DocumentCode
21852
Title
Highly Reliable Spin-Transfer Torque Magnetic RAM-Based Physical Unclonable Function With Multi-Response-Bits Per Cell
Author
Le Zhang ; Xuanyao Fong ; Chip-Hong Chang ; Zhi Hui Kong ; Roy, Kaushik
Author_Institution
Sch. of Electr. & Electron. Eng., Nanyang Technol. Univ., Singapore, Singapore
Volume
10
Issue
8
fYear
2015
fDate
Aug. 2015
Firstpage
1630
Lastpage
1642
Abstract
Memory-based physical unclonable function (MemPUF) has gained tremendous popularity in the recent years to securely preserve secret information in computing systems. Most MemPUFs in the literature have unreliable bit generation and/or are incapable of generating more than one response-bit per cell. Hence, we propose a novel MemPUF exploiting the unique characteristics of spin-transfer torque magnetic RAM (STT-MRAM) that can overcome these issues. Bit generation in our STT-MRAM-based MemPUF is stabilized using a novel automatic write-back technique. In addition, the alterability of the magnetic tunneling junction state is exploited to expand the response-bit capacity per cell. Our analysis demonstrated the advantage of our scheme in reliability enhancement (bit-error rate from ~10-1 to ~10-6 in the worst case under varying conditions) and response-bit capacity per cell improvement (from 1 to 1.48 bit). In comparison with the conventional MemPUFs, our approach is also better in terms of the average chip area and energy for producing a response-bit.
Keywords
MRAM devices; magnetic tunnelling; security; STT-MRAM-based MemPUF; automatic write-back technique; average chip area; bit generation; computing systems; magnetic tunneling junction; memory-based physical unclonable function; multiresponse-bits per cell; response-bit; secret information; spin-transfer torque magnetic RAM-based physical unclonable function; Computer architecture; Magnetic tunneling; Magnetization; Microprocessors; Random access memory; Reliability; Resistance; Automatic write-back; Physical Unclonable Function; Spin- Transfer Torque Magnetic RAM (STT-MRAM) MemPUF; bit alteration; physical unclonable function; spin-transfer torque magnetic RAM (STT-MRAM) MemPUF;
fLanguage
English
Journal_Title
Information Forensics and Security, IEEE Transactions on
Publisher
ieee
ISSN
1556-6013
Type
jour
DOI
10.1109/TIFS.2015.2421481
Filename
7084181
Link To Document