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In order to protect the fiber from rupture and additional micro-bend losses during installation, fiber optic cables are designed and manufactured with durable components. Protect shocks, expansion, and thermal shrinkage. Sturdy coatings require a large portion of the cross-section of fiber optic cables to be resisted and backed up. Sturdy elements in fiber optic cables may be in the core of the fiber optic cable, sheath, or both. To be placed.
The elements used in fiber optic cables are usually steel wires, synthetic fibers and epoxy fiberglass rods. Also, fiber optic cables must be designed in such a way that the long-lasting strain of the fiber is less than 25% of the strain. Do not increase the strength in the strength test. Fiber optic cables have anti-chewing, fire-resistant, impact-resistant coatings according to the conditions used. Fiber optic cables in terms of fiber used to multimode categories ( OM1, OM2, OM3, OM4) and single mode (OS1, OS2) are divided.
The above product is of single fashion type.
Almost no other large network can implement the network without the use of fiber optic infrastructure, with each passing year, fiber optics prove that the future of networks is in their hands. Fiber optic networks are widely used in telecommunications infrastructure today, but they are not yet widely used in small networks. Optical fiber, as its name implies, is a fiber that transmits light, this fiber is actually the same glass with very high transparency, it is said that if the glass used in the optical fiber creates a lake 400 meters deep It is so clear that the bottom of the lake is clearly visible.
Because optical fibers do not have the problem of radiating copper wires due to the use of glass or clear plastic in the core, they do not have the problem of eavesdropping along the way.
In copper cable, zero and one is defined by the disconnection and connection of electricity, while in optical fiber, zero and one is defined by the disconnection and connection of light, which is called optical pulse. In general, optical fibers are classified into two Batch done, Multimode optical fibers and Single Mode optical fibers.
Single Mode Fiber Optic (SMF) for short
This type of fiber has an ultra-thin core (5 to 10 microns) and a single wave beam (laser) is shone into it. Therefore, this beam will have the least expansion and is suitable for transmission rates of several tens of gigabits and at very long distances.