The Last Word with Mandy Bowden, Fire Manager at Comelit-PAC

Mandy Bowden, Fire Manager Comelit-PAC talks compliance and wireless fire detection

Can you share some highlights of your journey with Comelit-PAC so far?

My journey with Comelit-PAC has been filled with growth opportunities.

What I cherish is the chance to contribute to the development of new products.

 This is not only through my sector expertise but also the level of listening to customer requirements, both from an installation perspective and end users looking for simple solutions.

Could you introduce us to Comelit-PAC’s latest product offering?

The key to success has been having the solutions available to deliver essential requirements.

 This is in line with the increasing demand for systems such as wireless fire detection and to allow for remote monitoring in the new hybrid working environment.

Comelit-PAC’s new wireless devices have been designed with LogiFire aesthetics in mind and to be placed in a building, connecting to the main system.

We believe we are one of the few to offer as standard an addressable wireless solution that can benefit from remote monitoring via cloud integration, especially useful to reduce reliance on waking watch facilities and associated costs.

 And one that can enable an integrated new build or retrofit solution for both residential and commercial applications.

How does this new product fit into Comelit-PAC’s existing portfolio?

Comelit-PAC’s new range of wireless fire detection devices seamlessly integrates with our popular LogiFire system, enhancing our robust alarm systems portfolio.

Ideal for situations where a wired solution may not be feasible, these wireless devices prioritise ease of installation and flexibility, eliminating the need for extensive cabling and reducing installation time and cost significantly.

With options for addressable and conventional transceivers available, our wireless addressable devices offer cloud and remote monitoring capabilities via our MyComelit app.

Our conventional transceivers can be installed as standalone units or alongside conventional wired devices, offering versatility in system configuration.

With a range of up to 1500m and a ten-year battery life expectancy, our wireless alarm devices ensure reliable and long-lasting performance.

Certified to EN54-25, EN54-17, and EN54-18 standards, they meet stringent safety requirements while providing smart and compliant solutions for early detection and prevention.

What are Comelit-PAC’s primary goals in the fire and safety industry?

Our primary goals revolve around innovation, integration, expansion, sustainability and continued commitment to excellence.

 We plan to expand our market reach, targeting new customers with our comprehensive range of products and services.

This includes exploring opportunities in emerging markets and forming strategic partnerships to enhance our presence.

The best way we can achieve this is to continue to prioritise the needs of our customers, offering exceptional service, tailored solutions, and ongoing support to ensure their safety and peace of mind.

We have a duty of care and responsibility to stay abreast of the latest regulations and ensure our products and practices maintain full compliance.

Bringing this all together, Comelit-PAC is renowned for its commitment to continuous investment in research and development, exploring futureproof technologies and methodologies to improve the efficiency, effectiveness, and reliability of our life safety systems.

This includes exploring advancements in areas such as IoT, AI, and machine learning.

By staying agile, proactive, and customer-focused, we are confident in our ability to lead the way in the fire safety industry.


Structural fire fighting response to marine incidents (part 2) By Paul E. Calderwood, Calderwood Consulting International

[Part 1 can be found here]

In February 1989 there was a vessel fire in Wilmington Delaware on the MV Centaurus and the following issues and problems were identified by the fire department:

  • Inability to communicate with the crew
  • Lack of knowledge of vessel systems and arrangement
  • Lack of knowledge of the fire control plan
  • Logistic of managing large amounts of foam concentrate, including protecting the foam from freezing temperatures
  • Difficulty in recharging large numbers of radios and flashlights during a prolonged operation
  • Difficulty in dewatering and controlling pollution from contaminated runoff

These and many other issues and problems will be faced by fire fighters and the command staff at a vessel fire and with proper pre-fire planning many of these can be eliminated or reduced.

All fires to a fire fighter can be a life and death situation, but with shipboard firefighting there is a heightened level of risk due to the unknowns.

Use of 30-minute air tanks may be only enough to get you to the fire but not able to exit from a lower deck or engine room.

There are a number of MIRT (Marine Incident Response Teams) Teams formed in the US today.

The make-up of these teams includes port area fire departments, USCG, special experts like marine architects and marine chemist and other agencies and departments that would be called upon to respond to a vessel fire.

These teams are used also to provide training and drills prior to actual events but it gives the responders the opportunity to meet each other and iron out any problems in a non-emergency situation.

Mutual aid training of fire fighters is an area of planning that will need extensive work to accomplish.

Every fire department is faced with legally mandated training, much of which is required to be repeated annually.

Finding the time, the vessels, competent instructors and a safe location to hold training is needed and not easy to do.

The basic training of fire fighters for responding to a shipboard fire is roughly 16 – 24 hours.

Now you have to factor in the typical day in the life of a fire fighter, shift starts at 8am, equipment checks and housework until 9am, training from 9-9:30 until lunch.

After lunch class could start around 1:30 until 5 pm, so in one day with breaks and lunch you will get about 6 hours’ worth of training in; unless there is a fire or a medical call.

Depending on fire department work schedules, vacation schedules, sick days and injuries it could take months to get everyone through just the basic training.

The hands-on training can be organized through multi-departmental drills with assistance from the shipping companies and the US Coast Guard.

The one item that can be pointed to as a problem at every fire that has not gone right is communications.

The command staff of a vessel fire should already be aware that they will have communications problems, especially trying to communicate with the fire attack teams below deck.

The comment about being able to communicate in any type of building can also be any type of vessel.

The steel construction of a vessel is going to cause problems on many levels but especially with communications.

During practical drills in Everett we have found that a standard portable radio can reach 2-3 decks below the main deck near a stairwell.

The use of radio relays or using the ship’s communications systems may be the only way to get messages back and forth.

A secondary issue of communications comes from the ability of the OIC to communicate in a common language.

The terminology of the marine environment and ships system is complicated; if an OIC has no idea what a ship’s crew member is talking about it is doubtful that he will go along with it.

During port calls, many of the ship’s crewmembers may be on shore leave and will be unavailable to assist in the emergency and with a language barrier it will be difficult to ascertain who is accounted for or missing.

A M.I.R.T. is a group of training individuals from the many different agencies and departments in the area that have practiced together and responded to actual incidents.

Special experts like marine architects, marine chemists and vessel stability are vital to have on scene throughout the event.

The M.I.R.T. team concept can help bridge the gaps that are left from the lack of training.

These experts can help OIC’s in developing attack plans that can actually keep fire fighters above deck and not have to enter spaces that can be attacked using ship systems.

The use of some indirect attack methods, like flooding a space with CO2, can help buy time for the OIC to arrange for further support and resources.

There are similarities in the basic construction and layouts but being familiar with a vessel will make a difference when an actual event occurs.

Training can be upgraded to practice drills where fire fighters board a vessel in turnout gear and simulate fire conditions, advance lines, do search and rescue, patient removals and systems operations.

Through the use of drills on actual vessels fire fighters will gain a working knowledge of how to operate on a vessel, how to find their way around the different decks and how to communicate.

The simple task of walking onto the ship, across the main deck and then down 4-5 decks to a smoke-filled engine room is not something an average fire fighter can physically do.

The command staff needs to know how to organize the attack on a fire and how to set up an accountability system to track all fire fighters and crew members.

The pre-fire planning that is needed in a port community needs to address all the different types of vessels that dock there.

Based on the different types of vessel the plan can be generic for all vessels or it may have to be specific to each type of vessel due to the size or hazards associated with the vessel.

In the back of the NFPA 1405 Guide there are generic forms that can be used to start your planning; the intent of the forms is to have a memory jogger that will assist the incident commander that is first assigned to the vessel fire to gather important information that can and will change during the course of the fire.

These changes need to be monitored but without a good base line to start with the changes may not seem to be as serious as they really are.

Things like the depth of the vessel in the water and any listing of the vessel to one side are important to note.

Accountability was one area that needs to be assigned to an officer at the beginning of the incident.

When coordinating the efforts of hundreds of fire fighters and the alphabet soup of local, state and federal agencies, there has to be a detailed method of accounting for everyone, especially those entering into the hot zones.

Control and check points need to be established at the vessel entrances and members need to check in when boarding and check out when leaving the vessel.

A secondary check point is also needed at the point where fire fighters are actually entering into the vessel to attack the fire.

The time they enter, and their air bottle pressure should be written down and an estimated time of return and their destination.

If the crew does not return within the given time period and is unable to be contacted the rapid intervention team should be sent in to search for them.

Crews can easily become disorientated below deck and travel to another exit point, but they should always contact the checkpoint where they entered to notify them that the team has exited the interior of the vessel safely.

If your department could be called on to respond to any type of vessel fire, please take the time and get the proper training to be able to safely and professionally respond and mitigate the situations.

I dedicate this article to Firefighter Augusto Acabou and Firefighter Wayne Brooks Jr., may they both Rest In Peace.

Contact me regarding available training programs in the US and International locations: dchiefpaul@aol.com

This article was originally published in the May 2024 issue of International Fire & Safety Journal. To read your FREE digital copy, click here.

Vox Ignis launches Unicorn Voice PAVA system with global first UL certification

New unified PAVA system from Vox Ignis receives UL certification to EN54-16

Worldwide voice alarm and safety communications specialist Vox Ignis has launched its new unified public address and voice alarm (PAVA) system, Unicorn Voice.

This launch marks a milestone as the system becomes the first globally to receive UL certification to EN54-16, as reported by .

The EN54-16 European standard specifies the requirements for voice alarm controls and other equipment used in fire detection and alarm systems.

Unicorn Voice is a scalable, wall-mounted PAVA system designed for ease of specification, installation, and configuration.

It can expand from a single panel to a fault-tolerant network of 64 multi-amplifier panels, with up to 256 speaker circuits supporting over 163,000 speakers according to BS EN 5839-8.

Features and capabilities

Unicorn Voice is programmed and managed via integrated touch screens or a PC.

The system offers a range of amplifier sizes and speaker taps to maximise power efficiency, and amplifiers can be hot-swapped.

The speaker range features plug-and-play installation for easy first-fix.

Additionally, Unicorn Voice supports pre-recorded and live voice messaging, background music, integrated fire telephones, disabled refuge, fire alarm visual alarm devices (VADs), and assistance alarms.

Anthony Smith, managing director of Vox Ignis, said: “Unicorn Voice is the result of a £multi-million development project and 30 years of leading experience.

It delivers a best-in-class feature set, a product that demystifies the voice alarm world and ensures the very best audio safety systems are available to the market.

“We are proud that this is the first product to have been tested and certified by UL to EN54-16, or any EN or UK standard.

I’d like to thank the UK and USA UL teams for their contributions.

Achieving UL certification is not easy, and that is why it is one of the most well-respected certification marks in the life safety industry.”

Comments from UL Solutions

Karine Johnfroe, Vice President and General Manager of the UL Solutions Built Environment Group, commented on the achievement: “For 130 years, our organization has been integral to enabling fire and life safety technology advancements.

Our pioneering safety science efforts and technical leadership in this area have empowered makers of fire safety equipment to help safeguard lives and property.

“We are honoured to continue this work as a notified and approved body for the Construction Products Regulation to EN and UK standards, and we commend Vox Ignis for working to demonstrate their product’s compliance.”

About Vox Ignis

Vox Ignis is a global specialist in voice alarm, emergency voice communication, and assistance call systems.

Designed and manufactured in the UK and sold under the Vox Ignis and leading OEM brands worldwide, its products amplify the safety of millions of people and buildings every day.

IFSJ comment

The launch of Unicorn Voice by Vox Ignis represents an important advancement in the field of public address and voice alarm systems.

The system’s ability to receive UL certification to EN54-16 underlines its compliance with stringent European standards, ensuring reliability and efficiency in critical situations.

Unicorn Voice’s scalability and user-friendly features make it a versatile option for various sites, enhancing safety through advanced technology.

The recognition from UL Solutions further validates the system’s quality and the dedication of Vox Ignis to fire and life safety.

As the first product globally to achieve this certification, Unicorn Voice sets a new benchmark for voice alarm systems, promising improved safety and operational efficiency.

The collaboration between Vox Ignis and UL Solutions highlights the ongoing efforts to advance fire safety standards and technology, contributing to the protection of lives and properties worldwide.

Hochiki Europe enhances fire safety training with equipment donation to Banham Academy

Continued partnership with Banham Academy

Hochiki Europe, recognised for its expertise in life safety products, affirmed its ongoing partnership with Banham Academy, a leading institution for fire safety engineering apprenticeships in the UK.

The company announced a substantial donation of fire safety equipment to the Academy’s London facility.

This contribution follows a successful donation last year to Banham’s Derby training centre.

The latest donation includes a range of ESP intelligent and CDX conventional devices, aimed at providing practical training to apprentices.

This initiative will equip them with the necessary experience in handling state-of-the-art safety technologies, crucial for their future careers in fire safety.

Statements from Hochiki Europe and Banham Academy

Shinsuke Kubo, Managing Director at Hochiki Europe, emphasized the importance of this initiative: “We are delighted to continue our support of Banham Academy.

“Equipping future fire safety engineers with the tools and expertise they need is essential for maintaining the highest standards of life safety.

“By providing apprentices with hands-on training on our industry-leading products, we are confident that they will be well-prepared to make a positive impact on the communities they serve.”

Kevin Faulkner, Operations Director at Banham Academy, expressed his gratitude: “Last year Hochiki were able to donate a vast range of equipment, this gave our Derby students invaluable real-world experiences.

“Hochiki manufacture some great products and of course we want to offer the best education to our students, so we were thrilled when they said yes to providing more equipment again this year for our London academy.”

Hochiki Europe’s commitment to fire safety education

Hochiki Europe’s renewed support for Banham Academy highlights the company’s commitment to nurturing a new generation of fire safety professionals.

Through its dedication to innovation and education, Hochiki Europe plays a crucial role in enhancing building and occupant safety across diverse regions including the UK, Europe, the Middle East, India, and Africa.

IFSJ Comment

Hochiki Europe’s ongoing collaboration with Banham Academy is a testament to the company’s commitment to fire safety education and its role in shaping the future of the industry.

By supplying state-of-the-art equipment for hands-on training, Hochiki is supporting the academic development of apprentices and ensuring they are ready to meet the demands of the field.

This initiative is a key example of how partnerships between industry leaders and educational institutions can enhance practical learning and professional readiness in critical sectors like fire safety.

Apollo Fire introduces advanced Tri-Sensor fire detector technology in the UK

Overview of Apollo Fire’s new tri-sensor technology

Apollo Fire Detectors Ltd has launched the Soteria Tri-Sensor Detector, a new addition to their fire detection offerings.

As reported by Apollo Fire, this technology combines dual optical sensing with a heat thermistor and a CO sensor to enhance fire detection accuracy.

This integration significantly reduces false alarms and promotes efficient safety measures.

The device is designed to address the urgent need for reliable fire detection solutions.

It promises enhanced accuracy through its triple detection capacity, effectively distinguishing real fire threats from false triggers.

Features and benefits of the Soteria Tri-Sensor Detector

The Soteria Tri-Sensor Detector is notable for its compatibility with various fire safety systems and its adaptability to different settings, such as theatres, prisons, and residential buildings.

This flexibility is further enhanced by the detector’s integrated isolator and tri-coloured LEDs, which simplify maintenance and troubleshooting procedures.

Moreover, the detector exceeds standard regulatory requirements, providing users with assurance of its reliability and performance.

Its Double-Knock verification feature demands activation from at least two sensors to trigger an alarm, adding an extra layer of verification that boosts its dependability.

Certification and market readiness

The new Soteria Tri-Sensor has undergone rigorous testing and has been certified to surpass existing safety standards, reinforcing Apollo’s commitment to quality and reliability.

The product also includes NT and MT modes, which provide varied response strategies depending on the detected threat, thus accommodating a broader range of environmental conditions.

This sophisticated technology not only aligns with the latest in fire safety regulations but also meets the needs of a diverse market, ensuring a wide applicability across different sectors and building types.

IFSJ Comment

By incorporating multiple sensing elements, Apollo has enhanced the accuracy and reliability of fire detection, which is crucial for safety in diverse environments.

This development demonstrates Apollo’s ongoing commitment to innovation and its proactive approach in addressing the complex demands of fire safety management.

Ramtech devices now compliant with PSTI regulations 2023

Introduction to PSTI compliance

Ramtech, a provider of wireless safety solutions, has announced full compliance with the Product Security and Telecommunications Infrastructure (PSTI) Regulations 2023.

The company, known for its advanced fire and security systems, has aligned its operations with the latest security standards effective from April 29, 2024, in the UK.

Details of the compliance

The PSTI Regulations 2023, which are part of the broader PSTI Act 2022, set forth specific security requirements for connectable consumer products.

Under these regulations, products like the REACT cloud platform and WES3 Connect must feature unique passwords or allow users to define them, enhancing security measures.

Additionally, Ramtech commits to providing security updates for its products for a minimum of five years in the UK, supporting their life-safety applications.

Security features and user support

The regulations also require a system for vulnerability reporting.

Ramtech addresses this through its Customer Experience team, which can be contacted for reporting product vulnerabilities.

This proactive approach ensures that issues are dealt with promptly and effectively, maintaining the integrity and security of their devices.

Products under compliance

Ramtech’s compliance includes several key products such as the WES3 system, REACT cloud platform, and the WiSE technology suite.

Each of these products has been designed to meet the stringent requirements of the new PSTI standards, ensuring enhanced cybersecurity for users.

Commitment to cybersecurity

Ramtech’s commitment to cybersecurity is evident in its regular third-party testing of platforms and devices to ensure the highest levels of protection.

By adhering to the PSTI standards, Ramtech demonstrates its dedication to providing secure and reliable solutions in the era of connected devices.

For more information on PSTI regulations, please visit the official government website.

IFSJ comment

Ramtech’s achievement in complying with the PSTI Regulations 2023 demonstrates a commitment to safety and security, alongside rigorous testing and compliance standards, provides a reliable safeguard for users, reflecting the evolving needs of today’s digital and connected environment.

Wildfire detection: Optimising hazard awareness with real-time data from Indji Systems

Importance of accurate wildfire data

Accurate wildfire information is increasingly crucial as wildfires become more frequent, posing significant risks to both residential areas and remote industrial locations.

The data provided by NASA’s Fire Information for Resource Management System (FIRMS) is particularly valuable to Indji Watch customers globally, aiding in the timely awareness of natural hazards.

This information is vital for utility companies and renewable energy providers who manage infrastructure like transmission lines and solar arrays in secluded areas.

In an article for Earth Data, Mark Carinello, the product manager for Indji Systems, highlighted the critical role of this data: “Having [wildfire] hotspot data available to any company in North America or anywhere in the world is hugely important,” Carinello said: “Without it, we and our customers would have much less awareness of where fires are right now and how they might impact their work.”

Technology and satellite data in fire detection

Indji Systems integrates satellite data into its Indji Watch system to offer real-time monitoring and alerts.

This system is essential for managing the risks associated with natural hazards like wildfires and lightning strikes.

Carinello explained the direct benefits of this approach: “If you have staff up on a wind turbine 100 meters above the ground in the open countryside of west Texas, you don’t want to be out there when there’s lightning.

“If you’re working in a canyon for a utility in California and there’s a wildfire 10 miles away, it might take you a while to get out of that area.”

The FIRMS platform provides critical near-real-time (NRT) and ultra-real-time (URT) data, which are instrumental in detecting and tracking wildfires.

This data includes satellite imagery, active fire, and hotspot information that helps users pinpoint the location, extent, and intensity of wildfire activity.

Enhanced fire detection capabilities

The integration of FIRMS data has proven indispensable for Indji Systems.

“Fire can a be a tough natural hazard to detect and getting the best information is a continuous challenge,” Carinello noted.

He further detailed the advantages of satellite data in fire detection, particularly in remote locations where traditional reporting may be unreliable.

FIRMS’ data, derived from instruments like the Moderate Resolution Imaging Spectroradiometer (MODIS) and the Visible Infrared Imaging Radiometer Suite (VIIRS), offers timely updates that are crucial for the safety of remote operations.

IFSJ comment

The use of advanced satellite data for fire detection and management by Indji Systems exemplifies the importance of technological integration in enhancing hazard awareness and infrastructure safety in the energy sector.

This proactive approach ensures the safety of personnel and minimizes the risk to critical infrastructure, showcasing a commitment to operational continuity and environmental responsibility.

Euralarm strengthens team with new technical manager for fire and extinguishing sections

Euralarm appoints Carlos Perez as new technical manager

Euralarm has announced the appointment of Carlos Perez as the new Technical Manager for its Fire and Extinguishing sections.

This development comes as Michael Scharnowsky retires from the role.

Carlos Perez is already a familiar face within Euralarm.

He has previously held a membership in the Extinguishing section and has served as a representative of the Spanish trade association and Euralarm member, Tecnifuego.

With a rich background in the fire safety sector, Perez is recognised as the Spanish expert at the Asociación Española de Normalización and formerly held the position of convenor for the fixed extinguishing equipment manufacturers section of Tecnifuego.

His previous roles include several management and engineering positions at Tyco Fire & Building Products and Johnson Controls before stepping into his new role at Euralarm.

Role and responsibilities

In his new capacity, Carlos Perez will offer technical support to the Fire and Extinguishing sections of Euralarm.

His duties will include keeping members updated on pertinent developments to aid in decision-making.

Perez will be focusing on gathering and disseminating information relevant to the industry and participating in both international collaborations and standardisation committees as well as working groups.

His efforts are aimed at enhancing the visibility of the industry and contributing to high safety standards in buildings.

Bosnia and Herzegovina unveils interactive GIS map to mitigate forest fire risks

Development and features of the new GIS map

Bosnia and Herzegovina has developed its first interactive Geographic Information System (GIS) map to identify areas vulnerable to forest fires.

This innovative tool aims to enhance preventive measures and risk management.

The map, accessible on the website ‘Za šume bez vatre’, highlights high-risk zones and is part of a broader project aimed at reducing the forest fire threat in the context of climate change across the country.

The project is supported by multiple local institutions and international partners, reflecting a collaborative effort to bolster environmental safety and awareness.

The presentation of the GIS map and a comprehensive draft roadmap for reducing forest fire risks took place at a workshop in Banja Luka, organized by the Forestry and Environment Initiative (FEA).

The event saw attendance from representatives of pertinent governmental and forestry entities, underlining the widespread recognition of the need for strategic planning in forest fire management.

Importance and impact of the GIS map

Project coordinator Lejla Hukić highlighted the significance of the map in improving responses to forest fire risks in Bosnia and Herzegovina.

The map is important for enhancing our understanding of forest fire dynamics and for planning more effective interventions, Hukić said.

She emphasised the expected outcomes of using the map, which include increased resilience to fires and reduced damage from such events.

The initiative underlines a significant step towards integrating technology and environmental management to safeguard natural resources and communities.

Moreover, the map facilitates comprehensive data collection, analysis, and visualisation of fire-exposed areas, streamlining the process for identifying key risk factors and priority areas for action.

According to Hukić, the tool will be beneficial to a wide range of stakeholders, from policymakers to local communities, enhancing the collective capability to address forest fire threats effectively.

Regional significance and expert insights

Miroslav Rakita, representative of the Landscape Fire Management program, mentioned that this GIS map is among the first of its kind in the region, setting a precedent for neighbouring countries.

He also critiqued the existing official data, suggesting that it often underreports the extent of fire damage, an issue the new GIS map aims to correct.

Rakita further noted the discrepancies in official reports concerning the area affected by fires in the Republic of Srpska, indicating a figure twice as large as reported.

“I can conclude that satellites don’t lie and I believe data used this way is more relevant than official data, which is often not regularly updated,” Rakita said.

This statement points to the critical role of reliable data in environmental management and the potential for technology to provide more accurate insights than traditional methods.

IFSJ Comment

By leveraging digital technology and collaborative efforts, the introduction of an interactive GIS map by Bosnia and Herzegovina aims to enhance the immediate response to fires and also contributes to long-term environmental planning and safety.

Such technological advancements are crucial for countries facing increasing threats from natural disasters, exacerbated by climate change.

OroraTech forms partnership to enhance global forest fire management

OroraTech collaborates with GREEN+ Programme to protect global subnational areas

OroraTech, a company known for its orbital wildfire detection and management solutions, has announced a partnership with the GREEN+ Programme.

This exclusive agreement marks the first of its kind and aims to provide comprehensive forest fire management services.

The partnership will cover millions of hectares of protected areas managed by sub-national governments across the world.

This collaboration will empower local leaders and emergency teams to monitor and combat destructive fires within their jurisdictions, enhance detection of deforestation, and aid in the conservation of local forests.

The initiative also supports the GREEN+ Programme’s goal to preserve biodiverse and critical carbon stocks globally, particularly in South America and beyond.

Key features of the partnership

According to Axel Roenneke, Chief Commercial Officer of OroraTech: “With our Wildfire Solution platform, we are providing valuable access to easily monitor and protect widely dispersed forest areas.”

He expressed pride in supplying the tools necessary for GREEN+ Programme and its partners to sustain the integrity of their carbon future projects.

The partnership, encapsulated in the ten-year GREEN+ WATCH initiative starting in 2025, will significantly enhance the global monitoring of local government-managed natural areas.

OroraTech’s technology will be pivotal in providing real-time updates on wildfire situations, thus bolstering emergency responses.

Moreover, the partnership facilitates access to data from hotspot clusters through the GREEN+ Programme’s public platform, allowing widespread visibility of these critical environmental situations on their website.

Sebastian Navarro, Secretary-General of CC35, highlighted the broader implications of this collaboration: “We will work to make GREEN+WATCH a powerful democratization tool for global citizens to monitor the planet’s subnational protected areas.”

 He also noted that this exclusive contract with OroraTech is aimed at enhancing the conservation of protected areas to 30% by 2030.

Broader impact and future prospects

This initiative is monitored by entities like the CC35 Secretariat, which ensures the accurate and reliable implementation of climate change mitigation strategies in these vulnerable ecosystems.

The agreement promises to create the right incentives for preserving these areas while supporting the GREEN+ Programme’s mission effectively.

The future is wireless

Martin Lee, Business Development Manager at Hyfire, discusses the advancements and future direction of fire detection systems

With a career that transitioned from an engineering apprenticeship to spearheading developments in fire detection, Martin Lee, Business Development Manager at Hyfire brings nearly three decades of expertise to Hyfire, a company recognised for its innovative approach in the sector.

Founded in 2007 and later acquired by Halma in 2018, Hyfire has made considerable strides in the market with its advanced wireless and hybrid fire detection systems.

Hyfire’s flagship product, Taurus, is designed for efficient installation in various architectural environments, reducing the need for extensive cabling and thereby facilitating quicker and less intrusive setups.

IFSJ Editor Iain Hoey sat down with Martin to find out about Hyfire’s wireless detection systems, overcoming installation challenges, and the future of fire safety.

What was the inspiration behind the development of the Taurus wireless and hybrid fire system technology?

Taurus, which has been on the market for around four years, is our flagship offering, which most people opt for today, especially when purchasing a new system.

For most end-users, a fire system is a passive element in their building—tested periodically and mostly unnoticed unless a fire occurs.

It quietly performs its critical functions in the background.

It’s the engineers who install, commission, service, and maintain these systems that interact with them the most, so  when we developed Taurus, we thoroughly considered it from an engineer’s perspective.

What are the advantages of using wireless fire detection systems over wired ones?

Typically, a traditional fire system involves installing thousands, sometimes tens of thousands, of metres of fire-rated or fire-retardant cables throughout a building.

Eliminating the need for such extensive cabling reduces material costs and decreases the need for containment and the infrastructure necessary to support these cables within the building.

When retrofitting a wireless fire alarm in an existing building the reduction in builders’ work, redecorating and fire stopping involved offers substantial cost savings.

The speed of installing a wireless system is particularly beneficial in scenarios involving refurbishments, retrofits, or upgrades of existing buildings.

For the end user, replacing a fire system in a fraction of the time means less disruption and a shorter period during which engineers need to be on-site, allowing for a rapid return to normal operations and ensuring business continuity.

Wireless or hybrid systems are an excellent choice, especially in occupied or older buildings such as hotels, student accommodations, care homes, and hospitals.

In these environments, the presence of construction teams and the associated disruption from traditional installation methods can be particularly challenging.

A wireless or hybrid approach minimises these disruptions.

What are some of the key features of the Taurus system?

One of the standout features is its incorporation of the latest technology and components.

This aspect is crucial, given the rapid advancements in technology across all sectors.

Taurus systems utilise cutting-edge technology to achieve a reduction in size, a vast improvement compared to the bulky early models of wireless systems that were used mainly as a last resort.

Early models were large due to their high battery and power demands.

Now, our devices look good and are also comparable in size and appearance to their wired counterparts, ensuring they integrate seamlessly into any building’s aesthetics.

As Taurus is designed with the engineers in mind, each product features a unique QR code, simplifying the installation process.

Engineers can scan the QR code with their webcam or any handheld scanner, and then drag and drop the device within our software.

This eliminates the need for manual programming and the use of additional programming devices, which previous systems required.

The process is as intuitive as using a laptop – it’s a case of ‘click, drag and drop’, a sharp contrast with older systems, where programming could be so complex that it almost required a qualification in software coding.

What are the challenges around maintaining wireless fire detection systems?

One of the primary challenges was battery life.

Since these products are independent and not physically connected to a power source, they rely entirely on their internal batteries.

Historically, frequent battery changes have been off-putting for potential users.

With the development of Taurus, we focused on improving battery life.

Our detection devices now offer up to 10 years of battery life – a substantial increase over the industry standard of up to three years.

How does Hyfire maintain communication integrity and synchronisation across devices?

A common question I often address in business development discussions concerns the reliability and dependability of wireless systems.

With Taurus, we specifically aimed to make the system robust and reliable.

The system utilises transmitters which are strategically placed throughout the building.

These devices handle the send and receive communications for all fire alarm detectors and sounders within the facility.

In the past, early systems relied heavily on amplifiers or large aerials to boost signals across a site or attempted to hop signals from one device to another – all of which often lacked reliability.

Instead, Taurus utilises multiple transmission devices, akin to having several Wi-Fi routers to ensure comprehensive coverage.

This setup ensures a robust, reliable network across the building.

Another key aspect of our system is its ability to synchronise communications effectively.

This synchronisation is essential for the operation of sounders and visual alarms, which must activate simultaneously to avoid disorientation or confusion among the building’s occupants.

This capability is both an engineering achievement and a critical safety feature, enhancing the system’s effectiveness during emergencies.

How do you see the fire and safety industry evolving in the near future?

We believe the industry is moving from wired to wireless systems.

Historically, wireless systems were a niche solution suited for environments like stately homes or museums where wiring is impractical.

However, as these systems have improved in reliability and the costs associated with maintenance, like battery replacements, have decreased, they are becoming a more mainstream choice.

This shift is partly due to the scarcity of skilled engineers.

The falling number of apprenticeships over the years has led to a reduction in skilled labour, making the easy installation and setup of wireless systems particularly appealing to the current generation of engineers.

Over the next decade, I expect we’ll see a shift towards predominantly wireless systems, as the industry and its practitioners increasingly recognise and trust the reliability of wireless technology.

What projects or product innovations is Hyfire currently developing?

Recognising the increasing demand for mobile connectivity, we have developed a new product specifically designed to integrate with the Hyfire Taurus system.

This will enable the fire detection system to connect to the cloud, allowing for enhanced interaction through a mobile app.

Users will be able to receive notifications about fires and faults, as well as access detailed diagnostics and compliance information directly from their mobile devices.

We’re looking at developing apps that could allow for the full commissioning and setup of systems directly from a smartphone.

This is part of our long-term roadmap to integrate more sophisticated digital tools into our offerings, enhancing both functionality and user experience.

How does Hyfire plan to contribute to the future fire safety landscape?

I believe the future of fire safety is moving towards greater use of wireless technology.

Installing a new fire system within this limited timeframe is a considerable challenge, yet with a wireless system, it becomes achievable.

This efficiency is leading many to recognise the benefits of wireless as a preferred solution due to its quick and easy installation, whilst allowing for more projects to be completed with fewer engineers, enhancing productivity.

Hyfire is at the forefront of this movement, and we see enormous potential, particularly in Europe, where many historic buildings could benefit from wireless systems.

The technology is not as widespread in mainland Europe as it is in the UK, presenting an opportunity for expansion.

We have operations in Italy and strategic partnerships in Norway and South Africa and anticipate further expansions across Europe, Africa, and the Middle East.

The future is also digital.

The trend is moving towards managing fire safety systems via mobile devices rather than traditional methods involving laptops and physical connections.

This will likely lead to systems being monitored, controlled, and configured entirely through mobile phones and tablets.

The fire safety industry, while traditionally slow to adopt new technologies due to stringent regulations, is beginning to embrace these changes.

This article was originally published in the May 2024 issue of International Fire & Safety Journal. To read your FREE digital copy, click here.