Transformers for Industrial Plants

We work with plant engineers, EPC contractors and MEP consultants to specify the transformer correctly the first time — including impedance, vector group, tapping, cooling and the interface to the MV…

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info@xsdfftransformer.com

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An industrial plant intake substation is a system, not a box. The transformer has to match the utility supply voltage, the fault level at the point of connection, the plant’s load profile and the protection philosophy of the switchgear.

We work with plant engineers, EPC contractors and MEP consultants to specify the transformer correctly the first time — including impedance, vector group, tapping, cooling and the interface to the MV switchgear.

What Matters for This Application

Recommended Transformer Solution

Sizing Guidance

For a plant, the design check is not only thermal. Verify the transformer against maximum demand, motor starting voltage dip, expected harmonic heating, and the short-circuit withstand capability specified in IEC 60076-5.

Installation Notes

Testing and Commissioning

Before energisation the unit is checked on site: insulation resistance, voltage ratio and vector group, earthing and terminations, and functional checks of protection and monitoring devices. See the testing page for the full programme.

Frequently Asked Questions

Impedance is a compromise. Higher impedance reduces prospective short-circuit current and lets you use lower rated switchgear, but it increases voltage drop and regulation. The value is chosen from the fault level study, typically 4–8%.
Yes if vector group, ratio, phase sequence match and impedances are close. Paralleling improves redundancy but increases the fault level on the bus, so switchgear ratings must be checked.
ONAN is natural oil and natural air circulation. ONAF adds fans, raising the continuous rating — typically by 25–33% — for the same unit.
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