imec SNAPSHOT SWIR 9 bands
Want to test hyperspectral scanning and analysis in the short-wave infrared range? With this user-friendly real-time USB 3.0 camera, you?ll be looking at relevant test data within minutes after the installation.
Make artifact-free cubes of moving objects thanks to video-rate acquisition.
Enjoy an easy set-up of a system that includes imager, camera and software.
Discover the broad potential of the SWIR bands to see invisible features.
imec SNAPSHOT SWIR 9 bands
imec SNAPSHOT SWIR 9 bands
spatial resolution = VGA (640 x 512 px)
spectral resolution = 9 bands
spectral range = 1100-1650 nm
imager type = InGaAs-based, Cardinal 640 sensor with TEC cooler electronic
acquisition speed = Up to 120 hyperspectral cubes/second (limit of USB 3.0 interface)
pixel pitch = 15 ?m pixels
bit depth = 13 bits
optics = 16/25/35/50 mm lenses, C-mount
camera interface = USB 3.0 + GPIO for triggering (TTL)
software = HSI Mosaic software for raw image acquisition, data pre-processing, hypercube visualization and classification; C and Python API for acquisition and data pre-processing in custom software
power consumption = 2 Watts at 60 FPS
camera dimensions (W x H x D) = 65 x 65 x 130 cm
camera weight = 260 g without lens
rejection filter = yes
included accessories = USB 3.0 and power + trigger cables
cooling = passive & active cooling (fan-based +TEC)
ambient temperature = -5?C to 50?C (operation), -20?C to 60?C (storage)
mechanical = integrated mechanical shutter for automatic dark-counts, tripod mount (1/4″ – 20) + side-mounting M5 holes
One response to “imec SNAPSHOT SWIR 9 bands”
Leave a Reply
Quick Comparison
| imec SNAPSHOT SWIR 9 bands remove | HySpex VS-1200 remove | Specim Fenix remove | Resonon Pika L remove | HySpex Mjolnir V-1240 remove | Resonon Pika XC2 remove | |
|---|---|---|---|---|---|---|
| Name | imec SNAPSHOT SWIR 9 bands remove | HySpex VS-1200 remove | Specim Fenix remove | Resonon Pika L remove | HySpex Mjolnir V-1240 remove | Resonon Pika XC2 remove |
| Image | ||||||
| Rating | ||||||
| Content | imec SNAPSHOT SWIR 9 bands Want to test hyperspectral scanning and analysis in the short-wave infrared range? With this user-friendly real-time USB 3.0 camera, you?ll be looking at relevant test data within minutes after the installation. Make artifact-free cubes of moving objects thanks to video-rate acquisition. Enjoy an easy set-up of a system that includes imager, camera and software. Discover the broad potential of the SWIR bands to see invisible features. | 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. | 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. | Pika L 400 - 1000 nm Lightweight, Compact VNIR The Pika L is a lightweight, compact hyperspectral camera that covers the Visible + Near-Infrared (VNIR) spectral range. It is our most popular imager for remote sensing applications. The Pika L can be used in our airborne, laboratory, and outdoor hyperspectral systems, as well as standalone or integrated into your system. | 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. | 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. |
| Description | spatial resolution = VGA (640 x 512 px) spectral resolution = 9 bands spectral range = 1100-1650 nm imager type = InGaAs-based, Cardinal 640 sensor with TEC cooler electronic acquisition speed = Up to 120 hyperspectral cubes/second (limit of USB 3.0 interface) pixel pitch = 15 ?m pixels bit depth = 13 bits optics = 16/25/35/50 mm lenses, C-mount camera interface = USB 3.0 + GPIO for triggering (TTL) software = HSI Mosaic software for raw image acquisition, data pre-processing, hypercube visualization and classification; C and Python API for acquisition and data pre-processing in custom software power consumption = 2 Watts at 60 FPS camera dimensions (W x H x D) = 65 x 65 x 130 cm camera weight = 260 g without lens rejection filter = yes included accessories = USB 3.0 and power + trigger cables cooling = passive & active cooling (fan-based +TEC) ambient temperature = -5?C to 50?C (operation), -20?C to 60?C (storage) mechanical = integrated mechanical shutter for automatic dark-counts, tripod mount (1/4" - 20) + side-mounting M5 holes | Spectral Range (nm) = 400 - 1000 Spectral Channels = 281 Spectral Bandwidth (nm) = 2.1 Spectral Resolution - FWHM (nm) = 3.3 Spatial Pixels = 900 Max Frame Rate (fps) = 249 f/# = 2.4 Interface = USB 3.0 Dimensions (mm) = 115 x 104 x 66 Weight, w/o lens (kg) = 0.64 | 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 | 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 |
I really like gathering utile info, this post has got me even more info! .