


The system is based on snapshot infrared spectroscopy imaging technology, with a working wavelength range covering8-14μmlong-wave infrared band, which is at the peak position of thermal radiation of most materials, and has excellent smoke penetration capability, supporting all-weather imaging. The scene information is collected by a retroreflective opticalstructure, combined with a low-loss three-dimensional filter component, to achieve full-spectrum collection in a single exposure, with aframe rate of up to50FPS.
Compared with traditional push-broom devices, this system achieves breakthroughs in speed, accuracy, and environmental adaptability.
Faster imaging efficiency:Avoid scanning delays andimage misalignment, significantly reducing motion artifacts;
Higher spectral resolution:Precise identificationof materials in the infrared regionof tiny differences;
Stronger environmental robustness:Adaptation to drones, etc.High-speed mobile platform, supportingWild deployment.

Widely applicable to emergency monitoring, resource exploration, military reconnaissance, and other scenarios where dynamic capture and material recognition are highly required, providing stable and reliable short-time spectral acquisition capability and material reflection characteristic analysis capability.
Typical applications: tracking the diffusion trajectory of chemical leaks, real-time identification of dynamic targets on the battlefield, and remote sensing detection by drones carrying out mineral exploration.
