DocumentCode
1330629
Title
Performance, Power, and Reliability Tradeoffs of STT-RAM Cell Subject to Architecture-Level Requirement
Author
Hai Li ; Xiaobin Wang ; Zhong-Liang Ong ; Weng-Fai Wong ; Yaojun Zhang ; Peiyuan Wang ; Yiran Chen
Author_Institution
Dept. of Electr. & Comput. Eng., Polytech. Inst. of New York Univ., Brooklyn, NY, USA
Volume
47
Issue
10
fYear
2011
Firstpage
2356
Lastpage
2359
Abstract
Large switching current and long switching time have significantly limited the adoption of spin-transfer torque random access memory (STT-RAM). Technology scaling, moreover, makes it very challenging to reduce the switching current while maintaining the reliability of magnetic tunneling junction (MTJ) to be similar to that of the earlier generations. In this work, we shall exploit a key insight that in the most on-chip caches where STT-RAM is most likely to be deployed, the lifespan of the data stored in the memory cells is much shorter than the data retention time requirement assumed in STT-RAM development, namely, 4~10 years. We also quantitatively investigated the possibility of trading off MTJ nonvolatility for improved switching performance, e.g., the switching time and/or current, under architectural level guidance. We further proposed and evaluated a hybrid memory design technique that partitions the on-chip STT-RAM cache into two parts with different nonvolatility performances so as to better fit the diverse retention time requirements of different data sets.
Keywords
integrated circuit reliability; magnetic tunnelling; random-access storage; torque; MTJ reliability; STT-RAM cell; architectural level guidance; architecture-level requirement; data retention time requirement; diverse retention time requirement; hybrid memory design technique; magnetic tunneling junction reliability; spin-transfer torque random access memory cell; switching current; switching time; technology scaling; Computer architecture; Magnetic tunneling; Magnetization; Switches; System-on-a-chip; Thermal stability; Torque; MRAM; nonvolatility; spin-torque; spintronic;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/TMAG.2011.2159262
Filename
6027811
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