IP Library Granted Patent US 10,177,459
Granted Patent B2
US 10,177,459 · App. 15/371,030 · Granted Jan 8, 2019

Dual-band modular active antenna

Inventor: Olivier Maas (Gif sur Yvette, FR)
Assignee: THALES
H01Q21/0006H01Q5/42H01Q21/061G01S13/78G01S13/872
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Quick Facts
Patent No.
US 10,177,459
App. No.
15/371,030
Granted
Jan 8, 2019
Kind
B2
Abstract

A dual-band antenna panel comprises a plurality of dual-band radiating cells operating independently for a first frequency in a first frequency band and a second frequency in a second frequency band, the first frequency band being higher than the second frequency band, each of the radiating cells exhibiting a distinct feed to the first and to the second frequency. The antenna panel comprises radiating cells disposed according to a mesh dimensioned with respect to the first frequency band, and wherein the feeds to the second frequency of the radiating cells are clustered in packets within combiners having a single feed.

Claims (17)

1. A dual-band antenna panel comprising a plurality of dual-band radiating cells, each of the cells operating independently for a first frequency in a first frequency band and a second frequency in a second frequency band, the first frequency band being higher than the second frequency band, each of the said radiating cells exhibiting a distinct feed to the first and to the second frequency, the antenna panel wherein the radiating cells are disposed according to a mesh dimensioned with respect to the first frequency band, and wherein the feeds to the second frequency of the radiating cells are clustered in packets within combiners each having a single feed.

2. The dual-band antenna panel according to claim 1 , wherein the said radiating cells comprise a radiating element which is dimensioned so as to radiate in the first frequency band and is associated with an element filtering the second frequency band, and a radiating element which is dimensioned so as to radiate in the second frequency band and is associated with an element filtering the first frequency band.

3. The dual-band antenna panel according to claim 1 , wherein all the radiating cells are identical.

4. The dual-band antenna panel according to claim 1 , wherein each mesh of the radiating panel has a size substantially equal to λ H /2, λ H being a wavelength associated with the maximum frequency of the first frequency band.

5. The dual-band antenna panel according to claim 1 , wherein the number of clustered feeds to the second frequency of the radiating cells within a combiner is an integer close to the ratio of the first frequency to the second frequency.

6. The dual-band antenna panel according to claim 1 , wherein the number of clustered feeds to the second frequency of the radiating cells within a combiner is an integer substantially equal to the power of two which is closest to the ratio of the first frequency to the second frequency.

7. The dual-band antenna panel according to claim 1 , wherein the clustered feeds to the second frequency of the radiating cells within a combiner are adjacent feeds forming regular polygons.

8. The dual-band antenna panel according to claim 1 , the said dual-band antenna panel being a multilayer circuit comprising:

an upper face comprising the plurality of radiating cells,

an internal layer comprising an array of combiners linked to feeds to the second frequency band of the radiating cells,

a rear face comprising an array of connectors,

lines linking the feed to each of the combiners of the array of combiners to a connector associated with the second frequency band of the array of connectors, and

lines linking the feed to the first frequency band of the radiating cells to a connector associated with the first frequency band of the array of connectors.

9. The dual-band antenna panel according to claim 1 , wherein the first frequency band comprises the 2.9 GHz-3.3 GHz band, and the second frequency band is centred around a frequency chosen from among the frequency 1030 MHz and the frequency 1090 MHz.

10. The dual-band antenna panel according to claim 1 , wherein the first frequency band comprises the 2.9 GHz-3.3 GHz band, and the second frequency band comprises at least the frequency 1030 MHz and the frequency 1090 MHz.

11. A dual-band structure for housing an antenna panel, wherein it is configured to house a dual-band antenna panel according to claim 1 , and comprising a plurality of transmit receive modules associated with the first frequency band, and a plurality of transmit receive modules associated with the second frequency band.

12. A dual-band radar antenna, comprising a dual-band antenna panel according to claim 1 , and a dual-band structure for housing an antenna panel, configured to house a dual-band antenna panel according to claim 1 , and comprising a plurality of transmit receive modules associated with the first frequency band, and a plurality of transmit receive modules associated with the second frequency band, the said dual-band housing structure being linked to the said antenna panel.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 23, 2017
From: MAAS, OLIVIER
To: THALES
Reel/Frame 041363/0690 →
Priority Claims (1)
FR 15 02558 · Dec 9, 2015 · national
Continuity (1)
Related Publication 20170170563A1 · Jun 15, 2017