IP Library Granted Patent US 12,738,835
Granted Patent B2
US 12,738,835 · App. 18/762,486 · Granted Sep 15, 2026

Method for implementing a full input source power input control function on multiple power inputs to a single LLC converter in a distribution system

Inventors: Alex Gomes (Chicago, IL); Joshua C. Swenson (Rockford, IL)
Assignee: Hamilton Sundstrand Corporation
H02M1/325H02M1/36H02M3/01H02M3/33523H02M3/33571H02M3/33573
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Quick Facts
Patent No.
US 12,738,835
App. No.
18/762,486
Granted
Sep 15, 2026
Kind
B2
Abstract

A power SS circuit includes N power input circuits, an output node configured to connect to an input node of voltage-fed power converter, and a control interface that receives control signals for controlling operational/non-operational states switches within the power input circuits. The power input circuits include N input nodes connected to N power sources, respectively. Each respective power input circuit includes: a SS capacitor including a first terminal connected to ground; an SS switch including a first terminal as a respective input node among the input nodes and configured to connect a second terminal of the SS capacitor to the respective input node in the operational state; and a voltage-fed converter switch including a first terminal connected to a second terminal of the SS switch and configured to connect the second terminal of the SS capacitor to the output node of power SS circuit in the operational state.

Claims (93)

1 . A power source-selection circuit comprising:

N power input circuits comprising N input nodes configured to connect to N power sources, respectively;

an output node configured to connect to an input node of a voltage-fed power converter; and

a control interface configured to receive at least one control signal from a control circuit for controlling operational/non-operational states of a plurality of switches within the N power input circuits,

wherein, among the N power input circuits, each respective power input circuit includes:

a source-selection capacitor including a first terminal configured to connect to a ground node of the power converter;

a power source-selection switch including a first terminal as a respective input node among the N input nodes and configured to connect a second terminal of the source-selection capacitor to the respective input node in the operational state of the power source-selection switch; and

a voltage-fed converter switch including a first terminal connected to a second terminal of the power source-selection switch and configured to connect the second terminal of the source-selection capacitor to the output node of the power source-selection circuit in the operational state of the voltage-fed converter switch; and

wherein the plurality of switches includes the power source-selection switch and the voltage-fed converter switch of the respective power input circuit.

2 . The power source-selection circuit of claim 1 , wherein:

the N power input circuits comprise a first power input circuit and a second power input circuit;

the input node of the first power input circuit is configured to connect to a first power source; and

the input node of the second power input circuit is configured to connect to a second power source.

3 . The power source-selection circuit of claim 2 , wherein:

in response to receiving the at least one control signal from the control circuit, the first power input circuit is configured to conduct electric energy received from the first power source to the output node of the power source-selection circuit, and the second power input circuit is configured to block electrical energy applied to the input node of the second power input circuit; and

the at least one control signal includes:

a first control signal for setting the power source-selection switch and the voltage-fed converter switch of the first power input circuit to the operational state; and

a second control signal for setting the power source-selection switch and the voltage-fed converter switch of the second power input circuit to the non-operational state.

4 . The power source-selection circuit of claim 2 , wherein:

in response to receiving the at least one control signal from the control circuit, the second power input circuit is configured to conduct electric energy received from the second power source to the output node of the power source-selection circuit, and the first power input circuit is configured to block electrical energy applied to the input node of the first power input circuit; and

the at least one control signal includes:

a first control signal for setting the power source-selection switch and the voltage-fed converter switch of the first power input circuit to the non-operational state; and

a second control signal for setting the power source-selection switch and the voltage-fed converter switch of the second power input circuit to the operational state.

5 . The power source-selection circuit of claim 1 , wherein:

N is greater than two;

the N power input circuits comprise a selected power input circuit and N−1 non-selected power input circuits;

the at least one control signal includes:

a first control signal for setting the power source-selection switch and the voltage-fed converter switch of the selected power input circuit to the operational state; and

a second control signal for setting the power source-selection switch and the voltage-fed converter switch of the non-selected power input circuits to the non-operational state; and

in response to receiving the at least one control signal from the control circuit, the selected power input circuit is configured to conduct electric energy received at the input node of the selected power input circuit to the output node of the power source-selection circuit, and the non-selected power input circuits are configured to block electrical energy applied to the input nodes of the non-selected power input circuits.

6 . The power source-selection circuit of claim 1 , wherein, within each respective power input circuit, an area that the power source-selection switch occupies is larger than an area that the voltage-fed converter switch occupies.

7 . The power source-selection circuit of claim 1 , wherein, within each respective power input circuit, an area that the power source-selection switch occupies is larger than a combined area that the voltage-fed converter switch and the source-selection capacitor occupy.

8 . The power source-selection circuit of claim 1 , wherein, within each respective power input circuit, a switching speed at which the voltage-fed converter switch operates is faster than a switching speed at which the power source-selection switch operates.

9 . An electronic device comprising:

a voltage-fed power converter including an input node, a ground node, and a first switch configured to connect the input node to the ground node in an operational state of the first switch; and

a power source-selection circuit comprising:

N power input circuits comprising N input nodes configured to connect to N power sources, respectively;

an output node configured to connect to the input node of the power converter; and

a control interface configured to receive at least one control signal from a control circuit for controlling operational/non-operational states of a plurality of switches within the N power input circuits,

wherein among the N power input circuits, each respective power input circuit includes:

a source-selection capacitor including a first terminal configured to connect to the ground node of the power converter;

a power source-selection switch including a first terminal as a respective input node among the N input nodes and configured to connect a second terminal of the source-selection capacitor to the respective input node in the operational state of the power source-selection switch; and

a voltage-fed converter switch including a first terminal connected to a second terminal of the power source-selection switch and configured to connect the second terminal of the source-selection capacitor to the output node of the power source-selection circuit in the operational state of the voltage-fed converter switch; and

wherein the plurality of switches includes the power source-selection switch and the voltage-fed converter switch of the respective power input circuit.

10 . The electronic device of claim 9 , wherein:

the N power input circuits comprise a first power input circuit and a second power input circuit;

the input node of the first power input circuit is configured to connect to a first power source; and

the input node of the second power input circuit is configured to connect to a second power source.

11 . The electronic device of claim 10 , wherein:

in response to receiving the at least one control signal from the control circuit, the first power input circuit is configured to conduct electric energy received from the first power source to the output node of the power source-selection circuit, and the second power input circuit is configured to block electrical energy applied to the input node of the second power input circuit; and

the at least one control signal includes:

a first control signal for setting the power source-selection switch and the voltage-fed converter switch of the first power input circuit to the operational state; and

a second control signal for setting the power source-selection switch and the voltage-fed converter switch of the second power input circuit to the non-operational state.

12 . The electronic device of claim 10 , wherein:

in response to receiving the at least one control signal from the control circuit, the second power input circuit is configured to conduct electric energy received from the second power source to the output node of the power source-selection circuit, and the first power input circuit is configured to block electrical energy applied to the input node of the first power input circuit; and

the at least one control signal includes:

a first control signal for setting the power source-selection switch and the voltage-fed converter switch of the first power input circuit to the non-operational state; and

a second control signal for setting the power source-selection switch and the voltage-fed converter switch of the second power input circuit to the operational state.

13 . The electronic device of claim 9 , wherein:

N is greater than two;

the N power input circuits comprise a selected power input circuit and N−1 non-selected power input circuits;

the at least one control signal includes:

a first control signal for setting the power source-selection switch and the voltage-fed converter switch of the selected power input circuit to the operational state; and

a second control signal for setting the power source-selection switch and the voltage-fed converter switch of the non-selected power input circuits to the non-operational state; and

in response to receiving the at least one control signal from the control circuit, the selected power input circuit is configured to conduct electric energy received at the input node of the selected power input circuit to the output node of the power source-selection circuit, and the non-selected power input circuits are configured to block electrical energy applied to the input nodes of the non-selected power input circuits.

14 . The electronic device of claim 9 , wherein within each respective power input circuit, an area that the power source-selection switch occupies is larger than an area that the voltage-fed converter switch occupies.

15 . The electronic device of claim 9 , wherein within each respective power input circuit, an area that the power source-selection switch occupies is larger than a combined area that the voltage-fed converter switch and the source-selection capacitor occupy.

16 . The electronic device of claim 9 , wherein within each respective power input circuit, a switching speed at which the voltage-fed converter switch operates is faster than a switching speed at which the power source-selection switch operates.

17 . The electronic device of claim 9 , wherein the power converter further includes:

a resonant tank that includes a resonant tank inductor, a magnetizing inductor, and a resonant tank capacitor;

a transformer with a rectifier; and

an output capacitor.

18 . A system comprising:

a power source-selection circuit that comprises:

N power input circuits comprising N input nodes configured to connect to N power sources, respectively;

an output node configured to connect to an input node of a voltage-fed power converter; and

a control interface configured to receive at least one control signal from a control circuit for controlling operational/non-operational states of a plurality of switches within the N power input circuits,

wherein among the N power input circuits, each respective power input circuit includes:

a source-selection capacitor including a first terminal configured to connect to a ground node of the power converter;

a power source-selection switch including a first terminal as a respective input node among the N input nodes and configured to connect a second terminal of the source-selection capacitor to the respective input node in the operational state of the power source-selection switch; and

a voltage-fed converter switch including a first terminal connected to a second terminal of the power source-selection switch and configured to connect the second terminal of the source-selection capacitor to the output node of the power source-selection circuit in the operational state of the voltage-fed converter switch; and

wherein the plurality of switches includes the power source-selection switch and the voltage-fed converter switch of the respective power input circuit; and

the control circuit configured to output the at least one control signal to the control interface.

19 . The system of claim 18 , wherein:

N is greater than two;

the N power input circuits comprise a selected power input circuit and N−1 non-selected power input circuits;

the at least one control signal includes:

a first control signal for setting the power source-selection switch and the voltage-fed converter switch of the selected power input circuit to the operational state; and

a second control signal for setting the power source-selection switch and the voltage-fed converter switch of the non-selected power input circuits to the non-operational state; and

in response to receiving the at least one control signal from the control circuit, the selected power input circuit is configured to conduct electric energy received at the input node of the selected power input circuit to the output node of the power source-selection circuit, and the non-selected power input circuits are configured to block electrical energy applied to the input nodes of the non-selected power input circuits.

20 . The system of claim 19 , wherein, within each respective power input circuit:

an area that the power source-selection switch occupies is larger than a combined area that the voltage-fed converter switch and the source-selection capacitor occupy; and

a switching speed at which the voltage-fed converter switch operates is faster than a switching speed at which the power source-selection switch operates.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 3, 2024
From: GOMES, ALEX; SWENSON, JOSHUA C.
To: HAMILTON SUNDSTRAND CORPORATION
Reel/Frame 067911/0456 →
Continuity (1)
Related Publication 20260012098A1 · Jan 8, 2026
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