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SWIR Hyperspectral Camera

The SWIR Hyperspectral Imager is a compact and lightweight short-wave infrared (SWIR) hyperspectral camera designed for integration with drones and other remote-sensing platforms. It features high spatial and spectral resolution

Portable Hyperspectral Imgaer Get Best Price

SWIR Hyperspectral Camera

The SWIR Hyperspectral Imager is a compact and lightweight short-wave infrared (SWIR) hyperspectral camera designed for integration with drones and other remote-sensing platforms. It features high spatial and spectral resolution together with a wide field of imaging, making it suitable for both airborne and ground-based hyperspectral applications.

The system consists of two main parts: an imaging camera and a hyperspectrometer. The hyperspectrometer utilizes transmission grating technology combined with excellent optical aberration correction to provide high-quality hyperspectral imaging performance.

The SWIR Hyperspectral Imager uses a high-resolution, high-performance cooled InGaAs detector with configurations supporting either 640 × 512 pixels or 1280 × 1024 pixels. The cooled detector provides clear imaging, high sensitivity, and low noise for reliable acquisition of spectral information.

Its compact and lightweight construction makes the SWIR Hyperspectral Imager suitable for mounting on multi-rotor drones. The optical design can also be configured with a bending optical bench arrangement, making it suitable for fixed-wing drones and drones with short landing gear.

The SWIR Hyperspectral Imager is designed for in-field measurement of spectral information from plants, water, soil, and other targets. The acquired spectral data can be analyzed to determine physical and chemical characteristics and can be combined with spectral databases to develop analytical models.

These models can be applied to applications such as:

  • Plant classification
  • Plant identification
  • Plant growth monitoring
  • Vegetation analysis
  • Soil analysis
  • Water analysis
  • Remote sensing
  • Spectral characterization
  • Agricultural monitoring
  • Environmental monitoring

With its compact design, high spatial and spectral resolution, low-noise cooled InGaAs detector, and push-broom imaging technology, the SWIR Hyperspectral Imager can be extended to a wide range of field and laboratory applications.

The system can be integrated into rotary scanning systems, indoor scanning systems, and drone-based remote-sensing platforms, providing valuable spectral information for agriculture, environmental research, material analysis, and other scientific applications.

Technical Specifications

Parameter Specification
Product Type SWIR Hyperspectral Imager
Spectral Range 0.9–1.7 μm / 1.0–2.5 μm configurations
Detector High-performance cooled InGaAs
Spatial Resolution 640 × 512 or 1280 × 1024 pixels
Imaging Technology Push-broom hyperspectral imaging
Optical Technology Transmission grating
Imaging Characteristics High spatial and spectral resolution
Noise Performance Low-noise cooled detector
Design Compact and lightweight
Drone Compatibility Multi-rotor and fixed-wing drones
Applications Remote sensing, agriculture, vegetation, soil, water and spectral analysis

Applications

The SWIR Hyperspectral Imager is particularly suitable for drone-based remote sensing, where spectral information can be collected over agricultural fields, vegetation, soil, water bodies, and other areas of interest.

The collected hyperspectral data can be used to build spectral models and databases for identifying and classifying materials and monitoring changes in physical and chemical properties.

Its combination of SWIR spectral imaging, high-resolution InGaAs detection, compact construction, and push-broom scanning makes it suitable for a broad range of applications in precision agriculture, environmental monitoring, plant science, remote sensing, scientific research, and industrial inspection.

Key Features

  • Real-time sample preview
  • Extreme compact and light-weight
  • No moving parts, high reliability
  • “True push-broom”: scanning with random speed
  • Easy integration on different