DTCO including Sustainability: Power-Performance-Area-Cost-Environmental score (PPACE) Analysis for Logic Technologies

M. Garcia Bardon, P. Wuytens, L. Ragnarsson, G. Mirabelli, D. Jang, G. Willems, A. Mallik, A. Spessot, J. Ryckaert, B. Parvais
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引用次数: 29

Abstract

Driven by concerns on climate change, resources depletion, local and global pollution, sustainability is becoming an integral component of business and of regulations. The progress of Design Technology Co- Optimization (DTCO) methodologies and tools, building transversal knowledge from manufacturing to design, provides an opportunity to develop a framework for early sustainability assessments of logic technologies. Environmental scores can be derived together with the established Power, Performance, Area, Cost (PPAC) metrics. To demonstrate this approach, we evaluate the energy and water consumption as well as the greenhouse gas emissions trends from processing logic nodes from iN28 to iN3 with different scaling scenarios.
DTCO包括可持续性:电力-性能-区域-成本-环境得分(PPACE)分析逻辑技术
在对气候变化、资源枯竭、地方和全球污染的担忧的推动下,可持续性正成为商业和法规的一个组成部分。设计技术协同优化(DTCO)方法和工具的进步,建立了从制造到设计的横向知识,为开发逻辑技术的早期可持续性评估框架提供了机会。环境得分可以与既定的功率、性能、面积、成本(PPAC)指标一起得出。为了证明这种方法,我们评估了不同缩放场景下从iN28到iN3处理逻辑节点的能源和水消耗以及温室气体排放趋势。
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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