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Machine capacity allocation strategies for scheduling a large multi-chip assembly line

机译:用于调度大型多芯片装配线的机器能力分配策略

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摘要

A multi-chip package (MCP) consists of several chip modules in a single package. We consider a scheduling problem for assembling MCPs. In order to assemble an MCP, a lot should repeat assembly process stages such as die attach and wire bonding as many as the number of chips to be assembled. The two key process stages have many parallel machines of various types. A machine processes different types of MCP lots with significant setup times. We therefore should reduce the number of setups effectively while not sacrificing the on-time delivery performance significantly. We propose a scheduling strategy that first allocates the machine capacity of many parallel machines to product groups and lots depending on their production progresses appropriately and then applies known dispatching rules. We report experimental performances of the proposed methods.
机译:多芯片封装(MCP)在单个封装中包含多个芯片模块。我们考虑组装MCP的调度问题。为了组装MCP,很多人应该重复组装过程阶段,例如芯片组装和引线键合,其数量要与要组装的芯片数一样多。这两个关键过程阶段具有许多不同类型的并行机器。机器会处理大量设置时间的不同类型的MCP。因此,我们应在不显着牺牲准时交付性能的情况下有效减少设置数量。我们提出了一种调度策略,该策略首先根据产品组和批次的生产进度将许多并行计算机的机器容量分配给它们,然后应用已知的调度规则。我们报告提出的方法的实验性能。

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