Claims
- 1. A filter comprising:a) a dielectric substrate; b) at least one side coupled resonator mounted to the substrate, the resonator having an open end and a closed end; c) an input coupling element located adjacent to one side of the resonator; d) an output coupling element located adjacent to another side of the resonator; and e) a circuit line connected to the closed end of the side coupled resonator and extending toward the open end of the side coupled resonator, the circuit line having an inductance that provides the filter with improved rejection and less insertion loss.
- 2. The filter according to claim 1, wherein a first inductive element is attached to the input coupling element.
- 3. The filter according to claim 2, wherein a second inductive element is attached to the output coupling element.
- 4. The filter according to claim 3, wherein the second inductive element has a fifth end and a sixth end, the fifth end attached to the output coupling element and the sixth end extending toward the closed end of the side coupled resonator.
- 5. The filter according to claim 4, wherein the sixth end is connected to ground.
- 6. The filter according to claim 2, wherein the first inductive element has a third end and a fourth end, the third end attached to the input coupling element and the fourth end extending toward the closed end of the side coupled resonator.
- 7. The filter according to claim 6, wherein the fourth end is connected to ground.
- 8. The filter according to claim 1, wherein the circuit line has a first end and a second end, the second end of the circuit line connected to the closed end of the side coupled resonator.
- 9. The filter according to claim 8, wherein the first end of the circuit line is connected to ground.
- 10. A filter having low insertion loss and high rejection outside a pass band comprising:a) a dielectric substrate having a first and second surface; b) at least one hairpin resonator mounted to the top surface, the hairpin resonator having an open end and a closed end; c) an input coupling element located adjacent to the resonator, the input coupling element having an input pad and an fir input coupling line; d) an output coupling element located adjacent to the resonator, the output coupling element having an output pad and an output coupling line; and e) a first circuit line connected to the closed end of the hairpin resonator and extending toward the open end of the hairpin resonator.
- 11. The filter according to claim 10, wherein the input and output coupling lines are spaced from the resonator by a gap.
- 12. The filter according to claim 11, wherein the gap is 15 to 20 thousandths of an inch in width.
- 13. The filter according to claim 10, wherein a second circuit line is connected to the input coupling line.
- 14. The filter according to claim 10, wherein a third circuit line is connected to the output coupling line.
- 15. The filter according to claim 10, wherein an end of the first circuit line is connected to ground.
- 16. A filter comprising:a) a dielectric substrate having a first and second surface; b) at least one u-shaped resonator mounted to the first surface, the resonator having an open end and a closed end; c) an input coupling element located adjacent to and communicated with the resonator; d) an output coupling element located adjacent to and communicated with the resonator; e) a first inductive element connected to the closed end of the resonator; f) a second inductive element connected to the input coupling element; and g) a third inductive element is connected to the output coupling element.
- 17. The filter according to claim 16, wherein the inductive elements are a circuit lines having a first en and a second ends.
- 18. The filter according to claim 16, wherein the first inductive element extends toward the open end.
- 19. The filter according to claim 16, wherein the second and third inductive elements extend toward the closed end.
- 20. The filter according to claim 16, wherein the coupling elements each have a pad and a line, the line spaced from the resonator by a gap.
- 21. The filter according to claim 16, wherein a plurality of the filters are connected.
- 22. The filter according to claim 16, wherein the resonator has a first and second resonator line, the first and second resonator lines being substantially parallel, the closed end connected between the first and second resonator lines.
- 23. The filter according to claim 16, wherein the first inductive element extends parallel with the u-shaped resonator.
Parent Case Info
This application claims the benefit of Provisional application No. 60/385,143 filed Jun. 4, 2002.
US Referenced Citations (5)
Provisional Applications (1)
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Number |
Date |
Country |
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60/385143 |
Jun 2002 |
US |