Cámaras tamaño reducido, poco peso y alta potencia. Esas son las nuevas cámaras Hadron 640 de Teledyne FLIR, una nueva generación de cámaras térmicas diseñadas para ser integradas en aeronaves no tripuladas (UAS), vehículos no tripulados, plataformas robóticas y aplicaciones de inteligencia artificial. La nueva Hadron 640+ ITARfree y la Hadron 640R+ radiométrica ofrecen una sensibilidad térmica líder en el sector de <20 mK en un diseño optimizado SWaP para integradores de UAV, UGV y plataformas robóticas.
The new Hadron 640 modules feature a Boson+ longwave infrared (LWIR) camera with 640×512 pixel resolution and a sensitivity of 20 millikelvins (mK). This allows for trouble-free operation in complex conditions, such as total darkness, smoke or reflections, guaranteeing results both day and night. In addition, the Hadron 640R+ provides temperature measurements for every pixel within the scene and uses a 64-megapixel visible light camera to provide thermal and visible images simultaneously.


The Hadron 640 series offers integrators the opportunity to install high-performance, AI-ready dual cameras in systems that will be used in missions where runtime and battery life are critical.
The Hadron 640 models share mechanical and electrical interfaces, simplifying design. Compatible with Teledyne FLIR's Prism AI detection, tracking and classification models and Prism ISP libraries for super-resolution, turbulence mitigation, contrast enhancement and more, the Hadron 640 series enables efficient AI-based applications. With available drivers for market-leading processors from NVIDIA®, Qualcomm® and more, plus industry-leading integration support, Hadron 640 also reduces development cost and shortens time to market.
INDUSTRY-LEADING VISIBLE AND THERMAL CAMERA PERFORMANCE
Collect high-speed VGA and visible HD radiometric thermal images.
CREATED FOR INTEGRATORS
Reduce development costs and time to market with a reliable single-source solution.
OPTIMIZED SIZE, WEIGHT AND POWER (SWAP) DESIGN
Optimize design and operating time with a compact, lightweight and energy-efficient module.



