Fiber optic cables with access features
View Patent ↗Cables are constructed with discontinuities in the cable jacket that allow the jacket to be torn to provide access to the cable core. The discontinuities can be longitudinally extending strips of material in the cable jacket. The discontinuities allow a section of the cable jacket to be pulled away from a remainder of the jacket using a relatively low peel force.
1. A cable, comprising:
a core including a plurality of optical fibers; and
a jacket surrounding the core, wherein the jacket has an interior surface and an exterior surface with a jacket thickness therebetween of no more than 2.0 mm, the jacket comprising:
a main portion of a first material, wherein the first material is extrudable, and wherein the first material is polymeric; and
at least a first and a second discontinuity of a second material disposed in the main portion, wherein the second material is extrudable, wherein the second material is polymeric,
wherein the main portion includes a section of the main portion located between the first and second discontinuities that is separable from another portion of the jacket by application of a peel force exerted on the section to cause the jacket material to rip, tear, or otherwise separate along the first and second discontinuities for accessing the core, and wherein the peel force is at least 10 N.
2. The cable of claim 1 , wherein the peel force is less than 80 N.
3. The cable of claim 1 , wherein the first and second discontinuities are wholly embedded in the main portion.
4. The cable of claim 1 , wherein the jacket thickness is at least 0.5 mm.
5. The cable of claim 1 , wherein a cross-sectional area of each discontinuity is less than 5% of a cross-sectional area of the jacket.
6. A cable, comprising:
a core including a plurality of optical fibers; and
a jacket surrounding the core, wherein the jacket has an interior surface and an exterior surface with a jacket thickness therebetween of no more than 2.0 mm, the jacket comprising:
a main portion of a first material, wherein the first material is extrudable, and wherein the first material is polymeric; and
at least a first and a second discontinuity of a second material disposed in the main portion, wherein the second material is extrudable, wherein the second material is polymeric,
wherein the main portion includes a section of the main portion located between the first and second discontinuities that is separable from another portion of the jacket by application of a peel force exerted on the section to cause the jacket material to rip, tear, or otherwise separate along the first and second discontinuities for accessing the core, and wherein the peel force is less than 80 N.
7. The cable of claim 6 , wherein the first material includes a first polymer and the second material is a blend that includes a second polymer and the first polymer.
8. The cable of claim 6 , wherein the first and second discontinuities are wholly embedded in the main portion.
9. The cable of claim 6 , wherein the jacket thickness is at least 0.5 mm.
10. The cable of claim 6 , wherein each discontinuity has a substantially ovoid shaped cross-section.
11. A cable, comprising:
a core including a plurality of optical fibers; and
a jacket surrounding the core, wherein the jacket has an interior surface and an exterior surface with a jacket thickness therebetween of at least 0.5 mm, the jacket comprising:
a main portion of a first material, wherein the first material is extrudable, and wherein the first material is polymeric; and
at least a first and a second discontinuity of a second material disposed in the main portion, wherein the second material is extrudable, wherein the second material is polymeric,
wherein the main portion includes a section of the main portion located between the first and second discontinuities that is separable from another portion of the jacket by application of a peel force exerted on the section to cause the jacket material to rip, tear, or otherwise separate along the first and second discontinuities for accessing the core, and wherein the peel force is at least 10 N.
12. The cable of claim 11 , wherein the peel force is less than 80 N.
13. The cable of claim 11 , wherein the first and second discontinuities are wholly embedded in the main portion.
14. The cable of claim 11 , wherein molecular entanglement between the first material of the main portion and the second material of the discontinuities bonds the discontinuities to the main portion of the jacket.
15. The cable of claim 11 , wherein the jacket has an annular cross-section.
16. A cable, comprising:
a core including a plurality of optical fibers; and
a jacket surrounding the core, wherein the jacket has an interior surface and an exterior surface with a jacket thickness therebetween of at least 0.5 mm, the jacket comprising:
a main portion of a first material, wherein the first material is extrudable, and wherein the first material is polymeric; and
at least a first and a second discontinuity of a second material disposed in the main portion, wherein the second material is extrudable, wherein the second material is polymeric,
wherein the main portion includes a section of the main portion located between the first and second discontinuities that is separable from another portion of the jacket by application of a peel force exerted on the section to cause the jacket material to rip, tear, or otherwise separate along the first and second discontinuities for accessing the core, and wherein the peel force is less than 80 N.
17. The cable of claim 16 , wherein the first and second discontinuities extend substantially along the entire length of the cable.
18. The cable of claim 16 , wherein the first and second discontinuities are wholly embedded in the main portion.
19. The cable of claim 16 , wherein the first material comprises polyethylene.
20. The cable of claim 16 , wherein the first and second discontinuities extend along the entire length of the cable.