Electronic module
11153973 ยท 2021-10-19
Assignee
Inventors
- Kaipeng Chiang (Taoyuan, TW)
- Da-Jung Chen (Taoyuan, TW)
- Bau-Ru Lu (Changhua County, TW)
- Chun Hsien Lu (Hsinchu, TW)
Cpc classification
H05K2201/042
ELECTRICITY
H05K2201/066
ELECTRICITY
H02M3/156
ELECTRICITY
H05K1/185
ELECTRICITY
H05K3/3415
ELECTRICITY
H05K2201/10613
ELECTRICITY
H05K2201/2036
ELECTRICITY
H05K1/183
ELECTRICITY
H05K1/141
ELECTRICITY
H02M3/003
ELECTRICITY
International classification
H05K1/18
ELECTRICITY
H02M3/156
ELECTRICITY
Abstract
An electronic module, such as a VRM, has a power inductor and power wave pins disposed on a bottom surface of a circuit board so as to reduce the size and increase the heat dissipation capability of the VRM.
Claims
1. An electronic module, comprising: a circuit board, wherein a plurality of electronic devices are disposed on a top surface of the circuit board; an inductor, disposed on a bottom surface of the circuit board; and a plurality of wave pins, disposed under the bottom surface of the circuit board, wherein a first wave pin comprises a conductive body and a recess on a bottom surface of the conductive body, wherein the inductor is electrically connected to the first wave pin, wherein a top surface of the conductive body is in contact with the bottom surface of the circuit board with a first portion of the conductive body extending vertically from a first portion of said top surface of the conductive body to the recess, wherein a second portion of the conductive body extends vertically from an outer portion of the bottom surface of the conductive body to a second portion of said top surface of the conductive body, said outer portion of the bottom surface of the conductive body being located at a lateral side of the recess.
2. The electronic module according to claim 1, wherein the inductor is a power inductor for connecting to a power supply.
3. The electronic module according to claim 1, wherein the circuit board is a PCB.
4. The electronic module according to claim 1, wherein said recess has a semi-circular shape.
5. The electronic module according to claim 1, wherein the plurality of electronic devices comprises a first MOSFET and a second MOSFET.
6. The electronic module according to claim 5, wherein a contiguous metal layer is electroplated on a top surface of the first MOSFET and a top surface of the second MOSFET, for dissipating heat generated by the first MOSFET and the second MOSFET.
7. The electronic module according to claim 6, wherein a molding body is disposed on the top surface of the circuit board to encapsulate the plurality of electronic devices and the contiguous metal layer, wherein a top surface of the contiguous metal layer is exposed from the molding body.
8. The electronic module according to claim 5, wherein a first metal layer is electroplated on a top surface of the first MOSFET and a second metal layer is electroplated on a top surface of the second MOSFET, for dissipating heat generated by the first MOSFET and the second MOSFET, wherein the first metal layer and the second metal layer are separated by a horizontal gap.
9. The electronic module according to claim 8, wherein a molding body is disposed on the top surface of the circuit board to encapsulate the plurality of electronic devices and the first metal layer and the second metal layer, wherein a top surface of each of the first metal layer and the second metal layer is exposed from the molding body.
10. The electronic module according to claim 1, wherein the plurality of wave pins and a plurality of signal pins are disposed in a connecting board, wherein the plurality of wave pins and the plurality of signal pins are electrically connected to the circuit board.
11. The electronic module according to claim 10, wherein the connecting board is a PCB.
12. The electronic module according to claim 1, wherein a heat sink is disposed over the plurality of electronic devices.
13. The electronic module according to claim 1, wherein the plurality of wave pins and a plurality of signal pins are made through metal injection so as to form an insert-molded connecting board, wherein the plurality of wave pins and the plurality of signal pins are electrically connected to the circuit board.
14. The electronic module according to claim 1, wherein the plurality of wave pins and a plurality of signal pins are on a connector, wherein the plurality of wave pins and the plurality of signal pins are electrically connected to the circuit board.
15. The electronic module according to claim 1, wherein the plurality of wave pins and a plurality of signal pins are made by a lead frame, wherein the plurality of wave pins and the plurality of signal pins are electrically connected to the circuit board.
16. The electronic module according to claim 1, wherein the electronic module is a VRM.
17. The electronic module according to claim 1, wherein a plurality of recesses are on the bottom surface of the conductive body.
18. The electronic module according to claim 1, wherein the conductive body comprises a conductive pillar.
19. An electronic module, comprising: a circuit board, wherein a plurality of electronic devices are disposed on a top surface of the circuit board; a power inductor, disposed on a bottom surface of the circuit board; and a plurality of power pins and a plurality of signal pins, disposed on the bottom surface of the circuit board, wherein the size of a first power pin is larger than that of a signal pin, and the power inductor is electrically connected to the first power pin, wherein the first power pin comprises a conductive body and a recess on a bottom surface of the conductive body, wherein a top surface of the conductive body is in contact with the bottom surface of the circuit board with a first portion of the conductive body extending vertically from a first portion of said top surface of the conductive body to the recess, wherein a second portion of the conductive body extends vertically from an outer portion of the bottom surface of the conductive body to a second portion of said top surface of the conductive body, said outer portion of the bottom surface of the conductive body being located at a lateral side of the recess.
20. The electronic module according to claim 19, wherein the conductive body comprises a conductive pillar.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
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DESCRIPTION OF EMBODIMENTS
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(14) In one embodiment, each wave pin comprises a conductive body and a plurality of recesses on a bottom surface of the conductive body.
(15) In one embodiment, each conductive body comprises a conductive pillar.
(16) In one embodiment, each conductive body comprises a conductive pillar made of metal.
(17) In one embodiment, each conductive body comprises a copper pillar.
(18) In one embodiment, the electronic module comprises a VRM, and the inductor 106 is a power inductor for connecting to a power supply, wherein the power inductor can sustain a larger current flowing from the power supply.
(19) In one embodiment, the electronic module 100 is a VRM, and the inductor 106 is a power inductor for connecting to a power supply, wherein the power inductor can sustain a larger current flowing from the power supply.
(20) In one embodiment, the circuit board 113 is a PCB.
(21) In one embodiment, the circuit board 113 comprises a metallic substrate.
(22) In one embodiment, the circuit board 113 comprises a ceramic substrate.
(23) In one embodiment, the circuit board 113 comprises a lead frame.
(24) In one embodiment, the recess 105a has a semi-circular shape.
(25) In one embodiment, the recess 105a has a semi-square shape.
(26) In one embodiment, the plurality of electronic devices comprises a first MOSFET 102 and a second MOSFET 103.
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(28) In one embodiment, the connecting board 120 is a PCB.
(29) In one embodiment, the connecting board 120 comprises a metallic substrate.
(30) In one embodiment, the connecting board 120 comprises a ceramic substrate.
(31) In one embodiment, the connecting board 120 comprises a lead frame.
(32) In one embodiment, the circuit board 113 and the connecting board 120 are made of the same unitary insulating substrate, so that there is no need to have two separate boards 113, 120.
(33) In one embodiment, the circuit board 113 and the connecting board 120 are made of the same unitary metallic substrate, so that there is no need to have two separate boards 113, 120.
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(36) In one embodiment, as shown in
(37) In one embodiment the molding body 115 is made of EMC (Epoxy molding compound).
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(39) In one embodiment, the top surface of the heat sink 116, 117 are exposed from the molding body 115.
(40) In one embodiment, instead of using the power wave pins 105 in each of the electronic module 100, 200, 300A, 300B, a plurality of power pins 105B and a plurality of signal pins 107 can be disposed on the bottom surface of the circuit board 113, as shown in
(41) In one embodiment, as shown in
(42) In one embodiment, the plurality of pins 133 are made by a lead frame, wherein the plurality of pins 133 are electrically connected to the circuit board 113, as shown in
(43) In one embodiment, the plurality of pins 133 are on a connector 150, wherein the plurality of pins 133 are electrically connected to the circuit board 113, as shown in
(44)