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Study of electrical property of Au-Ge eutectic solder alloys for high temperature electronics

机译:高温电子学Au-Ge共晶钎料合金的电性能研究

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As deep earth oil exploration transits into deeper earth, it faces challenges in producing reliable microelectronics devices and sensors that will not degrade under a higher temperature and pressure environment. Numerous physical issues limit the manufacturing of this type of reliable microelectronics devices, especially those related to packaging materials and assembly of the microelectronics devices. One of the key requirements in reliability will be a continuous operating time of more than 500 h at 300°C. It is reported that the mechanical performance of a high temperature Au-Ge eutectic alloy is able to fulfill the minimum interconnection properties specified by the oil and gas exploration industry. However, the impact of thermal aging to Au-Ge eutectic alloy electrical property is not clear. The electrical resistivity of thermally aged Au-Ge eutectic alloys has been evaluated in this study. It is observed that the electrical resistivity decreases with thermal aging time until saturation. This effect is mainly contributed by the grain growth of Au, which results in a reduction in grain boundaries, thus causing a decrease in electrical resistivity. It has been determined that Au-Ge eutectic alloy is a suitable interconnection material in term of its electrical property to be used for high temperature electronics packaging.
机译:随着深层石油勘探向更深的地球过渡,它在生产可靠的微电子设备和传感器(在高温和高压环境下不会降解)方面面临挑战。许多物理问题限制了这种类型的可靠微电子器件的制造,特别是那些与包装材料和微电子器件的组装有关的问题。可靠性的关键要求之一是在300°C下连续运行500小时以上。据报道,高温Au-Ge共晶合金的机械性能能够满足油气勘探行业规定的最小互连特性。但是,热时效对Au-Ge共晶合金电性能的影响尚不清楚。在这项研究中评估了热时效Au-Ge共晶合金的电阻率。观察到电阻率随着热老化时间降低直至饱和。该效果主要是由于Au的晶粒长大引起的,这导致晶粒边界的减小,从而导致电阻率的降低。就其电性能而言,已经确定Au-Ge共晶合金是合适的互连材料,以用于高温电子封装。

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