Power module
A power module including at least one power device, an insulation thermally conductive layer, and a heat dissipation device is provided. The insulation thermally conductive layer has a patterned circuit layer. The power device is disposed on the patterned circuit layer and is electrically connected to the patterned circuit layer. The heat dissipation device includes a heat dissipation plate and a heat dissipation base. The heat dissipation plate has a first surface and a second surface opposite to each other, and the insulation thermally conductive layer is disposed on the first surface. The heat dissipation base is partially bonded to the heat dissipation plate, and a chamber is formed between the heat dissipation plate and the heat dissipation bases. The heat dissipation base has a plurality of first heat dissipation bumps located in the chamber.
1 . A power module comprising:
at least one power device;
an insulation thermally conductive layer having a patterned circuit layer, wherein the power device is disposed on the patterned circuit layer and electrically connected to the patterned circuit layer; and
a heat dissipation device comprising:
a heat dissipation plate having a first surface and a second surface opposite to each other, wherein the insulation thermally conductive layer is disposed on the first surface; and
a heat dissipation base partially bonded to the heat dissipation plate, wherein a chamber is formed between the heat dissipation plate and the heat dissipation base,
wherein the heat dissipation base has a plurality of first heat dissipation bumps, and the first heat dissipation bumps are located in the chamber,
wherein a gap between any two adjacent of a first part of the first heat dissipation bumps overlapping with an orthographic projection of the power device is different from a gap between any two adjacent of a second part of the first heat dissipation bumps located outside of the orthographic projection of the power device.
2 . The power module according to claim 1 , wherein the heat dissipation device has a first region corresponding to the power device and a second region adjacent to the first region, and the first heat dissipation bumps are arranged in the first region at a first number of bumps per unit area and are arranged in the second region at a second number of bumps per unit area.
3 . The power module according to claim 2 , wherein the orthographic projection of the power device on the heat dissipation device at least partially overlaps with the first region.
4 . The power module according to claim 2 , wherein the second region surrounds the first region.
5 . The power module according to claim 2 , wherein the first number of bumps per unit area is equal to the second number of bumps per unit area.
6 . The power module according to claim 2 , wherein the first number of bumps per unit area is different from the second number of bumps per unit area.
7 . The power module according to claim 2 , wherein the heat dissipation plate has a plurality of second heat dissipation bumps, and the second heat dissipation bumps are located on the second surface of the heat dissipation plate.
8 . The power module according to claim 7 , wherein the second heat dissipation bumps are arranged in the first region at a third number of bumps per unit area and are arranged in the second region at a fourth number of bumps per unit area.
9 . The power module according to claim 8 , wherein the third number of bumps per unit area is different from the fourth number of bumps per unit area.
10 . The power module according to claim 8 , wherein the third number of bumps per unit area is greater than the fourth number of bumps per unit area.
11 . The power module according to claim 10 , wherein the fourth number of bumps per unit area is equal to the first number of bumps per unit area and the second number of bumps per unit area.
12 . The power module according to claim 8 , wherein the second number of bumps per unit area is equal to the fourth number of bumps per unit area.
13 . The power module according to claim 7 , wherein the first heat dissipation bumps and the second heat dissipation bumps are columns.
14 . The power module according to claim 1 , wherein the heat dissipation base has a plurality of first supports, the first supports are located between the heat dissipation base and the heat dissipation plate, and the heat dissipation base is bonded to the heat dissipation plate through the first supports.
15 . The power module according to claim 14 , wherein a height of the first supports is greater than a height of the first heat dissipation bumps.
16 . The power module according to claim 7 , wherein the heat dissipation plate has a plurality of second supports, the second supports are located between the heat dissipation base and the heat dissipation plate, and the heat dissipation plate is bonded to the heat dissipation base through the second supports.
17 . The power module according to claim 1 , wherein the heat dissipation plate has a capillary structure layer, and the capillary structure layer is disposed on the second surface.
18 . A power module comprising:
at least one power device;
an insulation thermally conductive layer having a patterned circuit layer, wherein the power device is disposed on the patterned circuit layer and electrically connected to the patterned circuit layer; and
a heat dissipation device comprising:
a heat dissipation plate having a first surface and a second surface opposite to each other, wherein the insulation thermally conductive layer is disposed on the first surface; and
a heat dissipation base partially bonded to the heat dissipation plate, wherein a chamber is formed between the heat dissipation plate and the heat dissipation base,
wherein the heat dissipation plate has a plurality of first heat dissipation bumps, and the first heat dissipation bumps are located in the chamber,
wherein a gap between any two adjacent of a first part of the first heat dissipation bumps overlapping with an orthographic projection of the power device is different from a gap between any two adjacent of a second part of the first heat dissipation bumps located outside of the orthographic projection of the power device.
19 . The power module according to claim 18 , wherein the heat dissipation base has a capillary structure layer, and the capillary structure layer is located in the chamber.
20 . The power module according to claim 18 , wherein the heat dissipation plate has a plurality of second heat dissipation bumps, and the second heat dissipation bumps are located in the chamber.