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Spectrometers

With Spectral Evolution, we partner with a leading manufacturer of portable UV-Vis-NIR remote sensing spectroradiometers and spectrometers. These spectrometers are ideal for applications such as geological remote sensing, ground truthing, spectral remote sensing, environmental and climate research, plant and soil research, vegetation studies, forestry and canopy studies, radiometric calibration transfer, up- and down-sensing, and more.

The spectrometers we offer offer the optimal combination of high resolution and high sensitivity and are among the most precise portable instruments on the market.

PSR-1100f (vegetation)

For vegetation mapping, experimental research, agriculture, environmental monitoring

Features

— 320–1100 nm spectral range
— 3nm resolution
— Auto exposure
— Wireless connectivity

This entry-level spectroradiometer is portable, making it ideal for fieldwork.

The PSR-1100f weighs less than 1.8 kg, features a shoulder strap, and is battery-powered, allowing you to focus on your fibers and samples. Even better: This compact powerhouse features internal memory for 2,500 scans, eliminating the need for a laptop or tablet.

NaturaSpec Plus (vegetation)

For vegetation mapping, experimental research, agriculture, environmental monitoring

Features

— 320 – 2500 nm spectral range
— 2,7 nm resolution
— Inclinometer integrated
— Realtime camera

The NaturaSpec™ Plus is the ultimate instrument for remote sensing scientists. It eliminates the uncertainties typically associated with calculating the field of view and sample orientation. In addition to spectral data, the instrument also provides a real-time video feed of the actual field of view of the fiber optic or lens attachment. With each measurement, an image of the field of view is captured along with the angle and distance to the target, as well as GPS coordinates.

This spectroradiometer offers the best spectral resolution and signal-to-noise ratio of any field instrument currently available on the market, allowing users to collect laboratory-quality data in the field across the spectral range of 350 to 2500 nm. It is the ultimate tool for building high-resolution libraries and pushing the boundaries of spectral analysis for remote sensing applications, including environmental monitoring, climate research, crop and soil science, agriculture, carbon studies, geological mapping, soil analysis, and more.

NaturaSpec Ultra (vegetation)

For vegetation mapping, experimental research, agriculture, environmental monitoring

Features

— 320 – 2500 nm spectral range
— 1,5 nm resolution
— 3 photodiode arrays
— Auto exposure

The NaturaSpec™ Ultra spectroradiometer offers the highest spectral resolution of any field spectroradiometer.

The instrument enables field validation and calibration of even high-resolution hyperspectral cameras and satellites by transmitting laboratory-quality hyperspectral data into the field. The NaturaSpec Ultra is the optimal instrument for building high-resolution libraries and expanding the boundaries of spectral analysis.

oreXplorer (geology & minerals)

For geology, mineralogy, stones

Features

— 320 – 2500 nm spectral range
— 2,7 nm resolution
— Wireless connectivity
— 100 % diode array optics

The oreXplorer™ is designed for field use and features a rugged housing, no moving optical parts, and a robust, metal-sheathed, field-replaceable fiber optic cable. It offers one-button operation with automatic dark current and exposure control. Communication is via wireless Bluetooth and USB connections.

The oreXplorer offers high resolution and high sensitivity for mineral exploration, mineral identification, and mineral mapping during field measurements.

oreXpert (geolog< & minerals)

For geology, mineralogy, stones

Features

— 320 – 2500 nm spectral range
— 1,5 nm resolution
— Wireless connectivity
— 100 % diode array optics

The oreXpert™ NIR field spectrometer was specifically designed for the highest available resolutions in field applications. Its high resolution enables the discrimination of features that contribute to the separation and identification of trace elements. It features ultra-high resolution and very stable performance with three high-density thermoelectrically cooled photodiode arrays.