
Renewable Energy
Extensive solar and wind project experience worldwide. Inverter-duty transformers, ester dielectric technology, and ESG-compliant solutions engineered for the energy transition.
ETS manufactures IEC 60076 solar PV transformers, wind-farm units and BESS package substations for Mohammed bin Rashid Al Maktoum Solar Park, NEOM, ACWA Power and other Vision 2030 renewable mega-projects — engineered for the extreme heat, dust and humidity of GCC service.
The Challenge
Renewable installations face unique stresses — harmonic-rich environments from inverters, cyclic loading from intermittent generation, and extreme outdoor conditions.
Our Solution
Our renewable-specific transformers are designed from the ground up for these conditions. K-factor rated, inverter-duty, with optional natural ester fluid for enhanced sustainability.
Powering the Clean Energy Transition.
Purpose-built inverter-duty transformers (K-factor compliant)
Natural ester option for zero-environmental-impact installations
Optimised for cyclic loading and harmonic-rich environments
Compact pad-mounted designs for wind farm applications

Solar Step-Up Transformers for Utility-Scale Renewables
Inverter-duty solar step-up transformers with natural-ester dielectric fluid, K-rated for inverter-driven harmonic stress and engineered for desert thermal cycling — purpose-built for utility-scale solar PV and hybrid renewable plants.
Where We Exceed the Standard
Our engineering team doesn't design to minimum specifications. Every parameter is pushed beyond industry norms — because your operations demand it.
Harmonic Tolerance
Standard transformers derate rapidly under inverter harmonics. Our K-13 designs absorb harmonic-rich loads without additional cooling or derating.
Dielectric Fluid
97% biodegradable natural ester fluid with 360°C fire point vs. 160°C mineral oil — meeting ESG mandates while exceeding thermal and fire safety standards.
Cyclic Loading Capacity
Solar generation peaks don't align with flat ratings. Our designs sustain 150% nameplate for 4 hours, matching actual solar irradiance profiles.
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