IP Library Granted Patent US 9,250,411
Granted Patent B2
US 9,250,411 · App. 14/528,549 · Granted Feb 2, 2016

Fiber optic cables with extruded access features and methods of making fiber optic cables

Inventors: George Cornelius Abernathy (Hildebran, NC); David Wesley Chiasson (Edmonton, CA); Randall Dwaine Tuttle (Conover, NC)
Assignee: CCS TECHNOLOGY, INC.
G02B6/4497G02B6/443G02B6/4434G02B6/4495
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Quick Facts
Patent No.
US 9,250,411
App. No.
14/528,549
Granted
Feb 2, 2016
Kind
B2
Abstract

Cables are constructed with embedded 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 polymer material coextruded in the cable jacket.

Claims (41)

1. A cable, comprising:

a core comprising at least one optical fiber; and

a jacket surrounding the core, the jacket comprising:

a primary portion of a first material;

a discontinuity of a second material wholly embedded in the primary portion, the discontinuity extending along a length of the cable, wherein the first and second materials are extrudable, the first material being different from the second material a first strength member on a first side of the core;

a first strength member on a first side of the core;

a second strength member on a second side of the core; and

wherein the jacket surrounds and contacts the core, the first strength member and the second strength member.

2. The cable of claim 1 , wherein the first material is polymeric and wherein the second material is polymeric.

3. The cable of claim 2 , wherein the first material is comprised of at least eighty percent by weight of a first polymer, and wherein the second material is comprised of at least seventy percent by weight of a second polymer and at least 0.5 percent by weight of the first polymer.

4. The cable of claim 2 , wherein the first material is different from the second material due to being subjected to different cure conditions.

5. The cable of claim 1 , wherein an inner surface of the jacket contacts the core.

6. The cable of claim 5 , wherein the core comprises a single optical fiber.

7. The cable of claim 1 , wherein the core comprises a plurality of optical fibers.

8. The cable of claim 1 , wherein a height of the discontinuity is greater than a width of the discontinuity.

9. The cable of claim 1 , wherein the discontinuity has a length of at least 10 centimeters along the length of the cable, wherein a cross-sectional area of the discontinuity is less than 10% of a cross-sectional area of the jacket.

10. The cable of claim 1 , wherein a height of the discontinuity is at least one third of a distance between an inner surface of the jacket and a closest exterior edge of the jacket.

11. The cable of claim 10 , wherein a height of the discontinuity is less than the distance between an inner surface of the jacket and the closest exterior edge of the jacket.

12. A cable, comprising:

a core comprising at least one optical fiber;

a jacket surrounding the core, the jacket comprising:

a primary portion of a first extrudable polymer material; and

a discontinuity surrounded by the primary portion such that a first section of the primary portion is located between the discontinuity and an exterior surface of the jacket and a second section of the primary portion is located between the discontinuity and the core, wherein the discontinuity is formed from a second extrudable polymer material different than the first extrudable polymer material, wherein the discontinuity extends along a length of the cable;

a first strength member on a first side of the core;

a second strength member on a second side of the core; and

wherein the jacket surrounds and contacts the core, the first strength member and the second strength member.

13. The cable of claim 12 , further comprising a second discontinuity, wherein the jacket is an annular jacket, wherein the discontinuities are located on opposite sides of the annular jacket.

14. The cable of claim 12 , wherein a height of the discontinuity is greater than a width of the discontinuity.

15. The cable of claim 14 , wherein the height of the discontinuity is at least one third of a distance between an inner surface of the jacket and a closest exterior edge of the jacket.

16. The cable of claim 15 , wherein the height of the discontinuity is less than the distance between an inner surface of the jacket and the closest exterior edge of the jacket, wherein the discontinuity has a length of at least 10 centimeters along the length of the cable.

17. The cable of claim 12 , wherein the discontinuity extends along the entire length of the cable, and wherein a cross-sectional area of the discontinuity is less than 5% of a cross-sectional area of the jacket.

18. The cable of claim 12 , wherein the first extrudable polymer material is comprised of at least eighty percent by weight of a first polymer, and wherein the second extrudable polymer material is comprised of at least seventy percent by weight of a second polymer and at least 0.5 percent by weight of the first polymer.

19. A cable, comprising:

a core comprising at least one optical fiber;

a jacket surrounding the core, the jacket comprising:

a primary portion of a first polymer material; and

at least two discontinuities of a second polymer material located within in the primary portion, each discontinuity extending a length of at least 10 centimeters along the length of the cable, wherein the first polymer material is different from the second polymer material,

wherein a height of each of the at least two discontinuities is less than a distance between an inner surface of the jacket and a closest exterior edge of the jacket;

a first strength member on a first side of the core;

a second strength member on a second side of the core; and

wherein the jacket surrounds and contacts the core, the first strength member and the second strength member.

Continuity (5)
Continuation 14023051 · Sep 10, 2013
Continuation 13845697 · Mar 18, 2013
Continuation PCTUS2011057574 · Oct 25, 2011
Provisional Application 61407744 · Oct 28, 2010
Related Publication 20150055919A1 · Feb 26, 2015