Magnet-Free Circulators Based on Linear Time-Varying Circuits

Ahmed Kord, Andrea Alù
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引用次数: 2

Abstract

In this paper, magnet-free circulators based on spatiotemporal modulation of three-port resonant junctions are demonstrated. Optimal single-ended implementations based on series or parallel LC tanks connected in a wye or a delta topology, respectively, are developed. Also differential implementations based on combining two single-ended circuits in either a voltage-or a current-mode architecture, resulting in pseudo-linear time-invariant devices with enhanced performance, are presented. Moreover, CMOS integrated and MEMS implementations, suitable for low-cost and large-scale production, are presented. Also, broadband implementations based on combining a narrowband junction with conventional bandpass filters are developed. The proposed circuits are all validated with theoretical, simulated and measured results, with unprecedented performance nearly in all metrics in comparison to the current state of the art.
基于线性时变电路的无磁环行器
本文研究了一种基于三端口谐振结时空调制的无磁环行器。开发了基于串联或并联LC罐的最佳单端实现,分别以一种方式或一种增量拓扑连接。此外,还提出了基于电压模式或电流模式结构中组合两个单端电路的差分实现,从而产生具有增强性能的伪线性时不变器件。此外,还提出了适合低成本和大规模生产的CMOS集成和MEMS实现方案。此外,还开发了基于窄带结与常规带通滤波器相结合的宽带实现。所提出的电路都经过了理论、模拟和测量结果的验证,与目前的技术相比,几乎在所有指标上都具有前所未有的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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