Hyperspectral Imaging Systems Market Demand and Future Outlook: Industry Trends and Forecast to 2029.
DBMR team uses simple language and easy to understand statistical images to provide thorough information and in-depth data on the Semiconductors and Electronics industry and Hyperspectral Imaging Systems Market. This industry analysis report also shares gross margin, market share, attractiveness index, and value and volume growth of all of the segments studied by the analysts. This comprehensive report makes available the recent and forthcoming technical and financial details of the industry. Hyperspectral Imaging Systems Market report also offers details about consumer’s demands, preferences, and their variable likings about particular product. The company profiles of all the key players and brands that are dominating the market have been taken into consideration here.
- Imec VZW
- Corning Incorporated
- HORIBA, Ltd
- Hamamatsu Photonics K.K.
- Thorlabs, Inc.
- BaySpec, Inc.
- Brandywine Photonics LLC
- ChemImage Corporation
- Cubert GmbH
- CytoViva, Inc.
- Diaspective Vision
- Headwall Photonics, Inc.
- Hinalea Imaging
- HyperMed Imaging, Inc.
- Inno-Spec GmbH
- LLA Instruments GmbH & Co. KG
- Norsk Electro Optik AS
- Photon Etc. Inc
- Physical Sciences Inc.
- Raptor Photonics
- Resonon Inc.
- SPECIM
- SPECTRAL IMAGING LTD.
- STEMMER IMAGING AG
- Surface Optics Corporation
- Teledyne Digital Imaging Inc. (A Subsidiary of Teledyne Technologies Incorporated)
- Telops
- XIMEA Group
- On the basis of product, the global hyperspectral imaging systems market is segmented into cameras and accessories. In 2021, the cameras segment is expected to dominate the global hyperspectral imaging systems market, as the camera is the major product in the hyperspectral imaging system, and the increasing adoption of hyperspectral technology for military and industrial applications the growth of the segment in the market.
- On the basis of scanning techniques, the global hyperspectral imaging systems market is segmented into spatial scanning, spectral scanning, non-scanning, and spatiospectral scanning. In 2021, the spatial scanning segment is expected to dominate the market, as spatial scanning is one of the main methods used for hyperspectral data acquisition and provides high spectral resolution over a wide range of the spectrum. Spatial scanning is the reason for the usage of hyperspectral scanning, which fuels the segment's adoption and growth.
- On the basis of range, the global hyperspectral imaging systems market is segmented into less than 400 nm, 400 nm to 1700 nm, and more than 1700 nm. In 2021, the 400 nm to 1700 nm segment is expected to dominate the market, as the 400 nm to 1700 nm range is the most commonly used range for hyperspectral imaging in applications such as detection of contaminants in food, medical diagnostics, military surveillance, plastic recycling, and others.
- On the basis of technology, the global hyperspectral imaging systems market is segmented into pushbroom (line scanning), snapshot (single shot), whiskbroom (point scanning), and others. In 2021, the push broom (line scanning) segment is expected to dominate the market as it is faster than any other technology, gathers more light. They also have a better radiometric and spatial resolution and is the most popular hyperspectral imaging approach, which fuels the adoption of pushbroom technology in the hyperspectral imaging system market.
- On the basis of application, the global hyperspectral imaging systems market is segmented into remote sensing, military surveillance, machine vision and optical sorting, life sciences and medical diagnostics, agriculture, food processing, environmental monitoring, mining/mineral mapping, mineralogy, civil engineering, and other applications. In 2021, the remote sensing segment is expected to dominate the market as hyperspectral imaging in many applications such as agriculture, mineral exploration, environmental monitoring, and others for remote sensing. Remote sensing in hyperspectral imaging addresses issues in fields that are not visible to the human eye.
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