IP Library Granted Patent US 8,519,699
Granted Patent B2
US 8,519,699 · App. 12/661,161 · Granted Aug 27, 2013

Electrical coil and manufacturing process therefor

Inventors: Mikio Kurosawa (Sagamihara, JP); Takashi Kato (Kawasaki, JP)
Assignee: LEM Intellectual Property SA
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Quick Facts
Patent No.
US 8,519,699
App. No.
12/661,161
Granted
Aug 27, 2013
Kind
B2
Abstract

An electrical current sensor is disclosed having conducting coil portion and an insulating body portion, the conducting coil portion comprising a coil portion with one or more helical windings made of a wire conductor and encircling a central cavity. Adjacent windings are separated by a dielectrically effective gap, wherein the insulating body portion comprises a dielectric spacer comprising a helical gap maintaining protuberance configured for insertion in the central cavity of the windings such that the gap maintaining protuberance is at least partially inserted in the gap between windings.

Claims (17)

1. Electrical current sensor comprising a conducting coil portion and an insulating body portion, the conducting coil portion comprising a coil portion with one or more windings made of a wire conductor and surrounding a central cavity, adjacent windings being separated by a dielectrically effective gap, wherein the insulating body portion comprises a dielectric spacer comprising a gap maintaining protuberance in the form of a continuous or non-continuous helical thread configured for screw insertion in the central cavity of the windings or around the windings such that the gap maintaining protuberance is at least partially inserted in the gap between windings.

2. Electrical current sensor according to claim 1 wherein the wire conductor is a bare conductor wire.

3. Electrical current sensor according to claim 1 wherein the wire conductor has a cross-section area greater than 0.3 mm2 and the coil conducting portion has less than 10 windings.

4. Electrical current sensor according to claim 1 wherein the wire conductor has an essentially rectangular cross-section of height H and width W.

5. Electrical current sensor according to claim 4 wherein the ratio of the width to the height (W/H) of the wire conductor is in the range of 0.4 to 0.8.

6. Electrical current sensor according to claim 1 wherein the dielectrically effective gap (G) between the turns is smaller than 1 mm.

7. Electrical current sensor according to claim 1 wherein the insulating body portion further comprises a dielectric overmolding encapsulating at least partially the windings of the conducting coil portion.

8. Electrical current sensor according to claim 7 wherein the dielectric overmolding projects at least partially into the gap between adjacent windings ( 20 ) of the coil portion.

9. Electrical current sensor according to claim 7 or 8 wherein the overmolding is an injected polymer encapsulating the conducting coil portion and filling the gap between the coil windings up to and around the inserted spacer, the spacer and encapsulation providing an integral body portion completely surrounding the windings of the conductor portion, connection ends of the conducting coil portion protruding from the overmolding.

10. Electrical current sensor comprising a conducting coil portion and an insulating body portion, the conducting coil portion comprising a coil portion with one or more windings made of a wire conductor and surrounding a central cavity, adjacent windings being separated by a dielectrically effective gap (G), wherein the insulating body portion comprises a dielectric spacer comprising a gap maintaining protuberance in the form of a continuous or non-continuous helical thread configured for screw insertion in the central cavity of the windings or around the windings such that the gap maintaining protuberance is at least partially inserted in the gap (G) between windings, and wherein the insulating body portion further comprises a dielectric overmolding encapsulating at least partially the windings of the conducting coil portion.

11. Electrical current sensor according to claim 10 wherein the wire conductor is a bare conductor wire.

12. Electrical current sensor according to claim 10 wherein the wire conductor has a cross-section area greater than 0.3 mm2 and the coil conducting portion has less than 10 windings.

13. Electrical current sensor according to claim 10 wherein the wire conductor has an essentially rectangular cross-section of height H and width W.

14. Electrical current sensor according to claim 10 wherein the ratio of the width to the height (W/H) of the wire conductor is in the range of 0.4 to 0.8.

15. Electrical current sensor according to claim 11 wherein the dielectrically effective gap (G) between the turns is smaller than 1 mm.

16. Electrical current sensor according to claim 10 wherein the dielectric overmolding projects at least partially into the gap (G) between adjacent windings of the coil portion.

17. Electrical current sensor according to claim 10 wherein the overmolding is an injected polymer encapsulating the conducting coil portion and filling the gap (G) between the coil windings up to and around the inserted spacer, the spacer and encapsulation providing an integral body portion completely surrounding the windings of the conductor portion, connection ends of the conducting coil portion protruding from the overmolding.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 26, 2020
From: LEM INTELLECTUAL PROPERTY SA
To: LEM INTERNATIONAL SA
Reel/Frame 052746/0901 →
CHANGE OF NAME Recorded Jul 26, 2013
From: LIAISONS ELECTRONIQUES-MECANIQUES LEM SA
To: LEM INTELLECTUAL PROPERTY SA
Reel/Frame 030889/0876 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 11, 2010
From: KUROSAWA, MIKIO; KATO, TAKASHI
To: LIAISONS ELECTRONIQUES-MECANIGUES LEM SA
Reel/Frame 024121/0344 →
Priority Claims (1)
EP 09155058 · Mar 12, 2009 · regional
Continuity (1)
Related Publication 20100231200A1 · Sep 16, 2010