IP Library Granted Patent US 12706232
Granted Patent B2
US 12706232 · App. 17/909,970 · Granted Aug 11, 2026

Cable system

Inventors: Michael Ainger (London, GB); Michael Dixon (London, GB); Nathan Kelly (London, GB); David Stockton (London, GB)
Assignee: Landways Management Limited
H01B9/003G02B6/4452G02B6/4453G02B6/4457G02B6/52H01B7/183H01B11/16H01B11/22
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Quick Facts
Patent No.
US 12706232
App. No.
17/909,970
Granted
Aug 11, 2026
Kind
B2
Abstract

The invention provides a cable for power distribution and/or data transmission, the cable comprising a core comprising one or more metallic conductors and a sheath surrounding the core, the sheath being formed from a polymer having a tensile modulus of at least 1.5 GPa, wherein the outside diameter of the sheath is no more than 13.5 mm and the stiffness of the cable is at least 0.01 Nm 2 . Advantageously, embodiments of the cable can be readily blown and pushed through a microduct without deforming.

Claims (23)

1 . A cable for power distribution and/or data transmission, the cable comprising:

a core comprising one or more metallic conductors; and

a sheath surrounding the core, the sheath being formed from a polymer having a tensile modulus of at least 1.5 GPa;

wherein the outside diameter of the sheath is no more than 13.5 mm; and

the stiffness of the cable is at least 0.01 Nm 2 .

2 . A cable according to claim 1 , wherein the outside diameter of the sheath is at least 4.5 mm.

3 . A cable according to claim 1 , comprising a barrier layer around the core, between the core and the sheath.

4 . A cable according to claim 3 , wherein the barrier layer is formed from a tape wound spirally around the core or applied longitudinally around the core.

5 . A cable according to claim 1 , comprising an electrical insulating sleeve around the or each metallic conductor.

6 . A cable according to claim 1 , wherein the core comprises a plurality of twisted metallic conductor pairs.

7 . A cable according to claim 1 , wherein the outer surface of the sheath has a coefficient of friction of 0.3 or less.

8 . A cable according to claim 1 , wherein the sheath is fire retardant.

9 . A cable according to claim 1 , wherein the tensile modulus of the polymer from which the sheath is formed is at least 2 GPa.

10 . A cable according to claim 1 , wherein the stiffness of the cable is in the range 0.01 to 0.1 Nm 2 .

11 . A cable according to claim 1 , wherein the power transmission capacity of the cable is at least 70W.

12 . A cable system comprising:

one or more bundles or microducts, each bundle comprising a plurality of microducts;

at least one optical fibre installed in one of the plurality of microducts; and

at least one metallic conductor cable installed in another of the plurality of microducts, wherein the at least one metallic conductor cable includes a core comprising one or more metallic conductors, a sheath surrounding the core, wherein the sheath is formed from a polymer having a tensile modulus of at least 1.5 GPa, wherein an outside diameter of the sheath is no more than 13.5 mm, and wherein the stiffness of the cable is at least 0.01 Nm2.

13 . A method of installing cables, comprising:

installing one or more microduct bundles, each bundle comprising a plurality of microducts;

blowing at least one optical fibre into one of the plurality of microducts; and

blowing at least one metallic conductor cable into another of the plurality of microducts, wherein the at least one metallic conductor cable includes a core comprising one or more metallic conductors, a sheath surrounding the core, wherein the sheath is formed from a polymer having a tensile modulus of at least 1.5 GPa, wherein an outside diameter of the sheath is no more than 13.5 mm, and wherein the stiffness of the cable is at least 0.01 Nm2.