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Titlebook: Secure Integrated Circuits and Systems; Ingrid M.R. Verbauwhede Book 2010 Springer Science+Business Media, LLC 2010 CompTIA RFID+.FPGA.FPG

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Demonstrating end point security in embedded systems a trusted path from the compact flash memory up to the pins of the VGA connector. The chapter also presents a suitable security protocol to support end-point security services, and it presents a design methodology to implement this concept.
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Modular Integer Arithmetic for Public Key Cryptographyrve Cryptography (ECC). Therefore, we briefly introduce field-based arithmetic on which most of recently established public key cryptosystems rely. As most popular fields, we give examples for architecture implementing efficient arithmetic operations over prime and binary extension fields for use in
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Introduction to Side-Channel Attacksadversaries trying to take advantage of the physical specificities of actual cryptographic devices. These implementation-specific attacks frequently turn out to be much more efficient than the best known cryptanalytic attacks against the underlying primitive seen as an idealized object. This chapter
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Secret Key Crypto Implementationsvacy based on symmetric key solutions in almost all new applications. Secret key algorithms are used in combination with modes of operation to provide different security properties. The most used modes of operation are presented in this chapter. Finally an overview of the different techniques of sof
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Hardware design for Hash functionsize the hash algorithm is one of the most important cryptographic primitives. A critical drawback of most cryptographic algorithms is the large computational overhead. This is getting more critical since the data amount to process or communicate is increasing a lot. In many cases, a proper use of th
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Random Number Generators for Integrated Circuits and FPGAsber generator. It is assumed that the attacker has no access to these a random bits. According to Kerckhoffs’ principles the security of the cryptographic scheme should not depend on the secrecy of the algorithm but rather the secrecy of the key. Hence, in many cryptographic schemes the compromise o
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Process Variations for Security: PUFser to be sure that all their devices function in the same and expected way. In this chapter, we show how process variations which make a device unique can be used to provide new, cheap and enhanced security functionality to the device. We identify physical unclonable functions (PUFs) based on proces
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