IP Library Granted Patent US 10,674,643
Granted Patent B1
US 10,674,643 · App. 16/276,570 · Granted Jun 2, 2020

Electromagnetically shielded coverings for optical openings

Inventors: George Clayton Hansen (Midway, UT); Nathan D. Hansen (Heber, UT)
Assignee: CONDUCTIVE COMPOSITES COMPANY IP, LLC
H05K9/0001B32B15/08B32B15/20H05K9/009H05K9/0088H05K9/0094
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Quick Facts
Patent No.
US 10,674,643
App. No.
16/276,570
Granted
Jun 2, 2020
Kind
B1
Abstract

The electromagnetic shielding of an enclosable building structure is provided by applying a shielded covering to overlay optical openings in the building structure. The shielded covering comprises a metal-coated woven substrate and a shielding coupling. The metal-coated woven substrate has a woven substrate and a metal coating. The woven substrate may be organic and comprise threads of intermingled fibers such as silk fibers. The metal-coated woven substrate may also have a protection feature such as transparent resin, of barriers of glass or transparent polymeric material. The shielded coupling connects the shielded covering to other shielding components of a shielded building structure to preserve shielding continuity over the interface between shielding components.

Claims (23)

1. A shielded covering for overlay of an optical opening in a building structure, the shielded covering comprising:

at least one metal-CVD coated woven substrate for overlay of the optical opening, the metal-CVD coated woven substrate comprises a woven substrate and a metal-CVD coating, the woven substrate having threads and interstices between the threads,

a shielding coupling for preserving shielding continuity between the metal-CVD coated woven substrate and the building structure, and

a protection feature to protect the at least one metal-CVD coated woven substrate, the protection feature comprising at least one of a transparent resin filling the interstices and coating of at least one metal-CVD coated woven substrate, at least one glass barrier disposed against at least a portion of the metal-CVD coated woven substrate, and at least one transparent polymeric barrier disposed against at least a portion of the metal-CVD coated woven substrate.

2. The shielded covering of claim 1 , wherein one of the at least one metal-CVD coated woven substrates comprises a Ni-CVD coated woven substrate.

3. The shielded covering of claim 1 , wherein at least one thread comprises a plurality of intermingled fibers.

4. The shielded covering of claim 3 , wherein the intermingled fibers are organic.

5. The shielded covering of claim 4 , wherein the organic intermingled fibers comprises silk.

6. A multi-layered shielded covering assembly for overlay of an optical opening in a building structure, the shielded covering assembly comprising:

a first shielded covering comprising a first metal-CVD coated woven substrate, the first metal-CVD coated woven substrate comprises a first woven substrate and a first metal-CVD coating, the first woven substrate having threads and interstices between the threads and a first orientation of the threads,

a second shielded covering comprising a second metal-CVD coated woven substrate, the second metal-CVD coated woven substrate comprises a second woven substrate and a second metal-CVD coating, the second woven substrate having threads and interstices between the threads and a second orientation of the threads, and

a third shielded covering comprising a third metal-CVD coated woven substrate, the third metal-CVD coated woven substrate comprises a third woven substrate and a third metal-CVD coating, the third woven substrate having threads and interstices between the threads and a third orientation of the threads.

7. The multi-layered shielded covering assembly of claim 6 , wherein at least one of the first metal-CVD coated woven substrate and the second metal-CVD coated woven substrate further comprises a shielding coupling for preserving shielding continuity between the metal-CVD coated woven substrate and the building structure.

8. The multi-layered shielded covering assembly of claim 6 , wherein at least one thread comprises a plurality of intermingled fibers.

9. The multi-layered shielded covering assembly of claim 8 , wherein the intermingled fibers are organic.

10. The multi-layered shielded covering assembly of claim 9 , wherein the organic intermingled fibers comprises silk.

11. The multi-layered shielded covering assembly of claim 6 , wherein each of the third orientation of the threads, the second orientation of the threads, and the first orientation of the threads differs from each other.

12. The multi-layered shielded covering assembly of claim 11 , wherein the third shielded covering is disposed between the first shielded covering and the second shielded covering, the third orientation of the threads is rotated 30° from the first orientation of the threads, and the second orientation of the threads is rotated 60° from the first orientation of the threads.

13. A method for installing a shielded covering to overlay an optical opening in a shielded building structure comprising the steps of:

positioning a metal-CVD coated woven substrate having a woven substrate and a metal-CVD coating to overlay the optical opening, the woven substrate having threads and interstices between the threads,

connecting a shielding coupling to the shielded building structure to preserve shielded continuity between the shielded covering and the shielded building structure,

protecting the metal-CVD coated woven substrate from corrosion by applying at least one of a transparent resin to fill the interstices between the threads and coat the metal-CVD coated woven substrate, at least one glass barrier against at least a portion of the metal-CVD coated woven substrate, and at least one transparent polymeric barrier against at least a portion of the metal-CVD coated woven substrate.

14. The method for installing the shielded covering of claim 13 , wherein the metal-CVD coated woven substrate comprises Ni-CVD.

Assignments (4)
INTELLECTUAL PROPERTY ASSIGNMENT AGREEMENT Recorded Jun 16, 2026
From: HANSEN LEGACY HOLDINGS, LLC; GEORGE AND CYNTHIA HANSEN REVOCABLE TRUST; HANSEN, GEORGE; HANSEN, NATHAN; HANSEN, LAUREN; CYNTHIA HANSON DISCLAIMER TRUST; CONDUCTIVE GROUP, LLC; CONDUCTIVE COMPOSITES COMPANY L.L.C.; CONDUCTIVE COMPOSITES ENTERPRISES, LLC; FARADAY CASES, LLC; FARADAY STRUCTURES LLC; CONDUCTIVE COMPOSITES LEASING COMPANY, L.C.; CONDUCTIVE COMPOSITES COMPANY IP, LLC; JENKINS LAND & LIVESTOCK, LLC; ENHANCE ENGINEERING, INC.
To: PRINCIPAL CG HOLDINGS LLC
Reel/Frame 075762/0581 →
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Jun 16, 2026
From: PRINCIPAL CG HOLDINGS LLC, A DELAWARE LIMITED LIABILITY COMPANY, AS A GRANTOR
To: APEX GROUP LOAN SERVICES NEW YORK LLC
Reel/Frame 075751/0477 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2019
From: HANSEN, GEORGE CLAYTON; HANSEN, NATHAN D.
To: FARADAY STRUCTURES, INC.
Reel/Frame 048340/0406 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2019
From: FARADAY STRUCTURES, ICN.
To: CONDUCTIVE COMPOSITES COMPANY IP, LLC
Reel/Frame 048340/0412 →
Continuity (2)
Division 15640126 · Jun 30, 2017
Provisional Application 62357904 · Jul 1, 2016