IEEE Transactions on Very Large Scale Integration (VLSI) Systems · 2007 · 30 citations · 31 references
Hardware SecurityDecoding BufferLossy CompressionEngineeringShifting-in PowerMultilayer Data CopySoftware TestingComputer ArchitectureComputer EngineeringTest Data GenerationRandom-like Filling StrategyComputer ScienceParallel ComputingMultiple Scan DesignData CompressionDesign For TestingLossless CompressionTest Management
The random-like filling strategy pursuing high compression for today's popular test compression schemes introduces large test power. To achieve high compression in conjunction with reducing test power for multiple-scan-chain designs is even harder and very few works were dedicated to solve this problem. This paper proposes and demonstrates a multilayer data copy (MDC) scheme for test compression as well as test power reduction for multiple-scan-chain designs. The scheme utilizes a decoding buffer, which supports fast loading using previous loaded data, to achieve test data compression and test power reduction at the same time. The scheme can be applied automatic test pattern generation (ATPG)-independently or to be incorporated in an ATPG to generate highly compressible and power efficient test sets. Experiment results on benchmarks show that test sets generated by the scheme had large compression and power saving with only a small area design overhead.
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Janusz Rajski, Jerzy Tyszer, Mark Kassab et al. · IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems · 2004 · 518 citations
Adapting scan architectures for low power operation
L. Whetsel · 2002 · 265 citations
Engineering, Computer Architecture, Adapted Scan Architectures +17