Selected Publications*

    2008

  1. J. Holleman, D. Yeager, R. Prasad, J. Smith, and B. Otis, "Neural WISP: An energy harvesting wireless brain interface with 1m range," IEEE Biological Circuits and Systems (BioCAS) Conference, November 2008.
  2. Jeremy Holleman, Apurva Mishra, Chris Diorio, and Brian Otis, "A Micro-Power Neural Spike Detector and Feature Extractor in .13um CMOS," IEEE Custom Integrated Circuits Conference (CICC), September 2008.
  3. J. Hu and B. Otis, "A 3uW, 400 MHz Divide-by-5 Injection-Locked Frequency Divider with 56% Lock Range in 90nm CMOS," IEEE Radio Frequency Integrated Circuit (RFIC) Symposium, June 2008.
  4. J. Holleman, S. Bridges, B. Otis, C. Diorio, ``A 3uW CMOS True Random Number Generator with Adaptive Floating-Gate Offset Cancellation,'' IEEE Journal of Solid State Circuits, May 2008.
  5. Shailesh Rai, Brian Otis, "A 600 uW BAW-Tuned Quadrature VCO Using Source Degenerated Coupling", IEEE Journal of Solid State Circuits, Vol 43, No. 1, pp.300-305, January 2008.
  6. Ying Su, Jeremy Holleman, Brian Otis, "A Digital 1.6 pJ/bit Chip Identification Circuit Using Process Variations", IEEE Journal of Solid State Circuits, Vol 43, No. 1, pp. 69-77, January 2008.
  7. 2007

  8. B. Otis, S. Gambini, R. Shah, D. Steingart, E. Quevy, J. Rabaey, A. Sangiovanni-Vincentelli, and P. Wright, "Modeling and Simulation Techniques for Highly Integrated, Low Power Wireless Sensor Networks", Journal of Computers & Digital Techniques, IET , vol.1, no.5, pp.528-536, Sept. 2007.
  9. Robert Egbert, Matt Harvey, Brian Otis, "Microscale Silicon Thermoelectric Generator with Low Impedance for Energy Harvesting," Proc. 5th European Conference on Thermoelectrics , Odessa, Ukraine, Sept 2007, pp. 219-221.
  10. Jeremy Holleman and Brian Otis, "A Sub-Microwatt Low-Noise Amplifier for Neural Recording", Conference of the IEEE Engineering in Medicine and Biology Society (EMBC) 2007.
  11. Jeremy Holleman, Chris Diorio, and Brian Otis, "A Compact Pulse-Based Charge Pump in 0.13um CMOS", IEEE Custom Integrated Circuits Conference (CICC) 2007.
  12. Shailesh Rai and Brian Otis, "A 1V 600uW 2.1GHz Quadrature VCO Using BAW Resonators", IEEE International Solid-State Circuits Conference (ISSCC) 2007.
  13. Y. Su, J. Holleman, B. Otis "A 1.6pJ/bit 96% Stable Chip ID Generating Circuit using Process Variations", IEEE International Solid-State Circuits Conference (ISSCC) 2007.
  14. B. Otis and J. Rabaey, "Ultra-low Power Wireless Technologies for Sensor Networks", Springer-Verlag, 2007.
  15. 2006

  16. B. Otis, N. Pletcher, S. Rai, and J. Rabaey, "Low Power Techniques for Wireless Sensing" Chapter in: Advances in Analog Circuit Design. Springer Press, Nov 2006.
  17. J. Rabaey, J. Ammer, B. Otis, F. Burghardt, Y.H. Chee, N. Pletcher, M. Sheets, H. Qin, "Ultra-low-power design," IEEE Circuits and Devices Magazine, July-Aug. 2006.
  18. J. Holleman, B. Otis, S. Bridges, A. Mitros, and C. Diorio, "A 2.92 uW hardware random number generator," IEEE Proceedings of the 32nd European Solid-State Circuits Conference (ESSCIRC), 2006.
  19. B. Liu, B. Otis, S. Challa, P. Axon, C. Chou, and S. Jha, "On the Fading and Shadowing Effects for Wireless Sensor Networks," IEEE International Mobile Ad-Hoc and Sensor Systems (MASS), 2006.
  20. B. Otis, M. Sheets, Y.H. Chee, H. Qin, N. Pletcher, and J. Rabaey, "Circuits and Technologies for Wireless Sensor Networks," Chapter in: Hardware Technology Drivers of Ambient Intelligence. Kluwer Press, Feb 2006.
  21. 2005

  22. Y. Li, F. De Bernardinis, B. Otis, J.M. Rabaey, and A. Sangiovanni Vincentelli, "A Low-Power Mixed- Signal Baseband System Design for Wireless Sensor Networks", Proceedings of the IEEE CICC, Sept 2005.
  23. S. Roundy, E. Leland, J. Baker, E. Carleton, E. Reilly, E. Lai, B. Otis, J. Rabaey, V. Sundararajan and P.K. Wright, "Improving Power Output for Vibration-Based Energy Scavengers", IEEE Pervasive Computing Journal on Mobile and Ubiquitous Computing, Volume 4 , Number 1, January - March 2005, pp. 28-36.
  24. B. Otis, Y.H. Chee, J. Rabaey, "A 400uW Rx, 1.6mW Tx Super-regenerative transceiver for Wireless Sensor Networks", IEEE International Solid-State Circuits Conference (ISSCC), San Francisco, CA, Feb 2005.
  25. 2004

  26. B. Otis, Y.H. Chee, R. Lu, N.Pletcher, J. Rabaey, "An Ultra-Low Power MEMS-Based Two-Channel Transceiver for Wireless Sensor Networks", Symposium on VLSI Circuits, Honolulu, HI, June 2004.
  27. B. Otis, J. Rabaey, Y.H. Chee, R. Lu, N. Pletcher, S. Gambini, "Highly Integrated Ultra-Low Power RF Transceivers for Wireless Sensor Networks", CRC Press, 2004.
  28. M. Sheets, B. Otis, F. Burghardt, J. Ammer, T. Karalar, P. Monat, and J. Rabaey, "A (6x3)cm2 Self-Contained Energy-Scavenging Wireless Sensor Network Node," Wireless Personal Multimedia Communications (WPMC) 2004, Abano Terme, Italy.
  29. 2003

  30. S. Roundy, B. Otis, Y.H. Chee, J. Rabaey, P. Wright, "A 1.9GHz RF Transmit Beacon using Environmentally Scavenged Energy", Dig. IEEE Int. Symposium on Low Power Elec. and Devices (ISLPED), Seoul, Korea, 2003.
  31. B. Otis, J. Rabaey, "A 300uW 1.9GHz CMOS Oscillator Utilizing Micromachined Resonators", IEEE Journal of Solid State Circuits, Vol 38, pp. 1271-1274, July, 2003.
  32. 2002

  33. B. Otis, J. Rabaey, "A 300uW 1.9GHz CMOS Oscillator Utilizing Micromachined Resonators", Proceedings of the European Solid State Circuits Conference (ESSCIRC), Florence, Italy, September 2002.
  34. J. Rabaey, J. Ammer, T. Karalar, S. Li, B. Otis, M. Sheets, T. Tuan, "PicoRadios for Wireless Sensor Networks: The Next Challenge in Ultra-Low-Power Design", Proceedings of the International Solid-State Circuits Conference (ISSCC), San Francisco, CA, February 3-7, 2002.
  35. Tremblay K., Kraus N., McGee T., Ponton C. and Otis B. "Central Auditory Plasticity: Changes in the N1-P2 complex following speech-sound training", Ear and Hearing. 22:2, 79-90, 2001
  36. *This material is presented to ensure timely dissemination of scholarly and technical work. Copyright and all rights therein are retained by authors or by other copyright holders. All persons copying this information are expected to adhere to the terms and constraints invoked by each author's copyright. In most cases, these works may not be reposted without the explicit permission of the copyright holder. Personal use of this material is permitted. However, permission to reprint/republish this material for advertising or promotional purposes or for creating new collective works for resale or redistribution to servers or lists, or to reuse any copyrighted component of this work in other works must be obtained from the IEEE.