Advanced to exhibit fire panels at Intersec Saudi Arabia 2024

Advanced to participate in Intersec Saudi Arabia for the first time

Advanced, a global provider of fire safety solutions, will participate for the first time at Intersec Saudi Arabia, which is scheduled from 1st to 3rd October 2024.

The event, held at the Riyadh International Convention Centre, is a key exhibition for the security, safety, and fire protection industries.

Advanced will be located at stand 3-C36, where it plans to exhibit its range of fire panels, including the Axis AX, Axis EN, and MxPro 5.

The Middle East team will be available to offer insights and demonstrate the capabilities of their latest fire safety technologies.

Fire safety products to be showcased at stand 3-C36

During the event, Advanced will focus on showcasing its innovative fire panel systems, specifically the Axis AX, Axis EN, and MxPro 5.

These products are known for their reliability and effectiveness in fire safety management.

The company’s Middle East representatives will be on-site throughout the event, providing expertise and engaging with attendees.

Intersec Saudi Arabia offers a platform for Advanced to demonstrate how its products can address fire safety challenges in different sectors across the region.

Intersec Saudi Arabia recognised as a key event for safety professionals

Intersec Saudi Arabia is in its 6th edition and has grown substantially since its inception.

Organised in association with the Ministry of Interior and Saudi Civil Defence, it has become the largest platform in the Kingdom for professionals in the security, safety, and fire protection industries.

The event attracts industry leaders and experts from around the world, aiming to foster innovation and collaboration in fire and safety technology.

Advanced highlights the importance of engaging with industry leaders

Sasi Kumar, Advanced’s General Manager for Fire Systems in the Middle East, highlighted the company’s excitement about joining the event.

He said: “We are delighted to be exhibiting at Intersec Saudi Arabia for the first time.

“This event presents an invaluable opportunity for us to connect with industry leaders, showcase our latest technologies in the UL and EN range, and reinforce our commitment to enhancing fire safety across the region.”

Visitors are encouraged to stop by Advanced’s stand to learn more about their fire safety solutions and how they can be applied in various settings.

Advanced to exhibit fire panels at Intersec Saudi Arabia 2024: Summary

Advanced will exhibit for the first time at Intersec Saudi Arabia, which will be held from 1st to 3rd October 2024 at the Riyadh International Convention Centre.

The company will showcase its fire panel products, including Axis AX, Axis EN, and MxPro 5, at stand 3-C36.

The Middle East team will provide expert advice to attendees throughout the event.

Intersec Saudi Arabia, organised with the Ministry of Interior and Saudi Civil Defence, is the largest platform for professionals in the safety, security, and fire protection industries.

Advanced’s General Manager for the Middle East expressed the company’s excitement to connect with industry leaders and demonstrate its technologies.

London fires prompt WMC’s call for enhanced building safety with fire survival cables

Wrexham Mineral Cables (WMC), a leading UK cable manufacturer, is calling for better building safety standards through the use of fire survival cables before more lives are put at risk.

WMC’s call to action comes after the recent fire in a residential tower block in Dagenham, east London, which required the evacuation of 80 people. The incident occurred just weeks after a blaze at the historic Somerset House, home to priceless artworks.

WMC says these high-profile fire events underscore the urgent need for building designers and specifiers to identify and install appropriate cables that can survive – not just resist – real-life fire scenarios.

Currently, specifiers are presented with a choice between polymeric cables and mineral insulated copper clad (MICC) cables. Due to the existing testing regime, both cable types are classed as fire-resistant, creating a misleading impression of equivalence. However, MICC cables have consistently demonstrated superior performance and proven to perform to higher safety standards in ‘real fire’ scenarios.

In 2023, WMC published a white paper outlining how cables – often an overlooked component of a building’s system –directly impact building safety. The paper advocates for the introduction of a higher classification of fire survival cable, which can continue to power critical circuits in the event of a fire.

Colin Hughes, Group Manager at WMC, commented: “Last year, the UK Government introduced stricter building regulations in England as part of new secondary legislation to implement the Building Safety Act. Sadly, recent events in London remind us that buildings of all types remain at a high risk of fire, and we must take every measure to ensure their safety.

“Fire survival cables are a vital component of building safety, yet they often remain an unrecognised hazard. Due to the lack of understanding about the important role they play in keeping buildings safe, all too often inferior cables are frequently installed, which may prove inadequate in the event of a fire. This uncertainty can only be addressed when all fire-resistant cables, regardless of size or construction, are subjected to true fire scenario tests. “At WMC, we are committed to educating the market about the advantages of specifying MICC fire survival cables.”

Five reasons for cloud-connected fire safety systems with Siemens

Peter Nebiker, Head of Fire Safety at Siemens Smart Infrastructure, shares the key benefits of cloud-connected fire safety systems for building owners, service providers and safety managers

Building owners, safety managers, service providers and other operators face multiple challenges when it comes to managing the safety of buildings – especially fleets of sites.

A lack of digitalisation and silo-based systems are just a few of the hurdles that make it more difficult for them to work efficiently.

However, cloud-connected fire safety systems not only create transparency into building fleets, but also simplify the jobs of operators, such as service providers and safety managers.

They enable us to monitor all the data – such as fire locations or status of alarms and detectors – through a browser-based web application or a mobile application remotely.

Ultimately, fire safety systems enable operators to manage the fire safety maintenance of buildings efficiently, including remote commissioning and monitoring of fire systems, testing of detectors, system reporting.

And here’s how they work: Cloud-connected fire safety systems provide a method of communication from a fire control unit to a cloud server.

The fire control unit is connected via a cloud gateway to the internet.

The transmitted data from the cloud gateway can be further processed using dedicated cloud applications or application program interfaces (API).

Here are the five key benefits:

#1: Enhanced service efficiency and system performance

As building owners are able to store their site’s documentation in the cloud, service providers – such as technicians – can monitor the system status remotely on a 24/7 basis.

Fire safety service providers are therefore able to plan, execute, and report their maintenance more efficiently.

Additionally, technicians can streamline tasks and better prepare for a site visit in terms of spare parts, needed tools as well as estimated working hours.

This not only increases efficiency, but also reduces the number of site trips.

Another key benefit is the ability for service providers to optimise system performance thanks to comprehensive data insights.

Cloud services also offer several additional features, including visibility of entire lists of network panels or peripheral system devices, as well as diagnostic data from these devices and systems.

Ultimately, building owners take also advantage of it: Thanks to an optimised system availability, they can even better protect people as well as assets, while ensuring business continuity.

#2 Transparency and system compliance

Some of the key advantages of cloud connectivity, with remote access, are the automation of – formerly – manual work, such as completing digital log-files and the fulfillment of regulatory obligations that go with it.

This includes the ability for authorised and qualified personnel to remotely access panel configuration files and history logs, and even test devices remotely with minimal disturbance for building occupants and without compromising the detection capability.

Automated event documentation supports in creating error-free and compliant inspection reports.

This allows owners to have a comprehensive overview of their life safety system, while providing another safety and security layer for building occupants.

#3 Predictive maintenance through data insights

Considerable amounts of data – made available by the cloud-based system – build the basis for further efficiency potential.

Typically, an on-site cloud gateway will transmit data from the fire control unit via the internet to the cloud.

API or software solutions will then process this data to be reviewed in web portals or mobile application interfaces.

The web portal or mobile app can be set up individually to meet customers’ needs for specific insights – such as viewing a smoke detector’s soiling value or reading a carbon monoxide (CO) sensor’s planned preventive maintenance (PPM) value.

Ultimately, data can be utilised for predictive maintenance as well as to ensure that the equipment and peripheral devices work properly.

#4 Quick and comprehensive overview for first responders

In case of incidents, cloud-connected fire safety systems can significantly reduce response times.

Events can be reported in a timely manner due to an instant connection to the fire control panel.

Access to the cloud-connected fire safety system or app notifications, with its real-time data updates, adds another information layer for incident officers.

This enables them to assess any upcoming situations quickly, accurately and in real-time.

Additionally, most fire safety systems provide notification services, which allows users to receive SMS and email alerts for any events, such as alarms, incidents, or supervisory needs.

#5 Enhanced cybersecurity and data protection

Cybersecurity and data protection are fundamental concerns when it comes to cloud connectivity.

They are crucial for preventing malicious attacks that could compromise the integrity of the fire safety system and its peripheral devices.

Therefore, designing and utilising cybersecure cloud-connected products is of utmost importance.

Built-in cybersecurity features can increase safety, while ensuring business continuity.

In case of an incident, managers can fix fire protection systems quickly and seamlessly.

The requirements for data are simple: Data must be up to date, accurate, and must be able to be filtered and sorted.

The evolution of fire safety systems

As the need for increased digital transformation, transparency and efficiency rises in the buildings sector, cloud-connected fire safety systems, along with advancements in hardware and peripheral system devices, will be a crucial technology.

The more data points sensors can capture, the more cloud applications can analyse and report.

Predictive maintenance will become more streamlined, and response time to emergencies much faster.

The deployment of Artificial intelligence (AI) can even enhance predictive maintenance.

Ultimately, it is clear that cloud connectivity in smart buildings and specifically in fire safety systems is key when it comes to promoting safety and the protection of life and assets.

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

Critical Moments, Critical Measures: Minimising fire risks in recycling plants with NetVu

NetVu’s CEO, Mike Newton, shares insights on minimising fire risks in recycling plants through video analytics and real-time verification systems

Sadly, we have seen too many times, the devastation caused by fires in recycling and waste management plants across the country.

Whether started by accident or through a deliberate act, the consequences are far reaching.

The key to minimising the impact of these incidents is prompt fire detection, because once the fire becomes established, it may be too late, and the incident quickly gather momentum.

Every second counts.

Fire detection at inception

Waste recycling facilities have become pivotal in environmental sustainability, processing, and repurposing of the materials that are generated and consigned to the rubbish bin.

It is well understood that these environments are susceptible to significant fire risks because of the highly combustible nature of the materials they handle day in, day out, with the presence of machinery, electrical equipment, and other potential ignition sources adding to the risk.

This has been magnified in recent years by the increasing use of lithium batteries in so many consumer goods.

Fires in waste management and recycling facilities can lead to substantial financial losses, cause environmental damage, and ultimately endanger lives.

Protecting against these risks is vital, and as a result, our team at NetVu has developed FireVu, a video detection and visual verification solution designed to provide early warning and rapid response to fire incidents.

The system uses advanced video analytics to detect smoke, flames, and heat at inception.

Using FireVu’s real-time verification, staff and emergency services can quickly assess an incident, make informed decisions, take appropriate action, and trigger suppression systems.

The importance of speed in fire detection and response

Rapid identification and prompt action can drastically reduce the cost of damage and prevent small fires from escalating into a major incident.

It doesn’t take long for a blaze to get out of control, and can take days to be extinguished, also putting substantial pressure on the resources of the emergency services.

For example, an incident in 2013 at a facility in Bredbury in the north west of England, was reported to involve the combustion of large bales of recyclable materials.

The fire took hold very quickly, and the emergency services were tackling the blaze for several days after it started.

The impact was far reaching, also causing major disruption to the local area including residents, and the ash and smoke from the fire was suspected to reach as far as Leeds, a city more than 50 miles away from the site.

Immediate reporting and user feedback

FireVu has established a significant track record in not only providing accurate fire detection, but also allowing for rapid verification and action.

It is the seconds saved at the stage of verification that has the most impact, exponentially minimising the scale of an incident and the potential losses.

In FireVu, we have achieved this through using a combination of Video Flame Detection (VFD) and Video Smoke Detection (VSD) technology, offering real-time alerts and delivering visual feedback to users.

The system identifies the source of a fire on screen, allowing operators to verify the incident rapidly and take any necessary action.

The ability to remotely access and review incidents from any location is another feature of the functionality of FireVu, allowing operators to monitor and manage fire risks even when there are no personnel on-site.

Benefits of immediate reporting

Immediate reporting and user feedback are crucial for several reasons:

  1. By pinpointing the exact location of a fire, FireVu’s system enables operators to verify the incident quickly.
  2. This rapid verification process is essential for distinguishing between real fires and false alarms, ensuring that resources are deployed efficiently.
  3. With real-time alerts and visual feedback, operators can initiate a prompt response to the detected fire.
  4. This timely action can prevent the fire from spreading and causing extensive damage, reducing the overall impact of the incident.
  5. Immediate reporting enhances the safety of people working in recycling facilities.
  6. By providing real-time information about the location and severity of the fire, FireVu enables staff to take appropriate safety measures and evacuate if necessary.

The challenge of fast detection and rejecting false positives

One of the biggest challenges in fire detection is distinguishing a real incident from a false positive.

False alarms can be costly and disruptive, leading to unnecessary shutdowns.

FireVu addresses this challenge with its unique flame, heat, and smoke detection system, which includes:

  1. The measurement of Black Body Emitter signatures which arise from burning hydrocarbons – i.e. soot glowing creating the yellow and red flame characteristics.
  2. Correlating these colours with absolute intensity, and applying physical laws, allows the system to make fast, reliable alerts.
  3. Thermal sensors further reduce false alarms by verifying the heat source, and in addition detecting heat build-up before flames are visible, including identifying fires that are growing beneath the surface.
  4. This early detection capability is particularly valuable in recycling facilities, where fires can smoulder for extended periods before any flames are visible.
  5. These sensors also help to distinguish false positives such as sunlight bouncing off a puddle, or a wet plastic bag blowing in the wind.
  6. We have also introduced powerful thermal profile algorithms to measure small changes or differences in specific circumstances.
  7. Finally, FireVu also uses a visual smoke detection algorithm, providing advanced early warning, even if a fire has started outside of the field of view and the smoke may be spreading to other areas.

Waste management and recycling facilities must prioritise fire safety to protect their operations, personnel, their local communities, and the environment.

Implementing advanced fire detection systems is essential for achieving this goal.

By addressing the unique risks and challenges associated with fire detection in these types of environments, FireVu’s technology ensures that these facilities can continue to operate safely and efficiently, contributing to a more sustainable future.

Case Study

NetVu and Fire Shield have come together to forge a powerful strategic partnership to deliver rapid fire detection, verification, and suppression.

The agreement creates a comprehensive solution that brings together the rapid fire detection and verification capabilities of FireVu with Fire Shield’s systems designed to detect and automatically deploy extinguishing agents, including water, foam, or gas, to suppress the fire.

The partnership provides the ultimate automatic detection and suppression solution for the challenges of the waste and recycling, waste to energy industries, and other similar environments.

The system also allows detailed incident review through footage retrieved from NetVu video detectors, enabling a thorough analysis of the fire’s origin, behaviour, and effectiveness of the suppression response.

This comprehensive approach not only addresses the understanding of past incidents, but also aids in developing future mitigation strategies.

For more information visit www.firevu.com. Meet the team at RWN on 11-12 September on the Fire Shield Stand (No. CT-F212) and Recycling Expo on 15-16 October (Stand T40).

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

Cheshire West and Chester Council adopts Aico Ei3030 alarms for enhanced resident safety

Cheshire West and Chester Council integrates new safety technology in housing stock

Cheshire West and Chester Council (CWAC) has adopted Aico’s Ei3030 Multi-Sensor Alarm as part of its housing stock upgrade and replacement programs.

As reported by Aico, the council is using these combined Optical, Heat, and Carbon Monoxide (CO) alarms to enhance resident safety.

The Ei3030, launched in summer 2023, is becoming widely adopted in social housing due to its reliability and ease of use.

This advanced alarm integrates three sensors in one unit, providing accurate detection of both fire and CO, reducing the need for multiple devices.

The alarm also features Intelligent Dust Compensation and software that enables real-time data extraction and monitoring, facilitating proactive safety measures.

Future enhancements through Aico’s HomeLINK technology

CWAC’s adoption of the Ei3030 Multi-Sensor Alarm also opens the door for future integration with Aico’s HomeLINK Technology.

Should the council decide to make further improvements to its housing portfolio, this technology would allow for monitoring of issues such as damp, mould, and indoor air quality, as well as ensuring compliance.

The HomeLINK solution is powered by the Ei1000G Gateway, which collects data through Aico’s Environmental Sensors.

These sensors provide landlords with actionable insights, accessible through the HomeLINK Portal, to improve tenant safety and housing conditions.

Installation and training by Liberty Group

The installation of these multi-sensor alarms in Ellesmere Port properties was carried out by the Liberty Group.

Their team participated in Aico’s Expert Installer Training earlier this year, equipping them with the necessary knowledge to efficiently install domestic fire and CO alarm systems.

James Fishwick, Electrical Contracts Manager for Liberty Group, expressed satisfaction with the new alarms: “This is such a good alarm and ticks so many boxes in one go.

“We were keen to start fitting them as soon as our client gave us the new specification.

“We’re now starting to see them on others around the country as well. It’s a no brainer.”

Support and reliability of Aico’s products

Aico’s products, including the Ei3030 Multi-Sensor Alarm, are manufactured in Shannon, Ireland.

Each unit undergoes rigorous testing to ensure reliability and accuracy.

Aico’s network of 32 Relationship Managers across the UK is available to provide guidance and support for implementing Aico’s home life safety systems.

Carl Traynor, Aico Relationship Manager for Merseyside, highlighted the benefits of the combined unit: “As a former electrician and compliance manager myself, I was used to fitting multiple alarms to cover both smoke and CO.

“I was always particularly cautious around the migration factor, where CO can be produced in one room or even an adjacent property and have devastating consequences on another.

“This combined unit is ideal to mitigate these risks.”

Cheshire West and Chester Council adopts Aico Ei3030 alarms for enhanced resident safety: Summary

Cheshire West and Chester Council has integrated Aico’s Ei3030 Multi-Sensor Alarms into its housing stock as part of its safety upgrade programs.

These alarms, launched in summer 2023, are gaining popularity in social housing for their reliability and ease of use.

The council’s adoption of this technology allows for potential future integration with Aico’s HomeLINK system, which provides comprehensive monitoring and safety insights.

The installation was carried out by Liberty Group, whose team underwent specific training for this purpose.

Aico continues to provide reliable and well-supported safety solutions, with all products manufactured and rigorously tested in Shannon, Ireland.

IoT satellite solution for early forest fire detection to be showcased by Kineis at AFAC 2024

Kineis to unveil satellite-based fire detection technology at Sydney’s AFAC 2024

Kineis, a French satellite operator, will showcase its innovative satellite connectivity technology for early forest fire detection at the upcoming AFAC 2024 conference in Sydney.

As reported by Kineis, the event will take place from 3 to 6 September at the Sydney International Convention & Exhibition Centre, bringing together emergency service professionals from around the world.

The Kineis system uses a constellation of 25 nanosatellites to connect sensors placed on trees, which enables near-real time alerts for emergency services, even in areas with no terrestrial networks.

The sensors, powered by solar energy and integrated with artificial intelligence, detect abnormal gas levels related to fire outbreaks and relay this data to ground stations within 15 minutes.

Dryad Networks partners with Kineis for fire detection

Kineis has partnered with German company Dryad Networks to enhance its satellite connectivity technology with advanced gas sensors.

These sensors, installed on trees and powered by solar energy, detect air quality issues that signal a fire outbreak.

Data from these sensors is sent directly to Kineis’ satellites, which eliminates coverage gaps and allows for continuous monitoring.

According to Kineis, this innovation drastically reduces response times, helping authorities prevent large-scale environmental and infrastructure damage.

Kineis technology selected by the French government for early detection

In France, Kineis’ satellite connectivity has been recognised by the Ministry of Ecological Transition and Territorial Cohesion.

This technology has been chosen to be part of future IoT systems for forest fire detection.

This selection marks a shift in government strategies from fire suppression to early detection, driven by economic and ecological concerns.

The Kineis system provides reliable, large-scale fire detection while consuming low amounts of energy.

It also offers improved risk prevention for civil security during natural disasters, reducing the potential scale of devastation.

Applications extend to rail and electrical infrastructure

Beyond forest fire detection, Kineis’ satellite system is applicable to monitoring critical infrastructure, such as railway lines and electrical networks.

These linear installations are highly vulnerable to fire risks, whether caused by accidental sparks from trains or electrical arcs from power lines.

By integrating Kineis’ satellite connectivity, railway and electrical companies can monitor these vast areas in near real time, preventing potential fires and significantly reducing costs related to damage or power outages.

Kineis’ solution provides a continuous, reliable connection that helps safeguard remote infrastructure in areas where terrestrial networks may be absent.

IoT satellite solution for early forest fire detection to be showcased by Kineis at AFAC 2024: Summary

Kineis, a French satellite operator, will present its innovative fire detection system at AFAC 2024 in Sydney.

The system, developed in collaboration with Dryad Networks, uses gas sensors connected to Kineis’ constellation of nanosatellites to detect fires in near real time.

It has been adopted by the French government to help shift focus towards early fire detection, and is also applicable to protecting railway and electrical infrastructure.

Kineis’ solution allows for rapid transmission of critical data, even in areas without terrestrial networks, which helps mitigate the risks associated with large-scale fires.

Teledyne FLIR to unveil advanced thermal imaging cameras for mining industry at Electra Mining 2024

Teledyne FLIR presents new technology at Electra Mining 2024

Teledyne FLIR will showcase its latest thermal imaging solutions for the mining industry at Electra Mining 2024, held in Johannesburg from 2nd to 6th September.

The company will demonstrate equipment focused on condition monitoring and early fire detection, aimed at improving efficiency and safety in mining, utilities, and manufacturing industries.

Thermal imaging solutions for mine safety and efficiency

Teledyne FLIR’s cameras are designed to detect thermal overload in mining operations before issues become critical.

The cameras’ high image clarity allows for easy identification of hotspots, helping to prevent downtime and enhance site safety.

FLIR cameras can monitor high-voltage systems essential to mining operations, both on the surface and underground.

This includes the monitoring of transformers powering critical systems such as watering and refrigeration.

Showcasing advanced thermal camera models

At Electra Mining 2024, Teledyne FLIR will present a range of innovations, including IP67-rated aluminium housings for its A400, A500, A700, A50, and A70 thermal imaging cameras.

These housings maintain the cameras’ accuracy even in harsh conditions, allowing for reliable monitoring.

The company will also introduce R&D kits featuring A50 and A70 cameras, providing users with comprehensive thermal profiling capabilities.

These kits offer engineers essential data to support critical decisions in challenging environments.

Thermal and acoustic imaging for diverse applications

Teledyne FLIR will display other thermal imaging products such as the ExPro series, which provides high thermal resolution, and the Si series acoustic cameras for rapid detection of air and vacuum leaks, as well as electrical discharge.

Models from the FLIR ONE series, which connect to smartphones, will also be presented, offering users a range of accessible and affordable thermal imaging options.

Teledyne FLIR unveils advanced thermal imaging cameras for mining industry at Electra Mining 2024: Summary

Teledyne FLIR will exhibit its latest thermal imaging innovations at Electra Mining 2024, Johannesburg, from 2nd to 6th September.

The company’s technologies focus on condition monitoring and fire detection for the mining industry, with a special emphasis on improving safety and preventing downtime.

The showcase will include protective housings for thermal cameras and R&D kits that provide in-depth thermal profiling.

Additionally, Teledyne FLIR will feature products suitable for various applications, such as the ExPro and Si series cameras.

Bull Products announces expansion of SITENET fire detection system with new internal devices

Expansion of SITENET fire detection system for internal use

Bull Products has announced the expansion of its SITENET fire detection and alarm system range.

As reported by Bull Products, the new additions to the SITENET system are designed for internal temporary spaces such as modular buildings often found on construction projects.

These new devices maintain the 100% wireless functionality and are EN 54 certified.

While SITENET has been previously used for both internal and external purposes, the company’s new solutions provide a professional, modern, and slimline appearance that is particularly well-suited to office environments.

Carl Leeson, Head of Sales at Bull Products, commented on the expansion: “Our customers can now benefit from a highly efficient, professional-looking solution that is as effective in the office and professional space as it is outside.

“This expansion demonstrates our dedication to providing versatile, reliable, and easy-to-install fire protection solutions that meet the highest standards.”

Features of the SITENET fire detection system

The SITENET system uses Bull Products’ patented Cygnus wireless mesh protocol, a self-forming and self-healing technology.

This protocol ensures that the system is scalable and adaptable, offering reliable fire detection across a range of environments.

The devices are resilient to false alarms and provide rapid alerts to potential fire risks.

The expanded range remains ideal for construction projects, including high-rise structures, multi-building complexes, and subsurface sites.

Internal and external applications of SITENET

The new devices in the SITENET range are designed with the same attention to detail and performance as the existing models, ensuring they meet the needs of both internal and external environments.

The added focus on internal solutions caters to customers requiring fire protection in spaces such as offices, offering a more visually appealing and discreet option without compromising on functionality.

The SITENET system has been widely adopted in various construction applications due to its ease of installation, wireless capabilities, and robustness.

This latest expansion is expected to further enhance its appeal, particularly for indoor applications.

Bull Products’ commitment to fire safety

Bull Products has continually aimed to set high standards in the field of fire safety technology.

The expansion of the SITENET range is part of this ongoing commitment to innovation and customer satisfaction.

With these new devices, Bull Products is providing businesses with reliable solutions that are easy to install and maintain, reinforcing safety measures in both temporary and permanent structures.

Carl Leeson added: “We are making it easier than ever for businesses to ensure the safety of their premises.”

Bull Products announces expansion of SITENET fire detection system: Summary

Bull Products has expanded its SITENET fire detection and alarm system to include new devices designed for internal use, particularly within temporary environments such as modular office spaces.

The SITENET range now offers a more aesthetically suited, slimline appearance while maintaining the 100% wireless and EN 54 certified functionality.

The system uses the patented Cygnus wireless mesh protocol and is designed for both internal and external applications.

According to Carl Leeson, Head of Sales at Bull Products, the expansion reflects the company’s ongoing commitment to providing versatile and reliable fire safety solutions.

The SITENET range is ideal for use in construction projects, offering a scalable, intelligent solution that rapidly detects and alerts users to fire risks while being resistant to false alarms.

Historic Morritt Hotel enhances safety with Hyfire Taurus wireless system

Morritt Hotel upgrades fire safety with wireless technology

The Morritt Hotel in Barnard Castle has enhanced its fire safety system by installing over 100 Hyfire Taurus wireless fire devices, as reported by Hyfire.

Expert Fire Solutions completed the installation within days, ensuring minimal disruption to the hotel’s operations.

The Morritt Hotel, with roots dating back to the 17th century, is a historic establishment known for hosting figures like Charles Dickens.

The recent upgrades ensure the safety of guests and staff while preserving the hotel’s rich heritage.

Maintaining heritage while upgrading to modern safety standards

Installing a wireless fire system was deemed the best approach for preserving the Morritt Hotel’s historical structure while enhancing its fire safety capabilities.

Nathan Cowie, Fire and Security Manager for Expert Fire Solutions, said: “It was clear from the beginning that a wireless fire system was the logical solution for this historic building.

“Our collaboration with Hyfire was pivotal in specifying and installing a system that respects the Morritt Hotel’s heritage and complex infrastructure.”

Hyfire Taurus devices integrate seamlessly with the hotel’s architecture, offering a balance between meeting modern fire regulations and maintaining the hotel’s historical significance.

Hyfire technology supports ongoing hotel operations

The installation of the new Taurus wireless fire devices was designed to have minimal impact on the hotel’s operations.

The old system remained functional until the new one was fully commissioned.

A spokesperson for the Morritt Hotel stated: “Integrating Hyfire’s Taurus wireless fire devices was a great decision.

They blend seamlessly with the hotel’s historical character while enhancing the safety of our guests and staff.”

The new system’s efficiency, along with the discreet installation by Expert Fire Solutions, allowed the hotel to continue operations without interruption.

Advanced fire technology for heritage conservation

Hyfire’s Taurus wireless system features intelligent signal processing with 60 communication channels to avoid channel collision, even in complex structures.

Robert Bruce, National Key Account Manager at Hyfire, commented: “The Morritt Hotel is a jewel in the crown of County Durham’s heritage, and we’re proud that our Taurus wireless fire devices now play a role in its ongoing success story.”

The Taurus system ensures safety with fewer devices and lower maintenance costs, making it a practical solution for historic buildings like the Morritt Hotel.

Historic Morritt Hotel enhances safety with Hyfire Taurus wireless system: Summary

The Morritt Hotel in Barnard Castle, a historic building dating back to the 17th century, has upgraded its fire safety system with over 100 Hyfire Taurus wireless fire devices.

Expert Fire Solutions completed the installation within days, ensuring minimal disruption to the hotel’s operations.

The wireless system was chosen to preserve the hotel’s historical integrity while meeting modern fire safety regulations.

The installation had minimal impact on the hotel’s operations, with the old system remaining in place until the new one was fully commissioned.

Hyfire’s advanced technology ensures that the Taurus system operates efficiently, offering enhanced safety for the hotel’s guests and staff.

Smarter safety systems: Interview with Ben Wolf, co-inventor of Honeywell Self-Test

Ben Wolf, Senior Offering Management Lead, and co-inventor of Honeywell Self-Test, discusses the revolutionary changes in fire detection testing and compliance

What specific problems does Honeywell Self-Test aim to solve?

The primary issue it addresses is the inefficiency and difficulty of manual smoke testing.

Traditionally, you would have engineers using smoke poles to test detectors, which in a large hospital, for example, can take a team several months to complete.

With Honeywell Self-Test, we can functionally test even the largest of buildings in 35 minutes or less, which is a huge transformation in efficiency.

Manual testing methods can make it harder for building owners to stay 100% compliant because some detectors are in awkward or hard-to-reach places, behind locked doors, or simply missed during the process.

With a Self-Test detector, we ensure every device is functionally tested and not masked, as the process is automated.

The main problems we solve are:

  1. Safety compliance: Ensuring every detector is functionally tested, which is crucial for safety.
  2. Efficiency: Dramatically reducing the time required to test all detectors in a building, from months to minutes.
  3. Accessibility: Guaranteeing 100% compliance by eliminating issues of access to hard-to-reach detectors.

How does the Honeywell Self-Test process work?

The Self-Test module is placed inside the detector.

It works by passing current through a coil which is coated in wax.

This wax is transformed from a solid into an aerosol.

A fan then propels the smoke across the optical chamber, triggering the fire threshold.

After creating the fire event, the fan moves the smoke from inside the detector to outside.

A simple algorithm checks the level of smoke over time.

If the smoke remains in the chamber for too long, it flags an issue, indicating a possible blockage at that needs investigation.

Another core element is testing the heat sensor.

In multi-criteria detectors, which have both smoke and heat sensors, we put current through the thermistor to test the heat response.

This way, we can simultaneously conduct both smoke and heat tests on the detectors.

How does Honeywell Self-Test integrate with existing fire alarms?

We’ve tried to ensure that existing Honeywell sites can easily adopt Self-Test technology, making the transition as simple as possible.

We designed it to fit into the existing base and use the current cabling.

For Honeywell Gent, it fits on the existing panel with a firmware upgrade.

For Notifier by Honeywell, it does require a new panel, but you can keep many of the loop devices like audio-visual devices, modules, and call points.

 We’ve made it very straightforward to integrate into our existing sites.

For new buildings, it comes as a new package.

How does the Self-Test system handle data collection and reporting?

We generate two different views through Honeywell CLSS (Connected Life Safety Services).

There is an app-based process where the fire engineer starts and completes the test using the mobile app.

The app shows which detectors have passed or failed, and as soon as the test is finished, it generates a British Standard compliant report.

This report includes all the information about what has been tested using Self-Test, providing clear details that can be sent as a PDF or stored safely in the cloud for the client.

The building owner has access to the site manager view of CLSS.

They can log into a web application to see the status of their site, including what has and hasn’t been tested, ensuring they are fully compliant as well as viewing any required compliance reports.

How does Honeywell Self-Test ensure compliance with industry standards?

There are three core aspects of any Code of Practice around the world: Has the detector been tested with real heat and smoke? Are the smoke entry points clear from blockages? And has a trained, competent fire engineer visually inspected the device?

Visual inspection is crucial to ensure the room’s application hasn’t changed, the label remains accurate, the detector is properly installed, and no structural changes have compromised detection in any area.

To address this, we built a visual inspection process into the system.

A Bluetooth beacon in the detector communicates with the CLSS mobile app and verifies that the engineer has been within visual inspection range of the device.

This process logs which engineer, on which date, inspected the device.

It’s a much more discreet process.

How do you envisage Self-Test impacting the fire safety industry?

The Honeywell Self-Test series of detectors automates the testing process, providing clear evidence through detailed reporting.

This helps building owners demonstrate that every detector has been tested, addressing any compliance queries effectively.

As the responsible person for the building, they must fulfil these requirements to avoid legal consequences in case of a fire incident.

Self-Test offers three core benefits:

  1. Compliance: The system ensures that all detectors are tested and documented, transforming compliance reporting.
  2. Efficiency: It significantly reduces the time and resources needed for testing, making the process more efficient.
  3. Safety: The system enhances safety by ensuring all detectors are functional and free from blockages.
  4. It also validates the status of detector labels during visual inspections.

Additionally, when testing buildings manually, engineers often put the panel into a test mode, isolating parts of the building.

This can leave areas unprotected unless Fire Watch is in place.

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