Smart and Flexible Digital-to-Analog Converters

Nonfiction, Science & Nature, Technology, Electronics, Circuits
Cover of the book Smart and Flexible Digital-to-Analog Converters by Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund, Springer Netherlands
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund ISBN: 9789400703476
Publisher: Springer Netherlands Publication: January 7, 2011
Imprint: Springer Language: English
Author: Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund
ISBN: 9789400703476
Publisher: Springer Netherlands
Publication: January 7, 2011
Imprint: Springer
Language: English

Smart and Flexible Digital-to-Analog Converters proposes new concepts and implementations for flexibility and self-correction of current-steering digital-to-analog converters (DACs) which allow the attainment of a wide range of functional and performance specifications, with a much reduced dependence on the fabrication process.

DAC linearity is analysed with respect to the accuracy of the DAC unit elements. A classification is proposed of the many different current-steering DAC correction methods. The classification reveals methods that do not yet exist in the open literature. Further, this book systematically analyses self-calibration correction methods for the various DAC mismatch errors. For instance, efficient calibration of DAC binary currents is identified as an important missing method.

This book goes on to propose a new methodology for correcting mismatch errors of both nominally identical unary as well as scaled binary DAC currents. A new concept for DAC flexibility is presented. The associated architecture is based on a modular design approach that uses parallel sub-DAC units to realize flexible design, functionality and performance.

Two main concepts, self-calibration and flexibility, are demonstrated in practice using three DAC testchips in 250nm, 180nm and 40nm standard CMOS. Smart and Flexible Digital-to-Analog Converters will be useful to both advanced professionals and newcomers in the field. Advanced professionals will find new methods that are fully elaborated from analysis at conceptual level to measurement results at test-chip level. New comers in the field will find structured knowledge of fully referenced state-of-the art methods with many fully explained novelties.<

DAC linearity is analysed with respect to the accuracy of the DAC unit elements. A classification is proposed of the many different current-steering DAC correction methods. The classification reveals methods that do not yet exist in the open literature. Further, this book systematically analyses self-calibration correction methods for the various DAC mismatch errors. For instance, efficient calibration of DAC binary currents is identified as an important missing method.

This book goes on to propose a new methodology for correcting mismatch errors of both nominally identical unary as well as scaled binary DAC currents. A new concept for DAC flexibility is presented. The associated architecture is based on a modular design approach that uses parallel sub-DAC units to realize flexible design, functionality and performance.

Two main concepts, self-calibration and flexibility, are demonstrated in practice using three DAC testchips in 250nm, 180nm and 40nm standard CMOS. Smart and Flexible Digital-to-Analog Converters will be useful to both advanced professionals and newcomers in the field. Advanced professionals will find new methods that are fully elaborated from analysis at conceptual level to measurement results at test-chip level. New comers in the field will find structured knowledge of fully referenced state-of-the art methods with many fully explained novelties.

This book goes on to propose a new methodology for correcting mismatch errors of both nominally identical unary as well as scaled binary DAC currents. A new concept for DAC flexibility is presented. The associated architecture is based on a modular design approach that uses parallel sub-DAC units to realize flexible design, functionality and performance.

Two main concepts, self-calibration and flexibility, are demonstrated in practice using three DAC testchips in 250nm, 180nm and 40nm standard CMOS. Smart and Flexible Digital-to-Analog Converters will be useful to both advanced professionals and newcomers in the field. Advanced professionals will find new methods that are fully elaborated from analysis at conceptual level to measurement results at test-chip level. New comers in the field will find structured knowledge of fully referenced state-of-the art methods with many fully explained novelties.

Two main concepts, self-calibration and flexibility, are demonstrated in practice using three DAC testchips in 250nm, 180nm and 40nm standard CMOS. Smart and Flexible Digital-to-Analog Converters will be useful to both advanced professionals and newcomers in the field. Advanced professionals will find new methods that are fully elaborated from analysis at conceptual level to measurement results at test-chip level. New comers in the field will find structured knowledge of fully referenced state-of-the art methods with many fully explained novelties.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Smart and Flexible Digital-to-Analog Converters proposes new concepts and implementations for flexibility and self-correction of current-steering digital-to-analog converters (DACs) which allow the attainment of a wide range of functional and performance specifications, with a much reduced dependence on the fabrication process.

DAC linearity is analysed with respect to the accuracy of the DAC unit elements. A classification is proposed of the many different current-steering DAC correction methods. The classification reveals methods that do not yet exist in the open literature. Further, this book systematically analyses self-calibration correction methods for the various DAC mismatch errors. For instance, efficient calibration of DAC binary currents is identified as an important missing method.

This book goes on to propose a new methodology for correcting mismatch errors of both nominally identical unary as well as scaled binary DAC currents. A new concept for DAC flexibility is presented. The associated architecture is based on a modular design approach that uses parallel sub-DAC units to realize flexible design, functionality and performance.

Two main concepts, self-calibration and flexibility, are demonstrated in practice using three DAC testchips in 250nm, 180nm and 40nm standard CMOS. Smart and Flexible Digital-to-Analog Converters will be useful to both advanced professionals and newcomers in the field. Advanced professionals will find new methods that are fully elaborated from analysis at conceptual level to measurement results at test-chip level. New comers in the field will find structured knowledge of fully referenced state-of-the art methods with many fully explained novelties.<

DAC linearity is analysed with respect to the accuracy of the DAC unit elements. A classification is proposed of the many different current-steering DAC correction methods. The classification reveals methods that do not yet exist in the open literature. Further, this book systematically analyses self-calibration correction methods for the various DAC mismatch errors. For instance, efficient calibration of DAC binary currents is identified as an important missing method.

This book goes on to propose a new methodology for correcting mismatch errors of both nominally identical unary as well as scaled binary DAC currents. A new concept for DAC flexibility is presented. The associated architecture is based on a modular design approach that uses parallel sub-DAC units to realize flexible design, functionality and performance.

Two main concepts, self-calibration and flexibility, are demonstrated in practice using three DAC testchips in 250nm, 180nm and 40nm standard CMOS. Smart and Flexible Digital-to-Analog Converters will be useful to both advanced professionals and newcomers in the field. Advanced professionals will find new methods that are fully elaborated from analysis at conceptual level to measurement results at test-chip level. New comers in the field will find structured knowledge of fully referenced state-of-the art methods with many fully explained novelties.

This book goes on to propose a new methodology for correcting mismatch errors of both nominally identical unary as well as scaled binary DAC currents. A new concept for DAC flexibility is presented. The associated architecture is based on a modular design approach that uses parallel sub-DAC units to realize flexible design, functionality and performance.

Two main concepts, self-calibration and flexibility, are demonstrated in practice using three DAC testchips in 250nm, 180nm and 40nm standard CMOS. Smart and Flexible Digital-to-Analog Converters will be useful to both advanced professionals and newcomers in the field. Advanced professionals will find new methods that are fully elaborated from analysis at conceptual level to measurement results at test-chip level. New comers in the field will find structured knowledge of fully referenced state-of-the art methods with many fully explained novelties.

Two main concepts, self-calibration and flexibility, are demonstrated in practice using three DAC testchips in 250nm, 180nm and 40nm standard CMOS. Smart and Flexible Digital-to-Analog Converters will be useful to both advanced professionals and newcomers in the field. Advanced professionals will find new methods that are fully elaborated from analysis at conceptual level to measurement results at test-chip level. New comers in the field will find structured knowledge of fully referenced state-of-the art methods with many fully explained novelties.

More books from Springer Netherlands

Cover of the book Max Scheler (1874–1928) Centennial Essays by Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund
Cover of the book Understanding Education Policy by Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund
Cover of the book Introduction to Industrial Minerals by Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund
Cover of the book Gravity, a Geometrical Course by Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund
Cover of the book Sciences in the Universities of Europe, Nineteenth and Twentieth Centuries by Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund
Cover of the book Molecular Basis of Health and Disease by Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund
Cover of the book The Transcendent Science by Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund
Cover of the book Sustainable Agriculture Volume 2 by Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund
Cover of the book Social Development by Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund
Cover of the book Mind-Body by Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund
Cover of the book Environmental Security in Watersheds: The Sea of Azov by Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund
Cover of the book The Male Factor in Human Infertility Diagnosis and Treatment by Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund
Cover of the book International Handbook of Leadership for Learning by Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund
Cover of the book Agency in Action by Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund
Cover of the book Indigenous Cognition: Functioning in Cultural Context by Georgi Radulov, Patrick Quinn, Hans Hegt, Arthur H.M. van Roermund
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy