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Teledyne FLIR FLIR FC-Series AI-R
Teledyne FLIR FLIR FC-Series AI-R

Teledyne FLIR FLIR FC-Series AI-R

Brand:Teledyne FLIR Model:Teledyne FLIR FLIR FC-Series AI-R

The FLIR FC-Series AI-R is a ruggedized thermal radiometric camera that integrates industry-leading thermal imaging to detect hot spots and combustion risks in harsh outdoor environments and remote areas. When the object surface temperature reaches pre-set upper thresholds, the FC-Series AI-R continuously monitors for temperature changes or hot spots in areas prone to fire risks, such as storage containers, warehouses, combustible piles, landfills, and waste bunkers. Upon detecting a hot spot or significant temperature change, the camera promptly sends an alarm to the Video Management System (VMS) for immediate assessment and swift deployment of response tactics. Integrating Deep Neural Network and motion analytics, with a thermal sensitivity of <35 mK NETD, the FC-Series AI-R offers enhanced situational awareness and clear image quality. This camera also offers a range of lens options and boasts cyber-hardened integration with both FLIR UVMS and third-party VMS, making it a versatile tool for perimeter security and physical asset safety.

The FLIR FC-Series AI-R is a ruggedized thermal radiometric camera that integrates industry-leading thermal imaging to detect hot spots and combustion risks in harsh outdoor environments and remote areas. When the object surface temperature reaches pre-set upper thresholds, the FC-Series AI-R continuously monitors for temperature changes or hot spots in areas prone to fire risks, such as storage containers, warehouses, combustible piles, landfills, and waste bunkers. Upon detecting a hot spot or significant temperature change, the camera promptly sends an alarm to the Video Management System (VMS) for immediate assessment and swift deployment of response tactics. Integrating Deep Neural Network and motion analytics, with a thermal sensitivity of <35 mK NETD, the FC-Series AI-R offers enhanced situational awareness and clear image quality. This camera also offers a range of lens options and boasts cyber-hardened integration with both FLIR UVMS and third-party VMS, making it a versatile tool for perimeter security and physical asset safety.


Contactless Hot Spot Detection

• Process temperature differences in real-time to identify risks of overheating ​
• Monitor relative temperature changes to detect failing components
• Measure surface temperatures with an accuracy of ±5°C (41°F) for targets below 150°C (302°F)


Industry-leading thermal imaging​

• Four high-performance thermal lenses ranging from an 17° × 14° to a 69° × 56° field of view (FOV)​
• Crisp images from premium thermal sensor for rapid visual verification of hot spots using isotherm specific color palettes to differentiate pixels from coldest to warmest detected object surface temperatures​
• Video with 640 × 512 full resolution allows to view images, thermal patterns, and contrast despite smoke, low light, light fog, and haze
• FLIR’s custom AGCs provide images with extremely high contrast​
• Dynamic Detail Enhancement (DDE) creates sharp edges and contrast that improve analytics performance​


Intelligent Alarms and Easy Integration

• Set temperature thresholds to be notified in real-time when an object’s surface temperature breaches the upper values
• Reduce false radiometric alarms by combining thermal hot-spot detection with intelligent vehicle detection, to filter out alarms from hot vehicle exhaust pipes in monitored areas
• Seamlessly integrate with FLIR UVMS, as well as with other major third-party video management systems, through the FLIR Nexus® software development kit
• FLIR NEXUS® on-board enables target geolocation for situational awareness, and precise hand-off to a pan-tilt-zoom device

Frequently Asked Questions

  • What is the typical lead time for gas turbine overhaul services?
    The lead time for gas turbine overhaul services ranges from 6 to 14 weeks, depending on the damage assessment, parts availability, and whether hot-section repairs are required. Expedited options may reduce this by 30%.
  • Do you provide customizations for legacy turbine control systems?

    Yes, we retrofit legacy systems (e.g., GE Frame 5, Siemens V94.2) with modern digital controllers, typically completing hardware integration within 4-8 weeks. Software migration requires additional validation time.

  • How often should industrial gas turbines undergo performance testing?

    We recommend annual performance testing under ISO 3977-2 standards. Critical applications (e.g., offshore platforms) may require semi-annual tests with emissions compliance checks.

  • Are your radiation-hardened (rad-hard) semiconductors compliant with MIL-PRF-38535?

    All rad-hard devices (e.g., FPGA, ADC) are QML Class V certified under MIL-PRF-38535 and tested to MIL-STD-883 Method 1019 for SEU tolerance. Full qualification reports are available upon request.

  • What temperature ranges do your military-grade ICs support?

    Our ASICs and power management ICs operate across -55°C to +175°C ambient temperatures, with derating curves provided in military temperature range (MTR) datasheets.

  • Are PMA parts interchangeable with OEM components?

    Our PMA parts (e.g., actuators, sensors) hold FAA/EASA Form 1 certification and match OEM form/fit/function. Installation requires SB/MB documentation per FAA AC 23.1529.

  • What traceability standards do you follow for aircraft fasteners?

    All NAS/MS fasteners include full DNA traceability: melt source (AMS 2301), heat/lot numbers, and AS9100-compliant MTRs with ultrasonic test reports.

  • How do you handle urgent AOG (Aircraft on Ground) requests?

    AOG orders ship within 4 hours for stocked items (FAA-PMA, EASA Part 21G). Non-stock critical parts trigger priority manufacturing with 72-hour max turnaround.

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