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Performance Analysis of Novel Graphene Process Low-Noise Amplifier with Multi-stage Stagger-Tuned Approach over D-band

  • 24-08-2024
  • Research
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Abstract

The article focuses on the performance analysis of a novel graphene-based low-noise amplifier (LNA) with a multi-stage stagger-tuned approach over the D-band. The study addresses the challenges of sub-terahertz wireless communications, specifically within the D-band, and introduces a graphene-based LNA that achieves exceptional performance. The LNA design incorporates a hybrid symmetrical matching network and employs a multi-stage stagger-tuned approach to enhance bandwidth and reduce noise figure. The proposed LNA demonstrates a wideband of 38.8 GHz and an ultra-low noise figure of 4.2 dB, making it a promising solution for high-data-rate communications, security screening, spectroscopy, and radar applications. The article provides detailed insights into the design methodology, circuit implementation, and performance analysis, highlighting the advantages of the proposed LNA over existing solutions.
Title
Performance Analysis of Novel Graphene Process Low-Noise Amplifier with Multi-stage Stagger-Tuned Approach over D-band
Authors
Porika Nandini
Deepak Naik Jatoth
Pradeep Gorre
Manishankar Prasad Gupta
Sandeep Kumar
AlaaDdin Al-Shidaifat
Hanjung Song
Publication date
24-08-2024
Publisher
Springer US
Published in
Journal of Infrared, Millimeter, and Terahertz Waves / Issue 9-10/2024
Print ISSN: 1866-6892
Electronic ISSN: 1866-6906
DOI
https://doi.org/10.1007/s10762-024-01009-5
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