At an amazing rate, the use of fiber optic systems is expanding. In the past 10 years, almost all twisted pair and coaxial cables are replaced by fiber-optic communications systems in network backbones. Fiber optic cables have much more bandwidth, are lighter than traditional copper cables, are easier to install, and they are much smaller than their electronic counterparts!
They are easier to pull through existing cable raceways and ducts as fiber optic cables and PLC Splitter is lighter.
All the above pros make fiber optic cables very cost-effective and very attractive.
This is made possible by wide bandwidth of the fiber. To meet all our video, data, and voice requirements, it provides more than enough capacity.
By the invention of optical fiber amplifiers, the transformation from copper to fiber is greatly accelerated. Over very long distances, Optical fiber amplifiers enable optical signal transmission without the expensive process of the conversion back to an optical signal, electronic amplification, and conversion to electronic signals as in traditional regenerators.
Today by electronic switches such as those from Cisco, most of the network traffic switching is still performed. But the tremendous effort and interest in using all-optical devices like FBT Splitter for all networks switching in the industry is accumulating. In its almost unlimited transmission capacity lays the most important characteristic of all-optical switching.
However, for controlling light with light, it is still in the prototype stage so optical switch circuits, which by electronic circuits are still controlled at this moment. By electronic circuits, the controls are still done although the switching matrix maybe optical circuits.
Optical fiber is almost the ideal medium in the foreseeable future and for signal transmission available today. Its immunity to electromagnetic interference is the excellent characteristic of optical fiber and Fiber Splitter. Without cross-interference among them, Optical circuits can be crossed in a common space.
But the speed of all-optical system development is impeded by problems that are impeding. The compatibility requirements with legacy fiber optic systems are the most basic and obvious reasons.
Fiber-optic technologies in addition to communication systems, are also widely used in industrial control, illumination, medicine, endoscopy, and sensing.
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