Design of High-Speed Communication Circuits

References

1. E. H. Armstrong, "A new system of short wave amplification," Proc. IRE, vol. 9, pp. 3 27, Feb. 1921.

2. T. Stetzler, et al., "A 2.7 V-4.5 V single-chip GSM transceiver RF integrated circuit," IEEE J. Solid-State Circuits, vol. 30, pp. 1421 1429, Dec. 1995.

3. B. Razavi, RF Microelectronics, Prentice-Hall, Englewood Cliffs, NJ, 1998.

4. D. K. Weaver, "A third method of generation and detection of single sideband signals," Proc. IRE, vol. 44, pp. 1703 1705, Dec. 1956.

5. M. J. Gingell, "Single sideband modulation using sequence asymmetric polyphase networks," Electrical Communication, vol. 48, pp. 21 25, 1973.

6. B. Razavi, "A 5.2-GHz CMOS receiver with 62-dB image rejection," IEEE J. of Solid-State Circuits, vol. 35, pp. 810 815, May 2001.

7. J. C. Rudel 1, et al., "A 1.9MHz wide-band IF double conversion CMOS receiver for cordless telephone applications," IEEE J. of Solid State Circuits, vol. 32, pp. 2071 2088 Dec. 1997.

8. A. Molnar, et al., "A single-chip quad band (850/900/1800/1900MHz) direct-conversion GSM/GPRS RF transceiver with integrated VCOs and fractional-N synthesizer," IEEE International Solid-State Circuits Conference Dig. Tech. Papers, pp. 232 233, Feb. 2002.

9. D. Haspeslagh, et al., "BBTRX: A baseband transceiver for a zero IF GSM hand portable station," Proc. IEEE Custom Integrated Circuits Conference, pp. 10.7.1 10.7.4, May 1992.

10. A. Behzad, et al., "Direct-conversion CMOS transceiver with automatic frequency control for 802.11a wireless LANs," IEEE International Solid-State Circuits Conference Dig. Tech.

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