DocumentCode
474449
Title
Statistical waveform and current source based standard cell models for accurate timing analysis
Author
Goel, Amit ; Vrudhula, Sarma
Author_Institution
Consortium for Embedded Syst., Arizona State Univ., Tempe, AZ
fYear
2008
fDate
8-13 June 2008
Firstpage
227
Lastpage
230
Abstract
Increasing variability in the manufacturing process and growing complexity of the integrated circuits has given rise to many design and verification challenges. Statistical analysis of circuits and current source based gate delay models have started to replace the conventional static timing analysis which uses lookup tables for gate delays. In this paper we develop a statistical current source based gate model. We use accurate analytical models for representing the parameters of the gate model as functions of process parameters. Using the proposed statistical gate model, the gate output signal is generated and modeled as process dependent variational waveform. We present a compact model for representation of the variational signal waveform. The proposed waveform model can accurately generate the signal waveform at any process corner for accurate timing analysis. We generated the prosed model for gates of a 90 nm industry library and validated with SPICE simulations. Our model for logic gates and variational waveforms showed very good correlation with SPICE. The maximum error across all validation experiments was close to 3%.
Keywords
SPICE; circuit simulation; integrated circuit modelling; network analysis; statistical analysis; timing; SPICE simulations; accurate timing analysis; gate delay model; gate model; logic gates; satistical analysis; size 90 nm; standard cell model; statistical current source; statistical waveform; variational signal waveform; variational waveforms; Analytical models; Circuits; Delay; Manufacturing processes; SPICE; Signal generators; Signal processing; Statistical analysis; Table lookup; Timing; Process variations; Statistical waveform models; Timing analysis;
fLanguage
English
Publisher
ieee
Conference_Titel
Design Automation Conference, 2008. DAC 2008. 45th ACM/IEEE
Conference_Location
Anaheim, CA
ISSN
0738-100X
Print_ISBN
978-1-60558-115-6
Type
conf
Filename
4555813
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