IP Library Granted Patent US 8,736,502
Granted Patent B1
US 8,736,502 · App. 12/536,343 · Granted May 27, 2014

Conformal wide band surface wave radiating element

Inventors: John Langfield (Westminster, CO); John T. Mehr (Superior, CO); Daniel J. Carlson (Broomfield, CO)
Assignee: Ball Aerospace & Technologies Corp.
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Quick Facts
Patent No.
US 8,736,502
App. No.
12/536,343
Granted
May 27, 2014
Kind
B1
Abstract

Conformal antennas and methods for radiating radio frequency energy using conformal antennas are provided. In particular, one or more tapered feeds can be provided as part of or interconnected to a conductive top plate. The one or more tapered feeds have a depth that decreases from a feed point to a tip. The tip of the one or more tapered feeds is adjacent a cavity formed over a lens region. An aperture over the lens region can be covered or filled by an impedance surface. This impedance surface may comprise a frequency selective surface. Alternatively, a frequency selective surface can be provided over the lens region of an antenna incorporating one or more stripline feeds.

Claims (26)

1. An antenna element, comprising:

a top plate;

a tapered feed, wherein the tapered feed is interconnected to and extends from the top plate, wherein the tapered feed has a length extending between a feed point and a tip, wherein the tapered feed has a depth, and wherein the depth of the tapered feed decreases from the feed point to the tip within a plane that is perpendicular to a portion of the top plate at which the tapered feed is joined to the top plate; and

a ground plane forming a lens region, wherein the ground plane is interconnected to the top plate, wherein the lens region defines a cavity between the tapered feed and the ground plane, wherein the top plate defines at least a portion of an aperture that is adjacent at least a portion of the lens region, wherein the aperture overlies at least a portion of the cavity, wherein the aperture extends from a first edge proximate to the tip of the tapered feed to a second edge distal from the tip of the tapered feed and defined by the ground plane, wherein the cavity has a first depth proximate to the first edge of the aperture and a second depth proximate to the second edge of the aperture, wherein the first depth of the cavity is greater than the second depth of the cavity, and wherein the depth dimension of the cavity is parallel to the depth dimension of the tapered feed.

2. The antenna element of claim 1 , wherein the depth of the tapered feed decreases exponentially.

3. The antenna element of claim 1 , further comprising:

a dielectric material, wherein the dielectric material substantially fills the cavity.

4. The antenna element of claim 1 , wherein the tapered feed is integral to the top plate.

5. The antenna element of claim 1 , further comprising:

a radome, wherein the radome covers the aperture.

6. The antenna element of claim 1 , further comprising:

a frequency selective surface, wherein the frequency selective surface covers the aperture.

7. The antenna element of claim 6 , wherein the frequency selective surface has a capacitance with a fixed taper that changes from a portion on a side of the lens region proximal to the tip of the tapered feed to a portion on a side of the lens region distal from the tip of the tapered feed.

8. The antenna element of claim 7 , wherein the capacitance decreases from the portion on the side of the lens region proximal to the tip of the tapered feed to the portion on the side of the lens region distal from the tip of the tapered feed.

9. An array antenna, comprising:

a top plate;

a plurality of antenna feed elements, wherein each antenna feed element includes:

a tapered feed electrically interconnected to and extending from the top plate, wherein the tapered feed has a length extending between at least a feed point and a tip, wherein the tapered feed has a depth, and wherein the depth of the tapered feed decreases from the feed point to the tip such that the distance of an edge of the tapered feed from a surface of the top plate decreases from the feed point to the tip; and

a ground plane forming a lens region, wherein the lens region defines a first cavity between the tapered feeds and the ground plane, wherein an aperture is defined that is adjacent at least a portion of the lens region, wherein the aperture overlies at least a portion of the first cavity, wherein the aperture extends from a first edge proximate to the tips of the tapered feeds to a second edge distal from the tips of the tapered feeds and defined by the ground plane, wherein the first cavity has a first depth proximate to the first edge of the aperture and a second depth proximate to the second edge of the aperture, and wherein the first depth is greater than the second depth.

10. The array antenna of claim 9 , wherein the aperture is at least partially formed in the top plate.

11. The array antenna of claim 10 , further comprising:

an impedance surface, wherein the impedance surface is received by the aperture.

12. The array antenna of claim 11 , wherein the impedance surface is a frequency selective surface.

13. The array antenna of claim 12 , wherein the frequency selective surface provides a tapered capacitance.

14. The array antenna of claim 9 , wherein the first cavity is substantially filled by a dielectric material.

15. The array antenna of claim 9 , wherein the depth of the tapered feed of each antenna feed element decreases exponentially.

Assignments (2)
CHANGE OF NAME Recorded Apr 17, 2024
From: BALL AEROSPACE & TECHNOLOGIES CORP.
To: BAE SYSTEMS SPACE & MISSION SYSTEMS INC.
Reel/Frame 067134/0901 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 18, 2009
From: LANGFIELD, JOHN; MEHR, JOHN T.; CARLSON, DANIEL J.
To: BALL AEROSPACE & TECHNOLOGIES CORP.
Reel/Frame 023110/0589 →
Continuity (1)
Provisional Application 61087437 · Aug 8, 2008