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首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >Dynamic Thermal Clock Skew Compensation Using Tunable Delay Buffers
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Dynamic Thermal Clock Skew Compensation Using Tunable Delay Buffers

机译:使用可调延迟缓冲器的动态热时钟偏斜补偿

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The thermal gradients existing in high-performance circuits may significantly affect their timing behavior, in particular, by increasing the skew of the clock net and/or altering hold/setup constraints, possibly causing the circuit to operate incorrectly. The knowledge of the spatial distribution of temperature can be used to properly design a clock network that is able to compensate such thermal non-uniformities. However, redesign of the clock network is effective only if temperature distribution is stationary, i.e., does not change over time. In this paper, we specifically address the problem of dynamically modifying the clock tree in such a way that it can compensate for temporal variations of temperature. This is achieved by exploiting the buffers that are inserted during the clock network generation, by transforming them into tunable delay elements. Temperature-induced delay variations are then compensated by applying the proper tuning to the tunable buffers, which is computed offline and stored in a tuning table inserted in the design. We propose an algorithm to minimize the number of inserted tunable buffers, as well as their tunable range (which directly relates to complexity). Results show that clock skew is kept within original bounds with worst-case power and area penalty of 3.5% and 5.5%, respectively.
机译:高性能电路中存在的热梯度可能会特别影响时钟时序,特别是通过增加时钟网的时滞和/或更改保持/设置约束,从而可能导致电路无法正常工作。温度空间分布的知识可用于正确设计能够补偿这种热不均匀性的时钟网络。但是,仅当温度分布稳定,即不随时间变化时,时钟网络的重新设计才有效。在本文中,我们专门解决了动态修改时钟树的问题,即它可以补偿温度的时间变化。这是通过利用在时钟网络生成过程中插入的缓冲区,将它们转换为可调延迟元素来实现的。然后,通过对可调缓冲器进行适当的调整来补偿温度引起的延迟变化,该调整可离线计算并存储在设计中插入的调整表中。我们提出了一种算法,以最小化插入的可调缓冲区的数量及其可调范围(这直接与复杂性有关)。结果表明,时钟偏移保持在原始范围内,最坏情况下的功耗和面积损失分别为3.5%和5.5%。

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