Industrial facilities rarely have one uniform load. Our factory asks for essential production equipment, utilities, motors, controls and shutdown priorities. We use the operating sequence and largest step load to shortlist a GENKVA class, while plant protection and system coordination remain part of the site engineer’s design.
Production-load schedule
Motor-rich systems
Standby or prime duty
Step-load sequence
01
Classify essential production loads
Separate equipment that must continue from machinery that may stop safely. Include process controls, pumps, air compressors, ventilation, emergency lighting and IT loads. State the normal kW, power factor and expected simultaneous combination for each operating stage.
02
Model starts and load steps
Large motors, transformers and rectifier loads can create a step much greater than their steady demand. Provide motor-start method, transformer kVA, drive type and the order in which loads reconnect. This information is more useful than applying one generic percentage margin.
03
Define power-quality limits
Tell us the facility voltage, frequency, phase arrangement and acceptable voltage or frequency dip for sensitive controls. Nonlinear loads and harmonics may require alternator and system review beyond a basic kVA conversion.
04
Coordinate the complete system
The generator is only one part of the standby or prime-power system. A qualified project engineer should coordinate transfer equipment, protection settings, grounding, cable sizing and compliance. Our factory quotation should therefore include the agreed electrical output and interface requirements.
Contact our factory
Send us your generator specification.
Share the load, fuel, electrical output and site conditions. Our team will review the nearest confirmed configuration.