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Methodology to best extend AMHS for site expansion

机译:用于最佳扩展AMH的方法

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As companies grow their capacity in multiple buildings there are increasing challenges with the automated material handling systems (AMHS) used to transport the wafers between two or more facilities. In some cases, the links used to perform these transports can become a constraint for the entire system. The problem grows more difficult as the expansion plan extends further into the future, making it harder to predict throughput requirements. This study discusses a particular throughput prediction tool as well as different approaches for evaluating designs. The approaches discussed include: integrated vehicle/conveyor model using static tool (Network approach), segregated dynamic models for conveyor/vehicle system, and integrated vehicle/conveyor dynamic model. The pros/cons of these approaches are discussed based on different use cases. The paper finishes by discussing the strategic advantages of factories performing expansion analysis early in the design of the factory and the importance to continue validating and improving these methods.
机译:由于公司在多层建筑物中增长其容量,因此使用用于在两个或多个设施之间运输晶片的自动化材料处理系统(AMH)越来越大的挑战。在某些情况下,用于执行这些传输的链接可能成为整个系统的约束。由于扩展计划进一步扩展到未来,问题越来越困难,使得预测吞吐量要求越难。本研究讨论了特定的吞吐量预测工具以及评估设计的不同方法。讨论的方法包括:综合车辆/输送机模型使用静态工具(网络方法),隔离动态模型,用于输送机/车辆系统,以及集成的车辆/传送带动态模型。基于不同用例讨论了这些方法的优点/缺点。本文通过讨论工厂在工厂设计早期进行扩展分析的战略优势以及继续验证和改进这些方法的重要性,完成了工厂的战略优势。

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