Reflective Parametric Frequency Selective Limiters with sub-dB Loss and $\mu$Watts Power Thresholds
Abstract
This article describes the design methodology to achieve reflective diode-based parametric frequency selective limiters (pFSLs) with low power thresholds () and sub-dB insertion-loss values () for driving power levels () lower than . In addition, we present the measured performance of a reflective pFSL designed through the discussed methodology and assembled on a FR-4 printed circuit board (PCB). Thanks to its optimally engineered dynamics, the built pFSL can operate around 2.1 GHz while exhibiting record-low (-3.4 dBm) and (0.94 dB) values. Furthermore, while the pFSL can selectively attenuate undesired signals with power ranging from -3.4 dBm to 13 dBm, it provides a strong suppression level (IS > 12.0 dB) even when driven by much higher values approaching 28 dBm. Such measured performance metrics demonstrate how the unique nonlinear dynamics of parametric-based FSLs can be leveraged through components and systems compatible with conventional chip-scale manufacturing processes in order to increase the resilience to electromagnetic interference (EMI), even of wireless radios designed for a low-power consumption and consequently characterized by a narrow dynamic range.
Cite
@article{arxiv.2012.11546,
title = {Reflective Parametric Frequency Selective Limiters with sub-dB Loss and $\mu$Watts Power Thresholds},
author = {Hussein M. E. Hussein and Mahmoud A. A. Ibrahim and Matteo Rinaldi and Marvin Onabajo and Cristian Cassella},
journal= {arXiv preprint arXiv:2012.11546},
year = {2021}
}
Comments
11 pages, 10 figures