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The use of a simulation, a hybrid Taguchi, and dual response surface methods in the automated material handling system tool-to-tool strategy for a 300-mm fab

机译:在300毫米晶圆厂的自动物料搬运系统工具到工具策略中使用模拟,混合田口和双响应表面方法

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摘要

With the increase in the size and weight of 300-mm wafers, manual handling has become difficult and automated material handling systems (AMHS) are necessary. The 300-mm fab requires only one type of vehicle and rail to connect all of the process resources, allowing vehicles to travel directly between intrabay and interbay systems. This type of transportation is a direct tool-to-tool transportation strategy. This paper aims to analyse the impact of direct tool-to-tool transportation. The present study used a discrete-event simulation to create a 300-mm semiconductor manufacturing flow and executed a factorial experiment of three factors based on uniform design, including the direct ratio, the stocker capacity and the number of machine load ports. Finally, using the dual-response surface method, the most important of the three factors and the best performance were determined. The results show promise for the proposed tool-to-tool transportation strategy in solving a practical application.
机译:随着300毫米晶圆尺寸和重量的增加,手动处理变得困难,因此需要自动材料处理系统(AMHS)。 300毫米晶圆厂仅需要一种类型的车辆和轨道即可连接所有工艺资源,从而使车辆可以在海湾内和海湾间系统之间直接行驶。这种运输方式是直接的工具到工具运输策略。本文旨在分析直接工具到工具运输的影响。本研究使用离散事件模拟创建了300mm的半导体制造流程,并基于均匀设计执行了三个因素的阶乘实验,包括直接比率,储料器容量和机器装载口数量。最后,使用双重响应曲面法确定了三个因素中最重要的因素和最佳的性能。结果表明,提出的工具到工具的运输策略有望解决实际应用。

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