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Original Articles

Design and Analysis of Monolithic Inductively-Degenerated Cascode Based Low Noise Amplifiers

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Pages 71-82 | Published online: 01 Sep 2014

References

  • L.E. Larson, “Radio Frequency Integrated Circuit Technology for Low-Power Wireless Communications,” IEEE Personal Communications, vol. 5, pp. 11–19, 1998.
  • B. Razavi, “RF Microelectronics,” Prentice-Hall PTR Upper Saddle River, NJ 07458.
  • P. Andreani, and H. Sjoland, “Noise Optimization of an Inductively Degenerated CMOS Low Noise Amplifier,” IEEE Transactions on Circuits and Systems - II: Analog and Digital Signal Processing. Vol 48 pp. 835–841, 2001.
  • T.-K. Nguyen, and S.-G. Lee, “Noise and Gain Optimization Technique for RF-Integrated CMOS Low Noise Amplifier” Proceedings of the 2003 IEEE Conference on Electron Devices and Solid-State Circuits. Hong Kong, December 16–18 2003, pp. 221–224.
  • T.-K. Nguyen, C.-H. Kim, G.-J. Ihm, M.-S. Yang, and S.-G. Lee, “CMOS Low- Noise Amplifier Design Optimization Techniques,” IEEE Transactions On Microwave Theory and Techniques, vol 52, pp. 1433–1442, 2004.
  • A.N. Karanicolas, “A 2.7-V 900-MHz CMOS LNA and Mixer,” IEEE Journal of Solid-State Circuits, vol 31, pp. 1939–1944, 1996.
  • E. Abou-Allam, and T. Manku, “A Low Voltage Design Technique for Low Noise RF Integrated Circuits” Proceedings of the 1998 IEEE International Symposium on Circuits and Systems (ISCAS ‘98). Monterey, CA, May 31 - June 3 1998. Vol. 4, pp. 373–377.
  • A. D. Johns, and K. Martin, Analog Integrated Circuit Design. Canada: John Wiley & Sons, Inc., 1997.
  • T. H. Lee, The Design of CMOS Radio-Frequency Integrated Circuits. Cambridge University Press, 2001.
  • T. H Lee, The Design of CMOS Radio-Frequency Integrated Circuits. Second Edition. Cambridge University Press, 2004.
  • D. K. Shaeffer, and T.H. Lee, “A 1.5-V, 1.5-GHz CMOS Low Noise Amplifier,” IEEE Journal of Solid-State Circuits, vol 32, pp. 745–759, 1997.
  • N. M. Noh, “Development of inductively-degenerated LNA for W-CDMA application utilizing 0.18 μm RFCMOS technology,” Ph.D thesis. Universiti Sains Malaysia, Penang, Malaysia, 2009.
  • S.K. Reynolds, B.A. Floyd, TJ. Beukema, T. Zwick, U.R. Pfeiffer, and H. A. Ainspan, “A Direct-Conversion Receiver Integrated Circuit for WCDMA Mobile Systems,” IBM Journal of Research and Development, vol 2, pp. 337–353, 2003a.
  • G. Boeck, “Design of RF-CMOS Integrated Circuits: Amplifier and Mixer,” Tutorial 3 of the 2007 IEEE International Workshop on Radio-Frequency Integration Technology (RFIT2007): Enabling Technologies for Emerging Wireless Systems. Singapore, December 9–11 2007.
  • D. Manstretta, R. Castello, F. Gatta, P. Rossi, and F. Svelto, “A CMOS Direct-Conversion Receiver Front-End for UMTS” Digest of Technical Papers of the 2002 IEEE International Solid-State Circuits Conference (ISSCC 2002). San Francisco, CA, USA, February 3–7 2002. vol. 1, pp. 240–241.
  • H. Fouad, K. Sharaf, E. El-Diwany, and H. El-Hennawy, “An RF CMOS Cascode LNA with Current Reuse and Inductive Source Degeneration” Proceedings of the 44th IEEE 2001 Midwest Symposium on Circuits and Systems (MWSCAS 2001). Michigan State, USA, August 14–17 2001. vol. 2, pp. 824–828.
  • B. Razavi, Design of Analog CMOS Integrated Circuits. New York: McGraw Hill. 2001.

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