基于CMOS的化学传感器的生物相容性封装

T. Prodromakis, K. Michelakis, T. Zoumpoulidis, R. Dekker, C. Toumazou
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引用次数: 29

摘要

化学传感器最具挑战性的设计方面之一是将非敏感区域与感测介质隔离开来。这在传感器是植入式平台的一部分的应用中变得尤为重要,限制了使用生物相容性材料的可用选择。聚对二甲苯被广泛用于心脏起搏器涂层,因为它具有优异的化学、电气和热稳定性。在这项工作中,我们利用聚对二甲苯封装了基于cmos的化学传感器,并将其粘合在一个墨盒上,同时通过激光烧蚀和超声暴露了传感区域。测量结果表明,与以前报道的技术相比,电气隔离得到了改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biocompatible encapsulation of CMOS based chemical sensors
One of the most challenging design aspects of chemical sensors is the isolation of the non-sensitive areas from the sensed medium. This becomes particularly critical in applications where the sensors are part of an implantable platform, restricting the available options to those using biocompatible materials. Parylene has been extensively used to coat pacemakers as it demonstrates excellent chemical, electrical and thermal stability. In this work, we have utilized parylene to encapsulate CMOS-based chemical sensors bonded on a cartridge, while the sensing area has been exposed by laser ablation and sonication. Measured results demonstrate improved electrical isolation than previously reported techniques.
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