Claims
- 1. A resonator disposed on a dielectric substrate with a first side and a second side, the first side having a ground plane disposed thereon on, and the second side having a plurality of conductive paths comprising:
(a) a conductive loop terminating in two adjacent ends; and (b) two transmission line segments, each emanating from a respective one of the two loop ends and including a first and a second portions, wherein the first portions of the two segments are positioned generally alongside each other, and wherein the second portion of each of the two segments is substantially folded over the first portion of the same segment, whereby the resonator defines an orientation pointing generally along the first and second portions of the transmission line segments toward the conductive loop.
- 2. The resonator of claim 1, wherein the conductive loop has a first width generally perpendicular to the orientation, and the transmission line segments occupy a footprint having a second width generally perpendicular to the orientation, wherein the first width is at least about 50% of the second width.
- 3. The resonator of claim 2, wherein the first width is at least about the same as the second width.
- 4. The resonator of claim 1, wherein the second portion of each transmission line segment comprises at least two portions folded over each other.
- 5. The resonator of claim 1, wherein the conductive loop and tranmission line segments are primarily made of a superconductor.
- 6. A filter comprising a plurality of resonators of claiin 1, wherein each of the resonators is coupled to at least another one of the resonators.
- 7. The filter of claim 6, wherein the resonators are serially arranged in generally side-by-side manner with the orientations of adjacent resonators generally parallel or anti-parallel to each other.
- 8. The filter of claim 7, wherein the resonators are primarily made of a superconductor.
- 9. The filter of claim 8, wherein the two resonators in each pair of adjacent resonators have orientations that are anti-parallel to each other.
- 10. The filter of claim 8, wherein at least one pair of the plurality of resonators are non-adjacent and coupled by a linkage comprising a conductor.
- 11. A resonator disposed on a dielectric substrate with a first side and a second side, the first side having a ground plane disposed thereon on, and the second side having a plurality of conductive paths comprising:
a conductive loop terminating in a first end and a second end; an inter digital capacitor having a first end and a second end; a first transmission line connecting the first end of the conductive loop to the first end of the interdigital capacitor; and a second tmmsmission line connecting the second end of the conductive loop to the second end of the inter-digital capacitor.
- 12. The resonator of claim 11, wherein:
the first transmission line runs in a serpentine course comprised of a plurality of linear segments, such that any one linear segment of the first serpentine transmission line runs parallel to another linear segment of the first serpentine transmission line; and the second transmission line runs in a serpentine course comprised of a plurality of linear segments, such that any one linear segment of the second serpentine transmission line runs parallel to another linear segment of the second serpentine transmission line.
- 13. The resonator of claim 12, wherein:
for any linear segment of the first serpentine transmission line, a parallel segment exists, such that an electrical current circulating through the first serpentine transmission line runs in opposite directions when passing through the two parallel segments; and for any linear segment of the second serpentine transmission line, a parallel segment exists, such that an electrical current circulating through the second serpentine transmission line runs in opposite directions when passing through the two parallel segments.
- 14. The resonator of claim 13, wherein the resonator defines a substantially rectangular footprint.
- 15. The resonator of claim 14, wherein the conductive loop is disposed in one corner of the rectangular footprint and the inter-digital capacitor is disposed in a catercorner corner of the rectangular footprint.
- 16. A filter comprising:
a plurality of resonators as described in claim 11;wherein each of the resonators has a conductive segment protruding from at least one of its first and second transmission lines, and wherein each protruding segment is terminated by a segment running substantially perpendicular thereto; and wherein each perpendicular segment is juxtaposed to another perpendicular segment attached to another resonator, thereby coupling one resonator to another resonator.
- 17. The filter of claim 16, wherein:
the filter comprises four resonators arranged in a substantially rectangular footprint.
GOVERNMENT SUPPORT
[0001] This invention was made with United States Government support under cooperative agreement number 70NANBOH3032 awarded by the National Institute of Standards and Technology (NIST).
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/US02/18897 |
6/13/2002 |
WO |
|
Provisional Applications (1)
|
Number |
Date |
Country |
|
60298339 |
Jun 2001 |
US |