IP Library Granted Patent US 11,323,012
Granted Patent B2
US 11,323,012 · App. 16/955,168 · Granted May 3, 2022

Flow-cooled power electronics

Inventors: Alexandre Battiston (Rueil-Malmaison, FR); Laid Kefsi (Garches, FR); Fabrice Le Berr (Rueil-Malmaison, FR)
Assignee: IFP ENERGIES NOUVELLES
H02K11/33F01D25/12F02B37/10F02B39/005H02K9/22H05K7/20172H05K7/20272H05K7/20918H05K7/20927F05D2220/40F05D2260/20H02K2211/03
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Quick Facts
Patent No.
US 11,323,012
App. No.
16/955,168
Granted
May 3, 2022
Kind
B2
Abstract

The invention is a device ( 1 ) for cooling a power electronic system (EP) comprising at least one power electronic component ( 2 ) mounted on at least one circuit board ( 3 ), the cooling device ( 1 ) comprises a hose ( 4 ) for circulating a flow ( 5 ) at an ambient temperature. The cooling device ( 1 ) comprises a first heat exchange surface ( 6 ) that is thermally connected to the power electronic components ( 2 ) and at least one second heat exchange surface ( 7 ). The second heat exchange surface ( 7 ) is for heat exchange with the flow ( 5 ) circulating through the hose. The second heat exchange surface ( 7 ) is fitted inside the circulation hose ( 4 ) to remove heat by convection with the circulating flow ( 5 ). The second heat exchange surface ( 7 ) is thermally connected to the first heat exchange surface ( 6 ).

Claims (16)

1. Device ( 1 ) for cooling a power electronic system (EP) comprising at least one power electronic component ( 2 ) mounted on at least one circuit board ( 3 ), said cooling device ( 1 ) comprising a hose ( 4 ) for circulating a flow ( 5 ) at an ambient temperature, characterized in that the cooling device ( 1 ) comprises a first heat exchange surface ( 6 ) that is thermally connected to the power electronic components ( 2 ) and at least one second heat exchange surface ( 7 ) for heat exchange with the circulating flow ( 5 ), which second heat exchange surface ( 7 ) is fitted inside the circulation hose ( 4 ) so as to remove heat by convection with the circulating flow ( 5 ) and said second heat exchange surface ( 7 ) is thermally connected to the first heat exchange surface ( 6 ).

2. Cooling device ( 1 ) according to claim 1 , characterized in that it comprises a heat sink ( 8 ) which connects the first heat exchange surface ( 6 ) with the second heat exchange surface ( 7 ), and the heat sink ( 8 ) at least partly surrounds the flow circulation hose ( 4 ).

3. Cooling device ( 1 ) according to claim 2 , characterized in that the second heat exchange surface ( 7 ) is borne by fins ( 9 ) that are connected to the heat sink ( 8 ) and the fins ( 9 ) are arranged circularly inside the hose ( 4 ) and converge from the wall of the hose ( 4 ) towards the centre thereof.

4. Cooling device ( 1 ) according to claim 1 , characterized in that the second heat exchange surface ( 7 ) is borne by fins ( 9 ) that are connected directly to the first heat exchange surface ( 6 ) and directed into the circulation hose ( 4 ) perpendicular to the first heat exchange surface ( 6 ).

5. Cooling device ( 1 ) according to claim 1 , characterized in that the second heat exchange surface ( 7 ) is borne by fins ( 9 ) that are connected directly to the first heat exchange surface ( 6 ) and the fins ( 9 ) converge inside the hose ( 4 ) and towards the centre thereof.

6. Cooling device ( 1 ) according to claim 1 , characterized in that the power electronic system (EP) is an inverter, some of the power electronic components ( 2 ) of which are connected to the first heat exchange surface ( 6 ).

7. Cooling device ( 1 ) according to claim 1 , characterized in that said hose ( 4 ) for circulating the flow ( 5 ) is an air intake hose ( 4 ) for an internal combustion engine (M).

8. Power electronic system (EP), said system comprising a mechanical housing ( 10 ) which incorporates at least one circuit board ( 3 ) comprising at least one power electronic component ( 2 ), characterized in that said power electronic system comprises a cooling device ( 1 ) according to claim 1 .

9. Power electronic system (EP) according to claim 8 , characterized in that the mechanical housing ( 10 ) incorporates fins for capturing the heat inside the mechanical housing ( 10 ) and transferring it to the flow ( 5 ).

10. Power electronic system (EP) according to claim 8 , characterized in that the mechanical housing ( 10 ) incorporates a fan.

11. Power electronic system (EP) according to claim 8 , characterized in that the mechanical housing ( 10 ) comprises a system for circulating a portion of the flow ( 5 ) inside said mechanical housing ( 10 ).

12. Power electronic system (EP) according to claim 8 , characterized in that it supplies an electric machine (ME) with power.

13. Power electronic system (EP) according to claim 1 , characterized in that said electric machine (ME) drives a compressor (C).

14. Power electronic system (EP) according to claim 12 , characterized in that said electric machine (ME) drives a turbine (T) of a turbocharger (Tc).

15. Power electronic system (EP) according to claim 13 , characterized in that the airflow flows through said electric machine (ME) upstream of said compressor (C) or of said turbine (T) of said turbocharger (Tc).

16. Power electronic system according to claim 13 , characterized in that said electric machine (ME) is arranged on a shaft ( 21 ) which connects the compressor (C) of said turbocharger (Tc) and the turbine (T) of said turbocharger (Tc).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 27, 2020
From: BATTISTON, ALEXANDRE; KEFSI, LAID; LE BERR, FABRICE
To: IFP ENERGIES NOUVELLES
Reel/Frame 053612/0774 →
Priority Claims (1)
FR 17/62.371 · Dec 18, 2017 · national
Continuity (1)
Related Publication 20200321838A1 · Oct 8, 2020