Product Details
Place of Origin: GUANGZHOU/CHINA
Brand Name: PUNAISGD/CABLEPULS
Certification: ISO/CE/ROSH
Model Number: ASU-8B1.3-120/80m
Document: 12F-ASU-Fiber-Cable.pdf
Payment & Shipping Terms
Minimum Order Quantity: 2km
Price: negotiate
Packaging Details: Wooden Spool /drum
Delivery Time: 5-25days
Payment Terms: 30%TT as deposit,70%Balance before shipping.
Supply Ability: 100km
Item NO.:
|
ASU-8B1.3-120/80m
|
Fiber Count:
|
12
|
Inner Sheath Material:
|
PE
|
Installation Method:
|
Aerial
|
Strength Member Material:
|
FRP*2
|
Cable Diameter:
|
7mm/8mm
|
Span:
|
80m-120m
|
Installation:
|
Self- Supporting Aerial
|
Oem:
|
Available
|
Color:
|
Black
|
Structure:
|
Loose Tube
|
Application:
|
Telecommunication,Aerial,Telecom,Network
|
Item NO.:
|
ASU-8B1.3-120/80m
|
Fiber Count:
|
12
|
Inner Sheath Material:
|
PE
|
Installation Method:
|
Aerial
|
Strength Member Material:
|
FRP*2
|
Cable Diameter:
|
7mm/8mm
|
Span:
|
80m-120m
|
Installation:
|
Self- Supporting Aerial
|
Oem:
|
Available
|
Color:
|
Black
|
Structure:
|
Loose Tube
|
Application:
|
Telecommunication,Aerial,Telecom,Network
|
Attribute | Value |
---|---|
Item NO. | ASU-8B1.3-120/80m |
Fiber Count | 12 |
Inner Sheath Material | PE |
Installation Method | Aerial |
Strength Member Material | FRP*2 |
Cable Diameter | 7mm/8mm |
Span | 80m-120m |
Installation | Self-supporting Aerial |
OEM | Available |
Color | Black |
Structure | Loose Tube |
Application | Telecommunication, Aerial, Telecom, Network |
ASU fiber optic cable, also known as mini ADSS fiber optic cable, is an aerial self-supporting dielectric cable that contains one or two max loose tubes which is filled with up to 12 optical fibers (thus max 24 optical fibers in total). The fibers are protected from moisture by jelly and hydro-expandable material inside the loose tube.
It is all dielectric which has FRP strength member as a traction element, providing pull strength and avoiding electrical discharges between connections. It is much easier and lighter to handle and install compared to other outdoor cable, eliminating the need to use strings or grounding. It's widely used in FTTH fiber to the home networking.
No. of cable | 12 | 24 | |
---|---|---|---|
Fiber Model | G.652D | ||
Loose Tube | Material | PBT | |
Diameter | 2.5±0.1mm | 2.8±0.1mm | |
Thickness | 0.32±0.05 mm | ||
Color | Nature | ||
Strength Member | Material | FRP | |
Diameter | 2.5±0.05 mm | 2.5±0.1mm | |
Outer Sheath | Material | PE | |
Color | Black | ||
Cable Diameter | 8.0±0.2 mm | 8.5±0.2 mm | |
Cable Weight | 55±5.0 kg/km | 65±5.0 kg/km | |
Allowable Tensile Strength | 1000N | 1500N | |
Allowable Crush Resistance | 1100N/100mm | 2200N/100mm | |
Min. bending radius | Without Tension: 10.0×Cable-φ Under Maximum Tension: 20.0×Cable-φ | ||
Temperature range (℃) | Installation: -20~+60 Transport & Storage: -40~+70 Operation: -40~+70 |
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 |
When installing an ASU cable, ensure it does not bend beyond its minimum radius, avoid physical damage during handling, and use appropriate clamps to secure it without excessive pressure.