IP Library › Granted Patent US 10,674,645
Granted Patent B2
US 10,674,645 · App. 16/517,991 · Granted Jun 2, 2020

Modular EMF/RF shielded enclosures

Inventor: Jerry Hawn (Jacksonville, FL)
Assignee: EVENT SECURE, INC.
H05K9/0003
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Quick Facts
Patent No.
US 10,674,645
App. No.
16/517,991
Granted
Jun 2, 2020
Kind
B2
Abstract

A modular EMF/RF shielded enclosure having interconnected walls, floor and ceiling panel members such that passage of EMF/RF form or into the enclosure is blocked or attenuated. Quick-connect, quick-release compressive connector members composed of electrically conductive material are used to join adjacent panel members, such that the connector members carry the common ground between adjacent panels and a continuous shielding envelope in the nature of a Faraday cage is formed.

Claims (23)

1. A modular EMF/RF shielded enclosure comprising interconnected panel members forming walls and a ceiling;

said panel members comprising frame members, skin members attached to said frame members, EMF/RF shielding material, and quick-connect, quick-release, compressive, electrically-conductive, connector assemblies;

said EMF/RF shielding material being coextensively applied to the interior surfaces of said frame members and said skin members and applied to said connector assemblies, such that said frame members, said skin members and said connector assemblies are conductively connected to each other and such that each said panel member attenuates EMF/RF;

each of said connector assemblies comprising a latching body and a receiver body, and wherein for a given connector assembly said latching body is disposed in a first panel member and said receiver body is disposed in a second panel member at corresponding locations whereby with said first and second panel members in adjacent juxtaposition, said first and second panel members are compressed together by actuation of said connector assemblies, such that said connector assemblies electrically connect said first and second panel members; and

a grounding member connected to at least one of said connector assemblies or to said EMF/RF shielding material.

2. The modular EMF/RF shielded enclosure of claim 1 , further comprising auxiliary conductor members connecting one or more of said connector assemblies to said EMF/RF shielding material.

3. The modular EMF/RF shielded enclosure of claim 1 , wherein said connector assemblies comprise cam locks carrying the common ground between said panel members.

4. The modular EMF/RF shielded enclosure of claim 3 , wherein said latching body of each connector assembly comprises a cam latch mounted on an axle and having a cam ridge surface, and wherein said receiver body of each connector assembly comprises catch members to receive said cam ridge surface.

5. The modular EMF/RF shielded enclosure of claim 4 , wherein said latching body of each connector assembly further comprises an actuator port adapted to receive a driving tool to rotate said cam latch, said actuator ports being accessible through openings in said skin members.

6. The modular EMF/RF shielded enclosure of claim 1 , wherein said EMF/RF shielding material is disposed on three sides of each frame member.

7. The modular EMF/RF shielded enclosure of claim 1 , wherein said panel members further form a floor.

8. The modular EMF/RF shielded enclosure of claim 1 , wherein said modular EMF/RF shielded enclosure creates an attenuation level of approximately −45 dB.

9. The modular EMF/RF shielded enclosure of claim 1 , wherein said modular EMF/RF shielded enclosure is a Faraday cage.

10. A modular EMF/RF shielded enclosure comprising interconnected panel members forming walls and a ceiling;

said panel members comprising frame members, skin members attached to said frame members, EMF/RF shielding material, and quick-connect, quick-release, compressive, electrically-conductive, connector assemblies;

each of said connector assemblies comprising a cam lock having a latching body and a receiver body, and wherein for a given connector assembly said latching body is disposed in a first panel member and said receiver body is disposed in a second panel member at corresponding locations whereby with said first and second panel members in adjacent juxtaposition, said first and second panel members are compressed together by actuation of said connector assemblies, such that said connector assemblies electrically connect said first and second panel members;

each said latching body of each connector assembly comprising a cam latch mounted on an axle and having a cam ridge surface, and an actuator port adapted to receive a driving tool to rotate said cam latch, said actuator ports being accessible through openings in said skin members, and wherein each said receiver body of each connector assembly comprises catch members to receive said cam ridge surface;

said EMF/RF shielding material coextensively applied to the interior surfaces of said frame members and said skin members and applied to said connector assemblies, such that said frame members, said skin members and said connector assemblies are conductively connected to each other and such that each said panel member attenuates EMF/RF; and

a grounding member connected to at least one of said connector assemblies or to said EMF/RF shielding material;

wherein said modular EMF/RF shielded enclosure creates an attenuation level of approximately 45 dB.

11. The modular EMF/RF shielded enclosure of claim 10 , wherein said panel members further form a floor.

12. The modular EMF/RF shielded enclosure of claim 10 , wherein said EMF/RF shielding material is disposed on three sides of each frame member.

13. The modular EMF/RF shielded enclosure of claim 10 , wherein said modular EMF/RF shielded enclosure is a Faraday cage.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 28, 2020
From: EVENT SECURE, INC. D/B/A TRADESHOW ENGINEERING
To: JPAT HOLDINGS, LLC
Reel/Frame 053625/0362 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2020
From: HAWN, JERRY
To: EVENT SECURE, INC. D/B/A TRADESHOW ENGINEERING
Reel/Frame 051819/0320 →
Continuity (2)
Provisional Application 62701205 · Jul 20, 2018
Related Publication 20200029474A1 · Jan 23, 2020