IP Library Granted Patent US 12693375
Granted Patent B2
US 12693375 · App. 18/299,992 · Granted Jul 28, 2026

Antenna apparatus and radar apparatus

Inventors: Kazuhiro Aoki (Kariya-city, JP); Yusuke Tainaka (Kariya-city, JP)
Assignee: DENSO CORPORATION
G01S7/032G01S7/03H01Q9/045
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Quick Facts
Patent No.
US 12693375
App. No.
18/299,992
Granted
Jul 28, 2026
Kind
B2
Abstract

An antenna apparatus includes a conductor layer A, a conductor layer B, and a dielectric layer that is sandwiched between the conductor layer A and the conductor layer B. In the conductor layer A, a first antenna, a second antenna, and a connection conductor are formed. The connection conductor is connected to both of the first antenna and the second antenna. In the dielectric layer, a guard conductor is provided. The guard conductor is arranged along an outer periphery of the connection conductor that excludes at least a first connection section and a second connection section of the connection conductor. The first connection section is a connection section of the connection conductor that is connected to the first antenna. The second connection section is a connection section of the connection conductor that is connected to the second antenna.

Claims (72)

1 . An antenna apparatus comprising:

a conductor layer A;

a conductor layer B; and

a dielectric layer that is sandwiched between the conductor layer A and the conductor layer B, wherein:

a first antenna, a second antenna, and a connection conductor are formed in the conductor layer A, the connection conductor being connected to both of the first antenna and the second antenna,

a guard conductor is provided in the dielectric layer,

the guard conductor is arranged along an outer periphery of the connection conductor that excludes at least a first connection section and a second connection section of the connection conductor, the first connection section being a connection section of the connection conductor that is connected to the first antenna, and the second connection section being a connection section of the connection conductor that is connected to the second antenna,

the connection conductor includes side protruding portions that protrude in an extension direction, in which the first antenna and the second antenna are extended, so as to sandwich two connection sections that are the first connection section and the second connection section, and

the guard conductor is also arranged in a position along the side protruding portions.

2 . The antenna apparatus according to claim 1 , wherein:

the guard conductor is also arranged in a position that is parallel to an extension direction in which the first antenna and the second antenna are extended and is sandwiched between the first connection section and the second connection section.

3 . The antenna apparatus according to claim 1 , wherein:

a waveguide is provided so as to be separated from the connection conductor in a direction from the conductor layer A towards the conductor layer B; and

a figure of the waveguide projected onto a plane, which is orthogonal to a lamination direction in which the conductor layer B, the dielectric layer, and the conductor layer A are laminated and includes the conductor layer A, by a light beam parallel to an axial direction of the waveguide, is surrounded by a figure of the guard conductor perpendicularly projected onto the plane and included in the connection conductor, excluding at least a portion near the first connection section and a portion near the second connection section.

4 . The antenna apparatus according to claim 1 , wherein:

the first connection section includes a portion of which a length in a direction that is orthogonal to an extension direction of the first antenna becomes shorter towards a direction, of the extension direction, in which the first antenna extends.

5 . The antenna apparatus according to claim 1 , wherein:

the connection conductor includes an intermediate protruding portion that protrudes in an extension direction of the first antenna and the second antenna so as to be sandwiched between two connection sections that are the first connection section and the second connection section; and

the guard conductor is also arranged in a position along the intermediate protruding portion.

6 . The antenna apparatus according to claim 1 , wherein:

the guard conductor is configured by a plurality of vias.

7 . An antenna apparatus comprising:

a conductor layer A;

a conductor layer B; and

a dielectric layer that is sandwiched between the conductor layer A and the conductor layer B, wherein:

a first antenna, a second antenna, and a connection conductor are formed in the conductor layer A, the connection conductor being connected to both of the first antenna and the second antenna,

a guard conductor is provided in the dielectric layer,

the guard conductor is arranged along an outer periphery of the connection conductor that excludes at least a first connection section and a second connection section of the connection conductor, the first connection section being a connection section of the connection conductor that is connected to the first antenna, and the second connection section being a connection section of the connection conductor that is connected to the second antenna,

the connection conductor includes an intermediate protruding portion that protrudes in an extension direction of the first antenna and the second antenna so as to be sandwiched between two connection sections that are the first connection section and the second connection section, and

the guard conductor is also arranged in a position along the intermediate protruding portion.

8 . The antenna apparatus according to claim 7 , wherein:

the guard conductor is also arranged in a position that is parallel to an extension direction in which the first antenna and the second antenna are extended and is sandwiched between the first connection section and the second connection section.

9 . The antenna apparatus according to claim 7 , wherein:

a waveguide is provided so as to be separated from the connection conductor in a direction from the conductor layer A towards the conductor layer B; and

a figure of the waveguide projected onto a plane, which is orthogonal to a lamination direction in which the conductor layer B, the dielectric layer, and the conductor layer A are laminated and includes the conductor layer A, by a light beam parallel to an axial direction of the waveguide, is surrounded by a figure of the guard conductor perpendicularly projected onto the plane and included in the connection conductor, excluding at least a portion near the first connection section and a portion near the second connection section.

10 . The antenna apparatus according to claim 7 , wherein:

the first connection section includes a portion of which a length in a direction that is orthogonal to an extension direction of the first antenna becomes shorter towards a direction, of the extension direction, in which the first antenna extends.

11 . The antenna apparatus according to claim 7 , wherein:

the connection conductor includes side protruding portions that protrude in an extension direction, in which the first antenna and the second antenna are extended, so as to sandwich two connection sections that are the first connection section and the second connection section; and

the guard conductor is also arranged in a position along the side protruding portions.

12 . The antenna apparatus according to claim 7 , wherein:

the guard conductor is configured by a plurality of vias.

13 . A radar apparatus comprising:

an antenna apparatus comprising:

a conductor layer A;

a conductor layer B; and

a dielectric layer that is sandwiched between the conductor layer A and the conductor layer B, wherein

a first antenna, a second antenna, and a connection conductor are formed in the conductor layer A, the connection conductor being connected to both of the first antenna and the second antenna,

a guard conductor is provided in the dielectric layer, and

the guard conductor is arranged along an outer periphery of the connection conductor that excludes at least a first connection section and a second connection section of the connection conductor, the first connection section being a connection section of the connection conductor that is connected to the first antenna, and the second connection section being a connection section of the connection conductor that is connected to the second antenna, and

the guard conductor is also arranged in a position that is parallel to an extension direction in which the first antenna and the second antenna are extended and is sandwiched between the first connection section and the second connection section; and

a processing circuit that performs at least one process of two processes that are a transmission process and a reception process for high frequency signals using the first antenna and the second antenna, wherein

the connection conductor includes side protruding portions that protrude in an extension direction, in which the first antenna and the second antenna are extended, so as to sandwich two connection sections that are the first connection section and the second connection section, and

the guard conductor is also arranged in a position along the side protruding portions.

14 . The radar apparatus according to claim 13 , wherein:

the antenna apparatus includes a conductor layer C that is separated from the conductor layer B in a direction from the conductor layer A towards the conductor layer B; and

the processing circuit is connected to the conductor layer C.

15 . A radar apparatus comprising:

an antenna apparatus comprising:

a conductor layer A;

a conductor layer B; and

a dielectric layer that is sandwiched between the conductor layer A and the conductor layer B, wherein

a first antenna, a second antenna, and a connection conductor are formed in the conductor layer A, the connection conductor being connected to both of the first antenna and the second antenna,

a guard conductor is provided in the dielectric layer, and

the guard conductor is arranged along an outer periphery of the connection conductor that excludes at least a first connection section and a second connection section of the connection conductor, the first connection section being a connection section of the connection conductor that is connected to the first antenna, and the second connection section being a connection section of the connection conductor that is connected to the second antenna, and

the guard conductor is also arranged in a position that is parallel to an extension direction in which the first antenna and the second antenna are extended and is sandwiched between the first connection section and the second connection section; and

a processing circuit that performs at least one process of two processes that are a transmission process and a reception process for high frequency signals using the first antenna and the second antenna, wherein

the connection conductor includes an intermediate protruding portion that protrudes in an extension direction of the first antenna and the second antenna so as to be sandwiched between two connection sections that are the first connection section and the second connection section, and

the guard conductor is also arranged in a position along the intermediate protruding portion.

16 . The radar apparatus according to claim 15 , wherein:

the antenna apparatus includes a conductor layer C that is separated from the conductor layer B in a direction from the conductor layer A towards the conductor layer B; and

the processing circuit is connected to the conductor layer C.