In Stock

Heat Resistant Single Core Stranded Copper Cable PVC 90 ºC Insulation 12.6 mm Diameter 450/750 Volt 300 Feet White | Al Fanar

Description

Heat Resistant Single Core Stranded Copper Cable with PVC 90 °C insulation, 12.6 mm diameter, and 450/750 Volt rating by Al Fanar. This white cable is made from 99.97% pure copper, gasoline and oil resistant, ideal for building wiring applications.

This item cannot be exchanged
Get 10% Off If quantity exceeds 10 Items.
Delivered to building doors
Sold by
Al Fanar
Get better prices if quantity exceeds 100 Items.
Request a Quote

Product Description

Heat Resistant Single Core Stranded Copper Cable designed for building wires by Al Fanar. Made with high-quality electrolytic grade 99.97% pure copper and insulated with durable PVC rated for 90 °C, this cable ensures reliable performance in indoor dry locations requiring flexibility. Suitable for electrical panel connections and other electrical apparatus, it can be installed in groups around steel sheets, meeting the latest UL, BS, and IEC standards for construction materials and building supplies in Saudi Arabia.

  • Insulation: PVC 90 °C
  • Voltage: 450/750 Volt
  • Diameter: 12.6 mm
  • Length: 300 Feet
  • Color: White

Overview

Category Building Wires

Frequently Bought Together

Single Core Stranded Copper Cable PVC 70 ºC Insulation 3.7 MM Diameter 450/750 Volt 300 Feet Red | Al Fanar
Single Core Stranded Copper Cable PVC 70 ºC Insulation 3.7 MM Diameter 450/750 Volt 300 Feet Red | Al Fanar
SAR 0
Heat Resistant Single Core Flexible Copper Cable PVC 90 ºC Insulation 2.5 mm² 450/750 Volt 300 Feet Black | Al Fanar
Heat Resistant Single Core Flexible Copper Cable PVC 90 ºC Insulation 2.5 mm² 450/750 Volt 300 Feet Black | Al Fanar
SAR 0
Multicore Cable Solid Copper Two Cores 1.5 mm² 300/500 Volt 1000m Black | Al Fanar
Multicore Cable Solid Copper Two Cores 1.5 mm² 300/500 Volt 1000m Black | Al Fanar
SAR 0

Customers Also Viewed

Shop All
Company
Select Display Mode
Company Quotes & Bulk Orders
Individual Shop & Buy Directly