IP Library › Granted Patent US 11,605,903
Granted Patent B2
US 11,605,903 · App. 16/318,924 · Granted Mar 14, 2023

Array antenna apparatus and method for manufacturing array antenna apparatus

Inventors: Hikaru Watanabe (Chiyoda-ku, JP); Takashi Maruyama (Chiyoda-ku, JP); Masataka Otsuka (Chiyoda-ku, JP); Yu Ushijima (Chiyoda-ku, JP); Kazunari Kihira (Chiyoda-ku, JP)
Assignee: Mitsubishi Electric Corporation
H01Q21/005H01Q5/42H01Q13/22H01Q21/24H01P3/123
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Quick Facts
Patent No.
US 11,605,903
App. No.
16/318,924
Granted
Mar 14, 2023
Kind
B2
Abstract

Waveguide slot array antennas each having slots, that transmit or receive electromagnetic waves and that are formed in a front surface of a waveguide and waveguide slot array antennas each having slots that transmit or receive electromagnetic waves and that are formed in a front surface of a waveguide, and the waveguide slot array antennas and the waveguide slot array antennas are alternately arranged, the waveguide is a ridge waveguide having a ridge formed inside the waveguide, and the waveguide is a ridge waveguide having ridges, formed inside the waveguide.

Claims (41)

1. An array antenna apparatus, comprising:

a first antenna including a first waveguide with a first slot for transmitting or receiving an electromagnetic wave, the first slot being formed in a front surface of the first waveguide; and

a second antenna including a second waveguide with a second slot for transmitting or receiving an electromagnetic wave, the second slot being formed in a front surface of the second waveguide, wherein

the first antenna and the second antenna are alternately arranged,

the first waveguide is a ridge waveguide having a first protrusion formed inside,

the second waveguide is a ridge waveguide having a second protrusion formed inside, and

of surfaces of the first protrusion, a plane parallel to the front surface of the first waveguide and, of surfaces of the second protrusion, a plane parallel to the front surface of the second waveguide are in a same plane,

wherein

the first slot is an opening whose longitudinal direction is in waveguide axial direction of the first waveguide,

the second slot is an opening whose longitudinal direction is in waveguide width direction of the second waveguide,

the first protrusion is a protrusion extending from a bottom of a cavity of the first waveguide toward the front surface of the first waveguide, and

the second protrusion is a protrusion extending from a side part of a cavity of the second waveguide toward an opposite side part.

2. An array antenna apparatus, comprising:

a first antenna comprising a first waveguide with a first slot for transmitting or receiving an electromagnetic wave, the first slot being formed in a front surface of the first waveguide; and

a second antenna comprising a second waveguide with a second slot for transmitting or receiving an electromagnetic wave, the second slot being formed in a front surface of the second waveguide, wherein

the first antenna and the second antenna are alternately arranged,

the first waveguide is a ridge waveguide having a first protrusion formed inside,

the second waveguide is a ridge waveguide having a second protrusion formed inside, and

a dimension in a waveguide width direction of the first waveguide differs from a dimension in a waveguide width direction of the second waveguide,

wherein

of surfaces of the first protrusion, a plane parallel to the front surface of the first waveguide and, of surfaces of the second protrusion, a plane parallel to the front surface of the second waveguide are in a same plane,

wherein

the first slot is an opening whose longitudinal direction is a waveguide axial direction of the first waveguide,

the second slot is an opening whose longitudinal direction is a waveguide axial direction of the second waveguide,

the first protrusion is a protrusion extending from a bottom of a cavity of the first waveguide toward the front surface of the first waveguide, and

the second protrusion is a protrusion extending from a bottom of a cavity of the second waveguide toward the front surface of the second waveguide.

3. An array antenna apparatus, comprising:

a first antenna comprising a first waveguide with a first slot for transmitting or receiving an electromagnetic wave, the first slot being formed in a front surface of the first waveguide; and

a second antenna comprising a second waveguide with a second slot for transmitting or receiving an electromagnetic wave, the second slot being formed in a front surface of the second waveguide, wherein

the first antenna and the second antenna are alternately arranged,

the first waveguide is a ridge waveguide having a first protrusion formed inside,

the second waveguide is a ridge waveguide having a second protrusion formed inside, and

a dimension in a height direction of the first waveguide differs from a dimension in a height direction of the second waveguide,

wherein

of surfaces of the first protrusion, a plane parallel to the front surface of the first waveguide and, of surfaces of the second protrusion, a plane parallel to the front surface of the second waveguide are in a same plane,

wherein

the first slot is an opening whose longitudinal direction is a waveguide width direction of the first waveguide,

the second slot is an opening whose longitudinal direction is a waveguide width direction of the second waveguide,

the first protrusion is a protrusion extending from a side part of a cavity of the first waveguide toward an opposite side part, and

the second protrusion is a protrusion extending from a side part of a cavity of the second waveguide toward an opposite side part.

4. The array antenna apparatus according to claim 1 , wherein a dimension in a height direction of the first waveguide differs from a dimension in a height direction of the second waveguide.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 29, 2020
From: WATANABE, HIKARU; MARUYAMA, TAKASHI; OTSUKA, MASATAKA; USHIJIMA, YU; KIHIRA, KAZUNARI
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 051650/0986 →
Continuity (1)
Related Publication 20190260137A1 · Aug 22, 2019