DocumentCode
1279314
Title
Altering transistor positions: impact on the performance and power dissipation of dynamic latches and flip-flops
Author
Mishra, S.M. ; Rofail, S.S. ; Seng, Y.K.
Author_Institution
Dev. Centre, Infineon Technol. (AP) Pte. Ltd., Singapore
Volume
146
Issue
5
fYear
1999
fDate
10/1/1999 12:00:00 AM
Firstpage
279
Lastpage
284
Abstract
Floating nodes is a point of concern in dynamic latches and flip-flops. When floating these nodes are extremely susceptible to noise: their voltage level may get distorted owing to charge coupling with other nodes. The current approach to this problem is to convert these dynamic circuits into semistatic/static ones by using feedback transistors. Increased robustness in semistatic circuits comes at the expense of decreased performance and increased power dissipation. It is demonstrated that simply altering the relative positions of transistors can protect floating nodes from some of the sources of charge coupling. The simulation results show that for a 0.8 μm process the proposed technique leads to a significant improvement in both the speed and power dissipation of the true single-phase clocking single and double edge-triggered flip-flops without compromising chip area
Keywords
CMOS logic circuits; flip-flops; integrated circuit layout; logic design; 0.8 micron; charge coupling; double edge-triggered flip-flops; dynamic flip-flops; dynamic latches; floating nodes; power dissipation; single edge-triggered flip-flops; transistor position alteration; true single-phase clocking flip-flops;
fLanguage
English
Journal_Title
Circuits, Devices and Systems, IEE Proceedings -
Publisher
iet
ISSN
1350-2409
Type
jour
DOI
10.1049/ip-cds:19990580
Filename
809345
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