Claims
- 1. A power converter comprising:
a magnetic core; a printed circuit board comprising at least one cutout for receiving a portion of the magnetic core; a circuit magnetically coupled to the magnetic core, the circuit positioned on an opposite side of an isolation boundary relative to the magnetic core; and a stopper configured at an edge of the cutout proximate to the circuit to hold the magnetic core at a predefined distance relative to the circuit.
- 2. The power converter of claim 1 wherein the stopper is configured to define an air gap between the core and the edge of the cutout proximate to the circuit sufficiently spaced apart so that the core is just required to meet a respective clearance distance relative to the circuit.
- 3. The power converter of claim 1 wherein the air gap defined by the stopper comprises at least about 1/3 of the respective clearance distance.
- 4. The power converter of claim 2 wherein the stopper is integrally constructed with the printed circuit board on the cutout edge proximate to the circuit.
- 5. The power converter of claim 1 wherein the circuit is selected from the group consisting of a primary circuit and a secondary circuit.
- 6. A printed circuit board for a power converter, the printed circuit board comprising:
a magnetic core including a portion thereof mounted through a cutout in the printed circuit board; a circuit magnetically coupled to the magnetic core, the circuit positioned on an opposite side of an isolation boundary relative to the magnetic core; and a stopper configured at an edge of the cutout proximate to the circuit to hold the magnetic core at a predefined distance relative to the circuit.
- 7. The printed circuit board of claim 6 wherein the stopper is configured to define an air gap between the core and the edge of the cutout proximate to the circuit sufficiently spaced apart so that the core is just required to meet a respective clearance distance relative to the circuit.
- 8. The printed circuit board of claim 6 wherein the air gap defined by the stopper comprises at least about ⅓ of the respective clearance distance.
- 9. The printed circuit board of claim 7 wherein the stopper is integrally constructed with the printed circuit board on the cutout edge proximate to the circuit.
- 10. The printed circuit of claim 6 wherein the circuit is selected from the group consisting of a primary circuit and a secondary circuit.
- 11. A power converter comprising:
a printed circuit board configured to support on one side thereof heat-generating components of the power converter; and a baseplate for transferring heat from the heat-generating components, the baseplate comprising a surface thermally coupled to the heat-generating components therein, the surface of the baseplate configured to have a varying profile to generally match the profile of the heat-generating components on the one side of the printed circuit board.
- 12. The power converter of claim 11 further comprising thermal interface material between the baseplate and the printed circuit board.
- 13. The power converter of claim 11 further comprising studs for mechanically connecting the baseplate to the printed circuit board.
- 14. The power converter of claim 13 wherein the studs are integrally constructed with the baseplate.
- 15. The power converter of claim 11 wherein the baseplate further comprises fins to serve as a heatsink.
- 16. The power converter of claim 15 wherein some of the fins have their respective roots positioned relatively closer to respective heat-generating components of the power converter, thereby providing a closer thermal path for discharging heat from the heat-generating components.
Parent Case Info
[0001] This application claims priority to a provisional application filed on Mar. 11, 2002, having application No. 60/363,680, which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60363680 |
Mar 2002 |
US |