DocumentCode
1953889
Title
Design for variability in DSM technologies [deep submicron technologies]
Author
Nassif, Sani R.
Author_Institution
IBM Austin Res. Lab., TX, USA
fYear
2000
fDate
2000
Firstpage
451
Lastpage
454
Abstract
Process-induced parameter variations cause performance fluctuations and are an important consideration in the design of high performance digital ICs. Until recently, it was sufficient to model die-to-die shifts in device (active) and wire (passive) parameters, leading to a natural worst-case design methodology. In the deep-submicron era, however, within-die variations in these same device and wire parameters become just as important. In fact, current integrated circuits are large enough that variations within the die are as large as variations from die-to-die. Furthermore, while die-to-die shifts are substantially independent of the design, within-die variations are profoundly influenced by the detailed physical implementation of the IC. This changes the fundamental view of process variability from something that is imposed on the design by the fabrication process to something that is co-generated between the design and the process. This paper starts by examining the sources and historical trends in device and wire variability, distinguishing between inter-die and intra-die variations, and proposes techniques for design for variability (DOV) in the presence of both types of variations
Keywords
VLSI; digital integrated circuits; integrated circuit design; deep submicron technologies; design for variability; device parameters; device variability; die-to-die shifts; high performance digital ICs; integrated circuits; inter-die variations; intra-die variations; performance fluctuations; process variability; process-induced parameter variations; wire parameters; wire variability; within-die variations; Bismuth;
fLanguage
English
Publisher
ieee
Conference_Titel
Quality Electronic Design, 2000. ISQED 2000. Proceedings. IEEE 2000 First International Symposium on
Conference_Location
San Jose, CA
Print_ISBN
0-7695-0525-2
Type
conf
DOI
10.1109/ISQED.2000.838919
Filename
838919
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