IP Library › Granted Patent US 8,081,856
Granted Patent B2
US 8,081,856 · App. 13/113,668 · Granted Dec 20, 2011

Optical fiber and optical cable

Assignee: Sumitomo Electric Industries, Ltd.
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Quick Facts
Patent No.
US 8,081,856
App. No.
13/113,668
Granted
Dec 20, 2011
Kind
B2
Abstract

Provided is an optical fiber that has a small bending loss, can be securely prevented from being fractured due to accidental bending during installation or other operations, and is compliant with the G. 652 standard. An optical fiber 1 includes a core 11 , a first cladding 12 , a second cladding 13 , and a third cladding 14 . The relative refractive index difference Δ 1 of the core 11 is in the range of 0.3% to 0.38%, the relative refractive index difference Δ 2 of the first cladding 12 is equal to or smaller than 0%, and the relative refractive index difference Δ 3 of the second cladding 13 is in the range of −1.8% to −0.5%. The inner radius r 2 and the outer radius r 3 of the second cladding 13 satisfy the expression “0.4r 2 +10.5<r 3 <0.2r 2 +16”, and the inner radius r 2 of the second cladding 13 is equal to or greater than 8 μm. The bending loss at a wavelength of 1550 nm and at a radius of curvature of 7.5 mm is smaller than 0.1 dB/turn, and the bending loss at a wavelength of 1625 nm and at a radius of curvature of 4 mm is greater than 0.1 dB/turn.

Claims (71)

1. An optical fiber comprising a core having a refractive index n 1 , a first cladding surrounding the core and having a refractive index n 2 smaller than the refractive index n 1 , a second cladding surrounding the first cladding and having a refractive index n 3 smaller than the refractive index n 2 , and a third cladding surrounding the second cladding and having a refractive index n 4 greater than the refractive index n 3 ,

wherein, with respect to the refractive index n 4 of the third cladding, the relative refractive index difference of the core is in the range of 0.3% to 0.38%, the relative refractive index difference of the first cladding is in the range of −0.3% to 0.2%, and the relative refractive index difference of the second cladding is larger than −1.8%,

wherein the inner radius r 2 of the second cladding and the outer radius r 3 of the second cladding satisfy the expression,

0.4 r 2 +10.5 <r 3 <0.2 r 2 +16

and the inner radius r 2 of the second cladding is equal to or greater than 8 μM, and

wherein the bending loss at a wavelength of 1550 nm and at a radius of curvature of 7.5 mm is smaller than 0.1 dB/turn, and the bending loss at a wavelength of 1625 nm and at a radius of curvature of 4 mm is greater than 0.1 dB/turn.

2. The optical fiber according to claim 1 ,

wherein the radius r 1 of the core and the outer radius r 2 of the first cladding satisfy the expression,

r

2

r

1

>

-

1

3.3

×

ln

⁡

(

0.1

310

×

C

OH

)

,

and the transmission loss at a wavelength of 1380 nm is smaller than 0.38 dB/km.

3. The optical fiber according to claim 1 ,

wherein the mode field diameter at a wavelength of 1310 nm is in the range of 8.6 μM to 9.2 μm, and the mode field diameter at a wavelength of 1550 nm is in the range of 9.6 μm to 10.5 μm.

4. The optical fiber according to claim 1 ,

wherein a carbon coated layer is disposed on a surface of a glass portion of the optical fiber.

5. An optical cable comprising:

the optical fiber according to claim 1 ;

a sheath disposed around the optical fiber; and

Kevlar disposed between the optical fiber and the sheath.

6. An optical cable comprising:

the optical fiber according to claim 1 ; and

a sheath covering the optical fiber,

wherein the optical cable does not include Kevlar, and the optical cable has an outer diameter smaller than 3 mm.

7. The optical cable according to claim 6 ,

wherein a loss increase is smaller than 0.1 dB/km at a wavelength of 1550 nm and at a temperature of −30° C.

8. An optical cable comprising:

the optical fiber according to claim 1 ;

a tension member disposed parallel to the optical fiber; and

a sheath covering the optical fiber and the tension member,

wherein a groove is formed along the optical fiber in a surface of the sheath.

9. An optical cable comprising:

the optical fiber according to claim 1 ; and

a sheath covering the optical fiber,

wherein the optical cable does not include a tension member, and a groove is formed along the optical fiber in a surface of the sheath.

10. An optical cable comprising a plurality of the optical fibers according to claim 1 ,

wherein the plurality of optical fibers are arranged in parallel and integrally covered with resin, and a loss increase during a mid-span access for wire splitting operation is smaller than 0.5 dB/km/s at a wavelength of 1550 nm.

11. An optical cable comprising:

the optical fiber according to claim 1 ; and

a sheath covering the optical fiber that is helically coiled,

wherein the radius of curvature of the optical fiber is equal to or smaller than 7.5 mm.

12. An optical cable comprising:

a plurality of the optical fibers according to claim 1 ; and

a sheath covering the plurality of optical fibers that are helically coiled,

wherein the radius of curvature of each of the plurality of optical fibers is equal to or smaller than 7.5 mm.

13. An optical module storing the optical fiber according to claim 1 .

14. An optical transmission system that transmits signal light using the optical cable according to claim 5 .

15. An optical transmission system that transmits signal light using the optical cable according to claim 6 .

16. An optical transmission system that transmits signal light using the optical cable according to claim 8 .

17. An optical transmission system that transmits signal light using the optical cable according to claim 9 .

18. An optical transmission system that transmits signal light using the optical cable according to claim 10 .

19. An optical transmission system that transmits signal light using the optical cable according to claim 11 .

20. An optical transmission system that transmits signal light using the optical cable according to claim 12 .

21. The optical fiber according to claim 1 ,

wherein the relative refractive index difference of the second cladding is smaller than −0.5%.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 25, 2011
From: NAKANISHI, TETSUYA; SATOU, FUMIAKI; AIHARA, KATSUYUKI; MIYANO, HIROSHI; SASAKI, TAKASHI
To: SUMITOMO ELECTRIC INDUSTRIES, LTD.
Reel/Frame 026809/0176 →
Priority Claims (1)
JP 2008-041821 · Feb 22, 2008 · national
Continuity (2)
Continuation 12663178
Related Publication 20110222824A1 · Sep 15, 2011