Questions with Correct Answers
[Circuits/Pathways] Within NFPA 72 (2019), pathway/circuit class requirements (Class
A, B, X, etc.) are primarily found in which chapter? A) Chapter 10 | B) Chapter 12 | C)
Chapter 17 | D) Chapter 23 - ANSWERSCorrect answer: Chapter 12 (Choice B). Why:
NFPA 72 Chapter 12 covers Circuits and Pathways, including pathway class
designations. Chapter 17 is initiating devices, Chapter 18 notification, Chapter 23
protected premises systems.
[ITM/Documentation] Inspection, testing, and maintenance (ITM) requirements and
frequencies live in which NFPA 72 chapter? A) Chapter 7 | B) Chapter 14 | C) Chapter
18 | D) Chapter 21 - ANSWERSCorrect answer: Chapter 14 (Choice B). Why: NFPA 72
Chapter 14 contains the inspection, testing, and maintenance tables and frequencies - a
frequently tested area.
[Interfaces/Other Standards] Emergency control functions such as elevator recall,
HVAC shutdown, and releasing interfaces are addressed in which NFPA 72 chapter? A)
Chapter 12 | B) Chapter 17 | C) Chapter 21 | D) Chapter 24 - ANSWERSCorrect
answer: Chapter 21 (Choice C). Why: NFPA 72 Chapter 21 covers Emergency Control
Function Interfaces - elevator recall/shutdown, HVAC control, door release, and
releasing service interfaces.
[General] Requirements for protected premises (local) fire alarm systems are found in
which NFPA 72 chapter? A) Chapter 14 | B) Chapter 18 | C) Chapter 23 | D) Chapter 26
- ANSWERSCorrect answer: Chapter 23 (Choice C). Why: NFPA 72 Chapter 23 covers
Protected Premises Fire Alarm Systems. Chapter 26 covers supervising station systems
(central, proprietary, remote).
[Signals] An alarm signal is best defined as a signal indicating: A) A fault in the system
wiring or components | B) An off-normal condition in protective equipment that needs
investigation | C) An emergency condition requiring immediate action, such as a fire | D)
A scheduled system self-test in progress - ANSWERSCorrect answer: An emergency
condition requiring immediate action, such as a fire (Choice C). Why: An alarm signal
indicates an emergency requiring immediate action. It is distinct from trouble (faults) and
supervisory (off-normal equipment) signals.
[Signals] A trouble signal indicates: A) A confirmed fire condition | B) A fault in the
system's wiring or components requiring service | C) Water flowing in a sprinkler riser |
D) A valve in the off-normal position - ANSWERSCorrect answer: A fault in the system's
wiring or components requiring service (Choice B). Why: A trouble signal denotes a fault
- an open, ground, or loss of power. It calls for service, not evacuation.
,[Signals] A supervisory signal indicates: A) Smoke or fire is present in the protected
area | B) An open circuit in a notification appliance circuit | C) An off-normal condition in
protective equipment, such as a closed sprinkler valve | D) A low battery in the control
unit - ANSWERSCorrect answer: An off-normal condition in protective equipment, such
as a closed sprinkler valve (Choice C). Why: Supervisory signals indicate that protective
equipment is off-normal (valve position, pressure, pump status) and needs investigation
- not an emergency, not a wiring fault.
[Signals] A valve tamper switch on a sprinkler control valve generates which type of
signal? A) Alarm | B) Trouble | C) Supervisory | D) Pre-alarm - ANSWERSCorrect
answer: Supervisory (Choice C). Why: A tamper switch monitors that the valve stays in
its normal open position. A partially or fully closed valve is an off-normal protective-
equipment condition - supervisory.
[Signals] Until acknowledged, a trouble signal at the control unit must re-sound at least
once every: A) 10 seconds | B) 30 seconds | C) 60 seconds | D) 5 minutes -
ANSWERSCorrect answer: 60 seconds (Choice C). Why: Trouble signals must re-
sound at least every 60 seconds (24-hour audible re-annunciation may be reduced only
under specific allowances) so the fault is not ignored.
[Signals] When multiple signal types are present, the correct priority order (highest to
lowest) is generally: A) Trouble, supervisory, alarm | B) Supervisory, alarm, trouble | C)
Alarm, supervisory, trouble | D) Alarm, trouble, supervisory - ANSWERSCorrect answer:
Alarm, supervisory, trouble (Choice C). Why: Alarm takes precedence over all others,
followed by supervisory, then trouble. Alarm > Supervisory > Trouble.
[Signals] A 'zone' in fire alarm terminology refers to: A) A single addressable device | B)
A defined area from which an alarm signal can be identified and annunciated separately
| C) The entire protected building | D) A grouping of notification appliances on one NAC
- ANSWERSCorrect answer: A defined area from which an alarm signal can be
identified and annunciated separately (Choice B). Why: A zone is a defined region
annunciated separately so responders can locate the origin of a signal. Addressable
systems refine this down to the individual point.
[Circuits/Pathways] In an addressable system, what distinguishes each device from a
conventional system? A) Each device shares a single common zone | B) Each device
carries a unique address reported over the signaling line circuit | C) Devices cannot be
individually tested | D) Devices require no supervision - ANSWERSCorrect answer:
Each device carries a unique address reported over the signaling line circuit (Choice B).
Why: Addressable devices communicate individually over an SLC, giving point-level
identification, versus conventional systems that report only at the zone level.
[Signals] A pre-signal system is one in which: A) Sprinklers activate before the alarm
sounds | B) Initial alarm signals sound only at a constantly attended location before
general occupant notification | C) Only the fire department is notified first | D) Only the
floor of origin evacuates initially - ANSWERSCorrect answer: Initial alarm signals sound
,only at a constantly attended location before general occupant notification (Choice B).
Why: In a pre-signal arrangement, initial actuation alerts an attended location so trained
staff can investigate; general evacuation follows by human action or timer. Permitted
only with AHJ approval.
[General] Positive Alarm Sequence (PAS) permits trained personnel an investigation
period not exceeding: A) 60 seconds | B) 90 seconds | C) 180 seconds | D) 300
seconds - ANSWERSCorrect answer: 180 seconds (Choice C). Why: Under PAS, after
acknowledgment within 15 seconds, personnel have up to 180 seconds (3 minutes) to
investigate before automatic general alarm - unless a second device actuates, forcing
immediate alarm.
[Signals] Under PAS, if the operator fails to acknowledge the initial signal within 15
seconds, the system must: A) Reset automatically | B) Enter the 180-second
investigation period | C) Initiate the general alarm immediately | D) Transmit a trouble
signal only - ANSWERSCorrect answer: Initiate the general alarm immediately (Choice
C). Why: Failure to acknowledge within 15 seconds causes immediate general alarm.
The 180-second window only begins after timely acknowledgment.
[Circuits/Pathways] The defining performance characteristic of a Class A pathway is that
it: A) Is always power-limited | B) Provides a redundant return path so a single open
does not disable downstream devices | C) Cannot develop a ground fault | D) Carries
only notification appliances - ANSWERSCorrect answer: Provides a redundant return
path so a single open does not disable downstream devices (Choice B). Why: Class A
provides an operational redundant return path; operation continues to devices past a
single open. (Ground faults are separately supervised and annunciate as trouble - they
are not the Class A performance point.)
[Circuits/Pathways] Compared to Class A, a Class X pathway additionally provides: A)
Operation past a single open only | B) Tolerance of a single open AND a single short,
with fault isolation, while maintaining operation | C) Power without signaling | D) A non-
supervised pathway - ANSWERSCorrect answer: Tolerance of a single open AND a
single short, with fault isolation, while maintaining operation (Choice B). Why: Class X
provides the redundant return of Class A plus continued operation through both a single
open and a single short with isolation - the highest survivability pathway class.
[Signals] A Class B pathway responds to a single open fault by: A) Continuing to
operate all devices via a return path | B) Losing the devices located beyond the point of
the open | C) Isolating the fault and self-healing | D) Generating an alarm signal -
ANSWERSCorrect answer: Losing the devices located beyond the point of the open
(Choice B). Why: Class B has no redundant return; devices wired beyond an open are
lost, though the panel annunciates the open as a trouble.
[Circuits/Pathways] A Signaling Line Circuit (SLC) is best described as: A) A two-wire
circuit supervised only by an end-of-line resistor for one device type | B) A
communication-protocol-based circuit that monitors and controls multiple addressable
, devices | C) A circuit dedicated to notification appliances | D) A non-power-limited 600V
circuit - ANSWERSCorrect answer: A communication-protocol-based circuit that
monitors and controls multiple addressable devices (Choice B). Why: An SLC uses a
communication protocol to monitor and control multiple addressable points.
Manufacturer loops such as IDNet (Simplex) and SLC (EST/Notifier) are SLCs.
[Circuits/Pathways] An Initiating Device Circuit (IDC) primarily connects: A) Notification
appliances such as horns and strobes | B) Conventional initiating devices (detectors,
pull stations) to the panel | C) The panel to a remote supervising station | D) Power-
limited transformers - ANSWERSCorrect answer: Conventional initiating devices
(detectors, pull stations) to the panel (Choice B). Why: An IDC is a conventional circuit
connecting initiating devices (smoke/heat detectors, pull stations) to the control unit; it is
supervised, typically by an EOL device.
[Circuits/Pathways] A Notification Appliance Circuit (NAC) is used to: A) Connect
initiating devices to the panel | B) Carry signals to a supervising station | C) Power and
control notification appliances such as horns, strobes, and speakers | D) Supervise
sprinkler valve position - ANSWERSCorrect answer: Power and control notification
appliances such as horns, strobes, and speakers (Choice C). Why: A NAC powers and
controls notification appliances. It is supervised so opens/shorts annunciate as trouble.
[NEC 760/300 Wiring] On a conventional Class B circuit, the end-of-line (EOL) device
primarily provides: A) Surge suppression for the circuit | B) Supervision of the
conductors so an open produces a trouble | C) Voltage regulation for the appliances | D)
Polarity reversal at the last device - ANSWERSCorrect answer: Supervision of the
conductors so an open produces a trouble (Choice B). Why: The EOL resistor
establishes a known supervisory current; an open changes that current and the panel
reports a trouble. It does not regulate voltage or suppress surges.
[Signals] Best field practice for mixing device types on a single conventional initiating
device circuit is to: A) Freely combine alarm, supervisory, and trouble devices on any
IDC | B) Avoid mixing device types on a conventional IDC unless the system is
specifically listed/designed to do so | C) Always run supervisory devices on the
notification circuit | D) Place all device types on the NAC for simplicity -
ANSWERSCorrect answer: Avoid mixing device types on a conventional IDC unless the
system is specifically listed/designed to do so (Choice B). Why: On conventional
circuits, don't combine device types (e.g., supervisory with alarm) on one IDC unless the
equipment is listed and designed for it. Modern addressable SLCs CAN carry alarm,
supervisory, and trouble points on one listed pathway - the restriction is a conventional-
circuit concern.
[Signals] A single ground fault that affects required operation of a fire alarm circuit must
result in: A) No indication if the system still functions | B) An alarm signal at the control
unit | C) A trouble (or appropriate off-normal) indication | D) Immediate general
evacuation - ANSWERSCorrect answer: A trouble (or appropriate off-normal) indication