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Satellite hierarchical system test using IEEE 1149.1-based COTS test tools. A case history with results and lessons

机译:使用基于IEEE 1149.1的COTS测试工具进行卫星分层系统测试。具有结果和课程的案例历史记录

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Hughes Space Communications applied IEEE Standard 1149.1-1990, The Standard Test Access Port and Boundary-Scan Architecture, to design a structured testing methodology for its HS601 digital global communication satellites. Previous functional test strategies were being challenged by increasing component density and rapidly increasing manufacturing volume. Structural tests written for ASICs were reusable when testing MCMs, boards, and units. Structural testing resulted in fewer no-fault-found components than previously experienced using functional test strategies. System test access across backplanes was achieved using National Semiconductor's multidrop, addressable 1149.1-based SCAN Bridge. Commercially available enhancements to Teradyne's Victory software were used to address each 1149.7-testable component at each level of the hardware hierarchy. Hughes Space Communications created test management software to manage this test environment. Whenever a test is needed, if is assembled to match the hardware version and the appropriate level of hierarchy. This paper presents the results for a global communications satellite system that uses a test strategy outlined.
机译:休斯太空通信公司采用IEEE标准1149.1-1990,即标准测试访问端口和边界扫描体系结构,为其HS601数字全球通信卫星设计了结构化的测试方法。以前的功能测试策略正面临着不断增加的组件密度和快速增长的制造量的挑战。在测试MCM,电路板和单元时,为ASIC编写的结构测试可重复使用。与以前使用功能测试策略所经历的相比,结构测试所产生的无故障组件更少。使用美国国家半导体的多点可寻址基于1149.1的SCAN桥接器,可以跨底板进行系统测试访问。 Teradyne的Victory软件的市售增强功能用于解决硬件层次结构每个级别上的每个1149.7可测试组件。休斯太空通信公司创建了测试管理软件来管理该测试环境。每当需要测试时,都将进行组装以匹配硬件版本和适当的层次结构级别。本文介绍了使用概述的测试策略的全球通信卫星系统的结果。

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