IP Library Granted Patent US 12,166,375
Granted Patent B2
US 12,166,375 · App. 18/069,522 · Granted Dec 10, 2024

Power supply with high and low power operating modes

Inventor: Zachary G. Stanke (Wausau, WI)
Assignee: Milwaukee Electric Tool Corporation
H02J9/06B25F5/00G06F1/263H02J7/0047H02J7/0063H02M1/0032H02M3/1566H02M3/1584H02J2207/20
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Quick Facts
Patent No.
US 12,166,375
App. No.
18/069,522
Granted
Dec 10, 2024
Kind
B2
Abstract

A method for controlling a battery-powered power supply. The method includes generating a first output from a first power supply within the battery-powered power supply. The first output is coupled to an output bus. The method further includes monitoring a voltage of the output bus, and determining, using a controller of the battery-powered power supply, whether the voltage of the output bus is less than a first predetermined level. The method further includes deactivating the first power supply in response to determining that the voltage of the output bus is below the first predetermined level, and generating a second output from a second power supply within the battery-powered power supply. The second output is configured to be coupled to the output bus. The second power supply has a higher output rating than the first power supply.

Claims (53)

1. A method for controlling a battery-powered power supply, the method comprising:

generating, using a first power supply electrically connected between an input terminal and an output bus, a first output with an output voltage at the output bus;

monitoring a voltage of the output bus;

deactivating the first power supply in response to the monitored voltage being below a first predetermined threshold; and

generating, using a second power supply electrically connected between the input terminal and the output bus, a second output with the output voltage at the output bus.

2. The method of claim 1 , further comprising:

monitoring a current of the output bus;

determining, via a controller of the battery-powered power supply, whether the current is less than a second predetermined threshold;

deactivating the second power supply in response to determining that the current is less than the second predetermined value; and

reactivating the first power supply.

3. The method of claim 1 , further comprising:

monitoring a current of an input to the battery-powered power supply;

determining, via a controller of the battery-powered power supply, whether the current is less than a second predetermined value; and

deactivating the second power supply in response to determining that the current is less than the second predetermined value; and

reactivating the first power supply.

4. The method of claim 1 , wherein the battery-powered power supply is powered by a rechargeable power tool battery pack.

5. The method of claim 1 , wherein the first power supply has a no-load current draw of 1 mA or less.

6. The method of claim 1 , wherein the first power supply has a maximum output current of at least 10 mA.

7. The method of claim 1 , wherein the second power supply has a maximum output current of at least 500 mA.

8. A battery-powered power supply comprising:

an input terminal configured to be connected to a battery pack;

a common output bus a voltage converter electrically connected between the input terminal and the common output bus, the voltage converter including:

a first power supply, and

a second power supply,

wherein the first power supply and the second power supply are configured to provide an output with an output voltage to the common output bus;

a voltage sensor coupled to the common output bus and configured to sense a voltage of the common output bus;

and

a controller configured to:

monitor, using the voltage sensor, a voltage of the output bus, and

deactivate the first power supply and activate the second power supply in response to determining that the voltage of the output bus is less than a predetermined voltage level,

wherein a first output voltage from the first power supply is substantially equal to a second output voltage from the second power supply.

9. The power supply of claim 8 , wherein the controller is further configured to:

determine, using a current sensor, whether the current though the output bus is less than a predetermined current level; and

deactivating the second power supply and activating the first power supply in response to determining that the current is less than the predetermined current level.

10. The power supply of claim 9 , wherein the predetermined current level is 10 mA.

11. The power supply of claim 8 , wherein the second power supply has a higher output power rating than the first power supply.

12. The power supply of claim 8 , wherein controller is further configured to monitor the voltage of the output bus during an activation period of the first power supply.

13. The power supply of claim 8 , wherein the first power supply has a no-load current draw of 1 mA or less.

14. The power supply of claim 8 , wherein the second power supply has a maximum output current of at least 500 mA.

15. A method for controlling a battery-powered power supply, the method comprising:

generating, using a first power supply within the battery-powered power supply, a first DC output, the first DC output being coupled to an output bus;

monitoring a power output at the output bus;

deactivating the first power supply in response to determining that the power output at the output bus is greater than a first predetermined level; and

generating, using a second power supply within the battery-powered power supply, a second DC output, the second DC output being coupled to the output bus,

wherein a first output voltage from the first power supply is substantially equal to a second output voltage from the second power supply.

16. The method of claim 15 , wherein the first predetermined level is at least 120 mW.

17. The method of claim 15 , wherein the first power supply has a maximum output current of at least 500 mA.

18. The method of claim 15 , wherein the second power supply has a maximum output current of at least 10 mA.

19. The method of claim 15 , wherein the battery-powered power supply is powered by a rechargeable power tool battery pack.

20. The method of claim 15 , further comprising:

determining, using a controller of the battery-powered power supply, whether the power output at the output bus is greater than the first predetermined level;

deactivating the second power supply in response to determining that the power output at the output bus is greater than the first predetermined level; and

reactivating the first power supply.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2022
From: STANKE, ZACHARY G.
To: MILWAUKEE ELECTRIC TOOL CORPORATION
Reel/Frame 062174/0858 →
Continuity (3)
Continuation 17337888 · Jun 3, 2021
Provisional Application 63034715 · Jun 4, 2020
Related Publication 20230123653A1 · Apr 20, 2023
Cited By (1)
US 12,365,693