Li-ion BESS fire safety standards: how off-gas detection is reshaping battery safety regulations

As lithium-ion Battery Energy Storage System (BESS) deployments accelerate worldwide, Honeywell explains how evolving Li-ion BESS fire safety standards and off-gas detection technologies are transforming thermal runaway prevention and regulatory compliance

The global stationary lithium-ion (Li-ion) Battery Energy Storage System (BESS) market is entering a period of rapid expansion. Driven by net-zero commitments, grid modernisation and surging energy demand linked to AI infrastructure and data centres, the sector is expected to grow at more than 18.5%  annually through 2034, according to Global Market Insights.

But as deployment accelerates, so too does scrutiny of one of the sector’s biggest risks: thermal runaway.

Until recently, the stationary BESS industry operated in a relatively underdeveloped regulatory environment, despite the growing use of large-scale lithium-ion battery systems in utilities, data centres, telecoms and commercial infrastructure.

That began to change in 2020 with the introduction of new off-gas detection technologies capable of identifying electrolyte solvent vapours released before thermal runaway begins.

These systems represented a significant shift in fire safety strategy. Rather than relying solely on conventional fire suppression, ventilation or flammable gas detection, the industry began focusing on earlier intervention.

This technological development has since influenced a wave of new fire safety standards, product certifications and building codes aimed specifically at Li-ion BESS risks.

For fire safety engineers, OEMs, system integrators and BESS operators, understanding this evolving regulatory landscape is now critical to ensuring compliance and future-proofing installations.

Why Li-ion BESS thermal runaway demands a new fire safety approach

Thermal runaway remains the defining fire hazard in lithium-ion battery systems. Before thermal runaway, lithium-ion cells  typically vent trace amounts of electrolyte vapours and volatile organic compounds (VOCs). Detecting these early warning signs can provide a critical intervention window (in some cases up to 30 minutes) to isolate affected batteries, stop charging and activate ventilation.

This shift from reaction to prevention is now being embedded into standards worldwide.

How NFPA and UL standards are reshaping Li-ion BESS fire safety

The US-based National Fire Protection  Association (NFPA), whose standards are widely referenced globally, has been central to this regulatory evolution.

NFPA 855 has become the cornerstone standard for stationary energy storage installations. The updated edition introduced stronger requirements. Notably, Annex G of NFPA 855 explicitly recognises the limitations of Lower Explosion Limit (LEL) sensors and battery voltage monitoring as thermal runaway safeguards.

Instead, the guidance highlights off-gas monitoring as one of the most effective methods for early detection, stating that cell-level detection close to or inside battery modules provides the most reliable pre-thermal-runaway warning.

The standard also notes that early detection can enable electrical isolation of affected cells, potentially stopping overheating before escalation.

NFPA 75 addresses lithium-ion battery fire risks in data centres

The rapid growth of AI and hyperscale data centres has increased reliance on lithium-ion Uninterruptible Power Supplies (UPSs), bringing new fire risks into critical digital infrastructure.

Reflecting this, the 2024 edition of NFPA 75, covering fire protection of information technology equipment, introduced off-gas detection requirements for Li-ion UPS systems for the first time.

The standard specifies that approved systems must monitor for electrolyte vapour released prior to thermal runaway and be installed according to manufacturer instructions.

Importantly, NFPA 75 also clarifies that conventional flammable gas sensors are not suitable substitutes. At early off-gas stages, released vapours occur only in trace concentrations – often at ppm or ppb levels – far below thresholds designed for explosion prevention.This means specialised off-gas detection is necessary.

NFPA 76 strengthens Li-ion battery fire safety for telecom facilities

Similar revisions were made to NFPA 76, which governs telecommunications facilities.

The 2024 update requires approved systems to monitor electrolyte vapour release in battery installations above 20kWh where batteries are grouped within close proximity.

Upon detection, systems must automatically stop charging affected batteries and disconnect them from load.

Again, the standard reinforces that traditional flammable gas sensors are insufficient for thermal  runaway detection.

NFPA 400 ventilation requirements for Li-ion BESS fire safety

The NFPA 400 Hazardous Materials Code (2025) adds another important dimension, requiring exhaust ventilation systems to account for the density of potential vapours released from hazardous materials.

Off-gas detection systems can support compliance by automatically

triggering ventilation when electrolyte vapours are detected.

Li-ion BESS product certification evolves with fire safety standards

Alongside installation standards, product certification requirements are becoming more rigorous. The recently revised UL 2075 Gas and Vapor Detectors and Sensors standard introduces updated requirements covering detector design, construction and performance.

For off-gas detection manufacturers, this creates a clearer pathway for third-party validation of systems designed to detect lithium-ion electrolyte vapours, hydrogen and carbon monoxide.

How insurers are driving higher Li-ion BESS fire safety standards

Insurance providers have also emerged as influential drivers of BESS safety best practice.FM Global’s Property Loss Prevention Data Sheets 5-33, widely referenced by industrial operators and insurers, provide guidance for the design, operation and protection of stationary Li-ion BESSs.

The 2023 revision introduced new recommendations for thermal runaway prevention. Section 2.5.3.3 calls for early intervention systems capable of automatically and electrically isolating affected batteries when cell temperatures exceed thresholds and VOCs indicate pre-thermal[1]runaway venting.

The guidance requires FM approved VOC detectors which the new FM Approvals Standard 6540 fulfils with the establishment of dedicated testing and verification criteria for off-gas detectors certification.

This reflects growing insurer demand for independently verified detection performance in high-risk energy installations.

Why early off-gas detection is becoming central to BESS fire safety

Europe has also been active in formalising guidance around lithium-ion battery fire risks.The UK’s Fire Industry Association (FIA) was among the earliest organisations to formally endorse off-gas detection.

Its 2020 guidance on Li-ion battery fires concluded that systems capable of detecting low-concentration off-gases can provide early warning of impending thermal runaway and trigger shutdown systems to electrically isolate battery racks before escalation.

It also emphasises strategic sensor positioning to account for cooling airflow and the use of reference sensors to reduce false alarms.Meanwhile, the UK Fire Protection Association’s Need to Know Guide RE1 recommends early detection of off-gases or electrolyte vapours for critical and significant BESS installations, linked directly to shutdown and disconnection systems.

Together, these documents signal a broader European shift toward integrating early gas detection into battery fire protection strategies.

How local fire codes are strengthening Li-ion BESS safety requirements

Beyond standards bodies, regional building and fire codes are increasingly codifying these requirements. Among the earliest examples was the 2022 Connecticut State Fire Safety Code, which introduced provisions requiring systems capable of detecting electrolyte vapours at the start of battery venting, automatically shutting down affected BESS racks, transmitting fire alarm signals and activating mechanical ventilation.

Austin City Council’s 2024 Technical Building Codes, effective from July 2025, include similar requirements. For lithium-ion BESS installations above 20kWh, systems must include off-gas detection that both operates independently from the Battery

Management System (BMS) and identifies the affected rack. These provisions suggest local codes may act as regulatory accelerators, particularly in jurisdictions with fast-growing battery deployment.

New research supports off-gas detection for Li-ion BESS safety

Academic and industry research is also reinforcing the importance of early detection. A DNV study found that off-gas detection combined with automated shutdown protocols can prevent thermal runaway progression.

“Importantly, NFPA 75 also clarifies that conventional flammable gas sensors are not suitable substitutes.”

Separately, a 2024 study showed that commercial VOC sensors consistently triggered during cell venting events, even in large battery packs.

Research supported by UL Research Institutes and ESRI is also exploring improved off-gas monitoring in BESS applications, suggesting standards may become more prescriptive.

So, the stationary lithium-ion BESS sector is no longer operating in a regulatory vacuum Across North America and Europe, fire safety standards, insurer requirements and local building codes are converging around a common conclusion: early detection of electrolyte vapours is essential for mitigating thermal runaway risk.

For developers, operators and manufacturers, this means compliance is no longer simply about installing suppression systems or meeting baseline fire codes. It increasingly requires a proactive safety architecture built around prevention, early warning and automated intervention.

Supporting Li-ion BESS compliance through early off-gas detection

Honeywell’s Li-ion Tamer has emerged as one of the best-known systems designed specifically to address the early detection requirements now referenced across multiple standards and guidance documents.

Unlike conventional flammable gas detection, Li-ion Tamer is engineered to identify trace levels of electrolyte vapours released during the earliest stages of battery cell failure, before thermal runaway occurs.

This enables operators to respond earlier through shutdown, electrical isolation and ventilation strategies, helping reduce the risk of escalation. The system has been referenced throughout the industry’s regulatory evolution because it addresses a critical gap in traditional battery fire protection approaches: detecting battery distress before smoke, heat or explosive gas concentrations are present.

As BESS deployments expand into utilities, data centres, telecoms and commercial buildings, early intervention is becoming central to fire safety design. Solutions such as Li-ion Tamer can help operators and system integrators align installations with increasingly specific requirements around off-gas detection, rack-level monitoring and automated response protocols.

With regulatory scrutiny increasing, technologies that support earlier warning and actionable intervention are likely to play a growing role in helping the industry build safer, more resilient energy storage infrastructure

Complii subsidiary Fire Safe Services awarded Honeywell Platinum Partner status

Honeywell Platinum Partner status places Fire Safe Services among the UK’s top Gent fire detection specialists, strengthening delivery across design, installation and support

Fire Safe Services, a specialist fire detection and life safety business and part of Complii, has been awarded Honeywell Platinum Partner status within Honeywell’s partner programme for Gent fire detection systems.

The accreditation places Fire Safe Services among a select group of high-performing Gent system specialists in the UK and recognises the company’s technical competence, service delivery standards and customer support capabilities.

Nick Fenton, managing director at Fire Safe Services, said: “This is a significant milestone for Fire Safe Services and a testament to the dedication and expertise of our entire team.

“For our clients, it means they can have absolute confidence that their fire detection systems are designed, installed, commissioned and supported by a business that Honeywell itself trusts to represent its brand at the very highest level.

“As part of Complii, this achievement further strengthens our collective capability and reinforces our commitment to setting the standard in building compliance.”

Honeywell’s partner programme recognises businesses that demonstrate high standards across technical training, installation quality, commissioning and ongoing support. Platinum Partner status is the programme’s highest tier and is awarded to organisations meeting strict performance criteria.

According to Fire Safe Services, the accreditation will provide clients with manufacturer-recognised expertise, direct access to Honeywell technical specialists and earlier insight into new Gent technologies, firmware updates and design guidance.

The company said the status also supports enhanced compliance assurance through regular Honeywell audits and performance reviews, while helping clients improve long-term system reliability and reduce maintenance burdens through technologies such as Gent Self Test and CLSS integration.

Fire Safe Services recently deployed Gent Self Test technology at University of Worcester as part of a project in the education sector.

The company said the Platinum accreditation would also strengthen confidence in complex and new-build projects across sectors including education, healthcare and commercial real estate, particularly in quality-weighted tender processes.

Comelit-PAC deploys fire alarm system to Genting Casino

Comelit-PAC has revealed that in partnership with installation specialist VTF&S has upgraded the fire alarm system technology at Genting Casino in Westfield Stratford City. 

Genting Casino – Stratford

As the UK’s largest casino floor, including the biggest poker room in the country, Genting Stratford operates around the clock, welcoming visitors day and night. Any upgrade to critical infrastructure needed to be carried out without interrupting the flow of customers and staff, while maintaining strict safety standards throughout.

According to Comelit-PAC, the casino’s previous fire alarm system operated on a closed protocol, which had become increasingly restrictive. Even minor adjustments required specialist call-outs, increasing costs and slowing response times.

Comelit-PAC upgrade

By contrast, Comelit-PAC said its four-loop fire system offers a more flexible, open protocol approach, enabling easier maintenance and reducing long-term operational expense.

The upgrade also ensures improved system reliability and faster fault identification, better suited to the demands of a busy, high-traffic venue.

Beyond the technical and visual improvements, the inclusion of Comelit-PAC’s free cloud connection allows the system to be monitored and supported remotely.

Secure cloud access enables engineers to diagnose and often resolve issues without waiting for a site visit.

VTF&S installation – The installation was carried out by VTF&S while the casino remained fully operational. Working in a live environment required careful planning and coordination, supported by Comelit-PAC’s technical team. The company said that this collaborative approach enabled the upgrade to be delivered with minimal disruption, while also setting the foundation for faster, more cost-effective ongoing support through remote connectivity.

According to the company, the project’s success relied on close collaboration between Genting Casino, VTF&S and Comelit-PAC.

Clear communication and planning ensured the system could be upgraded safely and efficiently while the venue continued to operate as normal, added Comelit-PAC. 

 “Safely and efficiently”

Ben Howley of Comelit-PAC commented: “This project demonstrates with the right teamwork and planning, even complex upgrades can be delivered seamlessly in a live venue.

“Genting Casino now has a system that was implemented safely and efficiently and simple to maintain even remotely, thanks to the strong partnership between all parties involved.”

Lithium-ion battery fires reported in UK every five hours, QBE data shows

Fire and rescue services across the UK are now responding to lithium-ion battery fires approximately once every five hours, according to new research from insurer QBE, highlighting a sharp rise in incidents linked to everyday electronic devices and electric transport.

QBE’s analysis found that UK fire services attended the equivalent of 4.8 lithium-ion battery fires per day in 2025, up from around two per day in 2022. Overall incidents have increased by 147% over the three-year period.

The data, based on Freedom of Information responses from 42 of the UK’s 49 fire services, shows a continued upward trend in fires involving batteries used in devices such as mobile phones, laptops, e-bikes and electric scooters.

QBE said e-bikes accounted for 520 fires in 2025, more than triple the figure recorded in 2022. These incidents represented nearly a third of all lithium-ion battery fires recorded that year. Of the e-bike fires, 44% were attended by the London Fire Brigade, which reported 230 such incidents.

Electric vehicle-related fires also rose, increasing from 120 incidents in 2022 to 279 in 2025, a 133% rise. Over the same period, the number of electric vehicles on UK roads more than tripled, increasing by 206% from 664,148 to 1,971,764.

Key stats behind lithium-ion battery fires in the UK

QBE said almost half (46%) of lithium-ion battery fires occurred in homes, while 31% took place outdoors and 23% in commercial properties. Around 45% of incidents involved commonly used consumer devices such as phones, tablets and power banks.

The insurer attributes many of these incidents to “thermal runaway”, a chemical reaction in which batteries overheat and ignite, often due to damage, overcharging or exposure to heat.

Adrian Simmonds, Risk Manager at QBE Insurance, said:

“Lithium-ion battery fires continue to increase. It’s vital that people and businesses take action to better manage this growing risk. Thermal runaway caused by these types of batteries burns differently, takes much longer to tackle and can require up to 10 times more water to contain.

“Awareness of safe charging, storage and disposal is essential to keeping people and property safe. People should use only certified e-bikes and batteries, charge them away from escape routes and avoid charging items overnight.

“The statistics suggest retrofitted bikes are more prone to these incidents, so we would encourage people to stick to reputable companies when purchasing and avoid unregulated devices.”

Among UK fire services, the London Fire Brigade recorded the highest number of lithium-ion battery fires in 2025 with 522 incidents, followed by West Yorkshire Fire and Rescue Service with 126 and Lancashire Fire and Rescue Service with 117.

The data also shows variation across regions, with Bedfordshire and Luton Fire and Rescue Service reporting a year-on-year reduction in incidents following updated safety guidance issued in 2023.

The findings come as the UK prepares to implement reforms under the Product Regulation and Metrology Act, which received royal assent in July and aims to strengthen oversight of product safety, including uncertified e-bikes sold via online marketplaces.

QBE is urging both households and businesses to follow stricter safety measures, including using certified products, avoiding overnight charging, inspecting batteries for damage and ensuring proper storage and disposal of lithium-ion devices.

Securiton’s digital-first approach breaks new ground with the ASD 2000

Aspirating smoke detection (ASD) has long been the gold standard for Early Warning Fire Detection. But until 2026, ASD systems remained locked in a bygone age. Securiton has changed that with the digital-first ASD 2000.

With the Swiss company’s new device family, gone are the buttons and complex displays of old: this is a futuristic looking graphite-coloured box controlled from an app on your phone. It was born of a brief focused not on hardware, but on a seamless user journey.

Today, that means a mobile app as the primary interaction interface, alongside intuitive design that reduces complexity and saves time throughout the design, installation and commissioning process.

As an ASD pioneer with over 50 years of experience in the field, it is appropriate that Securiton should provide this generational leap forward in ASD technology. As part of the security-focused Swiss Securitas Group, Securiton was also able to direct considerable efforts to build a secure interface for the app – essential because of longstanding concerns in some key industries.

Fire detection is life critical; it’s highly regulated; and it’s generally business-critical too: around half of businesses that suffer a major blaze never recover. Others, such as data centres, power networks or financial firms, will suffer heavy costs and reputational damage should their services be suspended due to a blaze or even a false alarm.

No surprise, then, that they do not wish for the devices protecting them to be hacked. However, the fire safety industry can no longer ignore the efficiency gains available through a digital approach.

Advantages of the ASD 2000

Securiton’s solution uses multilevel encryption and authentication to ensure only the company’s authorised partners can control a device. The security architecture followed the strictest industry protocols, and the result also offers significant advantages to the old ‘dongles’ which were used to identify authorised users up to now.

With the app system, levels of clearance and permissions can be set – or taken away – almost instantly. And all the actions of a given user are clearly recorded, whereas previously the shortage of physical dongles usually led to service engineers sharing hardware and accounts.

The first SecuriSmoke product where commissioning, configuration, diagnostics, and operation are all managed through an intuitive mobile application is therefore arguably its most secure yet.

Nevertheless, Securiton is pressing on with plans to roll out a version of the ASD 2000 that offers a more conventional set-up process. This will allow installers to access the performance benefits of the new device in areas where security protocols mean the app cannot be used.

Those performance benefits make the ASD 2000 an industry-leading device even without its digital interface: because they were designing a new device from scratch, the 60-strong development team were able to pack in many major performance upgrades.

The detection chamber has undergone a redesign from scratch, doubling the maximum sensitivity to 0.001% obs/m, and a 1000pa aspiration engine expands the potential pipe network and raises system limits, especially in the highest Class A EN 54 standard for Very Early Warning Fire Detection.

The SecuriSmoke ASD 2000 offers multiple leaps forward in terms of the technologies inside. For the industry as a whole, perhaps the move to a fully digital, remote interface is the most significant. It remains to be seen if other manufacturers will follow suit.

For more information see: www.securiton.com/onestepahead

Detection over distance: How one UK start-up is disrupting a decades-old safety standard

Matthias Jäger, Co-Founder and CTO at Optect, explains how optical design can extend flame detection range without weakening false alarm rejection

Fire detection systems are expected to respond quickly and reliably, yet performance can fall short in large or open environments where coverage distances stretch and installation demands increase.

Conventional infrared flame detectors remain widely used, but their limited range can require dense layouts that raise cost and complexity, particularly across infrastructure corridors, warehouses and remote sites.

Optect, a UK manufacturer based in Bath, has developed an optically enhanced IR3 flame detector designed to extend detection range while maintaining discrimination against false alarms.

The system combines long-range sensing with local coverage in a single device and is progressing through certification for broader deployment.

IFSJ Editor Iain Hoey sat down with Matthias Jäger, Co-Founder and CTO at Optect, to discuss the technology and its potential role in future fire detection strategies.

What distinguishes an IR3 flame detector and why was a new approach needed?

IR3 flame detectors identify fires by sensing the characteristic infrared radiation emitted by flames across three distinct spectral bands.

By analysing the relationship between these bands, the detector can distinguish real flames from common sources of interference such as sunlight, hot machinery or reflections.

Compared to smoke or heat detectors, IR3 systems can respond very rapidly and are particularly well suited to open, ventilated or outdoor environments where smoke may disperse and heat build-up can be delayed.

Most conventional IR3 detectors are designed around relatively short detection ranges and wide fields of view.

This works well in small enclosed industrial spaces, but becomes inefficient when protecting large areas, long perimeters or remote outdoor sites.

In those cases, achieving full coverage often requires a high number of detectors, which increases installation complexity, cost and maintenance.

The need for a new approach came from applications where early detection over distance matters, such as wildfire prevention, infrastructure protection and large buildings such as warehouses, but where existing solutions were impractical or uneconomic at scale.

How does Optect’s optically enhanced design work and what makes it different?

The core idea is a deliberate trade-off between field of view and range.

By narrowing the field of view using optical elements, we can concentrate infrared energy from distant flames onto the sensing elements, significantly extending detection range compared to conventional wide-angle IR3 detectors.

This approach allowed the system to pass formal flame detection tests at distances of 500 metres, with the limit set by the available test site rather than the sensitivity of the detector itself.

To ensure this does not create blind spots at close range, the system combines this long-range optical channel with a second detection element designed to cover nearby areas.

In effect, the detector provides focused long-range monitoring and local coverage within a single device, without requiring separate sensors or complex installation layouts.

Coverage geometry is defined optically rather than through placement density or software interpretation.

Installers can clearly understand what areas are being protected at short and long distances, while end users benefit from extended reach without losing near-field detection.

What were the main challenges in developing and certifying the detector?

We faced two significant challenges during development.

The first was operating as a startup in a highly regulated industry.

In many technology sectors, it is common to launch with a minimal viable product and refine it through rapid iteration in the field.

That approach is not viable in fire detection.

Certification is expensive and time-consuming, and once you enter formal testing, the product needs to be as reliable and as close to final as possible.

The second challenge stemmed directly from the extended detection range.

Sensitivity scales with the square of distance, so operating at around five times the range of conventional flame detectors means dealing with roughly twenty-five times the sensitivity.

At the same time, the detector still has to meet very stringent false-alarm immunity requirements in order to be certifiable.

Much of our innovation effort therefore went into ensuring that increased sensitivity did not translate into increased susceptibility to non-fire sources.

This challenge was compounded by the fact that existing certification standards were never written with detectors operating at hundreds of metres in mind.

For example, the European EN 54-10 standard currently defines three sensitivity classes with certified ranges of 12, 17 and 25 metres.

Although a draft revision introduces a new Class X with range defined by the manufacturer, today’s formal test framework is still anchored to short-range detectors.

What features support installers and end users?

From the outset, we tried to look beyond the detector itself and consider the whole system.

In many real installations, the detector hardware is only a small part of the overall cost.

The largest share is often the work required to install cabling, mount devices, commission the system and service it over its lifetime.

Improving coverage and reducing the number of detectors needed can therefore make a significant difference, but only if the installation process is also made as simple and predictable as possible.

That thinking drove many of the design decisions.

Extended and well-defined coverage means fewer mounting points, fewer cable runs and less time spent testing and validating installations.

We also use pluggable PCB terminal connectors rather than fixed terminals, which allows installers to terminate and check the wiring into the removable plug before mating it with the device.

There are also smaller details that come directly from spending time with installers.

One example is the cap on the configuration port, which is secured with a lanyard so it cannot be dropped while working on a cherry picker or lift.

Where will the detector be most valuable near term?

We currently see value emerging in two broad areas: new applications in wildfire detection, and more traditional industrial flame detection scenarios where long lines of sight are common.

On the wildfire side, the ability to detect small flames from flying embers quickly and incoming fires with high reliability opens up use cases that are difficult to address with conventional systems.

Examples include monitoring power line corridors, railway bridges or protecting private properties and estates in high-risk areas.

In these settings, early detection over distance can be critical, and reducing the number of detectors needed makes deployment more practical in terms of cost, infrastructure and maintenance.

In more traditional industrial contexts, the detector is particularly well suited to applications with clear, extended lines of sight.

This includes external building monitoring, large warehouses, car parks, process plants, conveyor routes or elongated outdoor installations where coverage is often dictated by geometry rather than floor area.

What is the status of Optect’s certifications?

From the outset, Optect’s detector was engineered to meet the requirements of widely recognised standards, EN 54-10 for Europe and FM 3260 for the US, Canada, Brasil, India and a number of other countries.

These standards are often a prerequisite for specification, installation and acceptance.

In terms of adoption, certification enables deployment in regulated industrial environments and integration into certified fire alarm systems.

It can also matter in fields without a formal requirement.

For example, in wildfire detection applications, insurance companies are increasingly looking for certified detection products.

How do you see flame detection technology evolving?

Over the past decades, flame detection has seen a great deal of iterative improvement, but relatively little fundamental disruption.

That is now beginning to change.

We are seeing movement at the standards level, for example with the draft revision of EN 54-10 introducing Class X, and with new standards emerging for AI-driven and camera-based fire detection systems.

We believe there is real value in adopting new and emerging technologies, particularly where they can extend coverage, improve situational awareness or enable new applications, while preserving the reliability, robustness and predictability that existing systems are trusted for.

Optect’s role in this is to contribute long-range optical sensing and certification-led engineering into that evolving landscape.

With a team that spans photonics, electronics and systems engineering, we are well positioned to help shape new classes of detection systems that are grounded in the practical and regulatory realities of real-world deployment.

This was originally published in the April 2026 Edition of International Fire & Safety Journal. To read your FREE copy, click here.

Hochiki to showcase FIREscape Nepto black range at Fire Safety Event

See live voice sounder demonstrations at the Hochiki stand

Hochiki Europe will exhibit at The Fire Safety Event 2026 at the National Exhibition Centre (NEC) in Birmingham from 28 to 30 April.

The manufacturer is the Innovation Theatre sponsor and will use stand E97 to showcase new products and systems.

Visitors can view the new FIREscape Nepto black range for the first time during the three day exhibition.

The stand features a live voice sounder demonstration and the company water leak detection range.

Specifiers and installers have the opportunity to see these systems performing in a practical setting.

The company is also introducing a new modular exhibition stand built with a lightweight aluminium frame and PVC-free graphics.

This reusable structure is designed to last for over 300 events across a 15-year lifespan.

Expert sessions on fire safety and water leak risks

Martin Green, Commercial Training and Support Manager at Hochiki Europe, will deliver three educational sessions in the Innovation Theatre.

The first session on Tuesday 28 April covers fire detection system compliance and the EN54 standard for building owners.

A second presentation on Wednesday 29 April focuses on reducing water damage risks to businesses in the United Kingdom.

The final session on Thursday 30 April provides a guide to fire safety in complex built environments.

Green said: “The sessions I’m delivering at the Fire Safety Event this year cover topics that matter to a huge range of people not only working directly in the fire industry, but also across multiple sectors right now.

“The seminar format gives us the chance to go deeper than we can in other settings, then continue those conversations face to face both on the stand and out in the wider world.”

Shinsuke Kubo, Managing Director of Hochiki Europe, said: “The Fire Safety Event is one of the most important dates in our calendar and has been for a number of years.

“What makes it valuable is the quality of the people in the room.

“Specifiers, installers, consultants and building owners, all focused on the same thing.

“This year we are bringing new products, live demonstrations and a full programme of talks, but what we value most is the time we get to spend with customers and industry peers in the room.

“Understanding what they are working through, what is shaping the market right now and what they need from us.

“We come away every year with a clearer picture of where the industry is heading, that comes from the time spent face to face with the people who are navigating the same challenges every day.

“The fire safety sector is moving quickly and events like this are where you feel that progress most directly.”

The event is open from 10:00 to 16:30 on Tuesday and Wednesday, and closes at 15:30 on Thursday.

Historic Mar Hall Hotel adopts Hyfire wireless technology

Hyfire wireless technology installed at Mar Hall

The Mar Hall Hotel and Resort has completed the installation of more than a thousand Hyfire wireless fire alarm devices to protect the historic 19th-century building and its staff.

Hyfire published a case study detailing the project at the 240-acre estate located near Glasgow International Airport.

The installation was designed to ensure the safety of guests and the continued longevity of the historic Edwardian house constructed in the 1830s.

The Taurus wireless fire system provides performance through SafePath Mesh Expander Technology.

If any expander in the network fails, the system automatically reroutes the transmission via an alternative path to maintain uninterrupted communication.

Challenges of the Mar Hall listed building

The resort operated on a wired fire alarm system for more than 25 years before the upgrade was required for the main hotel and its outbuildings.

Hyfire partner JC Electrical & Security Solutions recommended a wireless system to allow for installation without shutting down hotel operations.

The centuries-old layout featured vaulted ceilings and uneven surfaces in lower staff levels.

Some walls consisted of thick stone which made establishing a wireless connection difficult.

Installers used the Hyfire Survey Lite Kit to identify the most robust signal strengths throughout the estate.

Specialist scaffolding was used to access vaulted ceilings and fit devices above the foyer chandelier.

John Cooper, at JC Electrical & Security Solutions, said: “The black device range came into good use as Mar Hall had a cinema room, so the black optical device looks like it was always meant to be there.”

The project was completed without issues and incorporated the previous system to ensure fire safety continuity during the transition.

Royal Marine Hotel replaces fire system with Advanced technology

Royal Marine Hotel installs Advanced fire panels

The Royal Marine Hotel in County Dublin has upgraded its fire safety infrastructure through the installation of Advanced MxPro 5 fire panels.

TEE Fire Safety Solutions (TSS) published a case study detailing the replacement of the previous system to address reliability issues and frequent false alarms.

The hotel premises include guest rooms, restaurant areas, a spa, an underground car park and plant rooms.

Installation teams replaced five existing panels on a single day to maintain network continuity across the live hospitality environment.

The new configuration uses a combination of eight-loop, four-loop and two-loop MxPro 5 analogue addressable panels.

A fully functional repeater panel supports the network which contains 1,813 programmed devices across seven nodes.

Timmy England, Managing Director at TEE Fire Safety Solutions, said: “This was a live hotel environment where reliability and minimal disruption were essential.

The MxPro 5 allowed us to implement effective false alarm management while maintaining high safety standards, and replacing all networked panels in one day was a major advantage.”

False alarm management and future expansion

The project utilised the configuration capabilities of the MxPro 5 to establish a management strategy featuring specific verification and hold times.

TSS excluded manual call points, heat detectors and linear detection from these delays to ensure immediate response to genuine fire threats.

The programmed staged alarm strategy activates sounders for management and maintenance staff before escalating to a full evacuation.

The site uses standard network cards to link the panels and provides a platform for future scalability.

Neil Parkin, Sales Manager at Advanced for UK North, Northern Ireland and ROI, commented: “Hotels present unique fire safety challenges, particularly when it comes to managing false alarms while protecting guests and staff.

“This project demonstrates how MxPro 5 delivers reliable, intelligent fire protection that meets those demands and supports future growth.”

The hotel plans to add an additional single-loop panel to the network to accommodate a forthcoming extension.

Euralarm requests longer transition periods for life safety systems

Euralarm warns of safety gaps in Digital Networks Act

Euralarm published a position paper in April 2026 addressing Article 5.4 of the proposed Digital Networks Act (DNA) to highlight concerns regarding network technology migration timelines for life-safety services.

The trade association stated that the currently proposed two-year notice period for decommissioning existing network technologies is insufficient for the fire and security sectors.

Millions of installed devices across Europe including fire alarm transmission systems and social alarms rely on public electronic communications networks to transmit emergency signals.

These life-safety systems are being impacted as network operators progressively phase out older technologies in favour of modern alternatives.

Euralarm noted that transitions often require physical hardware replacement and product redesign alongside on-site installation and certification.

Completing these large-scale migrations within the suggested two-year window is described as operationally unrealistic.

Proposed seven year transition for Euralarm members

Euralarm calls for Article 5.4 to require notification at least seven years in advance when network changes lead to the discontinuation of services on existing devices.

A seven-year transition window allows industry providers to develop and certify replacement technologies while scaling manufacturing and supply chains.

The association explained: “Euralarm has published a position paper on Article 5.4 of the proposed Digital Networks Act (DNA), welcoming the objective of improving transparency around network technology migrations while warning that the currently proposed two-year notice period is insufficient for life-safety services.”

“Fire safety, security and social alarm systems across Europe rely heavily on public electronic communications networks to transmit emergency signals.”

“Millions of installed devices – including fire alarm transmission systems, intruder alarms and telecare equipment for elderly and vulnerable citizens – depend on existing network technologies that are progressively being phased out.”

This timeframe supports the organisation of equipment replacement programmes and coordination of installations with building owners.

The extended period is intended to maintain uninterrupted services for vulnerable users and protect critical safety systems.

EU policymakers are urged to clarify the final text of the Digital Networks Act to ensure life-safety services are considered.