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Development and reliability of a direct access sensor using flip chip on flex technology with anisotropic conductive adhesive

机译:基于各向异性导电胶的柔性技术上的倒装芯片直接访问传感器的开发和可靠性

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摘要

Technological developments in biomedical microsystems are opening up new opportunities to improve healthcare procedures. Swallowable diagnostic sensing capsules are an example of these. In none of the diagnostic sensing capsules, is the sensor’s first level packaging achieved via Flip Chip Over Hole (FCOH) method using Anisotropic Conductive Adhesive (ACA). In a capsule application with direct access sensor (DAS), ACA not only provides the electrical interconnection but simultaneously seals the interconnect area and the underlying electronics. The development showed that the ACA FCOH was a viable option for the DAS interconnection. Adequate adhesive formed a strong joint that withstood a shear stress of 120N/mm2 and a compressive stress of 6N required to secure the final sensor assembly in place before encapsulation. Electrical characterization of the ACA joint in a fluid environment showed that the ACA was saturated with moisture and that the ions in the solution actively contributed to the leakage current, characterized by the varying rate of change of conductance. Long term hygrothermal aging of the ACA joint showed that a thermal strain of 0.004 and a hygroscopic strain of 0.0052 were present and resulted in a fatigue like process. In-vitro tests showed that high temperature and acidity had a deleterious effect of the ACA and its joint. It also showed that the ACA contact joints positioned at around or over 1mm would survive the gastrointestinal (GI) fluids and would be able to provide a reliable contact during the entire 72hr of the GI transit time. A final capsule demonstrator was achieved by successfully integrating the DAS, the battery and the final foldable circuitry into a glycerine capsule. Final capsule soak tests suggested that the silicone encapsulated system could survive the 72hr gut transition.
机译:生物医学微系统的技术发展为改善医疗程序提供了新的机会。可吞咽的诊断感测胶囊就是一个例子。在任何一种诊断传感胶囊中,传感器的第一级包装都是使用各向异性导电胶(ACA)通过倒装芯片倒装(FCOH)方法实现的。在具有直接访问传感器(DAS)的胶囊应用中,ACA不仅提供电气互连,而且同时密封了互连区域和基础电子设备。事态发展表明,ACA FCOH是DAS互连的可行选择。足够的粘合剂形成牢固的接头,该接头承受了120N / mm2的剪切应力和6N的压缩应力,以便在封装之前将最终的传感器组件固定到位。在流体环境中,ACA接头的电特性表明,ACA充满了水分,溶液中的离子积极地引起了漏电流,其特征在于电导变化率的变化。 ACA接头的长期湿热老化表明存在0.004的热应变和0.0052的吸湿应变,并导致类似疲劳的过程。体外测试表明,高温和酸性会对ACA及其关节产生有害作用。它还表明,定位在1mm左右或超过1mm的ACA接触关节将在胃肠道(GI)液体中幸存下来,并能够在GI传输时间的整个72小时内提供可靠的接触。通过将DAS,电池和最终的可折叠电路成功集成到甘油胶囊中,可以实现最终的胶囊演示器。最终的胶囊浸泡测试表明,有机硅封装的系统可以在肠道消化72小时后存活下来。

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    Jesudoss Pio;

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  • 年度 2011
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