Results 11 to 20 of about 12,243 (203)

Testing of PLL-based True Random Number Generator in Changing Working Conditions [PDF]

open access: yesRadioengineering, 2011
Security of cryptographic systems depends significantly on security of secret keys. Unpredictability of the keys is achieved by their generation by True Random Number Generators (TRNGs).
M. Simka, M. Drutarovsky, V. Fischer
doaj   +3 more sources

Low‐cost TRNG IPs [PDF]

open access: yesIET Circuits, Devices & Systems, 2020
This study presents a low‐cost multi‐throughput true random number generator (TRNG) intellectual property (IP) based on a variable‐length multi‐mode ring oscillator. The proposed TRNG implements a multi‐throughput feature by bypassing inverter cells in the ring oscillator for reducing the loop delay.
Hector Gomez, Julian Arenas, Elkim Roa
openaire   +1 more source

Building a Modern TRNG [PDF]

open access: yesProceedings of the 4th ACM Workshop on Attacks and Solutions in Hardware Security, 2020
The currently proposed RISC-V True Random Number Generator (TRNG) architecture breaks with previous ISA TRNG practice by splitting the Entropy Source (ES) component away from cryptographic PRNGs into a separate interface, and in its use of polling. We describe the interface, its use in cryptography, and offer additional discussion, background, and ...
Markku-Juhani O. Saarinen   +2 more
openaire   +1 more source

TRNGs from Pre-Formed ReRAM Arrays [PDF]

open access: yesCryptography, 2021
Schemes generating cryptographic keys from arrays of pre-formed Resistive Random Access (ReRAM) cells, called memristors, can also be used for the design of fast true random number generators (TRNG’s) of exceptional quality, while consuming low levels of electric power.
Cambou   +5 more
openaire   +2 more sources

Demonstration of Three True Random Number Generator Circuits Using Memristor Created Entropy and Commercial Off-the-Shelf Components

open access: yesEntropy, 2021
In this work, we build and test three memristor-based true random number generator (TRNG) circuits: two previously presented in the literature and one which is our own design.
Scott Stoller, Kristy A. Campbell
doaj   +1 more source

A High‐Speed True Random Number Generator Based on a CuxTe1−x Diffusive Memristor

open access: yesAdvanced Intelligent Systems, 2021
Herein, a true random number generator (TRNG) based on a CuxTe1−x diffusive memristor (DM) using its threshold switching (TS) behavior is reported. The intrinsic stochasticity of the TS behavior contributes to the randomness of the TRNG system.
Kyung Seok Woo   +5 more
doaj   +1 more source

Back to Water: Signature of Adaptive Evolution in Cetacean Mitochondrial tRNAs [PDF]

open access: yes, 2016
The mitochondrion is the power plant of the eukaryotic cell, and tRNAs are the fundamental components of its translational machinery. In the present paper, the evolution of mitochondrial tRNAs was investigated in the Cetacea, a clade of Cetartiodactyla ...
Cozzi, Bruno   +4 more
core   +7 more sources

FPGA-based Dual Core TRNG Design Using Ring and Runge-Kutta-Butcher based on Chaotic Oscillator

open access: yesChaos Theory and Applications, 2021
Despite the fact that chaotic systems do not have very complex circuit structures, interest in chaotic systems has increased considerably in recent years due to their interesting dynamic properties.
Pakize Erdoğmuş   +3 more
doaj   +1 more source

A Fully Digital True Random Number Generator With Entropy Source Based in Frequency Collapse

open access: yesIEEE Access, 2021
All cryptography systems have a True Random Number Generator (TRNG). In the process of validating, these systems are necessary for prototyping in Field Programmable Gate Array (FPGA).
Ronaldo Serrano   +7 more
doaj   +1 more source

A RRAM-Based True Random Number Generator with 2T1R Architecture for Hardware Security Applications

open access: yesMicromachines, 2023
Resistance random access memory (RRAM) based true random number generator (TRNG) has great potential to be applied to hardware security owing to its intrinsic switching variability. Especially the high resistance state (HRS) variation is usually taken as
Bo Peng   +3 more
doaj   +1 more source

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