Results 101 to 110 of about 254 (128)
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True Random Number Generator (TRNG) for Secure Communications in the Era of IoT
2020 China Semiconductor Technology International Conference (CSTIC), 2020True Random number Generator (TRNG) is critical for secure communications. In this work, we explain in details regarding our recent solution on TRNG using random telegraph noise (RTN) including the benefits and the disadvantages. Security check is performed using the NIST randomness tests for both the RTN-based TRNG and various conventional pseudo ...
, Zhigang Ji
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2021 8th International Conference on Smart Computing and Communications (ICSCC), 2021
In the hostile environment, use of pseudo-random numbers in encryption algorithm has become difficult due to increased computing power of attackers. To overcome from the hackers true random number generator solving by giving unique random sequence. Authors recommend based on experiment to add parameters dependencies of analog Phase-Locked Loop (PLL ...
Dinesh Padole
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In the hostile environment, use of pseudo-random numbers in encryption algorithm has become difficult due to increased computing power of attackers. To overcome from the hackers true random number generator solving by giving unique random sequence. Authors recommend based on experiment to add parameters dependencies of analog Phase-Locked Loop (PLL ...
Dinesh Padole
exaly +2 more sources
2017 IEEE 47th International Symposium on Multiple-Valued Logic (ISMVL), 2017
True random number generators (TRNGs) are important hardware primitives required for many applications including cryptography, communication, and statistical simulation. This paper presents a TRNG with failure detection capability targeting cryptographic applications with a limited power budget. The proposed TRNG extracts entropy from latch comparators,
Elena Dubrova, Sha Tao
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True random number generators (TRNGs) are important hardware primitives required for many applications including cryptography, communication, and statistical simulation. This paper presents a TRNG with failure detection capability targeting cryptographic applications with a limited power budget. The proposed TRNG extracts entropy from latch comparators,
Elena Dubrova, Sha Tao
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2019 IEEE International Electron Devices Meeting (IEDM), 2019
For the first time, we use a unique feature of S/D variation of FinFET to realize PUF (Physical unclonable function) and TRNG (True random number generator). With the scaling of transistors, S/D variation becomes significant. This provides an opportunity to use the mismatch of the S/D resistances for the design of PUF.
Steve Chung, E R Hsieh
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For the first time, we use a unique feature of S/D variation of FinFET to realize PUF (Physical unclonable function) and TRNG (True random number generator). With the scaling of transistors, S/D variation becomes significant. This provides an opportunity to use the mismatch of the S/D resistances for the design of PUF.
Steve Chung, E R Hsieh
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True Random Number Generator (TRNG) Using Sensors for Low Cost IoT Applications
2022 International Conference on Communication, Computing and Internet of Things (IC3IoT), 2022Uzma Ansari +2 more
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Enhanced True Random Number Generator (TRNG) using Sensors for IoT Security Applications
2022 Third International Conference on Intelligent Computing Instrumentation and Control Technologies (ICICICT), 2022Uzma Ansari +2 more
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Proceedings of the 51st Annual Design Automation Conference, 2014
True random number generators (TRNGs) are needed for a variety of security applications and protocols. The quality (randomness) of TRNGs depends on sensitivity to random noise, environmental conditions, and aging. Random sources of noise improve TRNG quality.
Md. Tauhidur Rahman 0001 +5 more
openaire +1 more source
True random number generators (TRNGs) are needed for a variety of security applications and protocols. The quality (randomness) of TRNGs depends on sensitivity to random noise, environmental conditions, and aging. Random sources of noise improve TRNG quality.
Md. Tauhidur Rahman 0001 +5 more
openaire +1 more source

