IP Library Granted Patent US 10,476,393
Granted Patent B2
US 10,476,393 · App. 15/351,645 · Granted Nov 12, 2019

Modifiable DC-DC power converters for providing different output voltages

Inventor: James Sigamani (Pasig, PH)
Assignee: Astec International Limited
H02M3/28H01F38/00
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Quick Facts
Patent No.
US 10,476,393
App. No.
15/351,645
Granted
Nov 12, 2019
Kind
B2
Abstract

A DC-DC power converter kit includes a body, a plurality of input connectors, and a plurality of output connectors. The body includes a plurality of inputs configured to couple to one another to form a power converter input, a plurality of outputs configured to couple to one another to form a power converter output, and a plurality of transformers. The power converter output is configured to provide a first output voltage when using a first set of the input connectors and a first output connector, and the power converter output is configured to provide a second output voltage different than the first output voltage when using a second set of the input connectors and a second output connector. Additional example power converter kits, power converters, and methods for adjusting an output voltage are also disclosed.

Claims (25)

1. A DC-DC power converter kit comprising:

a body including a plurality of DC inputs configured to couple to one another to form a power converter input, a plurality of outputs configured to couple to one another to form a power converter output, and a plurality of transformers, each transformer including two or more primary windings for coupling to one DC input of the plurality of DC inputs and at least one secondary winding for coupling to one output of the plurality of outputs;

a plurality of input connectors each configured to directly connect between the two or more primary windings of said each transformer and connect the plurality of DC inputs for providing DC power from the plurality of DC inputs to said each transformer, the plurality of input connectors each configured to change at least one of a connection between each of the two or more primary windings to adjust a turns ratio of said each transformer and a connection between the plurality of DC inputs; and

a plurality of output connectors each configured to connect between the plurality of transformers and the plurality of outputs to change a connection between the plurality of outputs;

the power converter output providing a first output voltage when using a first set of the plurality of input connectors and a first output connector of the plurality of output connectors, and the power converter output providing a second output voltage different than the first output voltage when using a second set of the plurality of input connectors and a second output connector of the plurality of output connectors;

wherein when the connection between the plurality of DC inputs is a parallel connection, the connection between the plurality of outputs is a series connection, and wherein when the connection between the plurality of DC inputs is a series connection, the connection between the plurality of outputs is a parallel connection.

2. The DC-DC power converter kit of claim 1 wherein the power converter output is configured to provide the first output voltage or the second output voltage without changing an output power at the power converter output.

3. The DC-DC power converter kit of claim 1 wherein the plurality of transformers includes four transformers.

4. The DC-DC power converter kit of claim 1 wherein the plurality of input connectors are each configured to change the connection between said each of the two or more primary windings to adjust a turns ratio of said each transformer.

5. The DC-DC power converter kit of claim 1 wherein the plurality of input connectors are each configured to change the connection between said each of the two or more primary windings to adjust a turns ratio of said each transformer and the connection between the plurality of DC inputs.

6. The DC-DC power converter kit of claim 1 wherein the connection between said each of the two or more primary windings includes a parallel connection.

7. The DC-DC power converter kit of claim 1 wherein the connection between said each of the two or more primary windings includes a series connection.

8. The DC-DC power converter kit of claim 1 wherein the connection between said each of the two or more primary windings includes a combination of a series and a parallel connection.

9. The DC-DC power converter kit of claim 8 wherein said each transformer includes four primary windings.

10. The DC-DC power converter kit of claim 1 wherein the body includes a plurality of rectification circuits each coupled to the at least one secondary winding of said each transformer.

11. The DC-DC power converter kit of claim 1 wherein the body includes a plurality of filters each coupled to the at least one secondary winding of said each transformer.

12. The DC-DC power converter kit of claim 1 wherein the body includes a switching circuit coupled to the plurality of DC inputs.

13. The DC-DC power converter kit of claim 12 wherein the switching circuit includes a full bridge converter.

14. The DC-DC power converter kit of claim 12 wherein the switching circuit includes a resonant converter.

15. The DC-DC power converter kit of claim 1 wherein the first set of the input connectors are positioned on one or more circuit boards.

16. The DC-DC power converter kit of claim 1 wherein the first output connector is formed by one or more bus bars.

17. A method for adjusting an output voltage of a DC-DC power converter including a plurality of DC inputs configured to couple to one another to form a power converter input, a plurality of outputs configured to couple to one another to form a power converter output, and a plurality of transformers, each transformer including two or more primary windings for coupling to one input of the plurality of DC inputs and at least one secondary winding for coupling to one output of the plurality of outputs, the method comprising:

directly connecting a first set of a plurality of input connectors between the two or more primary windings of said each transformer, connecting the first set of the plurality of input connectors between the plurality of DC inputs for providing DC power from the plurality of DC inputs to said each transformer, and connecting an output connector of a plurality of output connectors between the plurality of transformers and the plurality of outputs to provide at the power converter output a first output voltage; and

directly connecting a second set of the plurality of input connectors between the two or more primary windings of said each transformer, connecting the second set of the plurality of input connectors between the plurality of DC inputs for providing DC power from the plurality of DC inputs to said each transformer, and connecting another output connector of the plurality of output connectors between the plurality of transformers and the plurality of outputs to provide at the power converter output a second output voltage different than the first output voltage;

wherein the input connectors are each configured to change at least one of a connection between each of the two or more primary windings to adjust a turns ratio of said each transformer and a connection between the plurality of DC inputs, wherein the output connectors are each configured to change a connection between the plurality of outputs, wherein when the connection between the plurality of DC inputs is a parallel connection, the connection between the plurality of outputs is a series connection, and wherein when the connection between the plurality of DC inputs is a series connection, the connection between the plurality of outputs is a parallel connection.

Assignments (2)
CONFIRMATORY PATENT ASSIGNMENT Recorded Mar 5, 2025
From: ASTEC INTERNATIONAL LIMITED
To: AES GLOBAL HOLDINGS PTE. LTD.
Reel/Frame 070404/0890 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 22, 2016
From: SIGAMANI, JAMES
To: ASTEC INTERNATIONAL LIMITED
Reel/Frame 040398/0676 →
Continuity (2)
Provisional Application 62261731 · Dec 1, 2015
Related Publication 20170155332A1 · Jun 1, 2017