DocumentCode :
2117133
Title :
An Effective Method to Extract Probability Distribution of Circuit Performance Modeled by Quadratic Response Surface Model
Author :
Yang, Maofeng ; You, Hailong ; Jia, Xinzhang ; Wang, Dan
Author_Institution :
Sch. of Microelectron., Xidian Univ., Xian
Volume :
2
fYear :
2008
fDate :
20-22 Dec. 2008
Firstpage :
600
Lastpage :
603
Abstract :
The significantly increased relative variations in integrated circuit process necessitate using quadratic response surface model to capture their nonlinear effect on circuit performance. However, the exact probability distribution of the circuit performance modeled by quadratic response surface model is unknown. This paper proposes a method to obtain the approximated probability distribution. We first develop the exact expression of the Continuous Time Fourier Transform of the unknown probability density function, and then apply frequency-domain sampling and Inverse Discrete Fourier Transform to obtain the approximated points of the unknown probability density function. Finally, spline functions are built to approximate the unknown probability density function and cumulative distribution function. An example of bandgap voltage reference circuit demonstrates that this method is more accurate and efficient than Monte Carlo simulation with 10000 samples. The algorithm can be incorporated into integrated circuit Computer Aided Design software for yield analysis and optimization.
Keywords :
approximation theory; discrete Fourier transforms; frequency-domain analysis; integrated circuit modelling; inverse problems; response surface methodology; sampling methods; splines (mathematics); statistical distributions; circuit performance probability distribution; continuous time Fourier transform; cumulative distribution function; frequency-domain sampling; integrated circuit process; inverse discrete Fourier transform; nonlinear effect; probability density function; quadratic response surface model; spline function; Continuous Time Fourier Transform; Inverse Discrete Fourier Transform; probability distribution; process variation; quadratic response surface model; spline function;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information Science and Engineering, 2008. ISISE '08. International Symposium on
Conference_Location :
Shanghai
Print_ISBN :
978-1-4244-2727-4
Type :
conf
DOI :
10.1109/ISISE.2008.212
Filename :
4732465
Link To Document :
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