For example it takes four splices to repair a 48 fiber count ribbon cable compared to 48 splices for the loose tube equivalent.
Loose tube vs ribbon fiber.
But each is designed for very different environments.
As is usually the case in these networks specific architectural characteristics and particular applications may dictate the deployment of one type of cable.
Loose tube and tight buffered.
Loose tube and tight buffered.
Tight buffered and loose tube fiber are the two styles of constructions fiber optic cables offered.
Making the right fiber cable choice can improve overall performance of distribution cables in the pon in the distribution portion of the passive optical network pon for fiber tothe premise fttp architectures the choice of fiber cabling ribbon vs.
There are two styles of fiber optic cable construction.
In the distribution portion of the passive optical network pon for fiber to the premise fttp architectures the choice of fiber cabling ribbon vs.
Each however is designed for very different environments.
Both contain some type of strengthening member such as aramid yarn stainless steel wire strands or even gel filled sleeves.
The economics of fiber counts notwithstanding there are still a few areas where either ribbon or loose tube is the preferred option.
Loose tube vs tight buffered fiber optic cable.
Between them there are several common denominators like the fact that both have in their interior a strengthening member of sorts that can be made of stainless steel in the form of wire strands aramid yarn or gel filled sleeves.
Loose tube cables whether flooded under the jacket or water blocked with dry swellable materials protect the fibers from moisture and the long term degradation moisture can cause.
Loose tube cables are optimized for outdoor applications.
However it is capable of accommodating the maximum fiber density relative to cable diameter.
The configuration of loose tube cable comprises of a coated fiber placed within a loose tube which is filled with water resistant gel to protect fiber from tension and stresses caused by such harsh environment as moisture and a wide operation temperature range from thermal shock to ice loading.
Loose tube can directly impact ease of installation and future performance.
Fiber optic cables are constructed in two ways.
As is usually the case.
The gel within the loose tube construction stops the penetration of water and keeps it away from the fiber.