IP Library Granted Patent US 11,522,201
Granted Patent B1
US 11,522,201 · App. 17/021,091 · Granted Dec 6, 2022

Thermal electric power generation from thermal batteries

Inventor: Jarrod H Wasko (Newport, RI)
H01M6/36H01L35/32H02J7/0013H02J7/0063
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Quick Facts
Patent No.
US 11,522,201
App. No.
17/021,091
Granted
Dec 6, 2022
Kind
B1
Abstract

An electrical power generation system has a thermal battery and a thermoelectric module positioned proximate to the thermal battery. The thermoelectric module has a first side thermally coupled to the exterior of the housing; and an electrical circuit configured to conduct electrical current from the thermoelectric module to an electrical load. The electrical circuit can be configured to conduct electrical current from the thermal battery to the electrical load while the voltage produced by the thermal battery is above a threshold and to conduct electrical power from the thermoelectric module when the voltage produced by thermal battery drops below the threshold.

Claims (34)

1. An electrical power generation system for powering an electrical load comprising:

a thermal battery having at least one thermal cell and a housing defining an exterior;

a thermoelectric module having a first side thermally coupled to the exterior of the thermal battery housing, and a second side distal from the thermal battery housing; and

an electrical circuit joined to the thermoelectric module and to the electrical load to conduct electrical current from the thermoelectric module to the electrical load, wherein the electrical circuit is electrically joined to the thermal battery and configured to conduct electrical power from the thermal battery to the electrical load while the voltage produced by the thermal battery is above a threshold voltage and to conduct electrical power from the thermoelectric module to the electrical load when the voltage produced by thermal battery drops below the threshold voltage.

2. The electrical power generation system of claim 1 , further comprising an array of thermoelectric modules thermally coupled to the exterior of the thermal battery housing, each thermoelectric module being electrically connected to at least one other thermoelectric module in a selected one of a series circuit, a parallel circuit, and a combination of series and parallel circuits.

3. The electrical power generation system of claim 1 , wherein the thermoelectric module is planar and thermally coupled to the exterior of the thermal battery housing by a thermally conductive fill material.

4. The electrical power generation system of claim 1 , wherein the thermoelectric module conforms to a curvature of the thermal battery housing.

5. The electrical power generation system of claim 1 , wherein the electrical circuit is configured to maintain an amount of current delivered to the electrical load within a selected range.

6. The electrical power generation system of claim 1 , wherein the electrical circuit is configured to increase electrical current from the thermoelectric module as electrical current from the thermal battery decreases to maintain an electrical current level, and wherein the electrical current level is configurable.

7. The electrical power generation system of claim 1 , further comprising a heat sink thermally coupled to the second side of the thermoelectric module.

8. A device comprising:

a power-consuming component;

a thermal battery having a housing defining an exterior;

an array of thermoelectric modules, each respective module electrically connected to at least one other of the plurality of thermoelectric modules and having a first side thermally coupled to the exterior of the thermal battery housing and a second side opposite the first side; and

an electrical circuit electrically joined to the thermoelectric module array and to the power-consuming component to conduct electrical current from the thermoelectric module array to the power-consuming component, wherein the electrical circuit electrically connected to the thermal battery to conduct electrical current from the thermal battery to the power-consuming component while the voltage produced by the thermal battery is above a threshold voltage and to conduct electrical current from the thermoelectric module when the voltage produced by thermal battery drops below the threshold voltage.

9. The device of claim 8 , wherein the electrical circuit is configured to maintain an amount of electrical current delivered to the power-consuming component within a selected range of electrical current values.

10. The device of claim 8 , wherein the amount of electrical current from the thermal battery and the amount of electrical current from the thermoelectric module is configurable.

11. The device of claim 8 , further comprising a heat sink joined to the second side of each of the thermoelectric modules.

12. The device of claim 8 , wherein each of the plurality of thermoelectric modules is planar.

13. The device of claim 8 , wherein each of the plurality of thermoelectric modules conforms to a curvature of the housing.

14. A method of delivering power to an electrical load comprising:

thermally coupling a first side of a thermoelectric module to an exterior of a thermal battery housing;

thermally coupling a second side of the thermoelectric module to a heat sink;

electrically connecting the thermoelectric module, the thermal battery, and the electrical load to an electrical circuit configured to conduct electrical current from the thermoelectric module to the electrical load and from the thermal battery to the electrical load;

establishing a threshold voltage;

conducting electrical current from the thermal battery to the electrical load while the voltage produced by the thermal battery is above the threshold voltage; and

conducting electrical power from the thermoelectric module to the electrical load when the voltage produced by thermal battery drops below the threshold voltage.

15. The method of claim 14 , further comprising:

thermally coupling an array of a plurality of thermoelectric modules to the exterior of the thermal battery housing;

electrically connecting each of the thermoelectric modules to at least one other adjacent thermoelectric module; and

connecting the array of thermoelectric modules to the electrical circuit.

16. The method of claim 14 , comprising:

conducting electrical current from both the thermal battery and the thermoelectric module to the electrical load when the voltage produced by the thermal battery drops below the threshold voltage.

17. The method of claim 16 , comprising maintaining an amount of current delivered to the electrical load within a selected range.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2020
From: WASKO, JARROD H
To: THE UNITED STATES OF AMERICA
Reel/Frame 053772/0720 →
Cited By (1)
US 12,446,468