The terms “load” and “line” appear on outlets, switches, GFCI receptacles, and AFCI breakers — and using the wrong terminal for the wrong wire is one of the most common wiring errors that causes protection failures and code violations in Ontario homes. Understanding what each terminal is for, and why the distinction matters, is foundational to safe electrical work.
In residential wiring, “line” refers to the conductors that bring power from the panel to a device, and “load” refers to the conductors that carry power from that device onward to protect additional outlets or fixtures downstream. The distinction matters most on GFCI receptacles and AFCI breakers, where incorrect terminal use defeats the protection those devices provide.
The line terminals on a device receive the incoming hot and neutral conductors from the panel or from the previous device in the circuit. When you plug a tester into an outlet and it reads “correct wiring,” the tester is confirming that the hot conductor is connected to the correct (line-side) terminal and the neutral is on its corresponding terminal. On a standard duplex outlet, the line conductors connect to the same pair of screw terminals regardless of whether the outlet also has load terminals — because a standard outlet has no separate load terminals, only one set of hot and neutral terminals that serve both the outlet face and any continuation of the circuit.
The load terminals, when present, send protected power to additional outlets or fixtures downstream. On a GFCI receptacle, connecting downstream outlets to the load terminals means those outlets are also protected by the GFCI — a ground fault at any downstream outlet trips the GFCI at the source. This is called “GFCI protection from a single device,” and it is a code-accepted method for extending GFCI protection to multiple outlets in a bathroom, kitchen, or outdoor circuit without installing a GFCI receptacle at every location.
The Ontario Electrical Safety Code (OESC) permits this downstream protection method, but it requires that the protected outlets be labelled “GFCI Protected” — stickers are included with every GFCI receptacle for this purpose. The Electrical Safety Authority (ESA) inspectors check for these labels when reviewing GFCI installations.
On a standard duplex outlet, reversing line and load conductors causes a “reverse polarity” condition — the hot and neutral are swapped. The outlet may appear to work normally for most appliances, but polarized plugs (where one blade is wider than the other) will have the hot side where the neutral should be. This creates a shock hazard: the threaded shell of a lamp socket, for example, will be live rather than neutral when the switch is off.
On a GFCI receptacle, the consequences of reversing line and load are more severe:
At an outlet or switch box, identifying which cables are line and which are load requires a non-contact voltage tester and knowledge of the circuit topology:
Standard single-pole light switches typically do not label their terminals “line” and “load” — both terminals accept the hot conductor (the switch interrupts the hot wire, and the two terminals are functionally equivalent for a basic on/off switch). However, smart switches, dimmer switches, and some specialty switches do distinguish between line and load, and connecting them incorrectly will prevent the switch from functioning correctly or will damage the switch electronics. Always read the installation instructions for smart switches before wiring — line and load markings on smart devices are not interchangeable.
The most frequent GFCI-related service call we receive is a GFCI that “trips for no reason” or “won’t stay reset.” In most of those cases, either the line and load terminals are reversed, or a downstream outlet connected to the load terminal has a wiring fault that the GFCI is correctly detecting. When we find a GFCI that trips immediately on reset, we check line/load orientation first — it is a five-minute fix when that is the cause. When the GFCI trips only under load (when something is plugged in downstream), we trace the downstream circuit for a ground fault or a wiring error that is creating a leakage path. A GFCI that trips correctly is doing its job. See our guide on how to troubleshoot a tripped GFCI that won’t reset for the diagnostic sequence we use.
Need a GFCI installation or electrical inspection in the GTA? Our ESA-licensed electricians diagnose and correct wiring errors correctly the first time. Call us at 416-838-9006 or visit our contact page — we will get back to you the same day.
Electrician Since 2008 Journeyman Electrician Designated Master Electrician at EZSMART Corp