Kirloskar 4R1040T vs Perkins 904J-E36TAG3
Compare Kirloskar 4R1040T and Perkins 904J-E36TAG3 by recorded output, operating duty, frequency and engine specifications. Their listed displacements are 4.2 L and 3.6 L, respectively. Start with the same duty and frequency, then check each model’s source and package conditions. These records alone do not establish interchangeability.
| Specification | Kirloskar 4R1040T | Perkins 904J-E36TAG3 |
|---|---|---|
| Standby electrical (50 Hz) | 53 kWe | 53 kWe |
| Prime electrical (50 Hz) | 48.3 kWe | 48 kWe |
| Standby electrical (60 Hz) | 62.5 kWe | Not listed |
| Prime electrical (60 Hz) | 57.1 kWe | Not listed |
| Displacement | 4.2 L | 3.6 L |
| Configuration | L4 | L4 |
| Cylinders | 4 | 4 |
| Recorded engine speed | 1,500 RPM | 1,500 RPM |
| Fuel | Diesel | Diesel |
| Cooling | Liquid-Cooled | Liquid-Cooled |
| Recorded emissions classification | U.S. EPA Tier 2 | Euro Stage V / U.S. EPA Final Tier 4 |
| Dry weight | Not listed | Not listed |
| Origin | India | United Kingdom |
Compare matching ratings
Read across a row to compare the same operating duty and frequency. kWe is electrical output; mechanical kW is power at the engine shaft. kVA is apparent electrical power and is shown only when kWe is missing, without converting it. “Not listed” means the record lacks that rating, not zero output. Continuous and prime duties are kept separate. Check source documents, units and site conditions before comparing values.
An emissions classification in the catalog is not proof of certification for your engine or installation. Confirm the exact model, applicable documents and generator configuration.
Kirloskar 4R1040T: Review the model record and available supporting documents
Perkins 904J-E36TAG3: Review the model record and available supporting documents
Choosing between Kirloskar 4R1040T and Perkins 904J-E36TAG3
Use this comparison as an engineering shortlist, then confirm the complete generator package against load profile, voltage, 50/60 Hz frequency, duty class, emissions rules, cooling margin, altitude, ambient temperature, enclosure design, controller features, and alternator sizing.
