
The GRAND-EOS is a global hyperspectral camera that offers continuous tunability from 400 to 1650 nm. It integrates both micro and macro imaging modalities, providing non-polarized wavelength selection with high throughput and efficiency, enabled by Photon etc’s patented volume Bragg grating technology. The system generates a hyperspectral data-cube with spatial and spectral information, suitable for reflectance, transmittance, and luminescence imaging, catering to both research and industrial applications.
Global Imaging vs Raster ScanningGlobal imaging captures monochromatic images and scans wavelengths, contrasting with raster scanning which measures point by point or line by line. Global imaging reduces acquisition numbers, minimizes sample damage, and offers high spectral and spatial resolution, allowing for the reconstruction of moving object trajectories.
Applications* A spectrum of solutions CD 5795 DE GASPE AVENUE, #222 MONTREAL, QUEBEC, H2S 2X3 CANADA GRAND-EOS™ UVDCDCDCrTD^ Macro-imaging modality Micro-imaging modality www.photonetc.com CAMERA TECHNICAL SPECIFICATIONS GRAND-EOS is a global hyperspectral camera that is continuously tunable from 400 to 1650 nm. This system combines micro and macro modalities. It provides non-polarized wavelength selection with high throughput and efficiency. This is made possible by Photon etc’s patented filtering technology based on volume Bragg grating. GRAND-EOS generates a hyperspectral data-cube with spatial information along the X-Y axes and spectral information along the Z-axis. Photon etc.’s global-imaging technology extracts a data-cube from a handful of monochromatic images and without the need for image reconstruction. The field of view covered can be adjusted depending on the application and sample size. GRAND-EOS is designed for reflectance, transmittance and luminescence imaging and is well suited for both fundamental research and industrial applications. © 02-2024 Photon etc. Inc. All rights reserved.
Open the catalog to page 1GRAND-EOS OPENS THE DOOR TO: » Photovoltaic characterization » Counterfeit examination » Forensic research » Food and plant sorting GLOBAL IMAGING VS RASTER SCANNING: Hyperspectral global imaging acquires monochromatic images and scans the wavelengths. In contrast, a spectral measurement performed with raster scanning technology is taken point by point or line by line by moving the sample or the excitation source. The number of acquisitions being much lower in global imaging (a few hundred wavelengths compared to several hundreds of thousands of points in scanning), the excitation density can...
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