DocumentCode
2615609
Title
Transparent mode flip-flops for collapsible pipelines
Author
Hil, Eric L. ; Lipasti, Mikko H.
Author_Institution
Wisconsin Univ. - Madison, Madison, WI
fYear
2007
fDate
7-10 Oct. 2007
Firstpage
553
Lastpage
560
Abstract
Prior work has shown that collapsible pipelining techniques have the potential to significantly reduce clocking activity, which can consume up to 70% of the dynamic power in modern high performance microprocessors. Previous collapsible pipeline proposals either rely on single phase clocking (by forcing latches into transparent state) or do not discuss the mechanisms by which stages are merged. In this work two flip-flop designs featuring an additional transparent state suitable for collapsing stages are presented. Transparency is achieved either by decoupling the master and slave clocks to keep both latches transparent, or by using a bypass mux that routes around the flip-flop. Both of these designs are evaluated in the context of transparently gated pipelines, an ad-hoc collapsible pipelining technique. Detailed analysis shows that the decoupled clock flip-flop is the most attractive in terms of energy and delay.
Keywords
clocks; flip-flops; microprocessor chips; pipeline arithmetic; collapsible pipelining techniques; flip-flop designs; master clocks; microprocessors; slave clocks; transparent mode flip-flops; Clocks; Energy consumption; Flip-flops; Logic; Master-slave; Microprocessors; Pipeline processing; Propagation delay; Proposals; Timing;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Design, 2007. ICCD 2007. 25th International Conference on
Conference_Location
Lake Tahoe, CA
ISSN
1063-6404
Print_ISBN
978-1-4244-1257-0
Electronic_ISBN
1063-6404
Type
conf
DOI
10.1109/ICCD.2007.4601952
Filename
4601952
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