IP Library Granted Patent US 10,236,591
Granted Patent B2
US 10,236,591 · App. 15/461,512 · Granted Mar 19, 2019

Slot antenna

Inventors: Hideki Kirino (Kyoto, JP); Hiroyuki Kamo (Kawasaki, JP)
Assignees: NIDEC CORPORATION; WGR CO., LTD.
H01Q21/064H01P3/026H01P3/081H01P5/12H01Q1/3233H01Q1/3266H01Q13/06H01Q13/10H01Q13/20H01Q21/06H01P5/1007
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Quick Facts
Patent No.
US 10,236,591
App. No.
15/461,512
Granted
Mar 19, 2019
Kind
B2
Abstract

A slot antenna includes: a first electrically conductive member having a first electrically conductive surface; a second electrically conductive member having a second electrically conductive surface opposing the first electrically conductive surface; a waveguide member between the first electrically conductive member and the second electrically conductive member, the waveguide member having an electrically conductive waveguide face of a stripe shape opposing the first electrically conductive surface, the waveguide member extending in a first direction along the first electrically conductive surface; and an artificial magnetic conductor extending on both sides of the waveguide member, between the first electrically conductive member and the second electrically conductive member. The first electrically conductive member has one or more slots. At least one of the slot or slots is a complex slot having a pair of vertical portions and a lateral portion that interconnects the pair of vertical portions. The lateral portion of the complex slot opposes the waveguide face, and intersects the first direction.

Claims (37)

1. A slot antenna comprising:

a first electrically conductive member having a first electrically conductive surface;

a second electrically conductive member having a second electrically conductive surface opposing the first electrically conductive surface;

a waveguide member between the first electrically conductive member and the second electrically conductive member, the waveguide member having an electrically conductive waveguide face of a stripe shape opposing the first electrically conductive surface, the waveguide member extending in a first direction along the first electrically conductive surface; and

an artificial magnetic conductor extending on both sides of the waveguide member, between the first electrically conductive member and the second electrically conductive member, wherein,

the first electrically conductive member has one or more slots;

at least one of the slot or slots is a complex slot having a pair of vertical portions and a lateral portion that interconnects the pair of vertical portions; and

the lateral portion of the complex slot opposes the waveguide face, and intersects the first direction,

wherein a width of a portion of the waveguide face that opposes the lateral portion of the complex slot is narrower than the width of the slot inclusive of the pair of vertical portions.

2. The slot antenna of claim 1 , wherein,

the slot antenna is used for at least one of transmission and reception of an electromagnetic wave of a band having a central wavelength λo in free space; and

a sum of a distance between centers of the pair of vertical portions of the complex slot and lengths of both of the pair of vertical portions is greater than λo/2.

3. The slot antenna of claim 1 , wherein,

the first electrically conductive member has a plurality of slots, the plurality of slots being arrayed along the first direction;

the waveguide face opposes the plurality of slots;

at least two of the plurality of slots are complex slots having a pair of vertical portions and a lateral portion that interconnects the pair of vertical portions; and

the lateral portion of each complex slot opposes the waveguide face, and intersects the first direction.

4. The slot antenna of claim 3 , wherein,

each of the plurality of slots is a complex slot having a pair of vertical portions and a lateral portion that interconnects the pair of vertical portions; and

the lateral portion of each complex slot opposes the waveguide face, and intersects the first direction.

5. The slot antenna of claim 3 , wherein,

the slot antenna is used for at least one of transmission and reception of an electromagnetic wave of a band having a central wavelength λo in free space; and

a sum of a distance between centers of the pair of vertical portions of each complex slot among the plurality of slots and lengths of both of the pair of vertical portions is greater than λo/2.

6. The slot antenna of claim 1 , wherein,

the artificial magnetic conductor includes a plurality of electrically conductive rods, each having a leading end opposing the first electrically conductive surface;

the slot antenna is used for at least one of transmission and reception of an electromagnetic wave of a predetermined band; and,

given a wavelength λm in free space of an electromagnetic wave of a highest frequency among electromagnetic waves of the predetermined band,

a width of the waveguide member, a width of each electrically conductive rod, a width of a space existing between two adjacent electrically conductive rods, a distance between the first electrically conductive surface and the second electrically conductive surface, and a width of a space existing between the waveguide member and an electrically conductive rod that is adjacent to the waveguide member are each less than λm/2.

7. A radar device comprising:

the slot antenna of claim 1 ; and

a microwave integrated circuit that is connected to the slot antenna.

8. A radar system comprising:

the radar device of claim 7 ; and

a signal processing circuit connected to the microwave integrated circuit of the radar device.

9. A wireless communication system comprising:

the slot antenna of claim 1 ; and

a communication circuit connected to the slot antenna.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 24, 2024
From: NIDEC CORPORATION
To: WGR CO., LTD., 8E10 ADVANCED SCIENCE, TECHNOLOGY & MANAGEMENT RESEARCH INSTITUTE OF KYOTO
Reel/Frame 069672/0859 →
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 Mar 17, 2017
From: KIRINO, HIDEKI; KAMO, HIROYUKI
To: NIDEC ELESYS CORPORATION; WGR CO., LTD.
Reel/Frame 041604/0899 →
Priority Claims (2)
JP 2015-217657 · Nov 5, 2015 · national
JP 2016-179540 · Sep 14, 2016 · national
Continuity (2)
Continuation PCTJP2016083623 · Nov 4, 2016
Related Publication 20170194716A1 · Jul 6, 2017
Cited By (1)
US 12,580,318