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Intel automation and its role in process development and high volume manufacturing

机译:英特尔自动化及其在工艺开发和大批量生产中的作用

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In this paper, the evolution of fab automation within Intel over the past decade and its increasing role in enabling process technology development and high volume manufacturing in the era of nanotechnology is presented. Silicon manufacturing technology faces a number of challenges, which include - growing manufacturing process complexity, increasing need to be cost effective, and need for tighter process control to maintain product yield. Given these challenges, a higher level of factory automation is becoming increasingly important to maintain competitive advantage and technology leadership in the semi-conductor industry. This paper will cover four areas: a) Automation role in Intel's technology module development and manufacturing; b) Automation Capabilities roadmap which includes a historical perspective starting from 200 mm and it's evolution to the current 90/65 nm technology generations in 300 mm manufacturing c) Automation framework based architecture strategy to deliver cost-efficient technology enabling solutions; d) Intel's Next Generation Manufacturing Execution System (NGMES) migration effort and results to date. This paper is concluded by summarizing key learning to date and look-ahead on emerging challenges.
机译:本文介绍了英特尔在过去十年中晶圆厂自动化的发展以及在纳米技术时代它在促进工艺技术开发和大批量生产方面所起的日益重要的作用。硅制造技术面临许多挑战,其中包括-制造工艺的复杂性不断提高,具有成本效益的需求不断增加以及需要更严格的过程控制以保持产品良率。面对这些挑战,更高水平的工厂自动化对于保持半导体行业的竞争优势和技术领先地位变得越来越重要。本文将涵盖四个领域:a)自动化在英特尔技术模块开发和制造中的作用; b)自动化能力路线图,包括从200毫米开始的历史观点,以及到300毫米制造领域的最新90/65纳米技术的演进。c)基于自动化框架的架构策略,以提供经济高效的技术支持解决方案; d)迄今为止的英特尔下一代制造执行系统(NGMES)迁移工作和成果。本文总结了迄今为止的主要学习经验,并对新兴挑战进行了前瞻性总结。

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