NA2XSY Cable

NA2XSY Cable

  • NA2XSY Cable is a single-core medium-voltage power cable with a stranded aluminium conductor, XLPE insulation, copper wire screen and PVC outer sheath.
  • The designation is used for fixed medium-voltage distribution in transformer stations, switching substations, power plants, industrial networks, renewable-energy collection systems and utility cable routes. Common project voltage classes include 6/10 kV, 8.7/15 kV, 12/20 kV and 18/30 kV under IEC and VDE-oriented specifications.
  • RS supplies NA2XSY as a project cable configuration where aluminium conductor size, copper screen section, voltage class, sheath colour, test documents and export packing are matched to the cable schedule and destination market.
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Product Introduction

CONSTRUCTION

Conductor:

Class 2 stranded aluminium conductor, round compacted where specified

Insulation:

XLPE insulation with inner and outer semiconductive screens

Metallic Screen:

Copper wire screen with counter helix; screen section selected by fault-current requirement

Outer Sheath:

PVC outer sheath, commonly red for MV identification; colour and UV requirement follow project specification

CHARACTERISTICS

Voltage Classes:

6/10 kV, 8.7/15 kV, 12/20 kV and 18/30 kV project classes

Conductor Temperature:

XLPE medium-voltage designs commonly use 90°C maximum conductor temperature in normal service

Installation:

Fixed installation indoors, outdoors, in ducts and in ground routes with suitable mechanical and thermal design

STANDARDS:

Common references include IEC 60502-2, VDE 0276-620, IEC 60228 and IEC 60332-1-2. Standard reference is not a certification claim.

NA2XSY Cable Technical Data

Recommended Reference Data: NA2XSY is normally a single-core screened medium-voltage cable. The size format below is conductor cross-section / copper screen cross-section in mm2.

Ampacity values are reference values for one single-core circuit in air at 30°C or in ground at 20°C. Final project current rating depends on soil thermal resistivity, burial depth, spacing, grouping, sheath bonding, route temperature and local calculation method. Final RS manufacturing dimensions and test values follow the approved quotation datasheet.

NA2XSY 6/10 kV Recommended Data

Voltage class Cable size Aluminium conductor resistance at 20 C (ohm/km) Insulation thickness (mm) Sheath thickness (mm) Approx. OD (mm) Approx. weight (kg/km) Ampacity in air 30 C (A) Ampacity in ground 20 C (A)
6/10 kV 1 x 50/16 0.641 3.4 2.1 25 780 183 171
6/10 kV 1 x 70/16 0.443 3.4 2.1 27 870 228 208
6/10 kV 1 x 95/16 0.320 3.4 2.1 28 990 278 248
6/10 kV 1 x 120/16 0.253 3.4 2.1 30 1100 321 283
6/10 kV 1 x 150/25 0.206 3.4 2.1 31 1300 364 315
6/10 kV 1 x 185/25 0.164 3.4 2.1 33 1450 418 357
6/10 kV 1 x 240/25 0.125 3.4 2.1 35 1650 494 413
6/10 kV 1 x 400/35 0.0778 3.4 2.1 41 2350 660 535
6/10 kV 1 x 500/35 0.0605 3.4 2.1 44 2700 767 602

NA2XSY 12/20 kV Recommended Data

Voltage class Cable size Aluminium conductor resistance at 20 C (ohm/km) Insulation thickness (mm) Sheath thickness (mm) Approx. OD (mm) Approx. weight (kg/km) Ampacity in air 30 C (A) Ampacity in ground 20 C (A)
12/20 kV 1 x 50/16 0.641 5.5 2.1 29 970 185 172
12/20 kV 1 x 70/16 0.443 5.5 2.1 31 1100 231 210
12/20 kV 1 x 95/16 0.320 5.5 2.1 32 1200 280 251
12/20 kV 1 x 120/16 0.253 5.5 2.1 34 1350 323 285
12/20 kV 1 x 150/25 0.206 5.5 2.1 35 1500 366 319
12/20 kV 1 x 185/25 0.164 5.5 2.1 37 1700 420 361
12/20 kV 1 x 240/25 0.125 5.5 2.1 40 1900 496 417
12/20 kV 1 x 400/35 0.0778 5.5 2.1 45 2600 659 541
12/20 kV 1 x 500/35 0.0605 5.5 2.1 48 3000 766 609

NA2XSY 18/30 kV Recommended Data

Voltage class Cable size Aluminium conductor resistance at 20 C (ohm/km) Insulation thickness (mm) Sheath thickness (mm) Approx. OD (mm) Approx. weight (kg/km) Ampacity in air 30 C (A) Ampacity in ground 20 C (A)
18/30 kV 1 x 50/16 0.641 8.0 2.1 34 1250 187 174
18/30 kV 1 x 70/16 0.443 8.0 2.1 36 1350 232 213
18/30 kV 1 x 95/16 0.320 8.0 2.1 37 1500 282 254
18/30 kV 1 x 120/16 0.253 8.0 2.1 39 1600 325 289
18/30 kV 1 x 150/25 0.206 8.0 2.1 40 1850 367 322
18/30 kV 1 x 185/25 0.164 8.0 2.1 42 2000 421 364
18/30 kV 1 x 240/25 0.125 8.0 2.1 44 2250 496 422
18/30 kV 1 x 400/35 0.0778 8.0 2.1 50 3000 660 529
18/30 kV 1 x 500/35 0.0605 8.0 2.1 53 3450 764 616

NA2XSY Cable Construction

NA2XSY is built around a stranded aluminium conductor with an extruded conductor screen, XLPE insulation and an insulation screen applied as part of the medium-voltage insulation system. A copper wire screen and counter helix provide the metallic screen path, followed by a PVC outer sheath.

The single-core construction is important. Current rating, screen bonding, induced sheath voltage, bending radius and termination design are evaluated differently from three-core MV cable. Where a tender requires a three-core screened cable, N2XSEY or another three-core designation may be the better match.

The copper screen section, commonly shown as the second number in a size such as 1 x 240/25 mm2, is selected according to earth-fault current and protection design. It is not decorative and must match the fault-current requirement of the system.

Applications for NA2XSY Medium Voltage Cable

NA2XSY cable is used in medium-voltage distribution networks where a screened single-core cable with PVC sheath is accepted by the project specification. Common routes include transformer stations, switching stations, power plants, industrial feeders, renewable-energy collection networks and utility distribution circuits.

The cable can be installed indoors, outdoors, in ducts and in ground routes when the installation design accounts for mechanical protection, pulling tension, bending radius, route temperature and current rating. The PVC sheath gives a practical outer covering for many fixed installations, but route protection remains part of the cable system design.

For direct sunlight exposure, local standards and sheath performance requirements must be checked. For tunnels, public buildings or routes requiring low smoke and halogen-free performance, an LSZH medium-voltage cable can be a more suitable design than NA2XSY.

NA2XSY vs N2XSY, N2XS2Y and N2XSEY

N2XSY and NA2XSY share the same basic screened MV cable logic, but the conductor material is different. N2XSY uses copper; NA2XSY uses aluminium. Copper gives a smaller conductor size for the same resistance, while aluminium can reduce conductor cost and cable weight where larger cross-sections and compatible terminations are acceptable.

NA2XSY and N2XS2Y differ mainly in sheath material. NA2XSY uses PVC sheath, while N2XS2Y uses PE sheath. PE sheath can be preferred for some underground routes because of moisture and abrasion resistance, while PVC may be selected where flame behaviour, handling or project convention points to PVC.

N2XSEY is commonly associated with three-core medium-voltage construction. It should not be treated as the same product as single-core NA2XSY. The correct model depends on circuit design, installation route, magnetic effects, screen bonding method and termination arrangement.

Model Main distinction Typical page role
N2XSY Copper conductor, XLPE insulation, copper wire screen, PVC sheath Copper companion page
NA2XSY Aluminium conductor, XLPE insulation, copper wire screen, PVC sheath This page
N2XS2Y Copper conductor version with PE sheath Underground-route comparison
N2XSEY Three-core screened MV construction Separate three-core intent

Testing, Documents and Export Packing

NA2XSY production documentation can include the approved datasheet, conductor resistance checks, voltage test records, partial-discharge test records, dimensional inspection, drum schedule, packing list and product photos. Type tests, flame-test evidence or third-party inspection are added only when required by the project and available for the exact construction.

Export packing is normally planned by cable weight, drum length, maximum drum diameter, route handling and container loading. Medium-voltage single-core cable can become heavy at large cross-sections, so drum length is part of the technical and logistics review, not only a shipping preference.

For quotation, RS needs the model designation, voltage class, conductor size, copper screen section, installation route, standard, quantity, preferred drum length, destination country and required documents. The information is used to confirm the cable configuration and issue a project-specific offer.

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