IP Library Granted Patent US 10,180,551
Granted Patent B2
US 10,180,551 · App. 13/524,188 · Granted Jan 15, 2019

Optical fiber cable bundle

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Quick Facts
Patent No.
US 10,180,551
App. No.
13/524,188
Granted
Jan 15, 2019
Kind
B2
Abstract

Fiber optic bundles include helically stranded subunit cables. The assemblies have small cross sections and low bend radii while maintaining acceptable attenuation losses. Binders can be omitted to improve ease of processing and installation. Helically stranding of the subunit cables allows ease of access to the individual cables during installation.

Claims (26)

1. A fiber optic cable bundle, comprising:

an inner layer of at least one subunit fiber optic cable; and

an outer layer of a plurality of subunit fiber optic cables helically stranded about the inner layer, wherein the inner layer comprises a single subunit and the outer layer comprises five subunits, wherein the outer layer of subunits comprises the exterior perimeter of the bundle and the bundle is free of external binders and a jacket, wherein a helical lay length of the outer layer is between 40-60 mm, and wherein each subunit fiber optic cable comprises:

at least one optical fiber;

a layer of loose tensile strength members surrounding the at least one optical fiber; and

a polymeric subunit jacket surrounding the layer of loose tensile strength members; and

wherein the bundle is free of a glass-reinforced plastic (GRP) strength member.

2. The fiber optic cable bundle of claim 1 , wherein a helical lay length of the outer layer is between 45-55 mm.

3. A fiber optic cable bundle, comprising:

an inner layer of at least one subunit fiber optic cable; and

an outer layer of a plurality of subunit fiber optic cables helically stranded about the inner layer, wherein each subunit fiber optic cable comprises:

at least one optical fiber;

a layer of loose tensile strength members surrounding the at least one optical fiber; and

a polymeric subunit jacket surrounding the layer of loose tensile strength members;

wherein a helical lay length of the outer layer is between 50-70 mm, wherein the subunits of the inner and outer layers are helically stranded with high bundle integrity, and wherein the bundle is held together without binders, at least in part, by selecting a proper helical lay-lengths.

4. A fiber optic cable bundle, comprising:

an inner layer of at least one subunit fiber optic cable; and

an outer layer of a plurality of subunit fiber optic cables helically stranded about the inner layer, the inner layer comprises one central subunit and the outer layer comprises eight subunits, the subunit in the inner layer having an outside diameter that is greater than an outside diameter of the eight subunits in the outer layer, and wherein each subunit fiber optic cable comprises:

at least one optical fiber;

a layer of loose tensile strength members surrounding the at least one optical fiber; and

a polymeric subunit jacket surrounding the layer of loose tensile strength members;

wherein a helical lay length of the outer layer is between 50-70 mm and a diameter of the subunit in the inner layer is in the range of 2.8-3.0 mm;

wherein a diameter of the subunits in the outer layer is in the range of 1.6-1.7 mm;

wherein the tensile strength members comprise aramid yarn;

wherein the bundle is free of a glass-reinforced plastic (GRP) strength member; and

wherein the outer layer of subunits comprises the exterior perimeter of the bundle and the bundle is free of external binders and a jacket.

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 Jun 18, 2012
From: HUDSON, EDWARD H.; HURLEY, WILLIAM C.; MCALPINE, WARREN W.; SEDDON, DAVID A.
To: CORNING CABLE SYSTEMS LLC
Reel/Frame 028389/0876 →