TRIZ:系统创新,提高工厂运营效率

Yeoh Tay Jin, Yeoh Teong San, Song Chia Li
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引用次数: 7

摘要

半导体制造在良率提高、缺陷减少和设备相关问题上面临着许多挑战和复杂性的增加。创新是保持领先于竞争对手的关键因素。一般来说,产生想法的方式是头脑风暴。虽然它很容易使用,但它在很大程度上依赖于一群人的经验和知识。对于新工程师来说,解决方案有一定程度的妥协。本文将介绍一种系统的创新方法——创造性问题解决理论(TRIZ)。它是一种结构化的方法,用于对问题进行建模,使用模型的工具,最后是解决方案的模型。TRIZ是国际公认的创造力科学,基于物理定律和创新专利,提炼出许多解决问题的工具。它是一个有12个工具的工具箱,为工程师提供了创造突破性想法的方法。本文将描述5种TRIZ方法(修剪,矛盾,40个发明原则,过程分析,工程系统演变趋势)并分享案例研究。
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TRIZ: Systematic innovation towards factory operational efficiency
Semiconductor manufacturing faces numerous challenges and increased complexity in yield improvement, defect reduction and equipment related issues. Innovation is a key element to stay ahead of the competitors. Typically the way towards idea generation is Brainstorming. While it is easy to use, it is very much dependent on the experience and knowledge of the group of people. For new engineers, there is a certain degree of compromise to the solutions. This paper will introduce a systematic innovation methodology called Theory of Inventive Problem Solving (TRIZ). It is a structured methodology for modeling the problem, tools to work with the models and finally models of solutions. TRIZ is a recognized international science of creativity, based on the laws of physics and innovative patents distilled to numerous problem solving tools. It is a toolbox with 12 tools which provide the engineers with methods to create breakthrough ideas. This paper will describe 5 TRIZ methods (Trimming, Contradiction, 40 Inventive Principles, Process Analysis, Trends of Engineering System Evolution) and case studies will be shared.
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