VNIR Push-Broom HSI Imager ATH1100
Description
The ATH1100 is a compact and lightweight mini hyperspectral imager suitable for both indoor and outdoor scenes. Beyond its small size and light weight, the ATH1100 features high spatial resolution, high spectral resolution, and a broad imaging range. It consists of two parts: an imaging lens and a hyperspectral imager. The hyperspectral imager, based on transmission grating technology, exhibits excellent aberration characteristics.
The ATH1100 uses a high-performance CCD imaging device with 1920×1200 pixels, producing clear images with minimal noise. The ATH1100 model is a conventional straight-tube hyperspectral imager, ideal for multi-rotor drones.
The ATH1100 can be used for real-time spectral information measurement of objects such as plants, water bodies, and soil, obtaining spectral images. By analyzing these spectral images, relationships can be established with the physical and chemical properties of plants, aiding in plant classification and growth condition studies. The entire system is compactly designed with a high spectral resolution in the main hyperspectral imager unit. Using a built-in push-broom imaging method, it can function as an independent measurement system or be mounted on a drone for aerial remote sensing operations.
Features
- Spectral Range: 390~1000nm
- Hyperspectral Resolution: Better than 1.5 nm
- Built-in push-broom imaging
- Spectral Pathway: Holographic transmission grating
- Maximum Field of View: 31.7° (customizable)
- Minimum Instantaneous FOV: 0.7 mrad
- Superior imaging performance
- Powerful image compression algorithm
- Compact design: 77mm x 285mm x 105mm
- Weight: <1000g
Application
- Geology and mineral resource:Oil,Mining,Energy
- Agriculture: crop growth and Seed testing
- Environmental Monitoring:Forest pest and disease monitoring and fire prevention
- Environmental Monitoring:Coastal and marine environment
- Environmental Monitoring:Grassland productivity and monitoring
- Environmental Monitoring:Lake and watershed
- Scientific Research:Remote sensor
- Scientific Research:Meteorological research
- Mining & Environmental Analysis
- Environmental Monitoring:Water Bodies Monitoring & Water Stress
- Food Safety:Agricultural and livestock product quality testing
- Public Safety: Defense, Homeland security
- Environmental Science:Disaster prevention and mitigation
Sampling Interval |
ATH1100 : 0.31 nm ATH1100-17: 0.29 nm |
F-Number (F/#) |
ATH1100 : F/2.4 ATH1100-17: F/2.6 |
Power Consumption |
ATH1100 : USB powered, 3.4 W ATH1100-17: USB powered, 4.5 W |
FOV |
ATH1100 : 11.5°@f=35 mm ATH1100-17: 12.5°@f=35 mm |
Detector Size |
ATH1100 : 11.3 mm × 7.03 mm ATH1100-17: 9.6 mm × 7.7 mm |
Detector Resolution |
ATH1100 : 1920 × 1200 ATH1100-17: 640 × 512 |
Pixel Size |
ATH1100 : 5.86µm x 5.86µm ATH1100-17: 15µm x15µm |
Bit Depth |
ATH1100 : 12 bits ATH1100-17: 14 bits |
SNR |
ATH1100 : 45 dB ATH1100-17: 43 dB |
Dynamic Range |
ATH1100 : 73 dB ATH1100-17: 60 dB |
Slit Width |
ATH1100 : 15 µm, 25µm, etc., customizable ATH1100-17: 15 µm,25µmetc., customizable |
Binning Mode |
ATH1100 : 4×4 / 2×4 ATH1100-17: 4×4 / 2×4 |
Spatial Bands |
ATH1100 : 1200 ATH1100-17: 512 |
Spectral Bands |
ATH1100 : 1920 ATH1100-17: 640 |
Working Temperature |
ATH1100 : -20ºC~50ºC ATH1100-17: -20ºC~50ºC |
IFOV |
ATH1100 : 0.17mrad@f=35 mm ATH1100-17: 0.43mrad@f=35 mm |
Frame Rate |
ATH1100 : 164 fps ATH1100-17: 120 fps |
Focal Length |
ATH1100 : 25 mm,35mm customizable ATH1100-17: 25 mm,35mm customizable |
Spatial Resolution |
ATH1100 : 0.016 m (@35mm, 100m flying altitude) ATH1100-17: 0.015 m (@35mm, 100m flying altitude) |
Storage Temperature |
ATH1100 : -30ºC~70ºC ATH1100-17: -30ºC~70ºC |
What is Hyperspectral Imaging Camera?
Hyperspectral imaging Camera, or imaging spectroscopy, combines the functions of imaging camera and spectroscopy. A hyperspectral camera acquires the spectrum for each pixel in an image of the scenes.
What does Hyperspectral Imaging Camera used for?
Hyperspectral Imaging Camera are used for applications in astronomy, agriculture, molecular biology, biomedical imaging, geosciences, physics, environment,and monitoring. Hyperspectral imaging camera takes pictures of objects spectrum with unique 'fingerprints', it enable identification of the materials. Like spectral fingerprint of oil helps geologists locate new oil fields.
What does Hyperspectral Imaging Camera tell you?
The hyperspectral imaging provides much more color information in details than a normal camera,which leads to differentiate from objects in the scene. Hyperspectral imaging is used to find objects, identify materials, or detect processes.
How much does Hyperspectral Imaging Camera cost?
OPTOSKY manufactures hyperspectral imaging camera 400-1000nm prices range USD45,000~49,800.
How to choose a Hyperspectral Imaging Camera?
Compare FOV,spatial dimensions, weight,optical performance,size, and cost etc.
Where to buy Hyperspectral Imaging Camera?
Buy from local distributor of OPTOSKY,online shopping or inquire us.
Why Chosse Optosky Hyperspectral Imaging Camera?
1.Optosky F2.4, FOV is larger than that of competitors
2.Spatial dimension 14mm
3.Lightweight 1500 g, 950g, 650g
4.High optical performance
5.Compact size:300x70 x70mm;300x60x60mm;270x50x50mm
6.Low cost

Resound Photoelectric Technology Research Institute (LSRPTR)
Resound Photoelectric Technology Research Institute (LSRPTR), also known as Resound Research Institute, is affiliated with China Haiheng International Trade Group Co., Ltd. (CHHGC). As an investment attraction enterprise in Zhongyuan Science and Technology City and a construction unit of the Zhongyuan Aurora Laboratory, the institute is committed to the industrialization of scientific and technological achievements, guided by market demand.
Technical Cooperation
Resound Research Institute has established technical cooperation with numerous well-known domestic and foreign universities, research institutes, and enterprise platforms, including:
Tsinghua University
Lanzhou University
Zhengzhou University
Altai State Technical University of Russia
Northwestern Polytechnical University
Chinese Academy of Engineering
Henan Academy of Sciences
China Electronics Technology Group
CGN Group
Xiamen University
Henan University
National University
University of Electronic Science and Technology of China
Chinese Academy of Sciences
China Academy of Engineering Physics
China Shipbuilding Group
China Electronics Group
Henan Inspection Group
Research and Development Fields
* Applications of Micro-Electromechanical and Lithography Technology
* Optoelectronics and Spectroscopy Technology
* High-Power Laser and Device Preparation Technology
* Nuclear Instrument and Emergency Equipment System Applications
Introducing Advanced Technologies and Products
Resound Research Institute continuously introduces advanced new technologies and products in industrial application scenarios such as market supervision, public safety, environmental monitoring, and science, education, research, and production. This has led to the formation of a domestically produced high-end scientific equipment industry base that integrates design, research and
development, production, sales, and services. This base drives the iteration of downstream industry technology, enhances the transformation and industrialization level of scientific and technological achievements, and provides technological sources for innovative development.





