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Sizing guide

How to calculate the right voltage stabilizer size

Choosing by appliance name or breaker amps alone can produce the wrong result. This guide connects watts, kW, kVA, amps, power factor, phase, starting current and input range so you can prepare an accurate Rustek request.

Use the kVA calculator →
Quick answer

For a basic load, apparent power is approximately kVA = kW ÷ power factor. For current-based checks, single-phase kVA = V × A ÷ 1000, while balanced three-phase kVA = √3 × line-to-line V × A ÷ 1000. Final selection must also cover startup, input range, ambient conditions and manufacturer-rated capacity.

Understand the units

kW, kVA and amps answer different questions

TermMeaningUse in stabilizer selection
W / kWReal power used by the loadBuild the connected and simultaneous load list
VA / kVAApparent power handled by the electrical equipmentPrimary stabilizer capacity rating
Power factorRelationship between real and apparent powerConvert kW demand to kVA correctly
AmpsCurrent at a stated voltage and phaseVerify conductors, breakers and stabilizer current
Input rangeVoltage window in which the AVR regulatesMatch the actual site condition
Current-to-kVA calculator

Estimate apparent power from voltage and current

This is a base electrical calculation, not a final product recommendation. Use line-to-line voltage for the balanced three-phase option.

Estimated base kVA

Base apparent power: 2.20 kVA

Does not include starting current, margin, derating, low-input current effects or load imbalance.

Sizing process

From appliance list to model shortlist

01

Define protected loads

Choose one appliance, selected circuits, the whole home, miners or an industrial load group.

02

Calculate simultaneous demand

Add loads likely to operate together rather than blindly totaling every nameplate.

03

Identify dynamic loads

Record motor, compressor, transformer and PSU startup or overload behavior.

04

Convert and verify

Convert real load to kVA using appropriate power factor, then verify current and phase.

05

Match the input range

Confirm the AVR can regulate at the measured minimum and maximum voltage under load.

06

Add justified margin

Allow for actual operating conditions and planned growth without arbitrary oversizing.

Common mistakes

What causes an inaccurate recommendation

Using only the main breaker rating
Treating kW and kVA as identical
Ignoring motor or compressor startup
Choosing capacity without checking input range
Ignoring low-voltage current rise and phase balance
Adding loads that will never operate together

Information to send Rustek

Load listModel, watts, amps and operating mode
VoltageMinimum, maximum and nominal supply
PhaseSingle or three phase and line voltage
InstallationIndoor/outdoor, ventilation and connection
GrowthSpecific equipment planned for the future
Sizing FAQ

Answers without oversimplifying

Yes, when voltage and phase are known. Use V × A ÷ 1000 for single phase or √3 × line voltage × A ÷ 1000 for a balanced three-phase load.

There is no universal percentage for every load. Margin should reflect startup, input range, temperature, duty, expansion and the specific product’s rating method.

No. They are equal only at unity power factor. For example, apparent power increases as power factor falls for the same real-power demand.

Want Rustek to check the calculation?

Send your load list, voltage range and phase before you choose a model.

Ask Rustek →