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Characterization, Prevention and Removal of Particulate Matter on Printed Circuit Boards

机译:印刷电路板上颗粒物的表征,预防和去除

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Particulate matter contamination is known to become wet and therefore ionically conductive and corrosive if the humidity in the environment rises above the deliquescence relative humidity (DRH) of the particulate matter. In wet condition, particulate matter can electrically bridge closely spaced features on printed circuit boards (PCBs), leading to their electrical failure. Failures attributed to particulate matter have even been observed in data centers where the gaseous contamination levels are low enough to meet the ANSI/ISA-71.04-2013 G1 severity level. The combination of miniaturization of electronic components, the reduction of feature spacing on PCBs and the loosening of the data center temperature and humidity envelope to save energy is making electronic hardware more prone to failure due to particulate matter. The characterization of particulate matter on PCBs is challenging because of the small amount of particulate matter available for analysis. The objective of this paper is to develop and describe a practical, routine means of measuring the DRH of minute quantities of particulate matter (1 mg or less) found on PCBs. Data center particle filtration schemes and means of removing the particulate matter from PCBs will also be presented.
机译:已知如果环境中的湿度升高到高于颗粒物的潮解相对湿度(DRH),则颗粒物污染物会变湿,从而产生离子传导性和腐蚀性。在潮湿条件下,颗粒物可能会电桥接印刷电路板(PCB)上间隔较近的特征,从而导致其电气故障。甚至在数据中心中观察到归因于颗粒物的故障,在这些数据中心中,气体污染水平很低,无法满足ANSI / ISA-71.04-2013 G1严重性水平。电子组件的小型化,PCB上特征间距的减少以及数据中心温度和湿度范围的松动以节省能源的结合,使电子硬件更容易因颗粒物而失效。 PCB上颗粒物的表征具有挑战性,因为可用于分析的颗粒物数量很少。本文的目的是开发和描述一种实用的常规方法,用于测量PCB上微量微粒物质(等于或小于1毫克)的DRH。还将介绍数据中心颗粒过滤方案以及从PCB去除颗粒物的方法。

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