IP Library › Granted Patent US 11,448,842
Granted Patent B2
US 11,448,842 · App. 17/210,734 · Granted Sep 20, 2022

Small diameter fiber optic cables having low-friction cable jackets and optical fibers with reduced cladding and coating diameters

Inventors: Scott Robertson Bickham (Corning, NY); William Carl Hurley (Hickory, NC); Ulrich Wilhelm Heinz Neukirch (Painted Post, NY); Radawan Ripumaree (Hickory, NC)
Assignee: CORNING RESEARCH & DEVELOPMENT CORPORATION
G02B6/4438G02B6/02395G02B6/04G02B6/0281G02B6/0365
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Quick Facts
Patent No.
US 11,448,842
App. No.
17/210,734
Granted
Sep 20, 2022
Kind
B2
Abstract

A fiber optic cable includes a cable jacket having an outer surface defined by a cable jacket outer diameter J OD and an inner surface defined by a cable jacket inner diameter J ID ; a plurality N of optical fibers, where N≥4, contained within the cable jacket and positioned a distance away from the cable jacket inner diameter, with each optical fiber having a core, a cladding surrounding the core, and at least one coating surrounding the core with the at least one coating having an outer coating diameter less than or equal to about 200 microns and wherein the cable jacket outer diameter J OD is less than or equal to 1 mm.

Claims (33)

1. A fiber optic cable, comprising:

a cable jacket having an outer surface defined by a cable jacket outer diameter J OD and an inner surface defined by a cable jacket inner diameter J ID ;

a plurality N of optical fibers, where N≥4, contained within the cable jacket and positioned a distance away from the cable jacket inner diameter,

wherein each optical fiber comprises a core, a cladding surrounding the core, and at least one coating surrounding the core, the at least one coating having a coating diameter less than or equal to about 200 microns,

wherein the cable jacket outer diameter J OD is less than or equal to 1 mm, and

wherein the cable jacket comprises at least one material having a coefficient of friction ranging from about 0.04 to about 0.4, thereby allowing relative movement between the cable jacket and the cable core and/or optical fiber.

2. The fiber optic cable of claim 1 , wherein the cable jacket outer diameter J OD is about (0.19√N+0.4 mm) or less.

3. The fiber optic cable of claim 1 , wherein the plurality N of optical fibers is N≥8 and N≤16.

4. The fiber optic cable of claim 3 , wherein the plurality N of optical fibers is equal to 12.

5. The fiber optic cable of claim 1 , wherein the cable is free from yarn, fiber glass, and steel strength members.

6. The fiber optic cable of claim 1 , wherein the cladding has a cladding diameter less than about 100 microns.

7. The fiber optic cable of claim 1 , wherein the plurality of optical fibers has an average attenuation of less than about 0.5 dB/km at 1310 nm and less than about 0.4 dB/km at 1550 nm.

8. The fiber optic cable of claim 1 , wherein the cladding has a cladding diameter less than about 85 microns.

9. The fiber optic cable of claim 1 , wherein the coating diameter is less than about 170 microns.

10. The fiber optic cable of claim 1 , wherein each optical fiber has an MFD greater than about 8.2 microns at a wavelength of 1310 nm and a cutoff wavelength less than 1280 nm.

11. The fiber optic cable of claim 1 , wherein the plurality of optical fiber N forms a hexagonal configuration in a pattern P.

12. The fiber optic cable of claim 11 , wherein the pattern P prevent uneven load distributions.

13. The fiber optic cable of claim 1 , wherein the plurality of optical fibers N includes long fibers and short fibers and wherein excess fiber length between the long fibers and the short fibers is within about 0.010%.

14. The fiber optic cable of claim 1 , wherein the plurality of optical fibers N includes long fibers and short fibers and wherein excess fiber length between the long fibers and the short fibers is within about 0.005%.

15. The fiber optic cable of claim 1 , wherein the cable jacket inner diameter J ID is about 15% greater than the width of four stacked optical fibers in the plurality of optical fibers N.

16. The fiber optic cable of claim 1 , wherein the cable jacket inner diameter J ID is about 20% greater than the width of four stacked optical fibers in the plurality of optical fibers N.

17. A fiber optic cable, comprising:

a cable jacket having an outer diametrical surface defined by a cable jacket outer diameter J OD and an inner diametrical surface defined by a cable jacket inner diameter J ID ;

a plurality N of optical fibers, where N≥4, contained within the cable jacket and positioned a distance away from the cable jacket inner diameter,

wherein each optical fiber comprises a core, the core having an outer radius r 1 ;

a cladding surrounding the core, the cladding having an outer radius r 4 , wherein r 4 is less than 45 microns;

a primary coating surrounding the cladding, the primary coating having an outer radius r 5 _and a thickness t P >10 microns, an in situ modulus E P , wherein E P is 0.35 MPa or less, and a spring constant χ P <1.6 MPa, where χ P =2E P r 4 /t P ; and

a secondary coating surrounding the primary coating, the secondary coating having an outer radius r 6 and a thickness t S =r 6 −r 5 , and an in situ modulus of 1200 MPa or greater;

wherein t S is greater than 10 microns, the outer radius r 6 is about 90 microns or less, and the optical fiber has a mode field diameter 1MFD greater than about 8.2 microns at 1310 nm, a fiber cutoff wavelength of less than 1310 nm, and

the optical fiber exhibits a bend loss when wrapped around a mandrel having a diameter of 10 mm, of less than 1.0 dB/turn at a wavelength of 1550 nm.

18. The fiber optic cable of claim 17 , wherein χ P ≤1.3 MPa.

19. The fiber optic cable of claim 17 , where wherein the cable jacket comprises at least one material having a coefficient of friction ranging from about 0.04 to about 0.4.

20. An optical switch device, comprising the fiber optic cable of claim 17 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 28, 2021
From: BICKHAM, SCOTT ROBERTSON; HURLEY, WILLIAM CARL; NEUKIRCH, ULRICH WILHELM HEINZ; RIPUMAREE, RADAWAN
To: CORNING RESEARCH & DEVELOPMENT CORPORATION
Reel/Frame 056380/0199 →
Continuity (3)
Continuation PCTUS2019053047 · Sep 26, 2019
Provisional Application 62738174 · Sep 28, 2018
Related Publication 20210231896A1 · Jul 29, 2021
Cited By (1)
US 50,899