Voltage drop and AWG wire gauge calculator

Voltage drop over a DC, single-phase or three-phase cable run, plus AWG wire size to diameter, mm², kcmil and resistance per km, and back.

업데이트 검증한 예제: 6

V
시도하기
Voltage drop
%
Voltage drop: 3.91 %
소수 자릿수: 2; 가장 가까운 값, 중간값은 끝자리가 짝수인 쪽으로
Voltage drop
4.68962V
Voltage at the load
115.31V
Power lost in the wire
70.3444W
Nearest AWG
12 AWG
지름
2.05253mm / 0.0808081in
Cross-section area
3.30877mm² / 6.52995kcmil
Resistance at 20 °C
5.211Ω/km / 1.588Ω/kft
Resistance is for solid copper at 20 °C; at a 75 °C conductor temperature it is about 22% higher.
Above the 3% branch-circuit guidance (NEC 210.19(A) note) but within 5% overall.

30 m of 12 AWG copper carrying 15 A drops 4.69 V (3.91% of 120 V), leaving 115.31 V at the load and wasting 70.34 W as heat.

Voltage drop against the usual limits

≤ 3% branch3–5%> 5%035123.91%
계산 방법 S
  1. Diameter from the gauge number

    d=0.005 in×92(36−(12))/39=0.0808081 in=2.05253 mmd = 0.005\,\text{in}\times 92^{(36 - (12))/39} = 0.0808081\ \mathrm{in} = 2.05253\ \mathrm{mm}
  2. Area and resistance

    A=πd24=3.30877 mm2,R′=ρA=1.7241×10−80.00000330877=5.21069 Ω/kmA = \frac{\pi d^2}{4} = 3.30877\ \mathrm{mm^2},\quad R' = \frac{\rho}{A} = \frac{1.7241 \times 10^{-8}}{0.00000330877} = 5.21069\ \mathrm{\Omega/km}
  3. Voltage drop

    ΔV=2 IR′L=2(15)(0.00521069)(30)=4.68962 V\Delta V = 2\,I R' L = 2(15)(0.00521069)(30) = 4.68962\ \mathrm{V}

    The current flows out and back, so the wire length counts twice; reactance is ignored.

  4. As a share of the supply

    4.68962120×100=3.908%\frac{4.68962}{120}\times100 = 3.908\%
  5. Power lost in the conductors

    P=2 I2R′L=70.3444 WP = 2\,I^2R'L = 70.3444\ \mathrm{W}

Voltage drop and AWG wire gauge calculator 소개

Voltage drop is the voltage lost along a cable because the conductor has resistance. The calculator takes the resistance per metre from the cross-section (R′ = ρ/A, with ρ at 20 °C) and multiplies it by the current and the one-way length: twice for DC and single-phase, because the current goes out and back, and by √3 for a balanced three-phase run. It also converts any AWG size to diameter, mm², kcmil and ohms per km with the ASTM B258 formula, or finds the nearest AWG for a measured diameter.

The default, 15 A over 30 m of 12 AWG copper at 120 V, drops 4.69 V, or 3.91%. That is above the 3% branch-circuit figure in the NEC informational note; 10 AWG brings the same run down to 2.46%.

The result is a resistive estimate at 20 °C. Copper's resistance is about 22% higher at a 75 °C operating temperature, and long AC runs of large cables add reactance, so leave a margin when the result is close to a limit.

계산 예제

12 AWG copper

Calculate
AWG → size
Wire gauge (AWG)
12 AWG
Conductor
Copper
지름
2.05253 mm
Cross-section area
3.30877 mm²
Resistance at 20 °C
5.211 Ω/km

검증 출처: Python 3.8 math: 0.005 in × 92^(24/39) = 2.0525254 mm; ρ/A with ρ = 1.7241e-8 Ω·m (AWG table: 2.053 mm, 3.31 mm², 5.211 Ω/km)

4/0 AWG is exactly 0.46 in

Calculate
AWG → size
Wire gauge (AWG)
4/0 (0000)
Conductor
Copper
지름
0.46 in
Cross-section area
211.6 kcmil

검증 출처: ASTM B258 definition: 4/0 = 0.4600 in = 211.6 kcmil

36 AWG is exactly 0.005 in

Calculate
AWG → size
Wire gauge (AWG)
36 AWG
Conductor
Copper
지름
0.127 mm
Cross-section area
0.025 kcmil

검증 출처: ASTM B258 definition: 36 AWG = 0.0050 in

2.05 mm wire

Calculate
Diameter → AWG
Conductor diameter
2.05 mm
Conductor
Copper
Nearest AWG
12 AWG
Exact gauge number
12.01

검증 출처: Python 3.8 math: n = 36 − 39·log₉₂(2.05/0.127) = 12.0106

자주 묻는 질문

What is the maximum allowed voltage drop?

In the US, an informational note to NEC 210.19 recommends at most 3% on a branch circuit and 5% in total for feeder plus branch circuit. The note is advice, not an enforceable rule, although some jurisdictions adopt it. IEC 60364-5-52 and BS 7671 give 3% for lighting and 5% for other loads when the installation is fed from a public low-voltage network, and 6% and 8% from a private supply.

How do you calculate voltage drop in a wire?

Multiply the current by the resistance of the wire that carries it. For DC or single-phase, ΔV = 2 × I × R′ × L, where R′ is the resistance per metre and L the one-way length; the 2 counts the outgoing and return conductors. For balanced three-phase, use √3 (1.732) instead of 2 and compare the result with the line-to-line voltage. 15 A over 30 m of 12 AWG copper (5.21 Ω/km) drops 4.69 V.

How does the AWG number relate to wire diameter?

ASTM B258 defines AWG by a formula: 36 AWG is 0.005 in and 4/0 (0000) is 0.46 in, with 39 equal ratio steps between them, so each gauge number changes the diameter by a factor of 1.1229. Three gauge numbers double or halve the cross-sectional area, and six double or halve the diameter. 12 AWG is 2.053 mm across with 3.31 mm² of metal.

Why is this resistance lower than in NEC Chapter 9 Table 8?

Table 8 lists DC resistance at 75 °C, while this calculator uses solid conductors at 20 °C with copper's resistivity from IEC 60028 (0.017241 Ω·mm²/m). For solid 12 AWG copper, Table 8 gives 1.93 Ω per 1000 ft against 1.59 here; the whole difference is the 55 °C of extra temperature. Stranded 12 AWG is listed slightly higher, at 1.98 Ω per 1000 ft.

How much bigger does an aluminium wire need to be than copper?

About 1.6 times the cross-section, or roughly two AWG sizes larger, for the same resistance and voltage drop. Electrical-grade aluminium conducts 61% as well as copper (IEC 60889), with a resistivity of 0.028264 Ω·mm²/m against copper's 0.017241. The final size must also meet the ampacity tables, and aluminium terminations need connectors rated for it.

“Voltage drop and AWG wire gauge calculator”의 정확도는 어느 정도인가요?

정확도는 입력값과 계산 방법의 가정에 따라 달라집니다. 십진 연산은 유효숫자 50자리를 사용하지만, 추정값·수치해석 방법·원본 데이터의 정밀도는 더 낮을 수 있습니다. 표시값을 반올림해도 이러한 한계는 사라지지 않습니다. 독립적인 출처의 풀이와 대조한 계산 예시: 6. 예를 들어 “12 AWG copper”은 Python 3.8 math: 0.005 in × 92^(24/39) = 2.0525254 mm; ρ/A with ρ = 1.7241e-8 Ω·m (AWG table: 2.053 mm, 3.31 mm², 5.211 Ω/km)와 대조해 확인합니다.

이 계산 방법의 출처는 무엇인가요?

ASTM B258 — Standard specification for standard nominal diameters and cross-sectional areas of AWG sizes; IEC 60028 — International standard of resistance for copper (0.017241 Ω·mm²/m at 20 °C); NFPA 70 (NEC) 210.19(A) Informational Note — 3% branch / 5% total voltage drop guidance; Wikipedia — American wire gauge (table of diameters, areas and copper resistance).

이 계산기 소개

d=0.005 in×92(36−n)/39,R′=ρA,ΔV=k IR′L, k=2 (DC, 1-phase), 3 (3-phase)d = 0.005\,\text{in}\times 92^{(36-n)/39},\quad R' = \frac{\rho}{A},\quad \Delta V = k\,I R' L,\ k = 2\ (\text{DC, 1-phase}),\ \sqrt3\ (\text{3-phase})

출처

  1. ASTM B258 — Standard specification for standard nominal diameters and cross-sectional areas of AWG sizes
  2. IEC 60028 — International standard of resistance for copper (0.017241 Ω·mm²/m at 20 °C)
  3. NFPA 70 (NEC) 210.19(A) Informational Note — 3% branch / 5% total voltage drop guidance
  4. Wikipedia — American wire gauge (table of diameters, areas and copper resistance)

출처와 대조하여 검증

이 계산기에는 독립적인 출처에서 답을 얻은 계산 예제가 6개 있습니다. 테스트 모음에서 실행되며 여기에서도 실행할 수 있습니다.

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