Robust multi-parameter sensing probe for water monitoring based on ALD-coated metallic micro-patterns

Ferdous Shaun, Massimo Pellegrino, W. Cesar, F. Marty, Zhifei Xu, M. Capo-Chichi, P. Basset, B. Lebental, T. Bourouina
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引用次数: 3

Abstract

We report on a multi-sensing probe for water network monitoring enabling simultaneous measurements of water electrical conductivity, flow-rate and temperature. A very simple fabrication process is used where all physical sensors are obtained only from micro-patterning of glass, combining platinum, gold. Further coating using Atomic Layer Deposition (ALD) is achieved for the purpose of reducing both electro-erosion and biofouling, while keeping the sensor's electrical and thermal functionalities. This is critical for long-term reliability of sensors immersed in water. The lateral size of each sensing elements does not exceed a few 100μm. This small footprint allowed implementing a redundancy strategy on the chip, not only for reliability purposes but also to accommodate for different measurement ranges based on scalable designs.
基于ald涂层金属微图的水监测鲁棒多参数传感探头
我们报告了一种用于水网监测的多传感探头,可以同时测量水的电导率、流速和温度。采用了一种非常简单的制造工艺,所有的物理传感器都是通过结合铂、金的玻璃微结构获得的。为了减少电侵蚀和生物污染,同时保持传感器的电和热功能,进一步使用原子层沉积(ALD)涂层。这对于浸入水中的传感器的长期可靠性至关重要。每个传感器的横向尺寸不超过几个100μm。这种小的占地面积允许在芯片上实现冗余策略,不仅是为了可靠性的目的,而且还适应基于可扩展设计的不同测量范围。
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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