IP Library Granted Patent US 11,569,667
Granted Patent B2
US 11,569,667 · App. 17/671,184 · Granted Jan 31, 2023

Power managers and methods for operating power managers

Inventors: Philip T. Robinson (Harvard, MA); Seth M. Dziengeleski (Southbridge, MA); James D. Kazmierczak (Marlborough, MA); David J. Holigan (Atkinson, NH)
Assignee: GALVION SOLDIER POWER, LLC
H02J7/00047G06F1/263G06F1/266G06F1/3287H02J4/00H02J5/00H02J7/0013H02J7/00036H02J7/0048H02J7/0068H02J7/02H02M3/04H02M5/04H02M7/04G06F13/4022H02J7/00045H02J2310/22Y02D10/00
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Quick Facts
Patent No.
US 11,569,667
App. No.
17/671,184
Granted
Jan 31, 2023
Kind
B2
Abstract

Various aspects of invention provide portable power manager operating methods. One aspect of the invention provides a method for operating a power manager having a plurality of device ports for connecting with external power devices and a power bus for connecting with each device port. The method includes: disconnecting each device port from the power bus when no external power device is connected to the device port; accessing information from newly connected external power devices; determining if the newly connected external power devices can be connected to the power bus without power conversion; if not, determining if the newly connected external power devices can be connected to the power bus over an available power converter; and if so, configuring the available power converter for suitable power conversion.

Claims (35)

1. A power manager comprising:

a power bus operable at a DC bus voltage;

a plurality of device ports operably connectable to the power bus, wherein the device ports include a first port on a first surface for connecting with a radio, a second port on a second surface for connecting with a rechargeable battery, and a third port on a third surface for connecting with an external power source;

a processor configured to determine for each of the device ports if an external device is connected to the device port and if so, to determine a power type of the external device; and

wherein for each of the plurality of device ports, a switch controllable by the processor is disposed in a channel between the device port and the power bus.

2. The power manager of claim 1 , further comprising a device for controlling current in the channel between the second port and the power bus.

3. The power manager of claim 1 , further comprising a DC-to-DC power converter in the channel between the third port and the power bus.

4. The power manager of claim 1 , wherein the first surface is parallel to and opposed the second surface and the third surface is disposed between the first surface and the second surface.

5. A method comprising:

providing a power manager comprising a processor, a power bus and a plurality of device ports operably connectable to the power bus, wherein the device ports include a first port on a first surface for connecting with a radio, a second port on a second surface for connecting with a rechargeable battery, and a third port on a third surface for connecting with an external power source, and wherein the processor is operative to enable steps comprising:

disconnecting each of the device ports from the power bus when no external power device is connected to the device port by operating a different controllable switch to interrupt each channel disposed between the device port and the power bus;

accessing information from a newly connected radio;

accessing information from a newly connected power supply device;

determining if the newly connected power supply device can be connected to the power bus without power conversion;

if not, determining if the newly connected power supply device can be connected to the power bus over an available power converter;

if so, configuring the available power converter for power conversion; and

connecting selected external devices to the power bus by operating a different controllable switch to complete each channel disposed between the device ports associated with the selected external devices and the power bus.

6. The method of claim 5 , wherein the processor further enables steps comprising:

providing power to the newly connected radio; and

connecting a rechargeable energy source to the power bus for recharging.

7. The method of claim 5 , wherein the processor further enables steps comprising accessing information from a newly connected rechargeable battery.

8. The method of claim 7 , wherein determining if the newly connected power supply device can be connected to the power bus without power conversion comprises determining if the newly connected power supply has an operating voltage that is compatible with an operating voltage of the rechargeable battery.

9. The method of claim 8 , wherein determining if the newly connected power supply device can be connected to the power bus without power conversion comprises determining that the newly connected power supply has an operating voltage that is not compatible with an operating voltage of the rechargeable battery; and

wherein configuring the available power converter for power conversion comprises configuring the available power converter to convert a voltage of a power signal received from the power supply to a DC bus voltage that is compatible with the operating voltage of the rechargeable battery.

10. A power manager device comprising:

a first surface, a second surface opposing the first surface, and a plurality of third surfaces disposed between the first surface and the second surface;

a power bus operable at a DC power bus voltage;

a radio device port for connecting with a radio disposed on the first surface;

a battery device port for connecting with a rechargeable battery disposed on the second surface;

a power device port for connecting with a power device disposed on at least one of the plurality of third surfaces;

a first controllable DC to DC power converter disposed between the power device port and each of the radio device port and the battery device port; and

a processor configured to determine an operating voltage of a power device connected to the power device port and to configure the first DC to DC power converter to convert a voltage of a power signal received from the power device to a voltage that is compatible with an operating voltage of a rechargeable battery connected to the battery device port.

11. The power manager of claim 10 , wherein the first DC to DC power converter is disposed between the power device port and the DC power bus.

12. The power manager of claim 11 , further comprising a second controllable DC to DC power converter disposed between the power bus and the battery device port wherein:

the processor is configured to configure the second power converter to modulate a current of a power signal provided to the rechargeable battery connected to the battery device port.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 13, 2025
From: GALVION SOLDIER POWER, LLC
To: GALVION LTD.
Reel/Frame 072888/0099 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2022
From: ROBINSON, PHILIP T.; DZIENGELESKI, SETH M.; KAZMIERCZAK, JAMES D.; HOLIGAN, DAVID J.
To: PROTONEX TECHNOLOGY CORPORATION
Reel/Frame 061317/0057 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 5, 2022
From: PROTONEX TECHNOLOGY CORPORATION
To: REVISION MILITARY SOLDIER POWER, LLC
Reel/Frame 061317/0167 →
CHANGE OF NAME Recorded Oct 5, 2022
From: REVISION MILITARY SOLDIER POWER, LLC
To: GALVION SOLDIER POWER, LLC
Reel/Frame 061317/0263 →
Continuity (8)
Continuation 16406750 · May 8, 2019
Continuation 15463525 · Mar 20, 2017
Continuation 14109156 · Dec 17, 2013
Continuation 13620086 · Sep 14, 2012
Continuation 12816080 · Jun 15, 2010
Provisional Application 61283536 · Dec 4, 2009
Provisional Application 61270602 · Jul 10, 2009
Related Publication 20220166225A1 · May 26, 2022
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