IP Library Granted Patent US 11,101,835
Granted Patent B2
US 11,101,835 · App. 16/798,712 · Granted Aug 24, 2021

Modular communications systems with dynamically positionable antenna elements

Inventors: Sriram Manivannan (Baltimore, MD); James Brent (Burlington, VT); Josh Desportes (Jessup, MD); James Turney (Silver Spring, MD); Alison Bakersville (Jessup, MD); Can Gun Yaprak (Halethorpe, MD)
Assignee: Vorbeck Materials Corp.
H04B1/385A41D1/002A41D1/005H01Q1/273A41D1/04
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Quick Facts
Patent No.
US 11,101,835
App. No.
16/798,712
Granted
Aug 24, 2021
Kind
B2
Abstract

A modular communications systems includes an apparel item with a surface. Landing pads are positioned proximate to the surface with each landing pad uniquely positioned on the surface. Non-metallic antenna elements are each demountably, intermittingly, and conductively coupled to a unique landing pad; includes a non-metallic conductive composition; and a unique operational frequency compared to at least one antenna element. A hub is positioned on the surface and conductively coupled to each landing pad. Each communications device is demountably affixed to the surface; intermittingly, demountably, and conductively coupled to the hub; and includes a unique operational frequency. The hub intermittingly, demountably, and conductively couples each communications devices to a unique landing pad included in the plurality of landing pads.

Claims (84)

1. A modular communications systems comprising:

an apparel item comprising a surface;

a plurality of landing pads positioned proximate to the surface, each landing pad of the plurality of landing pads uniquely positioned on the surface relative to other landing pads of the plurality of landing pads;

a plurality of non-metallic antenna elements each:

demountably, intermittingly, and conductively coupled to a unique landing pad of the plurality of landing pads;

comprising a non-metallic conductive composition; and

comprising a unique operational frequency compared to at least one antenna element of the plurality of antenna elements;

a hub positioned on the surface and conductively coupled to each of the landing pads;

a plurality of communications devices, wherein each communications device:

is demountably affixed to the surface;

intermittingly, demountably, and conductively coupled to the hub;

comprises an operational frequency; and

wherein the hub intermittingly, demountably, and conductively couples each of the communications devices to one of the landing pads.

2. The modular communications system of claim 1 , wherein

each of the plurality of antenna elements comprises a first pairing element, the first pairing element is conductive;

each of the plurality of landing pads comprises a second pairing element, the second pairing element is conductive; and

the first conductive pairing element and the second conductive pairing element demountably engage each other when shifted in a common plane and thereby form the selective, intermitting, and conductive coupling.

3. The modular communications system of claim 2 , wherein

the surface comprises a plurality of affixing locations configured to receive at least one of the plurality of communications devices; and

at least one of the plurality of communications devices are configured to be dynamically and demountably affixed to at least one of the plurality of the affixing locations.

4. The modular communications system of claim 3 , wherein

an antenna element of the plurality of antenna elements comprises a conductive composition; and

the conductive composition comprises a polymer and fully exfoliated single sheets of graphene.

5. The modular communications system of claim 4 , wherein the fully exfoliated single sheets of graphene are present within the polymer as a three-dimensional percolated network comprising nanoscale separation between individual fully exfoliated single sheets of graphene.

6. The modular communications system of claim 5 , wherein

the hub comprises a first coupling element

each communication device of the plurality of communications devices comprise a second coupling element; and

wherein the first coupling element and the second coupling element form a wedge-like intermitting and conductive coupling therebetween.

7. The modular communications system of claim 6 , wherein each of the antenna elements comprises a radius of curvature of between 0.5 and 3 inches.

8. The modular communications system of claim 7 , wherein one or more of the first pairing element and the second pairing element consist of the non-metallic conductive composition.

9. The modular communications system of claim 8 , wherein the first pairing element and the second pairing element engage when shifted in a common plane with a maximum engagement force of 65 N.

10. The modular communications system of claim 9 , wherein the first pairing element and the second pairing element disengage when shifted in a same plane with a minimum disengagement force of 2 N.

11. The modular communications system of claim 10 , wherein the apparel item comprises:

a primary portion; and

an abutting element coupled to the primary portion thereby securing the primary portion to a user of the modular communications system.

12. The modular communications system of claim 1 , wherein

each of the plurality of antenna elements comprises a first pairing element, the first pairing element is conductive;

each of the plurality of landing pads comprises a second pairing element, the second pairing element is conductive; and

wherein the first pairing element and the second pairing element form a conductive hook-and-loop mating system when engaged.

13. The modular communications system of claim 1 , further comprising:

an I/O device positioned proximate to the surface;

wherein

each of the plurality of communications devices is intermittingly, demountably, and conductively coupled to the hub via an adaptor element configured to capture an impedence reading thereof;

the adaptor is configured to capture the impedence reading; and

I/O device is configured to generate a notification when the impedence reading is within a threshold range and thereby convey that the impedence reading reflects a conductive coupling.

14. The modular communications system of claim 1 , wherein at least one of the plurality of communications devices is a man portable communications device.

15. The modular communications system of claim 1 , wherein one or more of the plurality of antenna elements comprise a height of up to 10 mm.

16. The modular communications system of claim 1 , wherein one or more of the plurality of antenna element comprise:

a height of up to 10 mm; and

a radius of curvature of between 0.5 and 3 inches.

17. A modular communications systems comprising:

an apparel item comprising a surface;

a plurality of landing pads positioned proximate to the surface, each landing pad of the plurality of landing pads uniquely positioned on the surface relative to other landing pads of the plurality of landing pads;

a plurality of non-metallic antenna elements each:

demountably, intermittingly, and conductively coupled to a unique landing pad of the plurality of landing pads;

comprising a non-metallic conductive composition; and

comprising a unique operational frequency compared to at least one antenna element of the plurality of antenna elements;

a hub positioned on the surface and conductively coupled to each of the landing pads;

a plurality of communications devices, wherein each communications device:

is demountably affixed to the surface;

intermittingly, demountably, and conductively coupled to the hub;

comprises an operational frequency;

wherein the hub intermittingly, demountably, and conductively couples each of the communications devices to one of the landing pads;

wherein each of the plurality of antenna elements comprises a first pairing element, the first pairing element is conductive;

wherein each of the plurality of landing pads comprises a second pairing element, the second pairing element is conductive; and

wherein the first conductive pairing element and the second conductive pairing element demountably engage each other when shifted in a common plane and thereby form the selective, intermitting, and conductive coupling.

18. The modular communications system of claim 17 , wherein

the surface comprises a plurality of affixing locations configured to receive at least one of the plurality of communications devices; and

at least one of the plurality of communications devices are configured to be dynamically and demountably affixed to at least one of the plurality of the affixing locations.

19. The modular communications system of claim 18 , wherein

an antenna element of the plurality of antenna elements comprises a conductive composition;

the conductive composition comprises a polymer and fully exfoliated single sheets of graphene;

the fully exfoliated single sheets of graphene are present within the polymer as a three-dimensional percolated network comprising nanoscale separation between individual fully exfoliated single sheets of graphene;

each of the antenna elements comprise a height of up to 10 mm; and

each of the antenna elements comprise a radius of curvature of between 0.5 and 3 inches.

20. The modular communications system of claim 19 , further comprising:

an I/O device positioned proximate to the surface;

wherein

each of the plurality of communications devices is intermittingly, demountably, and conductively coupled to the hub via an adaptor element configured to capture an impedence reading thereof;

the adaptor is configured to capture the impedence reading;

I/O device is configured to generate a notification when the impedence reading is within a threshold range and thereby convey that the impedence reading reflects a conductive coupling;

the apparel item comprises:

a primary portion; and

an abutting element coupled to the primary portion thereby securing the primary portion to a user of the modular communications system.

Continuity (2)
Provisional Application 62861974 · Jun 14, 2019
Related Publication 20200395970A1 · Dec 17, 2020