Abu Dhabi, UAE – [Nov 04] – IRISS, a global leader in electrical maintenance safety devices and condition-based monitoring (CBM) technologies, today announced a strategic global association with SENSIA, a Spain-based leading manufacturer and developer of advanced infrared (IR) imaging technology.

The collaboration marks a major step forward in delivering world-class gas detection and intelligent IR monitoring solutions to industrial customers worldwide. Together, IRISS and SENSIA aim to accelerate the adoption of AI-powered IR imaging and predictive maintenance technologies that improve safety, reliability, and sustainability while supporting autonomous operation of industrial assets across key global markets.
“Partnering with SENSIA allows IRISS to expand our condition-based monitoring ecosystem into a truly multidisciplinary platform that merges safety, reliability, and real-time diagnostics,” said Martin Robinson, CEO of IRISS. “Together, we are empowering industries to see what was previously invisible and act before failures happen, helping them achieve safer and more resilient operations.”
SENSIA’s SMART OGI and continuous monitoring systems provide real-time visualization, digital alerts, quantification and immutable data of gas emissions, and thermal behavior of components. When integrated into IRISS’s predictive maintenance and reliability ecosystem, these technologies offer a unified, data-driven approach to asset health, environmental safety, and ESG compliance.
“This partnership with IRISS marks a key milestone in SENSIA’s international expansion and growth,” said Francisco Cortés, CEO of SENSIA. “Signing this agreement at ADIPEC, the world’s leading oil and gas exhibition, reinforces our commitment to the industry and highlights how SENSIA’s technology has become a key enabler for the sector’s sustainability goals.”

Together, IRISS and SENSIA are shaping the future of industrial inspection, offering organizations worldwide smarter, safer, and more sustainable ways to protect assets and ensure uninterrupted operations.
