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QUANTIFYING THE BENEFITS OF FACTORY SIMULATION IN THE SEMICONDUCTOR ASSEMBLY INDUSTRY

机译:量化半导体组装行业中工厂仿真的好处

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This article will examine the use of simulation to determine pragmatic assembly integration and automation approaches that are both existing and in development. These approaches are evolving into a diverse but integratable set of material and information management solutions that will enable factory managers to improve efficiency and productivityrnOptimal solutions for factory design are nonlinear and not deterministic. Although approximation formulas exist for characterizing material and information flow through the assembly process, essential attributes of flow may only be quantified via iterative parametric analysis of modeled systems. This paper demonstrates current use of simulation modeling to characterize flow line design.rnIn today's semiconductor assembly environment, each company has a unique set of business imperatives established to gain competitive advantage in manufacturing. No single factory integration or automation approach can adequately address the entire semiconductor industry's requirements. Simulation is a vital tool being used to quantify the benefits of various scenarios in order to arrive at the optimum solution.
机译:本文将研究使用仿真来确定实用的装配集成和自动化方法,这些方法既存在又在开发中。这些方法正在演变为一套多样化但可集成的材料和信息管理解决方案,这将使工厂经理能够提高效率和生产率。工厂设计的最佳解决方案是非线性的,而不是确定性的。尽管存在用于描述物料和信息在组装过程中流动的近似公式,但流动的基本属性只能通过对建模系统进行迭代参数分析来量化。本文演示了当前使用仿真模型来表征流水线设计的特征。在当今的半导体组装环境中,每个公司都有一套独特的业务要务来建立,以在制造中获得竞争优势。没有单一的工厂集成或自动化方法可以充分满足整个半导体行业的需求。仿真是一种至关重要的工具,可用于量化各种方案的收益,以获得最佳解决方案。

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