Tri-Core K-Factor Transformers
Compact. Cooler. Built for Harmonic-Rich Environments.
Why Tri-Core Architecture?
Traditional EI core transformers have magnetic flux concentration and higher localized heating. Tri-Core design:
- Distributes magnetic flux evenly
- Lowers operating temperature
- Minimizes acoustic noise
- Reduces core loss
- Reduces footprint
Built for Harmonic Loads
200% rated
neutral
Electrostatic
shielding
High-temperature insulation system
Controlled
temperature rise
Technical Specifications
| Features | Specifications |
|---|---|
| Power Range | 15 kVA – 5000 kVA |
| Primary Voltage | Up to 36 kV (customizable) |
| Secondary Voltage | Secondary Voltage: As per application |
| Frequency | 50 / 60 Hz |
| Insulation Class | 220°C system |
| Temperature Rise Options | 80°C / 115°C / 150°C |
| Enclosure | IP21 / IP23 / IP55 / NEMA options |
| Cooling | AN / AF |
| Designed and tested to | IEC 60076 / IEEE C57 standards. |
| Available K-Factor Ratings | K4 | K9 | K13 | K20 | K50 |
Applications
Hyperscale and edge data centers
Solar farms & renewable integration
Healthcare and mission-critical buildings
Industrial
automation
Commercial IT
facilities
Faqs
1. What is a Tri-Core K-Factor Transformer?
A Tri-Core K-Factor Transformer is a specially designed transformer built to handle non-linear electrical loads that generate harmonic currents. The tri-core design improves magnetic flux distribution, while the K-factor rating indicates the transformer’s ability to safely handle harmonic heating without performance degradation.
2. What does the K-Factor mean in transformers?
The K-Factor represents a transformer’s capability to withstand additional heating caused by harmonic currents generated by non-linear loads such as computers, LED lighting, UPS systems, and variable frequency drives. A higher K-Factor rating means the transformer can safely manage higher harmonic content.
3. Why are Tri-Core designs used in K-Factor transformers?
Tri-Core designs improve magnetic balance, flux distribution, and thermal performance within the transformer. This design helps reduce core losses, improve efficiency, and support stable operation when supplying power to harmonic-producing loads.
4. Where are Tri-Core K-Factor Transformers commonly used?
These transformers are widely used in environments with high harmonic loads, including:
- Data centers
- IT infrastructure facilities
- Commercial buildings
- Hospitals
- Industrial automation systems
- Buildings with large UPS installations
5. How do harmonic currents affect transformers?
Harmonic currents cause additional heating in transformer windings and cores, which can reduce efficiency and shorten transformer lifespan. K-Factor transformers are specifically designed to handle these conditions safely by minimizing overheating and maintaining stable performance.