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Power Blurring: Fast Static and Transient Thermal Analysis Method for Packaged Integrated Circuits and Power Devices

机译:功率模糊:封装集成电路和功率器件的快速静态和瞬态热分析方法

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摘要

High-temperature and temperature nonuniformity in high-performance integrated circuits (ICs) can significantly degrade chip performance and reliability. Thus, accurate temperature information is a critical factor in chip design and verification. Conventional volume grid-based techniques, such as finite-difference and finite-element methods (FEMs), are computationally expensive. In an effort to reduce the computation time, we have developed a new method, called power blurring (PB), for calculating temperature distributions using a matrix convolution technique in analogy with image blurring. The PB method considers the finite size and boundaries of the chip as well as 3-D heat spreading in the heat sink. PB is applicable to both static and transient thermal simulations. Comparative studies with a commercial FEM tool show that the PB method is accurate within 2%, with orders of magnitude speedup compared with FEM methods. PB can be applied to very fine power maps with a grid size as small as 10 for a fully packaged IC or submicrometer heat sources in power electronic transistor arrays. In comparison with architecture-level thermal simulators, such as HotSpot, PB provides much more accurate temperature profiles with reduced computation time.
机译:高性能集成电路(IC)中的高温和温度不均匀会严重降低芯片性能和可靠性。因此,准确的温度信息是芯片设计和验证的关键因素。传统的基于体积网格的技术(例如有限差分法和有限元方法(FEM))在计算上非常昂贵。为了减少计算时间,我们开发了一种称为功率模糊(PB)的新方法,类似于矩阵模糊,它使用矩阵卷积技术来计算温度分布。 PB方法考虑了芯片的有限尺寸和边界以及散热器中的3-D热扩散。 PB适用于静态和瞬态热仿真。使用商用FEM工具进行的比较研究表明,PB方法的准确度在2%以内,与FEM方法相比,可提高几个数量级。对于功率电子晶体管阵列中完全封装的IC或亚微米级热源,PB可以应用于网格尺寸小至10的非常精细的功率图。与诸如HotSpot之类的体系结构级热仿真器相比,PB提供了更精确的温度曲线,并减少了计算时间。

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