UV-VIS Hyperspectral Sensor
Biomedical, agricultural, and forensic applications can benefit from hyperspectral imaging in this wavelength range. Headwall offers a sensor with a uniquely ?deep? range down to 250 nm that may be paired with an illumination system. A custom-designed Headwall lens is available that is performance-matched to the sensor.
Headwall UV-VIS 250-500 nm
UV-VIS Compare
Headwall UV-VIS 250-500 nm
Wavelength Range = 250 – 500 nm
Aperture = F/3.5
Dispersion per pixel = 0.36 nm
Slit Width standard = 25 ?m
Slit Length = 12 mm
FWHM Slit image = 1.4 nm
Spectral Resolution (25? slit) = 2 nm
Spectral Bands = 680
Spatial Bands = 1792
Smile – Aberration corrected = Yes
Keystone – Aberration corrected = Yes
FPA Detector = back-illuminated sCMOS
Frame Rate (Max.) = 30-50 fps
Camera Control Interface = USB 3.1 Gen 1
Power Consumption = 4.5W up to 6.0W
Weight = TBD
*Final specifications can only be determine after integration and testing.
Quick Comparison
Headwall UV-VIS 250-500 nm remove | Resonon Pika XC2 remove | Resonon Pika IR-L+ remove | Specim FX10+ remove | HySpex SWIR-384 remove | Resonon Pika IR+ remove | |
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Name | Headwall UV-VIS 250-500 nm remove | Resonon Pika XC2 remove | Resonon Pika IR-L+ remove | Specim FX10+ remove | HySpex SWIR-384 remove | Resonon Pika IR+ remove |
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Content | UV-VIS Hyperspectral Sensor Biomedical, agricultural, and forensic applications can benefit from hyperspectral imaging in this wavelength range. Headwall offers a sensor with a uniquely ?deep? range down to 250 nm that may be paired with an illumination system. A custom-designed Headwall lens is available that is performance-matched to the sensor. | 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. | Pika IR-L+ 925 - 1700 nm Lightweight, High-Precision Infrared The Pika IR-L+ imager is a high spatial and spectral resolution Near-Infrared (925-1,700 nm) imager in a lightweight, compact format. It is well suited for field research, yet compatible with all imaging platforms (airborne, benchtop, or outdoor). For a compact, lightweight Visible light spectral range option, please see the Pika L. For higher imaging speeds, please see the Pika IR-L. | Specim FX10+ The Specim FX10+ is a high-speed line-scan hyperspectral camera optimized for applications requiring fast imaging. Its high resolution ensures accurate and detailed imaging at a rapid pace. Specim FX10+ operates in the visible and near-infrared (VNIR) region from 400 to 1000 nm. | 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. | 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. |
Description | Wavelength Range = 250 - 500 nm Aperture = F/3.5 Dispersion per pixel = 0.36 nm Slit Width standard = 25 ?m Slit Length = 12 mm FWHM Slit image = 1.4 nm Spectral Resolution (25? slit) = 2 nm Spectral Bands = 680 Spatial Bands = 1792 Smile - Aberration corrected = Yes Keystone - Aberration corrected = Yes FPA Detector = back-illuminated sCMOS Frame Rate (Max.) = 30-50 fps Camera Control Interface = USB 3.1 Gen 1 Power Consumption = 4.5W up to 6.0W Weight = TBD *Final specifications can only be determine after integration and testing. | 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 (nm) = 925 - 1700 Spectral Channels = 470 Spectral Bandwidth (nm) = 1.7 Spectral Resolution - FWHM (nm) = 3.8 Spatial Pixels = 640 Max Frame Rate (fps) = 176 f/# = 1.8 Interface = GigE Dimensions (mm) = 210 x 68 x 63 Weight, w/o lens (kg) = 1.01 | Spectral Range = 400-1000 nm Spectral resolution (FWHM) = 15 nm, Typical mean Spectral sampling/pixel = 6.3 nm, With default binning Spectral bands = 100, With default binning Numerical aperture = 1.7, With default lens Optics magnification = 0.80 Effective pixel size = 19.9x9.97 ?m, At fore lens image plane Effective slit width = 42 ?m, At fore lens image plane Effective slit length = 10.2 mm, At fore lens image plane SNR @ max. signal = 420 : 1 Spatial samples = 1024 Bit depth = 12 Maximum frame rate = 705 FPS full range. With 2-spectral binning (Bands: Max FPS) = 1:9900/5:6500/20:2800/35:1813/70:985 Binning = 2,4,8 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 the total number of rows included in the mMROI?s Pixel operability = 99.993% Image corrections = Non uniformity correction/Bad pixel replacement/Automatic Image Enhancement (AIE). AIE: Unified spectral calibration + corrected smile and keystone aberrations. One point NUC Sensor material = CMOS Sensor cooling = Passive Full well capacity = 90 ke- Read-out modes = IWR / ITR Optics temperature = Passive Lens mount = Custom mount Fore lens FOV options:12 deg/38 deg (default)/47 deg/51 deg/83 deg. Only the default lens is specifically designed for FX10. With other lens options, optical parameters may vary. Camera digital data output/control interface = GigE Vision Camera control protocols = GenICam, ASCII Power input = 12 V DC (+-10%) Power consumption = Max 4 W Connectors = Industrial Ethernet IP = IP52 Dimensions (L x W x H) 150 x 85 x 71 mm Mounting surface option on three sides. Mounting kit adds 24 mm distance on mounting side. Weight 1.3 kg Storage temperature = -20 ... +50?C (non-condensing) Operating temperature = +5 ? +40?C (non-condensing) Relative humidity = 5% - 95% (non-condensing) | 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) = 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) = 2.95 |
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