Automation of Laser Single-Event Effect Testing of Integrated Circuits for Space Missions

A. Tsirkov, D. Savchenkov, A. A. Novikov, A. Pechenkin
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引用次数: 2

Abstract

a division of labor plays significant role in the efficiency of laser SEE Testing. The highest efficiency can be achieved when testers fulfill their roles in a global task: one is engaged in debugging and monitoring the testing progress at the facility, another one participates in the preparation and performance monitoring of the device under test (DUT). This article describes the architecture of our software for SEE testing that consists of two parts: the one responsible for the functional testing of the DUT and another one responsible for the SEE testing logic. Separating these two parts allows them to be developed independently by different specialists. The DUT part of software controls a wide variety of equipment including National Instruments PXI/PXIe modules which are commonly used for functional testing of the devices under test. The laser SEE testing part of software controls all parts of the laser facility (laser beam positioning and pulse synchronization, visualization of exposure area, etc.) and the acquisition of laser SEE testing data. One of the main points of this paper is the idea of communication between the apps on different platforms (Microsoft .NET and NI LabVIEW) over local area network.
空间任务集成电路激光单事件效应测试自动化
分工对激光SEE检测的效率起着至关重要的作用。当测试人员在一个全局任务中完成他们的角色时,可以达到最高的效率:一个人从事调试和监控设施的测试进度,另一个人参与被测设备(DUT)的准备和性能监控。本文描述了我们用于SEE测试的软件架构,它由两部分组成:一部分负责被测设备的功能测试,另一部分负责SEE测试逻辑。将这两个部分分开,可以由不同的专家独立开发。软件的DUT部分控制各种各样的设备,包括美国国家仪器公司的PXI/PXIe模块,这些模块通常用于被测设备的功能测试。软件的激光SEE检测部分控制着激光设备的各个部分(激光束定位与脉冲同步、曝光区域可视化等)以及激光SEE检测数据的采集。本文的重点之一是不同平台(Microsoft . net和NI LabVIEW)上的应用程序在局域网上的通信思想。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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