Power cable NYCY (with concentric copper conductor) 0.6/1 KV

 

Technical data:

- Power cable according to IEC 60502-1 , DIN VDE 0271 , ISIRI 3569

- Temperature range:

   flexing C°-5 to C°+50

   fixed installation C°-30 to C°+70

- Nominal voltage: U0/U=0.6/1 KV

-Test voltage a.c. ,50Hz : 4 KV

Cable structure:

- Cu / PVC / PVC / Cu / PVC

- Copper conductor class 1 or 2 acc. to IEC 60228

- Insulation PVC/A

- Cncentric conductor in irmer layer of round copper wires , outer layer with copper tape.

- Sheath  PVC/ST2 90°C

Application:

Power cables for energy supply are used for industry and distribution boards power stations and house connecting boxes. Overall, where increased electrical are required.These cables are installed in underground. in water, indoors and in cable ducts.

The concentric conductor (c) is allowed to use an neutral, protective or earthed conductor.

1.5 Cores:

Approx. weight

kg/km

Current capacity in air C°30

(A)

Max. resietance at C°20

(Ω/KM)

Overall diameter

mm

Sheath thickness

mm

Insulation thickness

mm

No.cores xNominal cross section

mm2

203 46.0 3.08 9.2 1.4 1.0 1*6+6
305 62.0 1.83 10.8 1.4 1.0 1*10+10
440 83.0 1.15 12.1 1.4 1.0 1*16+16
740 111.0 0.73 16.5 1.5 1.2 1*25+25

2.5 Cores:

Approx. weight

kg/km

Current capacity in air C°30

(A)

Max. resietance at C°20

(Ω/KM)

Overall diameter

mm

Sheath thickness

mm

Insulation thickness

mm

No.cores xNominal cross section

mm2

207 20 12.10 12.8 1.8 0.8 2*1.5+1.5
030 26 7.41 13.6 1.8 0.8 2*2.5+2.5
355 34 4.61 15.5 1.8 1.0 2*4+4
435 44 3.08 17.0 1.8 1.0 2*6+6
635 60 1.83 20.0 1.8 1.0 2*10+10
880 80 1.15 22.3 1.8 1.0 2*16+16

3.5 Cores:

Approx. weight

kg/km

Current capacity in air C°30

(A)

Max. resietance at C°20

(Ω/KM)

Overall diameter

mm

Sheath thickness

mm

Insulation thickness

mm

No.cores xNominal cross section

mm2

230 18.5 12.1 13.1 1.8 0.8 3*1.5+1.5
290 25.0 7.4 14.2 1.8 0.8 3*2.5+2.5
400 32.0 4.6 16.3 1.8 1.0 3*4+4
505 41.0 3.1 17.5 1.8 1.0 3*6+6
770 57.5 1.8 21.0 1.8 1.0 3*10+10
1050 75 1.15 23.5 1.8 1.0 3*16+16
1450 100 0.727/1.15 26.8 1.8 1.2 3*25+16
1615 100 0.727 27.5 1.8 1.2 3*25+25
1720 132 0.524/1.15 28.7 1.9 1.2 3*35+16
2060 132 0.524 30.2 1.9 1.2 3*35+35
2100 160 0.387/0.727 29.2 1.9 1.4 3*50+25
2300 160 0.387 30.0 1.9 1.4 3*50+50
2850 202 0.268/0.524 32.6 2.0 1.4 3*70+35
3200 202 0.268 34.0 2.0 1.4 3*70+70
3900 249 0.193/0.387 37.8 2.1 1.6 3*95+50
4290 249 0.193 38.4 2.1 1.6 3*95+95
4750 289 0.153/0.268 41.0 2.2 1.6 3*120+70
5250 289 0.153 41.2 2.2 1.6 3*120+120
5900 329 0.124/0.268 44.5 2.3 1.8 3*150+70
6600 329 0.124 45.0 2.3 1.8 3*150+150
7320 377 0.0991/0.193 49.0 2.4 2.0 3*185+95
9460 443 0.0754/0.153 55.0 2.6 2.2 3*240+120

4.5 Cores:

Approx. weight

kg/km

Current capacity in air C°30

(A)

Max. resietance at C°20

(Ω/KM)

Overall diameter

mm

Sheath thickness

mm

Insulation thickness

mm

No.cores xNominal cross section

mm2

262 18.5 12.1 14.0 1.8 0.8 4*1.5+1.5
340 25 7.41 15.1 1.8 0.8 4.25+2.5
470 33 4.61 17.1 1.8 1.0 4*4+4
590 41 3.08 18.6 1.8 1.0 4*6+6
890 57 1.83 22.0 1.8 1.0 4*10+10
1300 75 1.15 25.0 1.8 1.0 4*16+16

5.5 Cores:

Approx. weight

kg/km

Current capacity in air C°30

(A)

Max. resietance at C°20

(Ω/KM)

Overall diameter

mm

Sheath thickness

mm

Insulation thickness

mm

No.cores xNominal cross section

mm2

300 14.5 12.1 14.9 1.8 0.8 5*1.5+1.5
400 19.5 7.41 16.0 1.8 0.8 5*2.5+2.5
550 25.5 4.61 18.5 1.8 1.0 5*4*4
708 33 3.08 20.5 1.8 1.0 5*6+6
1000 45 1.83 23 1.8 1.0 5*10+10
1500 60 1.15 27 1.8 1.0 5*16+16

7.5 Cores:

Approx. weight

kg/km

Current capacity in air C°30

(A)

Max. resietance at C°20

(Ω/KM)

Overall diameter

mm

Sheath thickness

mm

Insulation thickness

mm

No.cores xNominal cross section

mm2

630 22 4.61 20 1.8 1.0 7*4+4
795 28.5 3.08 22 1.8 1.0 7*6+6

end faq