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Solder joints properties as function of multiple reflow Vapor Phase Soldering process

机译:焊点属性作为多重回流气相焊接过程的功能

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The continuous trend towards high density and miniaturization of electronic devices involves the use of multiple reflow processes in assembling technologies for second level of interconnections in electronic packaging hierarchy. According to the “4P” Soldering Model concept (4PSMC), considering the Pad-Paste-Pin-Process elements as Key Process Input Variables (KPIV), the solder joints are the result of KPIV synergistically interactions and correlations with consequences over their microstructure. In the paper, taking into consideration the cooling rate influence over intermetallic compounds (IMC) formation and microstructure, there was described the investigations over electrical and mechanical properties of solder joints resulted from multiple reflow Vapor Phase Soldering (VPS) process, in terms of 4PSMC. Maintaining the pad, pin and paste of KPIV as references measurements of solder joints resistances and shear forces were perform as function of VPS process's number for two values of cooling rate, respectively IMC microstructures and stereofractography studies. The results of the studies performed and presented in the paper will be use for improving process control in order to assure the solder joints reliability, to minimize losses on VPS lines, to reduce defects number and rework time.
机译:电子器件的高密度和小型化的持续趋势涉及在电子包装层次结构中组装技术的组装技术中的多重回流工艺。根据“4P”焊接模型概念(4PSMC),考虑到焊盘粘贴引脚处理元件作为关键过程输入变量(KPIV),焊点是KPIV协同相互作用和与其微观结构后果的相关性的结果。在本文中,考虑到对金属间化合物(IMC)形成和微观结构的冷却速率影响,描述了在4PSMC方面对多重回流气相焊接(VPS)工艺产生的焊点的电力和力学性能的研究。将kpiv的焊盘,销和粘贴作为参考标准的焊接接头电阻和剪切力的测量值作为vps工艺的数量的两个冷却速率的数量进行,分别是IMC微结构和立体传递研究。本文进行和介绍的研究结果将用于改善过程控制,以确保焊点可靠性,以最大限度地减少VPS线路上的损失,以减少缺陷数量和返工时间。

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