Multiphysics challenges with Heterogeneous Integrated Voltage Regulator based Power Delivery Architectures

Venkatesh Avula, B. Bhattacharyya, V. Smet, Y. Joshi, M. Swaminathan
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引用次数: 3

Abstract

Heterogeneous integration of power delivery circuits provides for a system-scaling opportunity in the post-Moore era. However, the integrated voltage regulator (IVR) poses complex design challenges. In this paper, the fundamental challenges and benefits, arising from the IVR-based power delivery system, in the electrical, thermal, and electromagnetics domains are analyzed. To verify the analysis, a comparison study of the regulator architectures with and without heterogeneous integration is considered. Also, metrics for the IVR design space are provided as measures to address its integration complexity and figure-of-merit.
基于异构集成稳压器的电力传输架构的多物理场挑战
电力传输电路的异构集成在后摩尔时代提供了系统扩展的机会。然而,集成电压调节器(IVR)带来了复杂的设计挑战。本文分析了基于ivr的电力传输系统在电学、热学和电磁学领域所面临的基本挑战和带来的好处。为了验证分析,考虑了具有和不具有异构集成的调节器架构的比较研究。此外,还提供了IVR设计空间的度量,作为解决其集成复杂性和价值图的度量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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