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Improving Output Compaction Efficiency with High Observability Scan Chains

机译:通过高可观察性扫描链提高输出压实效率

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Output selection is recently proposed for test response compaction. This scheme achieves zero aliasing, full X-tolerance, and high diagnosability, at the cost of inflated test set and non-trivial hardware overhead. The time/space penalty in test output compaction is mainly attributed to the loss of observability. In previous methods, it was in general assumed that erroneous responses are uniformly distributed among all scan chains, and the output compactors are designed accordingly. In this paper, we present three techniques to improve the performance of output selection based test response compaction. (1) The uneven distribution of erroneous test responses is exploited to optimize compactor design. (2) A test dynamic compaction algorithm is provided to deal with the test set inflation problem. (3) A low-cost test response compactor is presented. Experimental results indicate that the proposed techniques can achieve better compaction results with lower hardware overhead.
机译:最近提出了用于测试响应压缩的输出选择。该方案以零散的测试集和不平凡的硬件开销为代价,实现了零混叠,完全的X容差和高可诊断性。测试输出压缩中的时间/空间损失主要归因于可观察性的损失。在以前的方法中,通常假定错误响应在所有扫描链中均匀分布,并且相应地设计了输出压缩器。在本文中,我们提出了三种提高基于输出选择的测试响应压缩性能的技术。 (1)利用错误测试响应的不均匀分布来优化压实机设计。 (2)提供了一种测试动态压缩算法来处理测试集的膨胀问题。 (3)提出了一种低成本的测试响应压缩器。实验结果表明,所提出的技术能够以较低的硬件开销获得更好的压缩结果。

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