Jordi Colomer-Farrarons Pere MIRIBEL Colomer-Farrarons A CMOS Self-Powered Front-End Architecture for Subcutaneous Event-Detector Devices

A CMOS Self-Powered Front-End Architecture for Subcutaneous Event-Detector Devices

von Jordi Colomer-Farrarons Pere MIRIBEL

Three-Electrodes Amperometric Biosensor Approach

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Beschreibung

A CMOS Self-Powered Front-End Architecture for Subcutaneous Event-Detector Devices presents the conception and prototype realization of a Self-Powered architecture for subcutaneous detector devices. The architecture is designed to work as a true/false (event detector) or threshold level alarm of some substances, ions, etc... that are detected through a three-electrodes amperometric BioSensor approach. The device is envisaged as a Low-Power subcutaneous implantable application powered by an inductive link, one emitter antenna at the external side of the skin and the receiver antenna under the skin.

The sensor is controlled with a Potentiostat circuit and then, a post-processing unit detects the desired levels and activates the transmission via a backscattering method by the inductive link. All the instrumentation, except the power module, is implemented in the so called BioChip. Following the idea of the powering link to harvest energy of the magnetic induced link at the implanted device, a Multi-Harvesting Power Chip (MHPC) has been also designed.


A CMOS Self-Powered Front-End Architecture for Subcutaneous Event-Detector Devices presents the conception and prototype realization of a Self-Powered architecture for subcutaneous detector devices. The architecture is designed to work as a true/false (event detector) or threshold level alarm of some substances, ions, etc... that are detected through a three-electrodes amperometric BioSensor approach. The device is envisaged as a Low-Power subcutaneous implantable application powered by an inductive link, one emitter antenna at the external side of the skin and the receiver antenna under the skin.

The sensor is controlled with a Potentiostat circuit and then, a post-processing unit detects the desired levels and activates the transmission via a backscattering method by the inductive link. All the instrumentation, except the power module, is implemented in the so called BioChip. Following the idea of the powering link to harvest energy of the magnetic induced link at the implanted device, a Multi-Harvesting Power Chip (MHPC) has been also designed.


Full conception for a subcutaneous device as an event-detector, which is the basis for more sophisticated systems like controlled-release drug delivery systems Focus the interest to implanted systems submitting only critical values to external control unit Whole electronically complexity architecture is presented: energy scavening, measurement-communication

Autor*in

Jordi Colomer-Farrarons

Themen in »A CMOS Self-Powered Front-End Architecture for Subcutaneous Event-Detector Devices«

Biomedical Systems Event Detector Implantable Device Low-Power Amplifiers Self-Powered Devices Wireless Devices

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Details

ISBN: 9789400799974
Verlag: Springer Netherland
Erscheinung: 16.10.2014

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