Claims
- 1. An above resonance isolator/circulator, comprising:
a magnet; a spacer; a single ferrite element; and a center conductor sandwiched between the magnet and the single ferrite element with the spacer interposed between the magnet and the center conductor.
- 2. The above resonance isolator/circulator as recited in claim 1, wherein no metal element is interposed between the magnet, the spacer, the single ferrite element, and the center conductor.
- 3. The above resonance isolator/circulator as recited in claim 1, further comprising a housing having a top piece and a bottom piece configured to simultaneously encase and compress the magnet, the spacer, the single ferrite element and the center conductor together, when the top and bottom pieces of the housing engage each other.
- 4. The above resonance isolator/circulator as recited in claim 1, further comprising a cover return positioned over the magnet, opposite the single ferrite element and center conductor.
- 5. The above resonance isolator/circulator as recited in claim 1, wherein the magnet is larger than the single ferrite element.
- 6. The above resonance isolator/circulator as recited in claim 1, wherein the spacer is between about 1 mil and 20 mils thick.
- 7. An above resonance isolator/circulator, comprising:
a top retainer; a cover return positioned underneath the top retainer; a magnet positioned underneath the cover return; a spacer positioned directly underneath the magnet; a center conductor positioned directly underneath the spacer; a single ferrite element positioned directly underneath the spacer; and a bottom housing positioned underneath the single ferrite element, configured to engage the top retainer thereby compressing and encasing the cover return, magnet, spacer, center conductor and single ferrite element.
- 8. The above resonance isolator/circulator as recited in claim 7, wherein the magnet is larger than the single ferrite element.
- 9. The above resonance isolator/circulator as recited in claim 7, wherein no metal elements are interposed between the magnet, the spacer, the single ferrite element, and the center conductor.
- 10. The above resonance isolator/circulator as recited in claim 7, further comprising a pole piece positioned underneath the single ferrite element between the housing and the single ferrite element.
- 11. The above resonance isolator/circulator as recited in claim 7, wherein the spacer is between about 1 mil and 20 mils thick.
- 12. The above resonance isolator/circulator as recited in claim 7, wherein the single ferrite element includes one or more pieces of ferrite that are meshed together forming the single ferrite element.
- 13. A method for making an above resonance isolator/circulator; comprising:
depositing a spacer over a center conductor; depositing a magnet on top of the spacer; and placing a single ferrite element underneath the center conductor such that the single ferrite element is opposite the magnet and the center conductor is sandwiched between the spacer and the single ferrite element, whereby no metal element is interposed between the magnet, the spacer, the single ferrite element, and the center conductor.
- 14. The method for making an above resonance isolator/circulator as recited in claim 13, wherein the metal element includes a pole piece.
- 15. The method for making an above resonance isolator/circulator as recited in claim 13, wherein the magnet is larger than the single ferrite element.
- 16. The method for making an above resonance isolator/circulator as recited in claim 13, wherein the spacer is between 1 mil and 20 mils thick.
- 17. The method of making an above resonance insolator/circulator as recited in claim 13, further comprising encasing the magnet, spacer, center conductor and single ferrite element in a housing.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is related to U.S. patent application entitled “Above Resonance Isolator/Circulator and Method of Manufacture Thereof” identified by Ser. No. ______ filed on the same day herewith, which is hereby incorporated by reference.