Claims
- 1. An inductive coupler for coupling a data signal to a phase line of a power line, comprising:
a split magnetic core having an aperture formed by a first section and a second section, wherein said aperture permits said phase line to pass therethrough as a primary winding, wherein said first section is for making electrical contact with an outer surface of said phase line, and wherein said second section makes electrical contact with said first section.
- 2. The inductive coupler of claim 1, further comprising a secondary circuit having a winding passing through said aperture as a secondary winding and providing a low impedance path for power frequency to an electrical ground.
- 3. The inductive coupler of claim 2, wherein said secondary circuit comprises a conductor that withstands a power line fault current for a period that exceeds a time required for a protective device to disconnect said power line fault current.
- 4. The inductive coupler of claim 2, wherein said low impedance path includes a choke having a center tap connected to said electrical ground.
- 5. The inductive coupler of claim 2, further comprising:
a circuit for canceling magnetic flux having (a) a winding passing through said aperture as a tertiary winding, and (b) a choke connected to said tertiary winding, wherein said circuit for canceling magnetic flux has a current induced therein that flows in a direction opposite to that of primary current in said phase line.
- 6. The inductive coupler of claim 5, wherein said tertiary winding, within said aperture, comprises an uninsulated conductor.
- 7. The inductive coupler of claim 5, wherein said tertiary winding is for making electrical contact with said outer surface of said phase line.
- 8. The inductive coupler of claim 5, wherein said choke includes a magnetic core.
- 9. The inductive coupler of claim 2, further comprising:
a circuit for canceling magnetic flux having (a) a winding passing through said aperture as a tertiary winding, and (b) a choke connected to said tertiary winding, wherein said first and second sections comprise a material that saturates at a level of magnetomotive force so as to limit current induced in said tertiary winding.
- 10. The inductive coupler of claim 1, further comprising:
a secondary circuit having a winding passing through said aperture as a secondary winding, wherein said secondary winding has an outer contour having a cross-sectional dimension that is greater than or equal to about 25% of an inner diameter of said second section.
- 11. The inductive coupler of claim 1, wherein said split magnetic core has sides perpendicular to said phase line and rounded in shape so as to provide a gradually increasing radial spacing between said split magnetic core and said phase line.
- 12. The inductive coupler of claim 1, wherein said first and second sections have opposing pole faces, with a pin protruding from one of said pole faces and a recess for receiving said pin in the other of said pole faces.
- 13. The inductive coupler of claim 1, further comprising:
gapping material between said first and second sections, wherein either of said first or second sections includes a pin that protrudes into said gapping material and stabilizes a position of said gapping material.
- 14. The inductive coupler of claim 13, wherein said gapping material is electrically conductive.
- 15. The inductive coupler of claim 1, further comprising:
a circuit for canceling magnetic flux having (a) a winding embedded in insulation and passing through said aperture as a secondary winding, and (b) a choke connected to said secondary winding, wherein said secondary winding includes a conductor having a cross-sectional area that is great enough to prevent thermal damage to said insulation when said conductor conducts a power frequency current.
- 16. The inductive coupler according to claim 15, wherein said choke includes a magnetic core.
- 17. The inductive coupler of claim 1, further comprising:
a circuit for canceling magnetic flux having (a) a winding embedded in insulation and passing through said aperture as a secondary winding, and (b) a choke connected to said secondary winding, wherein said first and second sections comprise a material that saturates at a level of magnetomotive force so as to limit current induced in said secondary winding.
- 18. The inductive coupler of claim 1, further comprising a loop for holding said inductive coupler.
- 19. The inductive coupler of claim 1, further comprising sheds for providing an elongated leakage path between said phase line and a grounded portion of said inductive coupler.
- 20. The inductive coupler of claim 1, wherein said first and second sections are coated with a conductive coating.
- 21. The inductive coupler of claim 1, further comprising a springy conductive body being in electrical contact with said first section and for providing an electrical contact with said outer surface of said phase line.
- 22. An inductive coupler for coupling a data signal to a phase line of a power line, comprising:
a split magnetic core having an aperture formed by a first section and a second section, wherein said aperture permits said phase line to pass therethrough as a primary winding; and a secondary circuit having a winding passing through said aperture as a secondary winding and providing a low impedance path for power frequency to an electrical ground.
- 23. The inductive coupler of claim 22, wherein said low impedance path includes a choke having a center tap connected to said electrical ground.
- 24. The inductive coupler of claim 23, wherein said secondary circuit comprises a conductor that withstands a power line fault current for a period that exceeds a time required for a protective device to disconnect said power line fault current.
- 25. The inductive coupler of claim 22, further comprising:
a circuit for canceling magnetic flux having (a) a winding passing through said aperture as a tertiary winding, and (b) a choke connected to said tertiary winding, wherein said circuit for canceling magnetic flux has a current induced therein that flows in a direction opposite to that of primary current in said phase line.
- 26. The inductive coupler of claim 25, wherein said tertiary winding, within said aperture, comprises an uninsulated conductor.
- 27. The inductive coupler of claim 25, wherein said tertiary winding is for making electrical contact with said outer surface of said phase line.
- 28. The inductive coupler of claim 25, wherein said choke includes a magnetic core.
- 29. The inductive coupler of claim 22, further comprising:
a circuit for canceling magnetic flux having (a) a winding passing through said aperture as a tertiary winding, and (b) a choke connected to said tertiary winding, wherein said first and second sections comprise a material that saturates at a level of magnetomotive force so as to limit current induced in said tertiary winding.
- 30. The inductive coupler of claim 22, wherein said first and second sections have opposing pole faces, with a pin protruding from one of said pole faces and a recess for receiving said pin in the other of said pole faces.
- 31. The inductive coupler of claim 22, further comprising:
gapping material between said first and second sections, wherein either of said first or second sections includes a pin that protrudes into said gapping material and stabilizes a position of said gapping material.
- 32. The inductive coupler of claim 22, further comprising:
a circuit for canceling magnetic flux having a choke connected to said secondary winding, wherein said secondary winding, within said aperture, is embedded in insulation and includes a conductor having a cross-sectional area that is great enough to prevent thermal damage to said insulation when said conductor conducts a power frequency current.
- 33. The inductive coupler according to claim 32, wherein said choke includes a magnetic core.
- 34. The inductive coupler of claim 22, further comprising:
a circuit for canceling magnetic flux having a choke connected to said secondary winding, wherein said secondary winding, within said aperture, is embedded in insulation, and wherein said first and second sections comprise a material that saturates at a level of magnetomotive force so as to limit current induced in said secondary winding.
- 35. The inductive coupler of claim 22, further comprising a loop for holding said inductive coupler.
- 36. A method of manufacturing an inductive coupler, comprising:
situating a magnetic core section over a secondary winding while also situating pole faces of said magnetic core section on a planar surface, such that said secondary winding is routed through an aperture formed between said planar surface and said magnetic core section; and injecting an insulating material into said aperture.
- 37. The method of claim 36, further comprising, before said situating, binding together a plurality of core section components to form said magnetic core section such that pole faces of said plurality of core section components are coplanar.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present application is claiming priority of U.S. Provisional Patent Application Serial No. 60/377,731, filed on May 3, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60377731 |
May 2002 |
US |