DocumentCode
3162896
Title
A moment matching based methodology for crosstalk analysis
Author
Pandini, Davide ; Guardiani, Carlo ; Gubian, Paolo
Author_Institution
SGS-Thomson Microelectron., Agrate Brianza, Italy
fYear
1996
fDate
23-27 Sep 1996
Firstpage
67
Lastpage
71
Abstract
A new fast and accurate methodology for the crosstalk analysis of large VLSI IC interconnects is presented. The proposed approach finds a reduced order approximation of the original interconnect network using an extended moment matching technique. Subsequently, an analytical model of the crosstalk voltage in the time domain is obtained, and a compact model for the crosstalk peak amplitude is derived. This model is implemented at behavioral level by a hardware description language and can be used to accurately evaluate the crosstalk effects in signal integrity analysis of large digital circuits. Moreover, it can be used in performance-driven routers in order to account for crosstalk impact. The effectiveness of the proposed method is demonstrated by application examples
Keywords
VLSI; approximation theory; circuit analysis computing; crosstalk; digital integrated circuits; integrated circuit interconnections; integrated circuit modelling; network routing; time-domain analysis; VLSI IC interconnects; analytical model; behavioral level; compact model; crosstalk analysis; crosstalk peak amplitude; crosstalk voltage; hardware description language; large digital circuits; moment matching based methodology; performance-driven routers; signal integrity analysis; time domain analysis; Analytical models; Crosstalk; Digital circuits; Hardware design languages; Integrated circuit interconnections; LAN interconnection; Signal analysis; Time domain analysis; Very large scale integration; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
ASIC Conference and Exhibit, 1996. Proceedings., Ninth Annual IEEE International
Conference_Location
Rochester, NY
ISSN
1063-0988
Print_ISBN
0-7803-3302-0
Type
conf
DOI
10.1109/ASIC.1996.551965
Filename
551965
Link To Document