DocumentCode
1340822
Title
The Elmore delay as a bound for RC trees with generalized input signals
Author
Gupta, Rohini ; Tutuianu, Bogdan ; Pileggi, Lawrence T.
Author_Institution
Lucent Technol., Bell Lab., Allentown, PA, USA
Volume
16
Issue
1
fYear
1997
fDate
1/1/1997 12:00:00 AM
Firstpage
95
Lastpage
104
Abstract
The Elmore delay is an extremely popular timing-performance metric which is used at all levels of electronic circuit design automation, particularly for resistor-capacitor (RC) tree analysis. The widespread usage of this metric is mainly attributable to it being a delay measure that is a simple analytical function of the circuit parameters. The only drawback to this delay metric is the uncertainty of its accuracy and the restriction to it being an estimate only for the step response delay. In this paper, we prove that the Elmore delay measure is an absolute upper bound on the actual 50% delay of an RC tree response. Moreover, we prove that this bound holds for input signals other than steps and that the actual delay asymptotically approaches the Elmore delay as the input signal rise time increases. A lower bound on the delay is also developed using the Elmore delay and the second moment of the impulse response. The utility of this bound is for understanding the accuracy and the limitations of the Elmore metric as we use it as a performance metric for design automation
Keywords
RC circuits; circuit CAD; delays; logic CAD; timing; Elmore delay; RC tree response; RC trees; delay measure; digital logic gates; electronic circuit design automation; generalized input signals; resistor-capacitor tree analysis; timing-performance metric; Delay effects; Delay estimation; Design automation; Electronic circuits; Integrated circuit interconnections; Measurement; Process design; RLC circuits; Signal analysis; Upper bound;
fLanguage
English
Journal_Title
Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on
Publisher
ieee
ISSN
0278-0070
Type
jour
DOI
10.1109/43.559334
Filename
559334
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