Hot-Dip Galvanized Light Pole
- Premium hot-dip galvanized steel construction ensures superior corrosion resistance, with a uniform zinc coating that protects the pole from rust, rain, and harsh outdoor elements for over 20 years.
- Dual-compatible design: perfectly suited for solar-powered lighting systems (equipped with pre-drilled holes for solar panel brackets and battery boxes) and mains electricity lighting.
- High-strength structure with optimized load-bearing capacity and wind resistance performance, adapting to various complex terrains.
- Smooth surface finish after galvanizing and optional powder coating for customized colors, enhancing both durability and aesthetic appeal.
- Precision manufacturing with strict quality control, complying with international standards such as ISO 9001 and ASTM.
Solar-Powered Scenarios: Rural roads, suburban streets, courtyard lighting, parking lots, scenic spots, and remote areas.
Mains Electricity Scenarios: Urban arterial roads, residential communities, commercial plazas, industrial parks, and municipal projects.
High Mast Usage: Sports venues (tennis/basketball courts, stadiums), open squares, parks, and logistics hubs.
Frequently Asked Questions
1. How long does the anti-corrosion protection last?
The hot-dip galvanized steel construction provides superior corrosion resistance for over 20 years, even in harsh outdoor environments.
2. Can these poles be used for both solar and mains electricity?
Yes, our poles are dual-compatible, featuring pre-drilled holes for solar components and standard conduit pipes for mains wiring.
3. Is it possible to customize the color of the poles?
Yes, we offer optional powder coating services in various RAL colors to meet your aesthetic and branding requirements.
4. What quality standards do your poles meet?
Our manufacturing process adheres to strict quality controls, complying with international standards including ISO 9001 and ASTM.
5. Are these poles suitable for high wind areas?
Yes, our light poles are engineered with a high-strength structure specifically designed to provide excellent load-bearing capacity and wind resistance.