IP Library Granted Patent US 6,866,448
Granted Patent B2
US 6,866,448 · App. 10/051,597 · Granted Mar 15, 2005

Fiber optic installation

Assignee: CCS Technology, Inc.
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Quick Facts
Patent No.
US 6,866,448
App. No.
10/051,597
Granted
Mar 15, 2005
Kind
B2
Abstract

The invention relates to a process for introducing an optical cable, in the form of a microcable or minicable ( 1 ), in solid ground ( 17 ) with the aid of a laying unit ( 23 ). The microcable or minicable ( 1 ) used for this purpose comprises a homogeneous and pressurized-water-tight tube ( 8 ) which has an external diameter of from 2.0 to 10 mm and into which optical waveguides ( 3 ) are introduced.

Claims (58)

1. A fiber optic cable installation structure comprising:

a surface defining a channel having a width of about 12 mm or less;

a cable disposed within the channel, said cable comprising a tube sized to fit within the channel and at least one optical waveguide disposed within said tube; and

a filling material overlying said cable and at least partially filling the channel, said filling material at least partially comprised of material not previously evacuated to form the channel.

2. The fiber optic cable installation structure according to claim 1 wherein said cable has a diameter of about 10 mm or less.

3. The fiber optic cable installation structure according to claim 1 wherein said surface defines the channel to have a width of about 7 mm or less.

4. The fiber optic cable installation structure according to claim 3 wherein said cable has a diameter of about 5.5 mm or less.

5. The fiber optic cable installation structure according to claim 1 wherein the surface defines the channel to have a depth of about 15 cm or less.

6. The fiber Optic cable installation structure according to claim 1 wherein said surface comprises a solid surface selected from the group consisting of asphalt, concrete, road surface, curbstone, and stone slab.

7. The fiber optic cable installation structure according to claim 1 wherein the surface comprises a base course, a binder course disposed upon said base course and a surface course disposed upon said binder course, and wherein the surface defines the channel at least into the surface course.

8. The fiber optic cable installation structure according to claim 1 wherein said surface comprises a paved surface defining at least one expansion joint which serves as the channel.

9. The fiber optic cable installation structure according to claim 1 further comprising a release element disposed within the channel and extending lengthwise along said cable, said filling material also overlying said release element.

10. The fiber optic cable installation structure according to claim 9 wherein said release element is formed of a material selected from the group consisting of metal, plastic and foam rubber.

11. The fiber optic cable installation structure according to claim 9 wherein said release element is formed of a core surrounded by an elastic coating.

12. The fiber optic cable installation structure according to claim 11 wherein the core of said release element is at least as large as said cable.

13. The fiber optic cable installation structure according to claim 1 further comprising an intermediate covering disposed within the channel and overlying said cable, said filling material also overlying said intermediate covering.

14. The fiber optic cable installation structure according to claim 13 wherein said intermediate covering comprises at least one insert selected from the group consisting of wires and sensors.

15. The fiber optic cable installation structure according to claim 1 wherein said filling material is formed off a material selected from the group consisting of bitumen and a hot melt adhesive.

16. The fiber optic cable installation structure according to claim 1 wherein said filling material includes a marker.

17. The fiber optic cable installation structure according to claim 16 wherein the marker includes fibers selected from the group consisting of glass fibers and metal fibers.

18. The fiber optic cable installation structure according to claim 1 further comprising at least one magnet disposed within the channel, said filling material also overlying said at least one magnet.

19. The fiber optic cable installation structure according to claim 1 further comprising a device, disposed within the channel between said cable and said filling material, for holding said cable within the channel.

20. The fiber optic cable installation structure according to claim 1 further comprising a from at least partially surrounding said cable, said filling material also overlying said foam.

21. The fiber optic cable installation structure according to claim 1 further comprising a conductive cable disposed within the channel, said filling material also overlying said conductive cable.

22. A fiber optic cable installation structure comprising:

a surface defining a channel;

a cable disposed within the channel, said cable comprising a tube and at least one optical waveguide disposed within said tube;

a release element disposed within the channel and extending lengthwise along said cable; and

a filling material overlying said cable and said release element and at least partially filling the channel.

23. The fiber optic cable installation structure according to claim 22 wherein said release element is formed of a material selected from the group consisting of metal, plastic and foam rubber.

24. The fiber optic cable installation structure according to claim 22 wherein said release element is formed of a core surrounded by an elastic coating.

25. The fiber optic cable installation structure according to claim 24 wherein the core of said release element is at least as large as said cable.

26. The fiber optic cable installation structure according to claim 22 further comprising an intermediate covering disposed within the channel between said cable and said release element.

27. The fiber optic cable installation structure according to claim 26 wherein said intermediate covering comprises at least one insert selected from the group consisting of wires and sensors.

28. The fiber optic cable installation structure according to claim 22 wherein said surface defines the channel to have a width of about 12 mm or less.

29. The fiber optic cable installation structure according to claim 28 wherein said cable has a diameter of about 10 mm or less.

30. The fiber optic cable installation structure according to claim 22 wherein said surface defines the channel to have a width of about 7 mm or less.

31. The fiber optic cable installation structure according to claim 30 wherein said cable has a diameter of about 5.5 mm or less.

32. The fiber optic cable installation structure according to claim 22 wherein the surface defines the channel to have a depth of about 15 cm or less.

33. The fiber optic cable installation structure according to claim 22 wherein said surface comprises a solid surface selected from the group consisting of asphalt, concrete, road surface, curbstone, and stone slab.

34. The fiber optic cable installation structure according to claim 33 wherein the road surface comprises a base course, a binder course disposed upon said base course and a surface course disposed upon said binder course, and wherein the surface defines the channel at least into the surface course.

35. The fiber optic cable installation structure according to claim 33 wherein the marker includes fibers selected from the group consisting of glass fibers and metal fibers.

36. The fiber optic cable installation structure according to claim 22 wherein said surface comprises a paved surface defining at least one expansion joint which serves as the channel.

37. The fiber optic cable installation structure according to claim 22 wherein said filling material is formed of a material selected from the group consisting of bitumen and a hot melt adhesive.

38. The fiber optic cable installation structure according to claim 22 wherein said filling material includes a marker.

39. A fiber optic installation structure comprising:

an elongate body defining at least one lengthwise extending duct disposed within a laying channel defined by a solid surface;

at least one optical waveguide disposed within at least one lengthwise extending duct defined by said elongate body; and

a filling material overlying said elongate body and at least partially filling the laying channel.

40. The fiber optic installation structure according to claim 39 wherein said elongate body is sized to fit within the laying channel having a width of about 12 mm or less.

41. The fiber optic installation structure according to claim 39 wherein said elongate body is sized to fit within the laying channel having a width of about 7 mm or less.

42. The fiber optic installation structure according to claim 39 wherein said elongate body comprises a plurality of barbs for engaging walls that define the channel.

43. The fiber optic installation structure according to claim 39 wherein said elongate body is sheathed by said filling material.

44. The fiber optic installation structure according to claim 39 wherein said elongate body defines a slot opening into the duct.

45. The fiber optic installation structure according to claim 44 further comprising a cable inserted into the duct via the slot, said cable comprising a tube and said at least one optical waveguide disposed within said tube.

46. The fiber optic cable installation structure according to claim 39 wherein said solid surface is selected from the group consisting of asphalt, concrete, road surface, curbstone, and stone slab.

47. The fiber optic cable installation structure according to claim 39 wherein said solid surface is a paved surface.

48. The fiber optic cable installation structure according to claim 39 wherein the solid surface defines the laying channel to have a depth of about 15 cm or less.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 8, 2002
From: SIEMENS AKTIENGESELLSCHAFT
To: CCS TECHNOLOGY, INC.
Reel/Frame 013362/0204 →
Priority Claims (8)
DE 195 42 231 · Nov 13, 1995 · national
DE 196 12 457 · Mar 28, 1996 · national
DE 195 16 596 · Apr 25, 1996 · national
DE 196 16 595 · Apr 25, 1996 · national
DE 196 16 598 · Apr 25, 1996 · national
DE 196 23 483 · Jun 12, 1996 · national
DE 196 33 366 · Aug 19, 1996 · national
DE 196 40 290 · Sep 30, 1996 · national
Continuity (2)
Continuation 0906828600
Related Publication 20020061231A1 · May 23, 2002