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A system level boundary scan controller board for VME applications

机译:用于VME应用的系统级边界扫描控制器板

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In this article an application of boundary scan test at system level is analyzed. The objective is met through the description of the design and implementation options of a VME boundary scan controller board prototype and the corresponding software. The prototype board uses the MTM bus, existing in the VME64x backplane, to apply the IEEE 1149.1 test vectors to one of the sixty four sub-systems, each one composed by nineteen boards. The software being developed uses the boundary scan test vectors generated by an ATPG in SVF format, and converts them into a format suitable to be used in our test system. Test results consists in a pass/fail assessment. Further diagnosis information about fault location requires the utilization of an additional software test tool. After giving some insights about the experiment where this hardware is required, the paper describes the boundary scan test architecture at system and board level, the test development tools used in the experience environment, the test of the boundary scan controller board prototype and the software used to interface the board with the ATPG. The results obtained so far and the proposed work is reviewed in the end of this contribution. This work is the result of a collaboration between INESC and LIP in the Compact Muon Solenoid experiment being conducted at CERN.
机译:在本文中,分析了系统级边界扫描测试的应用。通过对VME边界扫描控制器板原型和相应软件的设计和实现选项的描述来满足目标。原型板使用现有的MTM总线,现有VME64x背板,将IEEE 1149.1测试向量应用于六十四个子系统之一,每个由19个板组成的子系统。正在开发的软件使用SVF格式由ATPG生成的边界扫描测试向量,并将它们转换为适合于我们的测试系统中使用的格式。测试结果在通过/失败评估中组成。关于故障定位的进一步诊断信息需要利用其他软件测试工具。在对所需硬件的实验提供一些了解后,本文描述了系统和板级的边界扫描测试架构,经验环境中使用的测试开发工具,边界扫描控制器板原型的测试和使用的软件用ATPG接口电路板。到目前为止所获得的结果以及拟议的工作在本贡献结束时进行了审查。这项工作是在CERN中进行紧凑的MUON螺线管实验中的床上的唇部和唇部之间的合作结果。

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