IP Library Granted Patent US 12,230,973
Granted Patent B2
US 12,230,973 · App. 18/498,385 · Granted Feb 18, 2025

Air-cooled wireless power transmission system

Inventors: George Powell, Jr. (Cortland, OH); James Cook (Poland, OH); Evan Wallace (Shelby Township, MI)
Assignee: Aptiv Technologies AG
H02J50/10H02J7/00309
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Quick Facts
Patent No.
US 12,230,973
App. No.
18/498,385
Granted
Feb 18, 2025
Kind
B2
Abstract

A wireless power transmitter includes a charging coil, an electronics housing, and a top side. The charging coil housing houses a charging coil and includes a top surface, wherein the charging coil wirelessly transmits power to a receiver placed on the top surface of the charging coil housing. The electronics housing houses one or more electronics and a fan. The top side is located adjacent to the electronics housing, wherein a top surface of the top side faces a bottom surface of the receiver. An intake cooling path is defined by a region between the bottom surface of the receiver and the top surface of the top side and an exhaust cooling path is located on a side of the charging coil housing opposite the intake cooling path and defined by a region between the receiver and the top surface of the top side.

Claims (26)

1. A wireless power transmitter for charging a receiver, comprising:

a charging coil housing that houses a charging coil and includes a first top surface, wherein the charging coil wirelessly transmits power to the receiver placed on the first top surface of the charging coil housing;

an electronics housing for housing electronics and a fan, wherein the electronics housing includes a top side with a second top surface, and the fan is positioned horizontally adjacent to the electronics, wherein the electronics include a printed circuit board and an integrated controller circuit; and

an exhaust cooling path positioned adjacent to the second top surface of the top side, wherein the exhaust cooling path flows horizontally over the second top surface of the top side.

2. The wireless power transmitter of claim 1 , wherein the exhaust cooling path includes a cooling duct.

3. The wireless power transmitter of claim 1 , wherein the fan is offset horizontally from the charging coil housing in the positive x direction.

4. The wireless power transmitter of claim 1 , wherein intake cooling airflow is drawn into the fan in a vertical direction.

5. The wireless power transmitter of claim 4 , wherein intake cooling airflow is drawn into the fan in a negative z direction.

6. The wireless power transmitter of claim 1 , wherein the second top surface of the top side includes a plurality of protrusions separated by channels.

7. The wireless power transmitter of claim 6 , wherein airflow in the exhaust cooling path is provided within the channels.

8. The wireless power transmitter of claim 1 , wherein exhaust cooling airflow is exhausted from the fan in a vertical direction.

9. The wireless power transmitter of claim 1 , wherein the electronics housing houses a thermally conductive material.

10. The wireless power transmitter of claim 9 , wherein the thermally conductive material is in contact with the electronics and allows heat generated by the electronics to be transferred from the electronics to airflow in the exhaust cooling path.

11. The wireless power transmitter of claim 9 , wherein the thermally conductive material is in contact with the top side of the electronics housing.

12. A wireless power transmitter for charging a receiver, comprising:

a charging coil housing that houses a charging coil and includes a first top surface, wherein the charging coil wirelessly transmits power to the receiver placed on the first top surface of the charging coil housing;

an electronics housing for housing electronics and a fan, wherein the electronics housing includes a top side with a second top surface, and the fan is positioned horizontally adjacent to the electronics, wherein the electronics include a printed circuit board and an integrated controller circuit; and

an exhaust cooling path positioned adjacent to the second top surface of the top side, wherein the exhaust cooling path flows horizontally over the second top surface of the top side,

wherein intake cooling airflow is drawn into the fan in a vertical direction.

13. The wireless power transmitter of claim 12 , wherein the exhaust cooling path includes a cooling duct.

14. The wireless power transmitter of claim 12 , wherein the fan is offset horizontally from the charging coil housing in the positive x direction.

15. The wireless power transmitter of claim 12 , wherein intake cooling airflow is drawn into the fan in a negative z direction.

16. The wireless power transmitter of claim 12 , wherein exhaust cooling airflow is exhausted from the fan in a vertical direction.

17. The wireless power transmitter of claim 12 , wherein the electronics housing houses a thermally conductive material.

18. The wireless power transmitter of claim 17 , wherein the thermally conductive material is in contact with the electronics and allows heat generated by the electronics to be transferred from the electronics to airflow in the exhaust cooling path.

19. The wireless power transmitter of claim 17 , wherein the thermally conductive material is in contact with the top side of the electronics housing.

Assignments (4)
MERGER Recorded Jan 15, 2025
From: APTIV TECHNOLOGIES(2) S.À R.L.
To: APTIV MANUFACTURING MANAGEMENT SERVICES S.À R.L.
Reel/Frame 069926/0062 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2024
From: POWELL, GEORGE W., JR.; COOK, JAMES; WALLACE, EVAN
To: APTIV TECHNOLOGIES LIMITED
Reel/Frame 069575/0585 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2024
From: APTIV TECHNOLOGIES LIMITED
To: APTIV TECHNOLOGIES (2) S.À R.L.
Reel/Frame 069575/0588 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2024
From: APTIV MANUFACTURING MANAGEMENT SERVICES S.À R.L.
To: APTIV TECHNOLOGIES AG
Reel/Frame 069633/0757 →
Continuity (3)
Continuation 17721862 · Apr 15, 2022
Provisional Application 63175769 · Apr 16, 2021
Related Publication 20240063661A1 · Feb 22, 2024
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