Moustafa Nawito describes in detail the development process of a novel platform of Readout Integrated Circuits (ROICs), which enable the realization of miniaturized multi-parameter biomedical implants intended for long-term in-vivo monitoring. He presents new circuits and techniques for fully integrated sinusoidal generation, electrochemical impedance spectroscopy as well as on-chip measurement of pH levels, oxygen concentration and temperature. The author draws conclusions of the development process and delivers guidelines for further innovations.
Moustafa Nawito describes in detail the development process of a novel platform of Readout Integrated Circuits (ROICs), which enable the realization of miniaturized multi-parameter biomedical implants intended for long-term in-vivo monitoring. He presents new circuits and techniques for fully integrated sinusoidal generation, electrochemical impedance spectroscopy as well as on-chip measurement of pH levels, oxygen concentration and temperature. The author draws conclusions of the development process and delivers guidelines for further innovations.
Moustafa Nawito is a mixed-signal electronic chip designer at the Institut für Mikroelektronik Stuttgart (IMS CHIPS) with focus on analog circuits. His research interests include analog to digital converters, on-chip signal generation and biomedical applications.
Inhaltsangabe
The SMARTImplant Project.- Cyclic ADC with Offset Subtraction.- New Sine-Wave Generation Method.- New Synchronous Impedance Spectroscopy Method.- On-Chip Temperature Measurement.- Ultra-Thin Chip Considerations.
The SMARTImplant Project.- Cyclic ADC with Offset Subtraction.- New Sine-Wave Generation Method.- New Synchronous Impedance Spectroscopy Method.- On-Chip Temperature Measurement.- Ultra-Thin Chip Considerations.
The SMARTImplant Project.- Cyclic ADC with Offset Subtraction.- New Sine-Wave Generation Method.- New Synchronous Impedance Spectroscopy Method.- On-Chip Temperature Measurement.- Ultra-Thin Chip Considerations.
The SMARTImplant Project.- Cyclic ADC with Offset Subtraction.- New Sine-Wave Generation Method.- New Synchronous Impedance Spectroscopy Method.- On-Chip Temperature Measurement.- Ultra-Thin Chip Considerations.
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