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E-grāmata: Ultra-Low-Power Short-Range Radios

  • Formāts: PDF+DRM
  • Sērija : Integrated Circuits and Systems
  • Izdošanas datums: 21-Jul-2015
  • Izdevniecība: Springer International Publishing AG
  • Valoda: eng
  • ISBN-13: 9783319147147
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  • Formāts: PDF+DRM
  • Sērija : Integrated Circuits and Systems
  • Izdošanas datums: 21-Jul-2015
  • Izdevniecība: Springer International Publishing AG
  • Valoda: eng
  • ISBN-13: 9783319147147
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This book explores the design of ultra-low-power radio-frequency integrated circuits (RFICs), with communication distances ranging from a few centimeters to a few meters. The authors describe leading-edge techniques to achieve ultra-low-power communication over short-range links. Many different applications are covered, ranging from body-area networks to transcutaneous implant communications and smart-appliance sensor networks. Various design techniques are explained to facilitate each of these applications.
Introduction to Ultra Low Power Transceiver Design
1(24)
Dhongue Lee
Patrick P. Mercier
Channel Modeling for Wireless Body Area Networks
25(32)
David B. Smith
Leif W. Hanlen
Circuit Techniques for Ultra-Low Power Radios
57(40)
Jagdish Pandey
Brian Otis
Architectures for Ultra-Low-Power Multi-Channel Resonator-Based Wireless Transceivers
97(40)
Phillip M. Nadeau
Arun Paidimarri
Patrick P. Mercier
Anantha P. Chandrakasan
Ultra-Low Power Wake-Up Radios
137(26)
Nathan Roberts
David D. Wentzloff
Commercially Viable Ultra-Low Power Wireless
163(46)
Gangadhar Burra
Srinath Hosur
Subhashish Mukherjee
Ashish Lachhwani
Sankar Debnath
Synchronization Clocks for Ultra-Low Power Wireless Networks
209(24)
Danielle Griffith
Pulsed Ultra-Wideband Transceivers
233(48)
Patrick P. Mercier
Denis C. Daly
Fred S. Lee
David D. Wentzloff
Anantha P. Chandrakasan
Human Body Communication Transceiver for Energy Efficient BAN
281(32)
Hyungwoo Lee
Seong-Jun Song
Namjun Cho
Joonsung Bae
Hoi-Jun Yoo
Centimeter-Range Inductive Radios
313(30)
Mehdi Kiani
Maysam Ghovanloo
Near-Field Wireless Power Transfer
343(34)
Patrick P. Mercier
Anantha P. Chandrakasan
Energy Harvesting Opportunities for Low-Power Radios
377
Saurav Bandyopadhyay
Yogesh K. Ramadass
Patrick P. Mercier is an Assistant Professor at the University of California, San Diego (UCSD) in the department of Electrical and Computer Engineering. His research interests include the design of energy-efficient microsystems, focusing on the design of RF circuits, power converters and sensor interfaces for mobile electronics and biomedical applications. Prior to joining UCSD, he completed his Ph.D. degree in Electrical Engineering and Computer Science at the Massachusetts Institute of Technology (MIT) with a doctoral thesis on the topic of communication and energy-delivery architectures for personal medical devices. Prof. Mercier has received numerous awards include the IEEE International Solid-State Circuits Conference (ISSCC) Jack Kilby Award for Outstanding Student Paper, the Hellman Foundation Award, a Graduate Teaching Award, an Intel Ph.D. Fellowship, a Natural Sciences and Engineering Council of Canada (NSERC) Julie Payette and Post Graduate fellowships, amongst others. He has over 50 publications and invited presentations at venues such as ISSCC, IEEE Journal of Solid-State Circuits, and Nature Biotechnology. Prof. Mercier currently serves as the Associate Director of the Center for Wearable Sensors at UCSD and as an Associated Editor for the IEEE Journal of Biomedical Circuits and Systems.

Anantha P. Chandrakasan is the Joseph F. and Nancy P. Keithley Professor of Electrical Engineering at the Massachusetts Institute of Technology, Cambridge. He is the Head of the MIT EECS Department. He has received several awards including the 2009 Semiconductor Industry Association (SIA) University Researcher Award and the 2013 IEEE Donald O. Pederson Award in Solid-State Circuits. His research interests include micro-power digital and mixed-signal integrated circuit design, wireless microsensor system design, portable multimedia devices, energy efficient radios and emerging technologies. He has served as the Conference Chair for the IEEE International

Solid-State Circuits Conference (ISSCC) since 2010.