Claims
- 1. An optical waveguide fiber comprising:
a core having a refractive index profile defined by a radius and a relative refractive index percent, wherein the core contains germania; and a clad layer surrounding and in contact with the core and having a refractive index profile defined by a radius and a relative refractive index percent; wherein the core and the clad layer provide an effective area greater than about 90 μm2; and wherein the fiber contains substantially no fluorine.
- 2. The optical waveguide fiber of claim 1 wherein the core and the clad layer provide an effective area of between about 90 μm2 and about 115 μm2.
- 3. The optical waveguide fiber of claim 1 wherein the core and the clad layer provide an effective area of between about 95 μm2 and about 110 μm2.
- 4. The optical waveguide fiber of claim 1 wherein the core and the clad layer provide an effective area of about 101 μm2.
- 5. The optical waveguide fiber of claim 1 wherein the core and the cladding define a step-index profile.
- 6. The optical waveguide fiber of claim 1 wherein the relative refractive index of the core is within the range of from about 0.20% to about 0.35%.
- 7. The optical waveguide fiber of claim 1 wherein the relative refractive index of the core is within the range of from about 0.24% to about 0.33%
- 8. The optical waveguide fiber of claim 1 wherein the radius of the core is within the range of from about 4.0 μm to about 7.0 μm.
- 9. The optical waveguide fiber of claim 1 wherein the radius of the core is within the range of from about 4.5 μm to about 6.5 μm.
- 10. The optical waveguide fiber of claim 1 wherein the core has an alpha greater than about 5.
- 11. The optical waveguide fiber of claim 1 wherein the core has an alpha between about 7 and about 14.
- 12. The optical waveguide fiber of claim 1 wherein the fiber has a cabled cutoff wavelength of less than or equal to about 1500 nm.
- 13. The optical waveguide fiber of claim 1 wherein the fiber has a cabled cutoff wavelength of between about 1200 nm and about 1500 nm.
- 14. The optical waveguide fiber of claim 1 wherein the fiber has a cabled cutoff wavelength of between about 1250 nm and about 1400 nm.
- 15. The optical waveguide fiber of claim 1 wherein the fiber has a cabled cutoff wavelength of between about 1300 nm and about 1375 nm.
- 16. The optical waveguide fiber of claim 1 wherein the fiber exhibits macrobending loss less than about 15 dB/m in a 20 mm, 5 turn test.
- 17. The optical waveguide fiber of claim 1 wherein the fiber exhibits macrobending loss less than about 10 dB/m in a 20 mm, 5 turn test.
- 18. The optical waveguide fiber of claim 1 wherein the fiber exhibits macrobending loss less than about 5 dB/m in a 20 mm, 5 turn test.
- 19. The optical waveguide fiber of claim 1 wherein the fiber further comprises a primary coating surrounding the clad layer and a secondary coating surrounding the primary coating.
- 20. The optical waveguide fiber of claim 19 wherein the primary coating has a modulus of elasticity of less than about 5 MPa.
- 21. The optical waveguide fiber of claim 19 wherein the secondary coating has a modulus of elasticity of greater than about 700 MPa.
- 22. The optical waveguide fiber of claim 1 wherein the fiber exhibits microbending loss of less than about 3.0 dB/m.
- 23. The optical waveguide fiber of claim 1 wherein said fiber exhibits microbending loss of less than about 2.0 dB/m.
- 24. The optical waveguide fiber of claim 1 wherein said fiber exhibits microbending loss of less than about 1.5 dB/m.
- 25. The optical waveguide fiber of claim 1 wherein said fiber exhibits microbending loss of less than about 1.0 dB/m.
- 26. The optical waveguide fiber of claim 1 wherein said fiber exhibits microbending loss of less than about 0.8 dB/m.
- 27. The optical waveguide fiber of claim 1 wherein said fiber exhibits microbending loss of less than about 0.5 dB/m.
- 28. The optical waveguide fiber of claim 1 wherein the attenuation of the optical fiber at 1383 nm is not more than 0.1 dB/km higher than its attenuation at 1310 nm.
- 29. The optical waveguide fiber of claim 1 wherein the attenuation of the optical fiber at 1383 nm is not more than 0.05 dB/km higher than its attenuation at 1310 nm.
- 30. The optical waveguide fiber of claim 1 wherein the attenuation of the optical fiber at 1383 nm is not more than 0.01 dB/km higher than its attenuation at 1310 nm.
- 31. The optical waveguide fiber of claim 1 wherein the attenuation of the optical fiber at 1383 nm is less than or about equal to than its attenuation at 1310 nm.
- 32. The optical waveguide fiber of claim 1 wherein the fiber exhibits a PMD of less than about 0.1 ps/km1/2.
- 33. The optical waveguide fiber of claim 1 wherein said fiber exhibits a PMD of less than about 0.05 ps/km1/2.
- 34. The optical waveguide fiber of claim 1 wherein said fiber exhibits a PMD of less than about 0.01 ps/km1/2.
- 35. The optical waveguide fiber of claim 1 wherein said fiber exhibits a PMD of less than or equal to about 0.006 ps/km1/2.
- 36. The optical waveguide fiber of claim 1 wherein the fiber exhibits an attenuation at a wavelength of about 1550 nm of less than or equal to about 0.25 dB/km.
- 37. The optical waveguide fiber of claim 1 wherein the fiber exhibits an attenuation at a wavelength of about 1550 nm of less than or equal to about 0.22 dB/km.
- 38. The optical waveguide fiber of claim 1 wherein the fiber exhibits an attenuation at a wavelength of about 1550 nm of less than or equal to about 0.2 dB/km.
- 39. The optical waveguide fiber of claim 1 wherein the fiber exhibits an attenuation at a wavelength of about 1550 nm of less than about 0.185 dB/km.
- 40. The optical waveguide fiber of claim 1 wherein the fiber exhibits a total dispersion within the range of about 16 ps/nm-km to about 22 ps/nm-km at a wavelength of about 1560 nm.
- 41. An optical waveguide fiber comprising:
a core having a refractive index profile defined by a radius and a relative refractive index percent with an alpha greater than about 5, wherein the core contains germania and wherein the relative refractive index of the core is within the range of about 0.20% to about 0.35% and the radius of the core is within the range of from about 4.0 μm to about 7.0 μm; and a clad layer surrounding and in contact with the core and having a refractive index profile defined by a radius and a relative refractive index percent; wherein the fiber contains substantially no fluorine.
- 42. The optical waveguide fiber of claim 41 wherein the relative refractive index of the core is within the range of from about 0.24% to about 0.33%
- 43. The optical waveguide fiber of claim 41 wherein the radius of the core is within the range of from about 4.5 μm to about 6.5 μm.
- 44. The optical waveguide fiber of claim 41 wherein the core has an alpha between about 7 and about 14.
- 45. The optical waveguide fiber of claim 41 wherein the core and the cladding define a step-index profile.
- 46. The optical waveguide fiber of claim 41 wherein the core and the cladding define a step-index profile.
- 47. The optical waveguide fiber of claim 41 wherein the fiber further comprises a primary coating surrounding the clad layer, and a secondary coating surrounding the primary coating.
- 48. The optical waveguide fiber of claim 47 wherein the primary coating has a modulus of elasticity of less than about 5 MPa.
- 49. The optical waveguide fiber of claim 47 wherein the secondary coating has a modulus of elasticity of greater than about 700 MPa.
- 50. The optical waveguide fiber of claim 41 wherein the attenuation of the optical fiber at 1383 nm is not more than 0.1 dB/km higher than its attenuation at 1310 nm.
- 51. The optical waveguide fiber of claim 41 wherein the attenuation of the optical fiber at 1383 nm is not more than 0.05 dB/km higher than its attenuation at 1310 nm.
- 52. The optical waveguide fiber of claim 41 wherein the attenuation of the optical fiber at 1383 nm is not more than 0.01 dB/km higher than its attenuation at 1310 nm.
- 53. The optical waveguide fiber of claim 41 wherein the attenuation of the optical fiber at 1383 nm is less than or about equal to than its attenuation at 1310 nm.
- 54. The optical waveguide fiber of claim 41 wherein the fiber exhibits a PMD of less than about 0.1 ps/km1/2.
- 55. The optical waveguide fiber of claim 41 wherein said fiber exhibits a PMD of less than about 0.05 ps/km1/2.
- 56. The optical waveguide fiber of claim 41 wherein said fiber exhibits a PMD of less than about 0.01 ps/km1/2.
- 57. An optical waveguide fiber comprising:
a core having a refractive index profile defined by a radius and a relative refractive index percent, wherein the core contains germania; and a clad layer surrounding and in contact with the core and having a refractive index profile defined by a radius and a relative refractive index percent; wherein the core and the clad layer provide an effective area greater than about 90 μm2; and wherein the fiber exhibits a PMD of less than about 0.1 ps/km1/2.
- 58. An optical waveguide fiber comprising:
a core having a refractive index profile defined by a radius and a relative refractive index percent, wherein the core contains germania; and a clad layer surrounding and in contact with the core and having a refractive index profile defined by a radius and a relative refractive index percent; wherein the core and the clad layer provide an effective area greater than about 90 μm2; and wherein the attenuation of the optical fiber at 1383 nm is not more than 0.1 dB/km higher than its attenuation at 1310 nm.
- 59. An optical signal transmission system comprising:
a transmitter; a receiver; an optical transmission line optically coupled to the transmitter and receiver, wherein the optical transmission line comprises:
at least one optical fiber section having a core and a clad layer which define a step-index profile that provides an effective area greater than about 90 μm2, wherein the fiber exhibits an attenuation at 1383 nm which is not more than 0.1 dB/km higher than its attenuation at 1310 nm.
- 60. The system of claim 59 wherein the core contains germania.
- 61. The system of claim 59 wherein the fiber contains substantially no fluorine.
- 62. The system of claim 59 wherein the fiber section exhibits a total dispersion within the range of about 16 ps/nm-km to about 22 ps/nm-km at a wavelength of about 1560 nm.
- 63. The system of claim 59 wherein the fiber section exhibits a PMD of less than about 0.1 ps/km1/2.
- 64. The system of claim 59 further comprising at least one Raman amplifier optically coupled to the optical fiber section.
- 65. The system of claim 59 further comprising a multiplexer for interconnecting a plurality of channels capable of carrying optical signals onto the optical transmission line, wherein at least one of the optical signals propagates at a wavelength between about 1300 nm and 1625 nm.
- 66. The system of claim 65 wherein at least one of the optical signals propagates at a wavelength between about 1330 nm and 1480 nm.
- 67. The system of claim 59 wherein the system is capable of operating in a coarse wavelength division multiplex mode.
RELATED APPLICATIONS
[0001] This application claims the benefit of the priority date of commonly assigned U.S. Provisional Patent Application Nos. 60/254,909 and 60/276,350.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60254909 |
Dec 2000 |
US |
|
60276350 |
Mar 2001 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09996632 |
Nov 2001 |
US |
Child |
10449121 |
May 2003 |
US |