CMOS Circuits for Passive Wireless Microsystems [electronic resource] / by Fei Yuan.

By: Yuan, Fei [author.]Contributor(s): SpringerLink (Online service)Material type: TextTextLanguage: English Publisher: New York, NY : Springer New York, 2011Description: XVII, 279p. 100 illus. online resourceContent type: text Media type: computer Carrier type: online resourceISBN: 9781441976802Subject(s): Engineering | Computer aided design | Systems engineering | Engineering | Circuits and Systems | Computer-Aided Engineering (CAD, CAE) and DesignAdditional physical formats: Printed edition:: No titleDDC classification: 621.3815 LOC classification: TK7888.4Online resources: Click here to access online
Contents:
Introduction to Passive Wireless Microsystems -- Fundamental Issues of Passive Wireless Microsystems -- Radio-Frequency Power Harvesting -- Modulation and Demodulation -- Ultra-Low Power Temperature-Compensated Precision References -- Clock Generation and Remote Calibration -- Ultra-Low Power Analog-to-Digital Converters.
In: Springer eBooksSummary: CMOS Circuits for Passive Wireless Microsystems By Fei Yuan This book provides a comprehensive treatment of the design principles and implementation of CMOS circuits and systems for passive wireless microsystems. Major subjects covered in the book include: passive wireless microsystems, radio-frequency power harvest, data encoding, modulators and demodulators, low-power precision voltage references, clock generation and calibration, and low-power analog-to-digital converters. This book’s contents serve as an exhaustive survey of recently published work in this fast evolving field, and are presented with an emphasis on both the design principles and in-depth comparison of the pros and cons of the designs. This book provides the state-of-the-art of CMOS circuits for passive wireless microsystems. It is an invaluable resource for graduate students, IC design engineers and researchers working in this fast-evolving field. •Systematically presents CMOS circuit implementation of passive wireless microsystems, providing both theoretical background and practical implementation examples; •Provides in-depth comparison of the pros and cons of different topologies of CMOS circuits for passive wireless microsystems; •Focuses on highly-applied topics, such as radio-frequency power harvesting, voltage multipliers, ultra-low power current and voltage references for passive wireless microsystems, low-power ASK demodulators for passive wireless microsystems, remote clock calibration of passive wireless microsystems, and low-power analog-to-digital converters.
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Introduction to Passive Wireless Microsystems -- Fundamental Issues of Passive Wireless Microsystems -- Radio-Frequency Power Harvesting -- Modulation and Demodulation -- Ultra-Low Power Temperature-Compensated Precision References -- Clock Generation and Remote Calibration -- Ultra-Low Power Analog-to-Digital Converters.

CMOS Circuits for Passive Wireless Microsystems By Fei Yuan This book provides a comprehensive treatment of the design principles and implementation of CMOS circuits and systems for passive wireless microsystems. Major subjects covered in the book include: passive wireless microsystems, radio-frequency power harvest, data encoding, modulators and demodulators, low-power precision voltage references, clock generation and calibration, and low-power analog-to-digital converters. This book’s contents serve as an exhaustive survey of recently published work in this fast evolving field, and are presented with an emphasis on both the design principles and in-depth comparison of the pros and cons of the designs. This book provides the state-of-the-art of CMOS circuits for passive wireless microsystems. It is an invaluable resource for graduate students, IC design engineers and researchers working in this fast-evolving field. •Systematically presents CMOS circuit implementation of passive wireless microsystems, providing both theoretical background and practical implementation examples; •Provides in-depth comparison of the pros and cons of different topologies of CMOS circuits for passive wireless microsystems; •Focuses on highly-applied topics, such as radio-frequency power harvesting, voltage multipliers, ultra-low power current and voltage references for passive wireless microsystems, low-power ASK demodulators for passive wireless microsystems, remote clock calibration of passive wireless microsystems, and low-power analog-to-digital converters.

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