Showing posts with label AHJ. Show all posts
Showing posts with label AHJ. Show all posts

Sunday, June 15, 2025

Fire Rated Door & What Should Keep In Mind

Does Your Building Need Fire Rated Door & What Should Keep In Mind? 

When a fire emergency strikes, nothing is more important than ensuring the safety of the people inside the premises. And while many factors to consider—like having adequately trained security guards and reliable fire alarms—one of the most effective tools are fireproof doors.

Ensuring the safety and fire resistance of buildings is paramount, particularly in areas that are critical for containment and evacuation during emergencies. The National Building Code (NBC) outlines specific requirements for the installation of fire door assemblies to enhance fire protection across various building components and areas. This summary categorises these requirements into general building components, specific shafts and chutes, lobbies, stairwells, basements, corridors, egress pathways, high hazard areas, and special situations. By adhering to these guidelines, the integrity of fire containment within structures is significantly improved, providing safer environments for occupants and aiding in effective emergency response efforts. The following sections detail the specific fire door ratings required for each critical area as per NBC clauses.

WHAT IS A FIRE-RATED DOOR?

Let’s be realistic: doors cannot be 100% fireproof. When fires break out inside a property, they create an intense heat known to melt steel doors. However, the function of fire-rated doors isn’t to survive the flames; instead, it’s to slow down the blaze and limit any potential damage from spreading throughout the entire building.

A fire-rated door is a type of door that is specifically designed to resist the effects of fire. They are typically rated by how long they can withstand the heat and flames without sustaining damage. It usually takes into account the material the door is made of, its thickness, shape, and size. The higher the rating, the longer it will be able to withstand fire before it sustains damage or becomes unusable.

Some doors are designed to keep out smoke and heat for 30 minutes, while others can withstand longer. These doors seal the area tightly and protect it from intense heat and smoke regardless of the type.

DO YOU NEED ONE IN YOUR BUILDING?

Modern buildings often require fire-rated doors to abide by the National Building Code of India 2016 is mandates. These doors surround staircase and elevator shafts to help keep smoke or fire from spreading through numerous building floors.

High-Rise Buildings: These doors are often used in high-rise buildings where fire safety is crucial due to the potential for rapid fire spread and evacuation challenges.

Commercial Buildings: Insulated fire doors are commonly installed in commercial structures such as office buildings, shopping malls, and hotels to compartmentalise fire and prevent its spread, protecting occupants and property.

Industrial Facilities: Industries with high fire risk, such as manufacturing plants and warehouses storing flammable materials, may utilise insulated fire doors to contain fires within specific areas and prevent them from spreading throughout the facility.

Healthcare Facilities: Hospitals and medical centers employ insulated fire doors to safeguard patients, staff, and sensitive equipment from fire hazards, maintaining critical operations during emergencies.

If your building does not currently have a fire-rated door, it is recommended to consult an experienced contractor like SSA Integrate to install one for you.

THE ANATOMY OF A FIRE DOOR

A fire door consists of many different components, such as frames, doors, hardware, seals and glass that help keep out flames or smoke once closed.

Thermal insulation in fire door assemblies is most important under anatomy of a fire door.

FIRE RATING LABEL

On fire ratings, you may see several minutes or hours. It is the fire endurance rating, which the certifying agency gives after exposing the door to extreme temperatures reaching as high as 1,925° F (approximately 1,000° C). You’ll see these in intervals of 30, 60, 120, or 240 minutes, while some labels show hours. Fire rating labels are typically found on the hinge side of the door and the door frame, hidden from view.

Insulated fire doors are tested for both integrity and insulation, further divided into partially insulated (minimum 60 minutes insulation) and fully insulated (integrity rating equals insulation rating). Uninsulated fire doors are tested solely for integrity. As per NBC the ratings are:

A. GENERAL BUILDING AND CONSTRUCTION TYPES

1. Type 1 to 3 Construction

• Clause 3.4.5: Every wall opening protected with fire-resisting doors (120 min rating).

2. Type 4 Construction

• Clause 3.4.5.3: Openings in fire separating walls or floors fitted with fire-resistant assemblies (120 min rating). 

B. CORRIDORS AND EGRESS PATHWAYS

1. Exit Access Corridors in Specific Occupancies

• Clause 4.6.1: Fire doors (20 min self-closing for corridors, 120 min for exit passageways).

2. Progressive Horizontal Evacuation Compartments

• Clause 6.3.2 (c): Self-closing fire doors with electromagnetic hold open and sequence coordinators.

• Clause 6.3.2 (g) (12): Fire doors (120 min rating).

C. HIGH HAZARD AREAS

1. Pump House

• Clause 5.1.2.2 (c): Fire doors (120 min rating).

2. Stores, Engineering Workshops, High Hazard Areas

• Clause 6.1.2 (d): Fire doors with signage to be kept closed.

• Clause 6.7.1.1 (m): Two fire doors (180 min rating each).

D. SPECIFIC BUILDING COMPONENTS AND AREAS

1. Firefighting Shaft (Fire Tower)

• Clause 2.24: Fire doors (120 min rating).

2. Horizontal Exit

• Clause 2.39: Fire doors in fire-resistant walls (120 min rating).

3. Fire Command Centre (FCC)

• Clause 3.4.12 (b): Fire doors (120 min rating).

4. Electrical and Plumbing Shafts

• Clause 3.4.5.4: Electrical service ducts and shafts (120 min rating).

• Clause 3.4.5.4*: Plumbing shafts with doors opening inside the building (30 min rating).

5. Refuse Chutes

• Clause 3.4.5.5: Inspection panel and doors (60 min rating).

6. Lift Lobby and Stairwell

• Clause 4.2.7: Fire doors (120 min rating).

7. Basement Car Parking

• Clause 4.2.19 (c): Door openings to basement (120 min rating).

8. Access to Exit Staircase

• Clause 4.4.2.4.3.2 (h) (2): Fire doors (120 min rating).

9. Lift Lobby

• Table 6 (Note 1): Fire doors (120 min rating).

These groupings facilitate a clearer understanding of where fire door assemblies are needed according to their specific applications and requirements.

fire door specification as per NBC

In the building safety, fire door specification as per NBC play a crucial role in protecting lives and property.

The National Building Code (NBC) of India is a comprehensive set of guidelines that ensure the safety, health, and sustainability of buildings. When it comes to fire doors, the NBC outlines specific requirements to enhance fire safety. Here’s a closer look at the key specifications:

1.   Fire Resistance Rating NBC mandates that fire doors must have a minimum fire resistance rating, usually measured in hours. The rating indicates how long the door can withstand fire exposure while maintaining its integrity. Common ratings are 30, 60, 90, and 120 minutes.

2.   Material and Construction Fire doors must be constructed from materials that can withstand high temperatures and prevent the spread of fire and smoke. Steel and timber are common materials used, often with a core of fire-resistant material.

3.   Door Frame and Hardware The door frame, hinges, locks, and other hardware components must also meet fire resistance standards. Self-closing mechanisms are essential to ensure the door closes automatically in the event of a fire.

4.   Smoke Seals Effective smoke seals are crucial in fire doors to prevent the spread of smoke, which can be as dangerous as the fire itself. The NBC specifies the type and installation of these seals.

5.   Glazing If a fire door includes glazed panels, the glass must be fire-rated and comply with NBC guidelines. The glazing should maintain its integrity under fire conditions for a specified period.

6.   Installation Proper installation is as important as the door itself. NBC specifies that fire doors must be installed by trained professionals to ensure they function correctly in an emergency.

Benefits of NBC Compliant Fire Doors

Adhering to NBC specifications for fire doors offers numerous benefits:

·        Enhanced Safety: Ensures maximum protection for occupants by containing fire and smoke.

·        Legal Compliance: Meets regulatory requirements, reducing liability and ensuring legal adherence.

·        Peace of Mind: Provides reassurance that your building is equipped with the best fire safety measures. 

FIRE RESISTANT DOOR

Fire-rated doors themselves can be either made from wood or steel. Steel fire-rated doors typically have higher fire ratings because they are non-flammable and don’t contribute to the flame – no matter what situation arises. Wooden fire-rated doors are usually equipped with a gypsum core, which is resistant to heat and not combustible, or they may contain a regular plasterboard instead.

FIRE RESISTANT GLASS AND SEALS

Some fire doors may include vision panels with glass rated for fires, but these are typically only seen in lower fire-rated doors. Fire doors must also have an intumescent strip at the bottom to seal them off from outside air sources. 

The glass used in fire door assemblies is tested for its ability to withstand intense heat. However, current codes also require it to be tested for resistance against being shattered. It means that each piece of glass must have markings labelled as either resistant against impact or hazardous when broken due to heat exposure. Otherwise, the glass can not be used indoors or in other areas where people risk damaging them.

FIRE RESISTANT LATCHING HARDWARE

Fire-rated doors must be shut close during fires, or the door won’t stop or slow the spread of fire and smoke. Every fire door needs self-closing mechanisms combined with steel ball-bearing hinges, as these are tougher than standard ones.

FIRE PROTECTIVE VS FIRE RESISTIVE DOORS 

Knowing the difference between fire-resistant and fire-protective matters because you need to consider how much protection your property needs. It can depend on your commercial building; for example, you need a fire-resistive door in a school science lab with highly combustible substances that require protection from high heat.

Fire Protective: If an assembly is classified as fire-protective, it defends against the spread of flames and smoke to protect people for a specific time. A typical fire-protective door would be appropriate if building codes allow door-protective assemblies, including the door itself, sidelights, or windows. Traditional wired glass, glass ceramics, and tempered glass can all be used to achieve this protection. 

This type only partially stops heat from transferring to the other side of the glass, but it can be fire-rated for up to 180 minutes but with size limitations. 

Fire Resistive: If an assembly is fire-resistant, it has the same protection against flames and smoke as its fire-protective counterpart but also offers another level of security by blocking off radiant and conductive heat. 

Fire resistance is weaker than fireproofing. Most fire-resistant doors are only rated for 45 minutes’ worth of protection against fires or smoke. Experts point out that the chief difference between fire-resistant and fireproofing materials is that they are not supposed to be able to contain heat.

CAN GLASS DOORS BE FIRE-RATED?

Fire-rated glass is a particular type of glass that is specifically designed to offer protection against fires. It acts as an impenetrable shield against flames, thus preventing them from spreading, and it stops any smoke from invading other parts of the building. 

Depending on the type of glass used, this glazed panel may also act as an insulator, which protects the rest of the building from extreme heat caused by fires. All fire-rated doors containing glass must use fire-resistant material, according to strict building regulations.

Manufacturers offer a wide range of fire-resistant glass doors for various applications. For instance, these doors are used in high-rise buildings and other places requiring higher security levels. The door, frame, lite kits, and hardware create the necessary protection for the building.

Installing a fire-rated door is not easy, but it can be done with the help of experts in the industry. Hart Engineering prides itself on creating compliant solutions that provide customers with peace of mind regarding fire safety. Contact SSA Integrate today, and we’ll help ensure that your property has the necessary equipment to meet your needs.

Before choosing fire-rated glass for your project, consider these factors: 

·        NBC Part 4 Certification – Ensure the glass meets NBC Part 4 fire safety standards, which outline essential fire protection measures. 

·        BIS Standards Compliance – Fire-rated glass should be tested under IS 16947:2018 and IS 16945:2018, India’s benchmark standards for fire resistance and safety. 

·        Local Fire Department Approvals – Each state or city has its own fire safety regulations. Ensure that your fire-rated glass is pre-approved for municipal construction projects. 

·        Third-Party Certifications – Look for additional certifications, such as IGBC, GRIHA, or LEED, which indicate compliance with sustainable and safety standards.

NBC sets clear performance standards based on three classifications: 

E-Class (Integrity Only) – The First Line of Defense

This type of fire-rated glass prevents the spread of flames and smoke but does not block heat transfer. It’s ideal for applications where containing fire is crucial, but radiant heat protection isn’t a major concern. 

EW-Class (Integrity + Radiation Control) – Extra Protection

EW-Class glass takes it a step further by reducing the amount of heat transferred through the glass. This means that while it prevents flames and smoke from spreading, it also minimises the impact of radiant heat, making it safer for evacuation routes. 

EI-Class (Integrity + Insulation) – Maximum Safety  

This is the gold standard of fire-rated glass. Not only does it stop flames and smoke, but it also blocks radiant heat. This is ideal for high-risk areas where occupant safety is a priority. 

When selecting fire-rated glass, it’s essential to choose the right classification based on the building’s function and fire safety needs.

NBC has mapped out specific areas that require fire-rated glass to ensure maximum safety while maintaining architectural integrity.

By strategically integrating fire-rated glass in these key areas, buildings can meet NBC compliance while enhancing safety without sacrificing aesthetics. 

Here’s where it should be used: 

Internal & External Fire Exit Stairways – These are critical evacuation routes. Fire-rated doors and partitions help contain the fire and provide a safe exit path. 

Firefighting Shafts – Essential for emergency responders, these areas must be enclosed with fire-resistant materials to keep them operational during a fire. 

Non-Naturally Ventilated Lift Lobbies – Since smoke buildup in lift areas can be dangerous, fire-rated glass barriers help create a smoke-free zone. 

Refuge Areas – Designated safe zones in high-rise buildings need fire-rated partitions to provide temporary protection while evacuation is underway. 

Car Parking Separations – Parking garages carry a fire risk due to fuel exposure and vehicle congestion. Fire-resistant walls help contain potential fires, preventing them from spreading and enhancing overall safety. 

Kitchen Separations – Commercial and residential kitchens require heat-resistant barriers to prevent fire from spreading to other areas.

Who Can Inspect Fire Doors?
Fire doors play a critical role in protecting life and property — but only if they’re working as intended. That’s why annual inspections are required.
But here’s the question:

Who’s qualified to perform them?
According to NFPA 80, inspections must be performed by a qualified person — someone with the knowledge of door operation and applicable codes.
 
That person could be:
 • A third-party fire door inspector
 • A trained building employee (Training Certificate must show)

 •  A person who attend “Capsule Course on NBC 2016” from NITS, BIS (Attendance Certificate must show)

 • Even the property owner if certified.

So who decides what “qualified” means?
 
👉 The Authority Having Jurisdiction (AHJ) does.

Qualification is typically based on demonstrated knowledge through a recognized degree, certification, professional standing (Like NFPA Member), or training.


About Author:

Dr. Arindam Bhadra is a Fire safety consultant based in Kolkata, India, with over 20 years of experience in Fire safety systems. He’s currently founding director of the Sprinkler Fire Safety Awareness and Welfare Foundation & SSA Integrate. He working on Fire Safety awareness, training, consultancy & Audit in same field. Dr. Arindam Bhadra is popularly known as "Fire ka Doctor" because of his expertise in fire safety, prevention, and awareness, helping people and organizations stay safe from fire hazards. He is Member of FSAI, NFPA etc. He is certified fire Inspector and certified Fire Protection professional.

Monday, January 1, 2024

UL Listed and FM Approvals for Fire Protection Under NFPA 13?

UL Listed and FM Approvals for Fire Protection Under NFPA 13? 

Listings are required for all essential system components but acceptance of specific approvals—UL listed, FM approved, or otherwise—is determined by local code officials.

“UL listed” and “FM approval”—along with their lesser-mentioned cousin, “certified”—are terms that circulate freely in the world of fire protection. Fire pumps, fire sprinklers, pipes, extinguishers, and a vast array of other products regularly undergo rigorous, third-party testing according to the standards of groups like FM Global and UL (formerly known as Underwriters Laboratories). But for many consumers, what remains unclear is the matter of which certifications to use and when they’re required.

In this article, we bring some clarity to the subject of listings and approvals. We explain what terms like these mean and who decides when a particular organization—be it UL, FM Global/Approvals, or another group—has the credibility needed to certify specific types of fire protection products. Finally, we present readers with an overview of products requiring these certifications in NFPA 13: Standard for the Installation of Sprinkler Systems.

UL-listed and/or FM-approved residential and commercial fire sprinkler heads, check valves, hose angle valves, CPVC pipe, pipe hangers, and fire extinguishers are just part of our vast catalog of certified equipment—just take a look.

UL listed and FM approval act as industry synonyms for “listed” or “certified”—but the different terms have distinct definitions under NFPA codes and standards

Manufacturers, retailers, and consumers often describe fire protection products as “UL-listed,” “FM-approval,” and even “UL and FM approved.” But as Bruce Rose at CUI Insights notes, there’s really no such thing as “UL-approved”—and for good reason. “[I]f you look at their website, the only mention of ‘approvals’ is in examples of incorrect terms. UL avoids the word as a way of indicating that it really is the manufacturer’s responsibility to ensure safety and that UL only acts as an auditor[.]”

While this shorthand is popular (including, at times, in our own products), there’s another good reason to understand the difference between “listed” and “approved:” the NFPA draws a sharp distinction between those products or installations that are listed and those that are approved.

From the 2019 edition of NFPA 13

3.2.1* Approved. Acceptable to the authority having jurisdiction.

3.2.3* Listed. Equipment, materials, or services included in a list published by an organization that is acceptable to the authority having jurisdiction and concerned with evaluation of products or services, that maintains periodic inspection of production of listed equipment or materials or periodic evaluation of services, and whose listing states that either the equipment, material, or service meets appropriate designated standards or has been tested and found suitable for a specified purpose.

A.3.2.3 Listed. The means for identifying listed equipment may vary for each organization concerned with product evaluation; some organizations do not recognize equipment as listed unless it is also labeled. The authority having jurisdiction should utilize the system employed by the listing organization to identify a listed product.

Code officials decide what’s approved, but it takes third-party evaluation to make a product listed. Based on tests assessing durability, longevity, and proper function—along with audits of manufacturers’ processes—listings from organizations like UL and FM Approvals provide stakeholders with a measure of confidence in products’ performance that’s not otherwise possible.

And here’s where it gets even more confusing: FM Approvals (the name of the independent testing branch of the FM Global insurance company) spurs the description “FM Approved.” This is NOT an “approval” according to the NFPA definitions above, as only the authority having jurisdiction can approve something (more on who that authority is in a second).

Thus, when you see either “UL listed” or “FM approved,” it essentially means it was tested by the safety organizations for a specific application and “listed,” aka “certified.”

Are all listings equal? Only if the AHJ says so

A wide variety of organizations test and attest to the suitability of fire protection equipment. But even listed equipment must be “acceptable to the authority having jurisdiction,” or AHJ (NFPA 13 2019, 3.2.3). But who—or what—is an AHJ?

From the 2019 edition of NFPA 13

3.2.2* Authority Having Jurisdiction (AHJ). An organization, office, or individual responsible for enforcing the requirements of a code or standard, or for approving equipment, materials, an installation, or a procedure.

According to the NFPA 13 Handbook, the AHJ is often a fire marshal or building code official. But the term can cover a variety of public and private people or entities tasked with enforcing standards. In some instances, even an insurance company or corporate safety officer could be an AHJ.

Applied haphazardly, AHJs’ authority to decide which listings are acceptable—and which aren’t—could cause some rather arbitrary problems. However, while some contractors claim to have encountered this exact problem, Michael Johnston at Electrical Contractor suggests that AHJs in the world of electrical work, for example, often rely on lists of testing laboratories—published by the Occupational Safety and Health Administration (OSHA)—for the sake of “consistency.”

Those lists are provided as part of OSHA’s Nationally Recognized Testing Laboratory (NRTL) program. The NTRL “[r]ecognizes private sector organizations” that evaluate products for compliance with various standards. In fact, federal regulations require some products to have approval from an NRTL, including:

  • Automatic fire sprinkler systems
  • Portable fire extinguishers
  • Fire doors (self-closing and not)
  • Fixed extinguishing systems
  • Automatic fire detection devices and equipment

In the world of fire protection, thankfully, an authority having jurisdiction is often your local or state fire official or government inspector, and they usually put great stock in items that are tested and listed by UL, FM, and other companies recognized by the Nationally Recognized Testing Laboratory program.

A handful of nationally recognized testing laboratories, including UL and FM, are responsible for a wide variety of listed fire protection products.

OSHA’s list of NRTLs, then, is a likely starting point for local fire officials. The quick-reference guide below provides a current list of laboratories that test fire equipment ranging from fire sprinklers to amplifiers for fire alarms. While our list is extensive, it isn’t comprehensive—a single laboratory may be recognized for work with hundreds of standards. For more options, check out the current list of NRTLs available at OSHA.

Otherwise, review this select list:

Fire Protection Products in the OSHA list of Nationally Recognized Testing Laboratories (August 2019)

Testing Laboratory

Products

CSA Group Testing and Certification

Fire pumps and electrical accessories

Control units, cables, and amplifiers for fire alarm and protection systems

FM Approvals

Automatic and ESFR fire sprinklers

Plastic pipe and fittings for fire protection service

Foam, dry chemical, and carbon dioxide fire extinguishers

Heat detectors

Fire alarm control panels, signaling devices, and detection products

Intertek Testing Services NA, Inc.

Thermoplastic pipe and gasketed joints for fire protection service

Foam and carbon dioxide fire extinguishers

Fire doors

Alarm valves for fire protection

Detectors, boxes, and accessories for fire alarm systems

Foam fire extinguishers

Fire pumps and controllers

NSF International

PVC and thermoplastic pipe and fittings for fire protection service

QAI Laboratories, LTD

Fire door assemblies

Southwest Research Institute

Plastic pipe for fire protection service

Fire doors and dampers

Flame arrestors

Underwriters Laboratories Inc.

Fire sprinklers, including residential and ESFR

Sprinkler system pipe (metal, thermoplastic, and underground), flexible fittings, and adjustable nipples

Alarm, pressure-reducing, check, and fire pump relief valves

Fire alarm system signalling, power, amplification

Dry chemical, foam, and carbon dioxide fire extinguishers

Fire doors

Fire pumps and accessories

Indicating pressure gauges for fire protection

One overarching rule guides NFPA 13’s requirements for system components and hardware: listings are required for any product that impacts a sprinkler system’s ability to control fires.

From the 2019 edition of NFPA 13

7.1.1.2 Unless the requirements of 7.1.1.3, 7.1.1.4, or 7.1.1.5 are met, all materials and devices essential to successful system operation shall be listed.

7.1.1.2.1 Valve components (including valve trim, internal parts, gaskets, and the like) shall not be required to be individually listed.

7.1.1.3 Equipment as permitted in Table 7.3.1.1 and Table 7.4.1 [select aboveground pipes and fittings discussed below] shall not be required to be listed.

7.1.1.3.1 Nonmetallic pipe and fittings included in Table 7.3.1.1 and Table 7.4.1 shall be listed.

7.1.1.4 Materials meeting the requirements of 17.1.2, 17.1.6.2, 17.1.6.3, and 17.1.7.3 shall not be required to be listed.

7.1.1.5* Components that do not affect system performance shall not be required to be listed.

The NFPA 13 Handbook clarifies that “system performance” pertains only to a sprinkler system’s ability to discharge water as designed. Thus, signs, drains, and pressure gauges don’t need to be listed—but fire sprinklers and pipe hangers do. That said, NFPA and local governments also prescribe specific requirements for signs, drains, and pressure gauges; thus, any component used in a system must meet these enforced standards, and the local requirements (specified in fire codes) dominate.

Because this fire sprinkler points down, the spur-shaped deflector should be convex rather than concave. That’s a tell-tale sign that this is an upright fire sprinkler—which isn’t listed for this use. Source: Fire Protection Deficiencies

Before we get to NFPA 13’s listing requirements, it’s worthwhile to remember that listed products stay listed only when properly installed. In the example above, the fire sprinkler—which may otherwise be perfectly fine—isn’t listed for use in the pendent (hanging) orientation. The deflector, which distributes water as it flows from the pipes, won’t give the water the proper shape, putting areas nearby at risk.

Underground pipes and fittings (private fire service mains)

Underground pipes for fire service mains are a good example of an “either-or” scenario. These underground pipes must either meet one of several manufacturing standards listed in section 6.1.1.1 or they must be listed.

If it doesn’t meet the specific manufacturing standards in 6.1.1.1, a pipe otherwise listed specifically for use as part of a fire service main may be used instead, so long as it’s installed in accordance with its listings (6.1.1.2, 6.1.1.2.1). Likewise, the underground fittings listed in section 6.2 may comply with either specific manufacturing guidelines for cast iron, ductile iron, or malleable iron, or be specifically listed for this use. FM Global offers approvals (listings) for both underground fittings and pipes, including those made from iron, polyvinyl chloride (PVC), and polyethylene.

Aboveground pipes and fittings

All aboveground pipe and tube must meet or exceed certain standards for metallic piping or, in the case of CPVC, nonmetallic piping.

CPVC pipe, however, must also be listed for installation in sprinkler systems (7.3.2.1), as must other types of nonmetallic pipe (7.3.2.1.1).

Select types of steel, brass, and copper pipes do not require sprinkler-system-specific listings if they are made in accordance with the standards of table 7.3.1.1. However, all metallic pipes not meeting the standards presented in table 7.3.1.1 must be listed (7.3.3.1).

Aboveground metal pipes are listed either to UL 852 or, in the case of steel pipe, to FM 1630. Similarly, thermoplastic pipes, including CPVC, are listed to UL 1821 or to FM 1635.

Thermoplastic CPVC couplings are one of many fittings that require listings under NFPA 13.

Devices connected to these pipes also require listings under NFPA 13, including:

  • Nonmetallic pipe fittings (7.4.3)
  • Fittings connecting threaded steel pipes, when those pipes have wall thicknesses less than Schedule 30 or Schedule 40 (7.5.1.2)
  • Welded fittings not meeting standards provided in table 7.4.1 (7.5.2.3.1)
  • Joining methods not specifically described in NFPA 13 (7.5.5.1)

One notable exception to these listing requirements is the grooved coupling, which must only be “dimensionally compatible” with pipes, valves, or fittings (7.5.3.1). However, listings are required when those couplings don’t comply with the standard dimensions provided in ANSI/UL 213 (7.5.3.1.1).

Finally, grooved couplings must always be listed when used with dry pipe systems (7.5.3.2). The reason: due to reduced fire endurance and increased exposure to temperature extremes, grooved couplings serving dry pipe systems tend to degrade faster than their counterparts on wet-pipe systems.

Many other parts require listings, including fire sprinklers, accessories, and valves

Fire sprinklers

The standard for most fire sprinklers is UL 199, Automatic Sprinklers for Fire Protection Service. But sprinklers may be approved for more specific applications, including:

  • Control mode sprinklers, which produce large droplets at low pressures. These are often approved (listed) under FM 2000
  • Residential sprinklers (UL 1626, FM 2030), used in settings ranging from apartment complexes to family homes
  • Early-suppression fast-response (ESFR) heads, listed in accordance with UL 1767 and/or FM 2008

The following fire sprinkler accessories also require listings:

  • Nonmetallic hole-covering plates or escutcheons for fire sprinklers (2019 edition of NFPA 13: 7.2.6)
  • Escutcheons for recessed, flush, or concealed sprinklers (7.2.6.2)
  • Fire sprinkler cover plates (7.2.6.3)

It’s worth noting that metallic escutcheons don’t require listings for non-recessed pendent or horizontal sidewall sprinklers—but all other types do.

Valves

Valves that let contractors test the system or drain water during renovations don’t need to be listed (16.9.1.1). However, valves designed to control water supplies do (16.9.3.1.1 – 16.9.3.1.2). According to section 16.9.3.2, these valves—called listed indicating valves—always require third-party listings, with one exception: wrench-operated outdoor valves installed under a road box.

Other types of valves requiring listings include:

  • Alarm (check) valves
  • Dry pipe valves
  • Pressure reducing valves
  • Deluge valves
  • Preaction valves

So many listings, so little time

We’ve barely scratched the surface of the listings required by NFPA’s various standards—to say nothing of the range of certifications offered by third-party organizations. Organizations like FM Approvals and UL have had more than a century to define what makes some products more reliable, effective, and safer than others, and their influence can be felt throughout the fire protection industry.

When in doubt about what’s appropriate, contact your local authority having jurisdiction and a professional fire protection installer.

If you’re looking for listed and approved fire protection products, take a look at QRFS’s selection. We carry a variety of products tested to rigorous standards, including:

  • Residential fire sprinklers
  • Commercial fire sprinklers
  • Brand-name recessed escutcheons
  • Hose angle valves
  • CPVC pipe fittings

The Victaulic V3405 is just one of many UL-listed and FM-approved fire sprinklers in stock now.