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Voltage Drop: Why It Matters and How to Prevent It

Run a long wire from a breaker panel to a distant outlet, and the voltage at the far end will be lower than at the source. This is voltage drop, and ignoring it can cause motors to fail, lights to dim, and equipment to malfunction.

What Is Voltage Drop?

Voltage drop is the reduction in voltage along a conductor due to its resistance. Every wire has some resistance — even copper — and when current flows through resistance, some voltage is "consumed" by the wire itself instead of reaching the load.

Voltage Drop (V) = Current (A) × Wire Resistance (Ω)

Why Voltage Drop Matters

Acceptable Voltage Drop Limits

The NEC (National Electrical Code) recommends:

💡 Rule of ThumbFor a 120V circuit, 3% = 3.6V drop maximum. For a 240V circuit, 3% = 7.2V drop maximum.

The Voltage Drop Formula

For single-phase AC or DC circuits:

VD = (2 × K × I × L) ÷ CM

Where:

Practical Example

You're running a 20A circuit 75 feet from the panel using 12 AWG copper wire. 12 AWG has 6,530 circular mils:

VD = (2 × 12.9 × 20 × 75) ÷ 6,530 = 5.94V

That's 5.94 ÷ 120 = 4.95% — just under the 5% combined limit but exceeding the 3% branch circuit recommendation. Solution: upsize to 10 AWG (10,380 CM):

VD = (2 × 12.9 × 20 × 75) ÷ 10,380 = 3.73V (3.1%)

How to Prevent Excessive Voltage Drop

Quick Wire Sizing for Long Runs

CircuitUp to 50 ft50–100 ft100–150 ft
15A branch14 AWG12 AWG10 AWG
20A branch12 AWG10 AWG8 AWG
30A branch10 AWG8 AWG6 AWG

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