IP Library › Granted Patent US 12,368,242
Granted Patent B1
US 12,368,242 · App. 18/940,998 · Granted Jul 22, 2025

Dual-polarized ultrawideband antennas and antenna arrays

Inventors: Muhammad Hamza (Miami, FL); Stavros Georgakopoulos (Miami, FL); Constantinos L. Zekios (Miami, FL); Christos Exadaktylos (Miami, FL)
Assignee: The Florida International University Board of Trustees
H01Q9/0421H01Q1/48H01Q5/25H01Q21/24
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Quick Facts
Patent No.
US 12,368,242
App. No.
18/940,998
Granted
Jul 22, 2025
Kind
B1
Abstract

Dual-polarized ultrawideband antennas and antenna arrays are provided. Fully inverted-L elements (FILEs) can be used as the radiating element in a unit cell antenna, which can be repeated to form an array. The dual-polarized FILE unit cell can include two L-bent elements, which tightly couple to a common shorted via as well as to each other. The same shorted via can be utilized to suppress the well-known common mode resonance.

Claims (56)

1. An antenna element, comprising:

a ground plane;

a first fully inverted-L element (FILE) comprising a first antenna conductive line extending parallel to the ground plane and a first feed via electrically connected to a distal end of the first antenna conductive line and extending down through the ground plane;

a second FILE comprising a second antenna conductive line extending parallel to the ground plane and a second feed via electrically connected to a distal end of the second antenna conductive line and extending down through the ground plane; and

a shorted via connected to the ground plane, the first FILE, and the second FILE,

the shorted via being connected to a proximal end of the first antenna conductive line opposite from the distal end of the first antenna conductive line,

the shorted via being connected to a proximal end of the second antenna conductive line opposite from the distal end of the second antenna conductive line,

the first FILE being a first radiating element,

the second FILE being a second radiating element,

the proximal end of the first antenna conductive line having a first hemispherical shape with a first curved portion and a first straight edge portion along an entirety of a diameter of the first hemispherical shape,

the proximal end of the second antenna conductive line having a hemispherical shape with a second curved portion and a second straight edge portion along an entirety of a diameter of the second hemispherical shape,

the first straight edge portion of the proximal end of the first antenna conductive line directly facing an entirety of the second straight edge portion of the proximal end of the second antenna conductive line.

2. The antenna element according to claim 1 , further comprising a superstrate disposed on the first FILE, the second FILE, and the shorted via.

3. The antenna element according to claim 2 , the antenna element having a ratio of a highest operating frequency to a lowest operating frequency of at least 2:1.

4. The antenna element according to claim 1 , the proximal end of the first antenna conductive line being disposed closer to the proximal end of the second antenna conductive line than it is to the distal end of the second antenna conductive line, and

the proximal end of the second antenna conductive line being disposed closer to the proximal end of the first antenna conductive line than it is to the distal end of the first antenna conductive line.

5. The antenna element according to claim 1 , further comprising a substrate disposed on the ground plane,

the first antenna conductive line and the second antenna conductive line being disposed on the substrate.

6. The antenna element according to claim 1 , further comprising a superstrate disposed on the first FILE, the second FILE, and the shorted via.

7. The antenna element according to claim 1 , the antenna element having an operating bandwidth of about 34 gigahertz (GHz) to about 94 GHz.

8. The antenna element according to claim 1 , the antenna element having a ratio of a highest operating frequency to a lowest operating frequency of at least 2:1.

9. The antenna element according to claim 8 , the ratio of the highest operating frequency to the lowest operating frequency being at least 2.75:1.

10. The antenna element according to claim 1 , the antenna element having a highest operating frequency of at least 80 GHz.

11. The antenna element according to claim 10 , the antenna element having a lowest operating frequency of no more than 40 GHz.

12. The antenna element according to claim 1 , the first antenna conductive line extending away from the shorted via in a first direction parallel to the ground plane, and

the second antenna conductive line extending away from the shorted via in a second direction parallel to the ground plane and perpendicular to the first direction.

13. A dual-polarized ultrawideband antenna array, the antenna array comprising:

a plurality of unit cell antenna elements arranged in an array, each unit cell antenna element being the antenna element according to claim 1 ,

the antenna array having a ratio of a highest operating frequency to a lowest operating frequency of at least 2:1.

14. The antenna array according to claim 13 , the antenna array having an operating bandwidth of about 34 gigahertz (GHz) to about 94 GHz.

15. The antenna array according to claim 14 , each unit cell antenna element of the plurality of unit cell antenna elements having a square shape with a side length of 0.47λ h , where λ h is a wavelength at a highest operating frequency of the antenna array, and

the ratio of the highest operating frequency to the lowest operating frequency being at least 2.75:1.

16. The antenna array according to claim 13 , the distal end of the first antenna conductive line of each non-edge unit cell antenna element of the plurality of unit cell antenna elements being spaced apart the proximal end of the second antenna conductive line of an adjacent unit cell antenna element by a predetermined gap, and

the predetermined gap being in a range of from 100 micrometers (μm) to 200 μm.

17. An antenna element, comprising:

a ground plane;

a first fully inverted-L element (FILE) comprising a first antenna conductive line extending parallel to the ground plane and a first feed via electrically connected to a distal end of the first antenna conductive line and extending down through the ground plane;

a second FILE comprising a second antenna conductive line extending parallel to the ground plane and a second feed via electrically connected to a distal end of the second antenna conductive line and extending down through the ground plane;

a shorted via connected to the ground plane, the first FILE, and the second FILE; and

a superstrate disposed on the first FILE, the second FILE, and the shorted via,

the shorted via being connected to a proximal end of the first antenna conductive line opposite from the distal end of the first antenna conductive line,

the shorted via being connected to a proximal end of the second antenna conductive line opposite from the distal end of the second antenna conductive line,

the first FILE being a first radiating element,

the second FILE being a second radiating element,

the antenna element having an operating bandwidth of about 34 gigahertz (GHz) to about 94 GHz,

the proximal end of the first antenna conductive line having a first hemispherical shape with a first curved portion and a first straight edge portion along an entirety of a diameter of the first hemispherical shape,

the proximal end of the second antenna conductive line having a second hemispherical shape with a second curved portion and a second straight edge portion along an entirety of a diameter of the second hemispherical shape,

the first antenna conductive line extending away from the shorted via in a first direction parallel to the ground plane,

the second antenna conductive line extending away from the shorted via in a second direction parallel to the ground plane and perpendicular to the first direction, and

the first straight edge portion of the proximal end of the first antenna conductive line directly facing an entirety of the second straight edge portion of the proximal end of the second antenna conductive line.

18. A dual-polarized ultrawideband antenna array, the antenna array comprising:

a plurality of unit cell antenna elements arranged in an array, each unit cell antenna element being the antenna element according to claim 17 ,

the antenna array having an operating bandwidth of about 34 GHz to about 94 GHz.

19. The antenna array according to claim 18 , the distal end of the first antenna conductive line of each non-edge unit cell antenna element of the plurality of unit cell antenna elements being spaced apart the proximal end of the second antenna conductive line of an adjacent unit cell antenna element by a predetermined gap,

the predetermined gap being in a range of from 100 micrometers (μm) to 200 μm, and

each unit cell antenna element of the plurality of unit cell antenna elements having a square shape with a side length of about 1.5 millimeters (mm).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2024
From: HAMZA, MUHAMMAD; GEORGAKOPOULOS, STAVROS; ZEKIOS, CONSTANTINOS L.; EXADAKTYLOS, CHRISTOS
To: THE FLORIDA INTERNATIONAL UNIVERSITY BOARD OF TRUSTEES
Reel/Frame 069620/0931 →
Continuity (1)
Continuation 18677234 · May 29, 2024
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