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A simulation based analysis of cycle time distribution, and throughput in semiconductor backend manufacturing

机译:基于仿真的半导体后端制造中的周期时间分布和吞吐量分析

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This paper presents a preliminary analysis of the relationship between selected input and output variables in semiconductor backend manufacturing system, using a data driven discrete event simulation model. This study is of interest and importance for a better understanding of the controllable input variables in an effort to reduce factory cycle time and distribution. Our analysis quantifies the effect of varying the input variables of lot release controls, heuristic machine dispatching rules, elimination of selected processes, material handling time, set-up time, and machine up time on selected output variables of throughput, cycle time and cycle time spread. Simulation model of a semiconductor site based in Singapore is used as the base case and the effects are quantified against the base model.
机译:本文使用数据驱动的离散事件模拟模型,对半导体后端制造系统中选定的输入和输出变量之间的关系进行了初步分析。这项研究对于更好地了解可控制的输入变量,以减少工厂周期时间和分配,具有重要意义和重要性。我们的分析量化了更改批生产控制的输入变量,启发式机器调度规则,消除所选过程,物料搬运时间,准备时间和机器正常运行时间对选定的吞吐量,周期时间和周期时间输出变量的影响。传播。以新加坡为基地的半导体厂址的仿真模型为基础案例,并根据该基础模型量化了影响。

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