Title :
Pulse propagation for the detection of small delay defects
Author :
Favalli, M. ; Metra, C.
Author_Institution :
DI, Ferrara Univ.
Abstract :
This paper addresses the problems related to resistive opens and bridging faults which cannot be detected using delay fault testing because they lie out of the most critical paths. Even if the induced defect is not large enough to result in timing violations, these faults may give rise to reliability problems. To detect them, the paper proposes a testing method that is based on the propagation of pulses within the faulty circuit and that exploits the degraded capability of faulty paths to propagate pulses. The effectiveness of the proposed method is analyzed at the electrical level and compared with the use of reduced clock period which can detect the same class of faults. Results show similar performance in the case of resistive opens and better performance in the case of bridgings. Moreover, the proposed approach is not affected by problems on the clock distribution network
Keywords :
clocks; distribution networks; fault simulation; reliability; timing; bridging faults; clock distribution network; delay fault testing; faulty circuit; pulse propagation; reliability; small delay defect detection; timing violations; Circuit faults; Circuit testing; Clocks; Electrical fault detection; Fault detection; Fluctuations; Propagation delay; Pulse circuits; Timing; Uncertainty;
Conference_Titel :
Design, Automation & Test in Europe Conference & Exhibition, 2007. DATE '07
Conference_Location :
Nice
Print_ISBN :
978-3-9810801-2-4
DOI :
10.1109/DATE.2007.364476