Cable OPGW 12 cores

Cable OPGW

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Cable OPGW de 12 cores

What is OPGW Cable? 12 cores?

Cable OPGW de 12 cores (Optical Ground Wire) It is designed to fully adapt to the most common needs of power lines. It consists of a central optical tube wire surrounded by one or two layers of aluminum-clad steel wires. (ACS) or a mixture of ACS and aluminum wires, thus forming a strong and efficient cable for data transmission and grounding of power lines.

The 12 cores within the OPGW cable provide multiple channels for data transmission, allowing for increased bandwidth and redundancy in communication networks. This makes them suitable for applications such as remote monitoring, control systems, and telecommunication services along power transmission routes.

OPGW Cable Standard 12 cores

IEC60794-1-2-F2 Temperature Cycles
Tensile strength IEC60794-1-2-E1A
Aplastar IEC60794-1-2-E3
Impacto IEC60794-1-2-E4
Doblado repetido IEC60794-1-2-E6
Torque IEC60794-1-2-E7
IEC60794-1-2-E10 Twist
Curva de cable IEC60794-1-2-E11
Cold curve IEC60794-1-2-E11

Technical data of OPGW Cable 12 cores

Key name

Structure (No.*Day./AS)n*mm/AS

Area mm2

Diameter

linear mass

Classified

fortaleza

DC

endurance

short current capacity

center

Outer layer

AS

Total

mm

Kg/km

KN

Oh/km

KA2S

OPGW-24B1-42[54;8.4]

1×3.0/24B1

6×3.0/20AS

42.41

42

9

309

54

2.03

8.4

OPGW-24B1-42[43.5;10.6]

6×3.0/27AS

42.41

42

9

281

43.5

1.53

10.6

OPGW-24B1-42[35.5;11.5]

6×3.0/30AS

42.41

42

9

268

35.5

1.37

11.5

OPGW-30B1-48[61.4;10.9]

1×3.2/30B1

6×3.2/20AS

48.25

48

9.6

348

61.4

1.78

10.9

OPGW-30B1-48[49.5;13.7]

6×3.2/27AS

48.25

48

9.6

315

49.5

1.34

13.7

OPGW-30B1-48[40.3;14.9]

6×3.0/30AS

48.25

48

9.6

3.1

40.3

1.21

14.9

OPGW-30B1-51[63.9;12.3]

1×3.3/30B1

6×3.3/20AS

51.32

51

9.9

368

63.9

1.68

12.3

OPGW-30B1-51[52.7;15.5]

6×3.3/27AS

51.32

51

9.9

333

52.7

1.26

15.5

OPGW-30B1-51[42.9;16.8]

6×3.3/30AS

51.32

51

9.9

318

42.9

1.14

16.8

OPGW-30B1-51[33.2;20.8]

6×3.3/40AS

51.32

51

9.9

268

33.2

0.85

20.8

OPGW-36B1-54[67.8;13.9]

1×3.4/36B1

6×3.4/20AS

54.48

54

10.2

389

67.8

1.58

13.9

OPGW-36B1-54[55.9;17.5]

6×3.4/27AS

54.48

54

10.2

352

55.9

1.19

17.5

OPGW-36B1-54[45.5;19]

6×3.4/30AS

54.48

54

10.2

336

45.5

1.07

19

OPGW-36B1-54[35.2;23.4]

6×3.4/40AS

54.48

54

10.2

283

35.2

0.8

23.4

OPGW-40B1-58[69.6;15.6]

1×3.5/40B1

6×3.5/20AS

57.73

58

10.5

410

69.6

1.49

15.6

OPGW-40B1-58[59.2;19.6]

6×3.5/27AS

57.73

58

10.5

371

59.2

1.12

19.6

OPGW-40B1-58[48.3;21.3]

6×3.5/30AS

57.73

58

10.5

354

48.3

1.01

21.3

OPGW-40B1-58[37.3;26.3]

6×3.5/40AS

57.73

58

10.5

298

37.3

0.76

26.3

OPGW-48B1-61[73.7;17.5]

1×3.6/48B1

6×3.6/20AS

61.07

61

10.8

432

73.7

1.41

17.5

OPGW-48B1-61[62.7;22]

6×3.6/27AS

61.07

61

10.8

391

62.7

1.06

22

OPGW-48B1-61[51.1;23.8]

6×3.6/30AS

61.07

61

10.8

373

51.1

0.95

23.8

OPGW-48B1-61[39.5;29.5]

6×3.6/40AS

61.07

61

10.8

313

39.5

0.72

29.5

OPGW-50B1-65[76.6;19.5]

1×3.7/50B1

6×3.7/20AS

64.51

65

11.1

455

76.6

1.33

19.5

OPGW-50B1-65[66.2;24.5]

6×3.7/27AS

64.51

65

11.1

411

66.2

1

24.5

OPGW-50B1-65[53.9;26.6]

6×3.7/30AS

64.51

65

11.1

392

53.9

0.9

26.6

OPGW-50B1-65[41.7;32.9]

6×3.7/40AS

64.51

65

11.1

329

41.7

0.68

32.9

OPGW-54B1-68[80.8;21.7]

1×3.8/54B1

6×3.8/20AS

68.05

68

11.4

478

80.8

1.26

21.7

OPGW-54B1-68[69.8;27.3]

6×3.8/27AS

68.05

68

11.4

432

69.8

.0.95

27.3

OPGW-54B1-68[56.9;29.6]

6×3.8/30AS

68.05

68

11.4

412

56.9

0.86

29.6

OPGW-54B1-68[44;36.6]

6×3.8/40AS

68.05

68

11.4

346

44

0.64

36.6

OPGW-60B1-75[86.7;26.6]

1×4.0/60B1

6×4.0/20AS

75.4

75

12

527

86.7

1.14

26.6

OPGW-60B1-75[77.4;33.5]

6×4.0/27AS

75.4

75

12

476

77.4

0.86

33.5

OPGW-60B1-75[63;36.3]

6×4.0/30AS

75.4

75

12

453

63

0.77

36.3

OPGW-60B1-75[48.7;44.9]

6×4.0/40AS

75.4

75

12

380

48.7

0.58

44.9

OPGW Cable Features

Cable diameter is small, which generates a low additional load for the pole or tower.

The design of the stainless steel tube is reasonable and the excessive fiber length is correct.

Stainless steel tube protects the fiber with powerful tensile strength.

The stainless steel tube optical unit is the middle layer of the cable and can resist twisting and has good lateral pressure performance.

With good safety performance and strong impact resistance, not easy to steal.

Different shielding combinations can be used to meet different electrical and mechanical properties.

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