Claims
- 1. An active dielectric resonator antenna comprising:
a dielectric resonator antenna having at least one active circuit component on a selected surface thereof and a slot antenna formed on the selected surface thereof.
- 2. The active dielectric resonator antenna of claim 1 further comprising an antenna feed element that, in a transmitting mode, generates the proper resonance mode within the bulk of the dielectric resonator antenna or that, in a receiving mode, receives the signal from the dielectric resonator antenna, said antenna feed element being co-located on the same surface as the at least one active circuit component.
- 3. The active dielectric resonator antenna of claim 2 wherein the dielectric resonator antenna is configured as a flip-chip device having a bottom surface and the at least one active circuit component is on the bottom surface.
- 4. The active dielectric resonator antenna of claim 2 wherein the antenna is a receiving antenna and the at least one active circuit component includes an amplifier.
- 5. The active dielectric resonator antenna of claim 2 wherein the antenna is a transmitting antenna and the at least one active circuit component includes a frequency multiplier.
- 6. The active dielectric resonator antenna of claim 2 wherein the antenna feed element is a slot formed in a metallization film.
- 7. The active dielectric resonator antenna of claim 4 wherein the antenna feed element is a slot formed in a metallization film.
- 8. The active dielectric resonator antenna of claim 4 wherein the dielectric resonator antenna is operable in a frequency of at least 75 GHz.
- 9. The active dielectric resonator antenna of claim 5 wherein the antenna feed element is a slot formed in a metallization film.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Patent Application No. 60/483,319 filed Jun. 26, 2003, the disclosure of which is hereby incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60483319 |
Jun 2003 |
US |