A Fast Transistor-Chaining Algorithm for CMOS Cell Layout

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Abstract

We propose a fast algorithm for the transistor-chaining problem in CMOS functional cell layout based on Uehara and van Cleemput's layout style [12]. Our algorithm takes a transistor-level circuit schematic and outputs a minimum set of transistor chains. Possible diffusion abutments between the transistor pairs are modeled as a bipartite graph. A depth-first search algorithm is used to search for the optimal chaining. Theorems on the set of branches needed to be explored at each node of the search tree are derived. A theoretical lower bound on the size of the chain set is derived. This bound enables us to prune the search tree efficiently. The algorithm has been implemented and tested. It is able to find optimal solutions almost instantly for all the cases available to us from the literature. © 1990 IEEE

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Hwang, C. Y., Hsieh, Y. C., Lin, Y. L., & Hsu, Y. C. (1990). A Fast Transistor-Chaining Algorithm for CMOS Cell Layout. IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems, 9(7), 781–786. https://doi.org/10.1109/43.55207

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