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首页> 外文期刊>Journal of Microelectromechanical Systems >Magnet-Less Circulator Using AlN MEMS Filters and CMOS RF Switches
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Magnet-Less Circulator Using AlN MEMS Filters and CMOS RF Switches

机译:使用AlN MEMS滤波器和CMOS RF开关的无磁环行器

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摘要

A circulator with three ports allows unidirectional (or non-reciprocal) power transmission and facilitates the development of in-band full duplexers for simultaneous transmit and receive radio frequency (RF) applications. The use of ferromagnetic materials is the dominant approach for the implementation of circulators despite they are bulky and non-integrable with semiconductor electronics. Here, we present a novel magnetic-free electrical circulator using CMOS-integrable filters based on AlN MEMS resonators and CMOS RF switches. This paper describes a compact approach for a circulator that could be used in handheld devices. To break reciprocity, the AlN MEMS filter network is parametrically modulated via a switching matrix. The modulation frequency and duty cycle of the switching matrix were optimized experimentally so that the circulator can provide up to 15dB of isolation over the entire filter bandwidth. This prototype is a very compact solution for the implementation of magnetic-free circulators, which also intrinsically offer sharp pass-band filtering, thus eliminating the need for additional filters. The discussion highlights how possible paths to reduce the circulator insertion loss would make this approach more appealing for a broad range of applications.
机译:具有三个端口的环行器允许单向(或不可逆)功率传输,并有助于带内全双工器的开发,以便同时发送和接收射频(RF)应用。尽管循环器体积庞大且与半导体电子产品不可集成,但使用铁磁材料是实现循环器的主要方法。在这里,我们介绍了一种基于AlN MEMS谐振器和CMOS RF开关的,使用CMOS可集成滤波器的新型无磁环行器。本文介绍了一种可用于手持设备的循环器的紧凑方法。为了打破对等性,AlN MEMS滤波器网络通过开关矩阵进行参数调制。通过实验对开关矩阵的调制频率和占空比进行了优化,从而使循环器在整个滤波器带宽上可提供高达15dB的隔离度。该原型是用于实现无磁环行器的非常紧凑的解决方案,该环行器本质上也提供了清晰的通带滤波,因此无需额外的滤波器。讨论重点介绍了减少循环器插入损耗的可能途径如何使这种方法对广泛的应用更具吸引力。

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