (SWS). According to the simulation results, the input and output couplers are fabricated and tested. The experimental results of the optimized coupled structures are presented, and both couplers show excellent transmission performance for a 6-18-GHz high-power helix TWT.
机译:在本文中,设计,制造和冷却两种类型的紧凑型和有效的输入和输出耦合器,用于6-18GHz 5-kW级螺旋行驶波管(TWT)。输入耦合器部分包括阻抗变换器,锥形同轴窗口,以及用于射频(RF)输入的子截留版A(SMA)连接器的过渡。为了实现高功率输出,在输出耦合部分中使用了一种新型的双脊波导窗口。输出耦合结构包括标准的双拆动波导(WRD650),阻抗变压器,方形蓝宝石窗口和双脊波导转换的同轴。市售的3-D电磁仿真软件包CST用于进一步优化这些结构,包括终止具有实际复合螺旋慢波结构(SWS)的耦合器。根据仿真结果,对输入和输出耦合器进行制造和测试。提出了优化耦合结构的实验结果,两个耦合器都为6-18GHz大功率螺旋TWT表示出色的传输性能。

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