Page 5 - Cables for Wind Turbines
P. 5
i!I), HI·TECH (800) 877-8842 I (303) 880-5159 www_hltechcontrols_com
~ CONTROLS, INC. Click or Call for a Quotel
-40° +90° 1.. = -
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HELUWIND@ WK 137-Torsion FT4 UV-resistant.suitablefor
offshor@applications, UUCSA-Style 10553 / 20234, single/multicare. O.6/1kV. gOoe (80°C in accordance to UL)
Technical Data Cable Structure Properties
• Temperature range • Special bare copper stranded wires in • Halogen-free
0
Flexing _400( to +90 ( accordance to DIN VDE 0295 • Global applications
Fixed installation in accordance to • Special core insulation • Extremely abrasion-resistant
0
VDE _400( to + 90 ( • Core colours JZ - black with • Extremely flame-retardant
Fixed installation in accordance to numbering + gn-ye • Torsion-tested
0
UL +80 ( Multi-core version: stranded cores • Suitable for offshore applications
Nominal voltage: cabled • Extremely oil-resistant
in accordance to VDE UcIU 0.6/1 k\J, • Special SSH sheath compound • UV-resistant
in accordance to UL 1000 V low-adhesion Multi-climatic use
also suitable for 1500 V DC • Sheath colour - black Designed for COl application
• Test voltage 50 Hz: Easy to pre-assemble
3000 V
• Minimum bending radius: • Tests:
Fire: FT4 + IEC 60332-3·24
lOx cable diameter
Halogen-free lEe 60754-1
(4 x for fixed installation)
• Torsion application: Smoke density IEC 61034·1 + 2
OIL RES II
to +/-150° per 1 m
wnc approval in preparation
• Approvals:
UL style 10553 single-core
• Benefits WK 137-T FT4
UL style 20234 multi-core
over H07BN4·F:
cRUus
Fire behaviour in accordance with
IE( 60332-3-24 and FT4.
increased abrasion-resistance
Application
The HElUWIND· WK 137-Torsion FT4 cable type was designed specifically for global use in wind turbine.
We supply the leading wind turbine manufacturers with our cables.
(E = The product conforms to the EG Low·Voltage Directive 2006/95/EG.
WK 137-Torsion FT4 (JZ) WK 137-Torsion FT4 (JZ)
Pilrt No. Number AWG f Outer 0 Cop. Welghl Weight Part No. Number AWG / OUler 0 Cop. Weight Weight
of (ores" MCM appro~ . '''''m ilPpro •. 01 (Ores. MCM ilppro •• '''''m ilppro •.
croS$-$K1:ion mm ' ""m cross-$K1:ion mm ' ""m
mm' mm'
705741 3GO.75 >9 .. , 22 n 70S7S4 '06 m
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14,6
705742 SGO,75 >9 ,., 36 70572S '06 " '" m '" ".
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705743 7GO,75 >9 '" 705729 " ".
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705744 12GO,75 >9 11.8 " 22' 705755 '06 " '" .... '" ".
19.6
705745 18GO.75 >9 13,9 '30 '" 705730 4Gl0 " • 17.4 ...
705719 'G' '.' 29 92 705756 50" • , 20.1 '" ."
705746 5G' " 90 705757 4G16 , 60S " ..
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705747 'G' " 10,5 " '" 705731 5G16 , '"
25.S
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705748 12Gl " 13,2 »' '" 705732 4G25 , 26,2 '"
>9 ..
705749 lSGI " lS.1 m '" 705758 5G25 , 2S2 )200 "'"
705720 3Gl.5 " '.' '''' 705759 4G35 , 2>00
,n
705721 4Gl.5 " 9.' " '" , ... 705733 5G35 '" "., "" m.
58
220
705722 SGl.5 " 9,9 n 705714 (4):l>il,75) >9 "" ....
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705723 7Gl,S " 11.5 ". 705735 (ISGO,75) >9 14.4 '"
m
705724 12Gl.S " 14,3 '" 705736 (4x\2>il.75)) >9 "5 3S3
705725 18Gl,5 " 16,S '''' S25 705737 (4)((2d)) '" on
136
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705726 3G2.5 " '''' " '"
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705727 5G2,S " '" '" 228
11,1
705750 7G2.S " 14,4
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70575 1 ,0< " 10,S '" '''' m
705752 50< " 13,6 >9, no
705753 ,0< " 15,9 269 530
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