首页> 外文会议>International Conference on Solid-State Sensors, Actuators and Microsystems amp;amp;amp;amp;amp;amp;amp;amp;amp;amp;amp;amp;amp;amp;amp; Eurosensors >On-Chip Parallel Architecture Mems FTIR Spectrometers Enabling High Spectral Resolution for Environmental Gas Analysis
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On-Chip Parallel Architecture Mems FTIR Spectrometers Enabling High Spectral Resolution for Environmental Gas Analysis

机译:片上并行架构MEMS FTIR光谱仪,实现环境气体分析的高光谱分辨率

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Fourier transform infrared spectrometer is of great importance in field of gas sensing. Miniaturizing such spectrometers using MEMS technology opens the door for low cost and compact spectrometers. Such miniaturization helps in delivering spectrometers to end-customers opening more applications. However, scaling down the spectrometers limits its selectivity or the spectrometer resolution. For Michelson interferometers, this is due to the limited travel range of moving mirror. Mitigating such limit can be achieved using the parallel concept making use of the small size of the MEMS interferometer. Two interferometers monolithically were integrated on the same chip, while the scan range of the mirrors are complementary using the same actuator range. Gas sensing measurement was conducted to show the enhanced selectivity of such novel architecture.
机译:傅里叶变换红外光谱仪在气体传感领域具有重要意义。使用MEMS技术的小型化这种光谱仪为低成本和光谱仪开门。这种小型化有助于将光谱仪提供给最终客户开启更多应用。但是,缩小光谱仪限制其选择性或光谱仪分辨率。对于迈克森干涉仪,这是由于移动镜的有限的行驶范围。使用并行概念可以使用利用MEMS干涉仪的小尺寸来实现减轻这种限制。两个干涉仪整体集成在同一芯片上,而镜子的扫描范围是使用相同的致动器范围的互补。进行气体传感测量以显示这种新颖架构的增强选择性。

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