超宽带3db混合串联耦合器的设计与仿真

Abhinav Jain, Tanvi Mittal
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引用次数: 1

摘要

本文讨论了采用多单元耦合线的140-240MHz、3dB混合耦合器的设计与仿真,以及该耦合器在仿真快速射频匹配网络开发中的适用性。在仿真射频匹配网络中,采用3dB混合耦合器对来自射频源的射频功率进行分频,并将反射功率耦合到隔离端口,起到对射频源的保护作用。单个四分之一波长耦合元件提供窄频带,因此对于宽带应用,在若干个四分之一波长元件以特定方式级联的情况下使用多元件耦合线路。在多单元耦合线中,中间单元的耦合度远高于侧单元,且耦合线之间的间隙很小。元件数量的增加使耦合间隙非常窄,在一定限度内,其制造变得非常困难。为了实现中间元件更宽的耦合间隙,将两个宽带8.34dB多元件段串联起来,整体实现3dB耦合。首先设计了一种窄带单元件3dB混合耦合器,并对其进行了仿真和详细介绍。它提供的频带很窄,不足以满足仿真射频系统的应用,因此设计了超宽带混合耦合器。在这里,以比较的方式提出了两种装置的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Simulation of Ultra-Wideband 3 dB Hybrid Tandem Coupler
In this paper, the design and simulation of 140-240MHz, 3dB hybrid coupler using multi-element coupled lines and its applicability in development of mock-up fast RF matching network is discussed. In mock-up RF matching network, 3dB hybrid coupler is used to divide the RF power coming from the RF source and to couple reflected power to isolated port for the protection of source. A single quarter wavelength coupled element provides narrow frequency band, thus for the broadband applications, multi-element coupled lines are used where several number of quarter wavelength element are cascaded in a specific manner. In multi-element coupled lines, coupling of middle element is found to be much higher as compared to side elements and provide small gap between the coupled lines. The increase in number of elements provide very narrow coupling gap and at a certain limit its fabrication becomes very difficult. To achieve the wider coupling gap in middle element, two broad band 8.34dB multi-elements sections are connected in tandem to have overall 3dB coupling. Initially a narrow band single element 3dB hybrid coupler is designed, simulated and presented in detail. It provides very narrow frequency band which is not sufficient for the application of mock-up RF system and therefore, ultra-wide band hybrid coupler is designed. Here, result of both the devices is presented in comparative manner.
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