KiddeFenwal launches 35-2X Series Gas Ignition Controls for 230 VAC

Gas ignition controls for 230 VAC applications

KiddeFenwal has introduced its 35-2X Series, a line of direct spark Gas Ignition controls for original equipment manufacturers (OEMs) in and serving European and Asia-Pacific markets.

The company described the series as gas ignition and safety modules supporting 230 VAC applications.

The 35-2X Series is being offered via the Fenwal Controls brand, which the company said has served OEMs since 1935.

Rekha Agrawal said: “KiddeFenwal continues to bring new critical control solutions to market, meeting the evolving needs of OEMs and their range of customers worldwide.

“From increasing product complexity to rising energy prices, we deeply understand the challenges in this key space and are planning several innovations over the months to come specifically designed to meet such issues head on.”

Modules and application areas

The press release from the company listed three inaugural modules in the 35-2X Series: the 35-20 Direct Spark Ignition (DSI) Control without blower, 35-21 DSI Control with inducer blower and 35-23 DSI Control with intermittent pilot.

The modules are available in configurations described as specific to applications in HVAC, agriculture, pool heating, commercial cooking and other sectors.

All modules are described as providing high energy spark output for gas ignition.

The modules include an enhanced LED readout for diagnostics and status reporting.

They also include a programmable dry contact (alarm) output for indicating a lock out condition.

Certifications and approvals

KiddeFenwal stated that the 35-2X Series is globally certified, meeting CE EN298:2022, AS 4625-2008 and BSI approvals for installations in Europe, Australia, New Zealand and Asian markets.

The company described the launch as part of its planned expansion in the safety controls space across Europe, Asia and Australia.

The 35-2X Series is being offered through the Fenwal Controls brand.

Gas detection meets voice calls and GPS in Blackline’s G8

Gas detection device and connected monitoring

Blackline Safety has announced G8, an all in one wearable that combines gas detection, lone worker protection and radio quality communication.

The company said the device streams real time data to the cloud through its Blackline Live platform, giving safety and operations teams visibility of worker status, gas readings and site conditions.

Blackline said G8 builds on its G7 line and is designed as a connected platform that can integrate with other digital systems used on worksites.

What G8 includes and when it ships

G8 is described as an intrinsically safe gas detector with an IP 67 rating and swappable cartridges covering more than 20 gases.

The device includes dual band GNSS and GPS, plus ZoneAware geofencing within Blackline Live to define zones and support muster drills.

G8 includes push to talk, emergency voice calling that connects workers to a live monitoring agent and text messaging for preset or custom messages, plus an internal speaker and an optional remote speaker microphone.

Blackline said the device has a larger 64 colour backlit display, NFC TagAssign for device assignment and a 35 lumen flashlight.

Cody Slater, CEO and Chair, Blackline Safety, said: “G8 gives workers access to the tools and information they need to confidently get the job done and get home safe.

“By unifying gas detection, real-time monitoring, and communication in one connected device, we’re delivering more than incremental improvement.

“We’re giving every worker a direct line to the people, data, systems and support they need to make faster, safer decisions.”

Blackline said it is taking orders now, with first shipments expected in February 2026.

Halma acquires Italy-based Safetec in €72.5m fire and gas deal

Halma confirms Safetec acquisition in Italy

Halma has acquired Safetec, an Italy-based provider of customised fire and gas safety solutions for large-scale industrial projects.

The company said Safetec was founded in 2003 and is headquartered near Milan.

Halma said Safetec designs, engineers and delivers tailored systems for complex and high-risk industrial environments.

Purchase price, funding and business structure

Halma said the cash consideration is €72.5m, around £63m, on a cash- and debt-free basis.

It added that the acquisition will be funded from Halma’s existing facilities.

Halma said Safetec’s revenue for the 12 months to 31 December 2025 is forecast to be about €30m, around £26m.

The company said Safetec will operate as a standalone business within Halma’s Safety Sector, led by its current management team.

Safetec markets and regions cited

Halma said Safetec serves markets including power generation, oil and gas and pharmaceutical sectors.

It added that Safetec works in other highly regulated sectors where stringent safety requirements apply.

Halma said Safetec’s solutions support customers to manage risk and comply with industry standards in demanding environments.

The company said Safetec’s major geographic markets include the Middle East, Europe and Africa.

Executive comments on the deal

Marc Ronchetti, Group Chief Executive of Halma, commented: “Safetec further enhances our capabilities in fire and gas safety systems for complex industrial environments.

“It brings deep engineering expertise and a strong reputation for delivering high-quality, tailored safety solutions for its customers.

“These capabilities further strengthen the Safety sector and extend our reach in supporting the protection of lives and critical assets.

“We are pleased to welcome Safetec to Halma and excited by the opportunities for its continued growth.”

Marco Stumpo, CEO of Safetec, said: “We are delighted to join Halma, a group that shares our values and vision.

“By joining Halma, we retain our autonomy, while benefiting from Halma’s global network and expertise to accelerate our international growth and enhance our integrated safety solutions offering”.

MSA brings remote fixed gas and flame detection notifications to EMEA

MSA launches EMEA access to fixed gas and flame detection live data

MSA Safety has launched its Remote Monitoring and Notifications solution for Fixed Gas and Flame Detection in EMEA, combining MSA Grid and FieldServer gateways to provide live data access and notifications.

MSA Safety said: “We’d like to share that our Remote Monitoring and Notifications solution for Fixed Gas and Flame Detection is now available in EMEA.

“Many industrial facilities operate continuously, and staying connected to safety systems can help teams act promptly when issues arise.

“With the combination of MSA Grid and FieldServer gateways, this solution provides access to live data and notifications from gas and flame detection devices.”

The company said the solution is designed to integrate into a range of environments and support monitoring at scale.

MSA Safety said it is intended to help users track equipment performance and safety events in real time.

Remote access via MSA Grid

MSA Safety said the FieldServer gateways are intended to keep users connected to fixed gas and flame detection devices when they are away from a facility.

The company said the same approach can support oversight of unmanned facilities.

MSA Safety described its Equipment Remote Monitoring and Notifications solutions as designed to integrate into many environments and provide scalable insight across equipment and processes.

The company said users can access customised insight or more detailed telemetry and data across a single facility or process, or across a wide geography.

MSA Safety said each fixed gas and flame detection FieldServer is pre-configured with its fixed gas and flame detection products before delivery to enable cloud communications to one or many MSA products.

Supported detectors and control equipment

MSA Safety said the pre-configured FieldServer can enable cloud communications for gas and flame detectors including the General Monitors S5000, Observer i and Senscient ELDS.

The company said the same set-up supports IR5500, FL5000, FL4000H and FL500 or FL500-H2.

MSA Safety said the Ultima X5000 can connect via 4-20mA, with 4-20mA available only in a NEMA 4 enclosure.

For controllers and monitors, the company said the list includes SENTRY io, SupremaTouch, 9010 or 9020 SIL and GasGard XL.

MSA Safety said the FieldServer also supports Chillgard 5000 and Chillgard 5000 Ammonia.

The company said the fixed gas and flame detection FieldServer can also be configured to support third-party equipment with native Modbus or BACnet connectivity.

MSA Safety said hazardous gas applications require an additional approved enclosure where the FieldServer is planned for that use.

Cybersecurity and compliance features

MSA Safety said Grid FieldServer Manager provides secure remote connectivity with fixed gas and flame detection FieldServers so users can configure, update and support connected industrial devices.

The company said connected devices can also be integrated with business applications and other cloud-based services.

MSA Safety said users can remotely access and monitor fixed gas and flame detection FieldServers via Grid FieldVEU and display up to 15 data points per device.

On security controls, the company said FieldSafe is a feature set added to every FieldServer gateway, covering local hardware and the MSA Grid FieldServer Manager application.

MSA Safety said gateway to internet browser and gateway to MSA Grid connections are secured with HTTPS using TLS or SSL.

The company said it has partnered with Amazon Web Services for MSA Grid, citing security features available through AWS.

MSA Safety said all FieldServer devices are designed to be compliant with California State Bill 327.

The company said FieldSafe includes three security levels and user profiles, and that its FieldServer gateways and MSA Grid have passed third-party security penetration testing.

The Last Word on gas detection with Sensitron

Sensitron’s Key Account Manager HVAC-R, Emanuele Barbieri, explains how accurate gas detection safeguards people and assets in regulated high-risk environments

How long have you worked at Sensitron, and what does your current role involve in HVAC-R?

I’ve been working at Sensitron for over five years as a Key Account Manager focusing on the HVAC-R sector.

My role involves developing the refrigeration market by identifying customer needs and providing bespoke solutions, ranging from integrated machine-side systems for chillers and heat pumps to standalone gas-detection products.

For new audiences, what does Sensitron do and which industry problems is it addressing?

Sensitron designs and manufactures gas-detection systems, including both detectors and control panels, capable of monitoring more than 70 different gases.

We are committed to staying ahead of technological developments, particularly with new refrigerants, and to addressing the potential risks they introduce, such as flammability, toxicity, and environmental concerns.

Our goal is to help our customers protect people, environments, and infrastructure from gas-related hazards.

Can you outline Sensitron’s main product series and how they are used in daily operations?

Our product portfolio includes four main series: SMART 3G, SMART 3, SMART S, and the PARK system.

Each is designed to meet specific application needs; for instance, the SMART 3G series is ideal for high-performance settings.

We provide complete gas-detection systems, including both control panels and detectors, that operate autonomously when a gas hazard is detected.

However, regular maintenance is essential to ensure continued performance.

Maintenance personnel play a critical role in keeping each system efficient and reliable.

How do Sensitron’s detectors manage various gases, and why is accurate differentiation important?

Each type of gas requires a specific detection technology to ensure accurate readings.

We use infrared sensors for A1 and A2L refrigerants, carbon dioxide, and flammable gases; electrochemical cells for toxic gases and oxygen; catalytic sensors for flammable gases; and photo-ionisation detectors for volatile organic compounds.

New-generation refrigerants, owing to their complex compositions, have been particularly challenging, but we’ve achieved excellent results by using infrared sensing technologies.

We remain open to evaluating new detection technologies to continuously improve performance and accuracy.

How does Sensitron ensure product reliability in harsh or industrial environments?

Our approach always starts with understanding the customer’s specific requirements so we can provide the most suitable solutions.

Our systems are built to perform in difficult environments, including classified areas, and meet rigorous standards such as ATEX and EN 60079-29-1.

This ensures both reliability and accuracy, even under the most demanding conditions.

What developments should safety professionals expect next from Sensitron’s HVAC-R division?

We are focused on responding to evolving market needs by continuously adapting and reinventing ourselves.

We are currently developing new products that we believe will align with future safety requirements.

The HVAC-R sector, in particular, is experiencing strong growth, and we anticipate further consolidation in ATEX-classified areas as well as expansion into non-classified environments.

This was originally published in the November 2025 Edition of International Fire & Safety Journal. To read your FREE copy, click here.

MSA Safety introduces new six-gas detector for confined spaces

MSA Safety launches ALTAIR io 6 gas detector at A+A 2025

MSA Safety has introduced the ALTAIR io 6 Multigas Detector at the 2025 A+A International Trade Fair and Congress in Düsseldorf, Germany.

The company said the six-gas detector is designed for confined space monitoring and sampling applications.

It will become part of the MSA Connected Work Platform and will be the company’s first cellular-connected gas detector to include an integrated pump.

According to MSA Safety, the ALTAIR io 6 features XCell sensors, a large and clear display, and a removable rechargeable external battery.

It can be handheld or worn, depending on site needs.

The device will join the existing ALTAIR io 4 Gas Detection Wearable on the same platform.

Integration with the MSA Connected Work Platform

The company said the io 6 and io 4 share the same interface and use MSA Grid software, which allows safety managers to integrate both models into a single monitoring network.

MSA Grid can display device locations and alerts in real time, as well as provide immediate access to data from individual units or entire fleets.

The io 6 is expected to be available for order in early 2026.

Designed for industrial and confined space applications

MSA Safety stated that the io 6 is suited for use across construction, manufacturing, oil and gas, and utilities sectors.

The io 4 model supports continuous personal monitoring, while the io 6 is intended for sampling confined spaces and job sites before entry.

Dave Howells, President of MSA International, said: “Our focus is on helping to keep workers safe by developing innovative safety solutions so our customers can enhance protection, compliance, and efficiency.”

He added: “By featuring our Connected Work Platform and broad range of industrial safety solutions, we’ll give A+A attendees a hands-on experience to learn more about how MSA is using technology and data to help make it easier for workers to have the best solution for their job.”

Additional MSA products on display at A+A 2025

The company confirmed that its stand in Hall 1, Stand C42, also features a wide range of safety products.

These include V-SERIES Harnesses designed for flexibility and comfort, MSA Latchways Lifeline Systems for mobility and fall safety, and V-Gard Safety Helmets listed in the Chartered Institute of Building #PPEthatfits Directory.

Other products on display include the M1 Self-Contained Breathing Apparatus, suitable for industrial, confined space and fire service use; the FL500-H2 UV/IR Flame Detector for Hydrogen; and the ULTIMA X5000 Gas Monitor, which supports dual sensing and Bluetooth connectivity for remote monitoring.

Relevance for fire and safety professionals

The introduction of the ALTAIR io 6 Multigas Detector could be of interest to safety officers, equipment specifiers and industrial site managers involved in confined space entry or hazardous gas monitoring.

Its cellular connectivity and integration through MSA Grid may support teams managing multiple detectors across large or complex worksites.

Fire protection contractors and facility safety engineers in industries such as oil and gas, manufacturing and utilities may find relevance in the device’s sampling capabilities and integration with existing monitoring systems.

Attendees at trade events like A+A 2025 can assess its performance alongside MSA’s broader range of fall protection, respiratory and flame detection products.

What many teams miss about gas detectors on short-term sites

Gas detectors gaps on temporary worksites

Crowcon Detection Instruments has warned that temporary and mobile worksites are often neglected when it comes to gas detection, leaving workers exposed to invisible hazards.

The company said that such sites, which include refinery turnarounds and short-term construction projects, frequently lack adequate gas safety systems.

According to Crowcon, data from 2015 to 2020 shows that temporary worksites across the UK accounted for 11 deaths and more than 130 injuries.

Ed Clapham, Product Manager at Crowcon Detection Instruments, said: “The environment of a temporary worksite clearly demonstrates the need for gas monitoring, mainly due to the way these sites operate.

“Most, if not all, temporary worksites run under intense time, deadline and cost pressures, with crews often required to move rapidly between jobs and environments.

“However, these quick turnaround times and competing pressures frequently result in safety systems being overlooked.”

He added that when teams rely on assumptions rather than real-time monitoring, they create a safety gap that can have serious consequences.

Cost and awareness challenges in gas safety

Clapham said: “It’s important for teams operating on mobile or short-term worksites to remember that temporary operations can carry long-term consequences if hazards are underestimated.

“If a project is only expected to last a few days or weeks, decision-makers sometimes assume it doesn’t require the same level of safety infrastructure as a permanent site, when in fact, this mindset can be dangerous.

“The reality is that temporary setups tend to be more unpredictable, often involving changing personnel, unfamiliar layouts and makeshift conditions that increase the risk of gas exposure.”

He explained that limited budgets and a lack of awareness often prevent proper investment in portable detection systems.

“Because these worksites are considered short term, tight project budgets and limited resources can mean that gas detection falls into the ‘nice to have’ category rather than being treated as essential, when this should not be the case,” Clapham said.

“In some cases, a lack of awareness or expertise is also to blame. Not every project manager or contractor fully understands the technical risks associated with invisible hazards such as oxygen depletion or low-level toxic gas exposure.”

The need for proactive safety measures

Clapham continued: “It’s quite common for businesses, and individuals, to be more reactive than preventative. It’s not unusual for safety equipment to be purchased after an incident or regulatory audit, rather than before.

“This happens because, without visible consequences, leadership may not prioritise proactive investment. This can unknowingly create a dangerous cycle in which, until something goes wrong, gas detection remains invisible, both literally and figuratively.”

He said that under Health and Safety Executive (HSE) guidance, project managers are legally responsible for ensuring that workers are not exposed to foreseeable hazards, regardless of project duration.

“Beyond compliance, incidents are highly disruptive and costly,” he added.

“Even a single near-miss can derail schedules, trigger investigations, halt operations and damage client relationships.”

Portable gas detectors addressing temporary site risks

Clapham said: “Gas detection technology has advanced significantly over the years, which is why it’s so important to leverage the full capabilities of modern safety equipment, especially across temporary worksites, where portable solutions are ideal.

“Temporary worksites are defined by constant change and rotating personnel. This level of movement makes it difficult to maintain consistent safety standards, but this is precisely where portable and area gas detectors excel, providing the agility and adaptability needed to match such fluid operations.

“Modern portable and area gas detectors offer a practical, proven way to deliver the reliability of fixed monitoring to virtually any location. These compact, connected systems can be deployed quickly to cover confined spaces, open worksites or multi-zone maintenance areas, without disrupting workflow.

“By implementing connected, mobile detection systems, teams can maintain full situational awareness, even in fast-paced or remote environments. Ultimately, it’s about making safety flexible, without ever lowering standards.”

Relevance for fire and safety professionals

This information is relevant to safety officers, project managers and compliance leaders overseeing short-term or mobile industrial operations.

The insights highlight a recurring issue in temporary work environments, where gas detection is often deprioritised despite clear legal and operational risks.

Professionals responsible for safety planning in construction, maintenance and refinery operations can use portable gas detection technology to ensure continuous monitoring even in fluid, multi-site projects.

The data cited by Crowcon and the British Safety Council reinforces that gas-related incidents remain a leading cause of injury and fatality across temporary worksites, underscoring the importance of equipping all crews with portable detection systems from project start to completion.

Blackline Safety celebrates eighth award for EXO 8 device in 2025

Blackline Safety’s EXO 8 earns Firehouse Innovation Award

Blackline Safety has announced that its EXO 8 area monitor has been named a 2025 Firehouse Innovation Award winner.

The company said this recognition marks the eighth major industry award for the device in 2025.

The Firehouse Innovation Awards highlight advances that improve firefighter and emergency response operations.

Firehouse Magazine described EXO 8 as “the only area monitor that detects eight different gases and gamma radiation in a single, rugged, portable device.”

It called the model “a game changer for firefighters who operate in high-stakes environments.”

Cody Slater, Chief Executive Officer and Chair at Blackline Safety, said: “Earning our eighth award this year is a powerful testament to EXO 8’s impact.”

“It’s redefining what teams expect from area monitoring – connecting responders and industrial crews to the critical data they need to make faster, safer decisions when it matters most.”

Portable monitoring with cloud connectivity

According to the company, EXO 8 is the only portable area monitor that combines gas and gamma radiation detection in a single connected unit.

The system streams data live to the cloud, giving emergency response teams real-time visibility in hazardous environments.

This approach supports decision-making in situations where conditions and substances may be unknown.

The manufacturer explained that the platform enables responders and industrial users to view gas readings and radiation levels instantly from remote locations.

Multiple awards recognise EXO 8 innovation

In addition to the Firehouse award, EXO 8 has earned seven other major honours during 2025.

These include two Occupational Health & Safety (OH&S) New Product of the Year Awards, a Red Dot Design Award, a Préventica Paris Innovation Award and three OH&S Industrial Hygiene Awards.

The company said the recognition reflects the device’s design, innovation and contribution to worker and public safety.

Platform update expands data insight

Blackline Safety confirmed that it has also refreshed its EXO 8 analytics report within the Blackline Live platform.

The update introduces features that allow users to view gas readings by location and track gamma radiation trends over time.

According to the company, these functions make it easier to visualise activity timelines and simplify audits and reporting.

Slater added: “Firefighters and first responders put everything on the line to protect others.

“At Blackline, we’re driven by the belief that they deserve that same level of protection in return.

“With EXO’s real-time monitoring and data, we can give them the visibility, confidence and connection they need to get home safe at the end of the day.”

Relevance for fire and safety professionals

The recognition of EXO 8 will be of interest to fire chiefs, emergency response managers and industrial safety officers who rely on area monitoring technology for operational safety.

The system’s ability to detect eight gases and gamma radiation in a single device reduces the need for multiple instruments during hazardous response operations.

Its integration with cloud-based analytics provides command centres and incident managers with real-time situational awareness across complex or remote environments.

The updated analytics within Blackline Live enable safety teams to review exposure patterns, support post-incident reporting and improve risk analysis procedures.

These developments highlight how connected detection tools can enhance both field safety and data-driven decision-making in firefighting and emergency management.

Where to Install a Carbon Monoxide Detector in Your Home

Carbon monoxide (CO) is often called the ‘silent killer’ because it is an invisible, odourless gas that can be deadly. 

CO poisoning causes dozens of accidental deaths each year and many more illnesses. 

The best protection against this danger is a carbon monoxide detector.

A carbon monoxide detector is a small alarm device that can alert you to CO gas in the air before it harms you. 

However, installing the detector in the right place is crucial. 

What is a Carbon Monoxide Detector?

what is carbon monoxide detector

A carbon monoxide detector (also known as a CO alarm) is a safety device designed to detect the presence of carbon monoxide gas.

It serves a similar role to smoke detectors, but instead of sensing smoke, it monitors for carbon monoxide. 

Because carbon monoxide is impossible for us to detect on our own, a detector is often the only way to know if this gas is building up in your home. 

Carbon monoxide detectors are typically small, battery-powered or mains-powered units that can be mounted on a wall or ceiling. 

They continuously sample the air for CO. 

If the device senses a dangerous concentration of carbon monoxide, it will emit a loud, high-pitched alarm to warn everyone in the vicinity. 

Many modern CO alarms also have test buttons and indicator lights, and some models include digital displays to show CO levels.

Basically, a carbon monoxide detector acts as an early warning system .

It will alert you as soon as CO is present at hazardous levels, giving you time to ventilate the area or evacuate. 

By installing CO detectors in your home, you can be warned of a carbon monoxide leak before it reaches life-threatening levels. 

Where to Install a Carbon Monoxide Detector in Your Home

where to install a carbon monoxide detector

Knowing where to install your carbon monoxide detectors is just as important as having them. 

To provide effective protection, detectors should be placed in locations where they can detect CO quickly and alert people throughout the home. 

The general rule is to install CO alarms near any potential source of carbon monoxide, and near areas where people sleep. 

This ensures that if a dangerous CO leak occurs, the alarm will pick it up early and wake you up if you’re sleeping.

Here are some guidelines for positioning CO detectors in your home:

In Rooms With Fuel-burning Appliances

Place a detector in each room that contains a potential CO source, such as a gas boiler, gas fire, wood-burning stove, or gas cooker. 

For example, if you have a gas boiler in the kitchen or a fireplace in the living room, install a CO alarm in those rooms. 

It should be installed at a distance of 1–3 metres from the appliance, if possible, rather than right next to it. 

This distance helps the detector sample the air in the room effectively without being immediately exposed to small transient puffs of exhaust from the appliance. 

Avoid placing it directly above a cooking appliance or fire, to prevent false alarms from normal fumes or steam.

Near Bedrooms and Living Areas

It’s crucial to have a carbon monoxide detector where it can be heard if you are sleeping. 

CO alarms should be located close to where you sleep.

This includes in each bedroom or in the hallway just outside sleeping areas. 

If carbon monoxide leaks at night, an alarm near the bedrooms will sound and wake people up. 

In living spaces like lounges or any room you spend a lot of time in, position a CO detector at roughly head height.

On Each Level of a Home

Ideally, have at least one CO detector on every floor of your house. 

For a two-storey house, that means one upstairs and one downstairs. 

In a single-storey property or apartment, make sure the one alarm you have is located centrally where its alarm can be heard throughout, and not too far from the main bedroom.

Height and Positioning

Carbon monoxide detectors can be installed on the ceiling or high up on a wall. 

Carbon monoxide has roughly the same density as air and also tends to mix with warm air rising from appliances. 

Therefore, you should place the detector at a height where it will detect the gas in the room’s air column. 

If wall-mounting, put it at least as high as any door or window in that room and about 1.5 metres from the floor. 

If ceiling-mounting, it should be at least 30 cm away from the nearest wall, since corners or edges of the ceiling can create dead air space. 

Always follow the manufacturer’s mounting instructions specific to your detector model, as some detectors are designed to be wall-mounted and others on the ceiling.

Garages

If your home has an attached garage, it is wise to install a CO alarm in the room adjacent to the garage door. 

Car exhaust is a common source of carbon monoxide, and fumes can seep into the house from the garage. 

By placing a detector near the internal door to the garage, you’ll be warned if a car left running or any petrol tools in the garage are causing CO to enter your home.

How Does a Carbon Monoxide Detector Work?

how carbon monoxide detector works

A carbon monoxide detector works continuously to sniff out any CO gas. 

Most modern CO detectors use an electrochemical sensor to detect carbon monoxide. 

This sensor reacts with CO gas and generates an electrical signal proportional to the concentration of CO present. 

In simple terms, the detector is constantly measuring the parts-per-million (ppm) level of carbon monoxide in the surrounding air.

When the CO level climbs too high, the detector’s built-in alarm is triggered. 

Carbon monoxide detectors are designed to activate before healthy adults start feeling symptoms of poisoning. 

They often operate on a concentration-time function.

Even relatively low CO concentrations will set off the alarm if they persist for several hours, while higher concentrations trigger the alarm much faster. 

This ensures you are warned in time to take action.

Power Supply

Most CO alarms on the market are battery-powered, though some plug into mains outlets or are hard-wired into a home’s electrical system. 

Regardless of power source, they all function similarly. 

Alarm

The alarm sound is distinct and piercing (often an intermittent series of loud beeps). 

It is designed to be audible enough to wake people from sleep and alert everyone in the house. 

Where Not to Install a Carbon Monoxide Detector

where not to install a carbon monoxide detector

Installing your carbon monoxide detector in the wrong place can undermine its ability to protect you. 

It may lead to false alarms or, worse, failing to alarm when it should. 

To ensure your CO alarm works effectively, you need to avoid certain bad locations and placement mistakes. 

Let’s look at where not to install a carbon monoxide detector:

Blocked or Enclosed Spaces

Never install a CO detector inside a cupboard, behind heavy furniture, or in any enclosed space. 

The sensor needs access to circulating air to detect CO. 

If it’s obstructed or hidden, it may not sense the carbon monoxide until it’s too late. 

Similarly, don’t put it in a narrow corner or at floor level behind curtains. 

Keep it out in the open where air flows freely around it.

Too Close to Appliances

While you want the detector in the same room as a fuel-burning appliance, placing it right next to or above the appliance can be problematic. 

For instance, mounting a CO alarm directly above a gas cooker or very close to a boiler could lead to nuisance alarms. 

If the detector is too close, it might alarm unnecessarily. 

These frequent false alarms can cause people to become desensitised or to disable the alarm. 

For that reason, a minimum distance (often about 1–3 metres or roughly 10 feet) is recommended between the alarm and the appliance. 

This way the detector monitors the general air in the room, not just the immediate vicinity of the appliance’s exhaust.

Near Windows, Vents, or Fans

Avoid installing a carbon monoxide detector right next to a window, exterior door, air vent, or ventilation fan. 

Draughts and fresh air from outdoors can dilute the carbon monoxide in that area, so the detector might not register the gas even if CO is present elsewhere in the room. 

CO could be building up in a different part of the room while fresh air near the detector keeps it low at that spot. 

Likewise, being next to a heating or air conditioning vent can blow air on the sensor and potentially prevent it from detecting CO. 

Always place detectors at least a few feet away from any sources of strong drafts or ventilation.

High Humidity

Do not install CO alarms in bathrooms or above cookers and kettles where they will be exposed to a lot of steam and humidity. 

Excess moisture in the air can interfere with the sensor and lead to false alarms or corrosion over time. 

A hot steamy shower could trigger a nearby CO alarm falsely, or constant humidity might damage its electronic components. 

Keep detectors out of very damp areas like bathrooms, laundry rooms, or right next to humidifiers. 

The same goes for areas with grease or smoke from cooking. 

Grease buildup can clog the sensor opening. 

It’s best to have the kitchen CO detector at least a few metres away from the hob or oven.

Extreme Temperatures

CO detectors generally should be used in living spaces. 

Placing one in an environment that is extremely cold or hot (outside the typical range of about -10°C to 40°C) can cause it to malfunction. 

If you put a detector in an unheated garage or attic that freezes in winter, its battery or sensor might not work properly. 

Instead of mounting an alarm inside a potentially extreme environment like a loft or garage, mount it in the adjacent room where it will still detect CO. 

Always check the manual as it will specify the acceptable temperature and humidity range for the unit.

Out of Earshot

An often-overlooked ‘wrong place’ is any location where you would not hear the alarm. 

Remember that the purpose of a CO detector is to wake you or alert you to danger. 

If you install one in a far corner of the basement but you sleep two floors up, that’s not going to be very useful unless the alarms are interconnected. 

Make sure at least one alarm is close enough to sleeping areas that it would wake everyone up. 

If you have a large home, consider interconnected alarms that all sound if one detects CO, so you can hear the alert everywhere. 

For a standard standalone detector, place it within hearing range of bedrooms.

Carbon Monoxide Sources in Your Home

carbon monoxide sources

We’ve talked about where to put CO detectors, but what are the common sources of carbon monoxide inside a home? 

Carbon monoxide is produced by the incomplete burning of carbon-based fuels. 

This means any appliance or equipment that burns gas, coal, wood, oil, petrol, charcoal, or other fossil fuels can potentially produce carbon monoxide.

In a household setting, several sources can create CO gas:

Gas-fired Appliances

This includes gas boilers (central heating systems), gas water heaters, gas fires in fireplaces, and gas cookers/ovens. 

When working correctly, these appliances burn gas (natural gas or LPG) cleanly to produce heat. 

However, if they are faulty, poorly ventilated, or not properly adjusted, they can produce carbon monoxide. 

For example, a boiler with a blocked flue or a cooker with a yellow, inefficient flame can release CO into your kitchen or utility room. 

It’s one reason regular servicing of gas appliances is so important.

Solid Fuel and Wood Burning Appliances

Wood stoves, coal stoves, open fireplaces, and pellet burners can all emit carbon monoxide. 

Solid fuels naturally create CO as they smoulder and burn. 

If you have a chimney or flue that’s partially blocked or a stove that isn’t drawing properly, CO can spill back into the room. 

Even dying embers in a fireplace overnight can produce CO. 

Always ensure chimneys are clear and well-maintained, and have a CO detector in any room with a fireplace or wood-burning stove.

Vehicle Exhaust

If you have an attached garage, a prime source of carbon monoxide is a car engine. 

Running a car in a garage can build up CO. 

If the garage is attached to the house, the gas can seep through doorways or any small gaps into the home. 

This is why it’s essential to have detectors near the door to an attached garage and of course. 

Never leave vehicles running inside the garage with the door closed. 

Even with the garage door open, CO can accumulate in the garage and drift indoors. 

Some people warm up cars in winter or leave engines running unwittingly and a CO alarm can pick up the danger if those fumes begin entering the home.

Key Takeaways

You should now have more of an understanding of where to install a carbon monoxide detector in your home.

Carbon monoxide detectors are a simple but vital addition to any home that has a fuel-burning appliance. 

They provide an early warning of a deadly gas that you cannot see or smell.

By following the placement guidelines outlined above, you and your family will be alerted in time to act.

Always remember to maintain your detectors: test them regularly and replace the batteries as needed. 

Additionally, maintain your fuel-burning appliances with regular servicing to prevent CO problems at the source.

In a house equipped with properly placed carbon monoxide detectors, you can rest easier knowing you have a watchdog against this silent hazard. 

The shrill beeping of a CO alarm at 3 AM might be jarring, but it could save your life. 

It’s far better than the alternative of not knowing about a carbon monoxide leak.