DocumentCode
523628
Title
Quantifying and coping with parametric variations in 3D-stacked microarchitectures
Author
Ozdemir, Serkan ; Pan, Yan ; Das, Abhishek ; Memik, Gokhan ; Loh, Gabriel ; Choudhary, Alok
Author_Institution
Northwestern Univ., Evanston, IL, USA
fYear
2010
fDate
13-18 June 2010
Firstpage
144
Lastpage
149
Abstract
Variability in device characteristics, i.e., parametric variations, is an important problem for shrinking process technologies. They manifest themselves as variations in performance, power consumption, and reduction in reliability in the manufactured chips as well as low yield levels. Their implications on performance and yield are particularly profound on 3D architectures: a defect on even a single layer can render the entire stack useless. In this paper, we show that instead of causing increased yield losses, we can actually exploit 3D technology to reduce yield losses by intelligently devising the architectures. We take advantage of the layer-to-layer variations to reduce yield losses by splitting critical components among multiple layers. Our results indicate that our proposed method achieves a 30.6% lower yield loss rate compared to the same pipeline implemented on a 2D architecture.
Keywords
Bonding; Delay; Energy consumption; Integrated circuit interconnections; Integrated circuit reliability; Integrated circuit technology; Manufacturing; Microarchitecture; Pipelines; Stacking; 3D Integration; Cache Architectures; Process Variations; Processor Pipeline;
fLanguage
English
Publisher
ieee
Conference_Titel
Design Automation Conference (DAC), 2010 47th ACM/IEEE
Conference_Location
Anaheim, CA, USA
ISSN
0738-100X
Print_ISBN
978-1-4244-6677-1
Type
conf
Filename
5522719
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