IP Library Granted Patent US 8,878,731
Granted Patent B2
US 8,878,731 · App. 13/933,251 · Granted Nov 4, 2014

Multiple-band antenna with patch and slot structures

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Quick Facts
Patent No.
US 8,878,731
App. No.
13/933,251
Granted
Nov 4, 2014
Kind
B2
Abstract

A multiple-band antenna having first and second operating frequency bands is provided. The antenna includes a first patch structure associated primarily with the first operating frequency band, a second patch structure electrically coupled to the first patch structure and associated primarily with the second operating frequency band, a first slot structure disposed between a first portion of the first patch structure and the second patch structure and associated primarily with the first operating frequency band, and a second slot structure disposed between a second portion of the first patch structure and the second patch structure and associated primarily with the second operating frequency band. A mounting structure for the multiple-band antenna is also provided. The mounting structure includes a first surface and a second surface opposite to and overlapping the first surface.

Claims (42)

1. An antenna assembly comprising:

a dielectric layer; and

an electrically conductive layer on said dielectric layer defining an antenna comprising

a first patch comprising spaced apart first and second end portions with an adjoining portion therebetween to define a C-shape, and

a second patch electrically coupled to said first patch at the adjoining portion to define a first slot between said first end portion of said first patch and said second patch, and a second slot between said second end portion of said first patch and said second patch.

2. The antenna assembly of claim 1 , wherein at least one of said first and second slots has a triangular shape.

3. The antenna assembly of claim 2 , wherein the triangular shape has a base adjacent said adjoining portion of said first patch.

4. The antenna assembly of claim 1 , wherein said dielectric layer has a non-planar shape.

5. The antenna assembly of claim 4 , wherein the non-planar shape is an arcuate shape.

6. The antenna assembly of claim 1 , wherein dimensions of said first patch and said first slot primarily determine a first operating frequency band, gain of the antenna in the first operating frequency band, and impedance of the antenna in the first operating frequency band; and wherein dimensions of said second patch and said second slot primarily determine a second operating frequency band, gain of the antenna in the second operating frequency band, and impedance of the antenna in the second operating frequency band.

7. The antenna assembly of claim 6 , wherein said first operating frequency band comprises a transmit sub-band of 880-915 MHz and a receive sub-band of 925-960 MHz; and wherein said second frequency band comprises a transmit sub-band of 1850-1910 MHz and a receive sub-band of 1930-1990 MHz.

8. The antenna assembly of claim 1 , wherein said antenna further comprises:

a feed point coupled to the second end portion of said first patch; and

a ground point coupled to said second patch.

9. The antenna assembly of claim 1 , wherein said antenna further comprises:

a tuning tab coupled to the second end portion of said first patch;

a pair of tuning tabs coupled to the first end portion of said first patch; and

a tuning slot between the pair of tuning tabs.

10. A wireless mobile communication device comprising:

a housing;

at least one wireless transceiver carried by said housing; and

an antenna carried by said housing, coupled to said at least one wireless transceiver, and comprising

a first patch comprising spaced apart first and second end portions with an adjoining portion therebetween to define a C-shape, and

a second patch electrically coupled to said first patch at the adjoining portion to define a first slot between said first end portion of said first patch and said second patch, and a second slot between said second end portion of said first patch and said second patch.

11. The wireless mobile communication device of claim 10 , wherein at least one of said first and second slots has a triangular shape.

12. The wireless mobile communication device of claim 11 , wherein the triangular shape has a base adjacent said adjoining portion of said first patch.

13. The wireless mobile communication device of claim 10 , wherein said antenna has an arcuate shape.

14. The wireless mobile communication device of claim 10 , wherein dimensions of said first patch and said first slot primarily determine a first operating frequency band, gain of the antenna in the first operating frequency band, and impedance of the antenna in the first operating frequency band; and wherein dimensions of said second patch and said second slot primarily determine a second operating frequency band, gain of the antenna in the second operating frequency band, and impedance of the antenna in the second operating frequency band.

15. The wireless mobile communication device of claim 14 , wherein said first operating frequency band comprises a transmit sub-band of 880-915 MHz and a receive sub-band of 925-960 MHz; and wherein said second frequency band comprises a transmit sub-band of 1850-1910 MHz and a receive sub-band of 1930-1990 MHz.

16. The wireless mobile communication device of claim 10 , wherein said antenna further comprises:

a feed point coupled to the second end portion of said first patch; and

a ground point coupled to said second patch.

17. The wireless mobile communication device of claim 10 , wherein said antenna is mounted in said housing adjacent top and rear surfaces thereof.

18. A method for making an antenna assembly comprising:

forming an electrically conductive layer on a dielectric layer to define an antenna comprising

a first patch comprising spaced apart first and second end portions with an adjoining portion therebetween to define a C-shape, and

a second patch electrically coupled to said first patch at the adjoining portion to define a first slot between said first end portion of said first patch and said second patch, and a second slot between said second end portion of said first patch and said second patch.

19. The method of claim 18 , wherein at least one of the first and second slots has a triangular shape.

20. The method of claim 19 , wherein the triangular shape has a base adjacent the adjoining portion of the first patch.

21. The method of claim 18 , wherein the dielectric layer has a non-planar shape.

22. The method of claim 21 , wherein the non-planar shape is an arcuate shape.

23. The method of claim 18 , wherein dimensions of the first patch and the first slot primarily determine a first operating frequency band, gain of the antenna in the first operating frequency band, and impedance of the antenna in the first operating frequency band; and wherein dimensions of the second patch and the second slot primarily determine a second operating frequency band, gain of the antenna in the second operating frequency band, and impedance of the antenna in the second operating frequency band.

Assignments (6)
CORRECTIVE ASSIGNMENT TO CORRECT THE ADDED PATENT NUMBER TO REMOVE PATENT NO. 8,873,407 AT PREVIOUSLY RECORDED ON REEL 64066 FRAME 1. ASSIGNOR(S) HEREBY CONFIRMS THE NUNC PRO TUNC ASSIGNMENT EFFECTIVE DATE MARCH 20, 2023. Recorded Feb 2, 2026
From: BLACKBERRY LIMITED
To: MALIKIE INNOVATIONS LIMITED
Reel/Frame 074921/0001 →
NUNC PRO TUNC ASSIGNMENT Recorded Jun 19, 2023
From: BLACKBERRY LIMITED
To: MALIKIE INNOVATIONS LIMITED
Reel/Frame 064066/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 16, 2023
From: BLACKBERRY LIMITED
To: MALIKIE INNOVATIONS LIMITED
Reel/Frame 064104/0103 →
CHANGE OF NAME Recorded Mar 6, 2014
From: RESEARCH IN MOTION LIMITED
To: BLACKBERRY LIMITED
Reel/Frame 032399/0753 →
CHANGE OF NAME Recorded Jan 8, 2014
From: RESEARCH IN MOTION LIMITED
To: BLACKBERRY LIMITED
Reel/Frame 031946/0355 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2013
From: WEN, GEYI; JARMUSZEWSKI, PERRY; STEVENSON, ADAM D.
To: RESEARCH IN MOTION LIMITED
Reel/Frame 030726/0036 →