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首页> 外文期刊>International Journal of Production Research >Hierarchy machine set-up for multi-pass lot scheduling at semiconductor assembly and test facilities
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Hierarchy machine set-up for multi-pass lot scheduling at semiconductor assembly and test facilities

机译:半导体组件和测试设施在半导体机调度的层次结构机器设置

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In this paper, we examine the set-up problem at semiconductor assembly and test facilities in a multi-machine, multi-tooling environment. Our primary objectives are to minimise the number of shortages of key devices and to maximise weighted throughput over a 2-5-day planning horizon. When a machine set-up is called for three components must be taken into account: tooling, package size and flow. Each in turn imposes increasing set-up times, ranging from a few minutes to half a day. To balance system efficiency with meeting customer demand, a hierarchical approach is taken. Priority is first given to set-ups that can process (hot) lots that reduce demand shortages. Next, changeover time is factored into the decision. Here, priority is given to the component that takes the least amount of time. Our model determines machine set-ups, lot assignments and lot sequences using a greedy randomised adaptive search procedure. The results indicate that reducing set-up times can reduce hot-lot shortages by up to 6.6% over a two-day period and that following the hierarchy set-up rule while prioritising key device lots can reduce shortages by up to 10%. Moreover, when reentrant flow is taken into account, improvements of up to 42% may be realised.
机译:在本文中,我们在多机,多工具环境中检查了半导体组件和测试设施的设置问题。我们的主要目标是最大限度地减少关键设备的短缺数量,并在2-5天的规划地平线上最大限度地提高加权吞吐量。必须考虑到三个组件的机器设置:工具,包装大小和流量。每次又施加了增加的设置时间,从几分钟到半天的时间。为了通过满足客户需求来平衡系统效率,采取分层方法。优先级首先给出可以处理(热)减少需求短缺的批次的设置。接下来,将转换时间进行决定。在这里,优先级给出了占用最少时间的组件。我们的模型使用贪婪的随机自适应搜索过程确定机器设置,LOT分配和批次序列。结果表明,在为期两天的时间内,减少设置时间可以将批量短缺降低至6.6%,并且在优先考虑关键设备批次的同时,在分层设置规则之后可以将短缺降低到10%。此外,当考虑到重圈流动时,可以实现高达42%的改进。

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