References

The following references complement the material in this book by giving more detailed accounts of some subject matter than is possible to accomplish in one volume. The list is not intended to be comprehensive or to mention all contributions in the field; such an effort would be pretentious and its execution would be impossible. The references are chosen also for the fact that they themselves provide lists of references of historical, academic or practical importance. Alternatively, a recent reference is chosen beacuase it contains material which has its origins in much older references which are not easily available.

1. Keyes, R. (2008) Moore's law today. IEEE Circguits and Systems Magazine, 8 (2), 53–54.

2. Chang, L.. (2003) Moore's law lives on. IEEE Circuits and Systems Magazine, 19 (1), 35–42.

3. IEEE (2003) Special issue on nanoelectronics and nanoscale processing. Proceedings of IEEE, 91 (11).

4. Gielen, G. and Rutenbar, R. (2000) Computer-aided design of analog and mixed-signal integrated circuits. Proceedings of IEEE, 88 (12), 1826–1852.

5. Millozzi, P.. (2000) A design system for RFIC: challenges and solutions. Proceedings of IEEE, 88 (10), 1613.

6. IEEE (2000) Special issue on low power systems. Proceedings of IEEE, 88 (10).

7. Benini, L.. (2001) Designing low-power circuits: practical recipes. IEEE Circuits and Systems Magazine, 1 (1), 6–25.

8. IEEE (2001) Special issue on digital, technology directions and signal processing. IEEE Journal of Solid State Circuits, 40 (1).

9. Baschirotto, A.. (2006) Baseband analog front-end and digital back-end for reconfigurable multi-standard terminals. IEEE Circuits and Systems Magazine, 6 (1), 8–28.

10. Lanczos, C. (1966) Discourse on Fourier Series, Hafner, New York.

11. Papoulis, P. (1984) Signal Analysis, McGraw–Hill, New York.

12. Baher, H. (2001) Analog and Digital Signal Processing, 2nd edn, John Wiley & Sons, Ltd, Chichester.

13. Baher, H. (1984) Synthesis of Electrical Networks, John Wiley & Sons, Ltd, Chichester.

14. Rhodes, J.D. (1976) Theory of Electrical Filters, John Wiley & Sons, Inc., New York.

15. Abramovitz, M. and Stegun, I.A. (eds) (1970) Handbook of Mathematical Functions, Dover, New York.

16. Saal, R. (1977) Handbook of Filter Design, AEG Telefunken, Heidelberg.

17. Baher, H. and Beneat, J. (1993) Design of analog and digital data transmission filters. IEEE Transactions on Circuits and Systems, CAS-40 (7u), 449–460.

18. Huang, H.. (2011) The sampling theorem with constant-amplitude variable-width pulses. IEEE Transactions on Circuits and Systems: I. Regular Papers, 58 (6), 1178–1190.

19. Baher, H. (1993) Selective Linear-phase Switched-capacitor and Digital Filters, Kluwer Academic, Dordrecht.

20. Rabiner, L. and Cold, C. (eds) (1976) Digital Signal Processing, IEEE, London.

21. Haykin, S. (2001) Adaptive Filter Theory, Prentice Hall, London.

22. Allen, P. and Holberg, D. (2002) CMOS Analog Circuit Design, 2nd edn, Oxford University Press, Oxford.

23. Gray, P.. (2009) Analysis and Design of Analog Integrated Circuits, 5th edn, John Wiley & Sons, Ltd, Chichester.

24. Baher, H. (1996) Microelectronic Switched-capacitor Filters: with ISICAP, a Computer-aided Design Package, John Wiley & Sons, Ltd, Chichester.

25. Kolm, R. (2008) Analog filters in deep submicrom and ultra deep submicrom technologies. Doctoral thesis. Vienna University of Technology.

26. Sanchez-Sinencio, E. and Silva-Martinez, J. (2000) CMOS transconductance amplifiers, architectures and active filters: a tutorial. IEE Circuits, Devices and Systems, 147 (1), 3–12.

27. Gregorian, R. and Temes, G. (1986) Analog MOS Integrated Circuits for Signal Processing, John Wiley & Sons, Ltd, Chichester.

28. Hsieh, K.. (1981) A low-noise chopper stabilised differential switched-capacitor filter technique. IEEE Journal of Solid State Circuits, SC-16 (6), 708–715.

29. Haigh, D.G. and Singh, B. (1983) A switching scheme for switched-capacitor filters which reduces the effect of parasitic capacitances associated with switch control terminals. Proceedings of IEEE International Symposium on Circuits and Systems, 1983, 586–589.

30. Grunigen, D.. (1982) Integrated switched-capacitor low-pass filter with combined antialiasing decimation filter for low frequencies. IEEE Journal of Solid State Circuits, SC-17 (6), 1024–1029.

31. Afifi, E. (1992) A novel multistage sigma-delta analog-to-digital converter. Master thesis. Worcester Polytechnic Institute.

32. Baher, H. and Afifi, E. (1995) A fourth-order switched-capacitor cascade structure for sigma-delta converters. International Journal of Circuit Theory and Applications, 23, 3–21.

33. Malobert, F. (2001) High-Speed Data Converters For Communication Systems, 1 (1), 26–36.

34. Suarez, G.. (2007) Behavioural modelling methods for switched-capacitor sigma delta modulators. IEEE Transactions on Circuits and Circuits, 54 (6), 1236–1244.

35. Baschirotto, A.. (2003) Behavioral modelling of switched-capacitor sigma delta modulators. IEEE Transactions on Circuits and Systems I, 50 (3).

36. Karnstedt, C. (2010) Optimizing power of switched capacitor integrators in sigma-delta modulators. IEEE Circuits and Systems Magazine, 10 (4), 64–71.

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