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Thermal Aware Don't Care Filling to Reduce Peak Temperature and Thermal Variance during Testing

机译:热意识意识到在测试期间,不关心填充以降低峰值温度和热差异

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Temperature during testing has become an important issue to be considered with the continuous improvement of VLSI technology. As increase in temperature during testing causes permanent or temporal damage of the chip, reduction in peak temperature of the chip becomes necessary. Also to bring uniformity in temperature distribution across the chip the thermal variance needs to be reduced. Temperature of a block depends on both heat generation caused by power consumption and heat dissipation among neighboring blocks in the circuit under test (CUT). Heat generation can be reduced by reducing transitions among test vectors. However, heat dissipation depends on thermal gradient. To reduce the peak temperature and thermal variance, the don't care bits present in test vectors can be filled in such a way that the transitions of a block and also of its neighbors get reduced. In this paper we have proposed a don't care filling technique which fills the don't care bits in the test vectors in a way such that peak temperature and thermal variance as well as the peak power and average power get reduced. Experimental results of our proposed approach on ISCAS'89 benchmark circuits show an enriched reduction in peak temperature and thermal variance as well as in peak power and average power with nominal CPU time.
机译:测试期间的温度已成为VLSI技术的持续改进所考虑的重要问题。随着测试期间的温度的增加导致芯片的永久或时间损坏,需要降低芯片的峰值温度。还要在芯片上带来的温度分布均匀,需要减少热方差。块的温度取决于由电路(切割)的电路中的相邻块之间的功耗和散热引起的热量产生。通过减少测试向量之间的转变,可以减少发热。然而,散热取决于热梯度。为了降低峰值温度和热方差,测试向量中存在的不保险位可以以这样的方式填充,使得块的过渡和其邻居的过渡变为降低。在本文中,我们提出了一种不在乎填充技术,该技术填充了测试向量中的不在意位,使得峰值温度和热差异以及峰值功率和平均功率降低。我们在ISCAS'89基准电路上提出的方法的实验结果表明,峰值温度和热方差的富集,以及峰值功率和平均功率,具有标称CPU时间。

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