Claims
- 1. A variable power divider circuit for use in microwave systems, comprising:
- first, second, third and fourth waveguide transmission lines;
- first and second variable phase shifting means, each of said variable phase shifting means including: an output, a directional coupling means, and a pair of movable, non-sliding short circuits, each of the movable, non-sliding short circuits being coupled through the directional coupling means to the output of the respective variable phase shifting means; and
- third and fourth directional coupling means, respective outputs of said third directional coupling means being coupled, through the first and second waveguide transmission lines, to corresponding inputs of said first variable phase shifting means and said second variable phase shifting means, and respective inputs of said fourth directional coupling means being coupled, through said third and fourth waveguide transmission lines, to corresponding outputs of said first and second variable phase shifting means.
- 2. The variable power divider circuit of claim 1, wherein said microwave system is an antenna beam forming network.
- 3. The variable power divider circuit of claim 1, wherein said microwave system is a multi-carrier RF channelling network.
- 4. The variable power divider circuit of claim 1, wherein said movable-short-circuits are dimensioned and arranged for operation in a medium-high power range of 300 W to 600 W.
- 5. The variable power divider circuit of claim 1, wherein each of said movable short-circuits comprises an empty L-shaped resonant cavity and a step discontinuity.
- 6. The variable power divider circuit of claim 1, wherein each of said movable short-circuits comprises an I-shaped resonant cavity.
- 7. The variable power divider circuit of claim 6, wherein at least one of said I-shaped cavities contains dielectric material.
- 8. The variable power divider circuit of claim 1, further including a 90 degree phase shifter interconnected between an output of said third directional coupling means and an input of one of said variable phase shifting means.
- 9. The variable power divider circuit of claim 1, wherein said variable phase shifting means and directional coupling means are defined by coupling cavities disposed between parallel waveguides.
- 10. The variable power divider circuit of claim 9, wherein said variable phase shifting means and directional coupling means are disposed in coplanar relation.
- 11. The variable power divider circuit of claim 9, wherein said third directional coupling means and said second variable phase shifting means are disposed parallel to one another and are disposed opposite said first variable phase shifting means and said fourth directional coupling means, respectively.
- 12. The variable power divider circuit of claim 9, wherein said third directional coupling means and said second variable phase shifting means, and said first variable phase shifting means and said fourth directional coupling means are connected by first and second U-shaped waveguide sections, respectively.
- 13. The variable power divider circuit of claim 12, wherein each of said U-shaped waveguide sections defines a step discontinuity.
- 14. The variable power divider circuit of claim 12, wherein each of said short-circuits comprises a metal member having a first section movable within a leg of a respective U-shaped wavelength section and a second section movable within a corresponding one of said parallel waveguides.
- 15. The variable power divider circuit of claim 12, wherein each of said short-circuits defines a plurality of resonant cavities disposed in symmetrical pairs, said resonant cavities being disposed in a fundamental mode propagation plane.
- 16. The variable power divider circuit of claim 15, wherein said cavities are filled with a dielectric material.
- 17. The variable power divider circuit of claim 15, wherein said cavities are L-shaped in cross section.
- 18. The variable power divider circuit of claim 15, wherein said cavities are I-shaped in cross section.
- 19. The variable power divider circuit of claim 15, wherein a first short-circuit of each of said variable phase shifting means is disposed in a corresponding one of said parallel waveguides.
- 20. The variable power divider circuit of claim 19, wherein a second short-circuit of each of said variable phase shifting means is disposed in a corresponding U-shaped waveguide section.
Priority Claims (1)
Number |
Date |
Country |
Kind |
RM93A0173 |
Mar 1993 |
ITX |
|
Parent Case Info
This is a continuation of application Ser. No. 08/215,379, filed Mar. 21, 1994, now abandoned.
US Referenced Citations (4)
Foreign Referenced Citations (1)
Number |
Date |
Country |
143044 |
Nov 1979 |
JPX |
Continuations (1)
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Number |
Date |
Country |
Parent |
215379 |
Mar 1994 |
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