IP Library Granted Patent US 11,876,393
Granted Patent B2
US 11,876,393 · App. 17/717,742 · Granted Jan 16, 2024

Systems, methods, and devices for powering a mesh network using a portable power case

Inventors: Laura Thiel (Raleigh, NC); Giancarlo Urzi (Raleigh, NC); Carlos Cid (Raleigh, NC)
Assignee: LAT ENTERPRISES, INC.
H02J7/0042H01Q1/242H01Q1/526H02J7/0048H02J2207/40H02J2300/22H02J2300/28H02J2300/40H02J2310/22
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Quick Facts
Patent No.
US 11,876,393
App. No.
17/717,742
Granted
Jan 16, 2024
Kind
B2
Abstract

Systems, methods, and articles for a portable power case are disclosed. The portable power case is comprised of at least one battery and at least one PCB. The portable power case is operable to supply power to a transceiver. The portable power case is operable to be charged using a DC power source (e.g., solar panel, wind turbine, water turbine). A plurality of portable power cases, DC power sources, and transceivers are operable to form a mesh network.

Claims (63)

1. A system for powering a mesh network, comprising:

a plurality of portable power cases;

a plurality of direct current (DC) power sources; and

a plurality of transceivers;

wherein each portable power case of the plurality of portable power cases includes:

a hard case;

a printed circuit board (PCB); and

at least one battery removably connected to the PCB;

wherein the hard case comprises a lid and a base that form a housing having an interior surface, an exterior surface, and an open interior space;

wherein each portable power case is electrically connected to at least one DC power source of the plurality of DC power sources, wherein the at least one DC power source is operable to charge the at least one battery;

wherein each portable power case is electrically connected to at least one transceiver of the plurality of transceivers;

wherein the plurality of transceivers is operable to form the mesh network;

wherein at least one portable power case of the plurality of portable power cases includes at least one lead and/or at least one access port;

wherein the at least one lead is a flexible omnidirectional lead; and

wherein the flexible omnidirectional lead includes a connector portion and a wiring portion, wherein a flexible spring is provided around the wiring portion, wherein the wiring portion and the flexible spring are held securely in the at least one portable power case such that a portion of the flexible spring is positioned inside the at least one portable power case and a portion of the flexible spring is positioned outside the at least one portable power case.

2. The system of claim 1 , wherein the hard case is waterproof or water resistant.

3. The system of claim 1 , wherein the interior surface of the housing is lined with a material that is resistant to electromagnetic interference and/or a material that is resistant to radio frequency interference.

4. The system of claim 1 , wherein the at least one DC power source includes a solar panel, a wind turbine, and/or a water turbine.

5. The system of claim 1 , wherein the at least one lead includes a connector portion, wherein the connector portion has an ingress protection (IP) rating of IPX6, IPX7, or IPX8.

6. The system of claim 1 , wherein at least one portable power case of the plurality of portable power cases includes an automatic purge valve that is operable to equalize air pressure.

7. The system of claim 1 , wherein the interior surface of the housing is lined with a material that is resistant to heat.

8. The system of claim 1 , wherein one or more of the at least one battery is in a battery housing for mating with a military radio, wherein the battery housing includes a latch operable to attach the one or more of the at least one battery to a corresponding catch of the military radio.

9. The system of claim 1 , wherein the hard case includes a pass through and/or a threaded receptacle to position an antenna of the at least one transceiver outside of the hard case.

10. The system of claim 1 , wherein each of the plurality of portable power cases is within a line of sight of at least one other portable power case of the plurality of portable power cases.

11. The system of claim 10 , wherein the line of sight is a distance between about 0 km and about 5 km.

12. The system of claim 1 , wherein the system is installed in a tree, on a pole, on a buoy or other flotation device, on a roof or other part of a building, on a boat, on a vehicle, on a drone, and/or on a plane.

13. The system of claim 1 , wherein one or more of the plurality of portable power cases is installed in running water or underwater.

14. A system for powering a mesh network, comprising:

a plurality of portable power cases;

a plurality of direct current (DC) power sources; and

a plurality of transceivers;

wherein each portable power case of the plurality of power cases includes:

a hard case;

a printed circuit board (PCB); and

at least one battery removably connected to the PCB;

wherein the at least one battery is rechargeable;

wherein the at least one battery is removable from the hard case;

wherein each portable power case is electrically connected to at least one DC power source of the plurality of DC power sources, wherein the at least one DC power source is operable to charge the at least one battery;

wherein each portable power case is electrically connected to at least one transceiver of the plurality of transceivers;

wherein the plurality of transceivers is operable to form the mesh network;

wherein at least one portable power case of the plurality of portable power cases includes at least one lead and/or at least one access port;

wherein the at least one lead is a flexible omnidirectional lead; and

wherein the flexible omnidirectional lead includes a connector portion and a wiring portion, wherein a flexible spring is provided around the wiring portion, wherein the wiring portion and the flexible spring are held securely in the at least one portable power case such that a portion of the flexible spring is positioned inside the at least one portable power case and a portion of the flexible spring is positioned outside the at least one portable power case.

15. The system of claim 13 , wherein the at least one lead includes a connector portion, wherein the connector portion has an ingress protection (IP) rating of IPX6, IPX7, or IPX8.

16. A system for powering a mesh network, comprising:

a plurality of portable power cases;

a plurality of direct current (DC) power sources; and

a plurality of transceivers;

wherein each portable power case of the plurality of portable power cases includes:

a hard case;

a printed circuit board (PCB); and

at least one battery removably connected to the PCB;

wherein each portable power case is electrically connected to at least one DC power source of the plurality of DC power sources, wherein the at least one DC power source is operable to charge the at least one battery;

wherein each portable power case is electrically connected to at least one transceiver of the plurality of transceivers;

wherein the plurality of transceivers is operable to form the mesh network;

wherein the PCB includes control electronics configured to determine a state of charge of the at least one battery;

wherein at least one portable power case of the plurality of portable power cases includes at least one lead and/or at least one access port;

wherein the at least one lead is a flexible omnidirectional lead; and

wherein the flexible omnidirectional lead includes a connector portion and a wiring portion, wherein a flexible spring is provided around the wiring portion, wherein the wiring portion and the flexible spring are held securely in the at least one portable power case such that a portion of the flexible spring is positioned inside the at least one portable power case and a portion of the flexible spring is positioned outside the at least one portable power case.

17. The system of claim 16 , wherein an exterior surface of the hard case includes at least one indicator for indicating the state of charge, and wherein the at least one indicator is at least one light-emitting diode (LED) and/or at least one liquid crystal display (LCD).

18. The system of claim 16 , wherein the control electronics include a communications interface configured to communicate information related to the state of charge to a network.

19. The system of claim 18 , wherein the communications interface is coupled to the network through a wired interface or a wireless interface.

20. The system of claim 16 , wherein the control electronics include at least one processor, and wherein one or more of the at least one processor is programmed to periodically measure the state of charge and send state of charge information to at least one remote device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 12, 2022
From: THIEL, LAURA; URZI, GIANCARLO; CID, CARLOS
To: LAT ENTERPRISES, INC., D/B/A MEDIPAK ENERGY SYSTEMS
Reel/Frame 059861/0714 →
Continuity (3)
Continuation 16685547 · Nov 15, 2019
Provisional Application 62768661 · Nov 16, 2018
Related Publication 20220231522A1 · Jul 21, 2022