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2011 | OriginalPaper | Chapter

3. Applications

Author : Prof. Johan Huijsing

Published in: Operational Amplifiers

Publisher: Springer Netherlands

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Abstract

This chapter describes a number of general applications suitable for quantifying the requirements of universal active devices or Operational Amplifiers. The transfer of each example is described by a matrix containing, firstly, one or more nominal values, and secondly, error terms having low values. The nominal values are determined by the circuit configuration and by the gain-setting passive components in the circuit. The error terms are determined by the non-idealities of the active devices as discussed in Chap. 2.

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Literature
3.1
go back to reference J.G. Graeme et al., Operational Amplifiers Design and Applications (McGraw Hill Book Company, New York, 1971) J.G. Graeme et al., Operational Amplifiers Design and Applications (McGraw Hill Book Company, New York, 1971)
3.2
go back to reference C.D. Motchenbacher, F.C. Fitchen, Low-Noise Electronic Design (John Wiley and Sons, New York, 1973) C.D. Motchenbacher, F.C. Fitchen, Low-Noise Electronic Design (John Wiley and Sons, New York, 1973)
3.3
go back to reference J.H. Huijsing, Instrumentation amplifiers: a comparative study on behalf of monolithic integration. IEEE Trans. Instrum. Meas. IM-25, 227–231 (1976) J.H. Huijsing, Instrumentation amplifiers: a comparative study on behalf of monolithic integration. IEEE Trans. Instrum. Meas. IM-25, 227–231 (1976)
3.4
go back to reference B.J. Dool, J.H. Huijsing, Indirect current feedback instrumentation amplifier with a common-mode input range that includes the negative rail. IEEE J. Solid-St. Circ. 28(7), 743–749 (1993)CrossRef B.J. Dool, J.H. Huijsing, Indirect current feedback instrumentation amplifier with a common-mode input range that includes the negative rail. IEEE J. Solid-St. Circ. 28(7), 743–749 (1993)CrossRef
3.5
go back to reference J.D. Voorman, The gyrator as a monolithic circuit in electronic systems, Thesis, Katholieke Universiteit Nijmegen, Gema B.V., Eindhoven, June 1977 J.D. Voorman, The gyrator as a monolithic circuit in electronic systems, Thesis, Katholieke Universiteit Nijmegen, Gema B.V., Eindhoven, June 1977
3.6
go back to reference K.M. Adams, E.F.A. Deprettere, J.O. Voorman, The gyrator in electronic systems in Advances in Electronics and Electron Physics, Vol. 37 (Academic Press, Inc., San Francisco, 1975), 79–179 K.M. Adams, E.F.A. Deprettere, J.O. Voorman, The gyrator in electronic systems in Advances in Electronics and Electron Physics, Vol. 37 (Academic Press, Inc., San Francisco, 1975), 79–179
3.7
go back to reference G. Groenewold, Optimal dynamic range integrated continuous-time filters, PhD thesis, Delft University of Technology, Delft, The Netherlands, 1992 G. Groenewold, Optimal dynamic range integrated continuous-time filters, PhD thesis, Delft University of Technology, Delft, The Netherlands, 1992
Metadata
Title
Applications
Author
Prof. Johan Huijsing
Copyright Year
2011
Publisher
Springer Netherlands
DOI
https://doi.org/10.1007/978-94-007-0596-8_3