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A Review on Humidity Temperature and Strain Printed Sensors—Current Trends and Future Perspectives

机译:湿度温度和应变印刷传感器的综述 - 当前趋势和未来的观点

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摘要

Printing technologies have been attracting increasing interest in the manufacture of electronic devices and sensors. They offer a unique set of advantages such as additive material deposition and low to no material waste, digitally-controlled design and printing, elimination of multiple steps for device manufacturing, wide material compatibility and large scale production to name but a few. Some of the most popular and interesting sensors are relative humidity, temperature and strain sensors. In that regard, this review analyzes the utilization and involvement of printing technologies for full or partial sensor manufacturing; production methods, material selection, sensing mechanisms and performance comparison are presented for each category, while grouping of sensor sub-categories is performed in all applicable cases. A key aim of this review is to provide a reference for sensor designers regarding all the aforementioned parameters, by highlighting strengths and weaknesses for different approaches in printed humidity, temperature and strain sensor manufacturing with printing technologies.
机译:印刷技术一直在吸引越来越兴趣的电子设备和传感器的兴趣。它们提供了一种独特的优点,如添加材料沉积,低于无材料废物,数字控制的设计和印刷,消除了器件制造,宽的材料兼容性和大规模生产的多个步骤,而且少数。一些最流行和有趣的传感器是相对湿度,温度和应变传感器。在这方面,本综述分析了印刷技术对全部或部分传感器制造的利用率和参与;为每个类别提出了生产方法,材料选择,传感机制和性能比较,同时在所有适用的情况下进行传感器子类别的分组。本综述的一个关键目的是通过突出印刷湿度,温度和应变传感器制造中的不同方法的强度和弱点来提供关于所有上述参数的传感器设计者的参考。

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