DocumentCode
1408851
Title
Closed-Form Delay and Crosstalk Models for
On-Chip Interconnects Using a Matrix Rational Approximation
Author
Roy, Sourajeet ; Dounavis, Anestis
Author_Institution
Dept. of Electr. & Comput. Eng., Univ. of Western Ontario, London, ON, Canada
Volume
28
Issue
10
fYear
2009
Firstpage
1481
Lastpage
1492
Abstract
In this paper, a closed-form matrix rational-approximation algorithm is proposed to efficiently model the delay and crosstalk noise of coupled RLC on-chip interconnects. A key feature of the proposed algorithm is that, for any rational order, the approximation is obtained analytically in terms of predetermined coefficients and the per-unit-length parameters. As a result, the proposed method is not limited to fixed number of poles and provides a mechanism to increase the accuracy for cases when inductive effects are significant, the length of the line increases, or when the rise time of the signal becomes sharper. An error criterion is provided to select the order of approximation. The algorithm is tested for various single- and coupled-interconnect scenarios. The 50% delay and overshoot results match that of SPICE with less than 2% average error. The crosstalk results also accurately match those of SPICE with less than 4% average error.
Keywords
RLC circuits; approximation theory; circuit complexity; crosstalk; delays; integrated circuit interconnections; matrix algebra; RLC on-chip interconnects; circuit complexity; closed-form delay; closed-form matrix rational-approximation algorithm; crosstalk model; error criterion; inductive effect; Aggressor line; PadÉ approximation; coupled $RLC$ interconnects; high-speed interconnects; passivity; transient analysis; victim line;
fLanguage
English
Journal_Title
Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on
Publisher
ieee
ISSN
0278-0070
Type
jour
DOI
10.1109/TCAD.2009.2026354
Filename
5247152
Link To Document