IP Library Granted Patent US 12,695,171
Granted Patent B2
US 12,695,171 · App. 18/420,183 · Granted Jul 28, 2026

Antenna assembly including two-dimensional surface wave fed array for azimuth gain control

Inventor: John Karl Blauert (Westfield, IN)
Assignee: Aptiv Technologies AG
H01Q1/2283H01Q13/0233
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Quick Facts
Patent No.
US 12,695,171
App. No.
18/420,183
Granted
Jul 28, 2026
Kind
B2
Abstract

An antenna assembly including: a circuit board with an integrated circuit configured to process a radio frequency (RF) signal; a waveguide plate including a waveguide configured to guide the RF signal at least one of to and from a conductive trace extending from the integrated circuit; and a conductive top plate over the waveguide plate. The conductive top plate includes: an outer surface and an inner surface facing the waveguide plate; a plurality of slots aligned with the waveguide and aligned along the conductive top plate in a Y-direction; and cavities defined by the conductive top plate and recessed below the outer surface of the conductive top plate. A row of the cavities is beside the plurality of slots. The cavities of the row are aligned in the Y-direction parallel to the plurality of slots and spaced apart in the Y-direction.

Claims (52)

1 . An antenna assembly comprising:

a circuit board including an integrated circuit configured to process a radio frequency (RF) signal, and a conductive trace extending from the integrated circuit;

a waveguide plate over the circuit board, the waveguide plate including a waveguide configured to guide the RF signal at least one of to and from the conductive trace; and

a conductive top plate over the waveguide plate, the conductive top plate including,

an outer surface and an inner surface facing the waveguide plate, the outer surface is opposite to the inner surface,

a plurality of slots aligned with the waveguide and extending through the conductive top plate, the plurality of slots aligned along the conductive top plate in a Y-direction, and

cavities defined by the conductive top plate and recessed below the outer surface of the conductive top plate, each one of the cavities including a bottom surface between the outer surface and the inner surface of the conductive top plate, a row of the cavities is beside the plurality of slots, the cavities of the row are aligned in the Y-direction parallel to the plurality of slots and spaced apart in the Y-direction.

2 . The antenna assembly of claim 1 , wherein,

the row of the cavities is a first row on a first side of the plurality of slots, and

the antenna assembly further includes a second row of the cavities on a second side of the plurality of slots that is opposite to the first side, the cavities of the second row are aligned in the Y-direction parallel to the plurality of slots and spaced apart in the Y-direction.

3 . The antenna assembly of claim 1 , wherein the cavities are spaced apart in the Y-direction at a pitch of 3.2 mm.

4 . The antenna assembly of claim 1 , wherein,

the row of the cavities is one of a plurality of first rows of the cavities on a first side of the plurality of slots, the plurality of first rows are spaced apart in an X-direction that is perpendicular to the Y-direction, and

the antenna assembly further includes a plurality of second rows of the cavities on a second side of the plurality of slots that is opposite to the first side, the plurality of second rows are spaced apart in the X-direction that is perpendicular to the Y-direction.

5 . The antenna assembly of claim 4 , wherein the plurality of first rows are spaced apart in the X-direction at a pitch of 3.3 mm.

6 . The antenna assembly of claim 4 , further comprising a first trough between two of the plurality of first rows, the first trough extending in the Y-direction.

7 . The antenna assembly of claim 6 , wherein the plurality of first rows are spaced apart in the X-direction at a pitch of 2.75 mm.

8 . The antenna assembly of claim 6 , wherein the first trough has a length in the Y-direction of 23 mm, a width in the X-direction of 0.8 mm, and a depth in a Z-direction of 0.4 mm.

9 . The antenna assembly of claim 6 , further comprising a second trough between two of the plurality of second rows, the second trough extending in the Y-direction.

10 . The antenna assembly of claim 9 , wherein the cavities of each one of the plurality of first rows are spaced apart in the Y-direction, and the cavities of each one of the plurality of second rows are spaced apart in the Y-direction.

11 . The antenna assembly of claim 1 , wherein,

each one of the cavities has a length in the Y-direction, a width in an X-direction that is perpendicular to Y-direction, and a depth in a Z-direction,

the length is greater than the width, and

the depth is less than the length and greater than the width.

12 . The antenna assembly of claim 1 , wherein,

the waveguide is a first waveguide and the plurality of slots is a first plurality of slots,

the conductive top plate further includes a second plurality of slots aligned parallel to the first plurality of slots in the Y-direction over a second waveguide of the waveguide plate, and

an additional row of the cavities is beside the second plurality of slots, the cavities of the additional row are aligned in the Y-direction parallel to the second plurality of slots and spaced apart in the Y-direction.

13 . An antenna assembly comprising:

a circuit board including an integrated circuit configured to process a radio frequency (RF) signal, and a conductive trace extending from the integrated circuit;

a waveguide plate over the circuit board, the waveguide plate including a waveguide configured to guide the RF signal at least one of to and from the conductive trace; and

a conductive top plate over the waveguide plate, the conductive top plate including,

an outer surface and an inner surface facing the waveguide plate, the outer surface is opposite to the inner surface,

a plurality of slots aligned with the waveguide and extending through the conductive top plate, the plurality of slots aligned along the conductive top plate in a Y-direction, and

cavities defined by the conductive top plate and recessed below the outer surface of the conductive top plate, each one of the cavities including a bottom surface between the outer surface and the inner surface of the conductive top plate, rows of the cavities are beside the plurality of slots on opposite sides of the plurality of slots, the cavities of each one of the rows are aligned in the Y-direction parallel to the plurality of slots and spaced apart in the Y-direction, the rows are spaced apart in an X-direction that is perpendicular to the Y-direction, each slot of the plurality of slots is unaligned with the cavities in the X-direction.

14 . The antenna assembly of claim 13 , wherein the cavities are spaced apart in the Y-direction at a pitch of 3.2 mm.

15 . The antenna assembly of claim 13 , wherein,

each one of the cavities has a length in the Y-direction, a width in an X-direction that is perpendicular to Y-direction, and a depth in a Z-direction,

the length is greater than the width, and

the depth is less than the length and greater than the width.

16 . The antenna assembly of claim 15 , wherein the length is more than twice the width.

17 . An antenna assembly comprising:

a circuit board including an integrated circuit configured to process a radio frequency (RF) signal, and a conductive trace extending from the integrated circuit;

a waveguide plate over the circuit board, the waveguide plate including a waveguide configured to guide the RF signal at least one of to and from the conductive trace; and

a conductive top plate over the waveguide plate, the conductive top plate including,

an outer surface and an inner surface facing the waveguide plate, the outer surface is opposite to the inner surface,

a plurality of slots aligned with the waveguide and extending through the conductive top plate, the plurality of slots aligned along the conductive top plate in a Y-direction,

cavities defined by the conductive top plate and recessed below the outer surface of the conductive top plate, rows of the cavities are beside the plurality of slots, the cavities of each one of the rows are aligned in the Y-direction parallel to the plurality of slots and spaced apart in the Y-direction, and each one of the rows is spaced apart in an X-direction that is perpendicular to the Y-direction, and

troughs defined by the conductive top plate and recessed below the outer surface of the conductive top plate, each one of the troughs extends in the Y-direction and is between adjacent ones of the rows of the cavities.

18 . The antenna assembly of claim 17 , wherein the rows of the cavities are spaced apart in the X-direction at a pitch of 2.75 mm.

19 . The antenna assembly of claim 18 , wherein each one of the troughs has a length in the Y-direction of 23 mm, a width in the X-direction of 0.8 mm, and a depth in a Z-direction of 0.4 mm.

20 . The antenna assembly of claim 17 , wherein the rows of the cavities are on opposite sides of the plurality of slots.