IP Library › Granted Patent US 12,424,755
Granted Patent B2
US 12,424,755 · App. 18/101,456 · Granted Sep 23, 2025

Dual polarized aperture fed stacked patch antenna

Inventors: Jean L. Kubwimana (Merrimack, NH); Alexander D. Johnson (Waltham, MA); Jacob Tamasy (Nashua, NH)
Assignee: BAE Systems Information and Electronic Systems Integration Inc.
H01Q9/0414H01Q1/48H01Q9/045H01Q21/24
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 12,424,755
App. No.
18/101,456
Granted
Sep 23, 2025
Kind
B2
Abstract

An antenna assembly includes a ground plane having a first aperture slot and a second aperture slot. The first and second aperture slots are non-intersecting and substantially symmetrical with each other about an imaginary plane of symmetry that divides the ground plane into two substantially symmetrical halves, and that is orthogonal to the ground plane. The antenna assembly includes a first patch antenna above the ground plane, and a second patch antenna above the first patch antenna. The first patch antenna is separated from the ground plane, and the second patch antenna is separated from the first patch antenna. The imaginary plane also divides the first patch antenna into two substantially symmetrical halves, and divides the second patch antenna into two substantially symmetrical halves. A first feed line and a second feed line are at least in part below the first aperture slot and the second aperture slot, respectively.

Claims (62)

1. An antenna assembly comprising:

a ground plane having a first aperture slot and a second aperture slot, wherein the first aperture slot and the second aperture slot are non-intersecting and substantially symmetrical with each other about an imaginary plane of symmetry that divides the ground plane into two substantially symmetrical halves, the imaginary plane orthogonal to the ground plane;

a first patch antenna above the ground plane, and a second patch antenna above the first patch antenna, wherein the first patch antenna is separated from the ground plane, and the second patch antenna is separated from the first patch antenna;

a first feed line at least in part below the first aperture slot, and a second feed line at least in part below the second aperture slot, wherein no portion of the first feed line is below the second aperture slot and no portion of the second feed line is below the first aperture slot, and wherein the first and second feed lines are symmetrical with each other about the imaginary plane;

wherein the first feed line comprises:

a first section that is below the first aperture slot;

a second section that is perpendicular to the first section and on a first side of the first section, at least a part of the second section is not below the first aperture slot; and

a third section that is perpendicular to the first section and on a second side of the first section that is opposite the first side, wherein a first part of the third section is below the first aperture slot and a second part of the third section is not below the first aperture slot.

2. The antenna assembly of claim 1 , wherein:

the first aperture slot has (i) a first side that faces a first side of the ground plane, and (ii) a second side that faces a second side of the ground plane, the first side of the first aperture slot is opposite the second side of the first aperture slot, and the first side of the ground plane is opposite the second side of the ground plane; and

a length of the first side of the first aperture slot is greater than a length of the second side of the first aperture slot by at least 0.02λ, where λ is the signal wavelength.

3. The antenna assembly of claim 2 , wherein:

the first aperture slot further has (i) a third side that faces a third side of the ground plane, and (ii) a fourth side that faces a fourth side of the ground plane,

wherein the third side of the first aperture slot is substantially parallel to the third side of the ground plane, and wherein the fourth side of the first aperture slot is not parallel to the fourth side of the ground plane.

4. The antenna assembly of claim 3 , wherein:

the first side of the aperture slot is substantially parallel to and at a first distance from the first side of the ground plane;

the third side of the aperture slot is substantially parallel to and at a second distance from the third side of the ground plane; and

the first distance is greater than the second distance by at least 0.02λ, where λ is the signal wavelength.

5. The antenna assembly of claim 3 , wherein the fourth side is non-linear.

6. The antenna assembly of claim 3 , wherein an angle between the fourth side of the first aperture slot and the first side of the first aperture slot is less than 88 degrees, and an angle between the fourth side of the first aperture slot and the second side of the first aperture slot is more than 92 degrees.

7. The antenna assembly of claim 3 , wherein:

the ground plane has an outer perimeter defined by a first corner, a second corner, a third corner that is opposite the first corner, and a fourth corner that opposite the second corner;

an internal corner of the ground plane defined by the first side and the fourth side of the first aperture slot is nearer to the first corner of the ground plane than it is to the second, third and fourth corners; and

the imaginary plane passes through the first and third corners of the ground plane.

8. The antenna assembly of claim 1 , wherein the imaginary plane divides each of the first patch antenna and the second patch antenna into corresponding substantially symmetrical halves.

9. The antenna assembly of claim 1 , wherein:

the first patch antenna has a corresponding surface facing the ground plane;

the second patch antenna has a corresponding surface facing the first patch antenna;

the surface of the first patch antenna has a side having a first length;

the surface of the second patch antenna has a side having a second length; and

the first length and the second length differ by at least 0.04λ, where λ is the signal wavelength.

10. The antenna assembly of claim 9 , wherein the surface of the first patch antenna has one of a square shape, a rhombus shape, or a circular shape, and the surface of the second patch antenna has one of a square shape, a rhombus shape, or a circular shape.

11. The antenna assembly of claim 1 , further comprising dielectric fill material between (i) the first and second feed lines and (ii) the ground plane.

12. The antenna assembly of claim 1 , wherein a surface of the ground plane, which faces the first and second patch antennas, is substantially a square, with a side of the surface of the ground plane having a length that is at most 0.5λ, where λ is the signal wavelength.

13. The antenna assembly of claim 1 , wherein the antenna assembly is configured to provide a bandwidth ratio of at least 2:1.

14. The antenna assembly of claim 1 , wherein the first patch antenna is a first lower patch antenna, the second patch antenna is a first upper patch antenna, and wherein the antenna assembly further comprises:

a second lower patch antenna above the ground plane and coplanar with the first lower patch antenna; and

a second upper patch antenna above the second lower patch antenna and coplanar with the first upper patch antenna;

wherein the first aperture slot and the second aperture slot of the ground plane are below the first lower patch antenna, and wherein the ground plane further comprises a third aperture slot and a fourth aperture slot that are below the second lower patch antenna.

15. An antenna assembly comprising:

a first feed line and a second feed line that are symmetrical with each other about an imaginary plane of symmetry;

a ground plane having (i) a first aperture slot that is above at least a part of the first feed line and (ii) a second aperture slot that is above at least a part of the second feed line, wherein the first aperture slot and the second aperture slot are non-intersecting;

one or more patch antennas above the ground plane and separated from the ground plane;

wherein:

the first aperture slot has (i) a first side that faces a first side of the ground plane, and (ii) a second side that faces a second side of the ground plane, the first side of the first aperture slot is opposite the second side of the first aperture slot, and the first side of the ground plane is opposite the second side of the ground plane;

a length of the first side of the first aperture slot is greater than a length of the second side of the first aperture slot by at least 0.02λ, where λ is the signal wavelength the first aperture slot further has (i) a third side that faces a third side of the ground plane, and (ii) a fourth side that faces a fourth side of the ground plane,

the third side of the first aperture slot is substantially parallel to the third side of the ground plane, and wherein the fourth side of the first aperture slot is not parallel to the fourth side of the ground plane;

the first side of the aperture slot is substantially parallel to and at a first distance from the first side of the ground plane;

the third side of the aperture slot is substantially parallel to and at a second distance from the third side of the ground plane; and

the first distance is greater than the second distance by at least 0.02λ, where λ is the signal wavelength.

16. The antenna assembly of claim 15 , wherein the one or more patch antennas comprise:

a first patch antenna above the ground plane; and

a second patch antenna above the first patch antenna,

wherein the first patch antenna and the second patch antenna have the same shape but different sizes, wherein the plane of symmetry is orthogonal to the ground plane, and wherein the first aperture slot and the second aperture slot are symmetrical with each other about the plane of symmetry.

17. An antenna array comprising a plurality of antenna structures, the antenna array comprising:

a ground plane common to the plurality of antenna structures, the ground plane having, for each antenna structure of the plurality of antenna structures, a corresponding first aperture slot and a corresponding second aperture slot that are non-intersection and symmetrical to each other about a corresponding plane of symmetry, such that the ground plane comprises a plurality of first aperture slots and plurality of second aperture slots;

wherein each antenna structure of the plurality of antenna structures comprises (i) a corresponding lower patch antenna that is above the corresponding first and second aperture slots of the ground plane, and (ii) an upper patch antenna above the lower patch antenna, such that the antenna array comprises a plurality of lower patch antennas and a plurality of upper patch antennas;

a first feed line at least in part below the first aperture slot, and a second feed line at least in part below the second aperture slot, wherein no portion of the first feed line is below the second aperture slot and no portion of the second feed line is below the first aperture slot, and wherein the first and second feed lines are symmetrical with each other about the imaginary plane;

wherein the first feed line comprises:

a first section that is below the first aperture slot;

a second section that is perpendicular to the first section and on a first side of the first section, at least a part of the second section is not below the first aperture slot; and

a third section that is perpendicular to the first section and on a second side of the first section that is opposite the first side, wherein a first part of the third section is below the first aperture slot and a second part of the third section is not below the first aperture slot.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 26, 2023
From: KUBWIMANA, JEAN L.; JOHNSON, ALEXANDER D.; TAMASY, JACOB
To: BAE SYSTEMS INFORMATION AND ELECTRONIC SYSTEMS INTEGRATION INC.
Reel/Frame 062496/0212 →
Continuity (1)
Related Publication 20240250431A1 · Jul 25, 2024
References Cited (25)
US 5043738A · Shapiro · 1991 [cited by examiner]
US 6002367A · Engblom · 1999 [cited by examiner]
US 7626549B2 · Channabasappa · 2009 [cited by applicant]
US 20140361947A1 · Haridas et al. · 2014 [cited by applicant]
US 20180159213A1 · Haziza · 2018 [cited by applicant]
US 20220352635A1 · Compton · 2022 [cited by examiner]
US 20220352636A1 · Yetisir · 2022 [cited by applicant]
US 20220368028A1 · Govoni · 2022 [cited by examiner]
AU 2021103968A4 · 2022 [cited by applicant]
JP 6589815B2 · 2019 [cited by examiner]
E-Shaped Aperture Coupled Microstrip Patch Array Antenna NPL (Year: 2022). [cited by examiner]
JP-6589815-B2 (Year: 2019). [cited by examiner]
JP-6589815-B2 Translation (Year: 2019). [cited by examiner]
Kajol Chandra Paul, and Anis Ahmed, E-shaped Aperture Coupled Microstrip Patch Array Antenna for High Speed Downlink Applications in Small Satellites, Jan. 2022, Intl Journal of Electronics and Telecommunications, 2022,… [cited by examiner]
International Search Report, PCT/US24/12515, mailed May 6, 2024, 16 pages. [cited by applicant]
Ding, et al., “An Optically Transparent Dual-Polarized Stacked Patch Antenna With Metal-Mesh Films,” IEEE Antennas and Wireless Propagation Letters, vol. 18. No. 10. Oct. 2019. pp. 1981-1985. [cited by applicant]
Gao, et al., “Dual-Polarized Slot-Coupled Planar Antenna With wide Bandwidth,” IEEE Transactions on Antennas and Propagation, vol. 51. No. 3, Mar. 2003. pp. 441-448. [cited by applicant]
Ghorbani, K. and Waterhouse, R.B., “Dual Polarized Wide-Band Aperture Stacked Patch Antennas,” IEEE Transactions on Antennas and Propagation, vol. 52. No. 8, Aug. 2004. pp. 2171-2174. [cited by applicant]
Kim, et al., “A Dual-Polarization Aperture Coupled Stacked Microstrip Patch Antenna for Wideband Application,” IEEE, 2010. 4 pages. [cited by applicant]
Lai, Hau-Wah and Luk, Kwai-Man, “Dual Polarized Patch Antenna Fed by Meandering Probes,” IEEE Transactions on Antennas and Propagation, vol. 55. No. 9, Sep. 2007. pp. 2625-2627. [cited by applicant]
Mishra, et al., “A Review of Broadband Dual Linearly Polarized Microstrip Antenna Designs with High Isolation,” IEEE Antennas and Propagation Magazine, vol. 56. No. 6, Dec. 2014. pp. 238-251. [cited by applicant]
Wincza, et al., “Octave-Band Aperture-Stakced Microstrip Antenna Element for Wideband Antenna Arrays,” IEEE, 2016. pp. 1579-1580. [cited by applicant]
Padhi, et al., “A Dual Polarized Aperture Coupled Circular Patch Antenna Using a C-Shaped Coupling Slot,” IEEE Transactions on Antennas and Propagation, vol. 51. No. 12, Dec. 2003, pp. 3295-3298. [cited by applicant]
Targonski, et al., “Design of Wide-Band Aperture-Stacked Patch Microstrip Antennas,” IEEE Transactions on Antennas and Propagation, vol. 46. No. 9, Sep. 1998, pp. 1245-1251. [cited by applicant]
Rahim, et al., “Aperture Coupled Microstrip Antenna with Different Feed Sizes and Aperture Positions,” IEEE, 2006 International RF and Microwave Conference Proceedings, Sep. 12-14, 2006. pp. 31-35. [cited by applicant]