Product Details
Place of Origin: GUANGZHOU/CHINA
Brand Name: PUNAISGD/CABLEPULS
Certification: ISO/CE/ROSH
Model Number: ADSS fiber optic cable 100m
Document: Product Brochure PDF
Payment & Shipping Terms
Minimum Order Quantity: 2km
Price: negotiate
Packaging Details: Wooden Spool ,Φ1200*750mm
Delivery Time: 5-25days
Payment Terms: 30%TT as deposit,70%Balance before shipping.
Supply Ability: 100km
Type: |
ADSS Fiber Optic Cable 100m |
Fiber Type: |
Single Mode/multimode |
Fiber Count: |
12/24/48 |
Oute Sheath: |
Black PE |
Installation Method: |
Aerial |
Strength Member Material: |
FRP/ARMID YARN |
Production Capacity: |
200km Per Day |
HS Code: |
854470000 |
Transport Package: |
Wooden Drum Or As Per Customer′s Request |
Specification: |
100X100X70 Cm |
Type: |
ADSS Fiber Optic Cable 100m |
Fiber Type: |
Single Mode/multimode |
Fiber Count: |
12/24/48 |
Oute Sheath: |
Black PE |
Installation Method: |
Aerial |
Strength Member Material: |
FRP/ARMID YARN |
Production Capacity: |
200km Per Day |
HS Code: |
854470000 |
Transport Package: |
Wooden Drum Or As Per Customer′s Request |
Specification: |
100X100X70 Cm |
ADSS cable is loose tube stranded. Fibers, 250μm , are positioned into a loose tube made of high modulus plastics. The tubes are filled with a water-resistant filling compound. The tubes (and fillers) are stranded around a FRP (Fiber Reinforced Plastic) as a non-metallic central strength member into a compact and circular cable core. After the cable core is filled with filling compound. it is covered with thin PE (polyethylene) inner sheath. After stranded layer of aramid yarns are applied over the inner sheath as strength member, the cable is completed with PE or AT (anti-tracking) outer sheath.
The actual status of overhead power lines is taken into full consideration when ADSS cable is being designed. For overhead power lines under 110kV, PE outer sheath is applied. FOR power lines equal to or over 110kV, AT outer sheath is applied. The dedicate design of aramid quantity and stranding process can satisfy the demand on various spans.
ADSS Cable Place Order Information
Fiber count | Structure | Fibers per tube |
Loose tube diameter (mm) |
CSM diameter/pad diameter (mm) |
Nominal Thickness of outer jacket (mm) |
Cable diameter/ Height (mm) |
Cable weight (kg/km) |
4 | 1+6 | 4 | 1.9±0.1 | 2.0/2.0 | 1.6 | 9.5±0.2 | 80 |
6 | 1+6 | 6 | 2.0±0.1 | 2.0/2.0 | 1.6 | 9.8±0.3 | 80 |
8 | 1+6 | 4 | 1.9±0.1 | 2.0/2.0 | 1.6 | 9.8±0.3 | 80 |
12 | 1+6 | 6 | 2.1±0.1 | 2.0/2.0 | 1.6 | 9.8±0.3 | 80 |
24 | 1+6 | 12 | 2.1±0.1 | 2.0/2.0 | 1.6 | 9.8±0.3 | 80 |
36 | 1+6 | 12 | 2.2±0.1 | 2.0/2.0 | 1.6 | 10.0±0.3 | 85 |
48 | 1+6 | 12 | 2.2±0.1 | 2.0/2.0 | 1.6 | 10.0±0.3 | 85 |
72 | 1+6 | 12 | 2.2±0.1 | 2.0/2.0 | 1.6 | 10.0±0.3 | 85 |
96 | 1+8 | 12 | 2.2±0.1 | 2.0/3.4 | 1.7 | 11.8±0.3 | 123 |
144 | 1+12 | 12 | 2.2±0.1 | 3.0/6.2 | 1.7 | 14.5±0.3 | 175 |
Fiber Parameters | |||||
No. | Items | Unit | Specification | ||
G.652D | |||||
1 | Mode Field Diameter | 1310nm | μm | 9.2±0.4 | |
1550nm | μm | 10.4±0.8 | |||
2 | Cladding Diameter | μm | 125.0±1.0 | ||
3 | Cladding Non-Circularity | % | ≤1.0 | ||
4 | Core-Cladding Concentricity Error | μm | ≤0.5 | ||
5 | Coating Diameter | μm | 245±5 | ||
6 | Coating Non-Circularity | % | ≤6.0 | ||
7 | Cladding-Coating Concentricity Error | μm | ≤12.0 | ||
8 | Cable Cutoff Wavelength | nm | λcc≤1260 | ||
9 |
Attenuation(max.) |
1310nm | dB/km | ≤0.35 | |
1550nm | dB/km | ≤0.21 | |||
1380nm | dB/km | ≤0.35 | |||
1625nm | dB/km | ≤0.24 | |||
10 |
Attenuation and wavelength |
1310nm 1285-1330nm | dB/km | ≤0.04 | |
1550nm 1525-1575nm | dB/km | ≤0.03 | |||
1550nm 1480-1580nm | dB/km | ≤0.05 | |||
11 |
Dispersion |
1288-1339nm | ps/(nm.km) | ≥-3.5, ≤3.5 | |
1271-1360nm | ps/(nm.km) | ≥-5.3, ≤5.3 | |||
1480-1580nm | ps/(nm.km) | ≤20 | |||
1550nm | ps/(nm.km) | ≤18 | |||
12 | Zero dispersion wavelength | Nm | 1300-1324 | ||
13 | Zero dispersion slope | ps/(nm2•km) | ≤0.092 | ||
14 | Typical value | ps/(nm2•km) | 0.04 | ||
15 | Largest individual fiber | Ps/√ km | 0.2 | ||
16 | Link design values | Ps/√ km | 0.1 | ||
17 | Two way average | 1310nm-1550 | ≤0.01dB |
Benefits of ADSS Cable
ADSS cables rely solely on their dielectric properties, eliminating the need for metal support structures and reducing installation costs.
Designed to withstand high electric fields, ADSS cables perform reliably near high-voltage power lines without interference from electromagnetic fields.
With superior weather resistance and tensile strength, ADSS cables excel in harsh environments like coastal areas and high altitudes, ensuring long-term performance.
Applications of ADSS Cables