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N2XCH 0.6/1kV Low Voltage Power Cable
N2XCH 0.6/1kV Low Voltage Power Cable

N2XY 0.6/1kV Low Voltage Power Cable

N2XY 0.6/1kV is a low-voltage power cable built to IEC/EN 60228 standards, ideal for fixed installations in dry or damp environments, including indoors, outdoors, and in concrete (excluding vibration zones), without the need for additional mechanical protection. Constructed with high-purity copper conductors, thermosetting XLPE insulation, and tough PVC jacket, it meets stringent IEC 60502-1 requirements. This cable provides low dielectric losses, excellent short-circuit tolerance, and strong resistance to environmental factors like water and abrasion. Perfect for fixed installations in wet or dry locations, including direct burial without armour when mechanical protection is not critical. Enhanced bending radius and flame-retardant properties facilitate safe, easy handling.
Voltage Rating(Uo/U) 0.6/1kV
Temperature Rating During installation: -5°C to +50ºC; Fixed Installation: -20°C to +90°C
Minimum Bending Radius Fixed: 12 x overall diameter
Construction
Technical Specifications
Quality Control
Application

Construction

N2XY 0.6/1kV Low Voltage Power Cable Construction
N2XY 0.6/1kV Low Voltage Power Cable

Conductor

RE: Class 1 solid copper conductor
RM: Class 2 stranded circular or circular compacted
SM: Class 2 stranded sectoral shaped

Insulation

XLPE (Cross-Linked Polyethylene)

Bedding

PVC (Polyvinyl Chloride)

Sheath

PVC(Polyvinyl Chloride)

Sheath Colour

Black

Manufacturer Standard

IEC 60502-1, VDE 0276-603, IEC/EN 60228

Flame retardant

IEC/EN 60332-1-2

Core Identification

3 core: Green/Yellow/Brown /Blue
4 core: Green/Yellow/Brown / Black/ Grey
5 core: Green/Yellow /Brown /Blue/ Black/ Grey

Application

N2XY cable is suitable for fixed installation in low voltage power distribution system and can be installed indoors, in tunnels, cable trays and other places. It is commonly used in commercial buildings, industrial facilities and infrastructure projects.

Technical Specifications

N2XY 0.6/1kV Low Voltage Power Cable
N2XY Low Voltage Power Cable Technical Specifications

No of

Cores

Cross-Section

Area 

Nominal Thickness

of Insulation 

Nominal Thickness

of Sheath 

Nominal Overall

Diameter 

Approximate

Weight 

  mm2 mm mm mm kg/km
1 16 0.7 1.8 9.8 216
1 25 0.9 1.8 11.5 318
1 35 0.9 1.8 12.6 415
1 50 1 1.8 14.1 543
1 70 1.1 1.8 15.6 746
1 95 1.1 1.8 17.6 1000
1 120 1.2 1.8 19.2 1239
1 150 1.4 1.8 21.2 1515
1 185 1.6 1.8 23.1 1872
1 240 1.7 1.8 25.8 2403
1 300 1.8 1.8 27.8 2974
1 400 2 1.9 31.1 3834
1 500 2.2 2 34.9 4892
1 630 2.8 2.8 46.6 6544
2 1.5 0.7 1.8 10.1 145
2 2.5 0.7 1.8 10.9 179
2 4 0.7 1.8 11.8 226
2 6 0.7 1.8 12.8 284
2 6 0.7 1.8 13.1 295
2 10 0.7 1.8 15 416
2 16 0.7 1.8 17 581
2 25 0.9 1.8 20.4 859
2 35 0.9 1.8 22.5 1109
3 1.5 0.7 1.8 10.5 162
3 2.5 0.7 1.8 11.4 205
3 4 0.7 1.8 12.4 265
3 6 0.7 1.8 13.4 338
3 10 0.7 1.8 15.8 505
3 16 0.7 1.8 18 719
3 25 0.9 1.8 21.6 1072
3 35 0.9 1.8 23.9 1403
3 50 1 1.8 23.8 1581
3 16/10 0.7 1.8 19.8 875.5
3 25/16 0.9/0.7 1.8 22.4 1223
3 35/16 0.9/0.7 1.8 24.3 1557
3 50/25 1/0.9 1.9 26.9 1863
3 70/35 1.1/0.9 2 30 2594
3 95/50 1.1/1 2.2 33.8 3505
3 120/70 1.2/1.1 2.3 37 4440
3 150/70 1.4/1.1 2.4 41.6 5333
3 185/95 1.6/1.1 2.6 45.8 6701
3 240/120 1.7/1.2 2.8 51.6 8674
3 300/150 1.8/1.4 3 67.2 10624
4 1.5 0.7 1.8 11.3 188
4 2.5 0.7 1.8 12.2 240
4 4 0.7 1.8 13.3 314
4 6 0.7 1.8 14.5 408
4 10 0.7 1.8 17.1 615
4 16 0.7 1.8 19.6 885
4 25 0.9 1.8 23.7 1330
4 35 0.9 1.8 26.2 1758
4 50 1 2 27.1 2082
4 70 1.1 2.1 31.4 2937
4 95 1.1 2.2 35 3955
4 120 1.2 2.4 39.3 4979
4 150 1.4 2.6 43.6 6129
4 185 1.6 2.7 48 7591
4 240 1.7 2.9 53.9 9875
4 300 1.8 2.6 68.9 15124
5 1.5 0.7 1.8 12.1 218
5 2.5 0.7 1.8 13.1 281
5 4 0.7 1.8 14.3 372
5 6 0.7 1.8 15.6 486
5 10 0.7 1.8 18.6 740
5 16 0.7 1.8 21.3 1071
5 25 0.9 1.8 25.9 1619
5 35 0.9 1.8 28.8 2138
5 50 1 2.1 29.4 2578
5 70 1.1 2.2 33.7 3616
5 95 1.1 2.4 38.6 4933
5 120 1.2 2.5 42.6 6153
5 150 1.4 2.7 47.7 7587
5 185 1.6 2.9 52.8 9454
5 240 1.7 3.1 58.7 12242
7 1.5 0.7 1.8 12.9 260
7 2.5 0.7 1.8 14 342
7 4 0.7 1.8 15.4 461
10 1.5 0.7 1.8 15.6 357
10 2.5 0.7 1.8 17.2 475
10 4 0.7 1.8 19 646
12 1.5 0.7 1.8 16.1 394
12 2.5 0.7 1.8 17.6 528
14 1.5 0.7 1.8 16.8 436
14 2.5 0.7 1.8 18.5 592
16 4 0.7 1.8 23 971
19 1.5 0.7 1.8 18.4 543
19 2.5 0.7 1.8 20.3 746
24 1.5 0.7 1.8 21.2 675
24 2.5 0.7 1.8 23.4 931
30 1.5 0.7 1.8 22.3 788
30 2.5 0.7 1.8 26.3 1164
40 1.5 0.7 1.8 24.6 995
40 2.5 0.7 1.9 27.5 1416

Quality Control

N2XY 0.6/1kV Low Voltage Power Cable
N2XYLow Voltage Power Cable  Raw Material Test

Raw Material Test

For the N2XY 0.6/1kV Low Voltage Power Cable, raw material testing commences with copper ingot/rod certification for oxygen-free grade and elongation. XLPE granules are analyzed for crosslinking agent presence, contamination screening, and thermal stability via TGA and hot set pre-trials. PVC compounds face hardness, tensile strength after aging, and migration risk assessments. Semiconducting materials are verified for resistivity. The structured process: receipt documentation review, random sampling, physical/mechanical testing (yield, elongation), chemical composition confirmation using spectroscopy, accelerated aging simulation, and material release decision. This thorough evaluation secures defect-free inputs, providing the foundation for the N2XY 0.6/1kV Low Voltage Power Cable's electrical stability, insulation quality, and environmental resistance.

N2XYLow Voltage Power Cable  Process inspection

Process inspection

Process inspection in N2XY 0.6/1kV Low Voltage Power Cable manufacturing involves continuous monitoring. Copper drawing and stranding check diameter tolerance and surface defects. Insulation extrusion monitors bonding and eccentricity with capacitance gauges. Sheath application includes online high-frequency spark testing and thickness uniformity. Multi-core laying verifies core positioning and filler distribution. Color coding and printing durability are assessed. Critical steps: pre-production compound drying verification, line speed/temperature control, real-time dimension scanning, hot set sampling for crosslinking uniformity, and immediate corrective actions for defects. This multi-point quality assurance ensures the N2XY 0.6/1kV Low Voltage Power Cable maintains precise construction, reliable insulation, and full IEC compliance throughout production.

N2XYLow Voltage Power Cable Finished Product

Finished Product

Completed N2XY 0.6/1kV Low Voltage Power Cable is subjected to strict acceptance tests. Mandatory routines: DC conductor resistance, high-potential AC test in water if required, insulation resistance, and thickness checks. Mechanical tests include elongation at break, bending, and impact resistance. Heat aging, shrinkage, and ozone exposure assessments follow. The sequential process: reel sampling, test setup with conditioning, gradual parameter application (voltage/temperature), timed hold phase, recovery inspection, re-measurement of properties, and documentation. Additional verifications cover flame propagation control and marking permanence. Passing all ensures the N2XY 0.6/1kV Low Voltage Power Cable's durability, safety, and efficiency for low-voltage fixed installations.

Application

Ideal for low-voltage power distribution in factories, office buildings, shopping centers, and residential areas. Commonly installed underground in ducts, on trays, or directly buried where no additional mechanical protection is needed for reliable energy supply.

Technical Advantages

● 30+ years of manufacturing experience
● ISO and UL certified production
● Customized cable and transformer solutions

Product Packaging

Wires and Cables packaging (1)
Wires and Cables packaging (1)
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FAQ From Customers

What are the advantages of power cables and overhead lines?
(1) Reliable operation, because it is installed in a hidden place such as underground, it is less damaged by external forces, has less chance of failure, and the power supply is safe, and it will not cause harm to people;
(2) The maintenance workload is small and frequent inspections are not required;
(3) No need to erect towers;
(4) Help improve power factor.
Which aspects should be considered when choosing the cross section of a power cable?
(1) The long-term allowable working current of the cable;
(2) Thermal stability once short circuited;
(3) The voltage drop on the line cannot exceed the allowable working range.
What are the measures for cable fire prevention?
(1) Use flame-retardant cables;
(2) Use fireproof cable tray;
(3) Use fireproof paint;
(4) Fire partition walls and fire baffles are installed at cable tunnels, mezzanine exits, etc.;
(5) Overhead cables should avoid oil pipelines and explosion-proof doors, otherwise local pipes or heat insulation and fire prevention measures should be taken.
What should be paid attention to during the transportation and handling of cables?
(1) During transportation, loading and unloading, cables and cable reels should not be damaged. It is strictly forbidden to push the cable reels directly from the vehicle. Generally, cables should not be transported and stored flat.
(2) Before transporting or rolling the cable reel, ensure that the cable reel is firm, the cable is wound tightly, the oil pipe between the oil-filled cable and the pressure oil tank should be fixed without damage, the pressure oil tank should be firm, and the pressure indication should meet the requirements.
What inspections should be carried out for the acceptance of cable lines?
(1) The cable specifications should meet the regulations, the arrangement should be neat, no damage, and the signs should be complete, correct and clear;
(2) The fixed bending radius of the cable, the related distance and the wiring of the metal sheath of the single-core power cable should meet the requirements;
(3) The cable terminal and the middle head should not leak oil, and the installation should be firm. The oil pressure of the oil-filled cable and the meter setting should meet the requirements;
(4) Good grounding;
(5) The color of the cable terminal is correct, and the metal parts such as the bracket are completely painted;
(6) There should be no debris in the cable trench, tunnel, and bridge, and the cover should be complete.

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