Home > Medium Voltage Power Cables > N2XSERY Three core 3.6/6 (7.2) kV Copper XLPE insulated Steel wire armored Cable
N2XSERY-Cable
N2XSERY-Cable

N2XSERY Three core 3.6/6 (7.2) kV Copper XLPE insulated Steel wire armored Cable

Application

Medium voltage N2XSERY cables for distribution networks.They are suitable for laying indoor,tunnel,cable trench,shaft or buried laying.The cable can withstand mechanical external forces and a certain tensile force,it widely used in transformer stations,electric power plants and industrial plants.

Construction
  • Conductor: Copper ,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 screen
  • Filler: Non-hygroscopic material
  • Inner sheath: Polyvinyl chloride (PVC)
  • Armour: Steel wire
  • 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)-Part2: 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 Wire Diameter 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 2.5 2 2.3 41.5 3226 2766 0.727 1.2
3×35 2.5 2.5 2.4 45.1 4077 3439 0.524 0.868
3×50 2.5 2.5 2.5 47.6 4649 3785 0.387 0.641
3×70 2.5 2.5 2.6 51.7 5612 4364 0.268 0.443
3×95 2.5 2.5 2.7 55.8 6677 4946 0.193 0.32
3×120 2.5 2.5 2.9 59 7712 5523 0.153 0.253
3×150 2.5 2.5 3.0 62.6 8855 6149 0.124 0.206
3×185 2.5 2.5 3.1 66.5 10263 6855 0.0991 0.164
3×240 2.6 3.15 3.3 73.8 13236 8813 0.0754 0.125
3×300 2.8 3.15 3.5 80 15661 10117 0.0601 0.100
3×400 3.0 3.15 3.8 87.7 19064 11922 0.047 0.0778
3×500 3.2 3.15 4.0 96.6 23115 14049 0.0366 0.0605
3×630 3.2 3.15 4.3 105.6 28144 16372 0.0283 0.0469

Application and case display

FAQ

What is the purpose of a metallic shield in MV and HV cables?
What are the benefits of EPR material?
Armored vs. Unarmored Cables?
What temperature can high-temperature resistant cables reach, and what are their application scenarios?
What are the weight limits for different types of packages?
What are the weight limits for different types of packages?
The weight limit for a wooden drum or steel wooden is 5,000 kg, and for a steel drum, it is 10,000 kg.
What is the validity period for the offer of cable?
Typically, the offer is valid for 7 to 30 days, and the price will be adjusted according to the cost of raw materials and the exchange rate.
Armored vs. Unarmored Cables?
Armored cables are ideal for direct burial and laying underground, offering protection against environmental factors. Unarmored cables are unsuitable for burial or use in other challenging applications and installations.
What is the purpose of a metallic shield in MV and HV cables?
Medium and high voltage power cables, typically those in circuits exceeding 2kV, usually feature a shield layer made of copper or aluminum tape. Similar to their use in low voltage cables, metallic wires and tapes are employed to prevent electromagnetic interference. These shields effectively neutralize or significantly diminish the field currents surrounding the conductor or core. The capacitive and inductive charging currents induced under normal operating conditions are subsequently grounded by the metallic screen.
Flame Retardant Cables VS Fire Resistant Cables?
Both types of cables are crucial in enhancing the likelihood of escape and survival in the event of a fire and are often confused with one another. However, there is a fundamental distinction between flame retardant cables and fire resistant cables. Flame retardant cables are engineered to inhibit the spread of fire to adjacent areas. On the other hand, fire resistant cables are specifically designed to preserve circuit integrity and ensure functionality during a fire, under specified conditions, aiding both evacuees and firefighters.

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