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A monolithic CMOS L band DAB receiver

Published: 18 January 2005 Publication History

Abstract

This paper presents a fully integrated CMOS low-IF receiver working at L-band for DAB application. An image-rejection low noise amplifier (LNA) supplies over 30dB image rejection in the whole band. A calibration circuit improves matching of quadrature LO signals. Together with the quadrature weaver architecture, the receiver rejects the image signal more than 65dB. The receiver's noise figure is 4dB and OIP3 is 22dBm. The receiver is implemented in 0.25um CMOS process. The core die area is 9mm2.

References

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G. Gali, G. Cantone, P. Filoramo, et al. "A Low Voltage Receiver for Digital Satellite Radio", IEEE MTT-S digest, pp.349--352, 1998
[2]
Ward Titus, Rosa Croughwell, et al. "A SI BJT RF Dual Band Receiver IC for DAB", IEEE Radio Frequency Integrated Circuit Symposium, pp.297--300, 1999
[3]
Thomas H. Lee, The Design of CMOS Radio-Frequency Integrated Circuits, 18.2.6
[4]
Jan Crols and Michel S. J. Steyaert, "A Single-Chip 900-MHz CMOS Receiver Front-End with a High Performance Low-IF Topology", IEEE J. of Solid State Circuits, vol.30, no. 12, pp. 1483--1492, 1995
[5]
Farbod Behbahani, Yoji Kishigami, John Leete, and Asad A. Abidi, "CMOS Mixers and Poly phase Filters for Large Image Rejection", IEEE J. of Solid State Circuits, vol.36, no.6, pp.873--887, 2001
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John W. M. Rogers, José A. Macedo, and Calvin Plett, "A Completely Integrated 1.9-GHz Receiver Front-End With Monolithic Image-Reject Filter and VCO", IEEE Transactions on Microwave Theory and Techniques, vol. 50, No. 1, Jan 2002
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Kwang-Jin Koh, Yong-Sik Youn and Hyun-Kyu Yu, "A Gain Boosting Method at RF Frequency Using Active Feedback and Its Application to RF Variable Gain Amplifier (VGA)", ISCAS, volume3, pp.26--29, 2002

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cover image ACM Conferences
ASP-DAC '05: Proceedings of the 2005 Asia and South Pacific Design Automation Conference
January 2005
1495 pages
ISBN:0780387376
DOI:10.1145/1120725
  • General Chair:
  • Ting-Ao Tang
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Association for Computing Machinery

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Publication History

Published: 18 January 2005

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