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Bringing NIR spectrometers into mobile phones

机译:将NIR光谱仪带入手机

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Next generations of mobile phones will contain spectral analysers. Different concepts and system designs compete in this ultra-high volume market. Especially for the analysis of organic matter, which can be food, human skin or other items, the near infrared range offers substantial advantages, most of all a suitable penetration depth and relevant spectral information. On the other hand the spectrometer has to meet the requirements for the use in a mobile phone, i.e. size and price must drop significantly. The reliable operation, especially for the evaluation of the spectra with chemometric models, requires a very stable wavelength scale of the spectroscopic system. The deviation must not exceed 0.5 nm during operation under any condition and for each device used. Resonant MEMS devices combine multiple advantages: Ultra compact designs can be realized, MEMS motions allow an operation using a single detector to meet cost issues even with extended InGaAs technology and the position feedback ensures a precise and long term stable wavelength scale. Based on such resonantly actuated MEMS components NIR spectrometers have been designed. Recent research work aims for extreme miniaturization of the optical bench. The presented assembly technology has been optimized for volume production. The outline from the previous published work will be shrunk to 10 × 10 × 5 mm~3 with only a slightly reduced resolution. The new design will be optimized for cost efficient production as well.
机译:下一代手机将包含频谱分析仪。不同的概念和系统设计在这个超高产量的市场中竞争。特别是对于有机物(可能是食物,人体皮肤或其他物品)的分析,近红外范围具有明显的优势,其中最重要的一点是适合的穿透深度和相关的光谱信息。另一方面,光谱仪必须满足在移动电话中使用的要求,即,尺寸和价格必须大大降低。可靠的操作,特别是用于使用化学计量模型评估光谱的操作,要求光谱系统的波长范围非常稳定。在任何条件下以及使用的每个设备的操作过程中,偏差均不得超过0.5 nm。谐振MEMS器件具有多个优点:可以实现超紧凑的设计,即使采用扩展的InGaAs技术,MEMS运动也允许使用单个检测器进行操作以解决成本问题,并且位置反馈可确保精确且长期稳定的波长范围。基于这种共振致动的MEMS组件,已经设计了NIR光谱仪。最近的研究工作旨在使光具座极端小型化。提出的组装技术已针对批量生产进行了优化。以前出版的作品的轮廓将缩小到10×10×5 mm〜3,而分辨率仅会稍微降低。新设计也将进行优化,以实现具有成本效益的生产。

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