Title
A high-level compact pattern-dependent delay model for high-speed point-to-point interconnects
Abstract
This work introduces an extended linear pattern-dependent model for high-level signal delay estimation in high-speed very deep submicron point-to-point interconnects. The proposed model accurately predicts the delay in both inductively and capacitively coupled lines for the complete set of the switching patterns and not only for capacitively coupled lines or worst-case delay as in previous works. We also consider process variations in the formulation of the model and propose a moment-based approach for the inclusion of variations. The accuracy of the model has been assessed by means of extensive experiments. Moreover, we show how the model can be applied at high levels of abstraction in order to explore coding-based alternatives to improve throughput.
Year
DOI
Venue
2006
10.1145/1233501.1233565
ICCAD
Keywords
Field
DocType
extended linear pattern-dependent model,high-level compact pattern-dependent delay,complete set,coding-based alternative,moment-based approach,extensive experiment,deep submicron point-to-point interconnects,worst-case delay,high level,high-speed point-to-point interconnects,high-level signal delay estimation,process variation,system on chip,signal processing,formal methods,point to point
Signal processing,Abstraction,System on a chip,Computer science,Real-time computing,Electronic engineering,Coding (social sciences),Compact Pattern,Formal methods,Throughput,Point-to-point
Conference
ISBN
Citations 
PageRank 
1-59593-389-1
1
0.37
References 
Authors
13
4
Name
Order
Citations
PageRank
Tudor Murgan1499.74
Massoud Momeni251.88
Alberto García-Ortiz36619.23
Manfred Glesner41121255.04