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System Level Health and Environmental Monitoring for Automatic Test Equipment

机译:自动测试设备的系统级健康和环境监控

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Sensor technology has enabled seemingly unlimited ability to monitor temperature, humidity, air flow, power, voltage, current, etc. with small, inexpensive, and reliable devices. These devices are small enough to fit anywhere inside of just about every assembly/subassembly of a piece of Automatic Test Equipment (ATE). The question is what kind of measurements need to be made, where should they be located, and what benefit are they to the system and the operators? Like all engineering tasks, adding environmental monitoring sensors to ATE should be based on requirements, cost, and benefits. Operational requirements such as temperature, altitude, and humidity are the primary drivers. Next are operational interface requirements such as input power, shock, vibration, and Electromagnetic Interference (EMI)/ Electromagnetic Compatibility (EMC). Finally, reliability and maintainability (R&M) requirements are often overlooked in the selection and placement of environmental sensors. Just as important as the sensors themselves is finding a way to present the data in a logical fashion focused on creating an intuitive interface for the operators of the equipment as a part of comprehensive Health Monitoring approach at the system level. Too much data presented without consideration towards the operator could detract from the primary mission to repair and verify the Units Under Test (UUTs). The data must also be logged and stored in such a way to be able to understand and recreate scenarios to help track the environmental effects on the ATE over time. This paper discusses the design approach taken to evaluate system level requirements to determine the overall environmental monitor architecture. It also discusses the cost and complexity trade-offs mandatory to ensure a focused operator experience without affecting system reliability and system maintainability requirements. Finally, the paper will discuss the overall system level benefits of the environmental and health monitoring schemes as they are employed on several ATE systems.
机译:传感器技术借助小型,廉价且可靠的设备,实现了看似无限的监控温度,湿度,空气流量,功率,电压,电流等的能力。这些设备足够小,可以安装在自动测试设备(ATE)的每个组件/子组件内部的任何位置。问题是需要进行哪种测量,应将其放置在哪里,它们对系统和操作员有什么好处?像所有工程任务一样,向ATE添加环境监控传感器应基于需求,成本和收益。主要的驱动因素是温度,海拔和湿度等运行要求。接下来是操作接口要求,例如输入功率,冲击,振动以及电磁干扰(EMI)/电磁兼容性(EMC)。最后,在选择和放置环境传感器时,常常忽略了可靠性和可维护性(R&M)要求。与传感器本身同样重要的是,找到一种以逻辑方式呈现数据的方法,该方法侧重于为设备操作员创建直观的界面,这是系统级全面健康监控方法的一部分。呈现给操作员的过多数据如果不加考虑,可能会损害主要任务,即无法修复和验证被测装置(UUT)。还必须以某种方式记录和存储数据,以便能够理解和重新创建方案,以帮助跟踪随时间变化对ATE的环境影响。本文讨论了用于评估系统级别要求以确定整体环境监控器体系结构的设计方法。它还讨论了为确保集中的操作员体验而不影响系统可靠性和系统可维护性要求而必须进行的成本和复杂性权衡。最后,本文将讨论环境和健康监控方案在多个ATE系统上所采用的总体系统级收益。

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