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Coverage loss by using space compactors in presence of unknown values.

, , , , and . DATE, page 1053-1054. European Design and Automation Association, Leuven, Belgium, (2006)

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A High Compression and Short Test Sequence Test Compression Technique to Enhance Compressions of LFSR Reseeding., , and . ATS, page 79-86. IEEE, (2007)Unknown-tolerance analysis and test-quality control for test response compaction using space compactors., , , , and . DAC, page 1083-1088. ACM, (2006)Coverage loss by using space compactors in presence of unknown values., , , , and . DATE, page 1053-1054. European Design and Automation Association, Leuven, Belgium, (2006)A Technique to Reduce Peak Current and Average Power Dissipation in Scan Designs by Limited Capture., and . ASP-DAC, page 810-816. IEEE Computer Society, (2007)A low cost test data compression technique for high n-detection fault coverage., , , and . ITC, page 1-10. IEEE Computer Society, (2007)A hybrid scheme for compacting test responses with unknown values., , , , and . ICCAD, page 513-519. IEEE Computer Society, (2007)Multi-service Virtual Network Embedding in Wireless Network., , , , and . ITNAC, page 107-112. IEEE, (2021)Low Overhead Partial Enhanced Scan Technique for Compact and High Fault Coverage Transition Delay Test Patterns., and . ETS, page 125-130. IEEE Computer Society, (2008)Machine learning-based volume diagnosis., and . DATE, page 902-905. IEEE, (2009)X-Block: An Efficient LFSR Reseeding-Based Method to Block Unknowns for Temporal Compactors., , and . IEEE Trans. Computers, 57 (7): 978-989 (2008)