FLIR to showcase early fire detection and firefighting technology at NFPA 2026

FLIR will present its fire safety and first responder technologies at the NFPA Conference & Expo 2026, taking place from 22 to 24 June at the Mandalay Bay Convention Center in Las Vegas.

The company will exhibit at Booth 471, where it will demonstrate industrial Early Fire Detection solutions and tactical firefighting equipment, including A-series thermal monitoring cameras and K-series hand-held cameras.

Thermal monitoring for high-risk environments

FLIR said its Early Fire Detection systems use continuous radiometric monitoring and intelligent alarming to identify abnormal heat patterns before smoke or flame is visible.

The technology is designed for high-risk environments including battery storage sites, solar fields, manufacturing lines, waste facilities, warehouses and logistics centres. According to FLIR, the systems can be integrated with plant safety controls to trigger automated responses and support 24/7 situational awareness.

Keynote session to discuss life safety compliance

On Wednesday 24 June, Aaron Lawrence, Director of Sales, Automation at FLIR, will lead a keynote session alongside Martin Casillas, Clark County Fire Inspector, and Ryan Sandler, Vice President of Fire & Life Safety at Everon.

The session will examine how thermal imaging, analytics and system design are influencing the next generation of life safety compliance.

FLIR said its technologies are intended to help operators detect risks earlier, support faster response and improve performance in challenging fireground and industrial conditions.

Flir to unveil new thermal camera at Interschutz 2026

Flir has announced a landmark expansion of its firefighting portfolio at Interschutz 2026 -hall 27 booth M42.

Flir K85-N

Headlining the launch is the Flir K85-N, the first thermal imaging camera (TIC) on the market to achieve full certification under the new NFPA 1930:2025 standard.

The company explained that the K85-N arrives as the successor to the industry-standard K65, offering a rugged, fresh design paired with significant leaps in sensor performance.

Featuring a 640×480 resolution and a ground-breaking single-range architecture, the K85-N ensures firefighters maintain high-fidelity visibility without the lag or image degradation typically associated with switching between temperature modes.

“Previously unreachable”

Benjamin Mortlock, Team Lead at Flir stated: “In high-stress environments, clarity is the difference between a successful mission and a tragedy.

“The K85-N is engineered so that crews never miss critical scene information.

“With its enhanced contrast and dedicated modes for search and detection, we are providing a level of situational awareness that was previously unreachable,” Mortlock added.

A unified ecosystem

Beyond the K85-N, Flir highlighted that it is introducing updated 2026 versions of its proven K75 and K85 cameras.

These models benefit from a revised optical design and a lower f-number, significantly improving image clarity in low-contrast environments.

According to Flir, the 2026 K-Series features:

  • Standardised Ergonomics: A new compact battery and enhanced grip aligned with the K85-N platform
  • Advanced Connectivity: Integration with the Flir Responder mobile app, enabling wireless streaming, over-the-air (OTA) firmware updates, and simplified post-incident analysis
  • Rapid Deployment: A newly engineered in-truck charger featuring a ‘insert, twist, lock’ mechanism for faster, more reliable handling in high-pressure scenarios

“Keeps the focus where it belongs”

Peter Dekkers, Business Development Director at Flir commented: “Our goal for 2026 was standardisation and serviceability.”

“Whether a department is using the NFPA-certified K85-N or the updated K75, the interface, batteries and charging infrastructure remain consistent.

“This reduces training friction and keeps the focus where it belongs: on the fireground,” he concluded.

“Mystery” Reveal at Stand

Flir teased about an exclusive, unannounced development that will remain under wraps until the exhibition doors open.

This “booth-only” reveal is expected to showcase a new frontier in first-responder safety technology.

Attendees of Interschutz 2026 can experience the full K-Series line up at the Flir booth located in hall 27 booth M42.

Teledyne FLIR OEM and ACSL advance thermal imaging drone technology

Teledyne FLIR OEM confirms collaboration with ACSL

Teledyne FLIR OEM has announced that ACSL will join its Thermal by FLIR programme to integrate its thermal imaging modules into new drone payloads.

According to Teledyne FLIR OEM, the partnership will see ACSL, a Japanese drone manufacturer, develop payloads using its Hadron 640R dual camera system and related imaging technologies.

The initiative is aimed at providing enhanced imaging capabilities for public safety, disaster response, and inspection applications in the United States.

Teledyne FLIR OEM explained that the programme supports original equipment manufacturers in adopting thermal modules and taking new imaging products to market.

It added that the collaboration with ACSL reflects growing demand for NDAA-compliant, security-focused drone systems.

ACSL integrates Hadron 640R into SAMO payload

ACSL said the collaboration includes its SAMO thermal payload, which combines a 64MP visible camera with the Hadron 640R thermal module.

The payload will also incorporate FLIR’s patented Multi-Spectral Dynamic Imaging technology, known as MSX, which overlays visible details onto thermal imagery for greater clarity.

The company reported that the SAMO system is designed to provide real-time imaging for operators in the field.

Cynthia Huang, CEO of ACSL Inc, said: “Collaborating with Teledyne FLIR OEM is a natural and significant step for ACSL.

“As the U.S. drone landscape evolves, our commitment remains focused on delivering field-ready UAS solutions.

“The SAMO payload brings advanced, proven imaging capabilities to drone operators nationwide.

“Paired with our new TAITEN smart controller and upgraded SOTEN platform, operators will be empowered to work smarter, faster, and with greater confidence.”

SOTEN drone features and intended use

ACSL explained that its SOTEN drone is intended for public safety, disaster response, surveying, and inspection.

It said the drone is foldable, lightweight, and manufactured in Japan to ISO15408 standards.

The system includes a weather-resistant IP43 rating, a flight time of 25 minutes, and a swappable payload feature for faster field use.

The organisation added that the platform has been designed to meet compliance requirements under the U.S. National Defense Authorization Act.

It confirmed that the payload integration is expected to expand the range of missions that the SOTEN can support.

Teledyne FLIR OEM perspective on collaboration

Mike Walters, vice president of product development at Teledyne FLIR OEM, said: “With growing concerns around drone security, ACSL offers a robust NDAA-compliant solution with versatile payload options tailored to mission needs.

“ACSL’s rapid innovation is impressive, and we’re excited to continue ongoing collaboration on next-generation drone payloads featuring our latest thermal camera modules and Prism ISP features.”

The company indicated that ongoing joint development will address evolving drone market requirements.

It added that the Thermal by FLIR programme is structured to help manufacturers combine imaging modules with broader system-level features.

Thermal by FLIR programme explained

Teledyne FLIR OEM reported that the Thermal by FLIR programme provides technical integration support and joint marketing opportunities for participating drone manufacturers.

The programme offers access to the company’s latest thermal camera modules and related imaging software tools.

It said the aim is to accelerate the deployment of thermal imaging technologies across multiple sectors, from public safety to industrial inspection.

The group added that ACSL is among the newest participants in the programme, joining other developers seeking to expand their drone capabilities.

Commercial UAV Expo showcase in Las Vegas

Teledyne FLIR OEM said that ACSL will present the SOTEN drone and SAMO payload at the Commercial UAV Expo in Las Vegas from 2 to 4 September 2025.

It noted that ACSL will exhibit at booth number 917 during the event.

The company added that the showcase will allow attendees to view the integrated systems and discuss their potential applications.

Relevance for fire and safety professionals

Thermal imaging drones are increasingly being adopted by fire services for search and rescue, situational awareness, and fireground management.

The collaboration between Teledyne FLIR OEM and ACSL introduces another platform designed to meet regulatory requirements in the United States.

Fire and safety professionals may find value in the payload’s real-time imaging, which can support decision-making in emergency operations.

The system’s compliance and integration with secure drone platforms may also address security concerns in public sector procurement.

Teledyne FLIR OEM and ACSL advance thermal imaging drone technology: Summary

Teledyne FLIR OEM announced that ACSL has joined its Thermal by FLIR programme.

The collaboration involves ACSL’s SAMO payload with the Hadron 640R dual thermal-visible camera module.

The payload also integrates FLIR’s Multi-Spectral Dynamic Imaging technology.

ACSL’s CEO Cynthia Huang said the partnership enhances UAS solutions for U.S. drone operators.

ACSL’s SOTEN drone is designed for public safety, disaster response, surveying, and inspection.

The drone is foldable, ISO15408 certified, NDAA compliant, IP43 weather resistant, and has a 25-minute flight time.

Teledyne FLIR OEM vice president Mike Walters said the collaboration addresses drone security needs.

The Thermal by FLIR programme provides OEM support and market access for thermal imaging products.

ACSL will showcase the SOTEN drone and SAMO payload at the Commercial UAV Expo in Las Vegas.

FLIR thermal imaging system enhances grid reliability in Ireland

Thermal monitoring used to help prevent blackout risk

A new thermal imaging system using FLIR technology has been installed at Moneypoint Power Station to reduce fire risks and provide continuous monitoring of key infrastructure.

According to FLIR, the system is designed to prevent cascading failures that could affect up to 25 percent of Ireland’s power supply.

The deployment was led by ESB Energy and Butler Technologies.

The system integrates FLIR A500f and A70 thermal cameras and monitors components such as transformers and cabling.

The power station is located on Ireland’s west coast and currently operates as an oil-fired facility while serving as a national test site for renewable energy development.

Shift from manual to real-time automated monitoring

FLIR reported that thermal inspections at the Moneypoint facility were previously carried out manually on a weekly basis.

The new automated system delivers alerts within seconds of abnormal temperature detection.

According to the company, this allows for quicker interventions that may help prevent larger failures.

Thermal monitoring now covers areas such as turbine halls and substations.

Butler Technologies has adapted the system to push alerts to shift managers via app, SMS or email.

John Free, Senior Account Manager at Butler Technologies, said: “This isn’t about replacing engineers. It’s about empowering them.

“With fewer hands on deck, this system becomes an extra set of eyes they can trust.”

Enhanced asset monitoring with FLIR data feeds

FLIR explained that its thermal imaging system allows engineers to detect early signs of stress or failure.

Each image contains over 16,000 reference points, enabling more precise analysis than traditional sensors.

FLIR stated that this data improves the speed and accuracy of decision-making during incidents.

According to the company, the improved insights help avoid visual guesswork and allow for targeted maintenance.

The site has ordered additional cameras and is using the system to monitor operational patterns.

Integrated system architecture simplifies response

FLIR said the Moneypoint deployment uses a fully integrated system architecture.

The system feeds into the station’s video management platform, where alerts are automatically displayed.

Alarms expand on screen to highlight thermal zones needing attention.

There is no requirement for third-party hardware, which FLIR stated helps reduce maintenance issues.

Plans are in place to scale the system to include new devices and support for AI-based monitoring.

Pilot scheme for wider grid adoption

The ESB Project Engineer said: “We chose FLIR technology because it provides the real-time precision and scalability needed to safeguard critical infrastructure.

“In an industry where uptime is everything, FLIR’s thermal imaging offers the level of early detection and monitoring we require to protect both our assets and the national grid.”

FLIR noted that this is the first deployment of its kind in Ireland and one of the first in Europe to support integration with future renewable operations.

ESB Energy is trialling use of the same technology at its substations to monitor connection points and detect faults.

FLIR said that if successful, the system could be deployed across over 500 substations nationwide.

The system is currently supporting preparatory work on wind energy projects.

FLIR thermal imaging system enhances grid reliability in Ireland: Summary

FLIR has reported that its thermal monitoring system has been installed at Moneypoint Power Station in Ireland.

The system uses FLIR A500f and A70 thermal cameras.

It is operated by ESB Energy in partnership with Butler Technologies.

Moneypoint Power Station supplies around a quarter of Ireland’s electricity.

The FLIR system provides automated fire detection and condition monitoring.

Previously, inspections at the site were done manually.

Automated alerts now trigger within seconds of detecting heat anomalies.

Each image contains more than 16,000 reference points for analysis.

The station is also testing the system for use in upcoming renewable energy projects.

Butler Technologies developed an app to push alerts across platforms.

The system integrates with the site’s existing video platform.

No third-party hardware is required for its operation.

A trial is under way to monitor similar substations across Ireland.

FLIR said the system helps prevent cascading failures during grid stress.

It is the first full integration of this type in Ireland’s national grid.

Plans are in place to scale the system to newer devices.

FLIR thermal imaging demand grows amid global battery storage expansion

Thermal cameras used to mitigate battery energy storage system fire risks

FLIR has reported growing demand for its thermal imaging cameras as global installations of Battery Energy Storage Systems (BESS) increase.

The company cited the rise in thermal risks such as fire and toxic gas release as key reasons for the adoption of fixed thermal cameras in energy infrastructure.

According to the U.S. Energy Information Administration (EIA), battery capacity in the United States increased by 89 percent in 2024.

FLIR stated that the risk of thermal runaway – where heat spreads from one battery cell to another – presents a growing hazard for fire and rescue teams, energy operators and local communities.

BESS use increases in line with renewable energy investment

FLIR explained that BESS installations are expanding due to their role in balancing the power grid during periods of inconsistent supply and high demand.

The company cited data from S&P Global showing that nearly 9.2 gigawatts of BESS capacity were installed in the United States by late November 2024.

FLIR said that battery systems also support electric vehicle infrastructure by reducing strain on local grids during high-demand charging events.

The company stated that BESS contributes to grid reliability and reduces fossil fuel reliance by storing renewable electricity for later use.

Safety concerns linked to BESS include fire, gas and infrastructure damage

FLIR reported that fire safety concerns are growing due to the increase in BESS deployments.

The company highlighted data from Rho Motion showing that 10.5 gigawatt hours of new capacity were added to the global energy network in February 2025 alone.

FLIR warned that thermal runaway incidents can lead to toxic gas emissions, equipment damage and large-scale fires if not detected and mitigated early.

The company explained that hydrogen fluoride gas, released in some incidents, can present serious health and environmental risks.

FLIR thermal solutions aim to provide early warning of faults

FLIR stated that fixed thermal imaging systems with integrated analytics are being used to detect abnormal temperature rises before they escalate into fires.

The company said these systems are capable of triggering suppression systems and alarm protocols when temperatures breach preset safety thresholds.

FLIR explained that early detection through thermal monitoring can reduce damage, improve safety and support faster emergency response.

The company provides thermal fire prevention systems for a range of industrial applications, including battery energy storage infrastructure.

FLIR thermal imaging demand grows amid global battery storage expansion: Summary

FLIR has reported increased demand for thermal imaging systems.

The company linked this trend to a global rise in Battery Energy Storage System (BESS) installations.

The U.S. Energy Information Administration recorded an 89 percent increase in national capacity during 2024.

According to S&P Global, 9.2 gigawatts of BESS were installed in the United States by late November 2024.

Rho Motion stated that 10.5 gigawatt hours of new capacity were added globally in February 2025.

FLIR cited thermal runaway as a major fire safety risk linked to battery systems.

The company reported that these incidents can cause fires and release hydrogen fluoride gas.

FLIR said its fixed thermal cameras are used to detect temperature increases before failures occur.

The company stated that these systems can activate alarms and fire suppression systems automatically.

FLIR explained that early detection improves safety and reduces response time.

FLIR MIX delivers synchronised thermal and visible imaging for research applications

FLIR MIX launched for multispectral imaging

FLIR has launched FLIR MIX, a multispectral imaging solution designed to synchronise thermal and visible-light data for research and engineering purposes.

According to FLIR, the MIX system addresses the difficulty of aligning thermal and visual imagery during high-speed testing and data analysis.

The solution combines thermal and visible imagery into one spatially and temporally aligned dataset.

Synchronised imaging for research and analysis

FLIR stated that the MIX system enables high-speed image capture of up to 1,004 frames per second.

The combined camera and software platform aims to remove the need for separate recording and manual alignment of thermal and visible footage.

The system is intended for use in applications including airbag testing, electronics design, battery testing and materials analysis.

Two hardware kits and a software toolkit

FLIR MIX is available in two configurations: the X-Series Starter Kit and the A-Series Starter Kit.

The X-Series Starter Kit includes a FLIR X69xx thermal camera, a high-speed visible camera, precision optics, mounting hardware and FLIR Research Studio software.

The A-Series Starter Kit uses the FLIR A67xx thermal camera and is designed for electronics and renewable energy testing.

Both kits are designed to capture and align data in real time using FLIR’s software platform.

Toolkit supports post-processing workflows

In addition to the hardware kits, FLIR offers the MIX Toolkit for post-processing synchronisation.

The MIX Toolkit is a software add-on that can be licensed with FLIR Research Studio Professional Edition.

The company stated that the toolkit enables researchers to align thermal and visible frames during post-analysis to generate a unified dataset.

Matthew Hasty, Senior Global Product Manager at FLIR, said: “FLIR MIX simplifies thermal analysis by combining quality thermal and visible imagery in real-time in one easy-to-use hardware and software package.”

He added: “The solution empowers researchers to achieve precise spatial alignment with radiometric data for every pixel, providing detailed temperature insights across the entire image, making analysis more straightforward while shortening the time to discovery.”

FLIR MIX delivers synchronised thermal and visible imaging for research applications: Summary

FLIR has released a multispectral imaging solution called FLIR MIX.

The system combines thermal and visible-light data into a single synchronised dataset.

It includes two hardware kits for different applications and a software toolkit for post-processing alignment.

The MIX X-Series Starter Kit is designed for high-speed testing.

The A-Series Starter Kit targets electronics and renewable energy testing.

The software toolkit aligns footage during post-analysis.

FLIR MIX captures data at up to 1,004 frames per second.

The system uses FLIR Research Studio for image analysis.

It aims to eliminate manual image alignment.

According to FLIR, the system supports use cases including materials testing, fluid dynamics and impact capture.

FLIR stated that the tool reduces the time required for analysis by generating aligned datasets in real time. The product is available now.

Sentera and Teledyne FLIR expand thermal drone applications with new payload

Teledyne FLIR confirms new partnership with Sentera

Teledyne FLIR has reported that Sentera Sensors and Drones has joined the Thermal by FLIR programme.

The US-based manufacturer is integrating FLIR Boson thermal camera modules into its 6X Thermal Series drone payload.

The integration provides the Sentera platform with radiometric thermal imaging, alongside existing multispectral and RGB sensors.

The updated system supports data collection for a range of uses including fire detection, agriculture and industrial inspections.

According to Teledyne FLIR, the addition of Boson modules enhances mapping accuracy by providing radiometric temperature data at the pixel level.

Capabilities of the new 6X Thermal Series payload

The Sentera 6X Thermal Series includes the 6X Thermal and 6X Thermal Pro models.

Both models feature either the FLIR Boson 640R or 320R thermal imagers.

Each payload is also equipped with four synchronised 3.2MP monochrome imagers and a 20MP RGB sensor.

The system is NDAA-compliant and designed to integrate with various drone platforms used in outdoor and industrial settings.

Use cases highlighted by the manufacturer include water stress monitoring, evaporation analysis and infrastructure inspections.

Integration improves thermal data processing

Sentera said the integration improves the quality and usability of thermal data.

Eric Taipale, chief technology officer at Sentera, said: “Precision thermal mapping has long been a challenge due to alignment and stitching issues.

“By combining FLIR’s trusted thermal technology with Sentera’s automated multispectral-assisted processing, we’re making it easier for users to capture, process, and analyze high-quality thermal data with confidence.”

The payload combines thermal, multispectral and visible imaging technologies into a single unit.

Teledyne FLIR stated that this approach supports a range of practical applications, including agriculture and public safety.

Teledyne FLIR’s Thermal by FLIR programme explained

The Thermal by FLIR programme is a development and marketing initiative for product integrators using Teledyne FLIR thermal camera modules.

The company said the programme is intended to reduce development costs and risk for original equipment manufacturers (OEMs) and speed up product launch.

Jared Faraudo, vice president of product management at Teledyne FLIR OEM, said: “Sentera’s innovative approach to combining thermal, multispectral, and visible imaging in a unified sensor package represents a market-changing innovation the Thermal by FLIR program was designed to support.”

The 6X Thermal Series joins a range of Thermal by FLIR products in use across several industries, including automotive, defence and wearables.

Sentera and Teledyne FLIR expand thermal drone applications with new payload: Summary

Teledyne FLIR has announced that Sentera has joined its Thermal by FLIR programme.

Sentera has integrated the FLIR Boson thermal camera module into its 6X Thermal Series drone payloads.

The updated system includes either the Boson 640R or 320R thermal imager, four 3.2MP monochrome sensors, and a 20MP RGB camera.

Sentera stated the integration allows for improved thermal data mapping and analysis.

Teledyne FLIR said the payload delivers radiometric temperature data at the pixel level.

The 6X Thermal Series supports agriculture, industrial, and public safety applications.

The payload is compatible with a range of drone platforms and is compliant with US National Defense Authorisation Act (NDAA) requirements.

The Thermal by FLIR programme supports OEMs in developing and marketing products using FLIR thermal modules.

Other programme members produce integrated thermal systems for sectors including automotive and defence.

FLIR thermal imaging enhances fire safety at Dovecote Park meat plant

Fire prevention measures implemented at Dovecote Park

Dovecote Park, a UK-based food processing plant, has adopted FLIR thermal imaging technology to enhance fire safety.

The decision was prompted by fire risks identified in the plant’s production hall roof voids, where equipment such as motors, pumps, and electrical components operate.

The company worked with WRS Solutions and Business Insight 3 (Bi3), a FLIR Gold Level Partner, to integrate a system of FLIR FH-Series R thermal cameras.

These cameras detect heat accumulation before it reaches ignition temperatures, providing an early warning system to prevent potential fires.

FLIR thermal cameras deployed for early fire detection

Thermal cameras were chosen over traditional fire suppression methods due to their ability to detect overheating before a fire starts.

FLIR FH-Series R cameras, which combine a thermal radiometric stream with a 4K visible camera, were installed to provide continuous monitoring.

The system sends alerts through a Video Management System (VMS) when a predefined temperature threshold is exceeded.

This allows the maintenance team to take action before a fire hazard develops.

Technology integration and incident prevention

To integrate the cameras with Dovecote Park’s existing VMS, Bi3 developed custom software using its proprietary data engine.

This ensures alerts are instantly relayed to the engineering team and Nick Dunn, the plant’s Health, Safety, and Environmental Manager.

Dunn said: “FLIR thermal cameras provide peace of mind because we can now be proactive in our equipment maintenance, instead of reactive.

“From the moment something gets hot, our maintenance team can attend to it.”

Since installation, the system has already detected two overheating incidents, one of which could have caused major disruption had it not been addressed.

Industry perspectives on fire safety benefits

Robert Groom, Sales Manager at FLIR, said: “This is a fine example of where proven FLIR technology in the hands of skilled and experienced industry professionals not only protects people and property but also delivers a real return on investment.”

Chris Eccles, Sales Director at Business Insight 3, added: “Successfully delivering this solution necessitates a capable team, and with WRS and FLIR as partners on this project, a seamless installation and integration were achieved.

“This resulted in immediate and tangible benefits for Dovecote Park.”

FLIR thermal imaging enhances fire safety at Dovecote Park meat plant: Summary

Dovecote Park has installed FLIR FH-Series R thermal cameras to improve fire safety at its Yorkshire-based meat processing plant.

Working with WRS Solutions and Business Insight 3, the company integrated thermal imaging technology to monitor roof voids where electrical and mechanical equipment operate.

The system alerts maintenance staff when heat accumulation exceeds a set threshold, allowing early intervention.

Since installation, the cameras have identified two overheating incidents, one of which could have caused significant disruption.

FLIR and Business Insight 3 have highlighted the benefits of this approach, stating that it enhances safety while providing a return on investment.

How FLIR thermal imaging helps prevent downtime in data centres

Thermal imaging aids data centre operations

FLIR has reported on the role of thermal imaging in maintaining data centres.

With the expansion of cloud computing, artificial intelligence, and big data, data centres are increasing in scale and complexity.

Preventing downtime is essential, as failures can result in financial losses and reputational damage.

Thermal imaging technology helps identify potential problems in power distribution, cooling systems, and electrical components before they lead to failures.

Maintenance teams use FLIR thermal imaging cameras to detect overheating, overloaded circuits, and mechanical faults.

The technology allows inspections to be conducted without shutting down equipment, reducing operational disruption.

Applications in electrical and cooling systems

Thermal imaging is widely used to inspect electrical infrastructure in data centres.

FLIR states that overheating in electrical systems can indicate loose connections, load imbalances, or failing components.

Detecting these issues early can prevent unplanned outages. Cooling systems also benefit from thermal imaging inspections.

Many data centres use a hot aisle/cold aisle cooling layout. FLIR thermal cameras assist in monitoring airflow efficiency, identifying misaligned ductwork, and detecting cooling failures that could lead to overheating.

Enhancing security and fire prevention

In addition to maintenance applications, thermal imaging is used for security and fire prevention.

FLIR reports that fixed thermal cameras can detect temperature anomalies before they lead to equipment failure or fire.

Early detection reduces the risk of asset damage and operational disruptions. Thermal imaging is also used for perimeter security.

Unlike standard video cameras, thermal cameras operate in low-visibility conditions such as fog, smoke, or darkness.

Integrated with analytics, these cameras can distinguish between humans and vehicles, reducing false alarms.

Thermal imaging supports renewable energy integration

Data centres are increasing their use of renewable energy, including solar and wind power.

According to FLIR, thermal imaging helps inspect solar panels for defects and assess wind turbine components for wear.

This technology supports efficiency and maintenance efforts in renewable energy integration.

How FLIR thermal imaging helps prevent downtime in data centres: Summary

FLIR has reported on the role of thermal imaging in data centre maintenance.

The technology is used to inspect electrical systems, cooling infrastructure, fire prevention systems, and security operations.

Thermal cameras help detect overheating, faulty circuits, and equipment failures before they cause downtime.

FLIR states that thermal imaging can be used for predictive maintenance without interrupting data centre operations.

The technology also supports security applications by monitoring perimeters and detecting threats in low-visibility conditions.

Additionally, thermal imaging is used to inspect solar panels and wind turbines as data centres integrate renewable energy sources.