CMOS Circuit Design for RF Sensors [electronic resource] /
CMOS Circuit Design for RF Sensors is about CMOS circuit design for sensor and actuators to be used in wireless RF systems. The main application is implantable transducers for biomedical purposes such as sensing of nerve signals and electrical stimulation of nerves. Special focus is put on the power and data link in a wireless system with transducers which are powered via the RF link. Novel principles and methods are presented for the regulation of power to the sensors and for the distribution of data and power in an implanted transducer system. One of the main problems in such systems is the transmission of power via an RF link. This problem is analyzed in detail and solutions incorporating an RF magnetic link to the transducers are identified. The theoretical results are supported by experiments from CMOS chips including a system chip for functional electrical stimulation (FES).
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Format: | Texto biblioteca |
Language: | eng |
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Boston, MA : Springer US,
2002
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Subjects: | Engineering., Electrical engineering., Electronic circuits., Circuits and Systems., Electrical Engineering., |
Online Access: | http://dx.doi.org/10.1007/b117632 |
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KOHA-OAI-TEST:2146982018-07-30T23:49:15ZCMOS Circuit Design for RF Sensors [electronic resource] / Gudnason, Gunnar. author. Bruun, Erik. author. SpringerLink (Online service) textBoston, MA : Springer US,2002.engCMOS Circuit Design for RF Sensors is about CMOS circuit design for sensor and actuators to be used in wireless RF systems. The main application is implantable transducers for biomedical purposes such as sensing of nerve signals and electrical stimulation of nerves. Special focus is put on the power and data link in a wireless system with transducers which are powered via the RF link. Novel principles and methods are presented for the regulation of power to the sensors and for the distribution of data and power in an implanted transducer system. One of the main problems in such systems is the transmission of power via an RF link. This problem is analyzed in detail and solutions incorporating an RF magnetic link to the transducers are identified. The theoretical results are supported by experiments from CMOS chips including a system chip for functional electrical stimulation (FES).Link Design -- Receivers -- Power Supply Management -- Reference Circuits -- Case Studies.CMOS Circuit Design for RF Sensors is about CMOS circuit design for sensor and actuators to be used in wireless RF systems. The main application is implantable transducers for biomedical purposes such as sensing of nerve signals and electrical stimulation of nerves. Special focus is put on the power and data link in a wireless system with transducers which are powered via the RF link. Novel principles and methods are presented for the regulation of power to the sensors and for the distribution of data and power in an implanted transducer system. One of the main problems in such systems is the transmission of power via an RF link. This problem is analyzed in detail and solutions incorporating an RF magnetic link to the transducers are identified. The theoretical results are supported by experiments from CMOS chips including a system chip for functional electrical stimulation (FES).Engineering.Electrical engineering.Electronic circuits.Engineering.Circuits and Systems.Electrical Engineering.Springer eBookshttp://dx.doi.org/10.1007/b117632URN:ISBN:9780306475283 |
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Engineering. Electrical engineering. Electronic circuits. Engineering. Circuits and Systems. Electrical Engineering. Engineering. Electrical engineering. Electronic circuits. Engineering. Circuits and Systems. Electrical Engineering. Gudnason, Gunnar. author. Bruun, Erik. author. SpringerLink (Online service) CMOS Circuit Design for RF Sensors [electronic resource] / |
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CMOS Circuit Design for RF Sensors is about CMOS circuit design for sensor and actuators to be used in wireless RF systems. The main application is implantable transducers for biomedical purposes such as sensing of nerve signals and electrical stimulation of nerves. Special focus is put on the power and data link in a wireless system with transducers which are powered via the RF link. Novel principles and methods are presented for the regulation of power to the sensors and for the distribution of data and power in an implanted transducer system. One of the main problems in such systems is the transmission of power via an RF link. This problem is analyzed in detail and solutions incorporating an RF magnetic link to the transducers are identified. The theoretical results are supported by experiments from CMOS chips including a system chip for functional electrical stimulation (FES). |
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Texto |
topic_facet |
Engineering. Electrical engineering. Electronic circuits. Engineering. Circuits and Systems. Electrical Engineering. |
author |
Gudnason, Gunnar. author. Bruun, Erik. author. SpringerLink (Online service) |
author_facet |
Gudnason, Gunnar. author. Bruun, Erik. author. SpringerLink (Online service) |
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Gudnason, Gunnar. author. |
title |
CMOS Circuit Design for RF Sensors [electronic resource] / |
title_short |
CMOS Circuit Design for RF Sensors [electronic resource] / |
title_full |
CMOS Circuit Design for RF Sensors [electronic resource] / |
title_fullStr |
CMOS Circuit Design for RF Sensors [electronic resource] / |
title_full_unstemmed |
CMOS Circuit Design for RF Sensors [electronic resource] / |
title_sort |
cmos circuit design for rf sensors [electronic resource] / |
publisher |
Boston, MA : Springer US, |
publishDate |
2002 |
url |
http://dx.doi.org/10.1007/b117632 |
work_keys_str_mv |
AT gudnasongunnarauthor cmoscircuitdesignforrfsensorselectronicresource AT bruunerikauthor cmoscircuitdesignforrfsensorselectronicresource AT springerlinkonlineservice cmoscircuitdesignforrfsensorselectronicresource |
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