IP Library Granted Patent US 9,818,733
Granted Patent B2
US 9,818,733 · App. 14/129,361 · Granted Nov 14, 2017

Power converters having capacitive energy transfer elements and arrangements of energy storage elements for power converters

Inventor: David Michael Giuliano (Rochester, NY)
Assignee: Massachusetts Institute of Technology
H01L25/18H01L23/642H02M3/28H01L24/48H01L2224/16225H01L2224/16227H01L2224/48247H01L2924/00014H01L2924/1306H01L2924/15311H01L2924/181H01L2924/19041H01L2924/19106H01L2924/30107H02M7/003
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Quick Facts
Patent No.
US 9,818,733
App. No.
14/129,361
Granted
Nov 14, 2017
Kind
B2
Abstract

A power converter includes a PCB and a semiconductor die coupled to the PCB. The semiconductor die includes first through fourth switching devices. The power converter further includes a first energy storage element electrically connected to the first and second switching devices and a second energy storage element electrically connected to the third and fourth switching devices. The first energy storage element is mounted over the first and second switching devices and the second energy storage element is mounted over the third and fourth switching devices.

Claims (35)

1. A power converter comprising:

a printed circuit board (PCB);

a semiconductor die coupled to the PCB, the semiconductor die including first through fourth switching devices;

a first energy storage element electrically connected to the first and second switching devices; and

a second energy storage element electrically connected to the third and fourth switching devices;

wherein the first energy storage element is vertically mounted over the first and second switching devices and the second energy storage element is vertically mounted over the third and fourth switching devices,

wherein the first through fourth switching devices are spaced apart from one another on the semiconductor die and wherein the semiconductor die further includes gate driver circuitry interspaced in a spare space between the switching devices.

2. The power converter of claim 1 , wherein the first switching device includes a first transistor, the second switching device includes a second transistor, the third switching device includes a third transistor, and the fourth switching device includes a fourth transistor.

3. The power converter of claim 1 , wherein at least one of the first and second energy storage elements includes a capacitive element.

4. The power converter of claim 3 , wherein the capacitive element includes a first capacitor and a second capacitor.

5. The power converter of claim 3 , wherein the capacitive element includes at least one multilayer ceramic capacitor.

6. The power converter of claim 1 , further comprising an interconnected structure that electrically connects the first energy storage element and the second energy storage element to the first and second switching devices and the third and fourth switching devices.

7. The power converter of claim 6 , wherein the interconnect structure includes at least one solder ball.

8. The power converter of claim 6 , wherein the first energy storage element is electrically connected to the first and second switching devices via a first interconnect of the interconnect structure.

9. The power converter of claim 8 , wherein the second energy storage element is electrically connected to the third and fourth switching devices via a second interconnect of the interconnect structure.

10. The power converter of claim 1 , wherein the first energy storage element and the second energy storage element are mounted over a top planar surface of the semiconductor die.

11. The power converter of claim 1 , wherein the first energy storage element is mounted over the first and second switching devices at a first distance and the second energy storage element is mounted over the third and fourth switching devices at a second distance.

12. The power converter of claim 11 , wherein the first distance and the second distance are substantially uniform.

13. The power converter of claim 1 , further comprising control circuitry, the control circuitry interspaced between the first through fourth switching devices.

14. The power converter of claim 1 , wherein the first energy storage element overlaps the first and second switching devices.

15. The power converter of claim 14 , wherein the second energy storage element overlaps the third and fourth switching devices.

16. The power converter of claim 1 , wherein the first and second energy storage elements and the first, second, third and fourth switching devices are arranged so as to provide a uniform current distribution to each switching device.

17. The power converter of claim 1 , wherein a first end of the first energy storage element is vertically mounted over the first switching device and a second end of the first energy storage element is vertically mounted over the second switching device and a first end of the second energy storage element is vertically mounted over the third switching device and a second end of the second energy storage element is vertically mounted over the fourth switching device.

18. The power converter of claim 1 , wherein the first and second energy storage elements and the first, second, third and fourth switching devices are arranged so as to provide for same electrical path distances between the energy storage elements and the switching devices.

19. The power converter of claim 1 , wherein the first and second energy storage elements and the first, second, third and fourth switching devices are arranged so as to provide uniform inductance and resistance between respective pairs of the switching devices.

20. The power converter of claim 1 , wherein the first and second energy storage elements and the first, second, third and fourth switching devices are arranged so as to minimize inductance and resistance between respective pairs of the switching devices.

21. An arrangement of energy storage elements comprising:

a semiconductor die including a plurality of switching devices, the switching devices configured as switch-mode power converter;

at least one energy storage element electrically connected to one or more of the switching devices,

wherein the at least one energy storage element is vertically mounted over a top planner surface of the semiconductor die,

wherein the plurality of switching devices are spaced apart from one another on the semiconductor die and wherein the semiconductor die further includes gate driver circuitry interspaced in a spare space between the switching devices.

22. The arrangement of energy storage elements of claim 21 , wherein the at least one energy storage element includes first through third energy storage elements.

23. The arrangement of energy storage elements of claim 22 , wherein the plurality of switching devices includes first through third sets of switching devices.

24. The arrangement of energy storage elements of claim 23 , wherein the first energy storage element is electrically connected to the first set of switching devices, the second energy storage element is electrically connected to the second set of switching devices, and the third energy storage element is electrically connected to the third set of switching devices.

25. The arrangement of energy storage elements of claim 24 , wherein the first through third energy storage elements are mounted at a same distance over the first through third sets of switching devices.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 25, 2014
From: GIULIANO, DAVID MICHAEL
To: MASSACHUSETTS INSTITUTE OF TECHNOLOGY
Reel/Frame 033602/0659 →
Continuity (2)
Provisional Application 61501303 · Jun 27, 2011
Related Publication 20140369018A1 · Dec 18, 2014