Title :
Compact Variation-Aware Standard Cell Models for Timing Analysis - Complexity and Accuracy Analysis
Author :
Aftabjahani, Seyed-Abdollah ; Milor, Linda
Author_Institution :
Georgia Inst. of Technol., Atlanta
Abstract :
A compact variation-aware timing model for a standard cell in a cell library is developed using principal component analysis (PCA) and experimental design. The model incorporates variations in the input waveform and loading, process parameters, and the environment into the cell timing model. PCA is used to form a compact model of a set of waveforms impacted by these sources of variation. Cell characterization involves describing how waveforms are transformed by a cell as a function of the input waveforms, process parameters, and the environment. The models have been evaluated by calculating the delay of paths. The results demonstrate improved accuracy in comparison with table-based static timing analysis at comparable computational cost. Complexity of the models as a function of the number of parameters modeling variation is also discussed.
Keywords :
delays; integrated circuit modelling; principal component analysis; timing; cell characterization; cell timing model; compact variation-aware standard cell models; parameters modeling variation; principal component analysis; table-based static timing analysis; Design for experiments; Equations; Libraries; MOS devices; Principal component analysis; Propagation delay; Standards development; Temperature; Threshold voltage; Timing; Standard Cells; Statistical Timing Analysis; Variation-Aware Timing Models;
Conference_Titel :
Quality Electronic Design, 2008. ISQED 2008. 9th International Symposium on
Conference_Location :
San Jose, CA
Print_ISBN :
978-0-7695-3117-5
DOI :
10.1109/ISQED.2008.4479716