Ultra Low Power Bioelectronics

Fundamentals, Biomedical Applications, and Bio-Inspired Systems

Nonfiction, Science & Nature, Technology, Electronics, Circuits
Cover of the book Ultra Low Power Bioelectronics by Rahul Sarpeshkar, Cambridge University Press
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Rahul Sarpeshkar ISBN: 9780511861789
Publisher: Cambridge University Press Publication: February 22, 2010
Imprint: Cambridge University Press Language: English
Author: Rahul Sarpeshkar
ISBN: 9780511861789
Publisher: Cambridge University Press
Publication: February 22, 2010
Imprint: Cambridge University Press
Language: English

This book provides, for the first time, a broad and deep treatment of the fields of both ultra low power electronics and bioelectronics. It discusses fundamental principles and circuits for ultra low power electronic design and their applications in biomedical systems. It also discusses how ultra energy efficient cellular and neural systems in biology can inspire revolutionary low power architectures in mixed-signal and RF electronics. The book presents a unique, unifying view of ultra low power analog and digital electronics and emphasizes the use of the ultra energy efficient subthreshold regime of transistor operation in both. Chapters on batteries, energy harvesting, and the future of energy provide an understanding of fundamental relationships between energy use and energy generation at small scales and at large scales. A wealth of insights and examples from brain implants, cochlear implants, bio-molecular sensing, cardiac devices, and bio-inspired systems make the book useful and engaging for students and practicing engineers.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This book provides, for the first time, a broad and deep treatment of the fields of both ultra low power electronics and bioelectronics. It discusses fundamental principles and circuits for ultra low power electronic design and their applications in biomedical systems. It also discusses how ultra energy efficient cellular and neural systems in biology can inspire revolutionary low power architectures in mixed-signal and RF electronics. The book presents a unique, unifying view of ultra low power analog and digital electronics and emphasizes the use of the ultra energy efficient subthreshold regime of transistor operation in both. Chapters on batteries, energy harvesting, and the future of energy provide an understanding of fundamental relationships between energy use and energy generation at small scales and at large scales. A wealth of insights and examples from brain implants, cochlear implants, bio-molecular sensing, cardiac devices, and bio-inspired systems make the book useful and engaging for students and practicing engineers.

More books from Cambridge University Press

Cover of the book Understanding Language through Humor by Rahul Sarpeshkar
Cover of the book Applied Computational Aerodynamics by Rahul Sarpeshkar
Cover of the book The Prescriber's Guide: Antidepressants by Rahul Sarpeshkar
Cover of the book The Global Regime for the Enforcement of Intellectual Property Rights by Rahul Sarpeshkar
Cover of the book Russia and the West from Alexander to Putin by Rahul Sarpeshkar
Cover of the book Law, Religion, and Health in the United States by Rahul Sarpeshkar
Cover of the book America's West by Rahul Sarpeshkar
Cover of the book Oil in the Environment by Rahul Sarpeshkar
Cover of the book Place Matters by Rahul Sarpeshkar
Cover of the book Joining Hitler's Crusade by Rahul Sarpeshkar
Cover of the book The Self-Potential Method by Rahul Sarpeshkar
Cover of the book Fourier Analysis: Volume 1, Theory by Rahul Sarpeshkar
Cover of the book Gadamer and the Legacy of German Idealism by Rahul Sarpeshkar
Cover of the book Long-Vowel Shifts in English, c. 1050–1700 by Rahul Sarpeshkar
Cover of the book Advanced Quantum Mechanics by Rahul Sarpeshkar
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy