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An Automatic Test Pattern Generation Method for Multiple Stuck-At Faults by Incrementally Extending the Test Patterns

机译:通过递增延伸测试模式来实现多个粘附性故障的自动测试模式生成方法

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As the number of transistors in the fabricated circuits becomes extremely larger, not only single stuck-at faults, but also multiple stuck-at faults (MSAFs) are likely to happen in the circuits, especially for the large-scale circuit. Multiple faults are difficult to be fully covered due to the exponentially enormous number of all possible faults. Although there are methods proposed to deal with the multiple faults, they fail to generate compact test patterns to detect all faults within an acceptable running time. In order to solve these problems, this article proposes an incremental automatic test pattern generation method to deal with MSAFs. Instead of traversing the entire n multiple fault list, the proposed method only selects the faults undetected by the existing test patterns for n - 1 faults, and then generates additional test patterns. Staring from a complete test set for single faults, the proposed ATPG method can be incrementally applied to handle all multiple faults. Moreover, since the number of undetected faults that are selected is extremely smaller comparing to the total number of the entire fault list, the proposed method can generate compact test patterns to cover all faults within an acceptable running time.
机译:由于制造电路中的晶体管的数量变得极大,而不仅是单个卡在故障,而且在电路中可能发生多个卡在故障(MSAF),特别是对于大尺度电路。由于所有可能的故障都有巨大数量,难以完全覆盖多个故障。尽管有提出的方法来处理多个故障,但它们无法生成紧凑的测试模式,以检测可接受的运行时间内的所有故障。为了解决这些问题,本文提出了一种递增的自动测试模式生成方法来处理MSAF。该提出的方法而不是遍历整个N个故障列表,而是仅选择N - 1故障的现有测试模式未检测到的故障,然后生成其他测试模式。从完整的测试集中拔除单个故障,可以逐步应用所提出的ATPG方法来处理所有多个故障。此外,由于与整个故障列表的总数相比,所选择的未检测到的故障的数量非常较小,因此该方法可以生成紧凑的测试模式,以覆盖可接受的运行时间内的所有故障。

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