RED-Wave-Micro Near-Infrared Spectrometer
Measurements from 1750-2150nm MEMs improved performance over arrays SpectraWiz Software Suite
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Measurements from 1750-2150nm MEMs improved performance over arrays SpectraWiz Software Suite Full spectrum OR selectable wavelength OEM and NIR sensing applications RED-Wave-Micro Spectrometer Overview These RED-Wave-micro spectral sensors overcome the limitations of traditional linear array based spectrometers by utilizing innovative MEMS based Fabry-Pérot tunable filter technology. Due to their compact size and low cost, they are an ideal solution for advanced sensing application. These spectral sensors are designed for harsh industrial applications and they offer extreme ruggedness even in the most demanding environments. Perfect for OEM & NIR Sensing Compact just 1.5×1.5×1” and robust SpectraWiz & Customizable SDK OEM high volume capabilities Agriculture and Food composition Detector type: Single element extended InGaAs Spectrometer range: 1750 – 2150 µm (other ranges available) Power consumption: < 1.5 W Spectral Resolution: 10nm Spectral element: MEMS Fabry-Perot Interferometer Integration time: 0.1ms-10ms Digitizer Resolution: 16bit Software included: SpectraWiz Suite RED-Wave Micro Sample Spectra The powerful SpectraWiz® spectrometer software is provided free of charge with every spectrometer instrument. This includes drivers and customizable software for Windows. The SpectraWiz software is considered the “Swiss Army Knife of Spectroscopy” and may be used to accurately measure wavelength emissions, reflectance, transmission, absorption, concentrations, and absolute intensities. In addition to real-time spectroscopy, SpectraWiz® has built-in applications for SpectroRadiometry, SpectroColorimetry, ChemWiz chemistry lab concentration analyzer, and UV level monitors. Download SpectraWiz Software FREE SpectroRadiometry Systems Optical Metrology Systems Technical Information Request Instagram This field is for validation purposes and should be left unchanged. Name * Company / University Name Email * Phone Tell us about your application CAPTCHA Instagram This field is for validation purposes and should be left unchanged. Company / University Name Tell us about your application Horizontally Aligned Dipole Emission through Solvent Controlled Fusing of Perovskite Nanocubes and Nanoplates into 1D Nanowires G. G. Muley; Y. S. Tamgadge; P. P. Gedam; R. P. Ganorkar Abstract We report improved thermally stimulated third-order nonlinear optical coefficients (nonlinear refraction and nonlinear absorption) in thin films of Zn-doped CuS quantum dots (QDs) dispersed in a poly...
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