IP Library Granted Patent US 8,461,939
Granted Patent B2
US 8,461,939 · App. 12/793,681 · Granted Jun 11, 2013

Waveguide orthomode transducer

Inventors: I-Ching Lan (Taipei Hsien, TW); Chung-Min Lai (Taipei Hsien, TW); Chang-Hsiu Huang (Taipei Hsien, TW)
Assignee: Wistron NeWeb Corporation
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Quick Facts
Patent No.
US 8,461,939
App. No.
12/793,681
Granted
Jun 11, 2013
Kind
B2
Abstract

A waveguide orthomode transducer includes a waveguide including a first waveguide portion and a second waveguide portion placed along a transmission direction of radio signals, the size of an aperture of the second waveguide portion smaller than the size of an aperture of the first waveguide portion, a first probe disposed at a first position, a second probe disposed at a second position, a third probe disposed at a third position, and a fourth probe disposed at a fourth position, wherein at least two of the first position, the second position, the third position, and the fourth position are located in the same plane perpendicular to the transmission direction of the radio signals.

Claims (38)

1. A waveguide orthomode transducer comprises:

a waveguide comprising a first waveguide portion and a second waveguide portion placed along a transmission direction of radio signals, the size of an aperture of the second waveguide portion smaller than the size of an aperture of the first waveguide portion;

a first probe disposed at a first position;

a second probe disposed at a second position;

a third probe disposed at a third position; and

a fourth probe disposed at a fourth position, wherein at least two of the first position, the second position, the third position, and the fourth position are located in the same plane perpendicular to the transmission direction of the radio signals;

wherein the first probe is utilized for transmitting a first polarized signal and the third probe is utilized for transmitting a second polarized signal, the polarization of the second polarized signal being orthogonal to the polarization of the first polarized signal.

2. The waveguide orthomode transducer of claim 1 , wherein the first waveguide portion comprises at least a first sub-portion, and the size of an aperture of the first sub-portion tapers toward transmission direction of radio signals.

3. The waveguide orthomode transducer of claim 2 , wherein the second waveguide portion comprises at least a second sub-portion, and the size of an aperture of the second sub-portion tapers toward transmission direction of radio signals.

4. The waveguide orthomode transducer of claim 3 , wherein the size of the aperture of the first sub-portion and the size of the aperture of the second sub-portion are step-tapered.

5. The waveguide orthomode transducer of claim 4 , wherein the first position and the second position are located in a part of the first sub-portion whose aperture is larger than the aperture of another part of the first sub-portion, and the third position and the fourth position are located in a part of the second sub-portion whose aperture is larger than of the aperture of another part of the second sub-portion.

6. The waveguide orthomode transducer of claim 3 , wherein the size of the aperture of the first sub-portion and the size of the aperture of the second sub-portion are smoothly tapered.

7. The waveguide orthomode transducer of claim 6 , wherein the first position and the second position are located in the first sub-portion, and the third position and the fourth position are located in the second sub-portion.

8. The waveguide orthomode transducer of claim 6 , wherein the first position, the second position, the third position, and the fourth position are all located in the first sub-portion or all located in the second sub-portion.

9. The waveguide orthomode transducer of claim 1 , wherein the aperture of the waveguide is quadrilateral.

10. The waveguide orthomode transducer of claim 9 , wherein the first probe and the second probe are located on opposite inner surfaces of the waveguide.

11. The waveguide orthomode transducer of claim 9 , wherein the first probe and the third probe are located on adjacent inner surfaces of the waveguide.

12. The waveguide orthomode transducer of claim 1 , wherein a line passing through the first position and the second position is not parallel to a line passing through the third position and the fourth position.

13. The waveguide orthomode transducer of claim 1 , wherein a projection of a line passing through the first position and the second position on a section of the waveguide is approximately perpendicular to a projection of a line passing through the third position and the fourth position on the section.

14. The waveguide orthomode transducer of claim 1 , wherein a line passing through the first position and the second position is approximately perpendicular to a central axis of the waveguide.

15. The waveguide orthomode transducer of claim 14 , wherein a line passing through the third position and the fourth position is approximately perpendicular to a central axis of the waveguide.

16. The waveguide orthomode transducer of claim 1 , wherein the distance between the first position and the second position is larger than the distance between the third position and the fourth position.

17. The waveguide orthomode transducer of claim 1 , wherein the waveguide is provided with tapered apertures.

18. The waveguide orthomode transducer of claim 1 , wherein the second probe is utilized for transmitting the first polarized signal, and the fourth probe is utilized for transmitting the second polarized signal.

19. The waveguide orthomode transducer of claim 1 , wherein the second probe and the fourth probe are short-circuited with an outer surface of the waveguide.

20. The waveguide orthomode transducer of claim 1 , wherein each of the first and the second probes includes at least a bend that keeps a free end of a corresponding one of the first and the second probes away from the center of the waveguide.

21. The waveguide orthomode transducer of claim 20 , wherein the bending directions of the first and the second probes are identical.

22. The waveguide orthomode transducer of claim 20 , wherein the bending directions of the first and the second probes are different.

23. The waveguide orthomode transducer of claim 1 , wherein the first probe is a conductor.

24. The waveguide orthomode transducer of claim 1 , wherein the first probe comprises:

a first substrate; and

a first microstrip disposed on the first substrate.

25. The waveguide orthomode transducer of claim 24 , wherein the second probe comprises:

a second substrate; and

a second microstrip disposed on the second substrate.

26. The waveguide orthomode transducer of claim 25 , wherein the first substrate is parallel to the second substrate.

27. The waveguide orthomode transducer of claim 26 , wherein a plane on which the first substrate is disposed is parallel to a section of the waveguide.

28. The waveguide orthomode transducer of claim 26 , wherein a plane on which the first substrate is disposed is perpendicular to a section of the waveguide.

Assignments (2)
CHANGE OF NAME Recorded Jul 29, 2025
From: WISTRON NEWEB CORPORATION
To: WNC CORPORATION
Reel/Frame 072255/0226 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 4, 2010
From: LAN, I-CHING; LAI, CHUNG-MIN; HUANG, CHANG-HSIU
To: WISTRON NEWEB CORPORATION
Reel/Frame 024482/0873 →
Priority Claims (1)
TW 98138443 A · Nov 12, 2009 · national
Continuity (1)
Related Publication 20110109409A1 · May 12, 2011