A multi-band low noise amplifier with strong immunity to interferers

Author:

Zahir Zaira,Banerjee Gaurab,Zeidan Mohamad A.,Abraham Jacob A.

Publisher

Springer Science and Business Media LLC

Subject

Surfaces, Coatings and Films,Hardware and Architecture,Signal Processing

Reference28 articles.

1. Hong, X., Wang, J., Wang, C. X., & Shi, J. (2014). Cognitive radio in 5G: a perspective on energy-spectral efficiency trade-off. IEEE Communications Magazine, 52(7), 46–53.

2. Aparin, V., Brown, G., & Larson, L. E. (May 2004). Linearization of CMOS LNAs via optimum gate biasing. In IEEE International Symposium on Circuits and Systems, Vancouver, BC, Canada, vol. IV, pp. 748–751.

3. Ding Y., & Harjani, R. (2001). A +18 dBm IIP3 LNA in 0.35m CMOS. In IEEE International Solid-State Circuits Conference (ISSCC) Digest of Technical Papers, pp. 162–163.

4. Keehr, E., & Hajimiri, A. (2008). Equalization of IM3 Products in Wideband Direct-Conversion Receivers. In IEEE International Solid-State Circuits Conference (ISSCC) Digest of Technical Papers, pp. 204–205.

5. Bruccoleri, F., Klumperink, E. A. M., & Nauta, B. (2004). Wide-band CMOS low-noise amplifier exploiting thermal noise canceling. IEEE Journal of Solid State Circuits, 39(2), 275–282.

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