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Physical Unclonable Functions in Theory and Practice

Christoph Böhm Maximilian Hofer

$251.95   $201.58

Hardback

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English
Springer-Verlag New York Inc.
16 October 2012
In Physical Unclonable Functions in Theory and Practice, the authors present an in-depth overview of various topics concerning PUFs, providing theoretical background and application details. This book concentrates on the practical issues of PUF hardware design, focusing on dedicated microelectronic PUF circuits.

Additionally, the authors discuss the whole process of circuit design, layout and chip verification. The book also offers coverage of:

Different published approaches focusing on dedicated microelectronic PUF circuits

Specification of PUF circuits

General design issues

Minimizing error rate from the circuit’s perspective

Transistor modeling issues of Montecarlo mismatch simulation and solutions

Examples of PUF circuits including an accurate description of the circuits and testing/measurement results  Different error rate reducing pre-selection techniques

This monograph gives insight into PUFs in general and provides knowledge in the field of PUF circuit design and implementation. It could be of interest for all circuit designers confronted with PUF design, and also for professionals and students being introduced to the topic.
By:   ,
Imprint:   Springer-Verlag New York Inc.
Country of Publication:   United States
Edition:   2013 ed.
Dimensions:   Height: 235mm,  Width: 155mm,  Spine: 23mm
Weight:   5.561kg
ISBN:   9781461450399
ISBN 10:   146145039X
Pages:   270
Publication Date:  
Audience:   College/higher education ,  Further / Higher Education
Format:   Hardback
Publisher's Status:   Active
Introduction.- Use Cases.- The Basic Applications.- Testing and Specification of PUFs.- Error Correction Codes.- Sources of Mismatch and Errors.- Refine Models for PUF Simulation Requirements.- Pre-Processing.- Parallelization of PUF Cells.- Pre-Selection.- PUF Biasing.- Two Stage PUF.- PUF with Shared Sense Amplifier.- PUF with Pre-Selection.- Using the SRAM of a Microcontroller as a PUF.- Conclusion.

See Also