Emergency lighting installs on an unswitched circuit and must keep egress paths lit for at least 90 minutes after power fails.
For the full breakdown, see our best Bar Emergency Light guide.
Emergency lights exist for the power cut nobody rehearses. When normal power dies, fixtures on switched circuits stay dark—exactly when people need to see the way out. U.S. emergency lighting installation follows fixed logic: use a listed fixture, feed it from an unswitched circuit at rated voltage, ground it, and prove it takes over on its own. The steps below reflect NFPA 101 and the National Electrical Code and are meant for qualified electricians or properly trained personnel, not general DIY work.
Emergency Lighting Requirements To Meet Before You Start
NFPA 101, the Life Safety Code, sets the performance bar for every emergency lighting fixture and installation. The goal: after normal power fails, the exit path must stay visible long enough for people to get out. The code covers corridors, stairs, exit access, exit discharge, and the exits themselves. The specific numbers matter because they become your test criteria after installation.
| Requirement | Code Baseline |
|---|---|
| Activation after power loss | Within 10 seconds |
| Minimum runtime | At least 90 minutes |
| Initial illumination, average | 1.0 foot-candle |
| Initial illumination, minimum at floor | 0.1 foot-candle |
| End-of-runtime illumination, average | 0.6 foot-candle |
| End-of-runtime illumination, minimum at floor | 0.06 foot-candle |
| Brightness uniformity | Max-to-min ratio no greater than 40:1 |
Expect your authority having jurisdiction to enforce the version your state has adopted.
Installation Steps: Wall, T-Bar, And Recessed Mounts
Every emergency fixture installs on the same skeleton: kill the power, feed a dedicated unswitched circuit to the junction box, mount the unit by its rated method, make model-specific connections, connect the battery, and only then energize. Mounting hardware changes, but that order does not.
- Power down and verify. Open the branch circuit; confirm it is not energized before touching conductors.
- Pull the circuit in. Run the AC supply at rated voltage into the junction box, leaving about 6 inches of wire for connections. The circuit must be unswitched.
- Mount by type.
- Wall/ceiling units: remove knockouts, route AC wires through the center hole, secure the back plate to the junction box, attach the safety cable, and make model-specified connections.
- T-bar ceilings: bend four tabs outward, hook the frame onto the T-bar, secure with four self-drilling screws, route circuit wires to the junction box, wire the unit, and slide it into the frame.
- Recessed cans and gimbals: mount per housing instructions, connect 120V or 277V conductors as specified, connect ground, reinstall the cover, and connect the lamp harness.
- Make the right connections for the model. Self-powered fixtures wire differently than AC/DC or AC-only configurations. Follow the unit’s diagram, not a generic habit.
- Connect the battery. Attach the battery connector to the driver board, reinstall the reflector, adjust LED strips, and snap the lens into place.
- Finish and verify. Re-energize the AC supply and confirm the charge indicator and lamps both come on.
Supply-wire insulation must be rated at least 90°C on 120V/277V units. Recessed fixtures often carry a mounting-height limit—one common unit is listed for a maximum of 7 feet 6 inches—so check the spec sheet before committing to a location.
Mounting style usually dictates the fixture; a bar-style emergency light is often the cleanest fit for hallways and utility rooms. Our tested bar emergency light picks compare the compact units that work there.
Final Checks, Testing, And The Mistakes That Fail Them
A unit that lights on AC has not passed installation until it also runs on battery. Code-compliant commissioning means testing the emergency function right after the job, then scheduling periodic checks. The common pattern: a brief functional test at least monthly and a full 90-minute discharge test at least annually. Manufacturer instructions describe the same: use the manual test button after installation, run scheduled tests, and keep records.
Four mistakes cause most failed installations:
- Working on an energized circuit. Every manufacturer procedure’s first line is power off—follow it before opening any box.
- Assuming ordinary switched lighting can substitute. A normal light goes dark when the circuit opens; emergency lighting must stay available on power loss and meet egress illumination levels.
- Skipping the model-specific wiring path. Self-powered, AC, and AC/DC configurations are not interchangeable. A wrong tap means failure exactly when needed.
- Ignoring mounting constraints. Exceeding listed mounting height or installing in an unrated location can void the listing and installation.
The pass/fail check ending the job is simple: kill the branch circuit and watch the unit take over on battery. If lamps stay lit through the test period and the charger brings the battery back afterward, the installation is done.
FAQs
Who should do the actual installation?
Manufacturer instructions state installation should be done only by qualified electricians or properly trained persons. Emergency fixtures connect to line-voltage circuits, involve batteries, and must satisfy code requirements—not a swap-in-and-go job. A licensed electrician who knows the local adopted code edition is the right call.
Can a regular switched light double as emergency lighting?
No. A switched fixture goes dark when the circuit opens; emergency lighting must activate within 10 seconds of power failure and stay on at least 90 minutes. It must also meet specific foot-candle levels at the floor along the egress path, which ordinary room lighting is not designed or verified to do.
How often should installed emergency lights be tested?
The commonly referenced schedule is a brief functional test monthly and a full 90-minute discharge test at least annually. After installation, use the manual test button to confirm battery switchover, then keep records of each periodic test to show inspectors the system was maintained.
References & Sources
- National Fire Protection Association. “NFPA Journal: NFPA 101, Life Safety Code.” Explains the code framework behind emergency and egress lighting requirements.

