Paritian

Electricity

Voltage Drop Calculator

Voltage drop in volts and percent along a copper cable, for single-phase and three-phase circuits.

Results

Voltage drop 6.125 V
Voltage drop 2.663 %
Voltage drop 5.304 V
Voltage drop 2.306 %

What this tool does

Every metre of cable has resistance, and on a long run the voltage arriving at the load can be noticeably lower than the voltage leaving the board. Most national rules limit the drop to a few percent; this gives you both the volts and the percentage so you can check against your local limit.

Formula

ΔU₁φ = 2 × ρ × L × I ÷ S · ΔU₃φ = √3 × ρ × L × I ÷ S

Variables

SymbolMeaningUnit
iCurrentA
lOne-way cable lengthm
sConductor cross-sectionmm²
uVoltageV
roResistivityΩ·mm²/m
d1Voltage dropV
p1Voltage drop%
d3Voltage dropV
p3Voltage drop%

Worked example

  • Current20 A
  • One-way cable length35 m
  • Conductor cross-section4 mm²
  • Voltage230 V
  • Resistivity0.0175 Ω·mm²/m
  • Voltage drop6.125 V
  • Voltage drop2.663 %
  • Voltage drop5.304 V
  • Voltage drop2.306 %

Limitations

  • Electrical installations are governed by national wiring rules. Cable sizing also depends on installation method, grouping, ambient temperature and protection devices, which this calculator does not evaluate.
  • For work that must comply with a standard or be signed off, check the result against the applicable code and have it reviewed by a qualified engineer.

Frequently asked questions

Why is there a 2 in the single-phase formula?

Because the current travels out along one conductor and back along the other, so it passes through twice the length you measured. Enter the one-way distance from the board to the load: the calculator doubles it for you. Three-phase circuits use √3 instead, because the return path is shared between phases.