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Flexible and torsion resistant cables for wind turbine

Flexible and torsion resistant cables for wind turbine

Product Description

Type

FDEH(-X),FDEHP(-X)FDLHEHR
Rated temperature

90℃

90℃
Rated voltage450/750V、0.6/1kV、1.8/3kV0.6/1kV、1.8/3kV
Reference standardGB/T 29631、Q/320481SS159Q/320481SS610
Number of cores1~361
ApplicationIt is applicable to the control system,power supply system and power transmission system used in the electric control cabinet of wind turbine,the cabin outside the cabinet,the internal part of the tower and the fixed laying part at the bottom of the tower.

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  • Flexible and torsion resistant cables for wind turbine
  • Flexible and torsion resistant cables for wind turbine
Product Detail
Construction diagram(FDEH(-X),FDEHP(-X))


image.png

Main technical properties(FDEH(-X),FDEHP(-X))


  1. The conductor shall be 1~400mm²class 5 bare copper or tinned flexible copper wire conforming to GB/T 3956.

  2. EPDM insulation.

  3. Chlorinated polyethylene sheath.

  4. Flame retardant in accordance with GB/T 18380.35、low temperature resistance-40℃ torsion 、 resistance.


Main technical data(FDEH(-X),FDEHP(-X))


型号

Type

标称截面

Nominal cross section

导体标称直径

Nominal

diameter of conductor

电缆外径

outside diameter of

cable


参考重量

Reference weight

30℃空气中

载流量(水平)

Current carrying

capacity at 30℃i

air(Horizontal)

Min.

Max

mm²

mm

mm

mm

kg/km

A

FDEH(-X)450/750V 0.6/1kV

1×1.5

1.6

5.7

7.1

57

1×2.5

2.1

6.3

7.9

74


1×4

2.7

7.2

9.0

101


1×6

3.3

7.9

9.8

130


1×10

4.6

9.5

11.9

216


1×16

5.6

10.8

13.4

289

1×25

7.1

12.7

15.8

412

182

1×35

8.3

14.3

17.9

539

226

1×50

10.1

16.5

20.6

749

275

1×70

11.6

18.6

23.3

970

353

1×95

13.6

20.8

26.0

1253

430

1×120

15.6

22.8

28.6

1550

500

1×150

17.1

25.2

31.4

1916

577

1×185

18.3

27.6

34.4

2272

661

1×240

21.6

30.6

38.3

2914

781

1×300

24.6

33.5

41.9

3558

902

1×400

27.6

37.4

46.8

4712

1085

2×1

1.3

7.7

10.0

100


2×1.5

1.6

8.5

11.0

129

26

2×2.5

2.1

10.2

13.1

185

36

2×4

2.7

11.8

15.1

253

49

2×6

3.3

13.1

16.8

329

63

2×10

4.6

17.7

22.6

654

86

2×16

5.6

20.2

25.7

854

115

2×25

7.1

24.3

30.7

1218

149

3×1

1.3

8.3

10.7

124

3×1.5

1.6

9.2

11.9

159

23

3×2.5

2.1

10.9

14.0

228

32

3×4

2.7

12.7

16.2

316

42

3×6

3.3

14.1

18.0

414

54

3×10

4.6

19.1

24.2

817

75

3×16

5.6

21.8

27.6

1079

100

3×25

7.1

26.1

33.0

1546

127

3×35

8.3

29.3

37.1

1989

158

3×50

10.1

34.1

42.9

2755

192

3×70

11.6

38.4

48.3

3532

246

3×95

13.6

43.3

54.0

4577

298

3×120

15.6

47.4

60.0

5627

346

3×150

17.1

52.0

66.0

6920

399

3×185

18.3

57.0

72.0

8206

456

3×240

21.6

65.0

82.0

10590

538

3×300

24.6

72.0

90.0

13118

621

3×4+1×2.5

2.7/2.1

14.0

17.9

346

42

3×6+1×4

3.3/2.7

15.7

20.0

465

54

3×10+1×6

4.6/3.3

20.9

26.5

885

75

3×16+1×10

5.6/4.6

23.5

29.6

1179

100

3×25+1×16

7.1/5.6

27.9

35.6

1646

127
FDEH(-X)1.8/3kV1×104.611.313.7271
1×16

5.6

12.6

15.2

349

.

1×25

7.1

14.3

17.4

474

182

1×35

8.3

15.9

19.5

608

226

1×50

10.1

17.7

21.8

808

275

1×70

11.6

19.8

24.5

1035

353

1×95

13.6

22.0

27.2

1326

430

1×120

15.6

24.0

29.8

1630

500

1×150

17.1

26.4

32.6

2003

577

1×185

18.3

28.4

35.2

2334

661

1×240

21.6

31.4

39.1

2984

781

1×300

24.6

33.9

42.3

3596

902

1×400

27.6

37.8

47.2

4755

1085

3×10

4.6

23.0

28.1

1041

75

3×16

5.6

25.7

31.5

1325

100

3×25

7.1

29.6

36.5

1800

127

3×35

8.3

32.8

40.6

2267

158

3×50

10.1

36.7

45.5

2994

192

3×70

11.6

41.0

50.9

3793

246

3×95

13.6

45.9

56.6

4875

298

3×12C

15.6

50.0

62.6

5953

346

3×150

17.1

54.6

68.6

7275

399

3×185

18.3

58.7

73.7

8460

456

3×240

21.6

66.7

83.7

10875

538

























































X is the tinned copper conductor;

P is the metal shield;

The upper and lower limits of the average outer diameter of shielded cables shall be 1 mm respectively on the basis of the average outer diameter of unshielded cables.


Correction factor when ambient temperature is different from 30 ℃(for ampacity of cables laid in air)

工作温度

(℃)

Working

temperature

环境温度(℃)

Ambient temperature

10

15

20

25

30

35

40

45

50

55

60

90

1.15

1.12

1.08

1.04

1.00

0.96

0.91

0.87

0.82

0.76

0.71


Construction diagram(FDLHEHR)


image.png

Main technical properties(FDLHEHR)


1.The conductor shall be made of 95-400mm²class 5 aluminum alloy conforming to GB/T3956.

2.EPDM insulation.

3.Chlorinated polyethylene sheath.

4.Flame retardant in accordance with GB/T 18380.35、low temperature resistance-40℃ torsion 、 resistance.


Main technical data(FDLHEHR)


型号

Type

标称截面

Nominal cross

section

导体标称直径

Nominal

diameter of

conductor

电缆外径

outside diameter of

cable

参考重量 Reference

weight

30℃空气中 载流量(水平)

Current carrying capacity at 30℃ in air(Horizontal)

Min.

Max.

mm

mm

mm

mm

kg/km

A

FDLHEHR 0.6/1kV

1×300

25.0

33.0

37.0

1645

708

1×400

28.0

37.0

40.0

2064

856

FDLHEHR 1.8/3kV

1×300

25.0

33.0

37.0

1645

708

1×400

28.0

37.0

40.0

2063

856

X is the tinned copper conductor;

P is the metal shield;

The upper and lower limits of the average outer diameter of shielded cables shall be 1 mm respectively on the basis of the average outer diameter of unshielded cables.


Correction factor when ambient temperature is different from 30 ℃(for ampacity of cables laid in air)

工作温度

(℃)

Working

temperature

环境温度(℃)

Ambient temperature

10

15

20

25

30

35

40

45

50

55

60

90

1.15

1.12

1.08

1.04

1.00

0.96

0.91

0.87

0.82

0.76

0.71







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