5.18–7.42 GHz LC-VCO in subthreshold regime with low power low phase noise and immunity to PVT variations in 130 nm CMOS technology
Author:
Publisher
Springer Science and Business Media LLC
Subject
Surfaces, Coatings and Films,Hardware and Architecture,Signal Processing
Link
http://link.springer.com/article/10.1007/s10470-018-1119-3/fulltext.html
Reference33 articles.
1. Oh, N. J. (2014). A phase-noise reduction technique for RF CMOS voltage-controlled oscillator with a series LC resonator. Microelectronics Journal, 45(4), 435–440.
2. Hegazi, E., Sjoland, H., & Abidi, A. A. (2001). A filtering technique to lower LC oscillator phase noise. IEEE Journal of Solid-State Circuits, 36(12), 1921–1930.
3. Hajimiri, A., & Lee, T. H. (1999). Design issues in CMOS differential LC oscillators. IEEE Journal of Solid-State Circuits, 34(5), 717–724.
4. Men, K., Thangarasu, B. K., & Yeo, K. S. (2016). A VCO phase noise reduction technique to suppress the active device contribution. In 2016 IEEE international nanoelectronics conference (INEC), May 2016, pp. 1–2.
5. Ghorbel, I., Haddad, F., & Rahajandraibe, W. (2015). Ultra low power RF cross-coupled VCO design in the subthreshold regime with high immunity to PVT variations in 130 nm CMOS technology. In New circuits and systems conference (NEWCAS), 2015 IEEE 13th international. IEEE, pp. 1–4.
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