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Ferrite-Based Multiport Circulators With RF Co-Designed Bandpass Filtering Capabilities

机译:基于铁氧体的多端口环行器,具有射频协同设计的带通滤波功能

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摘要

This article reports on the RF design and practical development of multiport circulators with RF co-designed bandpass filtering functionality. The proposed bandpass filter/circulator (BPFC) concept is based on a hybrid implementation approach, where dual-mode non-reciprocal ferrite-based resonators (FBRs) are cascaded with microwave resonators and mixed-electromagnetic (EM) couplings. In this manner, highly selective bandpass filtering transfer functions are created in the direction of propagation, and high RF signal cancellation is obtained in the reverse direction. A design methodology using coupled-resonator-based synthesis is proposed to facilitate the design of these components using well-known filter design techniques. Various electromagnetically simulated and synthesized examples are presented to demonstrate the operating principles of the BPFC approach alongside its applicability to high-order filtering responses. The BPFC concept is further expanded to the realization of multiport non-reciprocal components. For proof-of-concept demonstration, four multiport prototypes were designed, manufactured, and measured at $S$ -band.
机译:本文报告了具有射频协同设计的带通滤波功能的多端口环行器的射频设计和实际开发。所提出的带通滤波器/环行器(BPFC)概念基于混合实现方法,其中双模非互易铁氧体基谐振器(FBR)与微波谐振器和混合电磁(EM)耦合级联。通过这种方式,在传播方向上创建了高选择性的带通滤波传递函数,并在相反方向上获得了高射频信号消除。该文提出了一种基于耦合谐振器的综合设计方法,以利用众所周知的滤波器设计技术来促进这些元件的设计。本文通过各种电磁仿真和综合实例,演示了BPFC方法的工作原理及其对高阶滤波响应的适用性。BPFC概念进一步扩展到实现多端口非互易组件。在概念验证演示中,设计、制造了四个多端口原型,并在 $S 美元频段进行了测量。

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