IP Library Granted Patent US 10,700,405
Granted Patent B2
US 10,700,405 · App. 16/028,134 · Granted Jun 30, 2020

Integrated waveguide monopulse comparator assembly

Inventors: Michael C. Hollenbeck (West Jordan, UT); Robert Smith (West Jordan, UT); Clinton Cathey (West Jordan, UT); Janos Opra (West Jordan, UT)
H01P5/20H01P1/025H01P1/027H01P3/12H01Q21/0006
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Quick Facts
Patent No.
US 10,700,405
App. No.
16/028,134
Granted
Jun 30, 2020
Kind
B2
Abstract

Embodiments of the invention include an integrated monopulse comparator assembly for use in tracking antenna applications such as an antenna feed or an antenna array. Embodiments of the monopulse comparator assembly may include four rectangular waveguide antenna inputs, four magic tees, rectangular waveguide connections, and four rectangular waveguide monopulse outputs. An embodiment of a 4×4 antenna array including an embodiment of an integrated monopulse comparator assembly is also disclosed.

Claims (65)

1. A waveguide magic tee enclosing an internal chamber, comprising:

a top;

a back;

a front;

a first side;

a second side;

a plane of symmetry dividing the first side from the second side;

a first side input branch air volume extending from the plane of symmetry to the first side and having a rectangular first side port;

a second side input branch air volume extending from the plane of symmetry to the second side and having a rectangular second side port;

an output combined branch air volume extending from the first and second side input branches to the front and having a rectangular combined port;

an expansion prism air volume extending from the first and second side input branches toward the top;

an output difference branch air volume extending from the expansion prism air volume to the top and having a rectangular difference port; and

a base expansion prism air volume extending from the bottom and the back and overlapping the first and second side input branch air volumes.

2. The waveguide magic tee according to claim 1 , wherein the internal chamber encloses an internal matching structure.

3. An integrated waveguide monopulse comparator assembly, comprising:

first, second, third and fourth magic tees, each of the four magic tees according to claim 1 ,

the rectangular difference port of the first magic tee coupled to the first side port of the fourth magic tee;

the rectangular difference port of the second magic tee coupled to the second side port of the fourth magic tee;

the rectangular combined port of the first magic tee coupled to the second side port of the third magic tee; and

the rectangular combined port of the second magic tee coupled to the first side port of the third magic tee.

4. The monopulse comparator assembly according to claim 3 , wherein the coupling between each of the coupled ports comprises rectangular waveguide with chamfered 90° turns.

5. The monopulse comparator assembly according to claim 3 , further comprising first, second, third and fourth input ports.

6. The monopulse comparator assembly according to claim 5 , wherein the first input port comprises the first side port of the second magic tee;

wherein the second input port comprises the second side port of the second magic tee;

wherein the third input port comprises the second side port of the first magic tee; and

wherein the fourth input port comprises the first side port of the first magic tee.

7. The monopulse comparator assembly according to claim 3 , further comprising first, second, third and fourth output ports.

8. The monopulse comparator assembly according to claim 7 , wherein the first output port comprises the combined port of the third magic tee;

wherein the second output port comprises the difference port of the third magic tee;

wherein the third output port comprises the combined port of the fourth magic tee; and

wherein the fourth output port comprises the difference port of the fourth magic tee.

9. The monopulse comparator assembly according to claim 3 , wherein the assembly is fabricated as a single part or as part of a large integrated single part using metal 3D printing.

10. The monopulse comparator assembly according to claim 3 , wherein each of the four magic tees encloses an internal chamber.

11. The monopulse comparator assembly according to claim 10 , wherein each of the internal chambers encloses an internal matching structure.

12. A 4×4 antenna array, comprising:

four magic tees, each magic tee comprising:

a top;

a back;

a front;

a first side;

a second side;

a plane of symmetry dividing the first side from the second side;

a first side input branch air volume extending from the plane of symmetry to the first side and having a rectangular first side port;

a second side input branch air volume extending from the plane of symmetry to the second side and having a rectangular second side port;

an output combined branch air volume extending from the first and second side input branches to the front and having a rectangular combined port;

an expansion prism air volume extending from the first and second side input branches toward the top; and

an output difference branch air volume extending from the expansion prism air volume to the top and having a rectangular difference port; and

an integrated waveguide monopulse comparator assembly comprising the four magic tees, namely the first, second, third and fourth magic tees;

wherein the rectangular difference port of the first magic tee is coupled to the first side port of the fourth magic tee;

wherein the rectangular difference port of the second magic tee is coupled to the second side port of the fourth magic tee;

wherein the rectangular combined port of the first magic tee is coupled to the second side port of the third magic tee; and

wherein the rectangular combined port of the second magic tee is coupled to the first side port of the third magic tee.

13. The 4×4 antenna array according to claim 12 , wherein the array is fabricated as a single part using metal 3D printing.

14. The 4×4 antenna array according to claim 12 , wherein the monopulse comparator assembly further comprises first, second, third and fourth input ports.

15. The 4×4 antenna array according to claim 14 , wherein the first input port comprises the first side port of the second magic tee;

wherein the second input port comprises the second side port of the second magic tee;

wherein the third input port comprises the second side port of the first magic tee; and

wherein the fourth input port comprises the first side port of the first magic tee.

16. The 4×4 antenna array according to claim 12 , wherein the monopulse comparator assembly further comprises first, second, third and fourth output ports.

17. The 4×4 antenna array according to claim 16 , wherein the first output port comprises the combined port of the third magic tee;

wherein the second output port comprises the difference port of the third magic tee;

wherein the third output port comprises the combined port of the fourth magic tee; and

wherein the fourth output port comprises the difference port of the fourth magic tee.

18. The 4×4 antenna array according to claim 12 , wherein the coupling between each of the coupled ports comprises rectangular waveguide with chamfered 90° turns.

19. The 4×4 antenna array according to claim 12 , wherein each of the four magic tees encloses an inner chamber and each of the inner chambers encloses an internal matching structure.

Assignments (3)
SECURITY INTEREST Recorded Jul 2, 2024
From: OPTISYS, INC.
To: SANDERS FAMILY 2010 DYNASTY TRUST
Reel/Frame 067896/0369 →
ENTITY CONVERSION Recorded Sep 22, 2022
From: OPTISYS, LLC
To: OPTISYS, INC.
Reel/Frame 061508/0851 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 19, 2021
From: HOLLENBECK, MICHAEL C.; SMITH, ROBERT; CATHEY, CLINTON; OPRA, JANOS
To: OPTISYS, LLC
Reel/Frame 058170/0278 →
Continuity (2)
Provisional Application 62528519 · Jul 4, 2017
Related Publication 20190140338A1 · May 9, 2019