Computational electronics for the 21st century: Reflections on the past, present, and future

Mark S. Lundstrom
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引用次数: 1

Abstract

The author's career has coincided with the development of numerical simulation into an essential component of semiconductor device technology research and development. We now have a sophisticated suite of simulation capabilities along with new challenges for 21st Century electronics. This talk presents a short history of the field and a description of the current state of the art, but it concentrates on lessons learned and thoughts about how computational electronics can continue to contribute effectively to the development of new electronic device technologies. The author will argue that electronics is changing, and that computational electronics can play a key role in this evolution. In addition to supporting the continuing development of a small suite of physically detailed / first principles tools, he will argue for more emphasis on analytically compact, strongly physical, conceptual models. Such models help guide the development of physically detailed models, connect to circuit and application designers, and advance device science itself.
21世纪的计算电子学:对过去、现在和未来的反思
作者的职业生涯恰逢数值模拟发展成为半导体器件技术研究和开发的重要组成部分。我们现在拥有一套复杂的模拟能力,以及21世纪电子产品的新挑战。本讲座介绍了该领域的简短历史和对当前艺术状态的描述,但它集中于经验教训和关于计算电子学如何继续有效地为新电子设备技术的发展做出贡献的想法。作者将论证电子学正在发生变化,而计算电子学可以在这一演变中发挥关键作用。除了支持继续开发一小套物理细节/第一原理工具外,他还将主张更加强调分析紧凑、强物理的概念模型。这些模型有助于指导物理详细模型的开发,连接电路和应用设计人员,并推进设备科学本身。
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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