Home > Medium Voltage Power Cables > NA2XSEBY Three Core 6/10 (12) kV Aluminum XLPE insulated Steel tape armored Cable
NA2XSEBY-Cable
NA2XSEBY-Cable

NA2XSEBY Three Core 6/10 (12) kV Aluminum XLPE insulated Steel tape armored Cable

Application

Medium voltage NA2XSEBY cables for distribution networks. They are suitable for laying indoor, tunnel, cables trench and underground, it is able to bear external mechanical forces, but unable to bear heavy pulling force, it widely used in transformer stations, electric power plants and industrial plants.

Construction
  • Conductor: Aluminum, class 2, circular compacted conductors
  • Conductor screen: Non-metallic, semi-conducting compound
  • Insulation: Cross-linked polyethylene (XLPE)
  • Insulation screen: Non-metallic, semi-conducting compound
  • Metallic screen: Copper tape
  • Filler: Non-hygroscopic material
  • Inner sheath: Polyvinyl chloride (PVC)
  • Armour: Steel tape
  • Outer sheath: Polyvinyl chloride (PVC)
Main Characteristics
  • Good electrical and mechanical properties.
  • Minimal dielectric loss, high insulation resistance.
Specification

IEC 60228 Conductors of Insulated Cables
IEC 60502-2 Power Cables with Extruded Insulation and Their Accessories for Rated Voltages from 1kV (Um=1.2kV) up to 30kV (Um=36kV)-Part 2: Cables for Rated Voltages from 6kV (Um=7.2kV) up to 30kV (Um=36kV).

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Product Parameters

No.of Cores and Nominal Cross Section Nominal Insulation Thickness Nominal Steel Tape Thickness Nominal Sheath Thickness Approx. Overall Diameter Approx.Weight Max.D.C. Resistance of Conductor at 20℃
Cu Al Cu Al
mm² mm mm mm mm kg/km kg/km Ω/km Ω/km
3×25 3.4 0.5 2.4 43.9 2814 2354 0.727 1.2
3×35 3.4 0.5 2.4 46.1 3216 2579 0.524 0.868
3×50 3.4 0.5 2.6 49 3768 2905 0.387 0.641
3×70 3.4 0.5 2.7 53.1 4621 3373 0.268 0.443
3×95 3.4 0.5 2.8 57.2 5613 3882 0.193 0.32
3×120 3.4 0.5 2.9 60.2 6527 4338 0.153 0.253
3×150 3.4 0.5 3 63.6 7554 4848 0.124 0.206
3×185 3.4 0.5 3.1 67.7 8918 5509 0.0991 0.164
3×240 3.4 0.5 3.3 73.3 10865 6442 0.0754 0.125
3×300 3.4 0.5 3.5 78.6 12941 7397 0.0601 0.1
3×400 3.4 0.8 3.7 86.3 16762 9619 0.047 0.0778
3×500 3.4 0.8 4.0 94.5 20417 11351 0.0366 0.0605
3×630 3.4 0.8 4.2 103.3 25134 13362 0.0283 0.0469

Application and case display

FAQ

Longitudinal Water Blocking vs. Lateral Water Blocking?
Armored vs. Unarmored Cables?
What are the benefits of EPR material?
Why do cable prices vary significantly among suppliers within the same region?
What temperature can high-temperature resistant cables reach, and what are their application scenarios?
What is the service life of cables?
The design life of power cables is typically 20 to 30 years; however, this can vary significantly based on factors such as installation, environmental conditions, and the quality of the cable.
How long is the validity period of cold shrink cable accessories?
The validity period for most cold shrink cable accessories is typically 3 years from the date of manufacture, provided they are stored under recommended conditions. These conditions usually include controlled humidity and temperature ranges.
What is the operating temperature of the cable?
The operating temperature of a cable is determined by the insulation and sheathing material. PVC has a range of -15°C to 70°C, XLPE can reach up to 90°C, while silicone rubber can handle temperatures from -60°C to 180°C.
What temperature can high-temperature resistant cables reach, and what are their application scenarios?
High-temperature resistant cables are engineered to function within a wide temperature range, spanning from -50°C to +260°C, depending on the cable's specific type and construction. Silicone rubber-insulated cables can withstand temperatures up to 180°C, whereas fluoroplastic insulated cables are designed to endure temperatures as high as 200°C to 260°C over extended periods. They are widely used in steel metallurgy, power, petrochemicals, aerospace, and industrial kilns for power transmission and equipment control in high-heat environments.
How Do Water-Blocking Cables Work?
Water-blocking cables are essential for ensuring reliable operation in environments with high levels of moisture or frequent water contact. These cables employ water-blocking techniques to effectively prevent water ingress, protecting them from damage and prolonging their lifespan.

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