Cubert ULTRIS 5

Cubert ULTRIS 5

Spectral Range = 450 – 850 nm
Number of Bands = 51
FWHM = 26 nm @ 532 nm
Max Resolution = 290 x 275 pixel
Weight = Standard version: 120 g/ HFR version: 465 g
Dimensions = Standard version: 29 x 29 x 49 mm/ HFR version: 60 x 60 x 99.4 mm
Technology = Light Field
Sensor(s) = 5 MP
Spectral Sampling = 8 nm
Wavelength Error < 8 nm Total Spectra / Image = 79 750 Total Data Points (Data Points / Cube) = 3 million Data Depths = 12 Bit Readout = Global shutter Max Frame Rate = Standard version: 15 Hz/ HFR version: 75 Hz Integration Time = 0.1-1000 ms Field of View (FOV) = 15? Power Consumption = 3 W

SKU: Cubert ULTRIS 5 Category: Tag:
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The Gamechanger: World’s smallest HSI Snapshot Camera
Cubert?s smallest ever hyperspectral imaging camera is also its most affordable, to a price that can easily compete against RGB and multispectral cameras. By downsizing the fundamental light field technology of the ULTRIS 20, we have created a hyperspectral video camera featuring a 5 MP sensor that is just 30 x 30 x 50 mm and weighs only 120 g.
This latest addition to the ULTRIS family addresses the needs of industry and researchers alike for a robust and lightweight camera that can fit into every lab or production area, physically and fiscally. It is small enough to fit into any industrial process system, powerful enough to fill medical imaging requirements and fast enough to record complete non-scanning snapshot datacubes at 15Hz.

The ULTRIS 5 HFR is the 10 GigE version of our standard ULTRIS 5. The camera properties are the same, featuring a resolution of 290 x 275 pixel and 51 spectral bands covering 450-850 nm. Equipped with a 10 Gigabit Ethernet port, the integrated Sony IMX250 sensor can unleash its full potential and can deliver up to 75 Hz while retaining the typical 12 bit depth, which is often needed for hyperspectral applications.

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Cubert ULTRIS 5 removeResonon Pika UV removeHySpex Mjolnir VS-620 removeResonon Pika IR+ removeSpecim FX50 removeHySpex Baldur S-640i N remove
NameCubert ULTRIS 5 removeResonon Pika UV removeHySpex Mjolnir VS-620 removeResonon Pika IR+ removeSpecim FX50 removeHySpex Baldur S-640i N remove
ImageCubert ULTRIS 5Resonon Pika UVHySpex Mjolnir VS-620Resonon Pika IR+Specim FX50HySpex Baldur S-640i N
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ContentThe Gamechanger: World's smallest HSI Snapshot Camera Cubert?s smallest ever hyperspectral imaging camera is also its most affordable, to a price that can easily compete against RGB and multispectral cameras. By downsizing the fundamental light field technology of the ULTRIS 20, we have created a hyperspectral video camera featuring a 5 MP sensor that is just 30 x 30 x 50 mm and weighs only 120 g. This latest addition to the ULTRIS family addresses the needs of industry and researchers alike for a robust and lightweight camera that can fit into every lab or production area, physically and fiscally. It is small enough to fit into any industrial process system, powerful enough to fill medical imaging requirements and fast enough to record complete non-scanning snapshot datacubes at 15Hz. The ULTRIS 5 HFR is the 10 GigE version of our standard ULTRIS 5. The camera properties are the same, featuring a resolution of 290 x 275 pixel and 51 spectral bands covering 450-850 nm. Equipped with a 10 Gigabit Ethernet port, the integrated Sony IMX250 sensor can unleash its full potential and can deliver up to 75 Hz while retaining the typical 12 bit depth, which is often needed for hyperspectral applications.Pika UV 330 - 800 nm Ultraviolet + Visible The Pika UV (formerly NUV2) is a hyperspectral camera that scans the Visible and Near Ultraviolet (VIS+NUV) spectral range. An optimized objective lens provides excellent imaging throughout the entire spectral range. Because halogen lights have low output in much of the NUV, Resonon offers an NUV lighting module to augment illumination for our desktop system. The Pika UV can be used in our airborne, laboratory, and outdoor 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.Pika IR+ 900 - 1700 nm High-Precision Infrared The Pika IR+ (formerly Pika NIR-640) is a high-performance hyperspectral camera that covers the Near-Infrared (NIR) spectral range. It has high spatial and spectral resolutions and is often used for infrared laboratory applications. The Pika IR+ can be used in our airborne, laboratory, and outdoor hyperspectral systems, as well as standalone or integrated into your system.Specim FX50 Specim FX50 is the only hyperspectral camera on the market covering the full mid-wave infrared (MWIR) spectral range of 2.7 - 5.3 ?m required, for example, in black plastics sorting. Specim FX50 is a high-speed, accurate, and efficient line-scan hyperspectral camera designed specifically for industrial environments.HySpex Baldur S-640i N Baldur S-640i N covers the spectral range from 950-1730nm. All Baldur cameras are Nyquist cameras giving a spectral resolution of 2 spectral bands while capturing 4 times as much light as the classic systems. To ensure that the most information per framerate is provided, the spectral resolution is kept very close to 2 bands. Additionally, the spatial resolution of Baldur S-640i N is better than 1.5 pixels, yielding a very sharp camera.
DescriptionSpectral Range = 450 - 850 nm Number of Bands = 51 FWHM = 26 nm @ 532 nm Max Resolution = 290 x 275 pixel Weight = Standard version: 120 g/ HFR version: 465 g Dimensions = Standard version: 29 x 29 x 49 mm/ HFR version: 60 x 60 x 99.4 mm Technology = Light Field Sensor(s) = 5 MP Spectral Sampling = 8 nm Wavelength Error < 8 nm Total Spectra / Image = 79 750 Total Data Points (Data Points / Cube) = 3 million Data Depths = 12 Bit Readout = Global shutter Max Frame Rate = Standard version: 15 Hz/ HFR version: 75 Hz Integration Time = 0.1-1000 ms Field of View (FOV) = 15? Power Consumption = 3 WSpectral Range (nm) = 330 - 800 Spectral Channels = 255 Spectral Bandwidth (nm) = 1.8 Spectral Resolution - FWHM (nm) = 2.8 Spatial Pixels = 1500 Max Frame Rate (fps) = 142 f/# = 2.8 InterfaceUSB = 3.0 Dimensions (mm) = 230 x 107 x 85 Weight, w/o lens (kg) = 2.27Spectral Range (nm) = 900 - 1700 Spectral Channels = 336 Spectral Bandwidth (nm) = 2.4 Spectral Resolution - FWHM (nm) = 5.6 Spatial Pixels = 640 Max Frame Rate (fps) = 240 f/# = 1.8 Interface = GigE Dimensions (mm) = 264 x 115 x 88 Weight, w/o lens (kg) = 2.95Spectral Range = 2.7 - 5.3 ?m Spectral resolution (FWHM) = 35 nm Spectral sampling/pixel = 8.44 nm, Without binning Spectral bands = 154, With default binning Numerical aperture = 2.0 Optics magnification = 0.5 Effective pixel size = 30 ?m, At fore lens image plane Effective slit width = 104 ?m, At fore lens image plane Effective slit length = 19.2 mm, At fore lens image plane Dynamic Range = 1600:1 with 1.5 ms exposure time Usable dynamic range / noise Spatial samples = 640 Bit depth = 16 Maximum frame rate = 380 fps, Full image with default binning Binning = 1,2,4 spectral and spatial, Default: 2 spectral x 1 spatial ROI = Freely selectable multiple bands of interest. Minimum height of ROI is two 1-binned rows. Maximum frame rate is determined by total number of rows between first row of first mROI and last row of last mROI - not the total number of rows included in the mMROI?s. Pixel operability = Number of operable pixels >99.7%. Allowed clusters: Size 4-8 pixels: <= 12/ Size 9-12 pixels: 2/ Size 13-19 pixels: 1/ Size >19 pixels: 0 Image corrections = Non uniformity correction/Bad pixel replacement/Automatic Image Enhancement (AIE). One point NUC. AIE: Unified spectral calibration + corrected smile and keystone aberrations Sensor material = InSb Integrated cooler = Stirling Up to 10000 hours Full well capacity = 5.1 Me- Read-out modes = IWR / ITR Optics temperature = TEC-stabilized Default is 20 degrees Celsius Lens mount = Custom mount Fore lens options = OLEM43, OLEM23, OLEM17 Field of view = 24 deg, 45 deg, 60 deg Camera digital data output/control interface = GigE Vision, Custom ethernet Camera control protocols = GenICam, JSON-RPC Power input = 24 V DC Power consumption = Max 90 W, Typical 40 W, During simultaneous cool-down of optics and detector Connectors = Ethernet/ Aux - 0306423 (09-0428-90-08) Binder 8pin/ Power - 0306627 (LF10WBR-4P) Hirose 4pin Trigger in IP = IP40 Dimensions (L x W x H) = 280 x 202 x 169 mm Mounting surface option on three sides. Mounting kit adds 24 mm distance on mounting side. Weight = 7 kg Storage temperature = -20 ... +50 oC Operating temperature = +5 ... +40 oC Relative humidity = 5% - 95% (non-condensing)Spectral Range = 950 - 1730 nm Spectral bands = 232 Max speed* = 500 fps Spectral sampling = 3.36 nm Spectral FWHM <2 bands Spatial FWHM <1.5 pixels Spatial pixels = 640 Keystone <20% of a pixel Smile <20% of band FOV = 16? / 40? Bit resolution = 12 bit Noise floor = HG:8.5/MG:32/LG:270 e- Peak SNR = HG:150/MG:275/LG:800 Dynamic range = HG:2650/MG:2360/LG:2360 ROI* = All bands can be selected/deselected individually External trigger options = LVDS, 5V/12V/24V TTL Dimensions (l-w-h) = 364 - 105 - 153 mm Camera Interface = GigE * Reducing the number of spectral channels with ROI will proportionally increase the max framerate
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