| Spectral Range | 300 to 2500 nm (standard) 200-400nm,400-1000nm,1000-2500nm (Customizable) |
| Spectral Resolution | 0.8 to 1.4 nm at 756 nm, 3 to 5 nm at 1400 nm, 5 to 8 nm at 2100 nm |
| Detector | Line sensor / InGaAs sensor |
| Wavelength Repeatability | ±0.5 nm at SWIR |
| Wavelength Accuracy | ±0.5 nm at VIS ±1 nm at SWIR ±5 nm at MWIR |
| Field of View | 1°/8°/15°/25° optional |
| Indicating Laser Wavelength | 650 nm |
| Indicating Laser Power | 5 mW |
| Maximum Measurement Limit | VNIR: 2 times sunlight SWIR: 10 times sunlight |
| SNR (Signal to Noise Ratio) | Visible light: >800, 1000–2500 nm: >16000 |
| Spectral Sampling Interval | Visible light: 0.4 nm, Short-wave infrared: 1.0 nm |
| Spectral Averaging Times | Up to 100,000 times |
| Integration Time | 1 ms to 10 s |
| Battery Life | >2.7H (outdoor work), the battery can be replaced |
| Maximum Operating Current | 5.0A |
| Storage Temperature | -20°C to +65°C |
| Operating Temperature | -10°C to +50°C |
| Working Humidity | <90% RH (non-condensing) |
| Waterproof Level | IP54 |
| Power Supply | External lithium battery pack, or external 12V vehicle power |
| Dimension | 350 × 300 × 170 mm |
| Weight | 5.8 kg |
The Hyperspectral Spectrometer LHSS-A10 is ideal for geological research, remote sensing, crop monitoring, and forest/oceanographic studies. It delivers fast, accurate spectral data, supporting mineral identification, environmental monitoring, and ecosystem analysis, making it a versatile scientific tool.
Sr.No | Accessories Name |
1 | Permanent ruggedized fiber optic cable ( at least 1.5 m) |
2 | White reference panel |
3 | Fiber optic cable pistol grip |
4 | Power supply (12VDC 70W) |
5 | NiMH battery with charger |
Field Portable Backpack
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Hyperspectral Spectrometer LHSS-A10 Catalog
To cover the full spectral range, the device integrates multiple detectors: linear CMOS for the UV-VIS range, InGaAs for the NIR-SWIR, and typically MCT or thermopile detectors for the mid to long wave infrared (LWIR). These are optimized for sensitivity and stability across their respective bands, enabling consistent, high-quality measurements even in low-signal conditions.
Common applications of Hyperspectral Spectrometer include mineral exploration, soil and vegetation analysis, crop stress detection, remote sensing, and Hyperspectral imaging. It is also used in forestry, oceanography, atmospheric science, and environmental compliance, offering insights into composition, health, and energy balance of natural and artificial surfaces.
Our Hyperspectral Spectrometer ships with proprietary software for data acquisition, processing, and visualization. Features include reflectance conversion, radiometric calibration, spectral matching, and data export. It supports remote control, batch processing, and advanced tools like vegetation indices, enabling comprehensive spectral analysis for research and industrial use.
Labtron’s Hyperspectral Spectrometer includes real-time dynamic dark current subtraction, which corrects sensor noise and improves spectral accuracy. This is essential for long exposures or low-light measurements, ensuring that results are not skewed by detector thermal noise.
Labtron’s Hyperspectral Spectrometer is designed to handle up to 2× solar irradiance in the VNIR region and up to 10× solar irradiance in the SWIR region without saturation. This allows for accurate outdoor measurements even under bright sunlight or highly reflective surfaces.
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Labtron Equipment Ltd., Quatro House, Lyon Way, Camberley, Surrey GU16 7ER United Kingdom
Email: info@labtron.com Whatsapp: +44 73 4441 2688 Phone: +44 2080 043608