Cold plate for power electronic systems
An energy management unit (EMU) is disclosed. The EMU including: a cold plate sandwiched between a first printed circuit board (PCB) and a second PCB, the cold plate comprising one or more magnetics; wherein the cold plate is configured to cool both the first PCB and the second PCB.
1. An energy management unit (EMU) comprising:
a cold plate sandwiched between a first printed circuit board (PCB) and a second PCB, the cold plate comprising one or more magnetics; and
a magnetics interface of the cold plate, the magnetics interface comprising:
a threaded interface comprising both an electrical connection between the one or more magnetics and the first PCB and a mechanical connection securing the first PCB to the cold plate;
wherein the cold plate is configured to cool both the first PCB and the second PCB.
2. The EMU of claim 1 , wherein the first PCB comprises a DC-DC PCB and the second PCB comprises a on board charger (OBC) PCB.
3. The EMU of claim 1 , wherein the cold plate comprises one or more magnetic pockets configured to hold the one or more magnetics.
4. The EMU of claim 3 , wherein the cold plate comprises multiple layers including:
a top outer layer and a bottom outer layer.
5. The EMU of claim 4 , wherein the cold plate further comprises a first sealing gasket inside of the top outer layer and a second sealing gasket inside of the bottom outer layer.
6. The EMU of claim 5 , wherein the first sealing gasket comprises an O-ring gasket.
7. The EMU of claim 5 , wherein the first sealing gasket is configured to seal around a top side of the one or more magnetic pockets.
8. An energy management unit (EMU) comprising:
a cold plate sandwiched between a first printed circuit board (PCB) and a second PCB, the cold plate comprising one or more magnetics;
wherein the cold plate comprises one or more magnetic pockets configured to hold the one or more magnetics;
wherein the cold plate comprises multiple layers including: a top outer layer and a bottom outer layer;
wherein the cold plate further comprises a first sealing gasket inside of the top outer layer and a second sealing gasket inside of the bottom outer layer; and
wherein the second sealing gasket is configured to seal around one or more magnetic leads of the one or more magnetics.
9. The EMU of claim 8 , wherein the second sealing gasket is configured to allow coolant to flow over the one or more magnetics.
10. The EMU of claim 8 , wherein the second sealing gasket is configured to route coolant into and out of the bottom outer layer as the coolant passes through the cold plate.
11. The EMU of claim 1 , further comprising an end cap on top of the one or more magnetics.
12. The EMU of claim 1 , wherein the threaded interface comprises a compatible material interface with the first PCB.
13. The EMU of claim 12 , wherein the compatible material interface comprises a combination of electroless nickel immersion gold (ENIG), copper, gold, or nickel.