DocumentCode
1335147
Title
Modeling and optimized design of current mode MUX/XOR and D flip-flop
Author
Alioto, M. ; Palumbo, G.
Author_Institution
Dept. of Electr. & Electron. Syst., Catania Univ., Italy
Volume
47
Issue
5
fYear
2000
fDate
5/1/2000 12:00:00 AM
Firstpage
452
Lastpage
461
Abstract
This paper deals with current mode logic (CML) and, in particular, models and optimized design strategies for MUX, XOR, and D flip-flop are presented. Both simple and accurate models for propagation delay are proposed. The models represent propagation delay with a few terms, providing a better insight into the relationship between delay and its electrical parameters, which in turn are related to process parameters. The main difference between accurate and simple models is that the former need only a few SPICE simulations to properly evaluate model parameters. The simple models show errors which are always lower than 20%, while accurate models have typical errors of 2%. Design optimization is in terms of bias currents giving minimum propagation delay, and it has been demonstrated that at the cost of a 10% increase in propagation delay we can reduce power dissipation by 40%. The models and design strategies are validated using both a traditional and a high-speed bipolar process which have a transition frequency equal to 6 and 20 GHz, respectively
Keywords
bipolar logic circuits; circuit optimisation; current-mode logic; delay estimation; equivalent circuits; flip-flops; high-speed integrated circuits; logic design; logic gates; 20 GHz; 6 GHz; CML; D flip-flop; bias currents; current mode MUX; current mode XOR; current mode logic; electrical parameters; high-speed bipolar process; minimum propagation delay; model parameters evaluation; optimized design; power dissipation reduction; process parameters; propagation delay models; Circuit testing; Design optimization; Flip-flops; High speed optical techniques; Inverters; Logic circuits; Logic devices; Optical sensors; Propagation delay; Stimulated emission;
fLanguage
English
Journal_Title
Circuits and Systems II: Analog and Digital Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1057-7130
Type
jour
DOI
10.1109/82.842113
Filename
842113
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