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Wireless Power Transfer and Data Communication for Intracranial Neural Recording Applications

AUTHOR Tre, Kerim; Maloberti, Franco; Dehollain, Catherine
PUBLISHER Springer (03/05/2021)
PRODUCT TYPE Paperback (Paperback)

Description

This book describes new circuits and systems for implantable wireless neural monitoring systems and explains the design of a batteryless, remotely-powered implantable micro-system, designed for continuous neural monitoring. Following new trends in implantable biomedical applications, the authors demonstrate a system which is capable of efficient remote powering and reliable data communication. Novel architecture and design methodologies are used for low power and small area wireless communication link. Additionally, hermetically sealed packaging and in-vivo validation of the implantable device is presented.

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Product Format
Product Details
ISBN-13: 9783030408282
ISBN-10: 3030408280
Binding: Paperback or Softback (Trade Paperback (Us))
Content Language: English
More Product Details
Page Count: 112
Carton Quantity: 62
Product Dimensions: 6.14 x 0.27 x 9.21 inches
Weight: 0.41 pound(s)
Feature Codes: Illustrated
Country of Origin: NL
Subject Information
BISAC Categories
Technology & Engineering | Electronics - Circuits - General
Technology & Engineering | Electrical
Technology & Engineering | Cybernetics
Descriptions, Reviews, Etc.
jacket back
This book describes new circuits and systems for implantable wireless neural monitoring systems and explains the design of a batteryless, remotely-powered implantable micro-system, designed for continuous neural monitoring. Following new trends in implantable biomedical applications, the authors demonstrate a system which is capable of efficient remote powering and reliable data communication. Novel architecture and design methodologies are used for low power and small area wireless communication link. Additionally, hermetically sealed packaging and in-vivo validation of the implantable device is presented.

  • Provides up-to-date summaries of remote powering and wireless communication methods;
  • Describes methods for improving the efficiency of remote powering and wireless communication;
  • Includes a new topology for an energy and area efficiency ultrawideband transmitter;
  • Provides in-vivo validation of the proposed circuits.

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publisher marketing

This book describes new circuits and systems for implantable wireless neural monitoring systems and explains the design of a batteryless, remotely-powered implantable micro-system, designed for continuous neural monitoring. Following new trends in implantable biomedical applications, the authors demonstrate a system which is capable of efficient remote powering and reliable data communication. Novel architecture and design methodologies are used for low power and small area wireless communication link. Additionally, hermetically sealed packaging and in-vivo validation of the implantable device is presented.

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Paperback