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SWIR Cameras
Our SWIR or Short-Wave Infrared imaging covers the wavelength range from 900nm to 1700nm. A large number of applications that are difficult or impossible to perform using visible light are made possible, with great results, using short-wave infrared (SWIR) imaging thus enabling the user to "See Beyond the Visible". SWIR is similar to visible light in that photons are reflected or absorbed by an object, providing the strong contrast needed for higher resolution imaging– unlike thermal images, that rely on radiated photons. At NIT, we offer unique SWIR cameras and sensors, see below for more information on our products.
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Sensitive Short-wave IR Fluorometer & Absorption Spectrometer
NS3 NanoSpectralyzer
A customizable, modular NanoSpectralyzer: In addition to its core function as a sensitive short-wave IR fluorometer and absorption spectrometer, the NS3 can be configured with any of the following spectral capabilities: Visible emission, extended SWIR emission, UV absorption, visible absorption, extended SWIR absorption, Raman. Up to 5 excitation lasers (405 to 830 nm).
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2-Sensor SWIR Line-Scan Cameras
Wave Series
The Wave Series camera is a 2-sensor prism line scan camera capable of sensing Short Wave InfraRed (SWIR) light.The camera is based on Indium/Gallium /Arsenide (InGaAs) sensor technology and combined with JAI’s prism line scan technology, making it capable of delivering dual-band imaging in the SWIR light spectrum (900 – 1700 nm).
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Fast Low Noise SWIR InGaAs Camera
C-RED 2
C-RED 2 is a revolutionary ultra high speed low noise camera designed for high resolution Short Wave InfraRed imaging. Thanks to its state of the art electronics, software, and innovative mechanics, C-RED 2 is capable of unprecedented performances: up to 400 images per second with a read out noise from 10 to 30 electrons. Designed for high-end SWIR applications, smart and compact, C-RED 2 is operating from 0.9 to 1.7 μm with a very good Quantum Effi ciency over 70%, offering new opportunities for industrial or scientifi c applications.
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SWIR and VIS-SWIR Cameras
A range of InGaAs based cameras offering “best in class” sensitivity in the region up to 1700nm.
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Collimators
Collimators are optical systems used to imitate standard targets placed in "optical infinity" (very long distance). The collimators are used for projection of image of reference targets into direction of tested imagers. According to type of optical elements used in design, collimators are divided into two groups: reflective collimators and refractive collimators. Reflective collimators due to their wide spectral range are almost exclusively used in systems for testing thermal imagers and are also preferable in systems testing TV cameras, SWIR imagers, laser systems or multi-sensor surveillance systems. Refractive collimators are mostly used in systems for testing night vision devices or TV cameras working in visible/near infrared range.
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Multi-Sensor Systems
Multi- sensor surveillance systems represent a fast growing group of electro-optical systems of critical importance in both defense and civilian applications. At the same time they are the most expensive groups of electro-optical systems. Most advanced but rarely met multi-sensor surveillance systems are built from a long series of sensors like thermal imager (or two thermal imagers, color VIS camera, low light VIS-NIR camera, SWIR camera, laser range finder, laser designator, laser pointer, illuminator located on a stabilized platform and such systems. Simpler systems built from two-three sensors located on smaller stabilized or non-stabilized platforms are more common.
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SWIR Imagers
SWIR imagers (short wavelength infrared) are an important group of surveillance electro-optical imagers due several reasons. First, advances in InGaAs technology enabled design of relatively low cost SWIR imagers. Second, InGaAs imagers are very sensitive and can generate images of observed scenery even at dark nights. Third, SWIR imagers are less vulnerable to bad atmospheric conditions than TV/LLLTV cameras working in visible/near infrared band. Fourth, SWIR imagers can generate hi-res images even if they are built using much smaller optics than used for design of thermal imagers.
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Small, Uncooled InGaAs line-scan camera with rectangular pixels
Lynx R Series
The Lynx R series, based on an in-house developed linear InGaAs detector, is a high-performance short-wave infrared (SWIR) camera providing high speed and quality line-scan imaging.The Lynx R cameras are able to image line rates up to 40 kHz, for demanding spectroscopy applications.The camera comes with an industry standard CameraLink or GigE Vision interface.Benefits & Features• High speed line-scan imaging up to 40 kHz (10 kHz for the 2048)• High resolution 1024/2048 Rectangular pixels option (12.5μm x 250μm)• CameraLink or GigE Vision interfacing
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High-resolution, SWIR InGaAs camera
Wildcat+ 640 Series
The Wildcat+ 640 series is based upon a state-of-the-art InGaAs detector with 640×512 pixels and 20 μm pixel pitch. The camera offers superior, high resolution SWIR imaging capabilities, comes in a versatile and industry-proven Wildcat camera package (GenICam compliant) and offers advanced on-board image processing.The Wildcat+ 640 camera outputs full frame images up to 300 Hz via either a CameraLink or USB3 Vision interface.The Wildcat+ 640 is suitable for semiconductor inspection, display inspection (mobile phone and TV), and laser beam analysis.Benefits & Features- Compact and industry-proven camera design- High-resolution SWIR imaging- Advanced on-board image processing performance- GenICam complaint- Flexible optical mount and lens options
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Extended SWIR Camera For Laser Beam Profiling
BPCam
Princeton Infrared Technologies, Inc.
The Princeton Infrared Technologies’ extended SWIR response T2SL BPCam SWIR camera for laser beam profiling supports extended SWIR wavelength response with TEC cooled operation.
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High-resolution, SWIR megapixel camera
Wildcat+ 1280 Series
The Wildcat+ 1280 series is based upon a state-of-the-art InGaAs photodiode array with 1280×1024 pixels and 5 μm pixel pitch. The camera offers superior, high-resolution SWIR imaging capabilities, comes in a versatile and industry-proven Wildcat camera package (GenICam compliant) and offers advanced on-board image processing.The Wildcat+ 1280 camera outputs full frame images at 120 Hz via either a CameraLink or USB3 Vision interface.The Wildcat+ 1280 is suitable for semiconductor inspection, display inspection (mobile phone and TV), microscopy and laser beam analysis.Benefits & Features• Compact and industry-proven camera design• High-resolution SWIR imaging• Advanced on-board image processing performance• GenlCam compliant• Flexible optical mount and lens options
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SWIR Camera with 85% QE, Low Noise, and over 10 Minute Exposure Times
NIRvana® 640
Teledyne Princeton Instruments
The NIRvana® 640 offers incredible sensitivity with greater than >85% Quantum Efficiency between 950 nm and 1500 nm, ensuring you collect every photon you can.The biggest barrier to low light SWIR imaging is dark current. The NIRvana® 640 offers incredible low dark current – only 40e-/p/s, enabling longer exposures for faint samples.
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Emitters
Marktech offers the broadest range of emitters commercially available ranging from 255nm for UV, through visible, near IR to 1720nm for SWIR. Our main focus has always been in the area of application solutions to optimize your products performance. Our team of design engineers and R&D scientists are committed to providing you with unsurpassed technical support.
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Cryogenically Cooled SWIR Camera
NIRvana® LN
Teledyne Princeton Instruments
The cryogenically cooled NIRvana® LN is unbeatable on sensitivity. For the faintest samples and the longest exposures, the LN can deliver exposure times of 60+ minutes.
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High Performance Machine Vision Cameras
Goldeye
High-performance machine vision cameras with advanced features for demanding applications. QVGA and VGA Resolution. InGaAs sensors. Up to 344 fps. Spectral range 900 - 1700 nm (SWIR).
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SWIR Camera with InGaAs Detector
FLIR A6260
The FLIR A6260 SWIR camera offers superior sensitivity and dynamic range paired with the flexibility of customized windowing and integration times. This InGaAs camera is very linear in the 0.9 to 1.7 µm sensing waveband, making it the perfect tool for high temperature thermal measurements and applications that require measuring through standard glass. The A6260 offers control over settings such as integration time, while allowing you to synchronize and trigger to external events and devices.
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Optical Systems
Optical systems like optical objectives or oculars are a crucial block of modern electro-optical systems. Performance of these systems is often limited by parameters of optical block. Superior optics can significantly increase surveillance ranges of electro-optical surveillance systems like thermal imagers, VIS-NIR cameras, SWIR cameras, and night vision devices. Optical systems in form of optical sights are also used as independent systems in surveillance technology.
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Detectors
Marktech offers the broadest line of both silicon and InGaAs detectors commercially available. Our main focus has always been in the area of application solutions to optimize your products performance. Our team of design engineers and R&D scientists are committed to providing you with unsurpassed technical support. Our detector series includes product ranging from UV through SWIR.
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SWIR and VIS-SWIR Cameras
A range of InGaAs based cameras offering “best in class” sensitivity in the region up to 1700nm.
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InGaAs Line-Scan Camera with Rectangular Pixels
Manx R Series
Based on a brand new, in-house developed InGaAs linear detector, the Manx rectangular (R) is a high-performance short-wave infrared (SWIR) camera providing high speed and quality line-scan imaging. At unprecedented line rates of up to 256 kHz (or 128 kHz), the Manx rectangular (R) stands as the fastest line-scan InGaAs camera available in the world.
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SWIR Line-Scan USB3 Cameras
NECTA S Series
NECTA S, the SWIR line-scan model in NECTA camera family, is capable of high-resolution acquisition in short-wave infrared bandwidth, ranging from 950 to 1700 nm. This new SWIR camera can reach up to 40kHz line rate with 14bit A/D converter: its high-speed USB3 interface, an advanced I/O, together with a compact and rugged aluminum case, make NECTA S suitable for most demanding machine vision applications.
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SWIR Linear Array
1024L1
Princeton Infrared Technologies, Inc.
The 1024L1 is a 1024x1 state of the art InGaAs linear array imager on 12.5 µm pitch that was built for both spectroscopy and machine vision in the short wave infrared band. The 1024L1-12.5-T is an advanced digital array with the lowest read noise available <110e- for a 250 μm tall pixel. Our new advanced SWIR On-chip Noise Suppression Circuit will enable some spectroscopic applications to see read noise levels <80e-. A single ROIC chip is used thus minimizing variation from output to output found on linear arrays with multiple ROICs. The chips have built in 14bit A/Ds that are designed for the system thus maximizing dynamic range and minimizing the noise while enabling 34k lines/s at 1024 elements. Multiple full well capacities from 75ke- to 100Me- with 128 steps are available to optimize the array for the signal levels. On chip optical pixel binning (where every other detector is disconnected from the ROIC thus signal is captured by neighboring pixels) is available by command to trade spectral resolution for increased signal level. Pixel skipping or binning is also available allowing for 48k lines/s at 512 resolution on the same imager.
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Remote Sensing & Proximal Sensing Systems
Portable or handheld spectrometers (field spectrometers) and hyperspectral cameras (imaging spectrometers) are the ideal tools for spectral data acquisitions and ground truthing of remote sensing imagery. SphereOptics offers you a wide range of spectrometers for the visible (VIS), near infrared (NIR), shortwave infrared (SWIR), and thermal infrared (TIR) wavelength regions. More details about our single point spectrometers for the VIS-NIR-SWIR can be found here, and for TIR here.
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SWIR Image Sensors
Though NIR and SWIR act similarly to visible light, they are not visible to the human eye. As a result, these spectrums present valuable information which can show artifacts or damage that would otherwise not be seen. Click here to see some examples of how SWIR is being used in existing applications today.
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Line Scan Camera
Linea SWIR
Teledyne DALSA’s short-wave infrared (SWIR) GigE line scan camera features a cutting-edge InGaAs sensor in a compact package for a wide variety of machine vision applications.This high speed, high resolution camera is the first product in DALSA’s SWIR family. Linea SWIR features a cutting-edge InGaAs sensor in a compact package that is suitable for a wide variety of applications. With exceptional responsivity and low noise, this camera allows customers to see their products like never before. Linea SWIR is available as a 1k resolution camera with highly responsive 12.5 µm pixels, or a 512 resolution camera with larger 25 µm pixels
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Targets
Targets from group A are developed to support mostly testing infrared imaging systems understood as thermal imagers. These targets can be used also in testing visible/near infrared cameras or SWIR cameras but such application is not optimal. IR targets are mostly used in DT systems for testing thermal imagers and in MS systems for testing multi-spectral systems.
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HySpex Mjolnir
S-620
The HySpex Mjolnir S-620 hyperspectral imaging system for UAVs is the SWIR version of the Mjolnir camera series. Similar to the VNIR version, it provides a unique combination of small form factor and low mass, combined with high-performance specifications and scientific grade data quality.
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SWIR Camera For Machine Vision
MVCam
Princeton Infrared Technologies, Inc.
The MVCam series SWIR and visible camera supports the highest commercially available frame rate at Megapixel resolution with no ITAR restrictions!
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SWIR Cameras for Science
NIRvana® Family
Teledyne Princeton Instruments
NIRvana® Family of SWIR Cameras by Teledyne Princeton Instruments