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This book provides readers with a comprehensive introduction to physical inspection-based approaches for electronics security. The authors explain the principles of physical inspection techniques including invasive, non-invasive and semi-invasive approaches and how they can be used for hardware assurance, from IC to PCB level. Coverage includes a wide variety of topics, from failure analysis and imaging, to testing, machine learning and automation, reverse engineering and attacks, and countermeasures. Provides the first book in the area of physical inspection and assurance for electronics security; Describes opportunities for unique countermeasures, including physical assurance and inspection of electronics, as well as physical fingerprinting based on analog parameters; Enables and categorizes a range of approaches to hardware security.
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This is the first book dedicated to hands-on hardware security training. It includes a number of modules to demonstrate attacks on hardware devices and to assess the efficacy of the countermeasure techniques. This book aims to provide a holistic hands-on training to upper-level undergraduate engineering students, graduate students, security researchers, practitioners, and industry professionals, including design engineers, security engineers, system architects, and chief security officers. All the hands-on experiments presented in this book can be implemented on readily available Field Programmable Gate Array (FPGA) development boards making it easy for academic and industry professionals to replicate the modules at low cost. This book enables readers to gain experiences on side-channel attacks, fault-injection attacks, optical probing attack, PUF, TRNGs, odometer, hardware Trojan insertion and detection, logic locking insertion and assessment, and more. Discusses attacks including side-channel, fault-injection, optical probing, PUF, TRNGs, hardware Trojans and more Provides hands-on experiments, with step-by-step description, for attacks and countermeasure mechanisms Enables design of secure, reliable, and trustworthy hardware, via hands-on experience.
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This book provides an overview of current hardware security problems and highlights how these issues can be efficiently addressed using computer-aided design (CAD) tools. Authors are from CAD developers, IP developers, SOC designers as well as SoC verification experts. Readers will gain a comprehensive understanding of SoC security vulnerabilities and how to overcome them, through an efficient combination of proactive countermeasures and a wide variety of CAD solutions. Offers techniques to protect hardware designs from a variety of vulnerabilities using CAD; Provides a comprehensive introduction to current SoC security vulnerabilities at different levels of abstraction; Discusses CAD-based approaches and their application to SoC security issues at various levels of design abstraction.
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This book provides an overview of current hardware security primitives, their design considerations, and applications. The authors provide a comprehensive introduction to a broad spectrum (digital and analog) of hardware security primitives and their applications for securing modern devices. Readers will be enabled to understand the various methods for exploiting intrinsic manufacturing and temporal variations in silicon devices to create strong security primitives and solutions. This book will benefit SoC designers and researchers in designing secure, reliable, and trustworthy hardware. Provides guidance and security engineers for protecting their hardware designs; Covers a variety digital and analog hardware security primitives and applications for securing modern devices; Helps readers understand PUF, TRNGs, silicon odometer, and cryptographic hardware design for system security.
Electronics --- Electrical engineering --- Computer architecture. Operating systems --- microprocessoren --- architectuur (informatica) --- elektrische circuits
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