Ultra Low Power Capacitive Sensor Interfaces - Bracke, Wouter;Puers, Robert;Van Hoof, Chris
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Ultra Low Power Capacitive Sensor Interfaces describes the design and theory of ultra low power capacitive sensor interfaces. The book s major asset is the realization of a very low power generic sensor interface chip, that is adaptable to a broad range of capacitive sensors. The book starts with an overview on the most important design aspects for autonomous sensor systems. The different building blocks are discussed and the modular architecture for the generic sensor interface chip is presented. Furthermore, the design of the analog components, such as capacitance-to-voltage converters,…mehr

Produktbeschreibung
Ultra Low Power Capacitive Sensor Interfaces describes the design and theory of ultra low power capacitive sensor interfaces. The book s major asset is the realization of a very low power generic sensor interface chip, that is adaptable to a broad range of capacitive sensors.
The book starts with an overview on the most important design aspects for autonomous sensor systems. The different building blocks are discussed and the modular architecture for the generic sensor interface chip is presented. Furthermore, the design of the analog components, such as capacitance-to-voltage converters, switched capacitor amplifier, Sigma Delta modulator, oscillators and reference circuits, is described in more detail. Finally, the generic sensor interface chip is applied in several state-of-the-art pressure sensor and accelerometer applications. Ultra Low Power Capacitive Sensor Interfaces is essential reading for anybody with an academic or professional interest in semiconductor design.
  • Produktdetails
  • Analog Circuits and Signal Processing
  • Verlag: Springer / Springer Netherlands
  • Artikelnr. des Verlages: 11976288
  • 2007
  • Erscheinungstermin: 12. Juli 2007
  • Englisch
  • Abmessung: 243mm x 167mm x 15mm
  • Gewicht: 345g
  • ISBN-13: 9781402062315
  • ISBN-10: 1402062311
  • Artikelnr.: 22818435
Autorenporträt
Wouter Bracke, Katholieke Universiteit Leuven, Belgium / Robert Puers, Katholieke Universiteit Leuven, Belgium / Chris Van Hoof, Imec vzw, Belgium
Inhaltsangabe
Foreword. 1 Introduction. 2 Generic architectures for autonomous sensors. 2.1 Introduction. 2.2 Multisensor microsystem. 2.3 Modular design methodology. 2.4 Conclusion. 3 Generic Sensor Interface Chip. 3.1 Introduction. 3.2 Capacitive sensors. 3.3 GSIC for capacitive sensors. 3.4 Configuration settings. 3.5 Noise. 3.6 Experimental results. 3.7 Performance comparison. 3.8 Conclusion. 4 Algorithm for optimal configuration settings. 4.1 Introduction. 4.2 Programmability. 4.3 Optimal settings. 4.4 Results. 4.5 Conclusion. 5 Physical activity monitoring system. 5.1 Introduction. 5.2 Background and motivation. 5.3 Implementation. 5.4 Conclusion. 6 Conclusion. 6.1 Realized developments. 6.2 Suggestions for future work. References. Index.