Maximizing Impossibilities for Untestable Fault Identification

Michael S. Hsiao · 2002

This paper presents a new fault-independent method for maximizing local conicting value assignments for the purpose of untestable faults identification. The technique first computes a large number of logic implications across multiple time-frames and stores them in an implication graph. Then, by maximizing conflicting scenarios in the circuit, the algorithm identifies a large number of untestable faults that require such impossibilities. The proposed approach identifies impossible combinations locally around each Boolean gate in the circuit, and its complexity is thus linear in the number of nodes, resulting in short execution times. Experimental results for both combinational and sequential benchmark circuits showed that many more untestable faults can be identified with this approach efficiently.

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