Air-blown microduct fiber optic cable 144 288 Strands
We are happy to answer any questions, please send us your inquiries and orders.
product detail
Photos





Parameters
| product name | air-blown optical cable |
| Fiber count | 12 -288hilos |
| Construction | Loose tube |
| Fiber type | G652D / G657A1 / G657A2 |
| Long-term crush resistance: | 300 (N / 100MM) |
| Crush resistance Short term: | 1000 (N / 100MM) |
| Total diameter | 11,4 mm ~ 13,10 mm |
| Package | 2 km - 5 km by drum |
| Sample status | A stock |
| Warp Radio | 10D / 20D (millimeter) |
| Sample status | Free sample in stock |
More information
Product Introduction
Fiber optic cable blowing is a method of installing fiber optic cables using compressed air to push the cable through a pre-installed conduit or duct. This technique allows for the rapid and efficient deployment of fiber optic cables over long distances without the need for manual pulling. It is commonly used in telecommunications and network infrastructure projects.
Features
1. High-speed installation: Fiber optic cable blowing allows for quick installation over long distances, saving time and labor costs.
2. Reduced labor: The use of compressed air eliminates the need to manually pull the cable, making the installation process more efficient.
3. Minimal cable damage: The controlled blowing process helps reduce the risk of cable damage during installation, ensuring the integrity of the fiber optic cables.
4. Suitable for long distances: This method is particularly effective for installing fiber optic cables over long distances, such as in telecommunications and network infrastructure projects.
5. Versatile applications: Fiber optic cable blowing can be used in various environments, including urban areas, rural environments, and indoor installations.
Applications
The fiber optic cable blowing method is commonly used in telecommunications, network infrastructure, and broadband deployment projects. It enables the rapid and efficient installation of fiber optic cables over long distances, including in urban, rural, and indoor environments. This technique is particularly well-suited for projects requiring high-speed deployment and minimal labor.



