Claims
- 1. A tunable inductor comprising:
an elongate mandrel having a central axis, a first end, an opposed second end, an outer surface and an inner surface defining an inner cavity, and having a helical groove of predetermined pitch formed on said outer surface and extending in a direction from said first end toward said second end; a flange proximate said first end of said mandrel and positioned substantially perpendicular to said central axis of said mandrel, said flange having at least one guide member; a wire having a diameter, a first end and a second end, said wire being positioned within said helical groove of said mandrel and wound about said outer surface of said mandrel; and a turn member positioned a distance from said flange in the axial direction of said mandrel and protruding from said outer surface of said mandrel, said turn member being radially offset from one of said at least one guide member by an amount substantially equal to said diameter of said wire; wherein said turn member redirects said wire in a direction substantially parallel to said outer surface of said mandrel from said helical groove back toward said first end of said mandrel.
- 2. The inductor of claim 1, wherein said flange comprises a first portion having a first guide member and a second portion having a second guide member.
- 3. The inductor of claim 2, wherein said first guide member is formed as a through-hole in said first portion of said flange, and said second guide member is formed as a substantially U-shaped groove in said second portion of said flange.
- 4. The inductor of claim 2, wherein said wire starts in one of said first and said second guide members and ends in the other guide member.
- 5. The inductor of claim 3, wherein said wire starts in said first guide member and ends in said second guide member.
- 6. The inductor of claim 1, wherein said helical groove begins at a position proximate said first end of said mandrel and extends toward said second end over a predetermined distance along said central axis of said mandrel.
- 7. The inductor of claim 1, further comprising a tuning member positioned within said inner cavity of said mandrel.
- 8. The inductor of claim 1, wherein said wire is coated with an insulating material.
- 9. The inductor of claim 8, further comprising at least one layer of an electrically insulating material surrounding substantially all of said outer surface of said elongate mandrel, including the entire portion thereof over which said wire is wound and including the portion of said wire being redirected from said turn member in a direction substantially parallel to said central axis of said mandrel back toward said first end of said mandrel.
- 10. The inductor of claim 1, further comprising at least one layer of an electrically insulating material covering substantially all of said wire residing within said helical groove.
- 11. The inductor of claim 10, further comprising a second layer of an electrically insulating material covering said first layer and that portion of said wire being redirected from said turn member in a direction substantially parallel to said central axis of said mandrel back toward said first end of said mandrel.
- 12. The inductor of claim 1, further comprising at least one anti-rotation member proximate said first end of said mandrel and positioned beneath said flange.
- 13. The inductor of claim 1, wherein said pitch of said helical groove is substantially equal to said diameter of said wire.
- 14. The inductor of claim 1, wherein said turn member protrudes from said outer surface of said mandrel in a direction substantially perpendicular to the central axis of said mandrel.
- 15. A tunable inductor comprising:
an elongate mandrel having a central axis, a first end, an opposed second end, an outer surface and an inner surface defining an inner cavity, and having a helical groove of predetermined pitch formed on said outer surface and extending in a direction from said first end toward said second end; a wire having a diameter, a first end and a second end, said wire being positioned within said helical groove of said mandrel an d wound about said central axis of said mandrel; and a turn member protruding from said outer surface of said mandrel for redirecting said wire from said helical groove back toward said first end of said mandrel in a direction substantially parallel to said outer surface of said mandrel.
- 16. The inductor of claim 15, further comprising a flange proximate said first end of said mandrel and positioned substantially perpendicular to said central axis of said mandrel, said flange having at least one guide member.
- 17. The inductor of claim 15, wherein said turning member is positioned a predetermined distance from said flange in the axial direction of said mandrel.
- 18. The inductor of claim 16, wherein said turn member is radially offset from said at least one said guide member by an amount substantially equal to said diameter of said wire.
- 19. The inductor of claim 15, wherein said helical groove begins at a position proximate said first end of said mandrel and extends toward said second end over a predetermined distance along said central axis of said mandrel.
- 20. The inductor of claim 16, further comprising at least one anti-rotation member proximate said first end of said mandrel and positioned beneath said flange.
- 21. The inductor of claim 15, wherein said pitch of said helical groove is substantially equal to said diameter of said wire.
- 22. The inductor of claim 16, wherein said flange comprises a first portion having a first guide member and a second portion having a second guide member.
- 23. The inductor of claim 22, wherein said first guide member is formed as a through-hole in said first portion of said flange, and said second guide member is formed as a substantially U-shaped groove in said second portion of said flange.
- 24. The inductor of claim 15, further comprising a tuning member positioned within said inner cavity of said mandrel.
- 25. An electronic filter comprising at least one tunable inductor, said tunable inductor comprising:
an elongate mandrel having a central axis, a first end, an opposed second end, an outer surface and an inner surface defining an inner cavity, and having a helical groove of predetermined pitch formed on said outer surface and extending in a direction from said first end toward said second end; a wire having a diameter, a first end and a second end, said wire being positioned within said helical groove of said mandrel and wound about said central axis of said mandrel; and a turn member protruding from said outer surface of said mandrel for redirecting said wire from said helical groove toward said first end of said mandrel in a direction substantially parallel to said outer surface of said mandrel.
- 26. The electronic filter of claim 25, wherein said at least one inductor further comprises a flange proximate said first end of said mandrel and positioned substantially perpendicular to said central axis of said mandrel, said flange having at least one guide member.
- 27. The electronic filter of claim 26, wherein said turning member of said at least one inductor is positioned a distance from said flange in the axial direction of said mandrel.
- 28. The electronic filter of claim 26, wherein said turn member of said at least one inductor is radially offset from one of said at least one guide member by an amount substantially equal to said diameter of said wire.
- 29. The electronic filter of claim 25, wherein said helical groove of said at least one inductor begins at a position proximate said first end of said mandrel and extends toward said second end over a predetermined distance along said central axis.
- 30. The electronic filter of claim 26, further comprising at least one anti-rotation member having a predetermined shape proximate said first end of said mandrel and positioned beneath said flange.
- 31. The electronic filter of claim 30, wherein said filter further comprises a circuit board having a first surface, a second surface, and at least one opening passing from said first surface to said second surface thereof, said opening being shaped to compliment said predetermined shape of said anti-rotation member to prevent said inductor from rotating with respect to said circuit board.
- 32. The electronic filter of claim 31, wherein said flange is positioned proximate said first surface of said circuit board.
- 33. A tunable inductor comprising:
an elongate mandrel having a central axis, a first end, an opposed second end, an outer surface and an inner surface defining an inner cavity; a flange proximate said first end of said mandrel and positioned substantially perpendicular to said central axis of said mandrel; a wire having a diameter, a first end and a second end, said wire being wound about said outer surface of said mandrel from a position proximate said first end of said mandrel toward said second end of said mandrel; a turn member positioned a distance from said flange in the axial direction of said mandrel and protruding from said outer surface of said mandrel, wherein said turn member redirects said wire in a direction substantially parallel to said outer surface of said mandrel back toward said first end of said mandrel; and means for maintaining the position of said wire with respect to said mandrel.
- 34. The inductor of claim 33, further comprising at least one guide member positioned in a portion of said flange, wherein said turn member is radially offset from one of said at least one guide member by an amount substantially equal to said diameter of said wire.
- 35. The inductor of claim 33, wherein said means for maintaining the position of said wire with respect to said mandrel comprises at least one layer of an electrically insulating material covering substantially all of said wire wound about said mandrel.
- 36. The inductor of claim 35, wherein said means for maintaining the position of said wire with respect to said mandrel further comprises a second layer of an electrically insulating material covering said first layer and that portion of said wire being redirected from said turn member in a direction substantially parallel to said outer surface of said mandrel back toward said first end of said mandrel.
- 37. The inductor of claim 33, wherein said wire is coated with an insulating material.
- 38. The inductor of claim 37, wherein said means for maintaining the position of said wire with respect to said mandrel comprises at least one layer of an electrically insulating material substantially surrounding substantially all of said outer surface of said mandrel, including the entire portion thereof over which said wire is wound and including the portion of said wire being redirected from said turn member in a direction substantially parallel to said outer surface of said mandrel back toward said first end of said mandrel.
- 39. A tunable inductor comprising:
an elongate mandrel extending in a first direction from a first end toward an opposed second end and having a central axis, an outer surface and an inner surface defining an inner cavity; a flange proximate said first end of said mandrel and positioned substantially perpendicular to said central axis of said mandrel, said flange having a first surface and an opposed second surface adapted to rest on a surface of a circuit board; an extension member extending beyond said flange in a second direction substantially opposite to said first direction, said extension member having an outer surface and an inner surface that is substantially contiguous with said inner surface of said mandrel to define an extension of said inner cavity of said mandrel; a wire having a diameter, a first end and a second end, said wire being wound about said outer surface of said mandrel from a position proximate said first end of said mandrel toward said second end of said mandrel; and a tuning member having an initial position located within the inner cavity of said extension beyond a flux field created by said wire wound on said mandrel, such that said tuning member in said initial position does not substantially affect the inductance of the inductor.
- 40. The inductor of claim 39, further comprising at least one anti-rotation member positioned on said outer surface of said extension member.
- 41. The inductor of claim 39, further comprising means for maintaining the position of said wire with respect to said mandrel.
- 42. The inductor of claim 39, wherein said tuning member does not substantially extend beyond said flange.
- 43. The inductor of claim 39, further comprising a turn member positioned a distance from said flange in the first direction and protruding from said outer surface of said mandrel, wherein said turn member redirects said wire in said second direction such that said redirected wire extends substantially parallel to said outer surface back toward said first end of said mandrel;
- 44. The inductor of claim 43, further comprising a first guide member positioned in a first portion of said flange, wherein said turn member is radially offset from said first guide member by an amount substantially equal to said diameter of said wire.
- 45. The inductor of claim 44, further comprising a second guide member positioned in a second portion of said flange substantially opposing said first portion.
- 46. The inductor of claim 39, wherein said flange further comprises first and second guide members for receiving portions of said wire proximate said first and second ends of said wire, and at least one stepped portion positioned proximate each of said first and said second guide members on said second surface, said at least one stepped portion being dimensioned to receive a portion of said wire extending through a respective one of said first and said second guide members such that said wire does not extend from said at least one stepped portion beyond the plane of said second surface of said flange.
- 47. The inductor of claim 46, wherein said at least one stepped portion positioned proximate said first guide member redirects said wire in a third direction substantially perpendicular to said central axis of said mandrel, and said at least one stepped portion positioned proximate said second guide member redirects said wire in a fourth direction substantially perpendicular to said central axis of said mandrel and substantially opposing said third direction.
- 48. A method of making a tunable inductor having a predetermined inductance value comprising the steps of:
providing an elongate mandrel having a central axis, a first end, an opposed second end, an outer surface, an inner surface defining an inner cavity, and a flange proximate said first end and arranged substantially perpendicular to said central axis of said mandrel, said flange having a first portion having a first guide member and a second portion having a second guide member, said mandrel further comprising a helical groove of predetermined pitch formed on said outer surface and extending in a direction from said first end toward said second end; positioning a turn member protruding from said outer surface of said mandrel at a predetermined axial distance from said flange; positioning a first end section of a wire in one of said first and said second guide members; winding the wire in said helical groove to a position proximate said turn member; bendably positioning said wire about said turning member to redirect said wire back toward said flange in a direction substantially parallel to said outer surafce of said mandrel; and positioning a second end section of the wire in the other one of said first and said second guide members; whereby the position of said turn member determines the inductance value of said inductor.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Patent Application No. 60/346,822, filed Jan. 8, 2002, the entirety of which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60346822 |
Jan 2002 |
US |