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2004
A. Gerosa, Maniero, A., and Neviani, A., A Fully-Integrated Dual-Channel Log-Domain Programmable Preamplifier and Filter for an Implantable Cardiac Pacemakers, IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS. I, REGULAR PAPERS, vol. 51, pp. 1916–1925, 2004.
A. Gerosa, Neviani, A., and Maniero, A., A Fully-Integrated Two-Channel A/D Interface for the Acquisition of Cardiac Signals in Implantable Pacemakers, IEEE JOURNAL OF SOLID-STATE CIRCUITS, vol. 39, pp. 1083–1093, 2004.
A. Gerosa and Neviani, A., A LOW-POWER DECIMATION FILTER FOR A SIGMA-DELTA CONVERTER BASED ON A POWER-OPTMIZED SINC FILTER, in ISCAS, 2004, vol. 2, pp. 245–248.
A. Xotta, Gerosa, A., and Neviani, A., A Programmable-Order Sigma-Delta Converter for a Multi-Standard Wireless Receiver, in WowCas, Vancouver B.C., Canada, 2004, vol. 1, pp. 33–34.
A. Bevilacqua and Niknejad, A. M., An ultra-wideband CMOS LNA for 3.1 to 10.6 GHz wireless receivers, in Digest of Technical Papers of 2004 IEEE International Solid-State Circuits Conference, 2004, pp. 382 - 533 Vol.1.
A. Bevilacqua and Niknejad, A.  M., An Ultrawideband CMOS Low-Noise Amplifier for 3.1–10.6-GHz Wireless Receivers, IEEE Journal of Solid-State Circuits, vol. 39, pp. 2259–2268, 2004.
2002
A. Xotta, Vogrig, D., Gerosa, A., Neviani, A., Graell i Amat, A., Montorsi, G., Bruccoleri, M., and Betti, G., An all-analog CMOS implementation of a turbo decoder for hard-disk drive read channels, in Circuits and Systems, 2002. ISCAS 2002. IEEE International Symposium on, 2002, vol. 5, p. V-69 - V-72 vol.5.
A. Gerosa, Bernardini, R., and Pietri, S., A Fully Integrated Chaotic System for the Generation of Truly Random Numbers, IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS I. FUNDAMENTAL THEORY AND APPLICATIONS, vol. 49, pp. 993–1000, 2002.
A. Bevilacqua and Svelto, F., Non-linear spectral analysis of direct conversion wireless receivers, in IEEE 2002 Radio and Wireless Conference, 2002, pp. 39 - 42.
2001
A. Gerosa, Novo, A., and Neviani, A., An analog front-end for the acquisition of biomedical signals, fully integrated in a 0.8 um CMOS process, in Mixed-Signal Design, 2001. SSMSD. 2001 Southwest Symposium on, 2001, pp. 152 -157.
A. Xotta, Gerosa, A., and Neviani, A., CMOS implementation of all-analogue APP decoders: analysis of performances and limitations, Electronics Letters, vol. 37, pp. 1501 -1503, 2001.
A. Gerosa, Design of Power-Optimized OTAs for SC Applications. 2001.
A. Gerosa, Bernardini, R., and Pietri, S., A fully integrated 8-bit, 20 MHz, truly random numbers generator, based on a chaotic system, in Mixed-Signal Design, 2001. SSMSD. 2001 Southwest Symposium on, 2001, pp. 87 -92.
A. Gerosa, Novo, A., Mengalli, A., and Neviani, A., A micro-power low noise log-domain amplifier for the sensing chain of a cardiac pacemaker, in Circuits and Systems, 2001. ISCAS 2001. The 2001 IEEE International Symposium on, 2001, vol. 1, pp. 296 -299 vol. 1.
A. Gerosa, Neviani, A., Xotta, A., and Mian, G. A., A novel architecture to reduce complexity in hard disk read channel based on fractionally spaced equalization, in Electronics, Circuits and Systems, 2001. ICECS 2001. The 8th IEEE International Conference on, 2001, vol. 2, pp. 1099 -1102 vol.2.
A. Gerosa, A ready-to-use design procedure for operational transconductance amplifiers that minimizes power consumption, in Electronics, Circuits and Systems, 2001. ICECS 2001. The 8th IEEE International Conference on, 2001, vol. 2, pp. 949 -952 vol.2.
A. Gerosa, RUBIN, R., and Neviani, A., A Simplified Analysis of Noise in Switched Capacitor Networks from a Circuit Design Perspective, in ECCTD, 2001, vol. 1, pp. 261–264.
A. Novo, Gerosa, A., and Neviani, A., A Sub-Micron CMOS Programmable Charge Pump for Implantable Pacemaker, ANALOG INTEGRATED CIRCUITS AND SIGNAL PROCESSING, vol. 27, pp. 211–217, 2001.
2000
A. Novo, Gerosa, A., Neviani, A., Mozzi, A., and Zanoni, E., A CMOS 0.8 um programmable charge pump for the output stage of an implantable pacemaker, in Devices, Circuits and Systems, 2000. Proceedings of the 2000 Third IEEE International Caracas Conference on, 2000, pp. 34/1 -34/5.

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