多电压感知电阻性开路故障建模

M. T. Mohammadat, N. Ali, F. Hussin
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引用次数: 1

摘要

电阻性开路故障(ROF)是一种常见的制造缺陷,会在受影响的电路中造成额外的延迟和可靠性风险。ROF行为对电源电压和开路电阻非常敏感。用电源电压对这种故障行为和可检测性进行建模,有助于区分故障以及多电压设计的测试。而以前的ROF模型并没有明确地考虑这些依赖关系。因此,本文采用穷尽参数SPICE仿真方法,考虑不同的技术模型,对这些依赖关系进行了研究。通过将整个反渗透连续体划分为电阻区间和范围,提出了电压感知模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-voltage aware resistive open fault modeling
Resistive open fault (ROF) represents common manufacturing defects causing extra delays and reliability risks in affected circuits. ROF behavior is sensitive to the supply voltage and the resistance of open (RO). Modeling this fault behavior and detectability with the supply voltage helps in distinguishing between faults as well as testing of multi-voltage designs. While previous ROF models did not explicitly consider these dependencies. Therefore in this paper, these dependencies were investigated by exhaustive parametric SPICE simulation considering different technology models. A voltage aware model is proposed by dividing the full RO continuum into resistance intervals and ranges.
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