Showing posts with label Two-Way Communication. Show all posts
Showing posts with label Two-Way Communication. Show all posts

Tuesday, August 29, 2017

Two-Way Communication & Area of Refuge Requirements | IBC & NFPA 72

Two-way communication systems provide emergency voice communication between building occupants who may need evacuation assistance and personnel at a fire command center, central control point, supervising station, emergency services location, or other approved location.

These systems are commonly associated with Areas of Refuge, accessible elevator landings, occupant evacuation elevator lobbies, and other accessible means of egress provisions. They are especially important for occupants who cannot safely use stairs during a fire or other emergency.

This guide explains when two-way communication systems are required, where call stations are installed, how Area of Refuge requirements differ from elevator-landing requirements, and how the International Building Code (IBC), NFPA 72, NFPA 101, ICC A117.1, and UL 2525 work together.

Code Edition Note: Building and fire codes are adopted locally and jurisdictions do not always use the same edition. This article explains the modern IBC/NFPA framework, but designers and installers must verify the code edition and amendments adopted by the Authority Having Jurisdiction (AHJ).

What Is a Two-Way Communication System?

A two-way emergency communication system allows a person requesting assistance to communicate back and forth with personnel at an approved receiving location.

Unlike a typical fire alarm emergency voice/alarm communication system that primarily broadcasts instructions to building occupants, a two-way communication system provides communication in both directions.

A typical system can include:

  • A master or central control station
  • Remote two-way call stations
  • Audible communication
  • Visible communication/status indication
  • Supervised communication pathways
  • Primary and secondary power
  • Automatic off-premises communication where required

Depending on the building and applicable code requirements, remote stations can be located at Areas of Refuge, elevator landings, occupant evacuation elevator lobbies, or other required emergency communication locations.

Two-Way Communication vs. One-Way Emergency Voice Communication

This distinction causes considerable confusion in the field.

Two-way communication allows the occupant and receiving personnel to communicate with each other.

One-way emergency communication generally broadcasts instructions or emergency information to occupants without providing the same occupant-to-operator conversation through that communication path.

A fire alarm emergency voice/alarm communication system, often called EVACS, is a common example of a system used to distribute emergency voice instructions.

Two-way emergency communication serves a different purpose: it allows an occupant who needs assistance to call for help and communicate with responding or supervising personnel.

Example of a Two-Way Communication System

The photograph below shows an example of a Space Age Electronics SHIELD 30 two-way emergency communication system.

Space Age Electronics SHIELD 30 two-way emergency communication system
Example of equipment used for a building two-way emergency communication system.

What Codes Cover Two-Way Communication Systems?

Several codes and standards can affect the design of a two-way emergency communication system.

  • International Building Code (IBC) establishes many of the conditions under which two-way communication is required as part of an accessible means of egress.
  • NFPA 101, Life Safety Code contains requirements for Areas of Refuge and emergency communication where that code is adopted.
  • NFPA 72, National Fire Alarm and Signaling Code contains installation and performance requirements for emergency communications systems.
  • ICC A117.1 addresses accessibility requirements that can affect signage, characters, operable parts, and accessible features.
  • UL 2525 is the product safety standard associated with two-way emergency communication systems for rescue assistance applications.
Easy way to remember it: The building or life-safety code generally helps determine when and where the system is required. NFPA 72 provides important requirements for how the emergency communication system is installed and performs.

When Is Two-Way Communication Required at Elevator Landings?

Under the modern IBC framework, a two-way communication system is required at elevator landings serving accessible floors that are one or more stories above or below the level of exit discharge, unless an applicable exception permits otherwise.

This is an important distinction. The requirement does not mean that every elevator in every new building automatically requires a two-way call station at every floor.

The accessible means of egress provisions, floor configuration, elevator type, ramps, Areas of Refuge, and other code conditions must be evaluated.

For a deeper discussion specifically focused on elevator landings, see our Elevator Landing Two-Way Communication Systems Code Guide.

Are Two-Way Call Stations Required at Every Elevator?

No. The IBC provides specific exceptions to the elevator-landing two-way communication requirement.

Depending on the adopted code edition and building conditions, exceptions can address situations such as:

  • Communication already provided within qualifying Areas of Refuge
  • Floors provided with compliant ramps
  • Certain service elevators that are not part of the required accessible means of egress or accessible route
  • Freight elevators
  • Private residence elevators
  • Other conditions specifically recognized by the adopted code edition

Always review the complete section and the locally adopted code before eliminating a required call station.

What Is an Area of Refuge?

An Area of Refuge is a designated location intended to provide a safer place for occupants who may need assistance during an emergency evacuation.

Areas of Refuge are part of the accessible means of egress strategy. They can allow an occupant who cannot use the stairs to wait for assistance while maintaining emergency communication with trained personnel.

Where an Area of Refuge is required, the applicable building or life-safety code determines its construction, size, accessibility, signage, communication, and other requirements.

Area of Refuge vs. Elevator Landing Two-Way Communication

These terms are frequently used interchangeably in the field, but they should not automatically be treated as the same thing.

An Area of Refuge is a specific code-defined location associated with an accessible means of egress.

An elevator-landing two-way communication station can be required at an accessible elevator landing even when that landing is not itself being designated as an Area of Refuge.

This distinction matters during design because the designer must first determine why the communication station is required before applying the appropriate requirements.

Where Does the Two-Way Communication System Call?

The required remote communication stations communicate with an approved receiving point such as a fire command center or other approved central control location.

Where the receiving location is not constantly attended, the applicable building code can require automatic off-premises communication to an approved supervising station or emergency services location.

Design Tip: Determine whether the receiving location will actually be constantly attended early in the design. This decision can affect equipment selection, communications infrastructure, programming, monitoring, and coordination with the AHJ.

Does a Two-Way Communication System Need Audible and Visible Signals?

Modern IBC requirements include both audible and visible communication/status features for required two-way communication systems.

The remote station must provide occupants with meaningful indication that their request for assistance has been transmitted and that communication has been established as required by the applicable code and equipment listing.

Because accessibility is a major part of these systems, designers should not evaluate the voice function alone. Visual indications, instructions, signage, mounting location, operability, and accessibility all need to be considered together.

UL 2525 and Two-Way Emergency Communication Systems

UL 2525 is an important product standard for two-way emergency communication systems used for rescue assistance applications.

Modern building and life-safety requirements reference listed equipment complying with UL 2525 in conjunction with installation requirements from NFPA 72.

When selecting a two-way communication system, verify that the equipment is appropriately listed for its intended application rather than assuming that any intercom or telephone system can satisfy the emergency communication requirement.

Two-Way Communication Signage Requirements

Signage is an important part of an accessible emergency communication system.

Operating instructions and identification information must be provided where required so occupants can understand how to request assistance and communicate their location.

Accessibility requirements can also apply to visual characters, tactile characters, Braille, the International Symbol of Accessibility, illumination, and directional signage depending on the particular sign and application.

Area of Refuge Signage

Area of Refuge accessible emergency assistance sign
Example of Area of Refuge identification signage.

Required Area of Refuge signage can include identification of the refuge location, accessible means of egress information, and other directional or instructional information required by the applicable building and accessibility provisions.

Emergency Instructions at an Area of Refuge

Instructions at an Area of Refuge should tell occupants how to use the area during an emergency and how to summon assistance using the two-way communication system.

Area of Refuge emergency instructions and two-way communication sign
Example of emergency instructions associated with an Area of Refuge.

Directional Signage for Accessible Means of Egress

Directional signage can be required to identify accessible means of egress and direct occupants toward Areas of Refuge or other accessible egress components.

Depending on the building configuration, signage requirements can affect:

  • Elevator landings
  • Areas of Refuge
  • Exits serving accessible spaces
  • Exterior areas for assisted rescue
  • Routes leading to accessible means of egress

The applicable IBC provisions and ICC A117.1 should be reviewed for the specific signage and accessibility requirements.

Two-Way Communication System Mounting Height

There is no single universal mounting height that should be applied to every component of every two-way communication system.

This is an area where designers need to distinguish between:

  • Operable parts of the call station
  • Tactile characters
  • Visual characters
  • Instructional signage
  • Required accessibility reach ranges
  • Manufacturer mounting requirements

For accessible call stations, the required operable portions must be located within the applicable accessible reach ranges. Signage must independently comply with the requirements applicable to the type of sign being installed.

Field Tip: Do not use the height of the enclosure or speaker as the measurement point unless the applicable requirement specifically tells you to. The required measurement can relate to the operable part, tactile characters, visual characters, or another defined feature.

NFPA 72 and Two-Way Emergency Communication Systems

NFPA 72 addresses Emergency Communications Systems (ECS) in Chapter 24.

Two-way emergency communications addressed by NFPA 72 include applications such as:

  • Area of Refuge emergency communication
  • Elevator-landing communication
  • Stairway communication
  • Occupant evacuation elevator lobby communication
  • Fire service communications

NFPA 72 provides requirements affecting equipment, pathways, supervision, power supplies, survivability, system operation, and testing.

The exact section numbering can change between NFPA 72 editions, so always verify the adopted edition rather than relying exclusively on a section number from an older design or specification.

Does the Two-Way Communication Wiring Need to Be Supervised?

Required emergency communication pathways must be monitored for integrity as required by NFPA 72 and the system design.

The purpose of pathway supervision is simple: a wiring failure that prevents an occupant from calling for assistance should not remain hidden until an emergency occurs.

The equipment listing, pathway class, system architecture, NFPA 72 requirements, and manufacturer's instructions all need to be considered when determining the required supervision.

Two-Way Communication System Battery Backup

Emergency communication systems require reliable primary and secondary power in accordance with the applicable NFPA 72 requirements and equipment listing.

Battery calculations should be based on the system's required standby and active operating periods, connected equipment load, manufacturer data, and the NFPA 72 edition adopted for the project.

Avoid assuming that an old standby/active-time rule automatically applies to every modern two-way communication system. The system type, equipment listing, adopted NFPA 72 edition, and applicable building-code requirements must be evaluated together.

Pathway Survivability for Area of Refuge and Elevator Communication

Pathway survivability is one of the most important technical considerations for wired emergency communication systems.

The goal is to prevent a fire in one portion of the building from unnecessarily disabling emergency communications needed by occupants in other protected locations.

Depending on the system configuration and applicable NFPA 72 requirements, pathway survivability can involve:

  • Fire-resistive or circuit-integrity cable systems
  • Listed electrical circuit protective systems
  • Protected shafts, enclosures, or areas
  • Building sprinkler protection
  • Separation or routing of redundant pathways
  • Other approved survivability methods

The required survivability level is not determined solely by whether a building is described as having two-hour construction. Modern NFPA 72 requirements evaluate the location and configuration of pathways, protected areas, communication stations, notification zones, and system architecture.

Building Construction and Fire-Resistance Ratings

Building construction and fire-resistance ratings can still be important when evaluating emergency communication pathways, but they must be considered as part of the complete code analysis.

IBC building construction fire-resistance rating reference table
Building construction fire-resistance information can be one part of a pathway survivability analysis. Verify the table against the IBC edition adopted for the project.

Two-Hour Circuit Integrity Cable

Where a two-hour fire-resistive pathway is required, one possible method can involve a listed circuit-integrity or fire-resistive cable system installed in accordance with its listing.

Two-hour circuit integrity cable used for emergency communication pathway survivability
Example of cable associated with fire-resistive emergency communication pathway installations.

Important: Installing cable marketed as "CI cable" does not by itself make an installation compliant. The complete listed system, installation method, supports, raceway or protection requirements, terminations, and other listing conditions must be followed.

Stairway Communication Systems

Two-way emergency communication requirements are not limited to Areas of Refuge and elevator landings.

Building codes can require communication within certain stairways, particularly in high-rise or other regulated applications. These systems provide communication between designated stairway locations and an approved constantly attended station or other approved receiving location.

Stairway communication should therefore be evaluated separately from Area of Refuge and elevator-landing communication when reviewing a project's emergency communication requirements.

Occupant Evacuation Elevator Communication

Buildings using occupant evacuation elevators have additional communication requirements associated with the elevator evacuation strategy.

Two-way communication can be required within occupant evacuation elevator lobbies so occupants can communicate with an approved emergency control location while waiting for or using the evacuation system.

For more information about these elevators, see our Occupant Evacuation Elevator Code Guide.

How Often Are Two-Way Communication Systems Tested?

Two-way emergency communication systems must be inspected and tested in accordance with the applicable NFPA 72 requirements, equipment listing, manufacturer's instructions, and requirements of the AHJ.

Testing should verify more than the physical presence of the call station. Depending on the system and applicable requirements, testing can include communication operation, visual and audible indications, pathway supervision, trouble conditions, power supplies, secondary power, and communication with the receiving location.

Always use the inspection and testing table from the NFPA 72 edition adopted for the project rather than carrying forward a table number or test frequency from an older edition without verification.

Two-Way Communication Design Checklist

  • Determine which building and fire code editions are adopted.
  • Identify the level or levels of exit discharge.
  • Identify all accessible floors.
  • Determine the required accessible means of egress from each floor.
  • Identify required Areas of Refuge.
  • Identify elevator landings requiring two-way communication.
  • Check all applicable IBC exceptions.
  • Determine whether occupant evacuation elevators are provided.
  • Determine whether stairway communication is required.
  • Identify the approved central control or fire command location.
  • Determine whether that location is constantly attended.
  • Determine whether automatic off-premises communication is required.
  • Verify equipment listing, including UL 2525 where applicable.
  • Verify NFPA 72 installation requirements.
  • Verify accessible call-station operation and mounting.
  • Provide required operating instructions and signage.
  • Determine pathway supervision requirements.
  • Determine pathway survivability requirements.
  • Calculate secondary power requirements.
  • Coordinate monitoring and off-premises communications.
  • Verify inspection and testing requirements.
  • Confirm the final design with the AHJ.

Frequently Asked Questions About Two-Way Communication Systems

Is a two-way communication system required at every elevator landing?

No. The requirement depends on whether the floor and elevator landing fall within the applicable accessible means of egress provisions and whether an IBC exception applies.

What floors require elevator-landing two-way communication?

Under the modern IBC framework, the requirement generally applies to elevator landings on accessible floors that are one or more stories above or below the level of exit discharge, subject to the applicable exceptions.

Is an elevator landing automatically an Area of Refuge?

No. An elevator landing and an Area of Refuge are related concepts within accessible means of egress design, but they are not automatically the same thing.

Does an Area of Refuge require two-way communication?

Where an Area of Refuge is required by the applicable code, two-way emergency communication is generally part of the Area of Refuge requirements, subject to the specific provisions and exceptions of the adopted code.

Where does an Area of Refuge call box communicate?

The communication system connects occupants to an approved central control point, fire command center, supervising station, emergency services location, or other location permitted by the applicable code and approved by the AHJ.

Does the two-way communication master station have to be constantly attended?

If the designated receiving location is not constantly attended, the applicable building code can require automatic off-premises communication to an approved supervising station or emergency services location.

Does a two-way communication system require UL 2525 equipment?

Modern code provisions reference UL 2525-listed two-way emergency communication equipment for applicable rescue-assistance systems. Verify the adopted code edition and the listing of the proposed equipment.

Does two-way communication wiring require two-hour CI cable?

Not automatically. Pathway survivability requirements depend on the applicable NFPA 72 provisions, system architecture, pathway location, building protection, and other conditions. A two-hour fire-resistive pathway is one possible requirement or solution in certain applications.

Does a two-way communication system need battery backup?

Emergency communication systems require secondary power in accordance with the applicable NFPA 72 requirements and equipment listing. Required capacity must be calculated for the specific system.

Who determines whether a two-way communication system is required?

The requirement is established by the adopted building, fire, life-safety, and accessibility codes and ultimately interpreted and enforced by the Authority Having Jurisdiction.

California Author's Note

California projects should also be reviewed against the currently adopted California Building Code and California Fire Code, including California amendments and accessibility provisions.

The fundamental design process remains the same: determine the accessible means of egress, identify required Areas of Refuge and elevator-landing communication locations, apply the applicable exceptions, then coordinate the emergency communication system with the adopted NFPA 72 requirements.

Because California accessibility and building-code provisions can modify or supplement the model-code requirements, designers should verify the currently adopted California code cycle and local amendments before finalizing a project.

Related FireAlarmsOnline Guides

If you are designing or troubleshooting emergency communication and elevator fire alarm systems, these related guides may help:

Final Thoughts

Two-way emergency communication systems are an increasingly important part of accessible building evacuation design. The key is understanding that Area of Refuge communication, elevator-landing communication, stairway communication, and occupant evacuation elevator communication are related but distinct applications.

Start with the adopted building or life-safety code to determine where and when communication is required. Then use NFPA 72, the equipment listing, accessibility requirements, manufacturer instructions, and AHJ requirements to determine how the system must be designed, installed, supervised, powered, and tested.

That approach produces a much cleaner design than beginning with a call-box layout and trying to reverse-engineer the code requirements afterward.

Code Disclaimer: This article is intended as an educational design and field reference. Code requirements vary by adopted edition, jurisdiction, building configuration, system listing, and local amendment. Always verify the applicable IBC, IFC, NFPA 72, NFPA 101, accessibility requirements, manufacturer instructions, and AHJ requirements for the specific project.

Friday, August 25, 2017

Occupant Evacuation Elevator Code Explained

Occupant Evacuation Elevator Code Requirements Explained

Occupant evacuation elevators (OEEs) are one of the most specialized elevator applications in the building and fire codes. If you work in fire alarm design, inspection, plan review, elevator integration, or NICET preparation, understanding how these systems are permitted, monitored, powered, and protected is critical.

This guide breaks down the code requirements for occupant evacuation elevators, including IBC Section 3008, NFPA 72 Section 21.6, emergency voice/alarm communication, elevator lobby requirements, two-way communication systems, standby power, wiring protection, and more.

NICET Prep Note: Occupant evacuation elevators are a classic crossover topic. They pull together IBC, NFPA 72, emergency controls, two-way communication, voice evacuation, fire command center functions, and survivability requirements. This is exactly the kind of material that separates surface-level memorization from real exam and field competence.

Quick Answers: Featured Snippet Q&A

What is an occupant evacuation elevator?

An occupant evacuation elevator is a passenger elevator designed and protected so it can be used for occupant self-evacuation during a fire emergency when installed in accordance with IBC Section 3008.

What code allows occupant evacuation elevators?

IBC Section 403.6.2 permits passenger elevators for public use to be used for occupant self-evacuation when installed in accordance with IBC Section 3008.

Do occupant evacuation elevators require two-way communication?

Yes. A two-way communication system is required at the lobby of each level served by an occupant evacuation elevator, with communication directed to the fire command center or another approved location.

Can occupant evacuation elevators have shunt trip?

No. A means for elevator shutdown, or shunt trip, in accordance with IBC Section 3005.5, shall not be installed on elevator controllers used for occupant evacuation elevators.

Table of Contents


What Is an Occupant Evacuation Elevator?

Much like Fire Service Access Elevators, Occupant Evacuation Elevators are in fact elevators that have strict rules and regulations put in place to allow special uses above standard elevators. An Occupant Evacuation Elevator can be used for self-evacuation during a fire emergency pending the elevator system meets the requirements set forth in the International Building Code.

Occupants running toward an occupant evacuation elevator during a fire emergency
Occupants Running to the Elevator During Fire
Related Reading: If you work with specialty elevator interfaces, also read Fire Service Access Elevators Explained.

What Code Requires or Allows the Use of Occupant Evacuation Elevators?

The requirement to provide occupant evacuation elevators can be found in the IBC or International Building Code 2021 Section 403.5.2 within the exception.

“For buildings other than Group R-2 that are more than 420 feet in building height, one additional interior stairway meeting the requirements of Sections 1011 and 1023 shall be provided in addition to the minimum number of exits required by Section 1006.3. The total width of any combination of remaining interior exit stairways with one interior exit stairway removed shall be not less than the total width required by Section 1005.1. Scissor stairways shall not be considered the additional interior exit stairway required by this section.”

Exception: An additional interior exit stairway shall NOT be required to be installed in buildings having elevators used for occupant self-evacuation in accordance with Section 3008.

Furthermore, the International Building Code 2021 Section 403.6.2 Occupant Evacuation Elevators states, “Where installed in accordance with Section 3008, passenger elevators for public use shall be permitted to be used for occupant self-evacuation.”

The requirements on how an occupant evacuation elevator is to be installed can be found in the IBC or International Building Code 2021 Section 3008.

Other references include:

NICET Practice Exam Shoutout: If you are studying emergency controls, elevator recall, shunt trip, two-way communication, smoke control interfaces, or voice evacuation, make sure you are training with realistic NICET practice exam questions, not just flash-card definitions.

Requirements for Occupant Evacuation Elevators

When an occupant evacuation elevator is to be used for occupant self-evacuation during a fire, all passenger elevators for public use shall comply with Sections 3008.1 through 3008.10. If any additional elevators are used for self-evacuation, those elevators shall comply with these sections as well.

In buildings that utilize occupant evacuation elevators, a fire safety and evacuation plan shall be approved and in place. Requirements for a fire safety and evacuation plan can be found in the International Fire Code (IFC) 2021 Section 404, Emergency Planning and Preparedness.

The operation of self-evacuating occupant evacuation elevators shall comply with the requirements in ASME A17.1, CSA B44 and the above mentioned Fire Safety and Evacuation Plan.

Emergency Voice Communication System

The building shall be equipped with an emergency voice/alarm communication system that is accessible to the fire department. System shall be installed in accordance to Section 907.5.2.2. Each elevator lobby used for occupant evacuation shall be equipped with at least one audible and one visual notification appliance.

Not that it would be common, but if you had to install voice evacuation just for the occupant evacuation elevators, it is allowed to mix audible evacuation tones. Find out more in this article, Mixing Speakers and Horns for Fire Alarm.

Recommended Read: If you are sorting out selective voice coverage, mixed appliance strategies, or emergency control interfaces, this article is a strong companion piece: Mixing Speakers and Horns for Fire Alarm.

Automatic Sprinkler Requirements

The building with occupant evacuation elevators shall be protected throughout with an approved automatic sprinkler system in accordance with Section 903.3.1.1. The automatic sprinkler system shall be provided with a supervised tamper switch and alarm initiating water flow switch on every floor of the building.

Note, the following areas are prohibited from having automatic fire sprinkler protection:

  • Elevator Machine Rooms
  • Elevator Machinery Spaces
  • Elevator Control Rooms
  • Elevator Control Spaces
  • Elevator Hoistways serving the Occupant Evacuation Elevator

The lobby on each floor served by the fire service access elevator shall have an approved method of preventing water from the operation of the automatic sprinkler system from infiltrating the FSAE hoistway.

Lastly, a means for elevator shutdown or Shunt Trip in accordance with IBC Section 3005.5 shall NOT be installed on elevator controllers used for occupant evacuation elevators.

Watch-Out Item: Designers regularly mix up standard elevator concepts with occupant evacuation elevator requirements. Do not blindly apply shunt trip logic where the code specifically prohibits it.

Occupant Evacuation Elevator Hoistway Enclosure

The shaft or hoistway enclosure shall comply with IBC Section 713, Shaft Enclosures, as well as Section 403.2.3.4, Wall Assembly, and the applicable provisions for other wall assemblies.

Occupant Evacuation Elevator Cab Dimensions

Although this is not a direct requirement for occupant evacuation elevators or fire service access elevators, rather buildings that are four stories or more, it still applies and is worth mentioning.

IBC Section 3002.4, Elevator Car to Accommodate Ambulance Stretcher, gives us the dimensions required for the cab. The elevator car shall be of such a size and arrangement to accommodate an ambulance stretcher 24 inches by 84 inches with not less than 5 inch radius corners, in the horizontal, open position.

ADA Table 407.4.1 breaks this down a little further and gives us the following: the cab shall be provided with a minimum clear distance between walls and door excluding return panels not less than 80 inches by 54 inches and a minimum distance from wall to return panel not less than 51 inches with a 42 inch side slide door.

Fire service access elevator and occupant evacuation elevator car dimensions diagram
Fire Service Access Elevator and Occupant Evacuation Elevator Car Dimensions

Stretcher inside fire service access elevator cab
Stretcher inside FASE Elevator Cab

Occupant Evacuation Elevator Lobby Requirements

The Occupant Evacuation Elevator lobby shall be enclosed with a smoke barrier having a fire-resistance rating of not less than 1 hour. The occupant evacuation elevator lobby doorways shall comply with Section 3008.6.3.

NOTE: Just like Fire Service Access Elevators, enclosed occupant evacuation elevator lobbies are NOT required at the levels of exit discharge.

Lobby Sizing

Keep in mind the following for occupant evacuation elevator lobby sizing requirements:

  1. The occupant evacuation elevator lobby shall accommodate 3 square feet per person, not less than 25 percent of the occupant load of the floor area served by the lobby.
  2. Occupant evacuation elevator lobbies shall be able to house one wheelchair with a space of 30 inches by 48 inches for every 50 persons within the area the lobby serves.

There is an exception to these 2 rules. The size of an elevator lobby that serves multiple banks of elevators shall have the minimum area approved on an individual basis. This sizing shall be consistent with the building's fire safety and evacuation plan.

Lobby Doors

The occupant evacuation elevator lobby doors shall be provided with a 3/4 hour fire door assembly complying with Section 716.5. Doors shall comply with the smoke and draft control assembly requirements of Section 716.5.3.1 and UL 1784 test conducted WITHOUT the artificial bottom seal.

There shall also be a fire protection rated glazed vision window within the occupant evacuation elevator lobby doors.

No different from standard elevators or fire service access elevators, the lobby doors of occupant evacuation elevator lobbies shall close upon receipt of the fire alarm system serving the building.

The self closing mechanism shall close the door from a fully open position (90 degrees) to 12 degrees from the latch at a minimum of 5 seconds. This ensures the doors do not close too quickly. This information can be located in ANSI 117.1 2009 Section 404.2.7.1.

NICET Practice Exam Shoutout: Lobby smoke barriers, rated doors, vision panels, alarm-controlled door behavior, and code exceptions at the level of exit discharge are exactly the kind of details that show up in stronger NICET study material.

How Are Occupant Evacuation Elevators Designated or Noticed?

On all floors served by the occupant evacuation elevator, there shall be an approved sign posted adjacent to each call station. We suggest consulting with your local AHJ if they have a standard on this signage.

Occupant Evacuation Elevator System Monitoring

The occupant evacuation elevator shall be continuously monitored at the fire command center (FCC) or a central control point approved by the AHJ. The following information shall be displayed or available:

  1. The location of each elevator car
  2. The travel direction of each elevator car
  3. If the elevator car is occupied or not
  4. Status of normal power conditions to the elevator equipment, machinery, electrical apparatus cooling equipment, elevator machine room, control room and control space ventilation and cooling equipment
  5. Status of standby or emergency power conditions to the elevator equipment, machinery, electrical apparatus cooling equipment, elevator machine room, control room and control space ventilation and cooling equipment
  6. Activation of any fire alarm initiating device in any elevator lobby, elevator machine room, machine space containing a motor controller or electric driving machine, control space, control room or elevator hoistway

Elevator Landing Two-Way Communication System

You are required to provide a two-way communication system at the lobby of each level served by an occupant evacuation elevator. The two-way communication call stations shall initiate communication to the building's fire command center or an alternate location approved by the AHJ. Note the two-way communication system shall be installed in accordance with Sections 1009.8.1 and 1009.8.2.

SPACE AGE ELECTRONICS SHIELD 30 TWO-WAY COMMUNICATION SYSTEM
Product Spotlight: If you are pricing, designing, or comparing compliant communication options for elevator lobbies and accessible egress applications, the Space Age Electronics Shield 30 is worth reviewing as part of your code-compliance toolbox.

Helpful companion article: Two-Way Communication Code Requirements

Electrical Power

The following features serving each occupant evacuation elevator shall be provided with both normal power as well as Type 60/Class 2/Level 1 standby power:

  1. Elevator equipment
  2. Elevator hoistway lighting
  3. Ventilation for elevator machine rooms, elevator control rooms, machine and control spaces
  4. Elevator cab lighting

Here is the big one to watch out for.

Protection of Wiring and Cables for Occupant Evacuation Elevators

Wires and cables located outside of the fire service access elevator lobby and machine room that are provided for the fire-detection system shall be protected by construction having a fire-resistance rating of not less than 2 hours, shall be circuit integrity (CI) cable with a rating of not less than 2 hours, or shall be protected by a listed electrical protective system having a rating of not less than 2 hours.

Product / Design Callout: If you are engineering or estimating survivability requirements, make sure your team evaluates 2-hour CI cable, listed protective systems, and routing strategies early. This is one of those details that can quietly punch a hole through a submittal if missed.
NICET Practice Exam Shoutout: Circuit survivability, elevator interfaces, fire alarm monitoring, and required power sources are all fair game in advanced NICET fire alarm exam prep. The more realistic the questions, the better your retention when the pressure is on.

Hazardous Material

The building shall not contain any hazardous material areas exceeding the maximum allowable quantities per control area as noted in Section 414.2.

All code references for this article are found in the 2021 Edition of the International Building Code. Always verify adopted local code editions, state amendments, and AHJ interpretations before final design or installation.


Frequently Asked Questions About Occupant Evacuation Elevators

What is the difference between a fire service access elevator and an occupant evacuation elevator?

A fire service access elevator is intended to support firefighter operations, while an occupant evacuation elevator is designed and protected for occupant self-evacuation during a fire emergency when permitted by code.

Are enclosed lobbies required at every floor?

No. Just like fire service access elevators, enclosed occupant evacuation elevator lobbies are not required at the level of exit discharge.

Is a two-way communication system required at each elevator landing?

Yes. A two-way communication system is required at the lobby of each level served by an occupant evacuation elevator, with communication routed to the fire command center or another approved location.

Can automatic sprinklers be installed in the hoistway or machine spaces?

The article notes that elevator machine rooms, machinery spaces, control rooms, control spaces, and hoistways serving the occupant evacuation elevator are prohibited from having automatic sprinkler protection.

Does an occupant evacuation elevator require standby power?

Yes. Elevator equipment, hoistway lighting, ventilation for related spaces, and cab lighting are required to be provided with both normal power and Type 60/Class 2/Level 1 standby power.

Want More NICET and Fire Alarm Code Content?

If you found this guide useful, check out more Fire Alarms Online resources covering elevator recall, shunt trip, two-way communication, voice evacuation, and NICET practice exam prep.

The goal is simple: help fire alarm professionals design smarter, pass faster, and avoid expensive code misses in the field.