This 3x35+2x16mm² copper cable features XLPE insulation and a durable PVC sheath, designed for 600/1000V (0.6/1kV) low-voltage power distribution systems. It includes three phase conductors (35mm² each) and two auxiliary conductors (16mm² each), making it ideal for applications where additional grounding or control conductors are required.
Standards Compliance
IEC 60228 – Conductors of insulated cables
IEC 60502-1 – Power cables with extruded insulation and their accessories for rated voltages from 1kV up to 3kV
CONSTRUCTION :
1. Conductor: Copper , Class 2: stranded conductor
2. Insulation: Cross-linked polyethylene XLPE
3. Filler: Non-hygroscopic material
4. Binder tape: Non-hygroscopic material
5. Outer sheath: Polyvinyl chloride PVC

XLPE 3+2 Cores Cable Construction
Applications
The 3x35+2x16mm² XLPE insulated copper cable is widely used for:
Power distribution in commercial and industrial installations
Applications requiring 3-phase power and separate grounding or control conductors
Lighting circuits or two-way switching systems where an additional conductor is needed
Indoor and outdoor fixed installations, including underground ducts, direct burial, or installation in conduits
Ideal for environments where mechanical protection is not required
PARAMETER :
Cable Type: | CU/XLPE/PVC |
Operating voltage, U0 / U (V): | 600/1000 |
Number of cores: | 3+2 |
Phase Conductor Nominal Area (mm2): | 35 |
Earth Conductor Nominal Area (mm2): | 16 |
Phase Conductor Stranding: | 7 |
Earth Conductor Stranding: | 7 |
Phase Conductor Insulation Thickness (mm): | 0.9 |
Earth Conductor Insulation Thickness (mm): | 0.7 |
Sheath Thickness (mm): | 1.8 |
Cable Overall Diameter (O.D.) (mm): | 26.8 |
Cable Weight Per 1000 Meters (kg): | 1420 |
Phase Conductor Resistance DC 20°C Per 1000 Meters (Ω): | 0.524 |
Earth Conductor Resistance DC 20°C Per 1000 Meters (Ω): | 1.15 |
Allowable Ampacity in Air (Amps): | 135 |
Allowable Ampacity in Ground (Amps): | 170 |
Test Voltage: | 3.5kV for 5 minutes |
Operating temperature (°C) : | -15 to +90 |
Final short circuit temperature (°C): | 250 |