IP Library Granted Patent US 11,817,778
Granted Patent B2
US 11,817,778 · App. 17/938,350 · Granted Nov 14, 2023

Power converter with modular stages connected by floating terminals

Inventor: David M. Giuliano (Bedford, NH)
Assignee: pSemi Corporation
H02M3/07H02M1/42H02M1/4225H02M3/00H02M3/158H02M1/007H02M1/4291H02M3/077H02M3/1582Y02B70/10
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Quick Facts
Patent No.
US 11,817,778
App. No.
17/938,350
Granted
Nov 14, 2023
Kind
B2
Abstract

An apparatus for electric power conversion includes a converter having a regulating circuit and switching network. The regulating circuit has magnetic storage elements, and switches connected to the magnetic storage elements and controllable to switch between switching configurations. The regulating circuit maintains an average DC current through a magnetic storage element. The switching network includes charge storage elements connected to switches that are controllable to switch between plural switch configurations. In one configuration, the switches forms an arrangement of charge storage elements in which at least one charge storage element is charged using the magnetic storage element through the network input or output port. In another, the switches form an arrangement of charge storage elements in which an element discharges using the magnetic storage element through one of the input port and output port of the switching network.

Claims (36)

1. A power converter comprising:

a first switching capacitor network having a first input node and a first output node, the first switching capacitor network comprising a first capacitor and a plurality of switches coupled to the first capacitor, and configured to switch between switch configurations at one or more switching frequencies so as to convert a first voltage regulated by a first regulating circuit to a second voltage;

a second regulating circuit having a second input node and a second output node, the second regulating circuit being coupled to the first switching capacitor network and comprising one or more inductors and one or more switches connected to the one or more inductors, wherein the one or more switches are controllable to switch between switch configurations;

wherein the first switching capacitor network is a two-phase switching capacitor network comprising a first path and a second path in parallel for respective flows of current, and a first current in the first path and a second current in the second path are out of phase.

2. The power converter of claim 1 , wherein the first switching capacitor network and the second regulating circuit form a loop to regulate an output voltage outputted to one or more loads.

3. The power converter of claim 2 , wherein the loop comprises a control circuit configured to provide a linear-voltage mode control to compare the output voltage with a reference voltage to regulate the output voltage.

4. The power converter of claim 2 , wherein the loop comprises a hysteretic control circuit configured to switch between two states based upon a hysteresis band.

5. The power converter of claim 2 , wherein the loop comprises a control circuit configured to provide a peak current-mode control.

6. The power converter of claim 1 , wherein the first switching capacitor network and the second regulating circuit form a loop to regulate the first voltage received by the first switching capacitor network.

7. The power converter of claim 1 , wherein the first input node and the second input node are coupled to the first regulating circuit, and the first output node and the second output node are coupled to one or more loads.

8. The power converter of claim 1 , wherein in the first switching capacitor network, power is able to flow from the first input node to the first output node and from the first output node to the first input node.

9. The power converter of claim 8 , wherein in the second regulating circuit, power is able to flow from the second input node to the second output node and from the second output node to the second input node.

10. The power converter of claim 1 , wherein the second regulating circuit comprises a buck/boost converter or a buck converter.

11. The power converter of claim 1 , wherein the first switching capacitor network is a step-down series-parallel switched capacitor converter.

12. A power converter comprising:

a first switching capacitor network having a first input node and a first output node, the first switching capacitor network comprising a first capacitor and a plurality of switches coupled to the first capacitor, and configured to switch between configurations at one or more switching frequencies so as to convert a first voltage regulated by a first regulating circuit to a second voltage;

a second regulating circuit having a second input node and a second output node, the second regulating circuit being coupled to the first switching capacitor network and comprising one or more inductors and one or more switches connected to the one or more inductors, wherein the one or more switches are controllable to switch between configurations;

wherein in the first switching capacitor network, power is able to flow from the first input node to the first output node and from the first output node to the first input node.

13. The power converter of 12 , wherein in the second regulating circuit power is able to flow from the second input node to the second output node and from the second output node to the second input node.

14. The power converter of claim 12 , wherein the first switching capacitor network and the second regulating circuit form a regulation loop to regulate an output voltage outputted to one or more loads.

15. The power converter of claim 12 , wherein the first input node and the second input node are coupled to the first regulating circuit, and the first output node and the second output node are coupled to one or more loads.

16. The power converter of claim 12 , wherein the second regulating circuit comprises a buck/boost converter or a buck converter.

17. The power converter of claim 12 , wherein the first switching capacitor network is a switched capacitor converter with a conversion ratio of 2:1.

18. An apparatus, comprising:

a plurality of first switches to be coupled to a first capacitor to form a first switching capacitor network, the first switching capacitor network having a first input node and a first output node, and configured to switch between switch configurations at one or more switching frequencies so as to convert a first voltage regulated by a first regulating circuit to a second voltage to a load; and

one or more second switches to be coupled to one or more inductors to form a second regulating circuit, the second regulating circuit having a second input node and a second output node, and being coupled to the first switching capacitor network,

wherein the one or more second switches are controllable to switch between switch configurations;

wherein the first input node and the second input node are coupled to the first regulating circuit, and the first output node and the second output node are coupled to one or more loads.

19. The power converter of claim 18 , wherein the first switching capacitor network and the second regulating circuit form a regulation loop to regulate an output voltage outputted to the one or more loads.

20. The power converter of claim 18 , wherein the second regulating circuit comprises a buck/boost converter or a buck converter.

21. The power converter of claim 18 , wherein the first switching capacitor network is a step-down series-parallel switched capacitor converter.

22. The power converter of claim 18 , wherein the first switching capacitor network is a switched capacitor converter with a conversion ratio of 2:1.

23. The power converter of claim 18 , wherein the second regulating circuit and the first switching capacitor network operate at different switching frequencies.

24. The power converter of claim 18 , wherein the first regulating circuit is within an AC-DC converter circuit.

25. The power converter of claim 18 , wherein the first regulating circuit is an isolated converter circuit.

26. The power converter of claim 18 , wherein the first input node and the second input node are configured to receive the first voltage, and the first output node and the second output node are configured to provide power to the one or more loads.

Assignments (3)
CHANGE OF NAME Recorded Nov 14, 2023
From: PEREGRINE SEMICONDUCTOR CORPORATION
To: PSEMI CORPORATION
Reel/Frame 065564/0415 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2023
From: ARCTIC SAND TECHNOLOGIES, INC.
To: PEREGRINE SEMICONDUCTOR CORPORATION
Reel/Frame 065531/0255 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 7, 2023
From: GIULIANO, DAVID M.
To: ARCTIC SAND TECHNOLOGIES, INC.
Reel/Frame 065486/0111 →
Continuity (13)
Continuation 17456235 · Nov 23, 2021
Continuation 17187664 · Feb 26, 2021
Continuation 16931768 · Jul 17, 2020
Continuation 16444428 · Jun 18, 2019
Continuation 15618481 · Jun 9, 2017
Continuation 15138692 · Apr 26, 2016
Continuation 14513747 · Oct 14, 2014
Continuation 13771904 · Feb 20, 2013
Continuation PCTUS2012036455 · May 4, 2012
Provisional Application 61577271 · Dec 19, 2011
Provisional Application 61548360 · Oct 18, 2011
Provisional Application 61482838 · May 5, 2011
Related Publication 20230283175A1 · Sep 7, 2023
Cited By (1)
US 12,381,482