Think you’d escape a house fire in time? Kidde’s new simulator puts you to the test

Kidde introduces home fire drill tool for Canadians

Kidde has announced the release of a free digital tool designed to help Canadians prepare for household fire emergencies, according to a joint release from Kidde, the Ontario Association of Fire Educators (OAFE), and the Fire Marshal’s Public Fire Safety Council.

The new tool, part of Kidde’s “Cause For Alarm” campaign, uses augmented reality (AR) to simulate home fire scenarios and guide users through preparation and evacuation drills.

Accessible through any smartphone or tablet browser, “Prepare. Plan. Practice.” is intended to improve awareness and response speed during residential fires.

Kidde cited data indicating that many Canadians overestimate how long they have to escape a house fire.

According to Kidde, nearly 70 percent of Canadians believe they have more than two minutes to evacuate, despite fire experts warning that modern fires can spread much faster.

Fire safety training enters homes through AR

The interactive simulator provides three main training modes.

Demonstration Mode uses AR to show how a fire can spread through the user’s environment in real time.

Learn Mode lets users explore a digital home and receive advice on fire hazards, carbon monoxide safety, and smoke alarm usage.

Practice Mode allows users to develop a custom escape plan and simulate an emergency using a two-minute countdown, complete with fire sounds.

An additional version of the tool, known as Kid Mode, is available for younger users with less intense visuals.

The tool also includes a Safety Hub offering printable escape plans, safety checklists, and links to further educational materials.

Canadian fire safety organisations support launch

The simulator was developed in collaboration with several fire safety organisations in Canada and abroad.

Partners included the National Fire Protection Association (NFPA), the Ontario Association of Fire Educators (OAFE), and the Fire Marshal’s Public Fire Safety Council.

Laura King, Canadian Director at NFPA, said: “It’s crucial that we continue to evolve the way we educate and prepare people for emergencies. Prepare. Plan. Practice. serves as a powerful example of how technology can be leveraged to help make life-saving fire safety knowledge more engaging, accessible, and actionable for today’s families.”

She added: “We’re proud to see messaging from NFPA’s Educational Messaging Advisory Committee Desk Reference — the global resource for public education messaging — incorporated into innovative solutions that help advance public safety.”

Jamie Kovacs, Executive Director at the Ontario Fire Marshal’s Public Fire Safety Council, said: “At the Ontario Fire Marshal’s Public Fire Safety Council, one of our goals has always been to make fire and life safety education widely accessible.”

Kovacs added: “This invaluable new tool supports that mission by engaging families directly in their homes. It’s a powerful way to reinforce what kids learn at school and help close the gap in fire preparedness at home.”

Ivanette Bonilla highlights household education gap

Ivanette Bonilla, Chief Communications and Government Relations Officer at Kidde, said the tool was designed to address the lack of fire safety practice at home.

Bonilla said: “By leveraging cutting-edge AR technology, this tool makes essential fire safety education more accessible, engaging, and actionable.”

She added: “Children may participate in up to 10 fire drills at school each year, but few families practice fire safety at home where fires are more likely to happen — underscoring the need to bring this experience into households to help families prepare together.”

Bonilla explained that no downloads or purchases are required to use the tool, allowing for broad access across devices.

She added that the experience helps develop critical skills and decision-making abilities under time pressure.

Online resources complement digital training

In addition to the simulator, Kidde has made further educational materials available through its website.

The site includes a downloadable Fire Safety Toolkit available in seven languages.

Other materials include a children’s song titled “Beeps that Last Get Out Fast” and a storybook titled Safety Saves the Day!.

According to Kidde, all these resources are designed to be used at home to support family-based fire safety planning.

The digital tool and educational suite can be accessed through CauseForAlarm.org/Canada.

Kidde releases augmented reality fire safety simulator for Canadian households: Summary

Kidde has released a digital AR-based fire safety training tool for Canadian households.

The tool is named “Prepare. Plan. Practice.” and forms part of the Cause For Alarm campaign.

It allows users to simulate fire scenarios and practise household escape plans using a smartphone or tablet.

It is free to access through a browser, requiring no downloads.

Three interactive modes are available: Demonstration, Learn, and Practice, with an optional Kid Mode.

A Safety Hub offers supplementary resources including printable escape plans and checklists.

The launch is supported by the National Fire Protection Association, Fire Marshal’s Public Fire Safety Council, and Ontario Association of Fire Educators.

NFPA Canadian Director Laura King endorsed the tool’s educational value.

Executive Director Jamie Kovacs of the Ontario Fire Marshal’s Council also supported its home engagement approach.

Ivanette Bonilla of Kidde emphasised the importance of home-based fire preparedness.

The tool is intended to address the gap between school-based fire drills and home readiness.

It is now available at CauseForAlarm.org/Canada.

Edwards launches outdoor fire alarm strobes for harsh environments

Edwards adds outdoor models to fire alarm range

Edwards has announced new outdoor models in its Genesis LED fire alarm series, designed for extreme environments and wide-area coverage.

According to Edwards, the new extended candela devices include strobes and speaker-strobes that reach up to 115 candela light output, suitable for outdoor and wash-down areas.

The company stated that the appliances deliver reduced energy consumption with an 86 percent lower current draw compared to previous models.

These new units can be installed in new or retrofit systems and are backwards compatible with legacy Genesis products.

Edwards said the devices are engineered to withstand water, dust, and temperature extremes, targeting locations such as car parks, cold storage rooms, and manufacturing sites.

Energy efficiency and electrical performance features

The new Genesis LED Outdoor models are designed to support installation flexibility and long-term efficiency.

Edwards stated that the appliances use a constant current draw across multiple light settings, simplifying system design and allowing more devices per circuit.

The company said this helps reduce wire size and extend wiring distances without requiring recalculations for voltage drop.

All models are backwards compatible with legacy Genesis units, supporting phased upgrades or additions without system redesigns.

According to Edwards, this results in cost savings in both materials and labour during installation.

Deployment in extreme outdoor and industrial settings

The company said the appliances are suitable for locations that experience harsh weather or sanitation requirements.

Edwards confirmed the products are NEMA 4X and IP66 UL listed for resistance to water spray and dust ingress.

They have been tested beyond those standards, achieving an IP67 rating for further protection.

The operating temperature range spans from -40°F to 151°F, according to Edwards.

Target applications include outdoor building perimeters, zoo enclosures, freezers, and production facilities.

Quote from Jon Hughes on system expansion

Jon Hughes, Vice President of Product Management at Edwards, said: “Enhancing the Genesis LED Outdoor Series with broader light coverage brings its superior performance, cost and energy savings to even more types of harsh environments.”

He added: “We are committed to constant enhancement of our robust portfolio of efficient and effective emergency notification systems to help keep people and places protected.”

He said: “This enhancement dramatically expands our offering for extreme applications.”

Additional audio alarm options and configuration flexibility

Edwards has also introduced new wall-mounted, low frequency horns and horn-strobes as part of the Genesis LED series.

The company said these are tailored for sleeping areas and use a 520 Hz tone to improve occupant alertness.

All devices are field-configurable, with selectable light, sound, and voltage settings for ceiling or wall mounting.

According to Edwards, the speaker models exceed ‘Excellent’ speech intelligibility thresholds under the STI rating system.

To simplify installation, a room-side wiring plate has been added for ease of access during fitting and servicing.

Edwards launches outdoor fire alarm strobes for harsh environments: Summary

Edwards has expanded its Genesis LED fire alarm range to include new outdoor models.

The new devices include strobes and speaker-strobes with extended light output up to 115 candela.

Edwards stated the appliances are suitable for wash-down areas and large open spaces.

They are designed with a constant current draw to reduce voltage drop calculations.

The products are backwards compatible with previous Genesis models.

They have an operating temperature range from -40°F to 151°F.

Edwards confirmed the devices meet NEMA 4X and IP66 standards.

They also exceed these standards with an IP67 test rating.

Target environments include car parks, walk-in freezers, and manufacturing sites.

Jon Hughes, VP of Product Management, said the update improves coverage in extreme environments.

The company also added low-frequency horns for sleeping area compliance.

All devices support field configuration for light, audio, and voltage.

A room-side wiring plate has been added to aid installation.

The shift begins at the socket: How Ci Global is rethinking electrical fire safety

Ci Global Founder Anthony D. Parfitt discusses certified smart sockets that identify faults, shut off power, and reduce the risk of fatal electrical fires

Trusting traditional fire detection systems proved catastrophic at Grenfell Tower. It’s time to rethink fire safety – not as a response, but as a prevention.

The Grenfell Tower fire was a wake-up call to the world.

A devastating reminder that waiting for a fire to start before taking action is not just outdated – it’s deadly. Seventy-two lives were lost. Lives that should never have been in danger.

The fire began with a fridge-freezer. A standard appliance in a standard flat. Used exactly as intended. But somewhere, deep inside, a hidden fault had developed – quietly, invisibly.

And by the time anyone knew something was wrong, it was already too late. No one expected it. No one could have seen it coming.

Yes, the Grenfell Inquiry uncovered a series of failures – from the flammable cladding and ‘stay put’ policy, to regulatory oversights and corporate negligence.

But let’s be clear: nothing in the current system, no alarm, no regulation and none of the 58 recommendations now accepted by the UK government, would have stopped that fridge-freezer from igniting. Because everything we do today starts after a fire has already begun.

This article explores how modern technology can stop deadly electrical fires before they start – by tackling the risk directly at its most common source: the socket.

Why are we still reacting – when we could be preventing?

Conventional detection systems are built to alert people after a fire has already started – but they do nothing to stop it from starting in the first place.

Smoke alarms, fire doors, evacuation plans – all vital. But all reactive. None of them intervene at the source.

This is the fatal flaw not just in Grenfell and the UK, but across fire safety worldwide: almost every system waits for ignition. And once there’s a fire, the damage is already done.

Electrical faults remain one of the most common causes of fires – in homes, hotels, hospitals, schools. Often starting silently, at night, when people are asleep. And too often, by the time anyone knows, it’s already spreading. This isn’t good enough. Not when we have the technology to do better.

The overlooked risk hiding in plain sight

The insidious nature of electrical fires lies in their everyday origin. Everyday appliances. Chargers. Extension cords. Even the fixed wiring within buildings. All of it has the potential to ignite.

According to UK Fire and Rescue Services data, one in four fires are caused by electrical faults – with over 5,800 of these recorded in 2022/2023 alone.

And while it’s right to raise concerns about substandard or counterfeit products, the truth is that even trusted, reputable appliances can develop faults over time.

As the saying goes: good white goods go bad. The real issue? There’s no way to know when things start to go wrong.

Most electrical safety systems today only kick in after a major fault – like a short circuit or overcurrent – tripping a breaker or blowing a fuse.

But many fires don’t start with an obvious failure. They start with something much smaller – localised overheating in a plug, a damaged cable, or a degrading component.

These threats are silent, invisible and completely undetectable by conventional means. And they can come from anywhere – a brand-new charger, a high-end appliance, or a well-worn extension lead that’s been daisy-chained under a rug. It’s a fire waiting to happen.

And yet, the one place we could be monitoring most effectively – the socket – is still treated as nothing more than a passive conduit.

Electrical sockets, despite being central to our homes and workplaces, haven’t meaningfully changed in over a century.

They were never designed to detect danger. They were built to deliver power – not to question what they’re powering, or whether it’s safe.

This is the fundamental gap in modern electrical fire safety. We monitor smoke and flames. We sound alarms. But we do almost nothing to stop the risk where it begins – at the socket itself.

Tragedy can lead to transformation

The sad truth is, real safety reform often comes after disaster. The King’s Cross fire in 1987 – sparked by a dropped match – led to a total overhaul of safety across the London Underground, including the removal of all wooden escalators.

The Bradford City Stadium fire in 1985 – where a small blaze under a wooden stand spread in seconds and killed 56 people – led to bans on timber grandstands in UK football grounds.

Both were horrific. Both were preventable. And both forced the nation to act. Grenfell must be the same. Not just a moment of mourning – but a turning point.

For Anthony D. Parfitt, Founder and Chairman of Ci Global, the journey started years earlier, with a burst pipe and an electrical short in his own home. A near-miss. A warning.

It pushed him to tinker – building an early prototype for a water leak detection system with auto shut-off.

But at the time, it was just a side project. His day job involved pioneering safety systems for the UK Home Office, DVLA and Network Rail – including the UK’s first Automatic Number Plate Recognition (ANPR) system.

Then Grenfell happened.

An electrical fire in a common appliance had taken 72 lives – and exposed a devastating truth: the system wasn’t broken.

There was no system. At least not one designed to prevent electrical fires before they start. So he made a decision.

He revisited his prototype. Tore it apart. Reimagined what a socket could do. And then built something nobody else had dared to try: An electrical fire prevention safety smart socket.

One that could detect faults before they become flames. One that could monitor heat, load and anomalies at the exact point where risk begins – and shut off power before disaster strikes.

It was a radical idea. But Anthony knew it had to happen. Because no one else was going to do it.

Redefining fire safety – from detection to prevention

Anthony knew that preventing another Grenfell would require more than detection and suppression. By the time a smoke alarm sounds or a sprinkler kicks in, the fire is already underway.

We need to act sooner. Much sooner.

That means going straight to the source: the socket. The very point where appliances draw power – and where the majority of electrical fire risks begin.

Through Ci Global, Anthony and his team developed a fully certified, patented safety socket that continuously monitors for the earliest warning signs of fire risk. That includes: dangerous overheating in plugs or appliances, circuit overloads,      ring main faults and gradual faults that develop silently over time

By analysing these patterns – including through AI-powered real-time monitoring – Ci’s technology can detect anomalies that indicate a developing electrical fault. And crucially, it can shut off power before the conditions for ignition are ever reached.

This is what Ci calls the ‘fire prevention window’: the critical moment between a fault forming and a fire starting. Where Ci acts is right at the start – before things even start to get hot.

With Ci One and Ci Max, safety smart sockets become an active line of defence, cutting power before a fire can ignite – not after. But Ci didn’t stop there.

This intelligent prevention technology now extends beyond wall sockets to include smart extension leads, creating a wider ecosystem of protection at the socket level.

The sockets also include sensors for other hazards – such as water leaks, which can pose a serious fire risk if they reach electrical points and gas leaks, which can lead to catastrophic explosions.

These systems can be configured to automatically shut off valves remotely, stopping danger in its tracks.

And it goes even further.

These capabilities can be embedded directly into appliances – like white goods or electric vehicle (EV) chargers – during manufacturing.

Internal sensors monitor for component overheating or malfunction.

If something goes wrong, power is cut from within the device itself.

Built-in ‘black box’ data logging also gives manufacturers valuable diagnostics: insight into warranty claims, targeted recalls, product improvements and – in the event of a fire – proof that their product wasn’t to blame.

Ci’s safety smart socket technology protects lives, protects reputations and sets a new standard for how electrical safety should work.

Prevention not reaction

If we’re serious about reducing the risk of electrical fires – in homes, workplaces and public buildings – we must stop relying on systems that only act once it’s already too late.

That shift begins at the socket.

By embedding smart, self-monitoring technology directly within the socket, we can detect dangerous conditions – like appliance overheating, faulty wiring, or circuit overloads – and cut power before ignition ever occurs.

These are not just smarter sockets.

They’re self-protecting guardians – turning the most overlooked component in fire safety into the first and most effective line of defence.

Setting a new global standard for fire safety means targeting the problem at its source – not waiting for symptoms to surface.

And thankfully, that shift is already underway.

Ci Global’s certified safety smart sockets – designed to stop electrical fires before they start – are already available in the UK, UAE and Saudi Arabia, with more countries coming online soon.

Because when it comes to fire safety, prevention isn’t optional.

It’s the only standard that makes sense. Pre-orders are open now.

To register your interest, visit: https://ci.global/contact/

This was originally published in the July 2025 Edition of International Fire & Safety Journal. To read your FREE copy, click here. 

Hyfire Taurus fire system installed at leading UK museum

Museum remains open during overnight Hyfire installation

Hyfire has reported the installation of its Taurus wireless fire detection system at a prominent UK museum, completed without full daytime closures.

According to Hyfire, the building received more than five million visitors in 2023, making it the most visited attraction in the UK.

Due to this high footfall, the installation was carried out overnight to prevent disruption to daily operations and public access.

Hyfire partnered with Square Mile Fire and Security for the project, with the installation process beginning each evening at 11 PM and continuing overnight.

Hyfire confirmed that the museum remained open throughout the works, with only one section temporarily closed off during daytime hours for non-disruptive tasks.

Safety planning around irreplaceable artefacts

The installation took place around historically valuable items and structures, some of which are over a thousand years old.

To manage risk, Hyfire and Square Mile Fire and Security used vibration sensors positioned near sensitive artefacts.

Hyfire Regional Sales Manager Gemma Hand said: “The museum remained open throughout the installation. One area was temporarily closed off to allow work to be carried out during the day, but no noisy tasks were performed while the museum was open.”

Gemma Hand added: “If the sensors detected any vibration, work would immediately stop, allowing museum staff to inspect the artifact before we could proceed.”

The approach ensured that heritage preservation measures were in place alongside safety upgrades.

Wireless system supports operational continuity

The Taurus system from Hyfire was selected due to its wireless design, which allowed minimal disruption to building infrastructure.

The wireless approach meant that major construction works were avoided, preserving the building’s structure and allowing installation to occur discreetly.

Hyfire stated that the system’s long battery life – up to 10 years for detectors and call points – also reduces maintenance frequency.

This was cited as an operational benefit for a venue that must limit access to restricted areas and historic zones.

The hybrid nature of the system allowed a balance between technological performance and protection of the museum’s interior.

Installation adapted to museum’s daily schedule

According to Hyfire, overnight works were essential to maintain public access during peak hours.

The work schedule was adjusted to begin late at night, allowing daytime programming, exhibitions, and visitor tours to continue without interruption.

Hyfire confirmed that no noisy tasks were undertaken while the museum was open, and access routes were maintained.

Only one zone of the museum was closed off at any time to accommodate phased installation.

This project model could apply to other busy heritage or public buildings needing similar upgrades.

Hybrid fire system designed for heritage environments

Hyfire’s Taurus system is a hybrid solution that combines wireless detection with standard fire safety infrastructure.

The company explained that this makes it suitable for protected environments where installation of traditional wiring is not possible.

Its use in this museum was chosen to minimise physical disruption and maintain historical integrity.

The Taurus platform supports detectors, call points, and control panels integrated into a broader safety network.

According to Hyfire, this project demonstrates the viability of hybrid systems in culturally sensitive locations.

Hyfire Taurus fire system installed at leading UK museum: Summary

Hyfire installed its Taurus wireless fire detection system at a major UK museum.

The museum was the UK’s most visited attraction in 2023 with over five million visitors.

The installation was completed without fully closing the museum during operating hours.

Works were conducted overnight by Square Mile Fire and Security starting at 11 PM.

Hyfire Regional Sales Manager Gemma Hand oversaw the project.

Sensitive artefacts were protected by vibration sensors that paused work if triggered.

Only one section of the museum was closed at any time for limited daytime work.

The Taurus system’s wireless design allowed preservation of the historic building.

Detectors and call points have a battery life of up to 10 years.

Hyfire stated that the hybrid system is suitable for heritage settings.

Fire safety technology partnership targets UK social housing

Partnership supports real-time fire safety monitoring

Vericon Systems has announced a partnership with Hispec to support continuous fire and carbon monoxide safety monitoring in UK social housing.

According to Vericon Systems, the combined system integrates Hispec detection devices with Vericon’s remote monitoring platform.

The company said this approach replaces routine inspections with real-time alerts, status updates, and digital reports across a housing portfolio.

Vericon Systems stated that the system is designed to assist landlords and housing providers in meeting compliance duties while offering residents ongoing protection between inspection dates.

It added that this new model aims to reduce manual checks and reactive maintenance by identifying problems as they arise.

Combined platform delivers real-time alerts and reports

Vericon Systems explained that the integration allows housing providers to monitor fire and CO risks remotely, using a single dashboard for all connected devices.

The platform issues instant alerts when devices require attention and provides a live overview of portfolio-wide compliance.

The company stated that this setup can support predictive maintenance, allowing landlords to address risks before faults lead to emergencies.

According to Vericon Systems, automated reporting features help streamline administrative tasks, while digital records assist with audit preparation.

It added that the system also improves record accuracy compared to paper-based inspection logs.

Focus shifts from compliance to continuous safety

Vericon Systems reported that traditional methods in social housing safety often rely on routine inspections and reactive repairs.

The company said that expectations and legal duties have increased, prompting a move toward proactive digital safety systems.

It stated that the partnership with Hispec offers an alternative by enabling continuous monitoring with minimal manual input.

Vericon Systems explained that the system aims to help landlords meet legal requirements more efficiently, while also improving outcomes for tenants.

It said this is especially relevant in high-density housing environments where delayed fault detection can have widespread consequences.

Industry view on the importance of integration

Bernard Cook, Managing Director at Vericon Systems, said the agreement was intended to raise fire safety standards in the housing sector.

Cook said: “Our partnership with Hispec represents a new era in proactive fire safety for social housing. By integrating Hispec’s cutting-edge detection technology with our intelligent monitoring platform, we’re empowering housing providers to move beyond basic compliance—delivering real-time insights, instant alerts, and greater peace of mind for both landlords and residents. Together, we’re committed to setting a higher standard for safety and wellbeing across the sector.”

Cook added: “Our goal is to simplify management, reduce risk, and increase tenant protection.”

Cook said the combined solution aligns with increasing regulatory expectations across the sector.

Housing providers see operational benefit

Vericon Systems stated that landlords using the system may reduce time spent on on-site inspections and paperwork.

The company added that the platform’s live dashboard allows facilities teams to prioritise resources based on system alerts rather than fixed schedules.

It explained that this can support better allocation of maintenance teams, quicker fault resolution, and higher tenant satisfaction.

According to the company, early adopters have reported increased efficiency and fewer service requests related to alarm faults.

Vericon Systems stated that the system is designed to scale across housing portfolios of varying sizes.

Fire safety technology partnership targets UK social housing: Summary

Vericon Systems has partnered with Hispec to support fire and CO safety in UK social housing.

The combined system integrates Hispec detectors with Vericon’s remote monitoring platform.

It provides instant alerts, digital records, and real-time portfolio views.

Vericon Systems stated that this reduces reliance on manual checks and routine inspections.

The company said the system helps housing providers identify risks as they arise.

Bernard Cook, Managing Director at Vericon Systems, said the goal is to move beyond compliance.

Cook said the partnership enables better oversight and tenant protection.

Vericon Systems added that predictive analytics can support preventative maintenance.

The system includes automated reporting and a unified dashboard.

It is designed to operate continuously, including between scheduled inspections.

The company stated that the platform can help landlords meet regulatory expectations.

Hyfire wireless fire system deployed at South London care home

Fire system upgrade enhances safety at Burrell Mead

Burrell Mead Residential Home in South London has completed a full upgrade of its fire system using 90 wireless devices from Hyfire.

According to Hyfire, the system was installed in partnership with Bickley Fire & Security Specialists Ltd to replace a previous hardwired alarm setup.

The installation forms part of a wider safety improvement programme at the not-for-profit care home, which was established by members of the West Croydon Baptist Church in 1964.

The company stated that the new fire system uses Taurus wireless devices and is supported by the TauREX software, designed to simplify configuration and maintenance.

Hyfire explained that the upgrade was designed to protect vulnerable residents while minimising disruption to the care home’s daily operations.

Community care home installs wireless fire devices

Hyfire reported that Burrell Mead is home to elderly residents seeking both medical and spiritual care, and that uninterrupted service delivery was a key factor in planning the upgrade.

The care home operates on a not-for-profit basis and continues to serve members of the local community who require long-term residential support.

The company said the Taurus system was chosen due to its ability to deliver performance equivalent to wired systems while offering a faster installation process.

Hyfire added that its devices are well suited to settings where residents may be sensitive to disturbance or relocation during upgrade works.

It noted that the use of wireless technology helped limit both physical disruption and time on site.

Installation carried out with minimal disruption

Brett Boyd, Regional Sales Manager at Hyfire, said: “When dealing with such a facility, where many residents may be elderly or very ill, it was crucial that the installation was quick and did not disrupt day-to-day operations nor limit residents in any way.”

Hyfire confirmed that its partnership with Bickley Fire & Security Specialists Ltd was key to completing the upgrade efficiently.

The company added that the installation process required no structural alterations and involved minimal changes to the building layout.

The devices were installed to provide full coverage of the premises and integrate with other building systems.

Hyfire stated that wireless installations are especially suited to older properties where access to infrastructure may be restricted.

Technology and tools supporting the upgrade

According to Hyfire, the Taurus system includes a range of tools intended to simplify design, installation and ongoing maintenance.

The company said its TauREX software supports a graphical interface that helps engineers design tailored fire protection systems for different building types.

It reported that the software also includes EasyScan and ConfigWizard tools, which automate aspects of the setup and help engineers identify appropriate configurations.

Hyfire stated that these features support accuracy in system design and reduce installation time.

The manufacturer added that this approach ensures more reliable outcomes and improved service life across installations.

Wireless systems aligned with care sector needs

Hyfire stated that wireless fire systems are particularly relevant in residential and care home settings where vulnerable individuals must be protected without introducing unnecessary risk.

The company explained that wireless solutions offer flexible deployment and lower installation impact, which are critical in healthcare environments.

It noted that such systems are increasingly being adopted across the care sector in response to operational constraints and regulatory requirements.

Hyfire said the outcome at Burrell Mead demonstrates how wireless technology can be applied in older buildings with limited scope for rewiring or structural intervention.

It added that wireless systems are capable of meeting the same safety objectives as wired counterparts when designed and installed to specification.

Wireless fire system deployed at South London care home: Summary

Burrell Mead Residential Home in South London has installed a new wireless fire system.

The upgrade uses 90 Taurus wireless devices from Hyfire.

The installation was carried out by Bickley Fire & Security Specialists Ltd.

Hyfire said the system replaces an older hardwired alarm.

The company reported that the new devices were chosen to minimise disruption.

According to Hyfire, installation time and physical impact were both reduced.

Brett Boyd, Regional Sales Manager at Hyfire, said the work was completed without disturbing residents.

Hyfire stated that its TauREX software supports customised system configuration.

Tools such as EasyScan and ConfigWizard were used in the process.

The company said the system meets performance levels expected of wired alarms.

Hyfire reported that the system is suitable for care homes with access limitations.

The installation was completed to improve resident safety and meet compliance needs.

Fighting fire with light: Bandweaver talks early tunnel fire detection

How fibre optic sensing from Bandweaver offers real-time heat detection in tunnels, helping operators act early before smoke or flames threaten life and structural integrity

Imagine you’re driving through a long tunnel when traffic starts to slow and suddenly, smoke fills the air.

The tunnel becomes a trap, heat intensifying as toxic gases replace oxygen.

Will emergency responders reach you in time?

Tunnel fires can reach 1,000°C in under five minutes, hot enough to melt vehicles.

With limited exits, toxic gases, and unpredictable smoke, detection delay can be fatal.

This leads us to question: are fire detection systems reacting fast enough?

Richard Kluth, Managing Director at Bandweaver Technologies, offers an answer, exploring the unique perils of tunnel fires, the shortcomings of conventional detection systems, and the life-saving potential of cutting-edge detection systems.

Specialising in fibre optic monitoring systems for both fire and security, Bandweaver’s expertise has played a key role in safeguarding infrastructure across the globe with fast detection systems.

The danger of tunnel fires

Tunnel fires are not as rare as you might imagine, in London alone the Fire Brigade attended 458 tunnel fires over the past decade.

Between 2012 and 2023, emergency services responded to 439 tunnel fires across Switzerland, Germany, and Austria, most involving vehicles, with 183 injuries mainly from smoke inhalation.

Major incidents like the Mont Blanc road tunnel fire of 1999 that left 39 dead, the Tauern Tunnel fire on May 29th 1999 that left 12 dead and over 40 injured, and the Gotthard road tunnel fire in 2001 that burned for 37 hours and killed 11 people, have brought tunnel fire safety into sharp focus.

Tunnel fires are especially deadly due to their confined structure and intense heat build-up.

The heat release rate of vehicles in enclosed spaces is up to four times higher than in open air, compromising structural integrity.

Poor ventilation can cause smoke backlayering, where hot gases travel against airflow, filling escape routes and hindering rescue efforts.

Fires also release toxic gases like carbon monoxide and hydrogen cyanide, reducing visibility and increasing suffocation risk.

Risks of flashover and the trench effect (where tunnel geometry channels heat and smoke) accelerate fire spread.

Combined with limited exits and access for emergency crews, these factors make tunnel fires complex and hazardous to control.

When fire strikes, time is of the essence

Traditional fire detection systems can take 2-5 minutes to trigger an alarm; when comparing this to a timeline of fire escalation in a tunnel, the results are concerning:

1 Minute: A vehicle catches fire, building up heat without triggering an alarm.

3 Minutes: Thick clouds of smoke spread, making evacuation difficult.

5 Minutes: Flames engulf the tunnel; visibility drops to zero, and the fatalities are certain.

What if fire detection had happened at 30 seconds?

The Gleinalm Tunnel fire of 2018 is a prime example.

Advanced safety systems enabled a swift emergency response – within seconds, the system alerted operators to the fire, enabling immediate response.

Emergency services evacuated the tunnel safely, with only 3 people suffering from smoke inhalation.

Whilst the tunnel still needed repairs to strengthen sections of the tunnel, the damage was reduced and there was an absence of fatalities.

The shortcomings of traditional fire detection

Traditional fire detection systems often fall short in tunnel fires.

In the 2014 Yanhou Tunnel fire in Shanxi Province, China, no properly functioning smoke detectors were in place, so no alarms were triggered.

The fire spread rapidly, causing extensive damage, and claimed 40 lives.

Smoke detectors allow fires to escalate before alerting emergency services, as they rely on smoke physically reaching the sensor, an issue made worse by back layering, where smoke moves unpredictably against airflow.

These systems are also prone to false alarms and failures in harsh tunnel environments.

“They get clogged up and dirty,” explains Richard Kluth, Managing Director at Bandweaver.

“Beams, cameras, aspirating detectors – all these systems struggle where there’s dust or fumes.”

And it’s not just dust.

Exhaust emissions, humidity, and airborne particles can compromise system accuracy or trigger unnecessary shutdowns.

Meanwhile, systems relying on flame visibility or thermal imaging activate only once a fire has already reached a critical stage.

An effective solution – smarter detection, sooner

To combat the rapid escalation of tunnel fires, early detection is critical.

That’s where fibre optic linear heat detection, like Bandweaver’s FireLaser system, stands out.

Unlike traditional systems that rely on smoke, flame visibility or air sampling, fibre optic sensing monitors temperature changes continuously along the length of the cable without needing in-field power or relying on airflow or visibility.

“It just senses heat, and it senses it fast,” explains Richard Kluth, Managing Director at Bandweaver.

“It’s a single unit and a cable, no in-field comms, no maintenance. You install it, and 15 years later it’s still working.”

FireLaser detects the earliest stages of a fire within seconds, with metre-level accuracy, even in harsh environments that disable conventional detectors.

But more importantly, says Kluth, “It doesn’t just spot heat; it identifies whether the threat is growing rapidly or rising abnormally, even before flames appear.

“We’ve seen how impactful this is in the real world.”

He recalls one instance in Turkey: “It had only risen by seven degrees, but the system flagged it.

“When they checked, the bearing was glowing red. If they hadn’t shut it down, it would have been a fire.

“Tens of millions in potential damage was avoided.”

Bandweaver has now supplied FireLaser for 250 tunnel projects and installed over 1,000 systems in road and rail tunnels.

In Italy’s Santa Lucia tunnel, FireLaser was the only system precise enough to trigger a single sprinkler over a 10-metre zone.

“Traditional systems might activate 20 or 30 sprinklers,” says Kluth.

“We only trigger one. That’s better for safety, but also for minimising damage.”

Changing times and technology

Despite its proven performance and long-standing presence in critical infrastructure, fibre optic remains underutilised in much of the fire safety sector, largely due to lack of awareness, outdated regulations, and mindset, not evidence.

Bandweaver estimates fire detection now accounts for 30–50% of its business.

While growth in tunnel projects remains steady, often tied to new construction or system upgrades, the technology is now standard in most new tunnels over 1 kilometre.

“Adoption often follows a failure, incident, or regulatory change.

But in markets like the UK, where regulations haven’t evolved, uptake lags,” says Kluth, highlighting two major car park fires[1], where no modern detection systems were in place; “In the UK, standards for car parks still date back to 1968.

Cars today are larger, closer together, and contain much higher fire loads.

Originally the guidance around car park design was based on the assumption that the fire wouldn’t spread beyond one or two vehicles.

The fire loads have changed; our standards haven’t.”

This regulatory standstill challenges systems like FireLaser, which often exceed current requirements but fall outside legacy approval frameworks.

Still, adoption is growing, driven by forward-thinking consultants and operators who recognise the value of fibre optic LHD.

Bandweaver’s partners play a crucial role, guiding clients toward risk-based, performance-driven solutions that bridge the gap between compliance and best practice.

“The biggest barrier is that people just haven’t looked at Fiber optic LHD in years.

When they do, they realise it’s cheaper, smarter and easier to use than it used to be,” observed Kluth.

As pressure mounts to improve fire safety, the opportunity for Bandweaver and its partners to lead that change has never been greater.

A smarter, safer future

Perhaps the biggest shift in fire detection is mindset.

It’s no longer enough to simply know a fire has started; operators need to know exactly where, how fast, and how severely it’s spreading.

According to Richard Kluth, that’s where fibre optic LHD transforms the game.

“Compared to conventional detectors, which are basically on-off switches, this is intelligent infrastructure,” he explains.

“It tells you where the fire is, how hot it is, how it’s spreading – and you can use that data to control ventilation, lighting and suppression.”

As regulations begin to catch up with modern risks, Kluth urges decision-makers to rethink outdated assumptions, especially around cost.

“Just averting one incident pays for the system 100 times over, if we look at the Kings Dock Car Park in Liverpool the damage was £20 million. Early detection could have prevented that” he says.

Looking ahead, Kluth sees fire detection becoming increasingly integrated with AI and smart automation.

“It’s really about combining technologies,” he adds.

“And the artificial intelligence behind that is only going to keep growing.

“Automatic firefighting will become much more focused and effective.

“People will start to realise that with this level of automation, the decision-making and detection are just so much better than they used to be.

“However, there has to be investment and this still isn’t happening.

“We can see with Luton Airport car park, which was built as recently as 2019 but was designed without modern detection or suppression systems.”


[1] Kings Dock Fire Liverpool – 31-12-2017 & Luton Airport 10-10-2023

This was originally published in the July 2025 Edition of International Fire & Safety Journal. To read your FREE copy, click here. 

Kentec hydrogen detector launched for BESS fire safety

New gas detector enhances BESS fire detection

Kentec Electronics has released a new flammable gas detector, K-Detect-iON, designed to provide early hydrogen detection for Battery Energy Storage System (BESS) fire protection.

According to Kentec Electronics, the detector operates without calibration for at least ten years.

The company stated that the K-Detect-iON integrates directly with its Sigma ZXT extinguishing panels and provides live monitoring of hydrogen gas levels in remote energy storage environments.

Kentec said the detector is intended to detect hydrogen gas at the earliest stage of battery malfunction, helping reduce the risk of fire by triggering ventilation and suppression systems.

The company added that this early-stage monitoring is particularly relevant given the typical progression of BESS fire events from cell failure to gas release and ignition.

System compatibility and certification details

Kentec Electronics stated that K-Detect-iON is designed to function consistently across both EN and UL regulatory environments.

The company reported that the Sigma ZXT (EN) version complies with EN54 Part 2, EN54 Part 4 and EN12094 Part 1.

It also confirmed that the Sigma ZXT (UL) version is pending certification to UL 864 (10th Edition), FM Standards and NFPA 855.

According to Kentec, this multi-standard compatibility means the same core technology can be used across international installations without modification.

The integration of K-Detect-iON into the Sigma ZXT platform allows users to configure site-specific responses to hydrogen detection events.

Detector performance and environmental resilience

Kentec stated that the K-Detect-iON covers a 0–100% Lower Explosive Limit (LEL) range for hydrogen gas.

The detector is designed to identify hydrogen release at early stages, well before critical levels are reached.

It also supports a wide operating temperature range from -30°C to 75°C, with a tolerance of ±0.48°C.

The company said this performance helps minimise false alarms in challenging site conditions.

Kentec also noted that the unit is designed to respond rapidly to gas presence, allowing preventative action before ignition risk escalates.

System automation and suppression integration

When used with the Sigma ZXT panel, Kentec stated that K-Detect-iON can activate extraction vents in energy storage units.

This action removes hydrogen from the system and reduces the possibility of ignition.

Kentec explained that depending on how the system is configured, the detector can also trigger fire suppression sequences automatically.

This integrated functionality is intended to streamline the entire gas detection and response process within a single platform.

The company highlighted that early detection and automatic control are especially important for remote BESS sites where manual intervention may be delayed.

Technical specifications and sensor features

Kentec Electronics confirmed that K-Detect-iON supports a VOC detection range from 0 to 500 VOC.

The device includes three programmable relay outputs.

It also supports both single and multi-sensor configurations for scalable deployment.

The detector offers Modbus RTU communication via RS485, according to the manufacturer.

Kentec stated that these features make it adaptable to a range of energy storage system layouts.

Kentec hydrogen detector launched for BESS fire safety: Summary

Kentec Electronics has released the K-Detect-iON flammable gas detector for Battery Energy Storage System protection.

The detector provides calibration-free hydrogen detection for a minimum of ten years.

It integrates with Kentec’s Sigma ZXT extinguishing panels.

K-Detect-iON is compatible with both EN and UL regulatory environments.

The EN version meets EN54 Part 2, EN54 Part 4 and EN12094 Part 1.

The UL version is pending UL 864, FM and NFPA 855 certification.

The detector operates across a 0–100% LEL range.

It can automatically activate ventilation and suppression systems.

K-Detect-iON supports operation from -30°C to 75°C.

It offers three programmable relays and a 0–500 VOC range.

Modbus RTU communication is available via RS485.

Honeywell acquires Li-ion Tamer battery fire detection technology

Honeywell acquires Li-ion Tamer business in battery fire safety deal

Honeywell has announced the acquisition of the Li-ion Tamer fire detection business from Nexceris.

According to Honeywell, the acquisition strengthens its Building Automation segment and follows a five-year collaboration with Nexceris focused on lithium-ion battery safety.

The Li-ion Tamer technology detects off-gas emissions that typically precede thermal runaway, offering early warning for battery fires.

Honeywell said the technology will be integrated into its existing fire detection and life safety portfolio.

The company added that the transaction is expected to be immediately accretive to its financial results.

Off-gas sensors provide early thermal runaway detection

The Li-ion Tamer system is designed to detect the release of gases that occur before a lithium-ion battery experiences thermal runaway.

Honeywell stated that this early warning capability can provide facilities with up to 30 minutes of lead time before a fire starts, allowing for proactive safety measures.

The company reported that this detection method is already used by battery manufacturers to protect critical infrastructure.

It said the technology applies across sectors using battery systems, including renewable energy, electric vehicle infrastructure, and data centres.

Honeywell added that as global demand for lithium-ion batteries grows, safety mechanisms such as off-gas detection will become more important in preventing large-scale incidents.

Integration with Honeywell Building Automation

The Li-ion Tamer product line will be incorporated into Honeywell’s Building Automation unit.

According to the company, this move enables customers to combine early gas detection with existing fire and smoke detection technologies.

Honeywell stated that its current portfolio includes VESDA, which provides early smoke detection, and Connected Life Safety Services, which supports digital monitoring via the Honeywell Forge IoT Platform.

The company explained that combining these technologies will support the management of fire detection systems through enhanced connectivity, data collection, and compliance tools.

It added that the Li-ion Tamer system holds more than 30 global patents.

Honeywell outlines broader acquisition strategy

Honeywell noted that the Li-ion Tamer deal aligns with its broader portfolio strategy.

Since December 2023, the company has announced a series of acquisitions aimed at expanding its automation, energy, and industrial safety offerings.

Honeywell stated that it has completed or announced acquisitions valued at $13.5 billion, including Civitanavi Systems, CAES Systems, and the LNG business from Air Products.

In the same period, the company divested its Personal Protective Equipment business, which was sold to Protective Industrial Products.

Honeywell added that it is progressing with its plan to spin off its Aerospace Technologies and Solstice Advanced Materials units, creating three distinct publicly listed companies.

Honeywell emphasises fire detection growth in energy storage

Billal Hammoud, President and CEO of Honeywell’s Building Automation segment, said: “Li-ion Tamer’s early warning technology has been revolutionary for our customers and partners over the last five years.

“It provides detection of battery off-gassing before a thermal runaway occurs.

“As lithium-ion battery use grows rapidly across data centres, EV infrastructure, and grid-scale energy storage, the risk of fire is increasing in parallel.

“Building on our legacy partnership, the acquisition of this product suite will position Honeywell as a leader in early gas detection and battery fire prevention.

“We expect this tuck-in acquisition to further bolster growth of our fire detection business.”

Honeywell acquires Li-ion Tamer battery fire detection technology: Summary

Honeywell has acquired the Li-ion Tamer business from Nexceris.

The technology provides off-gas detection for lithium-ion battery systems.

It is used to identify early signs of thermal runaway before a fire starts.

The system offers up to 30 minutes of warning before ignition.

Honeywell stated the acquisition builds on a five-year partnership with Nexceris.

The product line will join Honeywell’s Building Automation segment.

Honeywell’s fire detection range also includes VESDA and Connected Life Safety Services.

The Li-ion Tamer system holds over 30 global patents.

The deal is expected to be immediately accretive to Honeywell’s financials.

Honeywell is continuing a broader portfolio strategy that includes $13.5 billion in acquisitions.

The company recently sold its Personal Protective Equipment business.

It is also progressing with plans to spin off two major business units.

Greece launches wildfire satellite headquarters with OroraTech

Athens site to support national wildfire satellite system

OroraTech has announced the opening of a new regional headquarters in Athens to support the development of Greece’s national wildfire monitoring system.

According to OroraTech, the move forms part of its €20 million contract to supply Greece with thermal imaging satellite coverage and data services for wildfire detection and response.

The company reported that the new Athens office will serve as a base for Greek technical operations, hiring, and coordination with national agencies and universities.

The launch event was attended by Greece’s Minister of Digital Governance, Dimitris Papastergiou, along with representatives from the European Space Agency, the Hellenic Fire Service, and the Hellenic Space Center.

OroraTech stated that the investment reflects its long-term operational commitment to Greece’s space, climate and emergency response sectors.

Greek minister highlights satellite role in emergency response

Minister of Digital Governance Dimitris Papastergiou said the Athens facility aligns with national ambitions to modernise public services using space-based systems.

Dimitris Papastergiou said: “Greece is leading the way in adopting next-generation technology to address the climate crisis.”

He said: “When I came to the Ministry I took the initiative of changing the whole space policy of Greece.”

He added: “We decided to do something new, with ESA’s support, and today thanks to OroraTech, among the other companies implementing the national space program, we are finally ready to launch our satellites, giving our emergency services an unprecedented ability to detect and respond to wildfires in real time, protecting lives, forests, and communities across our nation.”

OroraTech’s wildfire system includes four thermal satellites and supporting data infrastructure, designed to provide real-time fire detection and alerting services across Greece.

The Ministry of Digital Governance confirmed the system is being developed in coordination with ESA and the Hellenic Space Center.

Local hiring and satellite innovation at core of strategy

The company explained that its local operations are essential to delivering the Greek wildfire monitoring system.

Axel Roenneke, Chief Commercial Officer at OroraTech, said: “By investing in local infrastructure and talent, we are not only supporting our wildfire constellation program but building a long-term foundation for Earth Observation innovation in Greece.”

He said: “We are proud to build in Greece a center of excellence for thermal satellite sensing that will be the gateway for our growth in the region.”

OroraTech said its new base will house engineering, software, and data teams focused on building and operating the country’s wildfire alerting network.

The company has also committed to workforce training and plans to develop academic and industry partnerships.

Satellite programme awarded €20 million national contract

The €20 million contract awarded to OroraTech in 2024 was confirmed as part of Greece’s broader investment in climate technology and space infrastructure.

According to OroraTech, the project includes satellite deployment, data integration, and a national alerting platform for use by emergency services.

The Hellenic Space Center and Ministry of Digital Governance are overseeing the programme alongside ESA support.

OroraTech said its contribution involves both satellite manufacturing and ongoing support, with the Athens base serving as its regional headquarters for this work.

The government said the project reflects a national shift towards real-time risk monitoring using satellite tools.

Further expansion planned through local partnerships

The company stated that its work in Greece is part of a wider strategy to expand satellite thermal sensing capabilities across Europe.

OroraTech said its Athens facility will also support research and development partnerships with Greek institutions.

The company plans to invest further in local hiring, software development, and training.

According to OroraTech, the new headquarters will also serve as a base for future regional projects involving wildfire risk and space-based environmental monitoring.

It confirmed ongoing discussions with Greek universities and research centres for joint programmes in satellite and Earth observation technologies.

Greece launches wildfire satellite headquarters with OroraTech: Summary

OroraTech has opened a new regional headquarters in Athens.

The company is delivering a €20 million wildfire satellite system for Greece.

The launch event was attended by government ministers and ESA officials.

Greece’s Minister of Digital Governance said the project would improve national fire response.

The headquarters will support satellite operations, software engineering and data processing.

OroraTech said the base will also coordinate hiring and training in Greece.

Four thermal imaging satellites are being built under the 2024 contract.

The Ministry of Digital Governance and Hellenic Space Center are leading the project.

ESA is supporting the implementation of the national satellite programme.

OroraTech plans to expand its partnerships with Greek academic and research institutions.