
Description
ATH3100 is a miniature hyperspectral imager with small size and light weight. In addition to small size and light weight, ATH3100 has high spatial resolution, High spectral resolution, wide imaging range and other characteristics. ATH3100 also comes with a high stability and high blue synthetic lighting source, and the power and spectrum type are adjustable.
ATH3100 consists of two parts: a hyperspectral imager, a fully automatic electric rotating stage, and 4 fixed lighting sources. The hyperspectral instrument is based on high-efficiency transmission grating technology and has good aberration characteristics.
ATH3100 can also be installed on a tripod or pole, and Automatic calibration devices, weather monitoring sensors, etc., so as to realize long-term and large-area scanning of targets.
Model | Feature Description |
ATH3100 | basic type, 370~1000nm |
ATH3100W | wide field of view, 370~1000nm |
ATH3100-17 | Shortwave Infrared Hyperspectral, 900~1700nm |
ATH3100-25 | shortwave infrared hyperspectral, 1200~2500nm |
ATH3100-4-17 | Broadband range, 370~1700nm |
Features
Rotating scanning imaging, the scanning angle range is adjustable;
High sensitivity hyperspectral imager;
High stability and high blue synthetic lighting source, and the power and spectrum type are adjustable;
High-performance image sensor, extremely cost-effective
Optical design with high imaging quality on the whole target surface, the spot diameter is smaller than 0.5 pixels
The objective lens interface is a standard C-Mount, which can be changed according to user needs change objective lens
Wavelength range: 400-1000nm, 900-1700nm or 400-1700nm
High spectral resolution: 1.3 nm@visible light, 3.5nm@short wave infrared
Excellent imaging performance
Application
Universities and research institutes;
Biomedicine
Agricultural applications: pest monitoring, nutrient monitoring, disaster assessment, crop yield estimation, etc.
Forestry applications: tree species identification, biomass estimation, nutrient element monitoring, forest health, etc.
Water environment application: inversion of water quality parameters, analysis of spatial distribution and migration characteristics of water
pollution
Soil monitoring: soil water content monitoring, soil fertility monitoring
Geological applications: mineral mapping, mineral composition detection, ore-forming prediction