12-strand fiber optic cable with PE jacket, air-blown super mini fiber optic cable
We are happy to answer any questions, please send us your inquiries and orders.
product detail
Photos




Parameters
| product name | Fiber optic cable |
| Fiber count | 12-256 Threads |
| Construction | Loose center tube |
| Fiber type | Monomodo 9/125 |
| Outer jacket material | PE (negro) |
| Material Strength Member | Steel wire |
| Weight | 50 KILOGRAMS / KILOMETER |
| Armor cloak | PSP Steel |
| Application | Antenna and Conduit |
| Jacket diameter | 5,0 mm-10,0 mm |
| Jacket material | PHYSICAL EDUCATION |
| Wavelength test | 1310/1550 nm |
| Operating temperature | -40 ℃ ~ 85 ℃ |
More information
Product Introduction
Blown fiber optic cable consists of lightweight optical fibers with a special coating that are installed in pre-installed microducts using compressed air. This method eliminates traditional cable laying, enabling faster, longer (up to 1-2 km), and less labor-intensive deployments. The cables are designed for high density and low friction, facilitating future upgrades by adding more fibers. Ideal for congested pathways such as ducts or risers, it offers flexibility and scalability to meet evolving network demands.
Features
Microduct dependent: Requires pre-installed microduct conduits for installation.
Hollow tube design: The cable structure consists of one or more empty tubes containing loose fibers.
Loose fibers/bundles: Individual fibers or small bundles of fibers are found loose within the tube(s), not tightly bound together.
Low friction coating: The fibers and/or tubes have special, smooth, low friction coatings.
Lightweight and flexible: Designed to be exceptionally lightweight and flexible, making it easy to blow.
Without integrated resistance elements: It lacks traditional tensile strength elements, such as aramid yarns; it relies on the conduit for its protection.
High fiber density: Achieves a high number of fibers in cables of small diameters.
Scalable: Allows for gradual installation; add fibers later without needing to replace the conduits.
Applications
Backbone and vertical building networks: Vertical fiber installation between floors in multi-story buildings (multi-family units, offices, hospitals) using ducts or vertical shafts.
Campus networks: Connecting buildings between corporate, educational, or industrial campuses using existing or new underground conduits or overhead lines.
Fiber to the X (FTTx) Networks: Deployment of distribution fiber in congested underground ducts for FTTH, FTTB, and FTTC implementations.
Data centers and telecommunications hubs: Management of high-density fiber ducts in equipment rooms and complex, space-constrained interconnection points.
Restricted pathways: Installation of fiber in extremely limited spaces (e.g., congested existing ducts, small ducts, cable trays with high fill content).
Long underground/aerial conduits: Efficient installation of optical fiber over distances of up to 1-2 km in pre-installed microduct bundles.
Developments on undeveloped land: Early installation of conduit infrastructure and installation of fiber optics later, when demand is confirmed.


