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Cables de fibraV-SOLoutdoor-cable

ADSS

All Dielectric Self- Supporting Optical Fiber Cable

Confirma disponibilidad, instalación y entrega con un asesor.

Descripción

Cable Cross-section (only for reference, not to scale) Cable Specification 1. Introduction Loose tube construction, tubes jelly filled, elements (tubes and filler rods) laid up around non-metallic central strength member, polyester yarns used to bind the cable core, water blocking tape wrapped the cable core, aramid yarns reinforced and PE outer sheath. 2. Fiber color code Fiber color in each tube starts from No. 1 Blue. 1 2 3 4 5 6 7 8 9 10 11 12 B lue O range G reen B rown G ray W hite R ed B lack Y ellow P urple P ink A qua 3. Color codes for loose tube & filler rod Tube color starts from No. 1 Blue. If there are fillers, the color is natural. 1 2 3 4 5 6 7 8 9 10 11 12 B lue O range G reen B rown G ray W hite R ed B lack Y ellow P urple P ink A qua 4. Cable structure and parameter SN Item Unit Value 1 No. of fibers count 6/8 / 12 24 36/48 96 1 44 2 No. of fibers per tube count 4 4 12 12 1 2 3 No. of elements count 6 6 6 8 1 2 4 Thickness of outer sheath mm 1.7 1.7 1.7 1.7 1.7 5 Cable diameter ( ±5% ) mm 10. 5 10. 5 11. 2 1 2 . 8 1 6.3 6 Cable weight ( ±10% ) kg/km 83 89 99 133 2 02 7 Maximum allowable tension N 3000 8 Short term crush N/100mm 1000 9 Span m 120 10 Wind speed Km/h ≤35 11 Ice thickness mm 0 Note: Mechanical sizes are nominal values. Characteristics of Optical Cable 1. Min. bending radius for installation Static: 10 x cable diameter Dynamic: 20 x cable diameter 2. Application temperature range Operation: -40℃ ~ +60℃ Installation: -10℃ ~ +60℃ Storage/transportation: -40℃ ~ +60℃ 3. Main mechanical & environmental performance test Item T est M ethod Acceptance Condition Tensile Strength IEC 60 794-1- 2- E1 – Load: Maximum allowable tension – Length of cable: about 50m – Load time : 1min – Fiber strain £ 0.33% – No fiber break and no sheath damage. Crush Test IEC 60794-1- 2- E3 – Load: Short term crush – Load time : 1min – L oss change £ 0. 1 dB@1550nm – No fiber break and no sheath damage. Characteristics of Optical Fiber G652D fiber information Mode field diameter (1310nm) 9.2 m m ± 0.4 m m Mode field diameter (1550nm) 10.4 m m ± 0.8 m m Cut off wavelength of cabled fiber ( l cc ) £ 1260nm Attenuation at 1310nm £ 0.36dB/km Attenuation at 1550nm £ 0.22dB/km Bending loss at 1550nm (100 turns, 30mm radius) £ 0.05dB Dispersion in the range 1288 to 1339nm £ 3.5ps/ (nm•km) Dispersion at 1550nm £ 18ps/ (nm•km) Dispersion slope at zero dispersion wavelength £ 0.092ps/ (nm 2 •km) Product Display Packing 4000meter/Wooden Drum

Especificaciones técnicas

1
2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | 11 | 12
B lue
O range | G reen | B rown | G ray | W hite | R ed | B lack | Y ellow | P urple | P ink | A qua
SN
Item | Unit | Value
1
No. of fibers | count | 6/8 / 12 | 24 | 36/48 | 96 | 1 44
2
No. of fibers per tube | count | 4 | 4 | 12 | 12 | 1 2
3
No. of elements | count | 6 | 6 | 6 | 8 | 1 2
4
Thickness of outer sheath | mm | 1.7 | 1.7 | 1.7 | 1.7 | 1.7
5
Cable diameter ( ±5% ) | mm | 10. 5 | 10. 5 | 11. 2 | 1 2 . 8 | 1 6.3
6
Cable weight ( ±10% ) | kg/km | 83 | 89 | 99 | 133 | 2 02
7
Maximum allowable tension | N | 3000
8
Short term crush | N/100mm | 1000
9
Span | m | 120
10
Wind speed | Km/h | ≤35
11
Ice thickness | mm | 0
Item
T est M ethod | Acceptance Condition
Tensile Strength IEC 60 794-1- 2- E1
– Load: Maximum allowable tension – Length of cable: about 50m – Load time : 1min | – Fiber strain £ 0.33% – No fiber break and no sheath damage.
Crush Test IEC 60794-1- 2- E3
– Load: Short term crush – Load time : 1min | – L oss change £ 0. 1 dB@1550nm – No fiber break and no sheath damage.
Mode field diameter (1310nm)
9.2 m m ± 0.4 m m
Mode field diameter (1550nm)
10.4 m m ± 0.8 m m
Cut off wavelength of cabled fiber ( l cc )
£ 1260nm
Attenuation at 1310nm
£ 0.36dB/km
Attenuation at 1550nm
£ 0.22dB/km
Bending loss at 1550nm (100 turns, 30mm radius)
£ 0.05dB
Dispersion in the range 1288 to 1339nm
£ 3.5ps/ (nm•km)
Dispersion at 1550nm
£ 18ps/ (nm•km)
Dispersion slope at zero dispersion wavelength
£ 0.092ps/ (nm 2 •km)