When moving into the upcoming Internet-of-Things (IoT) era, hardware security has become a very important research topic, due to the increasing demand of network-connected electronic devices. New cryptographic algorithms and hardware implementations are proposed to make the IoT ecosystem more secure, but they cannot work without good randomness. As a root-of-trust that generates randomness, a physically unclonable function (PUF) is an essential building block for hardware security. A PUF provides each electronic device a unique fingerprint originating from the random variations within an integrated circuit. The unique fingerprints are used for security applications such as entity authentication and cryptographic key generation. Ideally, the...
Physical Unclonable Functions (PUFs) have emerged as a promising primitive that can be used to provi...
Physical systems are becoming increasingly computationally powerful as faster microprocessors are in...
The Internet of Things (IoT) consists of numerous inter-connected resource-constrained devices such ...
Silicon-based Physically Unclonable Functions (PUFs) are a new type of cryptographic primitive desig...
Hardware support for security mechanisms such as authentication, cryptographic protocols, digital ri...
<p>A Physical Unclonable Function (PUF) is a die specific random function that can be used in a numb...
A Physical Unclonable Function (PUF) has shown a lot of promise to solve many security issues due to...
Physically Unclonable Functions are more and more impor-tant in the design of secure hardware, as th...
The rapid growth of small form, mobile, and remote sensor network systems require secure and ultralo...
The physical unclonable function (PUF) for generating unique bit strings has been tried using proces...
Physical Un-clonable Function (PUF) is a physical entity that provides secret key or fingerprints in...
The Physically Unclonable Function (PUF) is gaining increasing interest for its potential use as a h...
Hardware support for security mechanisms such as authentication, cryptographic protocols, digital ri...
With CMOS scaling extending transistors to nanometer regime, process variations from manufacturing i...
The Physically Unclonable Function (PUF) is gaining increasing interest for its potential use as a h...
Physical Unclonable Functions (PUFs) have emerged as a promising primitive that can be used to provi...
Physical systems are becoming increasingly computationally powerful as faster microprocessors are in...
The Internet of Things (IoT) consists of numerous inter-connected resource-constrained devices such ...
Silicon-based Physically Unclonable Functions (PUFs) are a new type of cryptographic primitive desig...
Hardware support for security mechanisms such as authentication, cryptographic protocols, digital ri...
<p>A Physical Unclonable Function (PUF) is a die specific random function that can be used in a numb...
A Physical Unclonable Function (PUF) has shown a lot of promise to solve many security issues due to...
Physically Unclonable Functions are more and more impor-tant in the design of secure hardware, as th...
The rapid growth of small form, mobile, and remote sensor network systems require secure and ultralo...
The physical unclonable function (PUF) for generating unique bit strings has been tried using proces...
Physical Un-clonable Function (PUF) is a physical entity that provides secret key or fingerprints in...
The Physically Unclonable Function (PUF) is gaining increasing interest for its potential use as a h...
Hardware support for security mechanisms such as authentication, cryptographic protocols, digital ri...
With CMOS scaling extending transistors to nanometer regime, process variations from manufacturing i...
The Physically Unclonable Function (PUF) is gaining increasing interest for its potential use as a h...
Physical Unclonable Functions (PUFs) have emerged as a promising primitive that can be used to provi...
Physical systems are becoming increasingly computationally powerful as faster microprocessors are in...
The Internet of Things (IoT) consists of numerous inter-connected resource-constrained devices such ...