What Size Transformer Does a Factory Need?

There is no single answer, but there is a reliable method. Factory transformer sizing comes down to five numbers: connected load, diversity factor, power factor, the largest motor and your growth plans.

This guide shows the method and gives indicative ratings by factory type so you can sanity-check whatever number you arrive at.

There is no single answer, but there is a reliable method. Factory transformer sizing comes down to five numbers: connected load, diversity factor, power factor, the largest motor and your growth plans.

This guide shows the method and gives indicative ratings by factory type so you can sanity-check whatever number you arrive at.

The sizing formula

Transformer kVA = (Maximum demand in kW) ÷ (Power factor) × (1 + growth margin).

Maximum demand itself is connected load × diversity factor. Every input matters: a 0.6 diversity assumption instead of 0.8 changes the answer by 25%.

Worked example

A factory has 1,600 kW of connected load. Assessment shows that at peak about 70% of it runs together, so maximum demand is 1,120 kW. Power factor is 0.85 after correction. Growth margin is 25%.

kVA = 1,120 ÷ 0.85 × 1.25 = 1,647 kVA → select the next standard rating up, typically 1,600 kVA or 2,000 kVA depending on the motor starting check.

Indicative ratings by factory type

Small workshop / light assembly. 500 kVA

Medium factory with machining and HVAC. 1000 kVA

Large factory with process heating. 1600–2000 kVA

Continuous process plant. 2500–3150 kVA or multiple units

Check the motor starting condition

The largest motor is a common reason to upsize. A direct-on-line start can draw six to eight times full load current and cause a voltage dip of 10–20% on a weak transformer. If a dip of that size affects other equipment, either increase the rating or change the starting method.

Check for harmonics

If variable speed drives, rectifiers or large UPS systems make up a significant share of load, harmonic currents add heating that the kVA calculation does not capture. Tell your supplier the drive share of load so the design can account for it.

Frequently Asked Questions

Mild oversizing is fine and provides headroom. Large oversizing increases capital cost, no-load losses and space, and can make protection coordination harder.

Yes, but it is expensive: new MV cabling, a new substation space and a shutdown for changeover. Reserving 20–30% now is usually cheaper.

Add its expected load to the maximum demand before applying the growth margin, and tell the supplier so cooling and busbar ratings are checked.

Related Products, Applications and Support

Not sure which rating fits your project? Send us your load list and we will size it for you, or email info@xsdfftransformer.com, call +86 158 6789 7761 or WhatsApp +852 5416 2620.

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