Claims
- 1. An optical cable with a cable core composed of a multiplicity of strand elements and an outer sheath layer which envelops the cable core, wherein the strand elements each comprise a multiplicity of bundles loosely arranged in a first sheath, and the bundles are composed of a multiplicity of unstranded optical waveguides running substantially parallel to each other which are tightly encircled by a thin-walled second sheath.
- 2. An optical cable according to claim 1, wherein the wall thickness of the second sheath is no greater than 0.25 mm.
- 3. An optical cable according to claim 1, wherein the first sheath comprises a mechanically stable material.
- 4. An optical cable according to claim 1, wherein the first sheath comprises a thin-walled metal pipe.
- 5. An optical cable according to claim 1, wherein the first sheath is composed of a plastic tube on the basis of hard polyethylene or polypropylene which is stable with respect to transverse compression.
- 6. An optical cable according to claim 1, wherein the strand elements are stranded around a central element.
- 7. An optical cable according to claim 1, wherein the bundles are filled with a material preventing longitudinal migration of water.
- 8. An optical cable according to claim 1, wherein the strand elements are filled with a material preventing a longitudinal migration of water.
- 9. An optical cable according to claim 1, wherein the second sheath is composed of a soft, easily torn plastic.
- 10. A method for the production of an optical cable with a cable core composed of a multiplicity of strand elements and an outer sheath layer which envelops the cable core, wherein the strand elements each comprise a multiplicity of bundles loosely arranged in a first sheath, and the bundles are composed of a multiplicity of unstranded optical waveguides running substantially parallel to each other which are tightly encircled by a thin-walled second sheath, said method comprising the steps of:in a first extruder, providing a sheath of plastic around bundled optical waveguides drawn from supply reels; bringing said sheathed bundles to a cladding system substantially parallel to each other and there loosely encircling said sheathed bundles in a further sheath to form a plurality of elements; stranding said elements; and applying an outer sheath to the stranded elements.
- 11. A method according to claim 10, wherein the bundles are provided with a sheath of a hard plastic.
- 12. A method according to claim 10, wherein the bundles are encircled with a metal pipe.
- 13. an optical cable according to claim 7, wherein said material comprises petroleum jelly.
- 14. An optical cable according to claim 9, wherein said easily torn plastic is soft polyethylene.
- 15. A method according to claim 10, wherein said elements are stranded together.
- 16. A method according to claim 10, wherein said elements are stranded around a central element.
Priority Claims (1)
Number |
Date |
Country |
Kind |
199 00 214 |
Jan 1999 |
DE |
|
Parent Case Info
This application is based on and claims the benefit of German Patent Application No. 199 00 214.2 filed Jan. 7, 1999, which is incorporated by reference herein.
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Number |
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Date |
Kind |
4176910 |
Noethe |
Dec 1979 |
A |
4331379 |
Oestreich et al. |
May 1982 |
A |
5222173 |
Bausch |
Jun 1993 |
A |