IP Library Granted Patent US 12,444,520
Granted Patent B2
US 12,444,520 · App. 18/947,641 · Granted Oct 14, 2025

Low-profile cable armor

Inventors: Peter Lafreniere (Mattapoisett, MA); Stephen Lundgren (Marion, MA); Paulo Damoura (Dorchester, MA); Ronald Pegg (New Bedford, MA); Antonio Araujo (New Bedford, MA); David Campbell (Bristol, RI)
Assignee: AFC Cable Systems, Inc.
H01B7/226H01B7/04
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Quick Facts
Patent No.
US 12,444,520
App. No.
18/947,641
Granted
Oct 14, 2025
Kind
B2
Abstract

Disclosed is an armored cable assembly which may include a plurality of conductors and a metal sheath disposed over the plurality of conductors. The metal sheath may have a plurality of revolutions extending helically along a lengthwise axis, each of the plurality of revolutions including a first section having a curved profile, a second section extending from the first section, the second section having a planar profile, and a third section extending from the second section. The third section may include a free end angled towards an interior cavity of the metal sheath, the free end extending past a plane defined by a bottom most point of the first section of an adjacent revolution, the plane extending perpendicular to the second section.

Claims (20)

1. A metal sheath for housing a plurality of conductors, the metal sheath comprising a plurality of revolutions extending along a lengthwise axis, a first revolution of the plurality of revolutions comprising:

a first section having an arcuate profile extending into an interior cavity of the metal sheath;

a second section extending from the first section, wherein a length of the second section is at least 1.25 times as large as a diameter of the first section; and

a third section extending from the second section, the third section terminating within a recess defined by an arcuate profile of a first section of an adjacent revolution of the plurality of revolutions such that the first revolution and the adjacent revolution interlock,

wherein the first section and the second section of the first revolution connect at a first point, wherein the second section and the third section of the first revolution connect at a second point, wherein the adjacent revolution has a second section extending from the first section of the adjacent revolution, wherein the first section and the second section of the adjacent revolution connect at a first point of the adjacent revolution, and wherein a distance between the second point of the first revolution and the first point of the adjacent revolution defines a valley open to an exterior of the metal sheath.

2. The metal sheath of claim 1 , wherein the plurality of revolutions extend helically along the lengthwise axis.

3. The metal sheath of claim 1 , wherein the distance between the second point of the first revolution and the first point of the adjacent revolution is less than the diameter of the first section of the first revolution when the metal sheath is in a linear configuration.

4. The metal sheath of claim 3 , wherein the length of the second section of the first revolution is at least two times as large as the distance between the second point of the first revolution and the first point of the adjacent revolution when the metal sheath is in the linear configuration.

5. A metal sheath for housing a plurality of conductors, the metal sheath comprising a plurality of revolutions extending along a lengthwise axis, a first revolution of the plurality of revolutions comprising:

a first section having a curved profile extending into an interior cavity of the metal sheath;

a second section extending from the first section, wherein a length of the second section is at least 1.25 times as large as a diameter of the first section; and

a third section extending from the second section, the third section terminating within a recess defined by a curved profile of a first section of an adjacent revolution of the plurality of revolutions such that the first revolution and the adjacent revolution interlock,

wherein the first section and the second section of the first revolution connect at a first point, wherein the second section and the third section of the first revolution connect at a second point, wherein the adjacent revolution has a second section extending from the first section of the adjacent revolution, wherein the first section and the second section of the adjacent revolution connect at a first point of the adjacent revolution, wherein a distance between the second point of the first revolution and the first point of the adjacent revolution defines a valley open to an exterior of the metal sheath.

6. The metal sheath of claim 5 , wherein the second section of the first revolution extends parallel to the lengthwise axis.

7. The metal sheath of claim 5 , wherein the distance between the second point of the first revolution and the first point of the adjacent revolution is less than the diameter of the first section of the first revolution when the metal sheath is in a linear configuration.

8. The metal sheath of claim 7 , wherein the length of the second section of the first revolution is at least three times as large as the distance between the second point of the first revolution and the first point of the adjacent revolution when the metal sheath is in the linear configuration.

9. A metal strip configured as a series of convolutions, a first convolution of the series of convolutions comprising:

a first section having a curved profile, wherein the curved profile is concave relative to an interior of the series of convolutions;

a second section extending from the first section at a first point, wherein a length of the second section is at least 1.25 times as large as a diameter of the first section; and

a third section extending from the second section at a second point, the third section terminating within a recess defined by a curved profile of a first section of an adjacent convolution of the series of convolutions, wherein the adjacent convolution further comprises a second section connected to the first section at a first point of the adjacent convolution, wherein a distance between the second point of the first convolution and the first point of the adjacent convolution defines a portion of a valley, and wherein the portion of the valley is open to an exterior of the metal strip.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2025
From: LAFRENIERE, PETER; LUNDGREN, STEPHEN; DAMOURA, PAULO; PEGG, RONALD; ARAUJO, ANTONIO; CAMPBELL, DAVID
To: AFC CABLE SYSTEMS, INC.
Reel/Frame 070217/0310 →
Continuity (6)
Continuation 18608343 · Mar 18, 2024
Continuation 18234999 · Aug 17, 2023
Continuation 17699349 · Mar 21, 2022
Continuation 17408629 · Aug 23, 2021
Continuation 16578842 · Sep 23, 2019
Related Publication 20250069780A1 · Feb 27, 2025
References Cited (2)
US 2486387A · Bringolf · 1949 [cited by examiner]
US 12165791B2 · Lafreniere · 2024 [cited by examiner]
Cited By (1)
US 1,129,391