Hyperspectral imaging trends

DIY Rotary Hyperspectral Imager

ATH3100
ATH3100 is a compact and lightweight rotational scanning hyperspectral imaging system.
Delivery
FOB
minimum order
1 unit
Country of Origin
Made in China
Quantity
Contact Now
Description
 
Introducing the ATH3100, a compact and lightweight rotational scanning hyperspectral imaging system. This miniature imager boasts high spatial and spectral resolution, complemented by a wide imaging range. It features a high-stability synthetic lighting source with adjustable power and spectral types, ensuring versatile applications in various industries.
The ATH3100 comprises a hyperspectral imager utilizing advanced transmission grating technology for superior aberration correction. Paired with a fully automatic electric rotating stage and four fixed lighting sources, it offers precise imaging capabilities.
Ideal for long-term, large-area scanning, the ATH3100 supports tripod or pole mounting and includes features like automatic calibration and weather monitoring sensors. It meets the demands of environmental monitoring, agriculture, and remote sensing applications, reflecting current trends in hyperspectral imaging technology.
Explore the ATH3100 and revolutionize your imaging capabilities with our cutting-edge rotational scanning hyperspectral imaging systems.
 
Features
 
  • Rotating scanning imaging with adjustable scanning angle range;
  • High-sensitivity hyperspectral imager;
  • High-stability, high-blue synthetic lighting source with adjustable power and spectrum;
  • High-performance image sensor with excellent cost-effectiveness;
  • Full-target high imaging quality optical design with a spot diameter less than 0.5 pixels;
  • The objective lens interface is a standard C-Mount, allowing for lens replacement according to user requirements.
  • Wavelength range: 400-1000nm, 900-1700nm, or 400-1700nm;
  • High spectral resolution: 1.3 nm @ visible light, 3.5 nm @ shortwave infrared;
  • Outstanding imaging performance
 
Application
 
  • Universities and research institutes;
  • Biomedical applications;
  • Agricultural applications: pest and disease monitoring, nutrient monitoring, disaster assessment, crop yield estimation, etc.;
  • Forestry applications: species identification, biomass estimation, nutrient element monitoring, forest health, etc.;
  • Water environment applications: inversion of water quality parameters, analysis of spatial distribution and migration characteristics of water pollution;
  • Soil monitoring: soil moisture monitoring, soil fertility monitoring;
  • Geological applications: mineral mapping, mineral composition detection, mineralization prediction.