Claims
- 1. A method of manufacturing a surface mount circulator, the steps comprising:
forming a laminar assembly having a transmission line conductor interposed between at least two insulating layers, the outer surface of each said insulating layer being metallized and said line conductor having at least two co-planar axes of symmetry, said line conductor further having at least three ports; said ports formed by providing a plurality of holes through said laminar assembly, each of said plurality of holes being positioned within said insulating regions and passing through said transmission line conductor; forming an electrical circulator by placing ferrite in proximity to said transmission line conductor; plating through said plurality of holes with a conductive material, said conductive material in said plurality of holes being in electrical contact with said transmission line conductor and insulated from said metallization on said outer services of said insulating layers; and, cutting said laminar assembly along said axes of symmetry of said transmission line conductor to form duplicate strip line circuit component packages, each package having electrical contact pads formed by bisecting said plurality of holes, said plurality of bisected holes forming electrical contact pads with said transmission line conductor, said electrical contact pads forming low loss transition couplings at each of said locations where said transmission line conductor intersects said axes of symmetry of said transmission line conductor.
- 2. The method of claim 1 further comprising:
placing said ferrite in an inlay, said inlay formed on an interior side of at least one of said insulating layers.
- 3. The method of claim 1 further comprising:
placing magnetic means such that a magnetic field is applied through said ferrite.
- 4. The method of claim 3 further comprising:
placing said ferrite in an inlay, said inlay formed on an interior side of at least one of said insulating layers.
- 5. The method of claim 3 wherein said magnetic means comprises a permanent magnet.
- 6. The method of claim 5 further comprising:
placing said ferrite in an inlay, said inlay formed on an interior side of at least one of said insulating layers.
- 7. The method of claim 5 wherein said magnet is placed in an inlay formed on an interior side of at least one of said insulating layers.
- 8. The method of claim 7 further comprising:
placing said ferrite in an inlay, said inlay formed on a interior side of at least one of said insulating layers.
- 9. The method of claim 5 wherein said magnet is placed external to said laminate assembly.
- 10. The method of claim 9 further comprising:
placing said ferrite in an inlay, said inlay formed on an interior side of at least one of said insulating layers.
- 11. The method of claim 3 wherein said magnetic means comprises magnetic material selected from the group consisting of magnetic powder and magnetic paste.
- 12. The method of claim 11 further comprising:
placing said ferrite in an inlay, said inlay formed on an interior side of at least one of said insulating layers.
- 13. The method of claim 11 wherein said magnetic means is placed in an inlay formed on an interior side of at least one of said insulating layers.
- 14. The method of claim 13 further comprising:
placing said ferrite in an inlay, said inlay formed on an interior side of at least one of said insulating layers.
- 15. The method of claim 1, further comprising:
placing a steel plate between said ferrite and at least one of said insulating layers.
- 16. The method of claim 1, further comprising:
applying heat and pressure to bond said laminar assembly; and cooling said laminar assembly.
- 17. A surface mount circulator comprising:
a laminar assembly having a transmission line conductor interposed between at least two insulating layers, the outer surface of each said insulating layer being metallized and said line conductor having at least two co-planar axes of symmetry, said line conductor further having at least three ports; said ports formed by a plurality of holes through said laminar assembly, each of said plurality of holes being positioned within said insulating regions and passing through said transmission line conductor; a ferrite positioned in proximity to said transmission line conductor; said plurality of holes being plated through with a conductive material, said conductive material in said plurality of holes being in electrical contact with said transmission line conductor and insulated from said metallization on said outer services of said insulating layers; and, electrical contact pads formed by bisecting said plurality of holes, said plurality of bisected holes forming electrical contact pads with said transmission line conductor, said electrical contact pads forming low loss transition couplings at each of said locations where said transmission line conductor intersects said axes of symmetry of said transmission line conductor.
- 18. The circulator of claim 17 wherein said ferrite is positioned in an inlay, said inlay formed on an interior side of one of said insulating layers.
- 19. The circulator of claim 17 further comprising:
a magnetic means positioned such that a magnetic field is applied through said ferrite.
- 20. The circulator of claim 19 wherein said ferrite is positioned in an inlay, said inlay formed on an interior side of one of said insulating layers.
- 21. The circulator of claim 19 wherein said magnetic means comprises a permanent magnet.
- 22. The circulator of claim 21 wherein said ferrite is positioned in an inlay, said inlay formed on an interior side of one of said insulating layers.
- 23. The circulator of claim 21 wherein said magnet is placed in an inlay formed on an interior side of at least one of said insulating layers.
- 24. The circulator of claim 23 wherein said ferrite is positioned in an inlay, said inlay formed on an interior side of one of said insulating layers.
- 25. The circulator of claim 21 wherein said magnet is placed external to said laminate assembly.
- 26. The circulator of claim 25 wherein said ferrite is positioned in an inlay, said inlay formed on an interior side of one of said insulating layers.
- 27. The circulator of claim 19 wherein said magnetic means comprises magnetic material selected from the group consisting of magnetic paste and magnetic powder.
- 28. The circulator of claim 27 wherein said ferrite is positioned in an inlay, said inlay formed on an interior side of one of said insulating layers.
- 29. The circulator of claim 27 wherein said magnetic means is placed in an inlay formed on an interior side of at least one of said insulating layers.
- 30. The circulator of claim 29 wherein said ferrite is positioned in an inlay, said inlay formed on an interior side of one of said insulating layers.
- 31. The circulator of claim 19 further comprising:
a steel plate positioned between said ferrite and at least one of said insulating layers.
- 32. The circulator of claim 31 wherein said transmission line conductor, said ferrite, said magnetic means and said steel plate are maintained in a compressed state.
- 33. A surface mount circulator comprising:
a laminar assembly having a transmission line conductor interposed between at least two insulating layers, the outer surface of each said insulating layer being metallized and said line conductor having at least two co-planar axes of symmetry, said line conductor further having at least three ports; said ports formed by a first plurality of holes through said laminar assembly, each of said first plurality of holes being positioned within said insulating regions and passing through said transmission line conductor; a second plurality of holes through at least one of said insulating layers positioned on said axes of symmetry of said transmission line conductor; a ferrite placed in proximity to said transmission line conductor; a steel plate positioned between said ferrite and at least one of said insulating layers; said first and second plurality of holes being plated through with a conductive material, said conductive material in said first plurality of holes being in electrical contact with said transmission line conductor and insulated from said metallization on said outer services of said insulating layers and said second plurality of holes being in contact with said metallization on said outer surfaces of said insulating layers to provide an electrical contact path between said metallizations; and, electrical contact pads formed by bisecting said plurality of holes, said plurality of bisected holes forming electrical contact pads with said transmission line conductor, said electrical contact pads forming low loss transition couplings at each of said locations where said transmission line conductor intersects said axes of symmetry of said transmission line conductor.
- 34. A method of manufacturing a surface mount circulator, the steps comprising:
forming a laminar assembly having a transmission line conductor interposed between at least two insulating layers, the outer surface of each said insulating layer being metallized and said line conductor having at least two co-planar axes of symmetry, said line conductor further having at least three ports; said ports formed by providing a first plurality of holes through said laminar assembly, each of said first plurality of holes being positioned within said insulating regions and passing through said transmission line conductor; forming a second plurality of holes through at least one of said insulating layers positioned on said axes of symmetry of said transmission line conductor; forming an electrical circulator by placing ferrite in proximity to said transmission line conductor; placing steel plate between said ferrite and at least one of said insulating layers; plating through said first and second plurality of holes with a conductive material, said conductive material in said first plurality of holes being in electrical contact with said transmission line conductor and insulated from said metallization on said outer services of said insulating layers and said second plurality of holes being in contact with said metallization on said outer surfaces of said insulating layers to provide an electrical contact path between said metallizations and, cutting said laminar assembly along said axes of symmetry of said transmission line conductor to form duplicate strip line circuit component packages, each package having electrical contact pads formed by bisecting said first plurality of holes, said first plurality of bisected holes forming electrical contact pads with said transmission line conductor, said electrical contact pads forming low loss transition couplings at each of said locations where said transmission line conductor intersects said axes of symmetry of said transmission line conductor.
Parent Case Info
[0001] This application is a continuation in part of co-pending U.S. application Ser. No. 09/757,166, filed on Jan. 10, 2001, which claims priority from the U.S. Provisional Patent Application to Lingel et al. filed on Oct. 24, 2000.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60242958 |
Oct 2000 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09757166 |
Jan 2001 |
US |
Child |
10445766 |
May 2003 |
US |