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⚡ Voltage Drop Calculator

NEC recommends max 3% VD for branch circuits, 5% combined feeder + branch. Formula: VD = (2 × K × I × L) / CM where K=12.9 copper / 21.2 aluminum.

NEC 310.16 Ampacity Table — Copper Conductors (75°C / 90°C in Conduit, ≤3 Conductors, 30°C Ambient)
Important: Use the 75°C ampacity column for most applications — equipment terminals are typically rated at 75°C per NEC 110.14(C). The 90°C column applies only when all termination equipment is rated 90°C. Apply correction factors for ambient temperature above 30°C and adjustment factors for more than 3 current-carrying conductors.
AWG / kcmil Circular Mils Cu 60°C (A) Cu 75°C (A) Cu 90°C (A) Al 75°C (A) Al 90°C (A) Cu Ω/kft (75°C) Typical Use
Temperature Correction Factors (NEC Table 310.15(B)(1))
Ambient Temp °CAmbient Temp °F60°C Insulation75°C Insulation90°C Insulation
10501.291.201.15
16–2061–681.221.131.11
21–2570–771.141.081.05
26–3079–861.001.001.00
31–3588–950.910.940.96
36–4097–1040.820.880.91
41–45106–1130.710.820.87
46–50115–1220.580.750.82
51–55124–1310.410.670.76
56–60133–1400.580.71
61–70142–1580.330.58
Adjustment Factors — More Than 3 Current-Carrying Conductors (NEC 310.15(C)(1))
Conductors in ConduitAdjustment FactorExample: 20A Wire becomes...
1–3100% (no reduction)20A
4–680%16A
7–970%14A
10–2050%10A
21–3045%9A
31–4040%8A
41+35%7A
Voltage Drop Formula
Single Phase: VD (V) = (2 × K × I × L) / CM
Three Phase: VD (V) = (1.732 × K × I × L) / CM

K = 12.9 for copper, 21.2 for aluminum
I = Load current in amps
L = One-way length in feet
CM = Circular mils of conductor
VD% = (VD / System Voltage) × 100