Claims
- 1. A filter comprising:
- first, second, and third waveguide cavities coupled together in a tri-section configuration;
- an input coupled to the first waveguide cavity; an output coupled to the third waveguide cavity;
- first, second, and third inductive coupling apertures respectively disposed between the first and second, the second and third, and the first and third waveguide cavities; and
- first, second, and third high-dielectric resonators respectively disposed in the first, second, and third waveguide cavities wherein signals input into the input are bandpass filtered with transmission zeros appearing only on a low-frequency side of a passband.
- 2. The filter of claim 1 wherein the high-dielectric resonators are positioned within the waveguide cavities cavities for configuring the waveguide cavities to be tuned over a broad range of frequencies.
- 3. The filter of claim 1 wherein the high-dielectric resonators comprise a dielectric ceramic material.
- 4. The filter of claim 1 including first, second, and third standoffs respectively supporting the first, second, and third dielectric resonators.
- 5. The filter of claim 4 wherein the first, second, and third standoffs include a low dielectric material.
- 6. The filter of claim 5 wherein the first, second, and third standoffs include a polymeric material.
- 7. The filter of claim 1 wherein the inductive coupling apertures are probe less.
- 8. A method of filtering comprising using a first waveguide cavity tri-section to bandpass filter a signal by passing the signal in a passband while producing transmission zeros only on one side of the passband, the first waveguide cavity tri-section including three waveguide cavities probelessly coupled in the tri-section and three resonators respectively disposed in the three waveguide cavities.
- 9. The method of claim 8 including propagating the signal through the waveguide cavities in only a single mode.
- 10. The method of claim 8 wherein passing the signal in the passband includes producing transmission zeros only on a low frequency side of the passband.
- 11. A method comprising asymmetrically bandpass filtering a signal using three waveguide cavities probelessly coupled in a tri-section, the three waveguide cavities including three resonators respectively disposed in the three waveguide cavities.
- 12. A bandpass filter comprising three waveguide cavities probelessly coupled in a tri-section, and three resonators respectively disposed in the three waveguide cavities.
Parent Case Info
"This application is a continuation of U.S. application Ser. No. 60/022,444, filed Aug. 6, 1996."
US Referenced Citations (24)
Non-Patent Literature Citations (2)
| Entry |
| Cameron, "General Prototype Network-Synthesis Methods for Microwave Filters", ESA Journal 1982, vol. 6, pp. 193-206, Mar. 1982. |
| Ji-Fuh Liang et al., "High-Q TE01 Mode DR Filters PCS Wireless Base Stations," IEEE Transactions on Microwave Theory and Techniques, vol. 46, No. 12, Dec. 1998, pp. 2493-2500. |