IP Library Granted Patent US 10,804,609
Granted Patent B1
US 10,804,609 · App. 16/543,487 · Granted Oct 13, 2020

Circular polarization antenna array

Inventors: Mehrdad Nosrati (Redmond, WA); Gordon Michael Coutts (Woodinville, WA)
Assignee: Facebook, Inc.
H01Q9/0428H01Q19/005H01Q21/065
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Quick Facts
Patent No.
US 10,804,609
App. No.
16/543,487
Granted
Oct 13, 2020
Kind
B1
Abstract

Apparatuses, methods, and systems for an antenna element are disclosed. For an embodiment, the antenna element includes a feed line layer, a first substrate adjacent to the feed line layer, a ground layer adjacent to the first substrate, a second substrate adjacent to the ground layer, and a third layer adjacent to the second substrate. The feed line layer includes a conductive fork-shape that includes a conductive handle adapted to be electrically connected to a center conductor of a coaxial line, a conductive cross-section that crosses an end portion of the conductive handle, and a plurality of conductive fingers. For an embodiment, a rectangular slot is formed in the ground layer, wherein a length of the rectangular slot is perpendicular to the conductive handle. For an embodiment, the third layer includes four parasitic elements, wherein each parasitic element is electrically connected to the ground layer through a shorting via.

Claims (37)

1. An antenna element, comprising:

a feed line layer, comprising a conductive fork-shape comprising:

a conductive handle adapted to be electrically connected to a center conductor of a coaxial line;

a conductive cross-section that crosses an end portion of the conductive handle;

a plurality of conductive fingers, a conductive finger connected to each end portion of the conductive cross-section, and a conductive finger connected to a center portion of the conductive cross-section;

a first substrate adjacent to the feed line layer;

a ground layer adjacent to the first substrate, wherein a rectangular slot is formed in the ground layer, wherein a length of the rectangular slot is perpendicular to the conductive handle;

a second substrate adjacent to the ground layer;

a third layer adjacent to the second substrate, the third layer comprising four parasitic elements, wherein each parasitic element is electrically connected to the ground layer through a shorting via.

2. The antenna element of claim 1 , wherein wireless signals are communicated through the antenna element having a maximum wavelength of λmax, a minimum wavelength of λmin, and a center wavelength of λmid.

3. The antenna element of claim 2 , wherein a length of the conductive handle is within a manufacturing tolerance of (λmin)/2.

4. The antenna element of claim 2 , wherein a length of the conductive cross-section is within a manufacturing tolerance of (λmin)/2.

5. The antenna element of claim 2 , wherein a length of each of the plurality of conductive fingers is within a manufacturing tolerance of (λmin)/8.

6. The antenna element of claim 2 , a width of the first substrate is within a manufacturing tolerance of (λmin)/10.

7. The antenna element of claim 2 , a width of the second substrate is within a manufacturing tolerance of (λmin)/4.

8. The antenna element of claim 1 , wherein a width of the conductive handle is selected based on an output impedance of the coaxial line.

9. The antenna element of claim 1 , wherein the length of the slot is within a manufacturing tolerance of (λmin)/2.

10. The antenna element of claim 1 , wherein a width of the slot is within a manufacturing tolerance of (λmin)/8.

11. The antenna element of claim 1 , wherein a width and length of the antenna element is within a manufacturing tolerance of (λmid)/2.

12. The antenna element of claim 1 , wherein the antenna element is one of a plurality of antenna elements that form an antenna array.

13. The antenna element of claim 12 , wherein the antenna array includes a single-feed circular polarization antenna array.

14. The antenna element of claim 13 , wherein a conductive handle each antenna element of the antenna array is electrically connected to the single-feed of the circular polarization antenna array.

15. The antenna element of claim 1 , wherein two of the four parasitic elements of the third layer comprise truncated corner patches, wherein inside edges of the truncated corner patches have lengths within a manufacturing tolerance of (λmax)/2.

16. The antenna element of claim 1 , wherein two of the four parasitic elements of the third layer comprise triangular t-bone patches, wherein a width and a length of a T of the triangular t-bone patches are within a manufacturing tolerance of (λmax)/4.

17. The antenna element of claim 1 , wherein the parasitic elements comprise elliptical patches, wherein a larger radius of the elliptical patches is within a manufacturing tolerance of (λmax)/4, and a smaller radius of the elliptical patches is within a manufacturing tolerance of (λmin)/4.

18. The antenna element of claim 17 , wherein the elliptical patches of two of the four parasitic elements have a larger radius rotated 90 degrees relative to the smaller radius of the other two of the four parasitic elements.

19. The antenna element of claim 1 , wherein the shorting via of two of the parasitic elements are electrically connected to annular rings of the ground layer directly adjacent to the slot, and two of the parasitic elements are electrically connected to the ground layer not directly adjacent to the slot.

20. An antenna array, comprising;

a plurality of antenna elements organized into rows and columns, each antenna element comprising:

a feed line layer, comprising a conductive fork-shape comprising:

a conductive handle adapted to be electrically connected to a center conductor of a coaxial line;

a conductive cross-section that crosses an end portion of the conductive handle;

a plurality of conductive fingers, a conductive finger connected to each end portion of the conductive cross-section, and a conductive finger connected to a center portion of the conductive cross-section;

a first substrate adjacent to the feed line layer;

a ground layer adjacent to the first substrate, wherein a rectangular slot is formed in the ground layer, wherein a length of the rectangular slot is perpendicular to the conductive handle;

a second substrate adjacent to the ground layer;

a third layer adjacent to the second substrate, the third layer comprising four parasitic elements, wherein each parasitic element is electrically connected to the ground layer through a shorting via.

Assignments (2)
CHANGE OF NAME Recorded Dec 13, 2021
From: FACEBOOK, INC.
To: META PLATFORMS, INC.
Reel/Frame 058495/0763 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2019
From: NOSRATI, MEHRDAD; COUTTS, GORDON MICHAEL
To: FACEBOOK, INC.
Reel/Frame 050082/0749 →
Continuity (1)
Provisional Application 62878331 · Jul 24, 2019
Cited By (2)
US 12,218,431 US 12,401,114