
Customization:
With a copper-aluminum hybrid construction, you can achieve superior conductivity and lightweight durability. The combination of copper (for high current efficiency) and aluminum (for corrosion resistance and weight reduction) outperforms single-material busbars, reducing energy loss while maintaining structural integrity in harsh industrial environments.
With a modular design featuring customizable mounting points, you can easily integrate the bus duct into diverse systems. Its adaptable configuration allows seamless installation in both new and retrofit setups, unlike rigid, fixed designs that limit flexibility.
With a 2500A capacity and optimized thermal efficiency, you can handle heavy loads without overheating. The heat-dissipating fins and robust material ensure stable operation at peak performance, surpassing standard busways rated for lower amperage.
With continuous operation capability, you can support commercial/industrial applications requiring uninterrupted power flow. Its design ensures reliability in high-demand settings like data centers or factories, unlike consumer-grade solutions limited to intermittent use.
With RoHS and CE certifications, you can meet global safety and environmental regulations. The materials and construction adhere to strict industry standards, ensuring eco-friendliness and safety for professional installations.

The Power Supply Copper and Aluminum 2500A Busbar Bus Duct is a high-performance electrical component designed for efficient power distribution in demanding industrial and commercial applications. Crafted from corrosion-resistant aluminum and conductive copper, it combines durability with optimal current handling (2500A). Its modular design, featuring heat-dissipating fins and customizable mounting options, ensures seamless integration into diverse systems.
| Feature | Specification | Application Scenario |
|---|---|---|
| Material | Aluminum (body) + Copper (conductive core) | High-current industrial power systems |
| Current Capacity | 2500A continuous rating | Data centers, manufacturing facilities |
| Thermal Dissipation | Finned design for 30% improved heat dissipation | High-temperature environments |
| Mounting System | Pre-drilled holes for flexible installation | Retrofitting or new construction projects |
| Corrosion Resistance | Passivated surface treatment | Coastal or chemically exposed areas |
Adjustable dimensions (length, fin density) and mounting configurations to meet specific spatial or thermal requirements. For example, increasing fin density enhances cooling in high-heat scenarios.
With its lightweight aluminum frame and copper core, this bus duct ensures reliable power flow while minimizing energy loss. Ideal for applications where space, heat, and durability are critical—such as industrial machinery, server farms, or large-scale HVAC systems.
| Parameter | Base Model | Advanced Model | Pro Model |
|---|---|---|---|
| Current Rating | 2500A | 2500A + 15% surge | 2500A + 30% surge* |
| Thermal Efficiency | Standard fins | Enhanced fin density | Hyper-cooling design |
| Material Grade | Commercial-grade Al | Industrial-grade Al | Military-grade Cu-Al alloy |
| Weight | 22 kg/m | 20 kg/m | 18 kg/m |
Technical Breakthroughs:
Version Selection Guide:
With the Pro Model’s military-grade alloy, you can safely handle 30% higher surges than industry benchmarks, ensuring uninterrupted power flow in critical systems. Pair its low-weight design with enhanced cooling to reduce energy costs by up to 15% in high-load scenarios.
| Category | Usage Scenarios | Characteristics | Advantages | Disadvantages |
|---|---|---|---|---|
| Material Composition | Industrial machinery, HVAC systems | Industry Standard: Aluminum 6061-T6 (ASTM B221) Our Base: Aluminum 6063-T5 (EN AW-6063) ▲ Our Advanced: Copper-Clad Aluminum (CCA) ▲▲ | Base: 15% higher conductivity than 6061-T6; Advanced: 30% better conductivity than Base | Base: Slightly higher cost than standard; Advanced: 40% cost premium vs Base |
| Current Capacity | Data centers, power plants | Industry Standard: 2000A (IEC 60439-1) Our Base: 2500A ▲ Our Advanced: 3000A ▲▲ | Base: Supports 25% higher load than standard; Advanced: 50% capacity boost over standard | Advanced requires larger installation space due to thicker busbars |
| Thermal Performance | High-temperature environments | Industry Standard: 40°C temp rise @2000A (IEC 60947) Our Base: 35°C @2500A ▲ Our Advanced: 30°C @3000A ▲▲ | Base: 12.5% cooler operation at rated load; Advanced: 25% lower temp rise at peak | Base may overheat in extreme overloads; Advanced needs advanced cooling systems |
| Insulation Rating | High-voltage substations | Industry Standard: 1500V dielectric (IEC 61641) Our Base: 2000V ▲ Our Advanced: 2500V ▲▲ | Base: 33% higher voltage isolation; Advanced: 66% improvement over standard | Base adds 10% weight; Advanced requires specialized installation expertise |
| Weight | Space-constrained facilities | Industry Standard: 15 kg/m (aluminum) Our Base: 14 kg/m ▲ Our Advanced: 16 kg/m (due to CCA) | Base: 6.7% lighter than standard; Advanced: 30% stronger mechanical resistance | Advanced 13% heavier than Base; Base lacks copper’s thermal benefits |
| Safety Compliance | Global industrial markets | Industry Standard: IEC 60439-1 Our Base: IEC 60439-1 + UL 508A ▲ Our Advanced: ISO 9001 + CE + UL 508A ▲▲ | Base: Accesses North American markets; Advanced: Full EU and global certification | Base adds $500/unit for UL testing; Advanced requires 2-week certification audits |
⭐⭐⭐⭐⭐ James Carter - Industrial Maintenance Engineer, Automotive Plant
"We installed the Advanced Model of this bus duct across our production line in February 2025, and after 5 months of continuous operation, it’s performing flawlessly. The modular design made retrofitting into our existing power infrastructure seamless—no downtime during installation. The finned heat dissipation system keeps temperatures 20% lower than our old copper-only busbars, even during peak shifts. Surge tolerance has been a game-changer during equipment startups."Purchase Date: February 2025 | Usage Period: 5 months
⭐⭐⭐⭐⭐ Elena Rodriguez - Infrastructure Manager, CloudServe Data Centers
"We chose the Pro Model for our new server hall build-out in April 2024. Eight months in, and thermal performance is outstanding—running at just 31°C rise under full 2500A load. The military-grade Cu-Al alloy delivers on its promise: zero oxidation, minimal energy loss, and surprisingly lightweight for overhead routing. The ability to expand capacity via plug-in modules gives us future-proof confidence as we scale."Purchase Date: April 2024 | Usage Period: 8 months
⭐⭐⭐⭐☆ David Lin - Electrical Supervisor, Precision Manufacturing Co.
"Solid product for industrial use. We went with the Base Model for cost efficiency in our secondary power zones. Installation was straightforward thanks to the pre-drilled mounting holes. After 4 months, no issues with overheating or corrosion, even in our high-humidity workshop. Only reason for 4 stars: we wish the catalog included more bend and elbow options out of the box."Purchase Date: January 2025 | Usage Period: 6 months
⭐⭐⭐⭐⭐ Fatima Al-Nasir - Project Engineer, SolarGrid Solutions
"Deployed this bus duct in a hybrid solar-to-grid substation in October 2024. The copper-aluminum hybrid strikes the perfect balance—excellent conductivity without the weight penalty of all-copper systems. In desert conditions where daytime temps exceed 45°C, the finned thermal design prevents thermal throttling. Custom brackets allowed us to adapt to non-standard panel alignments. Will be specifying this for all future projects."Purchase Date: October 2024 | Usage Period: 4 months
⭐⭐⭐⭐☆ Michael Tran - Lead Electrician, MetroBuild Contractors
"Used the Base Model in a high-rise office retrofit last December. Lightweight enough for easy overhead handling, and the corrosion-resistant finish is ideal for indoor mechanical rooms. After 7 months, clients report stable power with no flicker or heat alerts. Great value for commercial applications, though I’d recommend the Advanced Model for facilities with heavy HVAC cycling."Purchase Date: December 2024 | Usage Period: 7 months
Average Rating: 4.8/5 ⭐ (89 Reviews)
Dr. Alan Foster - Senior Electrical Engineer, IEEE Certified
"This 2500A copper-aluminum bus duct represents a significant advancement in medium-voltage power distribution. The 30% improvement in thermal dissipation due to finned design is not just marketing—it’s measurable in field data. I’ve reviewed its compliance with IEC 60439-1 and UL 891, and it exceeds typical industry tolerances. For industrial engineers, the modular scalability is a major advantage over traditional busways."
Rebecca Liu - Energy Optimization Specialist
"After auditing three facilities using this product, I’ve seen up to 15% reduction in cooling-related energy costs in high-load zones. The combination of low-resistance copper core and lightweight aluminum casing reduces both electrical and mechanical stress. For any plant aiming to improve power quality and reduce lifecycle costs, this is a smart upgrade from conventional busbars."
Posted: 2 days ago
"Running 24/7 under heavy arc furnace load. No hotspots detected. The corrosion shield is holding up in a chemically aggressive environment. Exactly what we needed."
Posted: 1 week ago
"Integrated into a large-scale chiller plant. Pre-mounted holes and modular joints saved us two full days of labor. Thermal imaging shows even current distribution."
Posted: 3 weeks ago
"Perfect for upgrading old switchgear without structural changes. Only suggestion: include more L-bend fittings in standard kit."
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