IP Library Granted Patent US 7,254,303
Granted Patent B2
US 7,254,303 · App. 10/807,530 · Granted Aug 7, 2007

Optical tube assembly having a dry insert and methods of making the same

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Quick Facts
Patent No.
US 7,254,303
App. No.
10/807,530
Granted
Aug 7, 2007
Kind
B2
Abstract

An optical tube assembly and method of manufacture include at least one optical waveguide, at least one dry insert that generally surrounds the at least one optical waveguide, and a tube. The dry insert includes a tape and at least one filament attached to the tape, thereby forming a plurality of loops. In preferred embodiments, either the tape or the at least one filament of the dry insert has a water-swellable component. Additionally, the optical tube assembly may be a portion of a fiber optic cable.

Claims (57)

1. An optical tube assembly comprising:

a tube;

at least one optical waveguide, the optical waveguide being disposed in the tube; and

a dry insert, the dry insert comprising a tape and at least one filament attached to the tape so that the at least one filament forms a plurality of loops on the tape, the dry insert being disposed adjacent to the at least one optical waveguide and coupling the at least optical waveguide with the tube while maintaining an optical attenuation below about 0.3 dB/km.

2. The optical tube assembly of claim 1 , the dry insert having at least one water-swellable substance for blocking the migration of water along the tube.

3. The optical tube assembly of claim 1 , the dry insert being compressed by about 10% or more, thereby coupling the at least one optical waveguide with the tube.

4. The optical tube assembly of claim 3 , the dry insert having at least one water-swellable substance for blocking the migration of water along the tube.

5. The optical tube assembly of claim 1 , the dry insert being compressed by about 90% or less, thereby coupling the at least one optical waveguide with the tube.

6. The optical tube assembly of claim 1 , the at least one filament of the dry insert having a water-swellable component.

7. The optical tube assembly of claim 1 , the at least one optical waveguide and the dry insert forming a core, the core having a pull-out force between about 0.2 N/m and about 5.0 N/m for a 100 meter length.

8. The optical tube assembly of claim 1 , the at least one optical waveguide and the dry insert forming a core, the core having a pull-out force between about 1 N/m and about 3 N/m for a 100 meter length.

9. The optical tube assembly of claim 1 , the dry insert having the at least one filament attached to the tape so that the uncompressed height of the dry insert is about 5 millimeters or less.

10. The optical tube assembly of claim 1 , the dry insert disposed so that the at least one filament is facing towards the at least one optical waveguide.

11. The optical tube assembly of claim 1 , the dry insert having the at least one filament on a first side of the tape and a second filament on a second side of the tape.

12. The optical tube assembly of claim 1 , the dry insert having a height h that varies across a width w of the dry insert.

13. The optical tube assembly of claim 1 , the dry insert having a plurality of filaments that are intermittently attached to the tape.

14. The optical tube assembly of claim 1 , the optical tube assembly being a portion of a fiber optic cable.

15. The optical tube assembly of claim 1 , further including a strength member.

16. An optical tube assembly comprising:

a tube, the tube having an interior surface;

at least one optical waveguide, the optical waveguide being disposed in the tube; and

a dry insert, the dry insert is disposed adjacent to the at least one optical waveguide and comprises a tape and at least one filament attached to the tape, thereby forming a plurality of loops with the filament on the tape, wherein either the tape or the at least one filament has a water-swellable component and the dry insert is compressed at least 10 percent for coupling the at least one waveguide to the interior surface of the tube.

17. The optical tube assembly of claim 16 , the compression of the dry insert being about 90% or less.

18. The optical tube assembly of claim 16 , the tape of the dry insert being a foam tape.

19. The optical tube assembly of claim 16 , the water-swellable component being a water-swellable tape.

20. The optical tube assembly of claim 16 , the dry insert having a first type of filament and a second type of filament.

21. The optical tube assembly of claim 16 , the at least one optical waveguide and the dry insert forming a core, the core having a pull-out force between about 0.2 N/m and about 5.0 N/m for a 100 meter length.

22. The optical tube assembly of claim 16 , the at least one optical waveguide and the dry insert forming a core, the core having a pull-out force between about 1 N/m and about 3 N/m for a 100 meter length.

23. The optical tube assembly of claim 16 , the dry insert having an uncompressed height of about 5 millimeters or less.

24. The optical tube assembly of claim 16 , the dry insert generally surrounding the at least one optical waveguide.

25. The optical tube assembly of claim 16 , the at least one filament of the dry insert having a water-swellable component.

26. The optical tube assembly of claim 16 , the dry insert being formed from two or more water-swellable components.

27. The optical tube assembly of claim 16 , the dry insert having a height h that varies across a width w of the dry insert.

28. The optical tube assembly of claim 16 , the dry insert having a plurality of filaments that are intermittently attached to the tape.

29. The optical tube assembly of claim 16 , the optical tube assembly being a portion of a fiber optic cable.

30. The optical tube assembly of claim 16 , further including a strength member.

31. An optical tube assembly comprising:

a tube, the tube having an interior surface;

at least one optical waveguide, the optical waveguide being disposed in the tube; and

a dry insert, the dry insert comprising a tape and at least one filament attached to the tape to form a plurality of loops on the tape, wherein the dry insert and the at least one optical waveguide form a core disposed within the tube, the core having a pull-out force between about 0.2 N/m and about 5.0 N/m for a 100 meter length.

32. The optical tube assembly of claim 31 , the at least one optical waveguide and the dry insert forming a core, the core having a pull-out force between about 1 N/m and about 3 N/m for a 100 meter length.

33. The optical tube assembly of claim 32 , the dry insert having at least one water-swellable substance for blocking the migration of water along the tube.

34. The optical tube assembly of claim 31 , the dry insert having a height h that varies across a width w of the dry insert.

35. The optical tube assembly of claim 31 , the compression of the dry insert being about 10% or more.

36. The optical tube assembly of claim 31 , the compression of the dry insert being about 90% or less.

37. The optical tube assembly of claim 31 , the dry insert having at least one water-swellable substance for blocking the migration of water along the tube.

38. The optical tube assembly of claim 36 , the dry insert having a first type of filament and a second type of filament.

39. The optical tube assembly of claim 31 , the dry insert having an uncompressed height of about 5 millimeters or less.

40. The optical tube assembly of claim 31 , the dry insert having a plurality of filaments that are intermittently attached to the tape.

41. The optical tube assembly of claim 31 , the optical tube assembly being a portion of a fiber optic cable.

42. The optical tube assembly of claim 31 , further including a strength member.

43. A method of manufacturing an optical tube assembly comprising:

paying off at one optical waveguide;

placing a dry insert adjacent to the at least one optical waveguide, thereby forming a dry core, wherein the dry insert comprises a tape and at least one filament attached to the tape so that the at least one filament forms a plurality of loops on the tape; and

extruding a tube around the dry core.

44. The method according to claim 43 , the method further comprising extruding a cable jacket around the optical tube assembly.

45. The method according to claim 43 , the dry insert having at least one water-swellable substance for blocking the migration of water along the tube.

Assignments (2)
CHANGE OF NAME Recorded Sep 23, 2016
From: CORNING CABLE SYSTEMS LLC
To: CORNING OPTICAL COMMUNICATIONS LLC
Reel/Frame 040126/0818 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2004
From: PARSONS, ALAN T.
To: CORNING CABLE SYSTEMS LLC
Reel/Frame 015133/0316 →