Fr. 135.00

Automatic Analog IC Sizing and Optimization Constrained with PVT Corners and Layout Effects

English · Hardback

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Description

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This book introduces readers to a variety of tools for automatic analog integrated circuit (IC) sizing and optimization. The authors provide a historical perspective on the early methods proposed to tackle automatic analog circuit sizing, with emphasis on the methodologies to size and optimize the circuit, and on the methodologies to estimate the circuit's performance. The discussion also includes robust circuit design and optimization and the most recent advances in layout-aware analog sizing approaches. The authors describe a methodology for an automatic flow for analog IC design, including details of the inputs and interfaces, multi-objective optimization techniques, and the enhancements made in the base implementation by using machine leaning techniques. The Gradient model is discussed in detail, along with the methods to include layout effects in the circuit sizing. The concepts and algorithms of all the modules are thoroughly described, enabling readers to reproduce the methodologies, improve the quality of their designs, or use them as starting point for a new tool. An extensive set of application examples is included to demonstrate the capabilities and features of the methodologies described.

List of contents

Introduction.- Previous Works on Automatic Analog IC Sizing.- AIDA-C Architecture.- Multi-Objective Optimization Kernel.- AIDA-C Circuit Sizing Results.- Layout-Aware Circuit Sizing.- AIDA-C Layout-aware Circuit Sizing Results.- Conclusions.

About the author

Nuno C.C. Lourenço is a Post-Doctoral Researcher in the Integrated Circuits group, within the Instituto de Telecomunicações in Lisbon, Portugal.

Ricardo M. F. Martins is a Post-Doctoral Researcher in the Integrated Circuits group, within the Instituto de Telecomunicações in Lisbon, Portugal.
Nuno C. G. Horta is Professor at Instituto Superior Técnico from University of Lisbon and Senior Researcher in the Integrated Circuits group, within the Instituto de Telecomunicações in Lisbon, Portugal.

Summary

This book introduces readers to a variety of tools for automatic analog integrated circuit (IC) sizing and optimization. The authors provide a historical perspective on the early methods proposed to tackle automatic analog circuit sizing, with emphasis on the methodologies to size and optimize the circuit, and on the methodologies to estimate the circuit’s performance. The discussion also includes robust circuit design and optimization and the most recent advances in layout-aware analog sizing approaches. The authors describe a methodology for an automatic flow for analog IC design, including details of the inputs and interfaces, multi-objective optimization techniques, and the enhancements made in the base implementation by using machine leaning techniques. The Gradient model is discussed in detail, along with the methods to include layout effects in the circuit sizing. The concepts and algorithms of all the modules are thoroughly described, enabling readers to reproduce the methodologies, improve the quality of their designs, or use them as starting point for a new tool. An extensive set of application examples is included to demonstrate the capabilities and features of the methodologies described.

Product details

Authors Nuno Horta, Nun Lourenço, Nuno Lourenço, Ricard Martins, Ricardo Martins
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 01.01.2016
 
EAN 9783319420363
ISBN 978-3-31-942036-3
No. of pages 182
Dimensions 168 mm x 16 mm x 241 mm
Weight 432 g
Illustrations XXVII, 182 p. 112 illus., 90 illus. in color.
Subjects Natural sciences, medicine, IT, technology > Technology > Electronics, electrical engineering, communications engineering

B, Microprocessors, engineering, Circuits and Systems, Electronics, Microelectronics, Electronics and Microelectronics, Instrumentation, Electronics engineering, Electronic circuits, Electronic Circuits and Systems, Computer architecture & logic design, Processor Architectures

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