IP Library Granted Patent US 9,964,724
Granted Patent B2
US 9,964,724 · App. 15/410,104 · Granted May 8, 2018

Fiber optic ribbon cable having enhanced ribbon stack coupling and methods thereof

Inventors: James Lee Baucom (Conover, NC); William Welch McCollough (Lincolnton, NC); David Alan Seddon (Hickory, NC)
Assignee: Corning Optical Communications LLC
G02B6/4404G02B6/44G02B6/443G02B6/448G02B6/4494Y10T29/49924
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Quick Facts
Patent No.
US 9,964,724
App. No.
15/410,104
Granted
May 8, 2018
Kind
B2
Abstract

A fiber optic ribbon cable includes a jacket of the cable, the jacket having a cavity defined therein, an optical element including an optical fiber and extending within the cavity of the jacket, and a dry water-blocking element extending along the optical element within the cavity. The dry water-blocking element is wrapped around the optical element with at least a portion of the dry water-blocking element disposed between another portion of the dry water-blocking element and the optical element, thereby defining an overlapping portion of the dry water-blocking element. The optical element interfaces with the overlapping portion to provide direct or indirect coupling between the optical element and the jacket.

Claims (24)

1. A fiber optic assembly, comprising:

a buffer tube;

a plurality of optical waveguides in a ribbon stack extending within the buffer tube; and

a dry insert comprising a non-woven layer of material having one or more types of non-continuous filaments and/or fibers adhered together to form a compressible layer;

wherein corners of the ribbon stack intermittently interface with the dry insert to define an intermittent coupling extending longitudinally between the ribbon stack and the buffer tube.

2. The assembly of claim 1 , wherein the one or more types of non-continuous filaments and/or fibers includes a plurality of water-swellable filaments along with other filaments that are non-swellable in water.

3. The assembly of claim 2 , wherein the non-woven layer comprises 25% or less by weight of the water-swellable filaments and 75% or more by weight of the other filaments.

4. The assembly of claim 2 , wherein the water-swellable filaments comprise a superabsorbent polymer.

5. The assembly of claim 2 , wherein the other filaments comprise polymer filaments.

6. The assembly of claim 2 , wherein the other filaments comprise cottons, nylons, rayons, elastomers, fiberglass, aramids, rubber-based urethanes, composite materials and/or blends thereof.

7. The assembly of claim 1 , wherein the dry insert is coupled to the buffer tube by an adhesive.

8. The assembly of claim 1 , wherein the dry insert further comprises a second layer attached to the non-woven layer.

9. The assembly of claim 8 , wherein the second layer is a water-swellable tape.

10. The assembly of claim 8 , wherein the second layer is a meltable layer having a polymer that at least partially melts during extrusion of the buffer tube thereover.

11. The assembly of claim 1 , wherein the plurality of optical waveguides is a plurality of single-mode optical fibers.

12. The assembly of claim 11 , wherein corners of the ribbon stack intermittently compress the dry insert to define the intermittent coupling between the ribbon stack and the buffer tube.

13. The assembly of claim 11 , wherein the ribbon stack comprises 72 optical fibers.

14. A fiber optic assembly, comprising:

a buffer tube;

a plurality of optical waveguides extending within the buffer tube; and

a dry insert comprising two edges and a non-woven layer of material having one or more types of non-continuous filaments and/or fibers adhered together to form a compressible layer;

wherein the dry insert is within the buffer tube and is wrapped around the plurality of optical waveguides with at least a portion of one edge of the dry insert disposed between the other edge of the dry insert and the plurality of optical waveguides, thereby defining an overlapping portion of the dry insert;

wherein the overlapping portion of the dry insert extends around at least 45degrees of an interior perimeter of the buffer tube.

15. The fiber optic assembly of claim 14 , wherein the plurality of optical waveguides form a ribbon stack, wherein corners of the ribbon stack interface with the dry insert at the overlapping portion to define an intermittent coupling extending longitudinally between the ribbon stack and the buffer tube.

Continuity (4)
Continuation 14863721 · Sep 24, 2015
Continuation 13625052 · Sep 24, 2012
Provisional Application 61541142 · Sep 30, 2011
Related Publication 20170131497A1 · May 11, 2017