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Showing results: 16 - 24 of 24 items found.

  • Pyranometer products

    Hukseflux Thermal Sensors B.V.

    Hukseflux is a leading manufacturer, both in technology and market share, of pyranometers, pyrheliometers, pyrgeometers, net radiometers and albedometers.We produce a complete range of solar and longwave radiation sensors, compliant with the latest ISO, IEC and WMO standards. Each Hukseflux pyranometer is classified as ISO 9060 secondary standard, first class, or second class, and offers the best measurement accuracy in its class. Pyranometer output is analogue and/or digital (Modbus over RS-485/TTL).

  • Advanced Clip-on Thermal Weapon Sight for Warfighter

    ThermoSight® T75 - Teledyne FLIR

    Designed to mount on any MIL-STD-1913 rail interface forward of an existing scope, the ThermoSight® T75 offers mission flexibility as a long-range thermal weapon sight and as a hand-held observation device. It’s designed to interface with a wide range of day scopes and weapon platforms. The T75 runs on common AA Li batteries and is equipped with large, rugged controls for image adjustment. The long-wave IR sensor provides crisp imagery all night and all day.

  • Thermal Camera Cores

    Tenum® 640 - Leonardo DRS, Inc.

    With a 10 μm pixel pitch and <30 mK NETD sensitivity, the Tenum 640 represents the latest evolution in low SWaP long-wave infrared technology. Tenum® 640 precisely balances ultra-small pixel structure with ultra-sensitive microbolometer performance at a remarkable cost advantage. The 10-micron pixel pitch Vanadium Oxide (VOx) technology behind Leonardo DRS’ Tenum® 640 is the most advanced uncooled infrared sensor design available to Original Equipment Manufacturers (OEMs) today.

  • High-Speed LWIR Science-Grade Camera

    FLIR X6980 SLS™ - Teledyne FLIR

    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.

  • Surveillance System for Long-Range Applications

    ThermoVision™ (THV) 3000 MultiSensor - Teledyne FLIR

    The ThermoVision™ (THV) 3000 detects and classifies illegal activities and threats in total darkness, smoke, sand haze, and broad daylight conditions. The thermal camera is equipped with a long-wave, cooled Quantum Well Infrared Photodetector (QWIP) and switchable optics offering three different fields of view. It provides excellent situational awareness while also closely monitoring suspect activities in real-time. Ideal applications include perimeter security, border and coastal surveillance, force protection, and mid-range threat detection.

  • High Definition LWIR Science-Grade Camera

    FLIR X8580 SLS™ - Teledyne FLIR

    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.

  • Microbolometer Sensors

    Calibir GX Family - Teledyne DALSA

    The Calibir GX camera family features our latest microbolometer sensor, designed, fabricated, and packaged in our own foundry. With great sensitivity in longwave infrared range (8-12 µm), it features both shutter and shutterless operation and rapid image output on power up while delivering uniform response over the entire operating temperature range, making it an ideal component for thermal imaging systems requiring uninterrupted image acquisition. The GX series also offers our own advanced 21-bit ADC design for unparalleled intra-scene dynamic range without the need for a gain reduction, allowing for the best possible NETD over a vast range of temperature (>600C).

  • Sensor

    Lepton - Pure Engineering, llc

    The FLIR Lepton™ is the most compact longwave infrared (LWIR) sensor available as an OEM product. It packs a resolution of 80 × 60 or 160x120 pixels into a camera body that is smaller than a dime. This revolutionary camera core is poised to equip a new generation of mobile and handheld devices, as well as small fixed-mount camera systems, with thermal imaging capabilities never seen before. Lepton contains a breakthrough lens fabricated in wafer form, along with a microbolometer focal plane array (FPA) and advanced thermal image processing. In order to support the lepton and make it easy to use, we have developed a breakout board to support the module along with example source code. Please see the Lepton Thermal Camera Breakout Datasheet for more information.

  • Near-Field Probes 100 kHz up to 50 MHz

    LF1 set - Langer EMV-Technik GmbH

    The LF1 near-field probe set consists of 4 shielded near-field probes used during the development process for emission measurement of longwave, medium wave, and shortwave frequencies on electronic devices. The probe heads of the LF1 set are designed for incremental detection of sources of electromagnetic interference on assemblies. First, the electromagnetic interference of the assembly is detected by the LF-R 400 probe from up to 10 cm. Then probes with higher resolution like the LF-B 3, LF-U 5 and LF-U 2.5 are used to more precisely detect any source of interference. The probe heads are designed for taking measurements at single pins and larger components. Near-field probes are small and handy. They have a current attenuating sheath and, therefore, are electrically shielded. They can be connected to a spectrum analyzer or an oscilloscope with a 50 Ω input. The H-field probes do not have an internal terminating resistance of 50 Ω.

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