High-Conductivity Copper Riser Pipes for Efficient Systems
Nima Engineer proudly offers Copper Riser Pipes, designed for superior thermal and electrical conductivity in vertical fluid and gas transport systems. Ideal for plumbing, HVAC, and refrigeration applications, our copper riser pipes combine durability with excellent performance. As a premier supplier in India, we provide customized solutions to meet your project specifications.

Why Choose Our Copper Riser Pipes?
- Excellent Conductivity: High thermal and electrical conductivity for efficient energy transfer.
- Corrosion Resistance: Naturally resistant to oxidation and suitable for water and gas applications.
- Flexible Sizing: Available in a range of diameters and lengths to suit your system design.
- Ease of Installation: Lightweight and compatible with soldering or brazing techniques.
- Reliable Supplier: A trusted Copper Riser Pipe Supplier in India with fast delivery.
Applications of Copper Riser Pipes
Our Copper Riser Pipes are ideal for:
- Plumbing Systems
- Refrigeration Units
- HVAC Installations
- Gas Distribution Networks
- Solar Water Heating Systems
- Medical Gas Pipelines
Technical Specifications
Material Grades | Copper C12200 (DHP), C11000 (ETP) |
---|---|
Diameter Range | 1/4" to 6" (Custom sizes available) |
Wall Thickness | Type K, Type L, Type M |
Length | Up to 5 meters (Custom lengths on request) |
Surface Finish | Bright Annealed or Polished |
Standards | ASTM B88, ASME B16.22, ISO 9001 |
Advanced Manufacturing Process
Our copper riser pipes are crafted through seamless extrusion, cold drawing, and precision cutting processes. Each pipe is tested for pressure resistance, dimensional accuracy, and surface quality, ensuring compliance with ASTM and ISO standards for optimal performance in critical systems.
Additional Features
- Antimicrobial Property: Naturally inhibits bacterial growth, ideal for potable water systems.
- Temperature Range: Effective from -20°C to 200°C.
- Recyclability: 100% recyclable, promoting environmental sustainability.