IP Library › Granted Patent US 10,148,005
Granted Patent B2
US 10,148,005 · App. 15/600,274 · Granted Dec 4, 2018

Volumetric electromagnetic components

Inventor: Nathan Cohen (Belmont, MA)
Assignee: Fractal Antenna Systems, Inc.
H01Q1/36B29C64/00B29C67/0051B33Y80/00H01Q9/28H01Q9/40H01Q17/008B29K2995/0005B29L2009/005B29L2031/3456B33Y10/00
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Quick Facts
Patent No.
US 10,148,005
App. No.
15/600,274
Granted
Dec 4, 2018
Kind
B2
Abstract

Method and apparatus for making volumetric electromagnetic components are disclosed. Material accretion devices or apparatus such as a 3D printer can be used to form the volumetric electromagnetic components. The volumetric electromagnetic components can include folded and/or self-similar features such as fractals. The volumetric electromagnetic components can include conductive and/or non-conductive materials. EM energy absorbing systems are described as having a volumetric electromagnetic component embedded within a dielectric material.

Claims (16)

1. A method for producing a volumetric electromagnetic absorption system for absorbing radio frequency (RF) energy, the method comprising:

with a material accreting device, accreting material in layers, wherein each layer defines a predetermined shape of volumetric electromagnetic component;

forming a volumetric electromagnetic component having a predetermined three-dimensional (3D) shape;

wherein the volumetric electromagnetic component includes a folded or self-similar shape for at least a portion of the component;

wherein the volumetric electromagnetic component comprises a shape including a deterministic fractal of finite iteration for at least a portion of the structure; and

embedding the volumetric electromagnetic component within a dielectric material thereby forming an electromagnetic absorption system having the volumetric electromagnetic component embedded within and surrounded by the dielectric material;

wherein the dielectric material is microwave-absorbing foam.

2. The method of claim 1 , further comprising coating the volumetric electromagnetic component with a conductive medium as a thin layer, for at least a portion of the component.

3. The method of claim 1 , wherein the self-similar shape is fractal in finite iterations for at least a portion.

4. The method of claim 1 , wherein the volumetric electromagnetic component is selected from the group consisting counterpoises ground planes, loads, dipoles, monopoles, dielectric resonators, leaky antennas, metamaterial antennas, metasurface antennas, slot antennas, or cavity antennas structures.

5. The method of claim 1 , wherein the material accreting device comprises a 3D printer.

6. The method of claim 1 , wherein the dielectric material comprises a carbon-based foam.

7. The method claim 1 , wherein the dielectric material comprises an elastomeric absorber.

8. An electromagnetic absorption system comprising: a volumetric electromagnetic component; wherein the volumetric electromagnetic component comprises a fractal feature including a deterministic fractal of finite iteration for at least a portion of the component; and a dielectric material, wherein the volumetric electromagnetic component is embedded within and surrounded by the dielectric material; wherein the dielectric material is microwave-absorbing foam for absorbing radio frequency (RF) energy.

9. The electromagnetic absorption system of claim 8 , wherein the volumetric electromagnetic component comprises a pleated feature.

10. The electromagnetic absorption system of claim 8 , wherein the volumetric electromagnetic component comprises a folded feature.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 2, 2018
From: COHEN, NATHAN
To: FRACTAL ANTENNA SYSTEMS, INC.
Reel/Frame 047030/0464 →
Continuity (7)
Continuation PCTUS2015061690 · Nov 19, 2015
Continuation In Part 14629032 · Feb 23, 2015
Provisional Application 61966347 · Feb 22, 2014
Provisional Application 62123579 · Nov 20, 2014
Provisional Application 62123581 · Nov 20, 2014
Related Publication 20170256849A1 · Sep 7, 2017
Related Publication 20180277942A9 · Sep 27, 2018