Double-sided cooling power module including reverse-mounted chips
A power module includes an upper substrate and a lower substrate, an upper chip, a lower chip, and a circuit board disposed across a space between the upper substrate and the lower chip and a space between the lower substrate and the upper chip so that the upper substrate and the lower substrate are vertically spaced from each other. The circuit board electrically connects the upper chip to the lower substrate while electrically connecting the lower chip to the upper substrate.
1 . A power module comprising:
an upper substrate and a lower substrate;
an upper chip disposed at a lower surface of the upper substrate;
a lower chip disposed at an upper surface of the lower substrate; and
a circuit board disposed across a space between the upper substrate and the lower chip and a space between the lower substrate and the upper chip so that the upper substrate and the lower substrate are vertically spaced from each other, and electrically connecting the upper chip to the lower substrate while electrically connecting the lower chip to the upper substrate,
wherein the upper chip includes a first power pad and a first signal pad disposed at a lower surface of the upper chip, and
wherein the lower chip includes a second power pad and a second signal pad disposed at an upper surface of the lower chip.
2 . The power module of claim 1 , wherein the upper chip and the lower chip are horizontally spaced from each other, not to overlap each other in plan view.
3 . The power module of claim 2 , wherein the first signal pad and the second signal pad are disposed adjacent to each other.
4 . The power module of claim 1 , wherein the circuit board includes:
an insulating plate;
a first power conductor extending vertically through the insulating plate and electrically interconnecting the first power pad and the lower substrate; and
a second power conductor extending vertically through the insulating plate and electrically interconnecting the second power pad and the upper substrate.
5 . The power module of claim 4 , wherein the circuit board further includes:
a first signal conductor buried in the insulating plate at at least a portion thereof and electrically connected to the first signal pad; and
a second signal conductor buried in the insulating plate at at least a portion thereof and electrically connected to the second signal pad.
6 . The power module of claim 5 , wherein the circuit board further includes a signal connector configured to receive a voltage from an exterior thereof and electrically connected to the first signal conductor and the second signal conductor.
7 . The power module of claim 5 ,
wherein the insulating plate includes a first insulating plate, and a second insulating plate horizontally spaced from the first insulating plate,
wherein the first power conductor and the first signal conductor are disposed at the first insulating plate, and
wherein the second power conductor and the second signal conductor are disposed at the second insulating plate.
8 . The power module of claim 7 , wherein the circuit board further includes a flexible substrate disposed between the first insulating plate and the second insulating plate.
9 . The power module of claim 8 , wherein the first signal conductor and the second signal conductor are electrically connected to the flexible substrate.
10 . The power module of claim 8 , wherein a thickness of the flexible substrate is smaller than a thickness of the insulating plate.
11 . The power module of claim 8 ,
wherein the circuit board further includes a signal connector configured to receive a voltage from an exterior thereof and electrically connected to the first signal conductor and the second signal conductor, and
wherein the signal connector is disposed at an end portion of the flexible substrate.
12 . The power module of claim 7 , wherein thicknesses of the first insulating plate and the second insulating plate are equal.
13 . The power module of claim 7 , wherein a vertical position deviation between the first insulating plate and the second insulating plate corresponds to a thickness of the upper chip or the lower chip.
14 . The power module of claim 4 , wherein a thickness of the insulating plate is equal to a thickness of each of the first power conductor and the second power conductor.