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High Quality Test Pattern Generation and Boolean Satisfiability (Hardcover, 2012): Stephan Eggersgluss, Rolf Drechsler High Quality Test Pattern Generation and Boolean Satisfiability (Hardcover, 2012)
Stephan Eggersgluss, Rolf Drechsler
R2,795 Discovery Miles 27 950 Ships in 10 - 15 working days

This book provides an overview of automatic test pattern generation (ATPG) and introduces novel techniques to complement classical ATPG, based on Boolean Satisfiability (SAT). A fast and highly fault efficient SAT-based ATPG framework is presented which is also able to generate high-quality delay tests such as robust path delay tests, as well as tests with long propagation paths to detect small delay defects.

The aim of the techniques and methodologies presented in this book is to improve SAT-based ATPG, in order to make it applicable in industrial practice. Readers will learn to improve the performance and robustness of the overall test generation process, so that the ATPG algorithm reliably will generate test patterns for most targeted faults in acceptable run time to meet the high fault coverage demands of industry. The techniques and improvements presented in this book provide the following advantages:

Provides a comprehensive introduction to test generation and Boolean Satisfiability (SAT);Describes a highly fault efficient SAT-based ATPG framework; Introduces circuit-oriented SAT solving techniques, which make use of structural information and are able to accelerate the search process significantly;Provides SAT formulations for the prevalent delay faults models, in addition to the classical stuck-at fault model;Includes an industrial perspective on the state-of-the-art in the testing, along with SAT; two topics typically distinguished from each other.

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Test Pattern Generation using Boolean Proof Engines (Hardcover, 2009 ed.): Rolf Drechsler, Stephan Eggersgluss, Goerschwin Fey,... Test Pattern Generation using Boolean Proof Engines (Hardcover, 2009 ed.)
Rolf Drechsler, Stephan Eggersgluss, Goerschwin Fey, Daniel Tille
R2,904 Discovery Miles 29 040 Ships in 10 - 15 working days

In Test Pattern Generation using Boolean Proof Engines, we give an introduction to ATPG. The basic concept and classical ATPG algorithms are reviewed. Then, the formulation as a SAT problem is considered. As the underlying engine, modern SAT solvers and their use on circuit related problems are comprehensively discussed. Advanced techniques for SAT-based ATPG are introduced and evaluated in the context of an industrial environment. The chapters of the book cover efficient instance generation, encoding of multiple-valued logic, usage of various fault models, and detailed experiments on multi-million gate designs. The book describes the state of the art in the field, highlights research aspects, and shows directions for future work.

High Quality Test Pattern Generation and Boolean Satisfiability (Paperback, 2012 ed.): Stephan Eggersgluss, Rolf Drechsler High Quality Test Pattern Generation and Boolean Satisfiability (Paperback, 2012 ed.)
Stephan Eggersgluss, Rolf Drechsler
R3,268 Discovery Miles 32 680 Ships in 10 - 15 working days

This book provides an overview of automatic test pattern generation (ATPG) and introduces novel techniques to complement classical ATPG, based on Boolean Satisfiability (SAT). A fast and highly fault efficient SAT-based ATPG framework is presented which is also able to generate high-quality delay tests such as robust path delay tests, as well as tests with long propagation paths to detect small delay defects. The aim of the techniques and methodologies presented in this book is to improve SAT-based ATPG, in order to make it applicable in industrial practice. Readers will learn to improve the performance and robustness of the overall test generation process, so that the ATPG algorithm reliably will generate test patterns for most targeted faults in acceptable run time to meet the high fault coverage demands of industry. The techniques and improvements presented in this book provide the following advantages: Provides a comprehensive introduction to test generation and Boolean Satisfiability (SAT); Describes a highly fault efficient SAT-based ATPG framework; Introduces circuit-oriented SAT solving techniques, which make use of structural information and are able to accelerate the search process significantly; Provides SAT formulations for the prevalent delay faults models, in addition to the classical stuck-at fault model; Includes an industrial perspective on the state-of-the-art in the testing, along with SAT; two topics typically distinguished from each other.

Test Pattern Generation using Boolean Proof Engines (Paperback, Softcover reprint of hardcover 1st ed. 2009): Rolf Drechsler,... Test Pattern Generation using Boolean Proof Engines (Paperback, Softcover reprint of hardcover 1st ed. 2009)
Rolf Drechsler, Stephan Eggersgluss, Goerschwin Fey, Daniel Tille
R2,789 Discovery Miles 27 890 Ships in 10 - 15 working days

In Test Pattern Generation using Boolean Proof Engines, we give an introduction to ATPG. The basic concept and classical ATPG algorithms are reviewed. Then, the formulation as a SAT problem is considered. As the underlying engine, modern SAT solvers and their use on circuit related problems are comprehensively discussed. Advanced techniques for SAT-based ATPG are introduced and evaluated in the context of an industrial environment. The chapters of the book cover efficient instance generation, encoding of multiple-valued logic, usage of various fault models, and detailed experiments on multi-million gate designs. The book describes the state of the art in the field, highlights research aspects, and shows directions for future work.

Test digitaler Schaltkreise (German, Paperback): Stephan Eggersgluss, Goerschwin Fey, Ilia Polian Test digitaler Schaltkreise (German, Paperback)
Stephan Eggersgluss, Goerschwin Fey, Ilia Polian
R2,758 Discovery Miles 27 580 Ships in 10 - 15 working days

Eingebettete Systeme ubernehmen zentrale Steueraufgaben im taglichen Leben. In der Energieversorgung oder im Transportwesen wurde ein Ausfall der Systeme fatale Auswirkungen haben. Der Nutzer verlasst sich aber auf ein fehlerfreies Funktionieren des Systems. Die Funktionstuchtigkeit der Schaltkreise zu garantieren, ist das Ziel des Testens - und das mit geringen Kosten, da jeder Chip nach der Produktion separat getestet werden muss.

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