IP Library Granted Patent US 10,027,032
Granted Patent B2
US 10,027,032 · App. 15/292,431 · Granted Jul 17, 2018

Waveguide device and antenna device including the waveguide device

Inventors: Hideki Kirino (Kyoto, JP); Hiroyuki Kamo (Kawasaki, JP)
Assignees: NIDEC CORPORATION; WGR CO., LTD.
H01Q13/16H01P3/00H01Q11/14H01Q21/0006H01Q21/064
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,027,032
App. No.
15/292,431
Granted
Jul 17, 2018
Kind
B2
Abstract

A waveguide device includes: a first conductive member having an electrically conductive surface; a second conductive member having a plurality of electrically conductive rods arrayed thereon, each conductive rod having a leading end opposing the conductive surface; and a waveguide member having an electrically conductive waveguide face opposing the conductive surface, the waveguide member being disposed among the conductive rods and extending along the conductive surface. The waveguide member includes at least one of a bend and a branching portion. A measure of an outer shape of a cross section of at least one of the plurality of conductive rods that is adjacent to the bend or the branching portion, taken perpendicular to an axial direction of the at least one conductive rod, monotonically decreases from a root that is in contact with the second conductive member toward a leading end.

Claims (61)

1. A waveguide device comprising:

a first electrically conductive member having an electrically conductive surface which is shaped as a plane or a curved surface;

a second electrically conductive member having a plurality of electrically conductive rods arrayed thereon, each electrically conductive rod having a leading end opposing the electrically conductive surface of the first electrically conductive member; and

a waveguide member having an electrically conductive waveguide face opposing the electrically conductive surface of the first electrically conductive member, the waveguide member being disposed among the plurality of electrically conductive rods and extending along the electrically conductive surface, wherein,

the waveguide member includes at least one of a bend at which the direction that the waveguide member extends changes and a branching portion at which the direction that the waveguide member extends ramifies into two or more directions; and

a measure of an outer shape of a cross section of at least one of the plurality of electrically conductive rods that is adjacent to the bend or the branch, taken perpendicular to an axial direction of the at least one electrically conductive rod, monotonically decreases from a root that is in contact with the second electrically conductive member toward the leading end.

2. The waveguide device of claim 1 , wherein the at least one electrically conductive rod has a side face which is tilted with respect to the axial direction of the electrically conductive rod.

3. The waveguide device of claim 1 , wherein the waveguide member is a ridge on the second electrically conductive member.

4. The waveguide device of claim 2 , wherein the waveguide member is a ridge on the second electrically conductive member.

5. The waveguide device of claim 1 , wherein,

the waveguide device is used for at least one of transmission and reception of an electromagnetic wave of a predetermined band;

an electromagnetic wave that has a highest frequency among electromagnetic waves in the predetermined band has a wavelength λmin free space; and

electrically conductive rods among the plurality of electrically conductive rods that are adjacent to the waveguide member have a height which is smaller than λm/2.

6. The waveguide device of claim 4 , wherein,

the waveguide device is used for at least one of transmission and reception of an electromagnetic wave of a predetermined band;

an electromagnetic wave that has a highest frequency among electromagnetic waves in the predetermined band has a wavelength λmin free space; and

electrically conductive rods among the plurality of electrically conductive rods that are adjacent to the waveguide member have a height which is smaller than λm/2.

7. The waveguide device of claim 5 , wherein the distance between the electrically conductive surface and the waveguide face is λm/4 or less.

8. The waveguide device of claim 6 , wherein the distance between the electrically conductive surface and the waveguide face is λm/4 or less.

9. The waveguide device of claim 5 , wherein the distance between the electrically conductive surface and the root of each electrically conductive rod is smaller than λm/2.

10. The waveguide device of claim 8 , wherein the distance between the electrically conductive surface and the root of each electrically conductive rod is smaller than λm/2.

11. The waveguide device of claim 1 , wherein the area of a cross section of the at least one electrically conductive rod taken perpendicular to the axial direction is smaller at the leading end than at the root that is in contact with the second electrically conductive member.

12. The waveguide device of claim 2 , wherein the area of a cross section of the at least one electrically conductive rod taken perpendicular to the axial direction is smaller at the leading end than at the root that is in contact with the second electrically conductive member.

13. The waveguide device of claim 3 , wherein the area of a cross section of the at least one electrically conductive rod taken perpendicular to the axial direction is smaller at the leading end than at the root that is in contact with the second electrically conductive member.

14. The waveguide device of claim 4 , wherein the area of a cross section of the at least one electrically conductive rod taken perpendicular to the axial direction is smaller at the leading end than at the root that is in contact with the second electrically conductive member.

15. The waveguide device of claim 5 , wherein the area of a cross section of the at least one electrically conductive rod taken perpendicular to the axial direction is smaller at the leading end than at the root that is in contact with the second electrically conductive member.

16. The waveguide device of claim 6 , wherein the area of a cross section of the at least one electrically conductive rod taken perpendicular to the axial direction is smaller at the leading end than at the root that is in contact with the second electrically conductive member.

17. The waveguide device of claim 10 , wherein the area of a cross section of the at least one electrically conductive rod taken perpendicular to the axial direction is smaller at the leading end than at the root that is in contact with the second electrically conductive member.

18. An antenna device comprising:

the waveguide device of claim 1 ; and

an antenna element being connected to a waveguide extending between the electrically conductive surface and the waveguide face of the waveguide device to allow an electro-magnetic wave having propagated through the waveguide to be emitted into space.

19. An antenna device comprising:

the waveguide device of claim 2 ; and

an antenna element being connected to a waveguide extending between the electrically conductive surface and the waveguide face of the waveguide device to allow an electro-magnetic wave having propagated through the waveguide to be emitted into space.

20. An antenna device comprising:

the waveguide device of claim 3 ; and

an antenna element being connected to a waveguide extending between the electrically conductive surface and the waveguide face of the waveguide device to allow an electro-magnetic wave having propagated through the waveguide to be emitted into space.

21. An antenna device comprising:

the waveguide device of claim 4 ; and

an antenna element being connected to a waveguide extending between the electrically conductive surface and the waveguide face of the waveguide device to allow an electro-magnetic wave having propagated through the waveguide to be emitted into space.

22. An antenna device comprising:

the waveguide device of claim 5 ; and

an antenna element being connected to a waveguide extending between the electrically conductive surface and the waveguide face of the waveguide device to allow an electro-magnetic wave having propagated through the waveguide to be emitted into space.

23. An antenna device comprising:

the waveguide device of claim 11 ; and

an antenna element being connected to a waveguide extending between the electrically conductive surface and the waveguide face of the waveguide device to allow an electro-magnetic wave having propagated through the waveguide to be emitted into space.

24. An antenna device comprising:

the waveguide device of claim 12 ; and

an antenna element being connected to a waveguide extending between the electrically conductive surface and the waveguide face of the waveguide device to allow an electro-magnetic wave having propagated through the waveguide to be emitted into space.

25. An antenna device comprising:

the waveguide device of claim 13 ; and

an antenna element being connected to a waveguide extending between the electrically conductive surface and the waveguide face of the waveguide device to allow an electro-magnetic wave having propagated through the waveguide to be emitted into space.

26. An antenna device comprising:

the waveguide device of claim 14 ; and

an antenna element being connected to a waveguide extending between the electrically conductive surface and the waveguide face of the waveguide device to allow an electro-magnetic wave having propagated through the waveguide to be emitted into space.

27. An antenna device comprising:

the waveguide device of claim 15 ; and

an antenna element being connected to a waveguide extending between the electrically conductive surface and the waveguide face of the waveguide device to allow an electro-magnetic wave having propagated through the waveguide to be emitted into space.

28. An antenna device comprising:

the waveguide device of claim 17 ; and

an antenna element being connected to a waveguide extending between the electrically conductive surface and the waveguide face of the waveguide device to allow an electro-magnetic wave having propagated through the waveguide to be emitted into space.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 14, 2025
From: NIDEC ELESYS CORPORATION
To: WGR CO., LTD., 8E10 ADVANCED SCIENCE, TECHNOLOGY & MANAGEMENT RESEARCH INSTITUTE OF KYOTO
Reel/Frame 070514/0677 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 13, 2021
From: NIDEC CORPORATION
To: NIDEC ELESYS CORPORATION
Reel/Frame 056834/0777 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 23, 2018
From: NIDEC ELESYS CORPORATION
To: NIDEC CORPORATION
Reel/Frame 044702/0044 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 13, 2016
From: KIRINO, HIDEKI; KAMO, HIROYUKI
To: NIDEC ELESYS CORPORATION; WGR CO., LTD.
Reel/Frame 040006/0299 →
Priority Claims (2)
JP 2015-203453 · Oct 15, 2015 · national
JP 2016-142181 · Jul 20, 2016 · national
Continuity (1)
Related Publication 20170110802A1 · Apr 20, 2017
Cited By (15)
US 12,224,502 US 12,265,172 US 12,282,214 US 12,424,767 US 12,456,816 US 12,468,184 US 12,500,350 US 12,506,272 US 12,537,308 US 12,601,938 US 12,614,839 US 12,627,020 US 12,656,637 US 12,675,009 US 12,695,200