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NFA2X/NFA2X-T

  • According to IEC and GB Standard
  • Place of Origin: Henan, China
  • In Stock
  • HS Code: 8544492100

5

The NFA2X is a self-supporting aerial bundled cable (ABC) designed for low-voltageoverhead power distribution. Structurally, it consists of stranded aluminum phase conductors and a neutral conductor made from an aluminum alloy; each conductor is individually insulated with Cross-linked Polyethylene (XLPE) and then twisted together to form a cohesive bundle. NFA2X-T type may utilize an ACSR conductor as the neutral messenger to achieve maximum tensile strength for long spans. This cable is applied in metropolitan, suburban, and rural networks for power distribution, public lighting, and house connections, and is typically installed on pillars, consoles, and building facades.

Product features

1. Economy-good electrical performance, cheaper than copper wire.
2. Flexibility-easy installation and use of applications such as switchboards.
Safety-fully insulated conductors significantly reduce the risk of short circuits due to environmental contact, minimize fire hazards and improve public safety.
4. Durable-the insulation is resistant to degradation by solar radiation, ozone, moisture and air pollutants
5. Basic design to BS 7870 / TNB Specification(IEC 60502) / HD 626 S1 / NFC 33-209 / AS/NZS 3560-1 standards

Cable Construction 

Phase Conductor
Class 2 stranded Aluminium
Neutral Conductor
Class 2 stranded Aluminium
Insulation
XLPE (Cross-linked polyethylene) compound TIX 2
Insulation Colour
Black

 

NFA2X Cable Specification

  • Nominal voltage: 0.6/1 kV
  • Test voltage: 4KV
  • Max short circuit temperature: 250°C (Short circuit duration max. 5 s)
  • Operating Temperature Range: −40°C to +80°C
  • Min. Installation Temperature: −5°C
  • Max conductor operating temperature: 90℃
  • Minimum bending radius: 12x cable diameter

NFA2X Cable Parameter

Number of cores
and cross-section
Nominal insulation
thickness
Outer diameter
(approx.)
Weight
(approx.)
Metal number Al Maximum resistance of
conductor
mm2 mm mm kg/km kg/km Ohm/km
2×16 1.2 15 134 93 1.910
2×25 1.3 17 198 145 1.200
2×35 1.3 20 271 203 0.868
3×16 1.2 16 202 139 1.910
3×25 1.3 19 298 218 1.200
4×16 1.2 18 271 186 1.910
4×25 1.3 21 399 290 1.200
4×35 1.3 24 545 406 0.868
4×50 1.5 28 754 580 0.641
4×70 1.5 32 981 812 0.443
4×95 1.7 37 1334 1102 0.320
4×120 1.7 40 1633 1392 0.256
3×70+1×16 1.5/1.2 30 804 655 0.443
3×95+1×25 1.7/1.3 35 1101 900 0.320
3×70+2×16 1.5/1.2 30 874 702 0.443
3×95+2×16 1.7/1.2 35 1138 920 0.320
4×25+1×25 1.3 21 500 363 1.200
4×35+1×25 1.3 24 646 479 0.868
4×35+1×35 1.3 24 683 508 0.868
4×50+1×16 1.5/1.2 28 823 626 0.641
4×50+1×25 1.5/1.3 28 855 653 0.641
4×50+1×35 1.5/1.3 28 892 682 0.641
4×70+1×16 1.5/1.2 32 1051 858 0.443
4×70+1×25 1.5/1.3 32 1083 885 0.443
4×70+1×35 1.5/1.3 32 1119 914 0.443
4×95+1×16 1.7/1.2 37 1403 1148 0.320
4×95+1×25 1.7/1.3 37 1435 1175 0.320
4×95+1×35 1.7/1.3 37 1471 1204 0.320
4×120+1×16 1.7/1.2 40 1703 1438 0.253
4×120+1×25 1.7/1.3 40 1735 1465 0.253
4×120+1×35 1.7/1.3 40 1771 1494 0.253
4×35+2×25 1.3 24 748 551 0.868
4×50+2×25 1.5/1.3 28 957 725 0.641
4×50+2×35 1.5/1.3 28 1030 783 0.641
4×70+2×25 1.5/1.3 32 1185 957 0.443
4×70+2×35 1.5/1.3 32 1258 1017 0.443
4×95+2×25 1.7/1.3 37 1537 1247 0.320
4×95+2×35 1.7/1.3 37 1610 1305 0.320

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