Renewable energy systems operate outdoors for decades — components must withstand UV, moisture, temperature extremes, and thermal cycling.
Power electronics generate substantial heat — effective cooling is critical for efficiency, performance, and long‑term reliability.
As systems become more portable and space‑constrained, lighter yet robust metal enclosures and mounting structures are essential.
Laser cutting ±0.05mm, CNC bending ±0.2°, welding — for inverter housings, battery enclosures, and mounting frames.
3/4‑axis milling, turning, and Swiss machining for heat sink bases, connector housings, and precision shaft components.
Progressive dies for high‑volume busbars, shielding cans, and structural frames (0.2~6mm, up to 300mm draw).
Extruded and skived heat sinks for IGBT modules, power converters, and battery management systems — black anodised.
Powder coating (high‑durability outdoor grades), zinc plating, chromate conversion — for corrosion protection and UV resistance.
In‑house tooling design and rapid prototyping, with DFM analysis to reduce cost, weight, and lead time.
IP65 rated outdoor enclosure for grid‑tied solar inverters, AL5052 1.5mm, laser cut, CNC bent, welded, and powder coated with UV‑stable finish.
View Details →Modular enclosure for lithium‑ion battery racks, SGCC 2.0mm, with integrated ventilation and mounting for BMS and connectors.
View Details →Certified quality and environmental management systems, ensuring consistent, sustainable manufacturing.
Automotive‑grade quality management (2024) — reflecting our rigorous process control and supply chain excellence.
Material certificates, chemical reports, mechanical properties, and batch traceability from raw material to final shipment.