IP Library › Granted Patent US 11,729,955
Granted Patent B2
US 11,729,955 · App. 17/545,123 · Granted Aug 15, 2023

Welding-type power supplies with expandable thermal interfaces

Inventors: Alan Adam Manthe (New London, WI); Nicholas James Dessart (Neenah, WI)
Assignee: ILLINOIS TOOL WORKS INC.
H05K7/209B23K9/1043H05K7/20918H01L23/3672H01L23/4093H05K7/2039H05K7/20163H05K7/20418
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Quick Facts
Patent No.
US 11,729,955
App. No.
17/545,123
Granted
Aug 15, 2023
Kind
B2
Abstract

Systems and methods are disclosed relating to welding-type power supplies. In some examples, the power supplies may have no vents, which may help prevent environmental contaminants from entering the power supplies. Instead, the power supplies include one or more thermal interfaces configured to conduct heat generated by internal circuitry of the power supply from the interior of the power supply to an exterior of the power supply. Additionally, the thermal interface(s) may be configured for attachment to one or more exterior heat dissipating devices.

Claims (27)

1. A welding-type power supply, comprising:

power conversion circuitry configured to convert input power to output power suitable for welding, cladding, brazing, induction heating, plasma cutting, carbon arc cutting, gouging, hot wire preheating, or resistive preheating;

an enclosure housing the power conversion circuitry, wherein the welding-type power supply includes no fans disposed within the enclosure; and

a thermal interface in thermal communication with the power conversion circuitry, the thermal interface comprising a thermally conductive material configured to conduct heat generated by the power conversion circuitry to an exterior surface outside of the enclosure.

2. The welding-type power supply of claim 1 , wherein the thermal interface comprises a heat sink or heat exchanger plate.

3. The welding-type power supply of claim 1 , wherein the thermal interface comprises a thermally conductive and electrically non-conductive material.

4. The welding-type power supply of claim 1 , wherein the enclosure has no vents.

5. The welding-type power supply of claim 1 , wherein the thermal interface comprises a first thermal interface comprising a first thermally conductive material configured to conduct heat to a first exterior surface, and the welding-type power supply further comprises a second thermal interface in thermal communication with the power conversion circuitry, the second thermal interface comprising a second thermally conductive material configured to conduct heat generated by the power conversion circuitry to the first exterior surface, or a second exterior surface, outside of the enclosure.

6. The welding-type power supply of claim 1 , wherein the enclosure comprises a first sidewall, a second sidewall, a first end wall, a second end wall, a top wall, and a bottom wall, and one or more of the first sidewall, second sidewall, first end wall, second end wall, top wall, or bottom wall comprises the thermal interface.

7. The welding-type power supply of claim 1 , wherein the thermal interface includes an interior surface within the enclosure and the exterior surface outside the enclosure.

8. The welding-type power supply of claim 7 , wherein the exterior surface of the thermal interface is configured to couple to a heat dissipater.

9. The welding-type power supply of claim 8 , wherein the heat dissipater comprises a fan, a heat sink, a heat sink tunnel, a heat exchanger, or a liquid cooling system.

10. The welding type power supply of claim 8 , wherein the heat dissipater comprises a first heat dissipater, and the first heat dissipater is configured to couple to a second heat dissipater.

11. A welding-type system, comprising:

a welding-type power supply, comprising:

power conversion circuitry configured to convert input power to output power suitable for welding, cladding, brazing, induction heating, plasma cutting, carbon arc cutting, gouging, hot wire preheating, or resistive preheating, and

an enclosure housing the power conversion circuitry, wherein the welding-type power supply includes no fans disposed within the enclosure; and

a thermal interface in thermal communication with the power conversion circuitry, the thermal interface comprising a thermally conductive material configured to conduct heat generated by the power conversion circuitry to an exterior surface outside of the enclosure.

12. The welding-type system of claim 11 , wherein the thermal interface comprises a heat sink or heat exchanger plate.

13. The welding-type system of claim 11 , wherein the thermal interface comprises a thermally conductive and electrically non-conductive material.

14. The welding-type system of claim 11 , wherein the enclosure has no vents.

15. The welding-type system of claim 11 , wherein the thermal interface comprises a first thermal interface comprising a first thermally conductive material configured to conduct heat to a first exterior surface, and the welding-type power supply further comprises a second thermal interface in thermal communication with the power conversion circuitry, the second thermal interface comprising a second thermally conductive material configured to conduct heat generated by the power conversion circuitry to the first exterior surface, or a second exterior surface, outside of the enclosure.

16. The welding-type system of claim 11 , wherein the enclosure comprises a first sidewall, a second sidewall, a first end wall, a second end wall, a top wall, and a bottom wall, and one or more of the first sidewall, second sidewall, first end wall, second end wall, top wall, or bottom wall comprises the thermal interface.

17. The welding-type system of claim 11 , wherein the thermal interface includes an interior surface within the enclosure and the exterior surface outside the enclosure.

18. The welding-type system of claim 17 , further comprising a heat dissipater, wherein the exterior surface of the thermal interface is configured to couple to a heat dissipater.

19. The welding-type system of claim 18 , wherein the heat dissipater comprises a fan, a heat sink, a heat sink tunnel, a heat exchanger, or a liquid cooling system.

20. The welding-type system of claim 18 , wherein the heat dissipater comprises a first heat dissipater, and the first heat dissipater is configured to couple to a second heat dissipater.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 19, 2023
From: MANTHE, ALAN ADAM; DESSART, NICHOLAS JAMES
To: ILLINOIS TOOL WORKS INC.
Reel/Frame 064022/0275 →
Continuity (2)
Continuation 16858851 · Apr 27, 2020
Related Publication 20220104385A1 · Mar 31, 2022