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INSTRUMENT CERTIFICATION AS PART OF A MODULAR TEST PLATFORM ARCHITECTURE

机译:作为模块化测试平台体系结构一部分的仪器认证

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The use of modular test systems for depot, intermediate, and factory test applications has increased dramatically in the last two decades. Starting with the VME Extensions for Instrumentation (VXI) architecture in the early 1990's, card modular architectures have become an integral part of today's Automatic Test Systems (ATS) for military - aerospace components and systems. Today, the primary card modular architecture is based on the PCI Extensions for Instrumentation (PXI) standard with thousands of PXI-based systems in use today and with next generation ATS platforms for military programs transitioning to PXI as well.The flexibility and configurability associated with today's modular architectures has also created new challenges for the calibration and certification of these systems. Historically, the process for re-certification of modular instruments has been to remove and return the modules to the original equipment manufacturer (OEM) or a 3rd party test house, resulting in system down time. However, a better certification method for a card modular architecture is to develop an overall methodology and implementation that allows recertification of modules within the host system, including the possibility to extend this process to include recertification of "box" instruments as well.This paper discusses the features and benefits of a PXI-based standards module which provides the basis for implementing a system level certification strategy. By employing only one standards module in the system, recertification logistics andmaintenance can be simplified, resulting in extended system up time and offering test managers added flexibility for supporting in-house certification of modular test system components. By incorporating frequency, resistance and voltage standards and source / measurement facilities, a certification strategy can be developed for an ATS platform that is based on specific test application accuracy requirements.
机译:在过去的二十年中,模块化测试系统在仓库,中级和工厂测试应用中的使用急剧增加。从1990年代初的VME仪器扩展(VXI)架构开始,卡模块化架构已成为当今用于军事-航空航天组件和系统的自动测试系统(ATS)不可或缺的一部分。如今,主卡模块化体系结构基于PCI仪器仪表扩展(PXI)标准,目前使用了成千上万个基于PXI的系统,并且用于军事程序的下一代ATS平台也正在过渡到PXI。 与当今的模块化体系结构相关的灵活性和可配置性,也为这些系统的校准和认证提出了新的挑战。从历史上看,对模块化仪器进行重新认证的过程是删除模块并将其返回给原始设备制造商(OEM)或第三方测试室,从而导致系统停机。然而,用于卡模块化体系结构的更好的认证方法是开发一种整体方法和实现,该方法和实现允许对主机系统中的模块进行重新认证,包括扩展此过程以包括对“箱式”仪器进行重新认证的可能性。 本文讨论了基于PXI的标准模块的功能和优点,该模块为实现系统级认证策略提供了基础。通过仅使用系统中的一个标准模块,重新认证物流和 维护可以简化,从而延长了系统的正常运行时间,并为测试经理提供了更大的灵活性,以支持模块化测试系统组件的内部认证。通过合并频率,电阻和电压标准以及源/测量设备,可以基于特定的测试应用精度要求为ATS平台开发认证策略。

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