Der electrical parameter calculator works out the current a motor or machine draws and sizes the breaker, contactor and cable. Three-phase current I = P / (√3 × U × cos φ × η): a 7.5 kW motor at 400 V, PF 0.85 and 90% efficiency draws 14.2 A — use a 20 A breaker, an 18 A contactor and 2.5 mm² copper cable.

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Power unit
Supply
Phase-to-phase for three-phase. Find your country’s voltage.
M
H
per kWh

Ergebnisse

Live
Full-load current14.2 Afull-load current · 3-phase 400 V
Apparent power
9.80 kVA
Input power
8.33 kW
Circuit breaker
20 A (motor-rated: up to 40 A)
Contactor (AC-3)
18 A AC-3
Copper cable
2.5 mm² Cu (≈ AWG 14)
Energy consumption
66.7 kWh

Cable size for copper, PVC insulation, in conduit (IEC method B2), 30 °C, three loaded conductors; derate for grouping, high temperature or long runs and follow local electrical code (IEC 60364 / NEC).

Motor current formulas

Three-phase: I = P × 1000 / (√3 × U × cos φ × η)
Single-phase: I = P × 1000 / (U × cos φ × η)
  • P rated mechanical (shaft) power in kW (1 hp = 0.7457 kW)
  • U supply voltage (phase-to-phase for three-phase)
  • cos φ power factor, typically 0.80–0.90
  • η motor efficiency, typically 0.85–0.96

The breaker is the next standard size above 125% of full-load current; motor-rated (inverse-time) breakers may be set up to 250% to ride through the starting current. The contactor is chosen by AC-3 rating ≥ full-load current, and the cable carries at least 125% of the current. Voltage drop is checked against 5%.

How to use the Electrical Parameter Calculator

  1. Geben Sie den power of the motor or machine (kW or hp).
  2. Wählen three-phase or single-phase und die voltage.
  3. Keep the typical power factor Und Effizienz or use nameplate values.
  4. Add cable length and operating hours for voltage drop and energy use.

Worked example

7.5 kW motor, 400 V three-phase, cos φ 0.85, η 0.90. Input power = 7.5 / 0.9 = 8.33 kW; apparent power = 8.33 / 0.85 = 9.80 kVA; I = 9,804 / (1.732 × 400) = 14.2 A. Breaker ≥ 1.25 × 14.2 = 17.7 A → 20 A; contactor 18 A; cable for 17.7 A → 2.5 mm² Cu. Eight hours of operation use about 66.7 kWh.

Typical full-load current of three-phase motors

cos φ 0.85, η 0.90.

Motor230 V380 V400 V480 V
1.5 kW (2.0 hp)4.9 A3.0 A2.8 A2.4 A
2.2 kW (3.0 hp)7.2 A4.4 A4.2 A3.5 A
4 kW (5.4 hp)13.1 A7.9 A7.5 A6.3 A
5.5 kW (7.4 hp)18.0 A10.9 A10.4 A8.6 A
7.5 kW (10.1 hp)24.6 A14.9 A14.2 A11.8 A
11 kW (14.8 hp)36.1 A21.8 A20.8 A17.3 A
15 kW (20.1 hp)49.2 A29.8 A28.3 A23.6 A
22 kW (29.5 hp)72.2 A43.7 A41.5 A34.6 A
30 kW (40.2 hp)98.4 A59.6 A56.6 A47.2 A
37 kW (49.6 hp)121.4 A73.5 A69.8 A58.2 A
45 kW (60.3 hp)147.7 A89.4 A84.9 A70.8 A
55 kW (73.8 hp)180.5 A109.2 A103.8 A86.5 A
75 kW (100.6 hp)246.1 A149.0 A141.5 A117.9 A

Frequently asked questions

How do I calculate the current of a three-phase motor?

I = P × 1000 / (√3 × U × cos φ × η). For an 11 kW motor at 400 V with cos φ 0.85 and 90% efficiency: 11,000 / (1.732 × 400 × 0.85 × 0.9) = 20.8 A.

What size breaker do I need for a motor?

At least 125% of the full-load current, rounded up to the next standard size. Motors with heavy starting loads may need a motor-protection or inverse-time breaker set up to 250% of full-load current.

What cable size do I need?

Size the copper cable for 125% of the full-load current using your local code tables, then check voltage drop over the cable length (keep it below 3–5%). Long runs often need a larger cable than current alone suggests.

What power supply does a press brake need?

Hydraulic press brakes of 40–300 t typically have 5.5–30 kW main motors plus controls; servo-electric press brakes draw less. Use the machine’s total connected power in this calculator to size the supply.

Reviewed by the HARSLE engineering team · Last updated October 2026. Results are engineering estimates; confirm critical values with your machine and tooling documentation.

Full-load current—