A High-Linearity CMOS Receiver based on N-path Technology in Wideband Operation
Author:
Affiliation:
1. Fuzhou University, Department of College of Physics and Information Engineering,Fuzhou University, China
2. Fuzhou University, Department of College of Advanced Manufacturing,Fuzhou University, China
Publisher
ACM
Link
https://dl.acm.org/doi/pdf/10.1145/3592307.3592337
Reference12 articles.
1. Murphy , D , Mirzaei . Architectural Evolution of Integrated M-Phase High-Q Bandpass Filters[J] . IEEE transactions on circuits and systems, I. Regular papers: a publication of the IEEE Circuits and Systems Society , 2012 , 59(1):52-65. Murphy, D, Mirzaei. Architectural Evolution of Integrated M-Phase High-Q Bandpass Filters[J]. IEEE transactions on circuits and systems, I. Regular papers: a publication of the IEEE Circuits and Systems Society, 2012, 59(1):52-65.
2. Analysis and Optimization of Direct-Conversion Receivers With 25% Duty-Cycle Current-Driven Passive Mixers
3. A Blocker-Tolerant, Noise-Cancelling Receiver Suitable for Wideband Wireless Applications
4. Active Feedback Technique for RF Channel Selection in Front-End Receivers[J];Youssef S;IEEE Journal of Solid-State Circuits
5. A 1.8 dB NF Blocker-Filtering Noise-Canceling Wideband Receiver With Shared TIA in 40 nm CMOS
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