EU Smoke Alarm Day puts alarm ownership in the spotlight

The first edition of European Smoke Alarm Day takes place today (Friday 18 November 2022) as part of the programme of activities for the 4th European Fire Safety Week.

The European Fire Safety Alliance and the Federation of European Fire Officers (FEU) launched the EU wide awareness campaign to increase awareness of the need for EU citizens to install smoke alarms in their residential properties and help reduce fire deaths all over Europe.

About the campaign

Approximately 5,000 people die from fire in Europe annually. The rate of fire deaths is 5 times higher in Eastern Europe than in Western Europe.  Most of these deaths occur in domestic properties.

The European Safety Alliance said that this figure could be reduced if people installed smoke alarms in their homes. In many countries in Europe there is a legal obligation on homeowners to install smoke alarms. However in other EU countries there is no requirement to do so.

The Alliance said that scientific evidence shows that fire deaths have consistently declined in countries where smoke alarm ownership has increased: “Research shows that many EU countries have moved in recent times to make the installation of smoke alarms mandatory for all new construction. This has led to a drop in fire deaths in these countries.”

The following European countries have introduced legal obligations to install smoke alarms in domestic properties, namely, Austria, Belgium, Czech Republic, Denmark, Estonia, Finland, France, Germany, Ireland, Lithuania, Latvia, Netherlands, Norway, Sweden and UK.

Additional information on the requirements for smoke alarms in different European countries is available on the Alliance’s campaign website.

The Alliance said: “However the message is not to get complacent. More needs to be done!  Fire deaths are still too high particularly in Eastern Europe. That is why the European Fire Safety Alliance and FEU have joined forces to launch this Europe wide awareness campaign.

“This campaign #smokealarmssavelives consists of a campaign website www.smokealarmssavelives.eu, social media posts and videos. The video messages include messages of support from firefighters and politicians across Europe.

“We are asking for EU politicians to actively support this campaign and for more European countries to introduce legislation to make it obligatory to install smoke alarms in domestic properties. This will encourage more European citizens to install smoke alarms in their homes and thus help to save more lives.”

Fire, Camera, Action: Inside Ciqurix’s video flame detection technology

Paul Seligman, Chief Executive Officer at Ciqurix discusses new video flame detection technology that can spot fires quickly and reliably

Detecting fire has been a human preoccupation since the day it was first discovered. This constant threat has led to ever more sophisticated and imaginative methods of detection. The human eye was replaced as the most efficient way to detect fire with the widespread adoption of smoke alarms in the second half of the twentieth century.

Beam detectors, aspirating detectors and CO detectors followed, but all were blighted by the same problem: they were designed to detect the by-products of fire, not the fire itself. Ultimately the goal had to be a device that could reliably detect flame, not smoke or heat. Many things get hot, many things produce smoke, but only the presence of flame is undeniable evidence of a fire.

Flame, however, is an uncooperative medium. Its behaviour is unpredictable, and its range of potential shapes, colours and patterns of movement varied. To produce a flame detector that will reliably distinguish a flame from other sources of radiation was an endeavour that saw only limited progress for decades.

Rack mounted units proved too clunky, thermal imagers and UV/IR detectors too prone to false alarms and the vaunted IR3 detectors were unable to pinpoint the source of a fire or reject false alarms. Those devices that did hit the market required huge flames at short range, rendering them counterproductive, and prices were often too high for widespread adoption. The advance in video technology, however, has provided new opportunities to record and study flame, and so Video Flame Detection was born around the start of the nineties.

Detection today

The year is now 2022 and Video Flame Detection is here and quickly establishing itself in the market. There are several ways in which video technology can be deployed in the pursuit of reliable fire detection. Visual feeds can be run through algorithms to detect the specific shape pattern of a flame; sensitive thermal imagers can attempt to detect the fluctuations in temperature typical of fire; even the colour of a flame can be used to trigger a detector. The greatest success, however, has been found by selecting some elements from each column.

The result is a video flame detection system that can spot fires quickly and reliably without having to wait for particles to build up in detection chambers. There is no confusion between a vehicle exhaust and a fire and no need to wait until the temperature hits a certain point.

Video Flame Detection systems have made ground in the market despite a lack of regulatory requirement for them. The regulatory frameworks have simply not kept up with the pace of progress. The days of ticking boxes have emphatically passed, however, and businesses in particularly fire prone industries now need serious fire protection systems that do the job in a reliable manner.

The opportunities presented by Video Flame Detection led to the birth of our company, Ciqurix. We had been experimenting with new ways of detecting fire since 2012 but it was in the second half of the last decade that it became apparent that there was a gaping hole in fire safety and that we had the technology to fill it.

We created the FCam: a superpowered video flame detection system that is fully compliant with regulations. Our dual sensor technology combines video and near-infrared analytics to provide reliable, versatile, long range detection in any environment, able to accurately pinpoint a flame and mark it like a sniper’s scope.

The potential footprint of Video Flame Detection is amply demonstrated by the geographic and market spread of the users of Ciqurix’s systems. FCams are now protecting timber yards in Scotland, power stations in Australia, palm oil facilities in Malaysia and hotels in the Mediterranean. Industrial freezers, methane processing plants and a UNESCO World Heritage Site are all availing themselves of various versions of our products.

Solutions for all situations

Our user-led design model has given us a very wide product list, with an FCam system to suit all tastes. Although video detection is currently outside the scope of EN54, our CORE system has been designed specifically to take account of BS5839-1 and EN54 parts 2, 4 and 10, while the FLEX system acts as an add on to an existing fire detection or warning system. The reaction to an alarm from the FCam can be tailored to the needs of the user, but precision-guided suppression systems have proven increasingly popular.

A set of crosshairs and coordinates are produced and used to target suppression cannons and sprinklers to ensure that the fire is immediately controlled with minimal waste and Many things get hot, many things produce smoke, but only the presence of flame is undeniable evidence of a fire. minimal downtime. Systems with highly accurate zoned suppression have been designed for offices that cannot afford a moment of unnecessary loss of service, and for waste disposal sites dealing in flammable material, for whom even a momentary fire could be disastrous.

There is a camera variant for every situation: The FCamX, our workhorse, can be fitted with an anti-dust air nozzle and a heater for use in low temperatures; the FCamSolo, a slick-looking dome camera, is for the indoor use and is protecting hotels and banks around the world; the FCamEX is fully ATEX compliant, while the FCamXCR is suitable for use in corrosive environments.

Our technology is still evolving and we see many user-led developments for the FCam in the coming years. The pace of development is such that it is hard to see where the road might end for Video Fire Detection, but fire remains high in the public consciousness and the time is ripe for a tech revolution to make us all safer.

This article was originally published in the November edition of IFSJ. To read your FREE digital copy, click here.

IFSJ Exclusive: Improving early wildfire detection with GRIDWIDE FIRE-SPY

Alan Snook, President at GRID20/20 tells IFSJ about the fire detection solution that helps catch wildfires early

For many, the threat of wildfire is omnipresent and its ability to devastate is unpredictable and unprecedented. On 8 November 2018, the Paradise fire in California spread over seven miles in 90 minutes, crossed a large canyon, claimed the lives of 85 and resulted in over $25.5 billion in costs and settlements. For Alan Snook, President at GRID20/20, the Paradise tragedy was a catalyst for innovation. And annual wildfire damages of $50 Billion to $100+ Billion assures him they are on the right track.

While watching a documentary about the Paradise fire, Snook considered how his team could leverage their company’s intra-grid sensor expertise and capitalise on the height, location and density of existing overhead transformers to create proactive always-on fire/wildfire monitoring canopies throughout communities. And so GRIDWIDE FIRE-SPY was born.

In development

Initially, says Snook, the wildfire mitigation product was an add-on sensor pack to the face of his company’s legacy Advanced Transformer Infrastructure® device: “Our first generation product was a piggyback design that was sealed onto our legacy ATI hardware,” he explains.

Following multiple lab and field tests, the second-generation product is a fully-contained technology that now simultaneously includes fire detection and/or intra-grid monitoring capability. This second generation version is designed for both single phase and poly phase overhead transformers. Thus enabling deployment upon virtually every overhead distribution transformer used by operators within their existing grid architecture. GRIDWIDE FIRE-SPY devices can be mounted on most overhead transformers in 5-7 minutes causing no service interruption to customers.

Throughout the nearly two-year process of bringing GRIDWIDE FIRE-SPY to market there have been many lab and field tests. This includes: four separate field tests at a major Investor-Owned Utility’s fire training centre in Virginia, a field test at a volunteer fire department in Virginia, a field demo in Hawaii for first responders and utility personnel, and another comprehensive field demo in Ventura County California in September this year for first responder personnel, and representatives of Western Fire Chiefs Association, California State Firefighters Association, and FirstNet® Ready built by AT&T; the latter being a dedicated cellular network by which GRIDWIDE FIRE-SPY is certified.

The solution

GRIDWIDE FIRE-SPY is a turnkey wildfire mitigation solution that involves patented field sensors, automated alert capability and seamless interfacing for expedited field conditions reporting to authorised users. Snooks calls it a ‘set it and forget it’ technology; but one that users can remotely adjust as needed using over the air upgrade capability.

“Via 24/7 monitoring, our patented sensors use Infrared for ‘seeing’ fire/wildfire heat-induced conditions, plus onboard smoke/gas detection, humidity monitoring, and ambient temperature monitoring,” explains Snook. “These features are designed to detect conditions that are commonly associated with an unfolding fire.”

“The GRIDWIDE FIRE-SPY sensor data is typically driven by various types of cellular communications, thereby facilitating important auto alert capability. Our software and analytics can be seamlessly integrated with existing utility and first responder platforms and made available to authorised users via Graphical User Interface (GUI).”

GRIDWIDE FIRE-SPY uniquely reports latitude/longitude GPS coordinates thereby enabling utility operators and first responders to more accurately dispatch personnel to where wildfire conditions are being detected.

“Ongoing empirical data flow enhances situational awareness intel so the authorities can remain informed during unfolding events,” Snook explains. “The unique intra-grid monitoring capability of GRIDWIDE FIRE-SPY simultaneously reports transformer asset and intra-grid conditions insights for certain fire prevention purposes.”

GRIDWIDE FIRE-SPY presents a wildfire mitigation solution that helps to address important community-wide monitoring needs. Proactive atmospheric, environmental, and intra-grid conditions monitoring all wrapped into one sensor solution is novel, versatile, and cost-effective.

System integration

During GRID20/20’s 11-plus year intra-grid sensor experience, including the last two years experiencing the wildfire mitigation learning curve, Snook says his team has gained several insights. One of the most important realisations, he says, is that true wildfire mitigation will not be achieved by a single ‘solution’ or practice. Genuine wildfire mitigation will undoubtedly require multiple process improvements strategically combined with multiple technology tools.

To this end, he says that GRIDWIDE FIRE-SPY is a solution unique in its ability to simultaneously drive early detection, auto alerts, certain wildfire prevention capabilities, ongoing situational awareness information, and localised longitude/latitude GPS coordinates reporting for helping to pinpoint where operators and first responders must quickly target.

He notes that whilst GRIDWIDE FIRE-SPY can operate as a ‘stand-alone’ always on, overhead outdoor monitoring solution, it is strategically built to interface with other solution providers to yield the best possible outcome for at-risk communities, and all stakeholders.

Looking ahead

Near term, Snook says the intention is for GRIDWIDE FIRE-SPY to be adopted by utility operators and all stakeholders for the purpose of protecting at-risk communities. This, he says, will require decision-makers to recognise that the solution presents a comprehensive set of value propositions; achieved via the deployment of this versatile technology onto existing overhead grid architecture; right where we all live, work, sleep, commerce, and play.

By the adoption of GRIDWIDE FIRE-SPY, he anticipates that utility operators will continue to demonstrate their sincere interest to protect the communities they serve; while they too will benefit from increased wildfire protection gains to avoid or lessen damage to their grid assets, reduce corporate liability risk, and better protect the environment.

He adds that whilst video cameras have become the ‘latest tool’ being desired by authorities, he believes that people will soon recognise the comprehensive upsides that their solution presents: “GRIDWIDE FIRE-SPY doesn’t have to wait for a plume of smoke to emerge and then be sighted. Rather, we are deployed on the proverbial frontlines; improving our ability to ‘see’ and ‘sniff’ fires sooner.”

“By uniquely using infrared capabilities to ‘see’ fires, and onboard sensors to ‘smell’ wildfire conditions (e.g., smoke, gas, humidity, ambient temp) we enhance early detection opportunity. Our auto alerts feature will help to accelerate notifications to authorities. And we uniquely help to locate unfolding events via our use of longitude/latitude GPS coordinates to accelerate the pinpointing of where to deploy response resources.”

He adds: “As seen repeatedly, these nasty events are typically fanned and dispersed by wind.  Hot embers can land anywhere including substantial distances away; igniting additional fires. Time is of the essence regarding fires. The most effective solutions will detect fire conditions at, or near the source.

“Our solution is substantially based on early detection. This is how we will help to accelerate responses. This is how we help to make fire events smaller, and help to reduce or avoid disasters. By being deployed on the frontlines, GRIDWIDE FIRE-SPY is intended to provide a legitimate chance for early detection, and accelerated response effectiveness.”

This article was originally published in the November edition of IFSJ. To read your FREE digital copy, click here.

The House of Binns gets Hyfire wireless fire protection

The House of the Binns, or ‘The Binns’, a historic house in West Lothian, is now protected by cutting edge wireless fire technology supplied by Hyfire.

The 17th century house, which was added to in the 18th and 19th centuries, presented a challenge to fire installers, so a wireless system was chosen when the system required replacement.

Developed in Trieste, Italy, the global centre for wireless fire design, Taurus features Pathfinder Technology, which allows the devices to communicate over 1km, point to point in open air, and further where expansion hops are used.

Antenna technology has been optimised to allow communication across different frequencies and environments, which means that Taurus can do the job with less equipment and less batteries, thus saving on costs.

Stevie Huxley of Safe Simple Secure, the installers on the project, said: “When we were approached by the National Trust for Scotland to specify a new fire system for The Binns, the challenges were immediately apparent, and we rapidly concluded that a wireless solution was the simplest and most effective way forward,.

“The building has significant ornate ceilings and historical interior features, so a wired system would require multiple trades and a principal contractor to manage the installation and ‘make good’ afterwards.

“We have worked with Hyfire for many years, during which time the performance and reliability of wireless fire devices has improved radically, and the new Taurus range is the equal, if not the superior, of its wired competitor in e

Robert Bruce, National Sales Manager – North at Hyfire, commented: “At one time, wireless devices were seen as a niche technology best suited to historic buildings and big box industrial sheds. While this is no longer the case, the advantages that it can bring to an ancient building like The Binns cannot be overstated. Not only were we able to deliver a fully-featured fire system that met all of the key requirements specified by the National Trust for Scotland, the system was also installed in a fraction of the time that a wired system would have taken, with none of the costs associated with installing cable loop.”very aspect. For buildings like this, which require a light touch while still ensuring the protection of the historic fabric, wireless ticks all the boxes.”

UL Solutions launches service for fire alarm control units in UAE

UL Solutions has introduced a new product category covering fire alarm control units and accessories intended to be used in the United Arab Emirates as part of a household fire-warning system.

To balance cultural practices with safety enhancements, UL Solutions, a global safety science leader, developed a new testing program and a new Certification Mark for the UAE.

The program tests residential fire alarm control units that permit residents to briefly disable alarms to burn incense. Products that demonstrate compliance with the testing protocol earn the all-new UL-AE Certification Mark.

By applying solid regional insights and deep industry expertise, UL’s new testing program for fire alarm control units aims to inspire greater confidence among UAE residents, opening the market for safer products and maximising emergency services resources.

In 2018, the UAE Civil Defense launched a campaign to introduce a smart fire detection, alarm and monitoring system to every residential villa in the UAE. The initiative involved designing and installing a fire detection system for early warning of a fire outbreak to inform occupants to evacuate the premises with almost instantaneous alarms.

To improve response times, the alarm systems are connected to a signal monitoring center that receives the signal of a fire outbreak and confers with the owner on the current situation before dispatching the necessary fire response resources.

This alarm feature is designed to reduce the possibility of false alarms to prepare civil defense crews on arrival, especially in villa homes with the highest incidence of fire calls in the UAE.

Exclusive: Stopping electrical fires before they start

Matthew McKaig, Director of Communications at Thermarestor, talks about the electrical overheating detection system that is preventing ignition.

Anything that uses electricity as a source of supply has the potential to cause a fire. In the UK alone there are approximately 25,000 fires of an electrical origin each year. Unfortunately, the problem is not just confirmed to this country; in many countries around the world electricity is the most significant factor in terms of the cause of fires. In electrical fires the source of ignition – the thing that actually causes a fire – is excessive heat.

Thermarestor was created because there was not a low cost and accessible product on the market which could alert a third party to excessive, pre-ignition heat in electrical locations. As a pre-ignition solution to the problem, it represents a step change in fire safety. The vast majority of fire safety measures are post-ignition and seek to contain the effects of a fire. Thermarestor prevents such fires from happening in the first place.

The major cause of fires involving fixed wire installations is localised resistive heating – loose, poorly made and oxidized electrical connections generates excessive heat, often confined to a relatively small area. If the heating process continues unnoticed over a period of time, ‘thermal runaway’ can occur, whereby the heat generated cannot be dissipated, resulting in temperatures exceeding 1300˚C, hot enough to ignite any adjacent combustible materials. Prolonged electrical overload can have a similar effect, especially in relation to electrical intakes.

Unfortunately, existing circuit devices such as MCBs and RCDs offer no protection, as they are unable to detect heat generated at the points of connection. Similarly, regularly inspecting and testing the electrical installation (an EICR in the UK) does not necessarily provide protection, because it is primarily concerned with determining if the installation is electrically safe for continued use, rather than focusing upon the risk of an electrical fire. Given the recommended interval between inspections – and the fact that only a sample of the connected accessories, such as sockets, are routinely inspected – a resistive heating fault can easily develop unnoticed.

Identifying hotspots

Thermal imaging using infrared cameras to detect ‘hotspots’ is another means of assessing the health of an electrical installation. However, the usefulness of such a survey is dependent upon all electrical loads being present at the time of inspection, as the survey only records a snapshot at that moment in time when the camera passes over the connection point. As an example, many older properties rely upon ‘off-peak’ electric heating and this is perhaps their biggest electrical load; unless the thermal survey is undertaken at night during the winter months this load will not be present.

The advantage Thermarestor has over thermal scanning is that it is present 24/7 and has the added benefit of being able to notify someone the instant that excessive heat is present. This means that a potential emergency situation is avoided – becoming a maintenance issue instead; the fault causing the overheating can be investigated and rectified.

Pre-ignition warning

Thermarestor provides continuous monitoring and protection of electrical components and accessories in a variety of environments. It actively prevents electrical fires from happening. It is a heat detection system that can be installed to permanently monitor the temperature of electrical connections and components. In the event that abnormal temperatures are detected, it can be configured to instantly notify occupants, and/or make a power disconnection.

The technology protects installations by sensing heat from high resistance connections and overload. It is fundamentally a small electro-mechanical switch which, on activation, closes a circuit – which means that it can send an alert to a third party, and/or disconnect the power.

As a fire prevention system, Thermarestor provides protection against the most common cause of electrical fires in low voltage electrical installations – localised resistive heating, caused by loose and poor connections. It can be installed to both new and existing installations, allowing thermal monitoring of incoming supplies, distribution boards, switchgear and accessories, such as socket outlets.

Connection to existing fire alarm and Building Management Systems is simple and straightforward and provides a highly effective means of notifying occupants of any overheat conditions. We also offer a ‘standalone’ notification system, by means of our ‘MetaCom’ communicator, which sends text messages and e-mail alerts, immediately identifying the location of the fault.

This allows such incidents to be investigated as a maintenance issue, thus mitigating the risk of a fire developing and avoiding the need for an emergency response, by providing permanently installed protection for people and property.

Early detection

Thermarestor can be a game changer because it facilitates the sending of an alert to a third party prior to ignition, whereas most detection systems are post ignition. That is not to say that post ignition measures lack credibility, not in the slightest, but if there is an opportunity to turn a potential fire into a maintenance issue, then – and on balance – this must be a good path to tread. Thermarestor thereby builds further fire safety into the whole dynamic.

The device is also important because it could provide the ‘missing link’ in the IOT dynamic. Whilst Thermarestor’s role within the piece is small, its significance is arguably substantive, as it helps enable the prevention of fires, sending early warning of developing problems to nominated individuals prior to ignition – whereas the current emphasis is on post ignition measures when, some might argue, it’s simply too late.

Looking ahead

To date, Thermarestor’s pre-ignition detection solution has been installed at a number of locations, including Scotney Castle, Salisbury Cathedral, Newbury Race Course Apartments, at a solar farm in Wymeswold, Hinckley Point C Nuclear Data Centre, Forum des Halles and Nestle HQ in Paris. There are also pilot projects taking place at McDonald’s in Switzerland, Germany, England and Chile.  

Looking ahead we have several plans and projects in the works. One is to continue with the installation of ‘standard’ Thermarestor applications, particularly electrical Distribution Boards in all types of building, especially heritage structures. Social Housing estates might also find the device fulfils an important role in fire prevention. There are also plans for a pilot at a large PV Solar farm in Brazil whilst researching similar applications within the same industry.

In addition, we will continue to scope other applications for the device, including within the Lithium-Ion battery industry; with potential for domestic EVs particularly, also with battery charge/storage boxes. We will remain open to further applications for Thermarestor, particularly with white goods, also perhaps with the detection of excessive heat due to friction.

Finally, a certain sector of the insurance industry has shown some interest in the device, as it is thought that this innovation may well be able to reduce the incidence of fire. That it can do this prior to ignition is likely to be an attractive feature from both the insured’s and insurer’s perspectives. This must be an area which should also be investigated more thoroughly.

In terms of emphasis, the Fire Safety industry can sometimes appear to concentrate more on detecting and dealing with a fire than with its prevention. There are complicated reasons for this, but Thermarestor should help contribute towards righting this balance, so that more attention is given to trying to ensure that the fire does not start in the first place – so less smoke/fire damage to property, little interruption in business continuity, lower insurance premiums also a potentially lower level of harm to human life.

Euralarm responds to European Commission Data Act proposal

Euralarm has welcomed the initiatives from the European Commission towards legislations promoting the data economy.

The European association representing the electronic fire safety and security industry pointed out, however, that specific provisions would generate security risks, if enforced as intended in the present draft of the Data Act.

Euralarm raised specific concerns with chapter II of the proposal that makes the sharing of data with third parties mandatory as access to this data could give a very deep understanding of the installation and performance of a system or service, resulting in an increased risk of security breaches, including cybersecurity breaches, both to a given customer installation and to the whole security system itself.

It also noted that the criticality of data generated by security systems recognised by national laws regulating private security and the installation of video surveillance systems and that these laws limit the right to share information related to or generated by these systems, meaning the data sharing provisions of the draft Data Act are therefore in conflict with these national laws.

Finally, the association said that access to pure operational data/metadata does not provide any benefit to the end-user, neither allows a smoother switching of provide and there is therefore no benefit in allowing/imposing any requirement in the way the data have to be accessed or managed.

In a recently published Position Paper Euralarm proposes several amendments as well as a new article to the draft Regulation in order to exempt security-related data from the obligation of sharing. Services Directive 2006/123/EC excludes private security services from its scope via Article 2(2)(k). Euralarm therefore believes that a similar exemption in the Data Act should be feasible.

A copy of the Position Paper can be downloaded from the Euralarm website here.

Patol’s aspirating smoke detectors chosen for major online retail investment

A UK supermarket chain has chosen Patol Ltd and Securiton Aspirating Smoke Detection (ASD) to protect a significant investment in expanding the retailer’s online offering.

With a general upturn in online grocery shopping, the supermarket has embarked on a programme to develop a number of facilities throughout the UK, with dedicated automatic picking areas completely separate to the customer areas introduced in its larger stores where excess space is available.

Alarmtec, a supplier of fire alarm systems for over 40 years, approached Patol, a company that has specialised in the design, manufacture and supply of fire safety products and services for more than 50 years. Alarmtec had employed ASD in a large warehouse project and recognised the potential it offered in meeting the needs of the fulfilment centres.

Alarmtec and Patol worked together, along with the retailer’s own dedicated engineering department, to design and develop a turnkey solution. The first store was in West Bromwich and a template was created for the fire alarm system to protect the centre.

Patol’s ASD was chosen to provide early warning of fire, with the pipework installed throughout the ceiling voids and racking areas. The detectors are located to allow easy access for maintenance which would have proved difficult with conventional point detectors.

The early warning provided by ASD also proved a significant advantage given the increased fire load represented by the electrical motors which drive the automated conveyors at the heart of the picking area. The ASD is supported by Patol’s digital LHDC (Linear Heat Detection Cable) which monitors the chillers and freezers.

The air sampling pipework and detectors provide dedicated protection of the West Bromwich fulfilment centre area, networked to the store’s existing fire control panel and sprinkler system. The success of the West Bromwich facility provided the blueprint to roll-out the solution to other stores.

Jeff Hickling is Head of Installation at Alarmtec and commented: “We recognised that ASD provided the ideal solution to meet the challenges of the project, with its ability to identify a potential fire at the earliest possible point. Patol’s technology provided the performance we were looking for, backed by an excellent level of service.”

The fulfilment centres are designed to allow faster picking and quicker deliveries, adding to an extensive network of distribution facilities and in-store picking. It will expand the company’s online capacity, providing customers with more home delivery slots, as well as reducing congestion on shop floors.

Siemens selects Videcon as distribution partner for Cerberus FIT

Siemens has announced Videcon as its new strategic partner for the Cerberus FIT range of fire detection and alarm products, marking Siemens first ever distribution partner for fire in the UK and Ireland.

Videcon was formed in 1995 and is currently one of the fastest growing security and fire distributors in the UK. Videcon will add Cerberus FIT to its existing portfolio of fire and security products and services, through its dedicated Fire Safety Division which is headed up by Sales Director Alan Fowlie.

Commenting on the new partnership, Fowlie said: “Our customers were increasingly looking for the advantages offered by an addressable system but at an affordable price.

“I knew Siemens from the work I did before my business became part of Videcon in 2020 and Cerberus FIT offers the ideal solution. It gives us a completely open protocol, engineer-friendly system with the brand values, quality and product quality that you expect from Siemens but at a price-point which is extremely competitive.”

Cerberus FIT has been designed specifically to provide a cost-effective option for moving from conventional to addressable systems for small to medium sized applications.

Rob Yates, Head of Fire Products at Siemens UK&I, commented: “We are delighted to be working with Videcon, having chosen them as a partner because of their clear commitment to training and support. The company’s client base is particulartly suited to Cerberus FIT which is an EN54-13 approved system designed with ease of installation and ease of use as its core guiding principles.

“That ensures it is an ideal option for a range of applications, including retail, leisure centres, warehouses and restaurants – in essence those facilities who would be considerng a conventional or stand-alone addressable system.

“This is the start of what we see as an exciting co-operation between the two businesses and look forward to taking the offering to the fire safety market in the UK and Ireland.”

The Last Word with Salvatore Vittozzi, Regional Sales Manager at Apollo Fire Detectors

Salvatore Vittozzi, Regional Sales Manager at Apollo Fire Detectors sheds light on the benefits of hybrid-wireless fire alarm systems

Tell me about your role and background in the fire industry

I joined Apollo in 2019 but have been in the fire industry for well over 20 years, starting out as a Fire Systems Designer. Whilst I focus on supporting our partners in London and the Southeast as Regional Sales Manager, I also, along with the Apollo Sales and Technical Support team provide free online training every month with CPD accredited and product-based webinars, most recently we have been on a UK wide roadshow, presenting training on our new range, REACH Wireless.

Can you give me an overview of the services Apollo Fire provides?

Our purpose is simple; we make devices to keep people safe from fire every second of every day. We specialise in the design and manufacture of high-quality fire detection solutions that protect people from fire in over 100 countries around the world. We have recently launched our new hybrid-wireless range, REACH Wireless.

What is REACH Wireless and why was it developed?

Our new solution REACH Wireless is intended to provide a natural extension to our existing wired products and protocol, to provide the benefits of wireless where needed. REACH brings more modern product features such as dual-optical smoke detection and Visual Alarm Devices (VADs) and provides a platform to build upon going forward.

REACH was designed to target over-the-counter sales, meaning it had to be quick and easy to install without large amounts of training or special manufacturer’s accreditation. REACH’s installation is assisted by the built-in LCD screen of the Loop-Interface, which leads you through the process. We’re continuously listening to feedback from installations to refine the experience in pursuit of this goal and we’re confident that customers will be pleased with it at launch.

What are the benefits of hybrid-wireless fire alarm systems?

A hybrid-wireless fire alarm system can provide greater flexibility in situations where wiring may be difficult or impractical, for example, in listed buildings a wireless device would cause much less damage to the fabric of the building than a wired loop. It can reduce costs in some areas by connecting a new extension or outbuilding to an original installation with no cables. There are also applications where hybrid-wireless is valuable when short downtime is required such as educational facilities or retail stores.

What plans does Apollo Fire have for the future?

We recently launched a software update to the Apollo Test Set to support Apollo’s latest protocol, Core Protocol. Later this year we plan to publish the latest version of our Loop Calculator, which is free to download from our website. We are always working on new products and technologies in fire detection to keep up with this ever-evolving industry and its standards. You can keep up to date with the latest news from Apollo on LinkedIn, Twitter, Facebook and Instagram!

This article was originally published in the September edition of IFSJ. To read your FREE digital copy, click here.