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Design of Miniaturized Triplexers via Sharing a Single Triple-Mode Cavity Resonator

机译:通过共享单个三模腔谐振器设计小型三工器

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摘要

A novel approach for design of a miniaturized cavity triplexer is proposed in this paper by using triple-mode resonator (TMR) as a common feeder of three frequency channels in a triplexer. Three frequency channels are generated by three fundamental modes of a single rectangular triple-mode cavity resonator. Without installing any connection-oriented junction network, i.e., T-junction or star junction, only coupling slots are adopted herein to achieve required coupling coefficients and external quality factors toward the specified Chebyshev responses in the three passbands simultaneously. High isolation among these three separated bands can be effectively achieved owing to the modal orthogonality via sharing a common TMR structure as a feeder. Two triplexers are then designed and fabricated using varied topologies. The hybrid resonator triplexer method is presented as the first approach by using a TMR as a feeder to feed three sets of single-mode cavity bandpass filters. As the second approach, the triple-mode triplexer (TMT) method is developed by cascading a few TMRs to form a multistage higher order TMT. Finally, two fabricated triplexer prototypes are tested for experimental verification of the proposed design methodology. Good agreement between measurement and simulation is achieved.
机译:本文提出了一种新型的小型腔三工器设计方法,该方法采用三模谐振器(TMR)作为三工器中三个频道的公共馈线。由单个矩形三模腔谐振器的三个基本模式生成三个频道。在不安装任何面向连接的结网络即T形结或星形结的情况下,此处仅采用耦合槽,以在三个通带中同时实现朝着指定的切比雪夫响应的所需耦合系数和外部品质因数。由于模态正交性,通过共享一个共同的TMR结构作为馈线,可以有效地实现这三个分离频段之间的高度隔离。然后使用不同的拓扑设计和制造两个三工器。作为第一种方法,提出了一种混合谐振器三工器方法,该方法通过使用TMR作为馈线来馈入三组单模腔带通滤波器。作为第二种方法,三级模式三工器(TMT)方法是通过级联几个TMR形成多级高阶TMT来开发的。最后,测试了两个制造的三工器原型,以对所提出的设计方法进行实验验证。测量与仿真之间达成了良好的协议。

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