Investigation of rework for straddle mount connectors

Jeffery Li, Fubin Song, Khoo KoK Wei, James Huang, Alex Chen, P. Pu, Sven Peng
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Abstract

With the advancement of the motherboard multiple functions, more and more connectors are mounted on the Printed Circuit Board (PCB) to interconnect electronic components or sub-functional daughtercards. Among different types of connectors, Straddle Mount Connector (SMC), a typical surface mount connector with leads to be soldered on both top and bottom sides of the PCB and with high mechanical strength, is widely used on server motherboards and other systems to serve as power or signal interconnection. As the straddle mount connectors have leads on both top and bottom sides of the printed circuit board, it brings some challenges for the hot gas rework process without compromising the quality and reliability. The traditional hot gas rework nozzle of blowing hot air on localized one side of PCB is not suitable for the rework of straddle mount connectors, the heat can not be evenly distributed on the leads soldered on both sides of PCB, , especially for the board with thickness more than 4mm, when the solder on bottom side get melted, the top side temperature will be too high and causing damage to PCB. It is also very difficult to remove the straddle mount connectors from PCB by using the traditional rework method, nozzle and fixture. This paper presents a rework processes for straddle mount connector with a newly designed nozzle that can evenly distributing the hot air on both sides. The fixtures for removing and replacing the connectors during rework process will be discussed as well.. The rework process will be optimized and compared with the traditional singleside method in this work. The test configuration and the experimental data will be reported in details. The results indicate that the straddle mount connectors can be removed and placed successfully and conveniently by using the newly designed nozzle and fixtures. In addition, the reliability performance of this new method on the solder joint after rework will be also discussed, including thermal shock and accelerated temperature cycling, etc.
跨座式连接器返工的研究
随着主板多功能的推进,越来越多的连接器被安装在印刷电路板(PCB)上,用于连接电子元件或子功能子卡。在不同类型的连接器中,SMC是一种典型的表面贴装连接器,其引线焊接在PCB的上下两侧,具有很高的机械强度,广泛用于服务器主板和其他系统上,作为电源或信号互连。由于跨接式连接器在印刷电路板的上下两侧都有引线,在不影响质量和可靠性的情况下,给热气体返工工艺带来了一些挑战。传统的在PCB局部一侧吹热风的热气返工喷嘴不适用于跨装式连接器的返工,热量不能均匀地分布在PCB两侧焊接的引线上,特别是对于厚度大于4mm的电路板,当底部焊料熔化时,顶部温度过高,会对PCB造成损坏。使用传统的返工方法、喷嘴和夹具将跨装式连接器从PCB上移除也是非常困难的。本文介绍了一种采用新设计的能使热风均匀分布在两侧的喷嘴的跨座式连接器的返工工艺。在返工过程中拆卸和更换连接器的夹具也将进行讨论。本工作将对返工过程进行优化,并与传统的单边方法进行比较。详细的测试配置和实验数据将被报告。结果表明,采用新设计的喷嘴和夹具可以成功方便地拆卸和放置跨座式连接器。此外,还将讨论该方法对返工后焊点的可靠性性能,包括热冲击和加速温度循环等。
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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