Mini and micro spectrometers pave the way to on-field advanced analytics

SPIE OPTO Pub Date : 2016-03-15 DOI:10.1117/12.2212384
C. Bouyé, H. Kolb, B. d'Humières
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引用次数: 2

Abstract

First introduced in the 1990's, miniature optical spectrometers were compact, portable devices brought on the market by the desire to move from time-consuming lab-based analyses to on-field and in situ measurements. This goal of getting spectroscopy into the hands of non-specialists is driving current technical and application developments, the ultimate goal being, in a far future, the integration of a spectrometer into a smartphone or any other smart device (tablet, watch, …). In this article, we present the results of our study on the evolution of the compact spectrometers market towards widespread industrial use and consumer applications. Presently, the main market of compact spectrometers remains academic labs. However, they have been adopted on some industrial applications such as optical source characterization (mainly laser and LEDs). In a near future, manufacturers of compact spectrometers target the following industrial applications: agriculture crop monitoring, food process control or pharmaceuticals quality control. Next steps will be to get closer to the consumer market with point-of-care applications such as glucose detection for diabetics, for example. To reach these objectives, technological breakthroughs will be necessary. Recent progresses have already allowed the release of micro-spectrometers. They take advantage of new micro-technologies such as MEMS (MicroElectroMechanical Systems), MOEMS (Micro-Opto-Electro-Mechanical Systems), micro-mirrors arrays to reduce cost and size while allowing good performance and high volume manufacturability. Integrated photonics is being investigated for future developments. It will also require new business models and new market approaches. Indeed, spreading spectroscopy to more industrial and consumer applications will require spectrometers manufacturers to get closer to the end-users and develop application-oriented products.
微型和微型光谱仪为现场高级分析铺平了道路
微型光谱仪于20世纪90年代首次推出,是一种紧凑的便携式设备,人们希望从耗时的实验室分析转向现场和现场测量,从而将其推向市场。让光谱学进入非专业人士手中的目标正在推动当前的技术和应用发展,最终目标是在遥远的将来,将光谱仪集成到智能手机或任何其他智能设备(平板电脑,手表等)中。在这篇文章中,我们介绍了我们对紧凑型光谱仪市场向广泛的工业应用和消费应用发展的研究结果。目前,紧凑型光谱仪的主要市场仍然是学术实验室。然而,它们已被用于一些工业应用,如光源表征(主要是激光和led)。在不久的将来,紧凑型光谱仪制造商的目标是以下工业应用:农业作物监测,食品过程控制或药品质量控制。接下来的步骤将是通过即时护理应用(如糖尿病患者的血糖检测)更接近消费者市场。要实现这些目标,技术上的突破是必要的。最近的进展已经允许微型光谱仪的发布。他们利用新的微技术,如MEMS(微机电系统),MOEMS(微光电机械系统),微镜阵列,以降低成本和尺寸,同时允许良好的性能和大批量制造。集成光子学正在研究未来的发展。它还需要新的商业模式和新的市场途径。事实上,将光谱学扩展到更多的工业和消费者应用将要求光谱仪制造商更接近最终用户并开发面向应用的产品。
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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