NPT 0,6/1 kV AWG/kcmil

Products

NPT 0,6/1 kV 3x8 AWG

Nexans ref. P00010922-4

  • Conductor diameter: 3.9 mm
  • Diameter over Sheath: 15.7 mm
  • Approximate weight: 457 kg/km

 

NPT 0,6/1 kV 3x6 AWG

Nexans ref. P00001343-5

  • Packaging: Cut to length (m)
  • Conductor diameter: 4.9 mm
  • Diameter over Sheath: 17.9 mm
  • Approximate weight: 646 kg/km

 

NPT 0,6/1 kV 3x4 AWG

Nexans ref. P00001342-4

  • Packaging: Cut to length (m)
  • Conductor diameter: 6.2 mm
  • Diameter over Sheath: 21.6 mm
  • Approximate weight: 981 kg/km

 

NPT 0,6/1 kV 3x2 AWG

Nexans ref. P00001341-5

  • Packaging: Cut to length (m)
  • Conductor diameter: 7.9 mm
  • Diameter over Sheath: 25.4 mm
  • Approximate weight: 1459 kg/km

 

NPT 0,6/1 kV 4x2 AWG

Nexans ref. P00026814-1

  • Conductor diameter: 7.9 mm
  • Diameter over Sheath: 28.3 mm
  • Approximate weight: 1818 kg/km

 

NPT 0,6/1 kV 4x2/0 AWG

Nexans ref. P00001349-3

  • Conductor diameter: 11.1 mm
  • Diameter over Sheath: 37.9 mm
  • Approximate weight: 3408 kg/km

 

Description

Description

Application

In apparatus or equipment subject to movement, winding or vibrations and in all type of mobile installations.

STANDARDS

PRODUCT

NTP-IEC 60228; NTP-IEC 60502-1; IEC 60228; IEC 60502-1

TEST

IEC 60332-1-2; UL 2556; IEC 60811-401; IEC 60811-402; IEC 60811-501; IEC 60811-504; 
IEC 60811-505; IEC 60811-506; IEC 60811-508; IEC 60811-509 

CONSTRUCTION

1. Conductor: Flexible soft copper, class 5.

2. Insulation: Compound polyvinyl chloride PVC.

3. Filler: Flexible compound polyvinyl chloride PVC.

4. Outer sheath: Flexible compound polyvinyl chloride PVC.

MAIN CHARACTERISTICS

Great flexibility, compact termination, resistance to abrasion and moisture, adequate resistance to oils. Flame retardant.

GAUGE

From 8 AWG up to 2/0 AWG.

MARKING

INDECO BY NEXANS NPT 0,6/1 kV - (Nb Cores x Gauge) - FB - Year -Sequential length.

PACKING

Non returnable wooden reels.

COLOUR

Insulation: See core identification.

Outer sheath: Black.

PRODUCT STANDARDS

NTP-IEC 60228: Conductors of insulated cables.

NTP-IEC 60502-1: Power cables with extruded insulation and their accessories for rated voltages from 1 kV and 3 kV.

IEC 60228: Conductors of insulated cables.

IEC 60502-1: Power cables with extruded insulation and their accessories for rated voltages from 1 kV and 3 kV.

TESTING STANDARDS

IEC 60332-1-2: Test for vertical flame propagation for a single insulated wire or cable - Procedure for 1 kW pre-mixed flame.

UL 2556: Wire and Cable Test Methods. Section 9.3: FT1 (Vertical-Specimen) Flame Test.

IEC 60811-401: Thermal ageing methods - Ageing in an air oven.

IEC 60811-402: Water absorption test.

IEC 60811-501: Test for determining the mechanical properties of insulating and sheating.

IEC 60811-504: Bending test at low temperature for insulation and covers.

IEC 60811-505: Low temperature elongation test for insulations and covers.

IEC 60811-506: Impact test at low temperature for insulations and covers.

IEC 60811-508: High temperature pressure tests for insulations and covers.

IEC 60811-509: Tests of resistance to cracking of the insulations and covers (thermal shock).

Core Identification

Calculation of Current Condition NPT

CALCULATION OF CURRENT CONDITION

Current capacity where the fourth (4th) conductor is a neutral of a balanced 3 phase of a 4 wire system.

Maximum conductor temperature : 80°C.
Ambient air temperature : 30°C.

Characteristics

Characteristics

Construction characteristics

Construction characteristics

Conductor material
Soft copper
Conductor flexibility
Flexible class 5
Insulating material
PVC
Outer sheath
PVC Flexible
Sheath colour
Black
Lead free
Yes

Electrical characteristics

Electrical characteristics

Rated Voltage Uo/U (Um)
0.6/ 1 (1.2) kV
Dielectric strength
3.5 kV
Time of application Dielectric strength core to screen AC
5 min.

Mechanical characteristics

Mechanical characteristics

Cable flexibility
Excellent

Usage characteristics

Usage characteristics

Flame retardant
IEC 60332-1-2; FT1
Oil resistance
Good
Maximum operating temperature
80 °C
Overload maximum core temperature
100 °C
Short-circuit max. conductor temperature
160 °C

Resources

Resources

Documentation

xlsx — 0 B

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