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2019 | OriginalPaper | Chapter

9. CMIA for Sensor Applications

Authors : Leila Safari, Giuseppe Ferri, Shahram Minaei, Vincenzo Stornelli

Published in: Current-Mode Instrumentation Amplifiers

Publisher: Springer International Publishing

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Abstract

This chapter deals with the applications of CMIA in sensor output signal conditioning. These include, in particular, piezo-resistive, capacitive, temperature and pH sensors. Each section starts with a brief introduction on each sensor and then the CMIA circuit for signal conditioning of sensor output is analyzed. The main sources of errors in each application and the used compensation methods and techniques are also discussed.

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Literature
1.
go back to reference Kanda Y. (1991) Piezoresistance effect of silicon. Sensors and Actuators A, 28: 83–91.CrossRef Kanda Y. (1991) Piezoresistance effect of silicon. Sensors and Actuators A, 28: 83–91.CrossRef
2.
go back to reference Suhling J. C., Jaeger R. C. (2001)Silicon piezo-resistive stress sensors and their application in electronic packaging. IEEE Sensors Journal, 1(1):14–30.CrossRef Suhling J. C., Jaeger R. C. (2001)Silicon piezo-resistive stress sensors and their application in electronic packaging. IEEE Sensors Journal, 1(1):14–30.CrossRef
3.
go back to reference Hammerschmidt D., Schnatz F. V., Brockherde W., Hosticka B. J., Obermeier E. (1993) A CMOS piezo-resistive pressure sensor with on-chip programming and calibration. IEEE International Solid-State Circuits Conference Digest of Technical Papers, 128–129. Hammerschmidt D., Schnatz F. V., Brockherde W., Hosticka B. J., Obermeier E. (1993) A CMOS piezo-resistive pressure sensor with on-chip programming and calibration. IEEE International Solid-State Circuits Conference Digest of Technical Papers, 128–129.
4.
go back to reference Lee D.-W., Choi Y.-S. (2008) A novel pressure sensor with a PDMS diaphragm. Microelectronic Engineering, vol. 85, pp. 1054.CrossRef Lee D.-W., Choi Y.-S. (2008) A novel pressure sensor with a PDMS diaphragm. Microelectronic Engineering, vol. 85, pp. 1054.CrossRef
5.
go back to reference Akbar M., Shanbaltt M. (1992) Temperature compensation of piezoresistive pressure sensors. Sensor and Actuators A, 33(3):155–162.CrossRef Akbar M., Shanbaltt M. (1992) Temperature compensation of piezoresistive pressure sensors. Sensor and Actuators A, 33(3):155–162.CrossRef
6.
go back to reference Matsuno M., Adachi S., Nakayama M., Watanabe K. (1993) A bridge circuit for temperature drift cancellation. IEEE Transactions on Instrumentation and Measurement, 42(4):870–872.CrossRef Matsuno M., Adachi S., Nakayama M., Watanabe K. (1993) A bridge circuit for temperature drift cancellation. IEEE Transactions on Instrumentation and Measurement, 42(4):870–872.CrossRef
7.
go back to reference Vlassis S., Siskos S., Laopoulos T. (1999) A piezoresistive pressure sensor interfacing circuit. IEEE Instrumentation and Measurement Technology Conference, 1:303–308. Vlassis S., Siskos S., Laopoulos T. (1999) A piezoresistive pressure sensor interfacing circuit. IEEE Instrumentation and Measurement Technology Conference, 1:303–308.
8.
go back to reference Laopoulos T., Siskos S., Bafleur M., Givelin P., Tournier E. (1995) Design and applications of an easily integrable CMOS operational floating amplifier for the MegaHertz range. Analog Integrated Circuits and Signal Processing, 7:103–111.CrossRef Laopoulos T., Siskos S., Bafleur M., Givelin P., Tournier E. (1995) Design and applications of an easily integrable CMOS operational floating amplifier for the MegaHertz range. Analog Integrated Circuits and Signal Processing, 7:103–111.CrossRef
9.
go back to reference Chatterjee K., Mahato S. N., Chattopadhyay S., Daxler D. (2014) Capacitive high accuracy mass measuring system using capacitive sensor. Instruments and Experimental Techniques, 57(5):627–630.CrossRef Chatterjee K., Mahato S. N., Chattopadhyay S., Daxler D. (2014) Capacitive high accuracy mass measuring system using capacitive sensor. Instruments and Experimental Techniques, 57(5):627–630.CrossRef
10.
go back to reference Toth T. N., Meijer G. C. M. (1992) Low-cost smart capacitive sensor. IEEE Transaction on Instrumentation and Measurements, 41(6):1041–1044.CrossRef Toth T. N., Meijer G. C. M. (1992) Low-cost smart capacitive sensor. IEEE Transaction on Instrumentation and Measurements, 41(6):1041–1044.CrossRef
11.
go back to reference Baxter K. (1997) Capacitive sensors: design and applications. The Institute of Electrical and Electronics Engineers, 1–46. Baxter K. (1997) Capacitive sensors: design and applications. The Institute of Electrical and Electronics Engineers, 1–46.
12.
go back to reference Ferri G., Parente F. R., Stornelli V., Barile G., Pennazza G., Santonico M. (2016) CCII-based linear ratiometric capacitive sensing by analog read-out circuits. Lecture Notes in Electrical Engineering. Ferri G., Parente F. R., Stornelli V., Barile G., Pennazza G., Santonico M. (2016) CCII-based linear ratiometric capacitive sensing by analog read-out circuits. Lecture Notes in Electrical Engineering.
13.
go back to reference Barile G., Ferri G., Parente F. R., Stornelli V., Depari A., Flammini A., Sisinni E. (2017) Linear integrated interface for automatic differential capacitive sensing. Proceedings of Eurosensors, 2017. Barile G., Ferri G., Parente F. R., Stornelli V., Depari A., Flammini A., Sisinni E. (2017) Linear integrated interface for automatic differential capacitive sensing. Proceedings of Eurosensors, 2017.
14.
go back to reference Nobpakoon T., Pijitrojana W., Poyai A. (2013) A new method for current differential ISFET/REFET readout circuit. International Journal of Information and Electronics Engineering, 3(2):141–143. Nobpakoon T., Pijitrojana W., Poyai A. (2013) A new method for current differential ISFET/REFET readout circuit. International Journal of Information and Electronics Engineering, 3(2):141–143.
15.
go back to reference Ghallab Y. H., Badawy W., Kaler K. V. I. S. (2003) A novel pH sensor using differential ISFET current mode read-out circuit. International Conference on MEMS, NANO and Smart Systems, 2003. Ghallab Y. H., Badawy W., Kaler K. V. I. S. (2003) A novel pH sensor using differential ISFET current mode read-out circuit. International Conference on MEMS, NANO and Smart Systems, 2003.
16.
go back to reference Ghallab Y. H., Badawy W.(2004) A new differential pH sensor current mode read-out circuit using two operational floating current conveyor.IEEE International Workshop on Biomedical Circuits and Systems, 2004. Ghallab Y. H., Badawy W.(2004) A new differential pH sensor current mode read-out circuit using two operational floating current conveyor.IEEE International Workshop on Biomedical Circuits and Systems, 2004.
17.
go back to reference Voulkidou A., Siskos S., Laopoulos T. (2013) Analysis and design of a chopped current mode instrumentation amplifier. International Journal of Microelectronics and Computer Science, 4(1):6–11. Voulkidou A., Siskos S., Laopoulos T. (2013) Analysis and design of a chopped current mode instrumentation amplifier. International Journal of Microelectronics and Computer Science, 4(1):6–11.
Metadata
Title
CMIA for Sensor Applications
Authors
Leila Safari
Giuseppe Ferri
Shahram Minaei
Vincenzo Stornelli
Copyright Year
2019
DOI
https://doi.org/10.1007/978-3-030-01343-1_9