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WINDLINK® Al EPR/CPE 0.6/1 KV -40 +90°C

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WINDLINK® Al EPR/CPE 0.6/1 KV   -40 +90°C

IEC 60502-1

Normen
International  IEC 60228; IEC 60502-1
Beschreibung

Application

This aluminium rigid cable is specially designed for Wind Turbines and dedicated for fixed installation inside the tower .
 

The quality of materials used for core, insulation and sheathing make the cables both durable, and resistant to high temperatures. Nexans offers more than a decade of experience with wind energy.
Our expertise makes WINDLINK® cables highly recommended for wind turbines.

 

 

Main characteristics

  • Industrial cables resistant to high temperatures
  • Heavy duty
  • T°C on core : 90 °C in normal use – 250°C in short circuit
  • Water resistance : AD2 to AD6
  • Corrosive and polluting substances resistance : AF3
  • Impact resistance : AG2
  • Oil resistant ASTM/IRM 902 - Tribol 1710/320 - Mobil DTE 13
  • UV resistant
  • Ozone resistant
  • Flame retardant (IEC/EN 60332-1)

 

Design 

1. Conductor :
Rigid aluminium core class 2  (improved  for  bending )  IEC/EN 60 228
Optional PET separator on core

2. Insulation :
Special cross-linked rubber EPR 90°C for high temperature services ,zone  resistant
Optional PET tape on insulation

3. Sheath :
High mechanical performance
Special cross-linked rubber CPE
Oil, Ozone resistant.
Colour :black


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Eigenschaften
Konstruktionsmerkmale
Leitermaterial Aluminium/polyester tape  
Elektrische Eigenschaften
Nennspannung Uo/U 0.6/1 kV  
Mechanische Eigenschaften
Mechanische Festigkeit gegen Schläge Gut  
Reißfestigkeit 15N/mm2  
Anwendungsmerkmale
Max. Betriebstemperatur am Leiter 90°C  
Max. Kurzschlusstemperatur am Leiter 250°C  
Min. Betriebstemperatur -40°C  
Umgebungstemperatur bei Verlegung, Bereich -40 .. 50°C  
Temperaturbereich bei freier Bewegung -40 .. 50°C  
Betriebstemperatur -40 .. 90°C  
Temperaturbereich bei fester Verlegung -40 .. 50°C  
Ölbeständigkeit Good  
UV Beständigkeit Very good  
Watertightness AD2 to AD6  

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Parametrische Suche
Leiterquerschnitt  mm²
Aderanzahl  
Outer diameter acc Windturbines needs Min Max  mm
Ausführen
Zurücksetzen
Ihre Wahl   7/7
Alle Artikel wählen Nexans Ref. Leiter (mm²) Ader- zahl Outer diameter acc Windturbines needs Min Max (mm)
Make to order product 1 x 95 95 1 16.5 .. 18.9
Make to order product 1 x 120 120 1 17.9 .. 22.0
Make to order product 1 x 150 150 1 21.0 .. 24.0
Make to order product 1 x 185 185 1 23.5 .. 26.5
Make to order product 1 x 240 240 1 26.0 .. 29.5
Make to order product 1 x 300 300 1 28.5 .. 32.5
Make to order product 1 x 400 400 1 32.7 .. 36.7
Zu den Favoriten hinzufügen

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Complementary technical for Windlink® Aluminium

Usage characteristics:

Mechanical stress :

(on the whole cable, per mm² of a cross section of Aluminium core)

  • In normal use : 15 N/mm²

 

Mechanical characteristics:

 

Bending Radius

Static use possible  up to  6  x  External diameter.   

Electrical characteristics:

Permissible current rating :

  • Permanent temperature of operation on the core 90°C
  • Ambient temperature for indoor installation  30°C

 

Correction factors according for other ambient temperature : according to IEC 60364.5.523 table 52.D1

Ambient
temperature (°C)
10 15 20 25 30 35 40 45 50
factors  1.17 1.13 1.09 1.04 1 0.96 0.91 0.87 0.82

The Voltage drop has been determined with Cos φ= 0.8

 

Short circuit : constant K=91 Amps for 1 second, acc.to IEC 60949 ( short circuit temperature +250°C and conductor temperature +90°C)
  


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Windlink® Aluminium Other properties
Standard tests according to IEC 60502-1
UV resistant sheath black sheath  is UV resistant 
Oil resistant sheath good in oils, greases, gear box oil, etc
  • reference ASTM / IRM 902   grease and oils  
24h at 100°C
  • gear  box oils
72h at 40°C
  • hydraulic  oils  
72h at 40°C

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Verkaufs- und Lieferinformationen

Marking

WINDLINK® NEXANS 213 Al EPR/CPE 0.6/1 KV IEC 60502-1 –40 +90 °C
1 x (or G) cross area (mm²)
x = phase core
G = earth core
S = cross section (mm2)
Week + year manufacturing
meter marking

 

Insulated Cores identification

• 1 core = Black (phase)

• 1 core = G/Y (earth


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