IP Library Patent Application 14242307
Patent Application
App. No. 14/242,307

NON-RESONANT ZERO CURRENT MULTIPLE-OUTPUT POWER CONVERTER

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Quick Facts
Patent No.
US None
App. No.
14/242,307
Abstract

Various exemplary embodiments relate to a power conversion device, including an input configured to receive input power, a first-stage circuit connected to the input configured to provide galvanic isolation between the input and a second-stage circuit, wherein the first-stage circuit comprises at least one first-stage power conversion unit, each first-stage power conversion unit including at least two primary switches, at least two secondary transistor switches, and an isolation transformer including a primary winding and a secondary winding, the second-stage circuit connected to an output of the first-stage circuit, the second-stage circuit comprising at least one second-stage power conversion unit configured to regulate the voltage to at least one output connected to a load, each at least one second-stage power conversion unit comprising a controller, a master circuit connected to the at least one controller, the master circuit configured to synchronize switching in the at least one second-stage power conversion unit, and where the master circuit is configured to drive the primary switches and the secondary transistor switches in the at least one first-stage power conversion unit.

Claims (44)

1 . A power conversion device, comprising:

an input configured to receive input power;

a first-stage circuit connected to the input configured to provide galvanic isolation between the input and a second-stage circuit, wherein the first-stage circuit comprises

at least one first-stage power conversion unit, each first-stage power conversion unit comprising at least two primary switches, at least two secondary diode switches, and an isolation transformer comprising

a primary winding, and

a secondary winding;

the second-stage circuit connected to an output of the first-stage circuit, the second-stage circuit comprising at least one second-stage power conversion unit configured to regulate the voltage to at least one output connected to a load, each at least one second-stage power conversion unit comprising a controller;

a master circuit connected to the at least one controller, the master circuit configured to synchronize switching in the at least one second-stage power conversion unit; and

wherein the master circuit is configured to drive the primary switches in the at least one first-stage power conversion unit.

2 . The power conversion device of claim 1 , wherein each of the at least one second-stage power conversion unit is one of the group consisting of a buck converter and a boost converter.

3 . The power conversion device of claim 1 , wherein each of the at least one first-stage power conversion unit is one of the group consisting of a push-pull converter, full-bridge converter, and a half-bridge converter.

4 . The power conversion device of claim 1 , wherein the master circuit is configured to switch the second-stage power conversion units such that the first-stage load current is an essentially continuous waveform having a period.

5 . The power conversion device of claim 1 , wherein the master circuit is configured to switch the second-stage power conversion units such that the first-stage load current includes intervals where the load current is essentially zero.

6 . The power conversion device of claim 1 , wherein the master circuit is configured to switch the second-stage power conversion units such that the first-stage load current includes intervals of substantial length where the first-stage load current is essentially zero.

7 . The power conversion device of claim 1 , wherein the master circuit is ground referenced to a primary side or a secondary side of the power conversion device.

8 . The power conversion device of claim 1 , wherein the isolation transformer provides a step up or step down function.

9 . A power conversion device, comprising:

an input configured to receive input power;

a first-stage circuit connected to the input configured to provide galvanic isolation between the input and a second-stage circuit, wherein the first-stage circuit comprises

at least one first-stage power conversion unit, each first-stage power conversion unit comprising at least two primary switches, at least two secondary transistor switches, and an isolation transformer comprising

a primary winding, and

a secondary winding;

the second-stage circuit connected to an output of the first-stage circuit, the second-stage circuit comprising at least one second-stage power conversion unit configured to regulate the voltage to at least one output connected to a load, each at least one second-stage power conversion unit comprising a controller;

a master circuit connected to the at least one controller, the master circuit configured to synchronize switching in the at least one second-stage power conversion unit; and

wherein the master circuit is configured to drive the primary switches and the secondary transistor switches in the at least one first-stage power conversion unit.

10 . The power conversion device of claim 9 , wherein each of the at least one second-stage power conversion unit is one of the group consisting of a buck converter and a boost converter.

11 . The power conversion device of claim 9 , wherein each of the at least one first-stage power conversion unit is one of the group consisting of a push-pull converter, full-bridge converter, and a half-bridge converter.

12 . The power conversion device of claim 9 , wherein the master circuit is configured to switch the second-stage power conversion units such that the first-stage load current is an essentially continuous waveform having a period.

13 . The power conversion device of claim 9 , wherein the master circuit is configured to switch the second-stage power conversion units such that the first-stage load current includes intervals where the load current is essentially zero.

14 . The power conversion device of claim 9 , wherein the master circuit is configured to switch the second-stage power conversion units such that the first-stage load current includes intervals of substantial length where the first-stage load current is essentially zero.

15 . A power conversion device, comprising:

an input configured to receive input power;

a first-stage circuit connected to the input configured to provide galvanic isolation between the input and a second-stage circuit, wherein the first-stage circuit comprises

at least one first-stage power conversion unit, each first-stage power conversion unit comprising at least two primary switches, at least two secondary diode switches, and an isolation transformer comprising

a primary winding, and

a secondary winding;

the second-stage circuit connected to an output of the first-stage circuit, the second-stage circuit comprising at least one second-stage power conversion unit;

a master circuit connected to the at least one second-stage power conversion unit, the master circuit configured to drive the second-stage switches and regulate the output of the at least one second-stage power conversion unit; and

wherein the master circuit is configured to drive the primary switches in the at least one first-stage power conversion unit.

16 . The power conversion device of claim 15 , wherein each of the at least one second-stage power conversion unit is one of the group consisting of a buck converter and a boost converter.

17 . The power conversion device of claim 15 , wherein each of the at least one first-stage power conversion unit is one of the group consisting of a push-pull converter, full-bridge converter, and a half-bridge converter.

18 . The power conversion device of claim 15 , wherein the master circuit is configured to switch the second-stage power conversion units such that the first-stage load current is an essentially continuous waveform having a period.

19 . The power conversion device of claim 15 , wherein the master circuit is configured to switch the second-stage power conversion units such that the first-stage load current includes intervals where the load current is essentially zero.

20 . The power conversion device of claim 15 , wherein the master circuit is configured to switch the second-stage power conversion units such that the first-stage load current includes intervals of substantial length where the first-stage load current is essentially zero.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Aug 28, 2014
From: CREDIT SUISSE AG
To: ALCATEL-LUCENT CANADA INC.
Reel/Frame 033655/0425 →
SECURITY INTEREST Recorded Aug 7, 2014
From: ALCATEL-LUCENT CANADA INC.
To: CREDIT SUISSE AG
Reel/Frame 033500/0326 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 1, 2014
From: PLESNIK, MARTIN
To: ALCATEL LUCENT CANADA, INC.
Reel/Frame 032575/0231 →