Micro air-blown fiber optic cable, duct cable, price per 1 km
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product detail
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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
Description
Microduct cable is primarily used in cabling applications employing air-blown micro-cable technology. The fiber optic cable travels in the direction of the airflow within the HDPE micro-tube at a uniform speed, reducing cable installation costs and improving construction efficiency. Due to the small diameter and high capacity of the fiber, it can be installed in microduct sub-unit conduits with varying apertures, further optimizing the utilization of communication conduits. For backbone network deployment, air-blown microduct fiber optic cable is one of the most cost-effective and efficient fiber optic cable options.
Feature
1. Central resistance element (CSM): glass fiber reinforced plastic (GRP) material, with overheating when necessary.
2. Micromodules: PBT material containing 12 optical fibers and filled with a suitable sealing compound with easy detachment capability.
3. Braiding: flexible tubes, SZ braided around the CSM.
4. Longitudinal watertightness: water-inflatable materials (dry core).
5. Outer sheath: HDPE and rip cord underneath
Application
Telecommunications networks:
They are used for both trunk and last-mile connections, enabling high-speed data transmission for voice, video, and Internet services.
Data centers:
Ideal for organizing and managing fiber optic connections, enabling efficient data flow and easy scalability as demand increases.
Broadband Internet:
They are deployed in residential and commercial broadband networks to provide high-speed Internet access, supporting multiple users and devices.
Smart Cities:
It supports infrastructure for smart city initiatives, including IoT devices, traffic management systems, and public safety communications.
Campus networks:
They are used in educational institutions and corporate campuses to connect multiple buildings with high-capacity fiber links, improving communication and data exchange.



