Copper Sleeve 2.5mm² Cable | High Conductivity | Tin-Plated | CAS2.5 by Cabac
Copper sleeve with 2.5mm² nominal conductor size and high conductivity—ideal for electrical power connectivity. Built for industrial, commercial, and residential installations, with corrosion-resistant tin plating.
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Product Name/Title: Copper Sleeve 2.5mm2 Cable
Brand: Cabac
SKU: CAS2.5
Alternatively Known As: Copper Cable Sleeve, Copper Link, Copper Crimp Sleeve, Electrical Cable Connector Sleeve
- Nominal Conductor Size: 2.5 mm²
- Stranding Number/Diameter: 7 strands of 0.67 mm
- Inner Diameter Size: 2.4 mm
- Conductive Material: 99.95% pure copper
- Oxygen Content: 30 ppm max
- Tensile Strength: 200 MPa
- Ductility Rating: 40%
- Final Metal State: Fully annealed
- Operating Temperature Range: -55°C to 155°C
- Electroplating Material: 99.9% pure tin
- Other Metals: Lead and antimony
- Electroplating Thickness: 4 microns
- Dimensions (H x L x W): 20mm x 30mm x 10mm
- Weight: 0.1 kg
- Made from 99.9%+ IACS high conductivity oxygen-free copper
- Capable of withstanding continuous operating temperatures up to 155°C
- Crimped with CABAC and MSS Power standard tooling dies
- Electroplated with 99.9% pure tin for corrosion resistance
- Tooling interchangeable with Cable Accessories, Utilux, and Burndy
- Should be crimped using standard Australian tooling by a qualified electrician or technician to ensure secure and compliant connections.
- Electrical power connectivity for cable terminations
- Suitable for use in industrial, commercial, and residential electrical installations
- Used for crimping with standard Australian tooling for secure electrical connections
- Complies with AS4325 Part 1 Australia
- High conductivity copper reduces energy loss in electrical connections
- Durable and corrosion-resistant electroplating extends product life, reducing waste
Warranty details available upon request from the manufacturer.
The Cabac Copper Sleeve 2.5mm2 Cable Link is available for immediate purchase, ideal for electrical power connectivity applications requiring high conductivity and thermal resistance.