Security Primitive Design with Nanoscale Devices
Author:
Affiliation:
1. University of Florida, Gainesville, FL, USA
2. Arizona State University, Temp, AZ, USA
3. Arizona State University, Tempe, AZ, USA
Publisher
ACM
Link
https://dl.acm.org/doi/pdf/10.1145/2902961.2903042
Reference22 articles.
1. Physical unclonable functions for device authentication and secret key generation
2. Phase Change Memory
3. Magnetoresistive Random Access Memory: The Path to Competitiveness and Scalability
4. Metal–Oxide RRAM
5. S.-S. Sheu M.-F. Chang K.-F. Lin C.-W. Wu Y.-S. Chen P.-F. Chiu C.-C. Kuo Y.-S. Yang P.-C. Chiang W.-P. Lin C.-H. Lin H.-Y. Lee P.-Y. Gu S.-M. Wang F. T. Chen K.-L. Su C.-H. Lien K.-H. Cheng H.-T. Wu T.-K. Ku M.-J. Kao and M.-J. Tsai "A 4Mb embedded SLC resistive-RAM macro with 7.2ns read-write random-access time and 160ns MLC-access capability " in IEEE International Solid-State Circuits Conference (ISSCC) 2011. S.-S. Sheu M.-F. Chang K.-F. Lin C.-W. Wu Y.-S. Chen P.-F. Chiu C.-C. Kuo Y.-S. Yang P.-C. Chiang W.-P. Lin C.-H. Lin H.-Y. Lee P.-Y. Gu S.-M. Wang F. T. Chen K.-L. Su C.-H. Lien K.-H. Cheng H.-T. Wu T.-K. Ku M.-J. Kao and M.-J. Tsai "A 4Mb embedded SLC resistive-RAM macro with 7.2ns read-write random-access time and 160ns MLC-access capability " in IEEE International Solid-State Circuits Conference (ISSCC) 2011.
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