12-36 Cores 50m Span Single Sheath ADSS Cable
ADSS fiber optic cables are suitable for power lines, long-distance communication, and urban and rural networks, and perform exceptionally well in harsh environments, making them widely used in telecom and broadband backbone network construction.
- Can be installed without power outage;
- Uses AT sheath with excellent tracking resistance;
- Lightweight with small cable diameter, reducing the effects of ice, wind, and load on towers and supports;
- Superior tensile strength and temperature performance.
ADSS Cable Specifications
OUFU’s 12-36 cores ADSS cable is Used Single sheath cable structure to build this good performance outdoor aerial installation cable. This ADSS cables offer reliable self-support performance for distances up to 50m. ADSS structure of the optical cables adopts loose tube twisted structure. 250 um optical fibers are inserted into loose tube made of high modulus polyester and filled with non-metallic reinforcing members (FRP) around the center of the cable to form a round core. The gap in the core is filled with water-blocking ointment, Two layers of aramid yarn are twisted to reinforce the yarn , then 1pc of Ripcords positioned under a polyethylene (PE) sheath.
OUFU’s ADSS cable is ideal for installation in aerial installation. It’s a cost-effective cable in Optical Network construction.
Features and Advantages
Non-metallic structure, good insulation, lightning protection
The aramid yarn has excellent production technology, uniform force, excellent stress-strain performance, excellent gunshot resistance and best anti-electric corrosion performance
No blackout construction, power line failure does not affect the normal transmission of optical cable
Smooth shape, so that the cable has superior aerodynamic performance
Technical Specifications
- ADSS Cable Single Jacket
- ADSS Cable Double Jacket
| fiber count | structure | fiber per tube | losse tube diameter(MM) | FRP/pad diameter (mm) | Thickness of outer jacket(mm) | Ref. Outer Diameter (mm) | Ref. Weight (kg/km) | |
| PE Jacket | AT Jacket | |||||||
| 4 | 1+5 | 4 | 1.9 | 2.0/2.0 | 1.7±0.1 | 9.8 | 80 | 90 |
| 6 | 1+5 | 6 | 1.9 | 2.0/2.0 | 1.7±0.1 | 9.8 | 80 | 90 |
| 8 | 1+5 | 4 | 1.9 | 2.0/2.0 | 1.7±0.1 | 9.8 | 80 | 90 |
| 12 | 1+5 | 6 | 1.9 | 2.0/2.0 | 1.7±0.1 | 9.8 | 80 | 90 |
| 24 | 1+5 | 6 | 2.0 | 2.0/2.0 | 1.7±0.1 | 9.8 | 85 | 95 |
| 48 | 1+5 | 12 | 2.0 | 2.0/2.0 | 1.7±0.1 | 10.0 | 88 | 98 |
| 72 | 1+6 | 12 | 2.2 | 2.0/2.0 | 1.7±0.1 | 10.5 | 98 | 108 |
| 96 | 1+8 | 12 | 2.2 | 2.0/3.4 | 1.7±0.1 | 12.0 | 122 | 135 |
| 144 | 1+12 | 12 | 2.2 | 3.0/7.2 | 1.7±0.1 | 15.2 | 176 | 189 |
| fiber count | structure | fiber per tube | losse tube diameter(MM) | FRP/pad diameter (mm) | Thickness of outer jacket(mm) | Ref. Outer Diameter (mm) | Ref. Weight (kg/km) | |
| PE Jacket | AT Jacket | |||||||
| 4 | 1+5 | 4 | 1.9 | 2.0/2.0 | 1.7±0.1 | 12.0 | 125 | 135 |
| 6 | 1+5 | 6 | 1.9 | 2.0/2.0 | 1.7±0.1 | 12.0 | 125 | 135 |
| 8 | 1+5 | 4 | 1.9 | 2.0/2.0 | 1.7±0.1 | 12.0 | 125 | 135 |
| 12 | 1+5 | 6 | 1.9 | 2.0/2.0 | 1.7±0.1 | 12.0 | 125 | 135 |
| 24 | 1+5 | 6 | 2.0 | 2.0/2.0 | 1.7±0.1 | 12.0 | 128 | 138 |
| 48 | 1+5 | 12 | 2.0 | 2.0/2.0 | 1.7±0.1 | 12.5 | 130 | 140 |
| 72 | 1+6 | 12 | 2.2 | 2.0/2.0 | 1.7±0.1 | 13.2 | 145 | 155 |
| 96 | 1+8 | 12 | 2.2 | 2.0/3.4 | 1.7±0.1 | 14.5 | 185 | 195 |
| 144 | 1+12 | 12 | 2.2 | 3.0/7.2 | 1.7±0.1 | 16.5 | 212 | 228 |






