管理芯片和模块工厂中大量的设计/制造/测试数据

V. J. Freund
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引用次数: 0

摘要

在其高度自动化的East Fishkill半导体设施中,IBM充分利用了“门阵列”概念,以支持使用VLSI设计的计算机。IBM的工程设计系统(在过去的几篇论文中已经描述过)与直接发布系统相结合,为机器设计人员提供了一个快速、受控的环境,用于设计和发布芯片零件号到East Fishkill,并为他们的工程模型机器快速周转新设计的芯片。本文描述了East Fishkill工厂的程序员和工程师如何解决与处理大量唯一芯片零件号相关的巨大后勤和信息管理问题,这些芯片零件号被发布到East Fishkill,并要求在发布的设计级别上快速装运硬件。讨论的问题包括提供准确、及时的制造信息,跟踪生产线上的产品,收集/分析数千个唯一零件号的过程和最终测试结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Managing A Large Volume of Design/Manufacturing/Test Data in a Chip And Module Factory
In its highly automated East Fishkill semiconductor facility, IBM has exploited the "gate array" concept to its fullest in the support of computers designed using VLSI. IBM's Engineering Design System (which has been described in several papers in the past) in conjunction with the Direct Release System provides machine designers with a fast, controlled environment for designing and releasing chip part numbers into East Fishkill and getting fast turnaround on newly designed chips for their engineering model machines. This paper describes how Programmers and Engineers at the East Fishkill facility solved the huge logistical and information management problems associated with handling the large volume of unique chip part numbers that are released into East Fishkill with requests for quick shipment of hardware at that released design level. The problems discussed involve providing accurate, timely manufacturing information, tracking the product in the line, and collecting/analyzing in-process and final test results for thousands of unique part numbers.
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