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Fiber damage One of the most obvious risks in fiber optic projects is the physical damage or breakage of the fiber cables, connectors, or splices. This can happen due to improper handling, installation, testing, or repair, as well as external causes such as rodents, vandalism, or natural disasters.
In a standard fiber cable, each group of 12 strands is encased in a small tube that itself is one of those 12 colors. A fiber cable that has 144 strands, is comprised of 12 different colored tubes that each contain 12 different colored fiber strands.
The most common challenges that we face during any deployment include the following: Multiple approvals are required at different stages of the fiber rollout process. Time and cost overruns that are more often than not unavoidable. Surveys that provide sub-optimal results and deter good decision making.
One of the primary challenges faced when implementing FTTH is the high cost of infrastructure development. Deploying fiber optic cables to each user's home involves considerable investments in equipment, materials, and labor.
One of the most significant challenges to FTTH deployment is the high cost and investment required to build and maintain the fiber infrastructure. Fiber optic cables are more expensive than copper wires or coaxial cables, and require specialized equipment and skilled labor to and operate.
Fiber end-face contamination is a common problem that can degrade the performance of fiber optic connectors. Dust, dirt, oil, or fingerprints on the surface of the fiber end-face can increase insertion loss and reflectance. It is crucial to keep the connectors and fiber end-faces clean and free from contaminants.
The termination process involves cleaving the fiber and attaching the connector with a built-in mechanical splice or using a fusion splicing machine. It is faster than the adhesive/polish connectors when done by an experienced tech.
Common problems with fiber Attenuation is the loss of optical power due to absorption, bending, scattering, and other loss mechanisms that may occur when the light is transmitted through the fiber. Attenuation results in a weakened signal strength.