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Low-Power BIST With a Smoother and Scan-Chain Reorder Under Optimal Cluster Size

机译:在最佳簇大小下具有更平滑和扫描链重排序的低功耗BIST

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The authors propose a low-power testing methodology for the scan-based built-in self-test. This approach combines a low-power test pattern generator (TPG) with scan-chain reordering to achieve low-power testing without losing fault coverage. Three main issues are addressed. First, a smoother is included in the TPG to reduce the average power consumption. However, the fault coverage may be adversely affected by the smoother; hence, a cluster-based scan-chain reordering is employed to remedy this problem. If a very-large power reduction is necessary, the fault-coverage drop can become significant. This can be addressed by reseeding. The second topic of this paper is to give a detailed analysis on the optimal cluster size to minimize the scan-chain length. Finally, a fast and efficient algorithm is developed for scan-chain reorder in order to improve the fault coverage. The reordering algorithm is very efficient in terms of computation time, and the routing length of the reordered scan chain is comparable to or smaller than the result given by commercial tools. Experimental results show that the proposed method provides a significant and consistent reduction in the average test power, and the fault coverage is similar to previous methods with the same test lengths
机译:作者为基于扫描的内置自检提出了一种低功耗测试方法。这种方法将低功耗测试码型生成器(TPG)与扫描链重排序结合在一起,以实现低功耗测试而不会丢失故障覆盖率。解决了三个主要问题。首先,TPG中包含一个平滑器,以减少平均功耗。但是,平滑器可能会对故障覆盖率产生不利影响;因此,基于群集的扫描链重排序可以解决此问题。如果必须大幅降低功耗,则故障覆盖率下降会变得很明显。这可以通过重新播种来解决。本文的第二个主题是对最佳簇大小进行详细分析,以最小化扫描链长度。最后,开发了一种快速有效的扫描链重排序算法,以提高故障覆盖率。重新排序算法在计算时间方面非常有效,并且重新排序的扫描链的路由长度可与商用工具给出的结果相当或比其小。实验结果表明,该方法可以显着且一致地降低平均测试功率,并且故障覆盖率与以前的方法相似,且测试长度相同

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