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Design Criteria for Low Distortion in Feedback Opamp Circuits

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  • © 2003

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Part of the book series: The Springer International Series in Engineering and Computer Science (SECS, volume 720)

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Table of contents (6 chapters)

Keywords

About this book

Broadband opamps for multi-channel communication systems have strong demands on linearity performance. When these opamps are integrated in deep sub-micron CMOS technologies, the signal-swing has to occupy a large part of the rather low supply voltage to maintain the signal-to-noise-ratio. To obtain opamps with low distortion it is necessary to do a thorough analysis of the nonlinear behaviour of such circuits and this is the main subject of Design Criteria for Low Distortion in Feedback Opamp Circuits.

The biasing of each transistor in the circuit is a major issue and is addressed in this work. It is important to bias the transistor such that the distortion is low and stable in the entire range of its terminal voltages. This will ensure high linearity and robustness against variations in circuit conditions such as power supply voltage, bias current and process variations.

Design Criteria for Low Distortion in Feedback Opamp Circuits is written for .

Authors and Affiliations

  • Nordic VLSI ASA, Norway

    Bjørnar Hernes, Trond Sæther

  • Norwegian University of Science and Technology, Norway

    Trond Sæther

Bibliographic Information

  • Book Title: Design Criteria for Low Distortion in Feedback Opamp Circuits

  • Authors: Bjørnar Hernes, Trond Sæther

  • Series Title: The Springer International Series in Engineering and Computer Science

  • DOI: https://doi.org/10.1007/b101858

  • Publisher: Springer New York, NY

  • eBook Packages: Springer Book Archive

  • Copyright Information: Springer Science+Business Media Dordrecht 2003

  • Hardcover ISBN: 978-1-4020-7356-4Published: 31 January 2003

  • Softcover ISBN: 978-1-4757-7756-7Published: 31 May 2013

  • eBook ISBN: 978-0-306-48013-3Published: 18 April 2006

  • Series ISSN: 0893-3405

  • Edition Number: 1

  • Number of Pages: XXV, 160

  • Topics: Circuits and Systems, Electrical Engineering

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