IP Library › Granted Patent US 10,992,066
Granted Patent B2
US 10,992,066 · App. 16/612,765 · Granted Apr 27, 2021

Broadband antenna

Inventors: Christos Kolitsidas (Stockholm, SE); Stefan Engström (Värmdö, SE); Lars Jonsson (Vällingby, SE)
Assignee: Telefonaktiebolaget LM Ericsson (publ)
H01Q21/30H01Q5/48H01Q9/285H01Q21/00H01Q21/062
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Quick Facts
Patent No.
US 10,992,066
App. No.
16/612,765
Granted
Apr 27, 2021
Kind
B2
Abstract

A single polarized radiator operating within a frequency range, the radiator comprising multiple active dipoles configured to be arranged a predetermined distance from a ground plane. Each active dipole comprising a first active element having first electrical characteristics and a second active element having second electrical characteristics, which first and second active elements are equal in length and provided with a respective feeding point. In each active dipole, first electrical characteristics differs from second electrical characteristics, the length of each active element is selected based on an upper frequency of the frequency range, and the first active element and/or the second active element of each active dipole is/are configured to be capacitively coupled to an active element of an adjacent active dipole.

Claims (43)

1. A single polarized radiator for operating within a frequency range, the single polarized radiator comprising:

multiple active dipoles configured to be a predetermined distance from a ground plane, each active dipole comprising a first active element having first electrical characteristics and a second active element having second electrical characteristics, which first and second active elements are equal in length and provided with a respective feeding point, wherein:

in each active dipole, the first electrical characteristics differs from the second electrical characteristics,

a length of each active element is selected based on an upper frequency of the frequency range,

one or both of the first active element and the second active element of each active dipole capacitively coupled to an active element of an adjacent active dipole; and

a first edge section and a second edge section, the first edge section capacitively coupled to a first side of the multiple active dipoles and the second edge section capacitively coupled to a second side of the multiple active dipoles, the second side opposite to the first side, wherein the first and second edge sections are configured to reduce edge propagating waves, and each edge section comprises an edge element having an edge profile extending from a forward edge, adjacent to a respective side, to a rear edge connected to the ground plane, and at least one meandering section provided in the edge profile.

2. The single polarized radiator according to claim 1 , wherein the predetermined distance between the active dipoles and the ground plane is selected based on the upper frequency.

3. The single polarized radiator according to claim 2 , wherein the predetermined distance is within the range of 0.25 to 0.5 of a wavelength of the upper frequency.

4. The single polarized radiator according to claim 3 , wherein the predetermined distance is the wavelength of the upper frequency divided by 2.3.

5. The single polarized radiator according to claim 1 , wherein electrical characteristics of the multiple active dipoles are the same.

6. The single polarized radiator according to claim 1 , wherein electrical characteristics of at least one of the multiple active dipoles are unique.

7. The single polarized radiator according to claim 1 , wherein electrical characteristics of each of the multiple active dipoles are unique.

8. The single polarized radiator according to claim 1 , wherein each edge section further comprising:

multiple edge dipoles, each edge dipole comprising two edge elements being mirror images of each other, each edge dipole having an edge dipole length, and each edge dipole configured to be a same distance from the ground plane as the active dipoles.

9. The single polarized radiator according to claim 8 , wherein the edge dipole length of each edge dipole belonging to the same edge section is equal.

10. The single polarized radiator according to claim 8 , wherein the edge dipole length of at least one edge dipole differs from an adjacent edge dipole belonging to the same edge section.

11. The single polarized radiator according to claim 8 , wherein different loading is applied to the edge dipoles belonging to the same edge section.

12. The single polarized radiator according to claim 1 , wherein a first meandering section is provided at the forward edge of each edge element, or a second meandering section is provided at a side edge of each edge element, or both the first and second meandering sections are provided.

13. A single polarized radiator operating within a frequency range, the single polarized radiator comprising:

multiple active dipoles configured to be a predetermined distance from a ground plane, each active dipole comprising a first active element having first electrical characteristics and a second active element having second electrical characteristics, which first and second active elements are equal in length and provided with a respective feeding point, a length of each active element selected based on an upper frequency of the frequency range, and one or both of the first active element and the second active element of each active dipole capacitively coupled to an active element of an adjacent active dipole; and

a first edge section and a second edge section, the first edge section capacitively coupled to a first side of the multiple active dipoles and the second edge section capacitively coupled to a second side of the multiple active dipoles, the second side opposite to the first side, wherein the edge sections are configured to reduce edge propagating waves, and each edge section comprises an edge element having an edge profile extending from a forward edge, adjacent to a respective side, to a rear edge connected to the ground plane, and at least one meandering section provided in the edge profile.

14. The single polarized radiator according to claim 13 , wherein each edge section further comprising:

multiple edge dipoles, each edge dipole comprising two edge elements being mirror images of each other, each edge dipole having an edge dipole length, and each edge dipole is configured to be a same distance from the ground plane as the active dipoles.

15. The single polarized radiator according to claim 14 , wherein the edge dipole length of each edge dipoles belonging to the same edge section is equal.

16. The single polarized radiator according to claim 14 , wherein the edge dipole length of at least one edge dipole differs from an adjacent edge dipole belonging to the same edge section.

17. The single polarized radiator according to claim 14 , wherein different loading is applied to the edge dipoles belonging to the same edge section.

18. The single polarized radiator according to claim 13 , wherein a first meandering section is provided at the forward edge of each edge element, or a second meandering section is provided at a side edge of each edge element, or both the first and second meandering sections are provided.

19. The single polarized radiator according to claim 13 , wherein in each active dipole, the first electrical characteristics differs from the second electrical characteristics.

20. The single polarized radiator according to claim 19 , wherein the predetermined distance between the active dipoles and the ground plane is selected based on the upper frequency.

21. A single polarized broadband antenna having at least one single polarized radiator, the single polarized radiator for operating within a frequency range comprising:

multiple active dipoles configured to be a predetermined distance from a ground plane,

each active dipole comprising a first active element having first electrical characteristics and a second active element having second electrical characteristics, which first and second active elements are equal in length and provided with a respective feeding point, wherein:

in each active dipole, the first electrical characteristics differs from the second electrical characteristics,

the length of each active element is selected based on an upper frequency of the frequency range,

one or both of the first active element and the second active element of each active dipole capacitively coupled to an active element of an adjacent active dipole; and

a first edge section and a second edge section, the first edge section capacitively coupled to a first side of the multiple active dipoles and the second edge section capacitively coupled to a second side of the multiple active dipoles, the second side opposite to the first side, wherein the first and second edge sections are configured to reduce edge propagating waves, and each edge section comprises an edge element having an edge profile extending from a forward edge, adjacent to a respective side, to a rear edge connected to the ground plane, and at least one meandering section provided in the edge profile.

22. A dual polarized broadband antenna having multiple single polarized radiators, wherein at least one single polarized radiator for operating within a frequency range comprising:

multiple active dipoles configured to be a predetermined distance from a ground plane,

each active dipole comprising a first active element having first electrical characteristics and a second active element having second electrical characteristics, which first and second active elements are equal in length and provided with a respective feeding point, wherein:

in each active dipole, the first electrical characteristics differs from the second electrical characteristics,

the length of each active element is selected based on an upper frequency of the frequency range,

one or both of the first active element and the second active element of each active dipole capacitively coupled to an active element of an adjacent active dipole; and

a first edge section and a second edge section, the first edge section capacitively coupled to a first side of the multiple active dipoles and the second edge section capacitively coupled to a second side of the multiple active dipoles, the second side opposite to the first side, wherein the first and second edge sections are configured to reduce edge propagating waves, and each edge section comprises an edge element having an edge profile extending from a forward edge, adjacent to a respective side, to a rear edge connected to the ground plane, and at least one meandering section provided in the edge profile.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2019
From: JONSSON, LARS; KOLITSIDAS, CHRISTOS
To: CHALMERS TEKNISKA HOGSKOLA AB
Reel/Frame 050987/0618 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2019
From: CHALMERS TEKNISKA HOGSKOLA AB
To: TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
Reel/Frame 050987/0629 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 12, 2019
From: ENGSTROM, STEFAN
To: TELEFONAKTIEBOLAGET LM ERICSSON (PUBL)
Reel/Frame 050987/0662 →
Continuity (1)
Related Publication 20200169009A1 · May 28, 2020