Redefining escape: Hochiki outlines how England staircase law changes tall building safety

Hochiki outlines what the UK’s second staircase mandate means for global fire safety design

England’s decision to mandate second staircases in all new residential buildings over 18 metres represents one of the most significant shifts in high-rise fire safety design in a generation.

More than a technical update to Approved Document B, it signals a fundamental change in how tall residential buildings are designed, occupied and managed.

The new mandate applies to England only, with changes to Approved Document B expected to take effect from 30 September 2026.

While this brings England’s regulations into line with existing standards in Scotland, it does not currently apply to the whole of the UK.

Emerging from the post Grenfell regulatory landscape, the requirement reflects a wider emphasis on resilience, redundancy and demonstrable occupant safety.

While the mandate applies specifically to England, its implications extend well beyond the UK.

In an interconnected construction industry, regulatory reform at this level influences global expectations around tall building design.

As the sector gathers at The Fire Safety Event in Birmingham, the discussion is no longer about whether a second staircase is necessary.

The real issue is how this change reshapes fire strategy, system integration and operational management.

From compliance to resilience

For many years, UK residential buildings above 18 metres were commonly designed with a single protected stair supported by robust compartmentation and a stay put evacuation strategy.

Fire resisting construction, smoke control and phased evacuation principles formed the backbone of this approach.

The introduction of a mandatory second staircase does not invalidate those principles.

It strengthens them by embedding redundancy into the building’s physical design.

A second protected route provides an alternative means of escape should one stairwell become compromised by smoke or fire.

It improves separation between evacuation and firefighting operations and introduces greater flexibility into evacuation planning.

This reflects a shift in mindset.

Increasingly, regulators and building owners are asking not simply whether a design meets code but whether it can withstand unforeseen conditions.

Resilience is about maintaining safe outcomes even when systems are placed under stress.

The second staircase mandate makes that resilience visible.

Upcoming Webinar: How the UK second staircase mandate affects evacuation systems and building design – Register Now!

Reframing fire strategy

Adding a second stairwell is not just a spatial decision. It reshapes the entire fire strategy.

Evacuation philosophy must be reconsidered.

In a single-stair building, the route is obvious.

In a multi-stair configuration, occupants are presented with choice.

Designers must consider how evacuation sequencing operates across separate stairwells and how congestion is avoided if both routes are used simultaneously.

The continued role of stay put strategies must also be carefully evaluated within the new context.

Compartmentation and system zoning become more complex.

Each additional stairwell introduces new interfaces between fire resisting elements, services and access routes.

Fire detection and alarm systems require clear zoning to reflect the building’s geometry, and cause and effect programming must ensure that occupants receive consistent and unambiguous information.

From Hochiki’s experience in high-rise environments, complexity without coordination increases risk.

As escape routes multiply, life safety systems must be designed as a cohesive whole with detection, alarm, smoke control and emergency lighting aligning with the intended evacuation strategy from the outset.

Operational performance over time

A second staircase enhances design resilience, but its value depends on long-term operational performance.

The Building Safety Act has reinforced accountability for building owners and duty holders.

In multi-stair buildings, operational demands increase and additional stairwells mean more devices, more circuits and more interfaces to maintain.

Testing regimes must reflect the expanded infrastructure and documentation must clearly explain zoning and system interaction so facilities teams can respond effectively.

Redundancy in escape provision must be matched by reliability across all supporting life safety systems.

Fire detection should respond promptly and accurately, while emergency lighting must deliver the required minimum illumination levels along escape routes and at key decision points.

Wayfinding signage must remain visible and intelligible even under reduced visibility conditions, ensuring that occupants can move confidently towards safety.

For facilities managers, building owners or indeed the responsible person, compliance at handover is only the starting point.

The true measure of safety is sustained performance throughout the building’s life.

Guiding human behaviour

The second staircase mandate also changes the behavioural dynamics of evacuation.

In an emergency, occupants rely on instinct and visual cues.

They tend to follow familiar routes or other people.

The stress of an emergency is proven to reduce analytical thinking and in a single-stair building, behaviour is channelled by layout.

In buildings with two stairwells, behaviour must be guided.

Emergency lighting plays a critical role in guiding behaviour within multi-stair buildings and its function extends far beyond simply meeting minimum illumination levels.

It should clearly reinforce direction of travel, highlight changes in level and emphasise entrances to protected stairwells so that occupants instinctively understand where to move.

Attention must be given to decision points, where clarity is essential to prevent hesitation, confusion or backtracking.

There is also growing international interest in adaptive signage systems capable of responding to developing conditions.

In buildings with multiple escape routes, the ability to influence flow away from a compromised stairwell can enhance overall evacuation efficiency.

Hochiki’s approach is grounded in simplicity and reliability.

Technology should reduce cognitive load, not increase it.

Clear, consistent information across detection, alarm and lighting systems is essential to support safe decision making under pressure.

International perspectives

Although the mandate is specific to England, similar themes are visible internationally.

Across Europe, regulations already require two means of escape once residential buildings exceed certain heights.

France, Germany, Belgium and the Netherlands all introduce additional escape provisions as buildings become taller and more complex.

While the thresholds and technical details differ, the principle is consistent.

As height increases, reliance on a single vertical escape route becomes harder to justify.

In contrast, some jurisdictions continue to permit single-stair arrangements under performance-based frameworks.

In Sweden, high-rise residential projects such as Turning Torso have operated with engineered smoke control solutions supporting a single-stair configuration.

In parts of North America, including cities such as New York and Seattle, single-stair mid-rise residential buildings remain permissible within defined height limits where sprinklers and other protective measures are provided.

However, these approaches are under active review.

Policymakers in several US states and Canadian provinces are reassessing whether existing provisions strike the right balance between design efficiency and life safety resilience.

England’s explicit adoption of mandatory second staircases has therefore attracted attention beyond its borders.

The broader trajectory is clear.

Expectations around redundancy and visible safety measures are rising.

Engineered mitigation alone may no longer provide sufficient reassurance in higher risk residential settings.

A defining moment

The second staircase mandate represents a defining moment for tall residential design.

It challenges established assumptions and reinforces the importance of resilience within both physical layout and system architecture.

For architects, it requires early integration of escape strategy into spatial planning.

For developers and asset owners, it demands commitment to long-term maintenance and system integrity.

For fire safety professionals and installers, it underscores the importance of coordinated design and robust commissioning.

For Hochiki, the direction of travel is unmistakable.

Whether through prescriptive reform or performance-based evolution, the future of tall building safety lies in integrated life safety systems, operational reliability and clear communication that supports occupants when it matters most.

Escape can no longer be treated as a static compliance requirement.

It is an evolving discipline shaped by regulation, technology and human behaviour.

The government has taken a decisive step.

The wider industry now can lead in redefining what safe escape truly means.

Learn more about Hochiki by visiting our team on Stand 4/E97 at the Fire Safety Event to discuss this topic further and understand how the legislation might impact your future fire safety projects.

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

Two Bulgarian installations highlight Hochiki fire detection range

Hochiki projects in Bulgaria

Hochiki Europe has published details of two completed fire detection installations in Bulgaria, covering a logistics warehouse in Radinovo and a mixed-use tower in Sofia.

The company said the projects were delivered by partners MCM Engineering and Sectron, using different parts of the Hochiki product range to match each building’s layout and fire detection needs.

At the BULTEX 99 logistics centre in Radinovo, a 270,000 square foot facility storing large volumes of flammable clothing materials, MCM Engineering installed 350 ESP intelligent devices with Hochiki’s 6-loop Latitude fire control panel.

The site’s dense racking storage systems were protected using FIREbeam Xtra addressable beam smoke detectors positioned along warehouse corridors.

Georgi Georgiev said: “Hochiki’s ESP open protocol gives us the flexibility when dealing with such a large and complex facility, BULTEX 99 now have a centralised system that is simple to monitor and designed to support future expansion.”

Smart Tower installation in Sofia

In Sofia, Hochiki Europe said Sectron completed an installation at Smart Tower, a development with 30 floors of luxury apartments, 12 levels of commercial space and a four-storey underground car park.

The estimated occupancy across the two connected buildings is 2,552.

More than 10,000 Hochiki devices were installed across the development.

The commercial areas used the ESP addressable range, individual apartments used the Conventional CDX range and the basement car park used Hochiki’s Linear Heat Detection Cable where exhaust fumes made conventional smoke detection unsuitable.

Elena Pencheva, Design Engineer, Sectron, said: “Hochiki’s multiple solutions made overcoming the challenges with Smart Tower’s infrastructure straightforward.

“The open-protocol capabilities provided ultimate flexibility when integrating multiple, tailored solutions across the building.”

The two installations were presented as examples of how different Hochiki systems can be applied across large warehouse and mixed-use residential developments.

Upcoming Webinar: How the UK second staircase mandate affects evacuation systems and building design

IFSJ webinar to examine the UK’s second staircase mandate and its impact on tall building fire safety design

International Fire and Safety Journal (IFSJ) will host a webinar examining the implications of the UK’s second staircase mandate for fire safety strategy, system design and evacuation planning in tall residential buildings.

Register now

Titled “Redefining Escape: What the UK’s Second Staircase Mandate Means for Global Fire Safety Design”, the webinar will take place on 11 May 2026 at 11:00 BST.

The session will discuss how the introduction of mandatory second staircases in all new residential buildings over 18 metres is influencing how tall buildings are designed, occupied and managed.

While the requirement is rooted in UK legislation, the discussion will also address the broader relevance of these regulatory changes for international fire safety design and operational practice.

The webinar will examine how the second staircase requirement affects evacuation strategy in multi-stair buildings, including considerations around escape planning, compartmentation, evacuation sequencing and system zoning.

It will also address what building owners and facilities teams should consider to ensure life safety systems remain effective, maintainable and operational across multiple escape routes.

Another focus of the session will be the role of emergency lighting and dynamic signage in supporting evacuation behaviour, particularly as building layouts become more complex.

The discussion will also examine how coordinated approaches to lighting, detection and wayfinding systems can support clearer evacuation routes and reduce complexity during an emergency.

Speakers

The webinar will feature insights from two industry specialists with extensive experience in fire detection and life safety systems.

Martin Green, Commercial Training & Support Manager, Hochiki Europe, has more than 30 years of experience in the fire safety sector, including nearly two decades with Hochiki Europe.

He delivers training and technical support across the UK and provides accredited CPD and practical guidance for those responsible for the design, installation and management of life safety systems.

His expertise covers fire alarm and emergency lighting design, regulatory compliance and fire safety strategy.

He will be joined by Mick Hall, Regional Sales Manager, Hochiki Europe, who has spent the past decade working with architects, consultants, installers and building owners across the UK.

His experience includes system design, application engineering and integrated life safety approaches, including dynamic emergency communication and wayfinding systems.

Together, the speakers bring more than forty years of combined experience in the fire safety market, offering technical insight into the practical implications of the second staircase mandate.

Who should attend

This webinar will be relevant for professionals involved in the design, operation and management of tall buildings, including:

  • Architects and building designers
  • Developers, building owners and asset managers
  • Facilities and estates teams
  • Health and safety and fire safety professionals
  • Fire safety installers and electrical engineers

Although the session focuses on UK regulation, it will also provide useful insight for international audiences seeking to understand how regulatory change is influencing tall building fire safety design and operational practice.

Register for the webinar

The webinar will take place on 11 May 2026 at 11:00 BST.

To register, visit: https://attendee.gotowebinar.com/register/4263019240448011096

Accessibility beyond compliance: Hochiki Europe maps standards in practice

Richard Wharram, Export Sales Manager at Hochiki Europe explores how fire safety installers can lead the conversation on accessibility

Compliance with fire safety codes sets the foundation for protecting buildings, but it is no longer the only expectation placed on installers.

Fire safety engineers are increasingly expected to deliver solutions that address both regulatory requirements and occupant needs.

Both modern buildings and older properties, whether carefully preserved, adapted for new use or extended with new wings, must now support diverse occupant needs.

As buildings serve more diverse populations, life safety systems must be both responsive and accessible, delivering consistent protection across these varied environments, extending to every occupant, regardless of ability.

This shift requires a broader role for fire professionals.

Installers are now expected to advise clients on accessibility as well as fit systems.

The most forward-thinking installers are stepping up; they are engaging with clients early in the design phase, they have a working knowledge of the latest technology advances and can provide products that serve a wide range of user needs.

In this article, we review how inclusive standards are being applied in practice and how forward-thinking engineers are helping clients see accessibility not as a bolt-on feature, but as a fundamental design principle.

Inclusive standards in practice

Understanding accessibility in fire safety starts with a review of the regulations themselves.

Each region applies its own framework of codes and standards, and together they define how inclusive life safety should function in practice.

For installers, this means interpreting what standards demand on site and how they affect system design in each unique application.

In the UK, BS 5839‑1 and BS 5266‑1 outline core requirements for fire detection and emergency lighting.

BS 5839‑9 extends this by requiring Emergency Voice Communication (EVC) systems in refuge areas.

These systems support people with mobility impairments by enabling communication with emergency responders during evacuation.

Across Europe, EN 54 standards, including EN 54‑23 for Visual Alarm Devices (VADs), help ensure that life safety systems accommodate users with hearing impairments.

In the Middle East, local codes often blend UL and EN requirements to address safety in complex, high-density buildings where occupant needs vary widely.

Legal and reputational pressures have increased since the Grenfell Tower fire, particularly in the UK.

However, following this tragedy, building owners and facility managers around the world are now expected to demonstrate that their systems support everyone, not just the average occupant.

Installers as strategic advisors: Real world examples

For fire safety professionals, this is not just a challenge, but an opportunity.

The best installers today are not just system integrators; they are strategic partners.

They help clients understand why inclusive fire safety is worth investing in, and they guide them through the complexities of standards, technologies and real-world needs.

That conversation becomes much easier when backed by practical experience.

At Merriman Grange, a care home in West Sussex, the installation of an addressable L1 fire detection system from Hochiki included features specifically selected to protect residents in a dedicated dementia unit.

The ability to adjust alarm tones and volumes minimised distress for occupants with cognitive impairments, while still ensuring reliable alerting and full coverage across all three floors.

In Italy, the Sacro Cuore Don Calabria Hospital in Verona faced a very different challenge—minimising false alarms in a complex healthcare environment without compromising safety for vulnerable patients.

The installation team deployed intelligent multi-sensor technology and integrated addressable panels from Hochiki across eight buildings, the site reduced unnecessary evacuations that could otherwise disorient or endanger those in critical care.

And in the Middle East, the Outpost Al Barari, a luxury eco-resort deep in the desert, introduced a different set of design constraints.

Built to harmonise with its constantly shifting natural environment, the resort’s layout changes with the desert itself, requiring a flexible and non-invasive approach to life safety.

Hochiki’s wireless system was deployed using hybrid technology, enabling quick reconfiguration of detection and alerting devices without disruptive installation works.

The solution included accessible call points mounted at the correct height for wheelchair users, visual alarm devices for hearing-impaired guests, and full integration with central control panels.

Ekho wireless technology allowed the system to flex as the resort evolved, while maintaining full coverage and minimal aesthetic impact.

These projects demonstrate that inclusive systems are not just about ticking regulatory boxes.

They are about understanding human needs and the surrounding environment to deliver technical solutions that respond with precision and care.

What to look for in a technology partner

Installers often rely on long-term relationships with manufacturers to ensure consistent performance and regulatory compliance.

However, regular review is essential.

As building and standards evolve, so should the technologies used to support them.

Manufacturers that specialise in life safety and offer comprehensive solutions, such as detection, emergency lighting and EVC integration, can simplify specification and improve system coherence.

Wireless capability is particularly important in heritage sites, clinical settings, sites where perhaps traditional architectural design is challenged, such as the example at the Outpost Al Barari and retrofits where cabling is difficult or undesirable.

Features such as programmable control panels, self-testing luminaires in emergency lighting and staged evacuation logic can reduce maintenance burden and support vulnerable building users more effectively.

One retrofit example is the Unity Theatre in Liverpool.

This converted synagogue required blackout capability for performances and full compliance with modern safety standards expected within a building often used by people who were not always familiar with the layout.

Hochiki’s self-contained emergency lighting solution met all requirements while avoiding major refurbishment works and improved energy efficiency.

System functions that support inclusion

Inclusive life safety systems combine various alerting methods to ensure everyone receives timely warnings.

These typically include audible alarms, VADs that meet EN 54‑23 and, where required, tactile signals.

Control equipment should support voice announcements and phased evacuation, particularly in large or multi-use buildings.

Manual call points need to be accessible in terms of height and placement and are increasingly available in wireless formats to support design flexibility.

Emergency lighting should be addressable and capable of directing people around hazards dynamically.

In addition, refuge areas must include two-way EVC systems to enable communication between those waiting and the building’s control centre or emergency services.

These are functional requirements already being delivered across the UK, Europe and the Middle East.

Designing for varied user needs improves safety for all occupants, not just those with visible impairments.

Shifting expectations in fire safety

The expectation for inclusive design is growing across all sectors.

End users, regulatory bodies and industry stakeholders increasingly treat accessibility as a baseline requirement rather than an enhancement.

Installers play a key role in meeting this expectation.

By working with manufacturers focused on life safety and advising clients on emerging standards, they help ensure that fire systems reflect how buildings are used.

This involves considering a broad range of users, including vulnerable people such as the elderly or children as well as those with cognitive impairments or limited mobility.

Systems must also support visitors unfamiliar with the building layout or language, especially if it is a public building.

Inclusive design is no longer a future goal, it is here and now and should reflect both societal values and legal obligations.

Installers who take accessibility into account early in the design process are helping set a new standard for life safety.

To learn more about Hochiki’s approach to inclusive fire safety and how our systems can support your next project, visit hochikieurope.com

Installer checklist for inclusive systems

Present yourself as a trusted partner to clients, focus on:

  • Work with specialists – align with manufacturers who focus solely on life safety, ensuring the systems you install are designed with this purpose in mind.
  • Offer complete solutions – demonstrate how you can deliver fire detection, emergency lighting and EVC integration as one coherent system
  • Provide wireless options – recommend wireless technology where heritage buildings, healthcare sites, complex designs or retrofits make cabling impractical
  • Highlight adaptable features – show clients the value of programmable panels, staged evacuation logic and flexible device placement for meeting diverse needs
  • Reduce ongoing burden – promote solutions with self-testing emergency lighting and other smart maintenance features that save time and support vulnerable users
  • Prove compliance through examples – share project experience and reference accredited products to give clients confidence in your approach

For installers, presenting themselves as aligned with these values can help clients see them not only as system integrators but as trusted partners who will deliver safety strategies that remain robust over time.

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

Hochiki installs bespoke detection system at Willis Aviation’s Teesside base

Hochiki case study at Teesside International Airport

A bespoke fire detection solution from Hochiki Europe has been installed at Willis Aviation Services’ maintenance base at Teesside International Airport, covering Hangars 7 and 8 across 45,000 m².

Hochiki said the project was delivered with local life-safety specialist Render Alarms, which designed and installed a tailored system built around Hochiki intelligent detection technology.

The site includes hangars, workshops and office space.

The case study described engineers working with high-value aircraft and potentially flammable materials.

System design and devices specified

The installation centres on Hochiki’s ESP intelligent fire detection system, described as offering open-protocol flexibility and performance aligned with the forthcoming BS 5839-1 2025 standard.

In office environments, adjustable smoke and heat detectors were specified, described as supporting reliable detection and reducing unwanted alarms.

In workshop areas, wall-mounted sounder beacons were installed to provide visual alerts in high-noise conditions.

For hangar voids, Hochiki’s FIRElink aspirating detection system was specified, described as using laser-based technology to monitor large areas with enhanced sensitivity and reduced maintenance requirements.

Render Alarms’ installation team used specialist design software to optimise the aspirating pipe network around the hangar’s structural framework, with the case study describing this as supporting coverage and compliance.

Luke Render, from Render Alarms, commented: “Hochiki’s bases are a gamechanger, one base fit all devices.”

The case study described sensors twist-fitting onto bases as part of the installation and commissioning approach.

Leading the conversation on accessibility with Hochiki

With accessibility shaping expectations in modern buildings, Hochiki examines how fire installers are taking on a wider advisory role across diverse environments

Compliance with fire safety codes sets the foundation for protecting buildings, but it is no longer the only expectation placed on installers.

Fire safety engineers are increasingly expected to deliver solutions that address both regulatory requirements and occupant needs.

Both modern buildings and older properties, whether carefully preserved, adapted for new use or extended with new wings, must now support diverse occupant needs.

As buildings serve more diverse populations, life safety systems must be both responsive and accessible, delivering consistent protection, extending to every occupant, regardless of ability.

This shift requires a broader role for fire professionals, who are now expected to advise clients on accessibility as well as fit systems.

The most forward-thinking installers are engaging with clients early in the design phase, have a working knowledge of the latest technology advances and can provide products that serve a wide range of user needs.

In this article, we review how inclusive standards are being applied in practice and how forward-thinking engineers are helping clients see accessibility not as a bolt-on feature, but as a fundamental design principle.

Inclusive standards in practice

Understanding accessibility in fire safety starts with a review of the regulations themselves.

Each region applies its own framework of codes and standards, and together they define how inclusive life safety should function in practice.

For installers, this means interpreting what standards demand on site and how they affect system design in each unique application.

In the Middle East, local codes often blend UL and EN requirements to address safety in complex, high-density buildings where occupant needs vary widely.

 In the UK, BS 5839‑1 and BS 5266‑1 outline core requirements for fire detection and emergency lighting.

BS 5839‑9 extends this by requiring Emergency Voice Communication (EVC) systems in refuge areas.

Across Europe, EN 54 standards, including EN 54‑23 for Visual Alarm Devices (VADs), help ensure that life safety systems accommodate users with hearing impairments.

Despite the tragedy taking place in the UK, legal and reputational pressures have increased globally since Grenfell Tower fire.

Building owners and facility managers around the world are now expected to demonstrate that their systems support everyone, not just the average occupant.

Installers as strategic advisors: Real world examples

For fire safety professionals, this is not just a challenge, but an opportunity.

The best installers are not just system integrators; they are strategic partners.

They help clients understand why inclusive fire safety is worth investing in, guiding them through real-world needs, how to navigate the complexities of standards and the wide range technologies available on the market.

In the Middle East, Dubai Metro is the backbone of the city’s transport network, moving millions every day.

Since 2021, the Roads and Transport Authority has partnered with Hochiki Europe and local experts Dafoos Fire & Security, fitting SOC-E3 smoke detectors across metro cabins to quietly protect passengers at scale, evidenced over busy periods like Eid Al-Fitr, when the Metro alone carried 2.43 million riders in three days.

Engineered for Dubai’s demanding conditions, heat, dust and humidity, Hochiki’s detectors deliver dependable, low-nuisance detection that keeps services running safely across a fleet operated by Keolis-MHI, with around 50 trains typically in service at peak.

This reliability helps ensure swift, accurate alerts and coordinated responses, minimising disruption while maximising passenger safety on both Red and Green lines.

Crucially, this is fire safety designed with accessibility in mind: consistent, rapid detection and clear system responses support safe evacuation for everyone, including passengers who may need more time or assistance.

With the Blue Line planned to extend the network by 30 km by 2029, the approach scales, adding more detectors and maintaining the same inclusive standard of protection as ridership grows.

The Sacro Cuore Don Calabria Hospital faced a very different challenge, minimising false alarms in a complex healthcare environment without compromising safety for vulnerable patients.

The installation team deployed intelligent multi-sensor technology and integrated addressable panels from Hochiki across eight buildings, the site reduced unnecessary evacuations that could otherwise disorient or endanger those in critical care.

These projects demonstrate that inclusive systems are about understanding human needs and the surrounding environment to deliver technical solutions that respond with precision and care.

What to look for in a technology partner

Manufacturers that specialise in life safety and offer comprehensive solutions, such as detection, emergency lighting and EVC integration, can simplify specification and improve system coherence.

Features such as programmable control panels, self-testing luminaires in emergency lighting and systems which enable staged evacuation logic can reduce maintenance burden and support vulnerable building users more effectively.

System functions that support inclusion

Inclusive life safety systems combine various alerting methods to ensure everyone receives timely warnings.

These typically include audible alarms, VADs that meet relevant safety standards and where required, tactile signals.

Control equipment should support voice announcements and phased evacuation, particularly in large or multi-use buildings.

Manual call points need to be accessible in terms of height and placement and are increasingly available in wireless formats to support design flexibility.

Emergency lighting should be addressable and capable of directing people around hazards dynamically.

In addition, refuge areas must include two-way EVC systems to enable communication between those waiting and the building’s control centre or emergency services.

These are functional requirements already being delivered across globally.

Designing for varied user needs improves safety for all occupants, not just those with visible impairments.

Present yourself as a trusted partner to clients, focus on:

Work with specialists – align with manufacturers who focus solely on life safety, ensuring the systems you install are designed with this purpose in mind.

Offer complete solutions – demonstrate how you can deliver fire detection, emergency lighting and EVC integration as one coherent system.

Provide wireless options – recommend wireless technology where heritage buildings, healthcare sites, complex designs or retrofits make cabling impractical.

Highlight adaptable features – show clients the value of programmable panels, staged evacuation logic and flexible device placement for meeting diverse needs.

Reduce ongoing burden – promote solutions with self-testing emergency lighting and other smart maintenance features that save time and support vulnerable users.

Prove compliance through examples – share project experience and reference accredited products to give clients confidence in your approach.

For installers, presenting themselves as aligned with these values can help clients see them not only as system integrators but as trusted partners who will deliver safety strategies that remain robust over time.

Shifting expectations in fire safety

Inclusive design is no longer a future goal; it is here and now and should reflect both societal values and legal obligations.

Installers who take accessibility into account early in the design process are helping set a new standard for life safety.

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

Hochiki system upgrade completed at Admiral Lord Nelson School in Portsmouth

Hochiki system installed at Portsmouth school

Hochiki has been used by SFA Fire & Security to upgrade the fire detection system at Admiral Lord Nelson School in Portsmouth, using FIREbeam Xtra and ESP for an open protocol configuration.

The school chose SFA Fire & Security for the upgrade after its existing fire system needed replacement.

The installation was delivered across a site described as spanning three floors with specialist classrooms across an extensive area.

SFA Fire & Security provided design and installation as a single delivery partner, according to the company.

Staged work planned around holidays

SFA Fire & Security said the day-to-day routine of a live educational setting meant installation work had to be completed in stages.

It said work was scheduled during the summer holidays and the following half-term break to avoid interrupting students and to maintain progress against deadlines.

The company said it used pre-stage device addressing to support faster on-site delivery.

Detection and control approach across spaces

SFA Fire & Security said the school included spaces such as a laboratory kiln room, an atrium and a sports hall, and that each required a tailored approach.

It said the glass-fronted atrium’s large coverage made point detection impractical.

Hochiki’s FIREbeam Xtra was installed to provide detection coverage at height across the atrium, according to the company.

SFA Fire & Security said it also used heat and multi-sensors to reflect room conditions.

It said multi-sensors were used in science rooms due to gases and smoke generated during lessons.

It said heat sensors were used in food technology rooms and kitchens to avoid unwanted activations from normal cooking activity while still detecting meaningful temperature changes.

Alarm tones configured for different incidents

SFA Fire & Security said it worked with school management to determine bespoke EN54 approved tones and patterns for sounders.

It said the tones were programmed so that different alarm types were distinct, including class change, lockdown and fire incidents.

It said the aim was to support quicker recognition of the alarm type and reduce confusion during response.

Project Director comment on integration

Naomi Fell, Project Director at SFA, said: “We have worked with Hochiki products over many years in various projects and environments and their reliability is top-class.

“Despite the tight deadlines, Hochiki’s ESP open protocol and versatile product range made it easy to integrate into the existing fire system, and easy for the school to operate.

“It’s a system that they can trust and use for years to come.

“We’re very proud to have been able to future-proof the safety of the school in this way.”

New Hochiki system eliminates waking watch costs at residential sites

Reliable fire detection replaces waking watch monitoring

Cornerstone Group has partnered with Hochiki Europe to replace waking watch systems with a fully compliant fire detection solution across three luxury apartment blocks in Gravesend, North Kent.

The new installation follows the removal of temporary waking watch arrangements that were introduced after fire risks were identified in high-rise buildings across the UK following the Grenfell Tower disaster.

Hochiki Europe said the new setup combines its ESP addressable devices, Latitude control panels and Ekho hybrid wireless units to deliver a flexible, open protocol solution suitable for long-term safety compliance.

Upgrading systems to meet modern safety standards

The company explained that the combination of hard wired and wireless devices provided full coverage with minimal disruption to residents.

ESP addressable detectors were installed in common corridors, while wireless Ekho devices were fitted within apartment hallways where cabling would have been impractical.

Latitude EN54 compliant control panels manage both device types within a single system, providing consistent event reporting and enabling future integration with other building safety technologies.

According to Hochiki Europe, this approach ensures both flexibility and scalability for evolving building requirements.

Installation challenges and project delivery

Cornerstone Group said that gaining access to individual flats presented challenges during installation, as appointments often needed to be rearranged to suit residents’ schedules.

The team maintained clear communication and worked around tenant availability to complete the works efficiently while ensuring every property was properly protected.

A representative from Cornerstone Group said: “We chose Hochiki because their product reliability is proven and the support in sales was very responsive.

“If we ever needed it, technical help was always first class and helped keep the project on schedule.”

Hochiki Europe confirmed that the final system now provides consistent and high performance detection across all three residential blocks, removing the need for manual monitoring and reducing long-term costs for building owners.

Relevance for fire and safety professionals

This project demonstrates how hybrid fire detection technologies can support the transition away from manual waking watch arrangements toward fully compliant systems that meet evolving safety regulations.

It provides a practical example for fire engineers, system installers and building services managers involved in high-rise residential safety upgrades.

The use of open protocol systems also highlights the value of flexibility and future scalability in addressing long-term fire risk management.

The case may inform future retrofit decisions in multi-occupancy residential settings where wiring constraints and access limitations are common.

Hochiki Europe survey highlights trust in advanced detection and wireless technologies

Customer survey confirms strong satisfaction across Hochiki Europe

Hochiki Europe has released findings from its 2025 Customer Survey, reporting high satisfaction with product quality, reliability and customer support.

According to the company, customers rated their experience highly in key areas such as product knowledge, friendliness and technical reliability.

The company said these results reflect strong trust in Hochiki’s people and products across specifiers, installers and facilities teams.

Service performance was also reported to have improved compared with the previous year.

Respondents noted better stock availability, faster delivery times and improved order accuracy following operational investments in planning and logistics.

Shinsuke Kubo, Managing Director for Hochiki Europe, said: “Customers trust Hochiki for robust, high-quality devices and responsive support, and we’re delighted to see that recognised so clearly.”

“The step forward in stock and delivery performance shows our operational investments are landing where customers feel them most.”

Customers highlight interest in wireless and cloud technologies

The survey identified emerging priorities among customers for future product development.

According to Hochiki Europe, customers showed most interest in aspirating smoke detection, cloud and remote access, multi-sensor devices and fully wireless systems for the coming two to five years.

Demand for control panels remained strongest in the half- to two-loop range, which aligns with a wide variety of projects across commercial, educational and public-sector buildings.

The company said this roadmap reflects evolving user expectations for flexible, connected fire-detection systems.

Sustainability and lifecycle design remain key focus areas

Sustainability was described as a major area of interest for many organisations participating in the survey.

Customers expressed particular concern for circular design principles and end-of-life product pathways.

These priorities, Hochiki explained, align with ongoing compliance and certification work across European markets.

Commenting on the survey’s broader outcomes, Kubo added: “I am very pleased with this year’s survey results. Customer service is at the forefront of what we do. We pride ourselves in delivering a best in class, value-added service to every customer.”

“For our customers to acknowledge this makes me very proud. These results reflect the hard work, dedication and commitment our entire team put into putting people first, which helps drive our success.

“I want to thank everyone who participated in this year’s customer survey. Your input and feedback are essential for continuing to create meaningful progress in how we support you.”

Relevance for fire and safety professionals

The 2025 Customer Survey results are relevant for system specifiers, installers, and facilities teams responsible for designing, maintaining and upgrading fire-detection systems.

Consistently high satisfaction levels indicate stable reliability in Hochiki’s equipment, which can support decision-making for projects requiring dependable detection and alarm devices.

The emphasis on wireless connectivity, aspirating smoke detection and cloud-enabled control points to growing adoption of digital technologies across building safety systems.

For procurement teams and project planners, the reported improvements in delivery and stock availability may translate to reduced delays during installation or refurbishment work.

The focus on circular design and end-of-life management also informs those managing compliance within European sustainability frameworks.

Hochiki to present fire safety systems at Intersec Saudi Arabia 2025

Hochiki to demonstrate fire solutions at Intersec Saudi Arabia

Hochiki Middle East has reported that it will present a range of fire detection technologies at Intersec Saudi Arabia 2025.

The exhibition will take place at the Riyadh International Convention and Exhibition Centre from 29 September to 1 October.

According to the company, the presentation will highlight systems designed to meet the regulatory, environmental, and operational requirements of projects in Saudi Arabia.

It said the products are tailored for high temperatures, rapid construction schedules, and compliance with the Saudi Building Code.

James Morrison, Hochiki’s Regional Sales Manager for the Kingdom, said: “We are not a security company that also does fire, fire safety is the only thing we do.

“This is our singular purpose and has been since we began in 1918.

“Every product, every piece of advice, and every local distributor is focused entirely on protecting lives and property.”

Compliance and international standards

Hochiki stated that it will showcase systems approved to both EN and UL standards, including devices tested to the UL 268 7th Edition requirements.

It explained that this standard is now mandated by Saudi regulations.

The company added that it requires improved smoke detection performance and reduced false alarm incidents.

Hochiki confirmed that its UL 7th Edition-compliant products are designed to meet these benchmarks while supporting installation efficiency and long-term operation.

It indicated that this allows developers to align projects with both Saudi and international safety expectations.

Product ranges on display

The manufacturer outlined that the exhibition will feature its Ekho hybrid wireless fire detection system, which is suited for retrofits, heritage sites, and complex buildings.

It said the Latitude fire control panel will also be shown, offering programmable alarm delays through a Hotel Mode function to reduce disturbance to guests.

The company noted that specialist ranges for ports, offshore platforms, and industrial operations will also be available for inspection.

It explained that these ranges are engineered for high-demand environments where compliance and reliability are key priorities.

Manufacturing and reliability

Hochiki advised that its products are manufactured in Japan, the UK, and the US.

It stated that testing processes are aligned with aerospace-level standards to verify reliability.

The company reported that its systems are currently installed in hospitals, schools, high-rise towers, and commercial buildings throughout Saudi Arabia.

It added that this international production and application supports its ability to serve the Kingdom’s fire protection market.

Alignment with Saudi Vision 2030

The group explained that its participation in Intersec Saudi Arabia is linked with Saudi Arabia’s Vision 2030 development programme.

It said that through compliant technologies and regional partnerships it aims to contribute to raising safety standards across the Kingdom.

The company commented that this approach also strengthens the role of advanced fire detection in wider infrastructure projects.

It advised that its presence at the event provides a platform to reinforce these objectives.

Relevance for fire and safety professionals

For fire and safety professionals in Saudi Arabia, the presentation offers an opportunity to examine UL 268 7th Edition-compliant systems in person.

The event also highlights the integration of EN and UL standards, giving practitioners insights into how both frameworks are being applied in the Kingdom.

For those working in construction, engineering, and inspection roles, the products showcased at Intersec may support compliance with Saudi building regulations.

Professionals will also gain awareness of new technologies designed for specific environments such as heritage properties and offshore installations.

Hochiki presents fire detection systems in Riyadh: Summary

Hochiki Middle East has confirmed it will attend Intersec Saudi Arabia 2025.

The event takes place in Riyadh from 29 September to 1 October.

The company will display EN and UL-approved products.

Devices tested to UL 268 7th Edition will be featured.

This edition is required under Saudi Building Code regulations.

It introduces stricter criteria for smoke detection.

The Ekho hybrid wireless system will be exhibited.

The Latitude fire control panel will be shown.

Marine and industrial ranges will also be presented.

Products are manufactured in Japan, the UK, and the US.

Testing is conducted to aerospace-level standards.

Hochiki systems are installed in hospitals, schools, and commercial buildings.

The firm stated this supports Saudi Vision 2030.

Its technologies are tailored for local conditions.

Regional partnerships form part of its strategy.

Fire and safety professionals can view the products at Hall 5, Stand E-10.