DocumentCode
3193614
Title
Hierarchical Soft Error Estimation Tool (HSEET)
Author
Ramakrishnan, K. ; Rajaraman, R. ; Vijaykrishnan, N. ; Xie, Y. ; Irwin, M.J. ; Unlu, K.
Author_Institution
Dept. of Comput. Sci. &Eng., University Park
fYear
2008
fDate
17-19 March 2008
Firstpage
680
Lastpage
683
Abstract
Radiation induced soft errors have become an important reliability concern in the sub-nanometer regime. Therefore, it is imperative to devise methods to predict the soft error rates (SER) quickly and accurately in combinational circuits. In this paper, we present a novel technique and a tool to compute the SERs of designs employing hierarchical architectures such as adders and multipliers. The technique uses pre-characterized blocks for current generation and propagation and probability theory to estimate the SER in hierarchical architectures. The analysis results of different hierarchical architectures, based on characterization of basic blocks such as muxes, counters and partial product generators using the new technique, are presented in this paper. The run time for most of the designs were in the order of few minutes and we obtain an average speedup of 14084X times over HSPICE and 12.25X times over a contemporary tool SEAT-LA. We have also demonstrated the scalability of our technique for various hierarchical circuits. Our technique can also be extended to any block based architecture.
Keywords
adders; combinational circuits; integrated circuit design; integrated circuit reliability; logic design; multiplying circuits; probability; radiation effects; transients; HSPICE; SEAT-LA tool; adders; combinational circuits; current generation; current propagation; hierarchical architecture design; hierarchical architectures; hierarchical circuits; hierarchical soft error rate estimation tool; multipliers; partial product generators; probability theory; radiation induced soft errors; reliability issues; transient faults; Adders; Combinational circuits; Computer architecture; Design engineering; Error analysis; Logic circuits; P-n junctions; Pulse circuits; Reliability engineering; Voltage; Combinational Logic; Flip-Flop; Reliability; Soft Errors;
fLanguage
English
Publisher
ieee
Conference_Titel
Quality Electronic Design, 2008. ISQED 2008. 9th International Symposium on
Conference_Location
San Jose, CA
Print_ISBN
978-0-7695-3117-5
Type
conf
DOI
10.1109/ISQED.2008.4479819
Filename
4479819
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