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EFFECTIVENESS OF CONFORMAL COATINGS IN PREVENTING RESISTOR SILVER SULFIDE CORROSION

机译:保形涂层在防止电阻银硫化物腐蚀中的作用

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Thick film resistors are used extensively in a variety of electronics applications. The silver in a conventional thick film resistor is prone to the attack of sulfur-bearing gaseous contamination. This problem has been documented for servers that are found in data centers, due to the environmental pollution of sulfur in certain industrial locations and more typically, in growth market countries where the use of coal to produce electricity is prevalent. The growth of silver sulfide, resulting from silver corrosion, can cause an increase in resistance and eventually, an electrical open of the resistor. The best method to increase the robustness of resistors in high sulfur environments is to employ Anti-Sulfur Resistors (ASR). These resistors either have a structure alteration to seal the ingress path from sulfur bearing gases or use a noble metal for the resistor contacts. Occasionally, unique resistor part numbers have limited availability in ASR construction. Thus, it is beneficial to have alternate techniques to mitigate sulfur-induced corrosion. This paper will discuss the evaluation of conformal coatings to mitigate silver sulfide corrosion of thick film resistors. Two-part epoxy has been demonstrated to prevent resistor corrosion, but has manufacturability concerns in high volume production. Conversely, coatings that contain silicone are known to increase silver sulfide corrosion due to their inherent nature in readily absorbing sulfur. Other conformal coating chemistries are available for various applications, but have not been tested for their ability to mitigate silver sulfide corrosion of resistors. A Flowers of Sulfur (FoS) test procedure can evaluate the tendency for silver sulfide corrosion of resistors to occur as a predictor of field performance. This technique was used to evaluate polyurethane and acrylic materials, in addition to a nanocoating. Uncoated, epoxy-coated and silicone-coated samples were used as controls for comparison to the coatings evaluated. Results and observed corrosion trends for a variety of resistor body sizes will also be discussed.
机译:厚膜电阻器广泛用于各种电子应用中。传统厚膜电阻器中的银容易受到含硫气体污染物的侵蚀。对于数据中心中发现的服务器,已经记录了此问题,这是由于某些工业场所中硫的环境污染所致,更常见的是在使用煤炭来发电的增长市场国家中。由银腐蚀引起的硫化银的生长会导致电阻增加,并最终导致电阻器的电气断开。在高硫环境中提高电阻器耐用性的最佳方法是采用抗硫电阻器(ASR)。这些电阻器可以通过改变结构来密封含硫气体的进入路径,也可以将贵金属用于电阻器触点。有时,独特的电阻器部件号在ASR构造中的可用性有限。因此,有利的是具有替代技术来减轻硫引起的腐蚀。本文将讨论共形涂层的评估,以减轻厚膜电阻器的硫化银腐蚀。已证明两部分环氧树脂可防止电阻器腐蚀,但在大批量生产中存在可制造性方面的问题。相反,已知含硅酮的涂层由于其易吸收硫的内在性质而增加了硫化银的腐蚀。其他保形涂层化学材料可用于各种应用,但尚未测试其减轻电阻器的硫化银腐蚀的能力。硫花(FoS)测试程序可以评估电阻器发生硫化银腐蚀的趋势,以此作为现场性能的预测指标。除纳米涂层外,该技术还用于评估聚氨酯和丙烯酸材料。将未涂覆的,环氧涂覆的和硅酮涂覆的样品用作对照,以与所评估的涂层进行比较。还将讨论各种电阻体尺寸的结果和观察到的腐蚀趋势。

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