Fire Resistant Busway System 800A-4000A Low Smoke Halogen Free Insulation For AI Data Center Safety
Product Overview
This fire resistant busway system is engineered specifically for AI data centers where uninterrupted power supply and fire safety are paramount. With current ratings from 800A to 4,000A, it incorporates flame retardant, low smoke, and halogen-free insulation materials that effectively contain fire spread while minimizing toxic emissions, ensuring comprehensive protection for both critical infrastructure and personnel.
Core Advantages
- Flame Retardant Insulation: Self-extinguishing materials comply with rigorous fire safety standards for AI data center installations
- Low Smoke Zero Halogen: LSZH compounds significantly reduce toxic and corrosive smoke emissions, protecting server equipment and emergency evacuation pathways
- High Temperature Resistance: Insulation maintains electrical integrity and performance under elevated temperature conditions during fault scenarios
- Rigid Fire Barrier Construction: Multi-layer sandwich structure with fire resistant components effectively slows heat propagation between data hall zones
Technical Specifications
| Parameter |
Value |
| Rated Current |
800A - 4,000A |
| Rated Voltage |
AC 690V |
| Dielectric Withstand |
3,750V AC / 1 min |
| Short-Circuit Withstand |
80kA / 1s |
| Insulation Class |
Class B (130°C) |
| Protection Grade |
IP54 |
| Insulation Material |
Flame retardant, low smoke zero halogen (LSZH) |
| Fire Resistance |
Flame retardant to IEC 60332 / UL 94 |
| Temperature Rise |
≤ 70K at rated current |
Applications
- AI computing power centers and AI data centers
- GPU cluster rooms and high-density AI server racks
- UPS output to AI rack power distribution units (PDU)
- Colocation and enterprise data halls with high-density AI workloads
Quality & Service
Manufactured under ISO 9001 quality management system with UL/IEC/CNAS/CMA certified testing. Comprehensive OEM and ODM support available, including complete technical drawings and documentation provided upon request.