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Gated Short Wave Infrared Camera System
LIVAR® M506
The LIVAR M506 Gated SWIR Camera System is ideal for covert operations and target identification, supporting lasers from 1.0 1.6 m. Cost-effective, compact and lightweight, this range-gated, two-dimensional imaging camera operates in the eye-safe Short Wave Infrared (SWIR) band, provides day and night coverage, and supports mounted and dismounted operations. The camera system includes the camera, High Voltage Power Supply (HVPS) and Thermoelectric Cooler Controller (TECC). An optional high-PRF version is available that allows the use of low-power, high-PRF diode lasers with the camera in accumulation mode.
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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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Area Scan Cameras
JAI provides a wide selection of industrial machine vision cameras with both single-sensor and multi-sensor configurations. Resolutions range from 0.3 MP to 20 MP, with high frame rates ranging up to 250 fps for full 5MP resolution. A selection of cameras can operate beyond the visible – in the ultraviolet, near infrared and in the short wave infrared light spectrums.
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High-speed SWIR Camera
Goldeye CL-033 TECless
The Goldeye CL-033 TECless high-speed camera is the fastest VGA resolution short wave infrared camera (SWIR) with Camera Link interface. Frame rates up to 301 fps at full resolution enable you to access versatile application fields and to speed up your processes. Thanks to its very affordable price, many cost-sensitive applications can benefit from the camera's outstanding performance.
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Ultra High Performance Multi-Sensor Camera System
FLIR M500
The gyro-stabilized FLIR M500 cooled thermal camera is our most technologically-advanced M-Series pan and tilt camera ever. Designed around a cryogenically-cooled 640 x 512 pixel Mid Wave Infrared (MWIR) thermal sensor, the FLIR M500 excels at both short and ultra-long range target detection and identification. It features a 14X continuous optical thermal zoom, a color HD camera with 30x zoom, an LED spot-beam, video tracking and radar integration.
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Short-wave Infrared Camera
Goldeye CL-008 Cool
The Goldeye CL-008 is one of the fastest QVGA resolution short wave infrared (SWIR) cameras with Camera Link interface. With frame rates up to 344 fps at full resolution, versatile application fields can be addressed and processes can be sped up strongly. To enable low-noise imaging in the spectral range from 900 nm to 1700 nm, the camera is equipped with a nitrogen filled cooling chamber. It enables the thermo-electric cooler (TEC) to operate the sensor at a temperature of 5o C and avoids condensation.
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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 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.