kVA Calculator

kVA Calculator 3 Phase: kW & Amps Converter

Convert kW, kVA, amps, volts, and power factor instantly for single- and three-phase systems at 50 Hz or 60 Hz. Built on the same formulas electrical engineers use, every result maps to a real generator from 8–4,000 kVA. Built by Shandong Huali, a diesel generator manufacturer since 1999. Get a factory-direct quote with your calculated size pre-filled.

kW → kVA conversion
kVA → amps conversion
Single & three-phase, 50/60 Hz
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Free tool – get your kVA, amps, and a diesel quote.
Shandong Huali

Diesel Generator Manufacturer

Factory-direct power since 1999.

25+ Years experience
8–4,000 kVA generator range
20+ Countries supplied
kVA Explained

What a kVA Calculator Does

A kVA calculator performs one essential job: it converts between the units used to describe electrical power. Three units matter in every sizing decision.

kW Real Power

The real, usable power your equipment consumes. Motors, heaters, and lighting all use it.

kVA Apparent Power

The total power capacity the generator, transformer, or UPS must supply. This is the rating stamped on the equipment.

Amps Current

The current flowing at your system voltage, which determines cable size and breaker rating.

Power Factor & Phase Determine the Relationship

The relationship between kW, kVA, and amps depends on two things: the power factor of your load and whether the system is single-phase or three-phase. A good calculator handles all of it in one step.

More Than a Simple Converter

What Makes This Tool Different

01
Convert in Both Directions

kW to kVA, kVA to amps, amps to kVA, and volts — all on one page. No need for multiple tools.

02
Dedicated Generator Sizing Mode

Enter your load in kW or amps and it returns the kVA generator you need, mapped to a real Huali model.

03
Global Standards

Supports single-phase and three-phase at 50 Hz and 60 Hz — so the result is valid in your country, not just the US.

04
From Conversion to Quote

Every result ends in a free factory-direct quote, so you move from conversion to price in one step.

kVA Calculator 3 Phase: kW & Amps Converter
kVA Converter

kVA Calculator 3 Phase: kW & Amps Converter

Convert kW, kVA, amps, volts, and power factor instantly. Works for single-phase and three-phase at 50 Hz or 60 Hz. Size your generator correctly, then request a quote.

Convert Between kVA, kW, Amps & Volts

Enter any two known values. The calculator fills in the rest using the standard power formulas.

Typical industrial: 0.8. Motors: 0.7–0.9. Resistive loads: 1.0.

Size Your Generator from kW Load

Enter your total connected load. The calculator returns the required kVA, recommended generator class, and headroom margin.

Line-to-line for three-phase.
0.8 is the industrial standard. Adjust for your load type.
kVA Reference Table

kVA to Amps Reference Table (Three-Phase)

This table gives the current for common kVA sizes at the three most common three-phase voltages. Use it to sanity-check a calculation, size a breaker, or select cable before you finalize. For any voltage or kVA outside this table, run it through the kVA to amps calculator above.

kVA Amps @ 230 V Amps @ 400 V Amps @ 480 V
10 kVA 25 A 14 A 12 A
20 kVA 50 A 29 A 24 A
50 kVA 126 A 72 A 60 A
100 kVA 251 A 144 A 120 A
150 kVA 377 A 217 A 180 A
200 kVA 502 A 289 A 241 A
250 kVA 628 A 361 A 301 A
300 kVA 753 A 433 A 361 A
500 kVA 1,255 A 722 A 601 A
Values are rounded for line-to-line voltage at 0.8 power factor reference. Single-phase current is roughly 73% higher per kVA at the same voltage — another reason to verify with the calculator before ordering cables.

This table covers the sizes in our standard diesel generator range from 8 kVA to 4,000 kVA. If your project needs a size you do not see here, we offer OEM/ODM customization across the full range.

Why Generators Are Rated in kVA

Manufacturers rate generators in kVA because the alternator's limit is about current, not watts. kVA = volts × amps captures that physical limit directly. The kW a generator delivers depends on your load's power factor, so the honest rating is the kVA value, with kW quoted at a reference power factor (usually 0.8). Compare generators on kVA first — it is the true capacity.

Three-Phase Power

How to Calculate kVA for Three-Phase Power

The 3-phase kVA formula is the foundation of every sizing decision. It uses line-to-line voltage and the square root of 3 (√3 ≈ 1.732):

FORMULA

Three-Phase kVA Formula

kVA = (√3 × Volts × Amps) ÷ 1,000
Line-to-line voltage × line current × 1.732, divided by 1,000.

WHY √3

The √3 Factor

Unique to three-phase systems. Comes from the geometry of three phases spaced 120° apart. Omit it and you get only 58% of the true kVA — a 42% under-estimate that undersizes your generator.

EXAMPLE

Worked Example

A 400 V three-phase supply carrying 200 A per phase:
kVA = (1.732 × 400 × 200) ÷ 1,000 = 138.6 kVA

SINGLE-PHASE

Single-Phase Formula

No √3 factor:
kVA = (Volts × Amps) ÷ 1,000
For comparison — single-phase current is roughly 73% higher per kVA at the same voltage.

REVERSE

Amps from kVA

Three-phase:
Amps = (kVA × 1,000) ÷ (√3 × Volts)
Single-phase:
Amps = (kVA × 1,000) ÷ Volts

Key Takeaway

Always Apply √3 for Three-Phase

The √3 factor is the most commonly skipped step in power calculations. Omitting it under-estimates power by about 42% — a direct path to an undersized generator. Use the converter above to run your own numbers in either direction.

Why Generators Oversize

Power Factor and Motor Starting: Why Generators Oversize

Two forces push industrial generators to sizes that look "too big" on paper: power factor and motor starting.

01

Power Factor Determines kVA Need

A site full of motors and pumps runs at a lower power factor than one full of heating and lighting. At 0.8 PF you need 25% more kVA than your kW total; at 0.7 PF you need more than 40% more.

02

Reactive Power Is Real

The extra kVA is not waste — it is the reactive power your motors and inductive loads genuinely require to magnetize their windings.

03

Motor Starting Sets the Peak

The locked-rotor current a motor draws in its first seconds is far above its running current. The peak, not the average, determines the generator size.

04

Direct-on-Line (DOL)

6–8× full-load current — the largest generator required. Use when no other starting method is available.

05

Star-Delta / Soft Starter

2–3× full-load current. A soft starter or star-delta reduces the starting surge roughly in half compared to DOL, often allowing a smaller generator.

06

VFD & Stagger-Start

A VFD draws 1–1.5× full-load current — the smallest generator required. Where a site can stagger-start its largest motors, the generator can be smaller still.

Common Errors

5 Common kVA Mistakes to Avoid

We see these five errors repeatedly in real-world projects. Avoid all of them and your generator sizing will be defensible from the start.

01

Forgetting the √3 Factor

Omitting 1.732 in a three-phase calculation under-estimates power by about 42%. Always apply it for three-phase, and never for single-phase.

02

Using Line-to-Neutral Voltage

Three-phase kVA uses line-to-line voltage. Mixing the two gives a wrong result by a factor of √3.

03

Treating kW and kVA as Identical

Always divide by the power factor. A 100 kW load is not a 100 kVA generator — at 0.8 PF it is roughly 125 kVA.

04

Ignoring Motor Starting

A generator that carries your running load all day can still trip the instant a compressor's locked-rotor current hits it. Size for the largest start.

05

Sizing to 100% of Rating

Running a generator at full load leaves no margin for surge, altitude, temperature, or growth. Always use the 20–25% headroom.

Not sure your calculation is right? Our engineers will review your load list and confirm the kVA before you spend anything. Talk to our engineers.

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Get a Factory-Direct Quote

Our engineers will review your calculated kVA, confirm the specification, and deliver a factory-direct price — no obligation, no hidden fees. Every quote includes the generator, automatic transfer switch, and soundproofed enclosure for a complete commercial solution.

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