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High Performance Cameras - Fixed Advanced-level Cameras

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FLIR RS6780

Range and Scientific MWIR Camera

The FLIR RS6780 offers advanced detector, triggering, and synchronization capabilities in an environmentally protected package, making it easy to configure and integrate for successful data acquisition in the most demanding R&D applications. With a three-position motorized filter wheel and continuous metric zoom (CZ) lens, the RS6780 records sharply focused, high-quality thermal images in long-range and tracking applications. The standard 50-250 mm CZ lens can be factory-calibrated for temperature and radiance measurements, allowing researchers to use the radiometric camera system without sacrificing the flexibility of the optics platform.

FLIR X8580

High Definition MWIR Science-Grade Camera

The FLIR X8580 midwave IR camera is designed for scientists and engineers who need to capture detailed imagery of high-speed events, perform custom radiometric measurements, or detect points of failure in composites, solar cells, and electronics. This thermal imaging camera combines 1280 × 1024 HD resolution with fast frame rates and integration times, allowing researchers to record stop motion on fast-moving subjects or rapid temperature changes—whether in the lab or on the test range. With a four-position motorized filter wheel and support for FLIR motorized focus lenses, the X8580 will provide higher quality recordings, save time, and mitigate frustration in dynamic acquisition environments.

FLIR X6520sc

High Sensitivity MWIR Performance Camera

The FLIR X6520sc thermal imaging camera provides superior thermal measurement performance paired with the most advanced connectivity. Whether your research requires short sampling times to capture highspeed processes, or you need concrete spectral information within the MWIR bandwidth, the FLIR X6520sc provides highly-sensitive temperature measurements. In addition, the camera’s state-of-the-art connectivity and intuitive user experience allow researchers to focus on their experiments instead of camera controls.

FLIR X8580 SLS

High Definition LWIR Science-Grade Camera

The FLIR X8580 SLS is a high-speed, high definition longwave IR camera designed for scientists and engineers who need to capture detailed imagery of fast events, perform custom radiometric measurements, or detect points of failure in composites, solar cells, and electronics. This thermal imaging camera combines 1280 × 1024 resolution from the SLS detector with high-speed frame rates to offer shorter snapshot speeds and wider temperature bands for crisp stop motion imagery of high-speed events. With a four-position motorized filter wheel and support for FLIR motorized focus lenses, the X8580 SLS will provide high quality recordings, save time, and mitigate frustration in dynamic acquisition environments.

FLIR X6980

High-Speed MWIR Science-Grade Camera

The FLIR X6980 is an extraordinarily fast midwave IR camera designed for scientists and engineers who need to capture high-speed imagery for accurate thermal analysis and custom radiometric measurements. This thermal imaging camera combines 640 × 512 resolution with blazing-fast frame rates, allowing researchers to record stop motion on fast-moving subjects or rapid temperature changes—whether in the lab or on the test range. With a four-position motorized filter wheel and support for FLIR motorized focus lenses, the X6980 will provide higher quality recordings, save time, and mitigate frustration in dynamic acquisition environments.

FLIR X6530sc

High End Thermal Imaging Camera

The FLIR X6530sc thermal imaging camera provides excellent thermal measurement performance and advanced connectivity for scientists and R&D professionals with the most demanding applications. The camera is equipped with a cooled Mercury Cadmium Telluride (MCT) detector that produces crisp thermal images of 640 x 512 pixels, and it detects temperature differences smaller than 25mK. It also features a 4-slot motorized filter wheel with automatic filter recognition and measurement parameter adjustment.

FLIR X6980 SLS

High-Speed LWIR Science-Grade Camera

The FLIR X6980 SLS is an extraordinarily fast longwave IR camera designed for scientists and engineers who need to capture high-speed imagery for accurate thermal analysis and custom radiometric measurements. This thermal imaging camera combines 640 × 512 resolution from the SLS detector with the fastest high-speed frame rates to offer the shorter snapshot speeds and wider temperature bands needed to record crisp stop motion images of high-speed events. With a four-position motorized filter wheel and support for FLIR motorized focus lenses, the X6980 SLS will provide high quality recordings, save time, and mitigate frustration in dynamic acquisition environments.

FLIR X6570sc

High Speed LWIR Performance Camera

The FLIR X6570sc thermal imaging camera provides superior thermal measurement performance paired with the most advanced connectivity. Whether you need to analyze high-speed processes with microsecond precision or monitor fast temperature spikes, the X6570sc has the integration time and frame speed needed to collect the most accurate data. In addition, the camera’s state-of-the-art connectivity and intuitive user experience allow researchers to focus on their experiments instead of the camera controls.

FLIR RS8500

High-Speed MWIR Camera for Range & Science Applications

The FLIR RS8500 MWIR infrared camera system is a high-performance thermal camera and infrared telescope combined in a single weatherproof housing, specifically designed for long-range tracking and measurement applications including military range, aerospace, and outdoor research. Built around a high-resolution 1280 × 1024 midwave indium antimonide detector with the ability to deliver data up to 180 frames per second, the RS8500 provides 24% more pixels and a 46% faster frame speed than the previous model. Multiple simultaneous data and video output options allow the camera to be easily integrated into most data acquisition systems.

FLIR X8500sc MWIR

High-Speed HD MWIR InSb Camera

The FLIR X8500sc is a highly sensitive, high-speed, high definition MWIR camera designed for scientists, researchers, and engineers. It has all the features needed for research and science: from on-camera RAM/SSD recording to a four-position motorized flter wheel. Plus, by combining HD resolution with high-speed frame rates, the X8500sc allows researchers to fully image the scene and stop motion on high-speed events – whether they’re in the lab or on the test range.

FLIR X8500sc SLS

High-Speed HD LWIR SLS Camera

The FLIR X8500sc SLS is a highly sensitive, high definition LWIR camera designed for scientists, researchers, and engineers. The strained layer superlattice (SLS) detector offers HD resolution combined with shorter snapshot speeds, wider temperature bands, and better uniformity than current LWIR or MWIR alternatives. With advanced triggering and on-camera RAM/SSD recording, researchers can easily stop motion on high-speed events, whether they’re in the lab or on the test range.

FLIR X6800sc MWIR

High Speed, Performance MWIR InSb Camera

The FLIR X6800sc is a fast, highly sensitive MWIR camera designed for scientists, researchers, and engineers. With advanced triggering and on-camera RAM/SSD recording, this camera offers the functionality to stop motion on high- speed events both in the lab and at the test range. The X6800sc has a cooled FLIR indium antimonide (InSb) detector and captures full 640 × 512 images at 520 frames per second, or up to 23,077 Hz with windowing.

FLIR X6900sc MWIR

High Performance MWIR InSb Camera

The FLIR X6900sc is an extraordinarily fast, highly sensitive MWIR camera designed for scientists, researchers, and engineers. With advanced triggering, on-camera RAM/SSD recording, and a four-position motorized filter wheel, this camera offers the functionality to stop motion on high speed events, whether they’re in the lab or on the test range

FLIR X6900sc SLS

High Performance LWIR SLS Camera

The FLIR X6900sc SLS is an extraordinarily fast, highly sensitive LWIR camera designed for scientists, researchers, and engineers. The strained layer superlattice (SLS) detector offers shorter snapshot speeds, wider temperature bands, and better uniformity than current LWIR or MWIR alternatives. With advanced triggering, on-camera RAM/SSD recording, and a four-position motorized filter wheel, this camera offers the functionality to stop motion on high-speed events both in the lab and at the test range.

FLIR RS6800

High Speed MWIR Infrared Camera

The RS6800 is a multi-application long range infrared camera system designed for range tracking, target signature, research, and science applications. The RS6800 camera is a rugged, high performance, full-featured radiometric instrument that can survive harsh range environments

FLIR RS6700

Range & Scientific Infrared Camera

The RS6700 is a multi-application long range infrared camera system designed for range tracking, target signature, research, and science applications. RS6700 cameras are rugged, high performance, full-featured radiometric instruments that can survive the harshest of environments .

FLIR RS8300

High-Speed MWIR Megapixel Infrared Camera

The RS8300 is a multi-application long range infrared camera system designed for range tracking, target signature, research, and science applications. The RS8300 camera is a rugged, high performance, full-featured radiometric instrument that can survive harsh range environments

FLIR SC7650

Science-Grade MWIR InSb Infrared Camera

The FLIR SC7650 is specifically designed for academic and industrial R&D applications as well as integrators who need a flexible camera at an affordable cost. The midwave camera features 640 x 512 pixel resolution and an Indium Antimonide (InSb) detector, providing high sensitivity, accuracy, spatial resolution, and speed. It comes with a removable, motorized 4-position filter wheel, allowing imaging of events in a select part of the electromagnetic spectrum.

FLIR SC7900VL

Science-Grade Longwave MCT Infrared Camera

The FLIR SC7000 Series are very flexible cameras, with high sensitivity, accuracy, spatial resolution and speed. The SC7000 Series is specifcally designed for academic and industrial R&D applications as well as integrators who need a very flexible camera at an affordable cost.

FLIR SC8000 HD

High Speed MWIR Megapixel Science-Grade Infrared Camera

The FLIR SC8200 has a highly sensitive cooled FLIR InSb detector that offers 1,024 × 1,024 true megapixel resolution to produce ultra-sharp thermal images from which the smallest details can be seen and measured. Four active preset operating modes provide adjustable integration times, embedded non-uniformity correction, bad pixel replacement, and window size adjustments. The FLIR readout provides digital data at 200 megapixels per second for extreme imaging flexibility.

FLIR X6550sc

High End Thermal Imaging Camera

The FLIR X6550sc provides excellent thermal measurement performance and advanced connectivity for scientists and R&D professionals with the most demanding applications. This full-featured yet compact camera offers ultra-sensitive, accurate measurements, and allows the user to concentrate on the experiment and not on the camera. The X6550sc is equipped with a cooled Indium Antimonide (InSb) detector for crisp thermal images of 640 x 512 pixels, and it detects temperature differences smaller than 25mK.

FLIR X6980-HS SLS

High-Speed LWIR Science-Grade Camera

The FLIR X6980-HS SLS is an extraordinarily fast longwave IR camera designed for scientists and engineers who need to capture high-speed imagery for accurate thermal analysis and custom radiometric measurements. This thermal imaging camera combines 640 × 512 resolution from the SLS detector with the fastest high-speed frame rates to offer the shorter snapshot speeds and wider temperature bands needed to record crisp stop motion images of high-speed events. With a four-position motorized filter wheel and support for FLIR motorized focus lenses, the X6980-HS SLS will provide high quality recordings, save time, and mitigate frustration in dynamic acquisition environments.