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.

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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.

The Last Word with Anthony D. Parfitt: How Ci Global is shifting UAE fire safety to prevention

Anthony D. Parfitt, Chairman & Founder of Ci Global, discusses how Ci Safe’s AI-driven system embeds electrical fire prevention into the UAE’s smart buildings

Now that Ci Global has established a presence in the UAE, how do you plan to integrate Ci Safe with existing building and safety infrastructures?

The UAE already operates within a sophisticated safety environment, with Civil Defence regulation, fire-detection systems and advanced building-management platforms in place.

Our integration plan is to embed prevention into that existing model.

Ci Safe is embedded within the building’s electrical infrastructure, where it continuously monitors thermal behaviour and can isolate power automatically if dangerous heat build-up is detected.

At building level, the system communicates through a secure gateway, allowing relevant safety data to interface with building-management systems and national fire-safety platforms, while also incorporating selected third-party sensors where required.

It is designed to operate alongside detection, suppression and smoke-control systems – adding a prevention layer beneath them so detection becomes the safety net, rather than the first line of defence.

What long-term goals does the company have for its UAE presence?

The UAE has prioritised smart city development, resilient urban growth and modern fire-safety standards.

That makes it a serious market for prevention-first fire protection.

Our long-term objective is to see electrical fire prevention embedded as standard across residential towers, villas and major developments – not as an upgrade or feature, but as baseline infrastructure.

We see the UAE as a strategic launch point for the GCC – a market where prevention can be demonstrated at scale and adopted across fast-growing urban environments.

Ci Safe is designed to prevent electrical fires at the source. Can you explain how its AI-driven and autonomous features work in practice, especially in environments where connectivity may be limited?

Ci Safe uses AI in two places – within the device and in the cloud.

At device level, AI continuously monitors electrical load and thermal behaviour in real time and identifies dangerous heat escalation before ignition.

If risk is detected, intelligent autonomy isolates power immediately at source.

That decision is made locally, so protection continues even without internet connectivity or cloud access.

In parallel, cloud-based AI analyses safety data across buildings, identifying recurring fault patterns and strengthening prediction over time.

Ci Safe monitors other safety risks. How do you see this system evolving to address a wider spectrum of building-safety challenges in the UAE and the region?

Electrical fire prevention is the foundation.

From there, the system expands into monitoring gas and water leaks with automatic shut-off, and environmental conditions that can lead to mould.

It can also recognise unsafe sounds, such as glass breaking, which may indicate a break-in or wider risk.

The longer-term evolution is about distributed intelligence across the building.

In high-rise environments, this can extend to real-time digital building mapping and drone visual support, giving emergency responders clearer visibility of emerging risk within complex structures.

That level of situational awareness can materially improve decision-making during an incident.

Buildings should not be passive structures that simply trigger alarms.

They should actively help protect the people inside them.

That is the direction this technology is moving.

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

Siemens launches cloud-connected fire detectors for autonomous building operations

Siemens fire detector launch in Zug

Siemens has unveiled its Sinteso Nova and Cerberus Nova fire detector portfolio in Zug on 27 March 2026, introducing a cloud-connected fire safety system designed for continuous monitoring.

The company said the detectors use IoT connectivity to support 24/7 self-checks, real-time monitoring, remote diagnostics and predictive maintenance across building environments.

The portfolio is designed for sectors including healthcare, higher education, data centres and commercial real estate.

It is also compatible with cloud-based applications such as Siemens’ Building X Fire Apps.

Siemens outlines detection technology and applications

Siemens said healthcare facilities can use the detectors for continuous supervision, with Disturbance-Free Testing (DFT) carrying out automated self-checks to reduce system downtime.

Smoke Entry Supervision (SES) monitors smoke entry points in real time, enabling earlier intervention when risks develop.

ASAplus combines multi-wavelength optical sensing with dual thermal detection to reduce false alarms and limit unnecessary evacuations.

In data centres, the detectors are intended to support operational continuity where overheating and electrical faults present fire risks.

For higher education and commercial real estate, the systems are designed to support centralised management across multiple sites through continuous monitoring and maintenance planning.

Upgrade approach and Siemens statement

Siemens said the detectors support stepwise upgrades in both new and existing buildings, with compatibility retained for existing fire panels.

The company said plug-and-play integration includes automatic transfer of configured settings, reducing installation time and associated risk.

Peter Nebiker, Head of Fire Safety at Siemens Smart Infrastructure Buildings, said: “The launch of our Sinteso Nova and Cerberus Nova fire detection portfolio is a game-changer in ensuring all alarms are accurate as best as possible.

“By moving from periodic checks to continuous, data-driven, self-supervising systems, we’re laying the foundation for truly human-centric, autonomous buildings.

“By automating testing, delivering real-time insights, and enabling remote action, these solutions protect people while freeing up staff to focus on strategic priorities.

“This shift isn’t just about innovation – it’s about smarter, safer, and more efficient operations,”

Siemens said the detectors carry its EcoTech environmental product performance label, use recycled plastics and form part of the Siemens Xcelerator portfolio developed and produced in Switzerland.

Honeywell launches gas sensor for fixed and portable detectors

Gas sensor launch for industrial detection

Honeywell has introduced a new gas sensor that uses optical non-dispersive infrared technology to detect flammable gases in industrial settings.

The NDIR Hydrocarbon Gas Sensor is designed to detect gases such as methane, propane and butane in sectors including mining, oil and gas, petrochemical and plastics manufacturing.

The company said the 4-Series NDIR Hydrocarbon Gas Sensor is designed to integrate into fixed gas detectors and portable units carried by workers in the field, deep underground or within a processing facility.

Honeywell stated that the sensor is intended for use in detectors that alert workers to potential exposure to hazardous gases.

Gas sensor design details for harsh settings

According to Honeywell, the sensor is designed for harsh conditions including dust in mines, methane leaks and extreme indoor versus outdoor temperature fluctuations.

The company said it includes an integrated condensation reduction system to clear excess moisture and maintain performance in humid environments and confined spaces such as refineries.

Honeywell also stated that the sensor has high poisoning resistance, which it said limits the risk of sensor failure and reduces instances of false positives.

The company said the infrared technology allows the sensor to consume less power than traditional flammable gas sensors, extending operational lifespan and prolonging a portable gas detector’s battery.

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.

C-TEC launches FastConvert zone converter for system upgrades

C-TEC FastConvert is built for retrofit upgrades

C-TEC has launched FastConvert, a four to eight-way conventional to addressable zone converter designed to upgrade multi-zone conventional fire systems to an addressable CAST system using existing wiring.

The manufacturer said the new product is fully compatible with its XFP and ZFP CAST fire systems and its CAST-PRO combined fire detection and alarm devices.

FastConvert is intended to support faster upgrades from conventional systems to addressable systems without replacing pre-existing zone wiring.

C-TEC said the product is designed to maintain zone circuit integrity without extending it into a loop or fitting end of line devices.

The company said this could reduce upgrade costs for fire alarm installers and sites.

C-TEC sets out target applications and webinar date

According to C-TEC, FastConvert is aimed at sites seeking to replace older conventional fire systems with addressable alternatives.

Andy Green, C-TEC’s Marketing Director said: “FastConvert is a clever innovation designed with the installer in mind.

“As fire detection and alarm technology has improved, more and more sites are looking to upgrade their old conventional systems to addressable, not just because the conventional devices are reaching end of life, but also because an addressable system can identify the precise location of a fire or fault, facilitate sophisticated cause and effects and reduce false alarms.

“We are definitely seeing this in schools, care homes and hotels where FastConvert is coming into its own as an ingenious retrofit upgrade solution which can utilise a conventional system’s existing zone wiring whilst maintaining compliance with BS 5839-1.”

C-TEC will host a webinar on FastConvert’s features on 23 April titled Need to upgrade your fire detection and alarm systems? We can save you thousands!.

The company has also published a datasheet covering the product’s zone circuit integrity function and installation detail.

Alerter Group to launch fire alarm devices for hearing loss at Birmingham event

Fire alarm devices to be shown at Birmingham event

Alerter Group will launch its next generation Deaf Alerter devices at The Fire Safety Event, which runs from 28 to 30 April at the NEC in Birmingham.

The company confirmed that the redeveloped devices, designed to provide fire alarm notifications for people who are deaf or hard of hearing, will be displayed on Stand J36 in Hall 4.

The new devices are rechargeable and include a larger LCD backlit screen for improved readability.

Notifications sent to the devices can also be delivered to Bluetooth-connected smart phones.

Fire alarm system compliance and product details

Alerter Group stated that the Deaf Alerter systems are compliant with BS 5839-1:2025 and use a National Roaming feature.

This allows the devices to receive notifications in any UK building displaying the Deaf Alerter sign.

BS 5839-1 Section 18 covers the special requirements for fire alarm warnings for people with impaired hearing.

Section 18 is described as the minimum acceptable standard by industry experts and is considered safe to use.

Company background and wider product range

Alerter Group has 25 years of experience in designing, manufacturing and installing radio-based emergency communication systems.

Its product range also includes Refuge Alerter, a wireless Emergency Voice Communication System enabling two-way communication between building management and refuge points.

C-TEC confirms Birmingham showcase for lockdown and evacuation systems

C-TEC at Fire Safety Event 2026

C-TEC will exhibit a range of life-safety systems at The Fire Safety Event (FSE) 2026 at the NEC in Birmingham from 28 to 30 April.

The company will be on Stand 4/F30 with CAST-powered systems and other products for fire safety, evacuation and communication.

The range includes new Lockdown Solutions described as monitored, battery-backed, multi-message systems for schools, theatres and other commercial and public venues.

The systems are designed to help venues comply with Martyn’s Law and include PA/VA solutions for larger projects.

HUSH-PRO will also be shown as a fully monitored BS 5839-6 Grade C residential fire alarm system for flats, apartments and other domestic settings.

EVAC-ALERT is described as a BS 8629:2019+A1:2023 compliant evacuation alert system designed to assist the fire and rescue service evacuate part or all of a building in an emergency.

C-TEC systems on display at Stand 4/F30

ZFP CAST will be presented as a touchscreen-controlled one to eight loop fire alarm system compatible with CAST-PRO combined fire detection and alarm devices.

ENVISION is a cloud-based Fire IoT remote access, data management, commissioning and maintenance solution compatible with C-TEC’s CAST-powered systems.

FASTCONVERT is described as a retrofit solution for converting a multi-zone conventional fire system to an addressable CAST system using existing wiring.

C-TEC will also display its SigTEL disabled refuge system, its AlertBuddy moveable deaf person’s alert system and Quantec-Pro next-generation call system.

Brian Foster, C-TEC’s UK Sales Manager, said: “The Fire Safety Event is now the industry’s key event.

“We’re looking forward to showing all our latest innovations at this year’s show including our new range of lockdown alert systems and our multi award-winning CAST-PRO combined detection and alarm devices.

“If you’d like to learn how our systems can help you grow your business, come and see us on Stand 4/F30.”

KiddeFenwal names Kathleen Houghton Vice President of Global Sales

KiddeFenwal appoints Kate Houghton

KiddeFenwal has appointed Kathleen “Kate” Houghton as Vice President of Global Sales.

The company announced Houghton’s return to the company in a LinkedIn post.

Houghton has more than 30 years of experience across fire and life safety, HVAC and industrial manufacturing.

Her role includes oversight of KiddeFenwal’s global commercial strategy.

The company said her focus will include scaling sales organisations and delivering value to customers worldwide.

KiddeFenwal wrote: “We’re thrilled to welcome Kathleen “Kate” Houghton back to Kidde-Fenwal as our new Vice President of Global Sales!”

Houghton’s previous role and background

Houghton’s return follows her time as Senior Vice President of Sales & Marketing at Hudson Technologies, where she led global strategy and revenue and margin performance.

The company said her career has included work in public and private equity-backed organisations.

It also said she brings experience in suppression systems and engineered solutions.

Houghton holds an MBA from Boston University.

She also holds a Bachelor of Mechanical Engineering (Honors) from Monash University and a Bachelor of Commerce (Marketing) from Monash University.

Advanced gains Environmental Product Declaration for MxPro 5 4-loop panels

Advanced panels receive verified lifecycle declaration

MxPro 5 4 -oop fire alarm control panels from Advanced now hold an Environmental Product Declaration (EPD), with independently verified data covering environmental impact across the full product lifecycle.

Advanced announced the declaration on 16 March 2026, stating that it was issued in accordance with EN 15804:2012+A2:2019 and ISO 14044/14025, and verified by BRE Global.

The EPD provides standardised environmental performance data for use in sustainability-focused specification and whole building assessment.

It was developed using a life cycle assessment (LCA) and presents cradle to grave data for the MxPro 5 4 loop panels, including carbon footprint and other impact indicators.

The declaration is intended to help consultants, designers and building owners assess how fire safety systems contribute to the environmental performance of a building or infrastructure project.

Advanced EPD covers full panel range

According to Advanced, the declaration applies across the full range of MxPro 5 4-loop panel configurations, including standard and deep enclosure formats, cross listed variants and Axis EN software variants.

The company said this means consistent environmental data is available across different configurations and compliance requirements.

The assessment is also being used to identify where environmental impacts occur across the product lifecycle.

That information is being used to inform product development, material selection and manufacturing efficiency, as well as energy use during operation.

Advanced said the EPD is valid for five years and will remain in force until March 2031, subject to the terms of the BRE Global verification scheme.

The company also said the MxPro 5 range was developed for longevity, flexibility and upgradeability to help extend system life and reduce waste over time.