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Mathematically assisted adaptive body bias (ABB) for temperature compensation in gigascale LSI systems

机译:数学辅助的自适应主体偏置(ABB),用于千兆位LSI系统中的温度补偿

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Process variations and temperature variations can cause both the frequency and the leakage of the chip to vary significantly from their expected values, thereby decreasing the yield. Adaptive Body Bias (ABB) can be used to pull back the chip to the nominal operational region. We propose the use of this technique to counter temperature variations along with process variations. We present a CAD perspective for achieving process and temperature compensation using bidirectional ABB. Mathematical models are used to determine the exact amount of body bias required to optimize the delay and leakage, and an algorithmic flow that can be adopted for gigascale LSI systems is provided.
机译:工艺变化和温度变化会导致芯片的频率和泄漏与预期值明显不同,从而降低了良率。自适应人体偏置(ABB)可用于将芯片拉回到标称工作区域。我们建议使用此技术来应对温度变化和工艺变化。我们提出了使用双向ABB实现过程和温度补偿的CAD观点。使用数学模型来确定优化延迟和泄漏所需的确切身体偏置量,并提供了可用于千兆位LSI系统的算法流程。

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