IP Library › Granted Patent US 8,466,365
Granted Patent B2
US 8,466,365 · App. 13/541,794 · Granted Jun 18, 2013

Shielded electrical cable

Inventor: Douglas B. Gundel (Cedar Park, TX)
Assignee: 3M Innovative Properties Company
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Quick Facts
Patent No.
US 8,466,365
App. No.
13/541,794
Granted
Jun 18, 2013
Kind
B2
Abstract

A shielded electrical cable includes conductor sets extending along a length of the cable and spaced apart from each other along a width of the cable. First and second shielding films are disposed on opposite sides of the cable and include cover portions and pinched portions arranged such that, in transverse cross section, the cover portions of the films in combination substantially surround each conductor set. An adhesive layer bonds the shielding films together in the pinched portions of the cable. A transverse bending of the cable at a cable location of no more than 180 degrees over an inner radius of at most 2 mm causes a cable impedance of the selected insulated conductor proximate the cable location to vary by no more than 2 percent from an initial cable impedance measured at the cable location in an unbent configuration.

Claims (31)

1. A shielded electrical cable, comprising:

a plurality of conductor sets extending along a length of the cable and being spaced apart from each other along a width of the cable, each conductor set including one or more insulated conductors;

first and second shielding films disposed on opposite sides of the cable, the first and second films including cover portions and pinched portions arranged such that, in transverse cross section, the cover portions of the first and second films in combination substantially surround each conductor set, and the pinched portions of the first and second films in combination form pinched portions of the cable on each side of each conductor set; and

a first adhesive layer bonding the first shielding film to the second shielding film in the pinched portions of the cable;

wherein:

the plurality of conductor sets comprises a first conductor set that comprises neighboring first and second insulated conductors and has corresponding first cover portions of the first and second shielding films and corresponding first pinched portions of the first and second shielding films forming a first pinched cable portion on one side of the first conductor set;

a selected one of the insulated conductors has a wire diameter no greater than 24 American wire gauge (AWG); and

wherein a transverse bending of the cable at a cable location of 180 degrees over an inner radius of at most 2 mm causes a cable impedance of the selected insulated conductor proximate the cable location to vary by no more than 2 percent from an initial cable impedance measured at the cable location in an unbent configuration.

2. A cable according to claim 1 , wherein the wire diameter of the selected insulated conductor is no greater than 26 AWG, and wherein a transverse bending of a cable location of no more than 180 degrees over an inner radius of at most 1 mm causes the cable impedance of the selected insulated conductor proximate the cable location to vary by no more than 1 percent from the initial cable impedance.

3. A cable according to claim 1 , wherein the selected insulated conductor is part of a selected one of the conductor sets that includes at least two insulated conductors each having a wire diameter no greater than 24 AWG and a nominal differential impedance of 100 ohms, and wherein the transverse bending of the cable causes a differential cable impedance of the selected conductor set proximate the cable location to vary by no more than 2 ohms from an initial differential cable impedance measured at the cable location in the unbent configuration.

4. A cable according to claim 1 , wherein the cable further comprises a bend of at least 45 degrees around a fold line that extends across a width of the cable, wherein the bend has an inner radius of at most 5 mm.

5. A shielded electrical cable, comprising:

a plurality of conductor sets extending along a length of the cable and being spaced apart from each other along a width of the cable, each conductor set including one or more insulated conductors;

first and second shielding films disposed on opposite sides of the cable, the first and second films including cover portions and pinched portions arranged such that, in transverse cross section, the cover portions of the first and second films in combination substantially surround each conductor set, and the pinched portions of the first and second films in combination form pinched portions of the cable on each side of each conductor set; and

a first adhesive layer bonding the first shielding film to the second shielding film in the pinched portions of the cable;

wherein:

the plurality of conductor sets comprises a first conductor set that comprises neighboring first and second insulated conductors and has corresponding first cover portions of the first and second shielding films and corresponding first pinched portions of the first and second shielding films forming a first pinched cable portion on one side of the first conductor set;

a selected one of the insulated conductors has a wire diameter no greater than 24 American wire gauge (AWG); and

wherein a transverse bending of the cable at a cable location of 90 degrees over an inner radius of at most 5 mm causes an insertion loss of the selected insulated conductor proximate the cable location to vary by no more than 0.5 dB from an initial insertion loss measured at the cable location in an unbent configuration.

6. A cable according to claim 5 , wherein the cable further comprises a bend of at least 45 degrees around a fold line that extends across a width of the cable, wherein the bend has an inner radius of at most 5 mm.

7. A cable assembly, comprising:

a shielded electrical cable comprising:

a plurality of conductor sets extending along a length of the cable and being spaced apart from each other along a width of the cable, each conductor set including one or more insulated conductors;

first and second shielding films disposed on opposite sides of the cable, the first and second films including cover portions and pinched portions arranged such that, in transverse cross section, the cover portions of the first and second films in combination substantially surround each conductor set, and the pinched portions of the first and second films in combination form pinched portions of the cable on each side of each conductor set;

a first adhesive layer bonding the first shielding film to the second shielding film in the pinched portions of the cable; and

a bend in the cable of 45 or 90 degrees around a fold line that extends across a width of the cable, wherein the bend has an inner radius of at most 5 mm; wherein:

the plurality of conductor sets comprises a first conductor set that comprises neighboring first and second insulated conductors and has corresponding first cover portions of the first and second shielding films and corresponding first pinched portions of the first and second shielding films forming a first pinched cable portion on one side of the first conductor set; and

an electrical connector encompassing at least the bend in the cable, wherein at least one of the insulated conductors is electrically coupled to at least one contact of the electrical connector.

8. A cable assembly according to claim 7 , wherein the electrical connector comprises an overmold formed onto the cable.

9. A cable assembly according to claim 7 , wherein the cable further comprises a second bend not encompassed by the electrical connector, the second bend being of at least 45 degrees around a second fold line that extends across a width of the cable, wherein the second bend has an inner radius of at most 5 mm.

10. The cable assembly according to claim 7 , wherein the at least one conductor set is adapted for maximum data transmission rates of at least 1 Gb/s.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 5, 2012
From: GUNDEL, DOUGLAS B.
To: 3M INNOVATIVE PROPERTIES COMPANY
Reel/Frame 028490/0218 →
Continuity (3)
Continuation PCTUS2010060629 · Dec 16, 2010
Provisional Application 61378872 · Aug 31, 2010
Related Publication 20120298395A1 · Nov 29, 2012