A Study of Collaborative Gain/Noise Optimization for LNAs at Near- Frequencies Based on a Novel Gain-Noise Plane Approach
Author:
Affiliation:
1. School of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu, China
Funder
National Natural Science Foundation of China
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Subject
Electrical and Electronic Engineering
Link
http://xplorestaging.ieee.org/ielx7/8920/9996096/09878145.pdf?arnumber=9878145
Reference21 articles.
1. A CMOS 210-GHz Fundamental Transceiver With OOK Modulation
2. 120-GHz 8-Stage Broadband Amplifier With Quantitative Stagger Tuning Technique
3. A D-Band Cascode Amplifier With 24.3 dB Gain and 7.7 dBm Output Power in 0.13 $\mu$m SiGe BiCMOS Technology
4. A $D$ -Band CMOS Amplifier With a New Dual-Frequency Interstage Matching Technique
5. An 88.5–110 GHz CMOS Low-Noise Amplifier for Millimeter-Wave Imaging Applications
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1. A 27.1 dB Gain and 6.85 dB NF Low-Noise Amplifier Based on the Novel Gain-Noise Plane;2023 8th International Conference on Integrated Circuits and Microsystems (ICICM);2023-10-20
2. A 110 GHz Feedback Amplifier Design Based on Quasi-Linear Analysis;Electronics;2023-09-04
3. Design Considerations for Silicon-Based Terahertz Low Noise Amplifier;2023 16th UK-Europe-China Workshop on Millimetre Waves and Terahertz Technologies (UCMMT);2023-08-31
4. Collaborative gain and noise optimization: a design of 150–173-GHz cascode LNA with 22.3 dB gain and 6.92 dB NF based on the gain-noise plane;Science China Information Sciences;2023-08-09
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