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Two-Dimensional Static Test Compaction for Functional Test Sequences

机译:功能测试序列的二维静态测试压缩

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A restoration based static test compaction procedure removes unnecessary test vectors from a functional test sequence in order to reduce its length. To allow the procedure to reduce the storage requirements of the sequence further, this paper introduces a new approach where a single stored sequence is used for applying several different functional test sequences. Under this approach, the stored sequence is considered as two-dimensional arrays with different dimensions. Each array yields a different test sequence, which is a permutation of the stored sequence. When the permutations are effective in detecting target faults, an existing static test compaction procedure, with certain modifications, can reduce the length of the stored sequence, and rely on the application of the permutations to detect all the target faults. Simulation results show significant reductions in the input test data volume. The cost of increased numbers of clock cycles for test application can be utilized for increasing the fault coverage of non-target faults.
机译:基于恢复的静态测试压缩程序从功能测试序列中删除了不必要的测试向量,以缩短其长度。为了允许该程序进一步降低序列的存储需求,本文介绍了一种新方法,其中将单个存储的序列用于应用多个不同的功能测试序列。在这种方法下,将存储的序列视为具有不同维度的二维数组。每个数组产生一个不同的测试序列,这是存储序列的排列。当排列有效地检测目标故障时,现有的静态测试压缩程序(进行了某些修改)可以减少所存储序列的长度,并依靠排列的应用来检测所有目标故障。仿真结果表明输入测试数据量显着减少。用于测试应用的时钟周期数量增加的成本可用于增加非目标故障的故障覆盖率。

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