HySpex SWIR-384
The HySpex SWIR-384 hyperspectral camera is developed for field, laboratory, and airborne applications.
The state of the art MCT sensor with cooling down to 150K yields low background noise, high dynamic range, and exceptional SNR levels. With a max frame rate of 400 fps, combined with an aberration-corrected optical system with high optical throughput (f/2), the data quality, speed, and sensitivity is truly state of the art.
A wide range of close-up lenses allows the use of the camera at working distances ranging from a few centimeters with a spatial resolution of 53 ?m to infinity e.g. airborne remote sensing.
HySpex SWIR-384
HySpex SWIR-384
Spectral range = 930 – 2500 nm
Spatial pixels = 384
Spectral channels = 288
Spectral sampling = 5.45 nm
FOV* = 16?
Pixel FOV across/along* = 0.73/0.73 mrad
Bit resolution = 16 bit
Noise floor = 150 e-
Dynamic range = 7500
Peak SNR (at full resolution) > 1100
Max speed (at full resolution) = 400 fps
Power consumption = 30 W
Dimensions (l-w-h) = 38 – 12- 17.5 cm
Weight = 5.7 kg
Camera Interface = CameraLink
*Can be doubled with FOV expander
Weight | 5.7 kg |
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I recommend HySpex improve the entire setup and make it more user-friendly. For example, the moving stage is very bulky, and having a long tower makes it impossible to change the height of the camera. It would be great if the height-adjusting handle of the hyperspectral imaging camera was placed on the side of the tower instead of at the top, or if it was motorized. Having adjustable lenses would help too if it does not reduce the data quality.
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Content | HySpex SWIR-384 The HySpex SWIR-384 hyperspectral camera is developed for field, laboratory, and airborne applications. The state of the art MCT sensor with cooling down to 150K yields low background noise, high dynamic range, and exceptional SNR levels. With a max frame rate of 400 fps, combined with an aberration-corrected optical system with high optical throughput (f/2), the data quality, speed, and sensitivity is truly state of the art. A wide range of close-up lenses allows the use of the camera at working distances ranging from a few centimeters with a spatial resolution of 53 ?m to infinity e.g. airborne remote sensing. | Fenix FENIX is optimized for the most demanding geological, law enforcement, and environmental applications. In a single continuous image, FENIX spectral camera delivers the best hyperspectral data ever seen over VNIR, NIR, and SWIR wavelengths. FENIX offers extreme ruggedness and 75% reduction in size and weight compared to previous multi-sensor systems. The excellence in technical performance and physical size has been achieved through innovative and unique ?single optics dual spectrograph? design. | HySpex VS-1200 The HySpex VS-1200 hyperspectral camera is developed for airborne applications requiring extreme resolution in both VNIR and SWIR spectral regions. The HySpex VS-1200 is a novel high-resolution instrument designed for airborne applications at altitudes greater than 400m. The camera produces the highest scientific grade level data, commercially available, having FWHM less than 1.2 pixels spatially and less than 1.5 pixels spectrally. The combined VNIR-SWIR cube has coregistration errors, and smile and keystone of less than 10% of a pixel. With 40 degrees FOV, the camera is ideal for mapping large areas with high accuracy and resolution. The camera is delivered with an integrated high-performance IMU/GPS and data acquisition unit with removable storage bays as a standard. Existing navigation systems can also be integrated/utilized. A standard passive damping solution is included as a part of the default delivery package, but mounting plates for active damping solutions, such as GSM4000 or PAV80 can be supplied. | Pika XC2 400 - 1000 nm High-Precision VNIR The Pika XC2 is a high-resolution hyperspectral camera that covers the Visible + Near-Infrared (VNIR) spectral range. The Pika XC2 has high spatial resolution, best in-class spectral resolution, and excellent imaging quality. Popular in VNIR laboratory applications. The Pika XC2 can be used in our laboratory, and outdoor, and airborne hyperspectral systems, as well as standalone or integrated into your system. | HySpex Mjolnir VS-620 For applications requiring low mass, combined with high-performance specifications and scientific grade data quality on the full VNIR-SWIR range, HySpex Mjolnir VS-620 is an ideal solution. Sharing the onboard data acquisition unit and navigation system, HySpex Mjolnir VS-620 is both space-efficient and cost-effective. The VNIR and SWIR optical axis are coaligned in the along-track direction, assuring perfect coregistration in the flight direction. In addition to the high-quality hyperspectral data cube, covering the spectral range from 400 - 2500 nm, with 490 bands, double resolution data in the VNIR range is always readily available. With smile and keystone less than 0.1 pixels for each spectral range, the merged Mjolnir VS-620 data product will have coregistration/keystone better than 0.2 pixels for the full VNIR-SWIR range. | HySpex Mjolnir V-1240 The HySpex Mjolnir V-1240 hyperspectral imaging system for UAVs provides a unique combination of small form factor and low mass, combined with high-performance specifications and scientific grade data quality. With a weight of less than 4 kg and less than 50 W power consumption, HySpex Mjolnir V-1240 is very well suited for a wide range of UAVs. The system is also compatible with several off-the-shelf gimbals. NEO offers high-performance unmanned aerial vehicles, fully integrated with the HySpex Mjolnir V-1240. The UAV is fitted with a standard battery package allowing up to 30 minutes of flight time. All HySpex Mjolnir systems can also be mounted on a tripod and rotation stage for ground use. |
Description | Spectral range = 930 - 2500 nm Spatial pixels = 384 Spectral channels = 288 Spectral sampling = 5.45 nm FOV* = 16? Pixel FOV across/along* = 0.73/0.73 mrad Bit resolution = 16 bit Noise floor = 150 e- Dynamic range = 7500 Peak SNR (at full resolution) > 1100 Max speed (at full resolution) = 400 fps Power consumption = 30 W Dimensions (l-w-h) = 38 - 12- 17.5 cm Weight = 5.7 kg Camera Interface = CameraLink *Can be doubled with FOV expander | Spectral Range (nm) = 400 - 1000 Spectral Channels = 447 Spectral Bandwidth (nm) = 1.3 Spectral Resolution - FWHM (nm) = 1.9 Spatial Pixels = 1600 Max Frame Rate (fps) = 165 f/# = 2.4 Interface = USB 3.0 Dimensions (mm) = 265 x 106 x 75 Weight, w/o lens (kg) = 2.51 | Spectral range = 400 - 1000 nm Spatial pixels = 1240 Spectral channels and sampling = 200 bands @ 3 nm F-number = F1.8 FOV = 20? Pixel FOV across/along = 0.27/0.27 mrad Bit resolution = 12 bit Noise floor = 2.3 e- Dynamic range = 4400 Peak SNR (at full resolution) > 180 Max speed (at full resolution) = 285 fps Power consumption = 50 W Dimensions (l-w-h) = 250 - 175 - 170 mm Weight < 4 kg *Includes IMU/GPS and DAU - <6.5 kg including standard battery |
The HySpex SWIR 384 camera offers a broad spectral range of 950 nm to 2500 nm, allowing for high quality imaging of a wide variety of samples. The camera provides excellent image quality, and it comes with Ground Software that enables users to control the imaging process, adjust lights, and see images live. The software is free and user friendly, making it easy to use for a range of applications. However, it’s important to note that the Ground software does not perform white and dark calibration, nor data analysis. For these purposes, a separate software needs to be purchased.
We purchased this shortwave infrared (SWIR) hyperspectral imaging camera in 2019. Since then, the camera has broken a few times, mainly failing to reduce the temperature of the camera to the operating temperature. HySpex attributed this to the part supplier (which I believe is right). While a permanent repair is yet to be found, HySpex’s customer service was exceptionally good and did their best to keep my lab going. They once sent a technician from Norway (to Australia) to service the camera and increase its lifespan until they find a permanent repair.
In terms of application ease, the camera holder benchtop lit is bulky, and adjusting the camera focus is done physically by moving the camera up and down rather than using an adjustable lens or a powered camera tower. Adjusting the camera height is an inconvenience, as we need to turn a handle ten of times to move it up and down a few centimetres. Adding to that, the handle is placed at the top of the camera tower. Placing the camera on the bench means that the tower is somewhere close to the ceiling, and we need to have a ladder to adjust the camera height.
There are a few options for lenses to choose from. I am using a 30 cm lens, which stands 30 cm above the samples and measures 10 cm width of the stage. I also have a “microscopic lens.” This lens does not actually magnify anything, but the pixel size is very fine (ca. 0.05 mm). The “microscopic lens” measures the 2 cm width of the stage. There is a 1 m lese that measures up to 30 cm width. The Hyspex SWIR 384 measures 384 pixel per line.
Furthermore, because the camera offers a broad spectral range with relatively high spectral resolution (ca. 5.45 nm), leading to measuring 288 wavelengths, the imaging speed is not very high (yet good for research). As far as I am aware, it’s not possible to turn off some wavelengths to increase the imaging speed. This is something you need to consider if imaging speed is important for your application. This is not a disadvantage for me since I use it for research (chemometrics, food quality monitoring, classification, non destructive analysis), and I prioritise better quality data over faster imaging speed.
Overall, I am very happy with the quality of the images and the customer service, and I think the HySpex SWIR 384 is an excellent option for my applications (research). It’s important to consider the drawbacks, such as the inconvenience of adjusting the camera height and its high price. However, the excellent image quality, broad spectral range, and HySpex’s exceptional customer service make it a worthwhile investment for many applications.