Claims
- 1. A radio frequency (RF) power distribution network comprising:
a block assembly having formed therein an input waveguide and N output waveguides; and a plurality of waveguide power dividers disposed within said block assembly for dividing the power of an RF signal present at said input waveguide among said N output waveguides.
- 2. The RF power distribution network of claim 1 wherein said block assembly comprises a first half and a second half.
- 3. The RF power distribution network of claim 2 wherein said first half and said second half are formed of metallized plastic.
- 4. The RF power distribution network of claim 2 wherein said first half and said second half are formed of metal.
- 5. The RF power distribution network of claim 1 wherein said plurality of waveguide power dividers comprise N-1 rat-race couplers coupled in a binary tree formation.
- 6. The RF power distribution network of claim 1 wherein each of said N output waveguides has a predetermined height for controlling the power of said RF signal.
- 7. The RF power distribution network of claim 1 wherein each of said N output waveguides is coupled to a phase-shift device.
- 8. The RF power distribution network of claim 7 wherein said phase-shift devices comprise:
a block having a first half and a second half; and a finline structure disposed between said first and second halves, said finline structure having a true time delay (TTD) circuit.
- 9. A phased array antenna system comprising:
an M×N array of antenna elements; N vertical waveguide feed networks, each of said N vertical waveguide feed networks having an input and M output waveguides; a lateral waveguide feed network having an input and N output waveguides; and a control device for adaptively varying the phase of the RF signal transmitted or received by each element in said array of elements; wherein each of said M output waveguides of said N vertical waveguide feed networks is coupled to a respective one of said M×N array of elements; and each of said input waveguides of said N vertical waveguide feed networks is coupled to a respective one of said N output waveguides of said lateral waveguide feed network.
- 10. The phased array antenna system of claim 9 wherein each of said N vertical waveguide feed networks comprises:
a block assembly having formed therein said input waveguide and said M output waveguides; and a plurality of waveguide power dividers disposed within said block assembly for dividing the power of an RF signal present at said input waveguide among said M output waveguides.
- 11. The phased array antenna system of claim 10 wherein said block assembly comprises a first half and a second half.
- 12. The phased array antenna system of claim 11 wherein said first half and said second half are formed of metallized plastic.
- 13. The phased array antenna system of claim 11 wherein said first half and said second half are formed of metal.
- 14. The phased array antenna system of claim 10 wherein said plurality of waveguide power dividers comprise M-1 rat-race couplers coupled in a binary tree formation.
- 15. The phased array antenna system of claim 10 wherein each of said M output waveguides has a predetermined height for controlling the power of said RF signal.
- 16. The phased array antenna system of claim 10 wherein each of said M output waveguides is coupled to a phase-shift device.
- 17. The phased array antenna system of claim 16 wherein said phase-shift devices comprise:
a block having a first half and a second half; and a finline structure disposed between said first and second halves, said finline structure having a true time delay (TTD) circuit.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims benefit of U.S. provisional patent application serial No. 60/234,584, filed Sep. 22, 2000, which is herein incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60234584 |
Sep 2000 |
US |