IP Library Granted Patent US 10,658,735
Granted Patent B2
US 10,658,735 · App. 16/048,595 · Granted May 19, 2020

Component for a dual band antenna, a dual band antenna comprising said component, and a dual band antenna system

Inventors: Diego Caratelli (Duizel, NL); Thomas Bolz (Sonsbeck, DE)
Assignee: THE ANTENNA COMPANY INTERNATIONAL N.V.
H01Q1/246H01Q1/38H01Q1/48H01Q5/30H01Q5/371H01Q9/0421H01Q9/0442H01Q1/2291H01Q21/28
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Quick Facts
Patent No.
US 10,658,735
App. No.
16/048,595
Granted
May 19, 2020
Kind
B2
Abstract

Component for a dual band antenna suitable for integration in a router, an access point, or similar device for wireless communication, wherein the outside of the component is of a multi-faced design which is supported by a support body that is designed to be mounted onto a ground plane, wherein the outside of the component includes the following faces: a) a top face which is provided with an electrically conductive flare layer that encloses at least one flare slot; b) one or two side faces adjacent to the top face that are provided with an electrically conductive feed strip and an electrically conductive ground strip which strips are both electrically connected to the flare layer; c) a bottom face that is not adjacent to the top face, which is designed to be mounted onto the ground plane; wherein the ground strip is electrically connectable to the ground plane onto which the component is to be mounted, and wherein the feed strip is electrically connectable to an appropriate RF chain.

Claims (46)

1. Component for a dual band antenna suitable for integration in a router, an access point, or similar device for wireless communication,

wherein the outside of the component is of a multi-faced design which is supported by a support body that is designed to be mounted onto a ground plane,

wherein the outside of the component includes the following faces:

a top face which is provided with an electrically conductive flare layer that encloses at least one flare slot;

one or two side faces adjacent to the top face that are provided with an electrically conductive feed strip and an electrically conductive ground strip which strips are both electrically connected to the flare layer, such that each of the feed strip and the ground strip extends over a single side face and forms a direct connection between the flare layer and a feed, respectively between the flare layer and a ground;

a bottom face that is not adjacent to the top face, which is designed to be mounted onto the ground plane;

wherein the ground strip is electrically connectable to the ground plane onto which the component is to be mounted, and

wherein the feed strip is electrically connectable to an appropriate RF chain.

2. Component according to claim 1 , wherein the outside of the component has a hexahedral design.

3. Component according to claim 2 , wherein the outside of the component has a hexahedral design, and the support body is a hollow structure having an internal void that extends through the bottom face.

4. Component according to claim 3 , wherein the flare layer comprises a peninsular contour.

5. Component according to claim 3 , wherein the flare layer encloses two flare slots having a peninsular contour.

6. Component according to claim 3 , wherein the support body is a structure of connected planar walls that have a thickness in the range of 0.5 to 2.0 mm.

7. Component according to claim 3 , wherein the height of the component is 12 mm or smaller.

8. Component according to claim 3 , wherein the width and length of the component is 14 mm or smaller.

9. Component according to claim 2 , wherein the outside of the component has a hexahedral design, and the support body is a solid structure.

10. Component according to claim 9 , wherein the height of the component is 9 mm or smaller.

11. Component according to claim 9 , wherein the width and length of the component is 12 mm or smaller.

12. Component according to claim 2 , wherein the outside of the component has a hexahedral design, and is not supported by a support body, which outside includes the following faces:

a top face formed by an electrically conductive flare layer that encloses at least one flare slot;

one or two side faces adjacent to the top face formed by an electrically conductive feed strip and an electrically conductive ground strip which strips are both electrically connected to the flare layer;

a bottom face that is not adjacent to the top face, formed by an electrically conductive ground layer electrically connected to the ground strip;

wherein the feed strip is electrically connectable to an appropriate RF chain.

13. Component according to claim 12 , without a bottom face.

14. Component according to claim 1 , wherein the dual band antenna is operable in the frequency ranges of 2.4-2.5 GHz and 4.9-6.0 GHz.

15. Component according to claim 1 , wherein the support structure is made from a dielectric material with a dielectric constant in the range of 2 to 4.

16. Component according to claim 1 , wherein the flare slot has a peninsular contour.

17. Component according to claim 1 , wherein the component is configured to act as surface mounted device (SMD), wherein the SMD is mountable onto the ground plane.

18. Component according to claim 1 , wherein a single ground strip applied.

19. Component according to claim 1 , wherein the maximum width of the feed strip is larger than the maximum width of the ground strip.

20. Component according to claim 1 , wherein the feed strip and the ground strip are provided onto different side faces.

21. Component according to claim 1 , wherein the support body is made of at least one dielectric material.

22. Component according to claim 1 , wherein the support body is configured both to mechanically support the flare layer, the ground strip, and the feed strip, and to support the excitation of the dielectric resonances within the component volume.

23. Component according to claim 1 , wherein two flare slots are enclosed by the flare layer, wherein said two flare slots have mutually different shapes.

24. Component according to claim 1 , wherein two flare slots are enclosed by the flare layer, wherein the flare slots extend in mutually different directions.

25. Component according to claim 1 , wherein two flare slots are enclosed by the flare layer, wherein the contour opening of the peninsular contour of a first flare slot is facing away, or at least not directed towards, the contour opening of the peninsular contour of a second flare slot.

26. Component according to claim 1 , wherein the component has a hexahedral design.

27. Component according to claim 1 , wherein the width and the length of the component are identical.

28. Component according to claim 1 , wherein the height of the component is 11 mm or smaller.

29. Component according to claim 1 , wherein the width and length of the component are 16 mm or smaller.

30. Component according to claim 1 , wherein the height of the component is at least 60% of the width of the component.

31. Dual band antenna comprising at least one component according to claim 1 , of which component the bottom face is mounted onto a ground plane.

32. Dual band antenna according to claim 31 , wherein the component is a planar inverted-F antenna (PIFA).

33. Dual band antenna according to claim 31 , wherein the dual band antenna is operable in the frequency ranges of 2.4-2.5 GHz and 4.9-6.0 GHz.

34. Dual band antenna system comprising a multitude of components according to claim 1 , of which components the bottom face is mounted onto one common ground plane.

35. Dual band antenna system according to claim 34 , wherein adjacent components are mounted on the common ground plane at a distance from each other that is larger than the width and the length of the respective components.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2018
From: CARATELLI, DIEGO; BOLZ, THOMAS
To: THE ANTENNA COMPANY INTERNATIONAL N.V.
Reel/Frame 047113/0818 →
Priority Claims (1)
NL 2019365 · Jul 28, 2017 · national
Continuity (1)
Related Publication 20190036202A1 · Jan 31, 2019