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A Robust Pulsed Flip-flop and its use in Enhanced Scan Design

机译:一种强大的脉冲触发器及其在增强扫描设计中的应用

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Delay faults are frequently encountered in nanometer technologies. Therefore, it is critical to detect these faults during factory test. Testing for a delay fault requires the application of a pair of test vectors in an at-speed manner. To maximize the delay fault detection capability, it is desired that the vectors in this pair are independent. Independent vector pairs cannot always be applied to a circuit implemented with standard scan design approaches. However, this can be achieved by using enhanced scan flip-flops, which store two bits of data. This paper has two contributions. First, we develop a pulsed flip-flop (PFF) design. Second, we present an enhanced scan flip-flop design, based on our PFF circuit. We have compared the performance of our pulse based flip-flop with recently published pulse based flip-flop designs, as well as a traditional master-slave D flip-flop. Our PFF shows significant improvements in power and timing compared to the other designs. Our pulse based enhanced scan flip-flop (PESFF) has 13% lower power dissipation and 26% better timing than a conventional D flip-flop based enhanced scan flip-flop (DESFF). The layout area of our PESFF is 5.2% smaller than the DESFF. Monte Carlo simulations demonstrate that our design is more robust to process variations than the DESFF.
机译:纳米技术经常遇到延迟故障。因此,在工厂测试期间检测这些故障至关重要。对延迟故障的测试需要以速度方式应用一对测试向量。为了最大化延迟故障检测能力,希望该对中的矢量是独立的。独立的矢量对不能始终应用于用标准扫描设计方法实现的电路。但是,这可以通过使用增强扫描触发器来实现,该扫描触发器存储两位数据。本文有两项贡献。首先,我们开发一个脉冲触发器(PFF)设计。其次,我们介绍了一种基于我们的PFF电路的增强扫描触发器设计。我们已经将我们的脉冲触发器的性能与最近发布的脉冲的触发器设计进行了比较了我们的脉冲触发器,以及传统的主从D触发器。与其他设计相比,我们的PFF会显着改善电源和时间。我们基于脉冲的增强扫描触发器(PESFF)的功耗耗散13%,比传统的D触发器基于增强扫描触发器(DESFF)更高的时间更好的时序。我们的PESFF的布局区域比DESFF小5.2%。 Monte Carlo仿真表明,我们的设计更加强大地处理变化而不是DESFF。

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