IP Library Granted Patent US 12700626
Granted Patent B2
US 12700626 · App. 18/738,576 · Granted Aug 4, 2026

Inductive heating of batteries for charging

Inventors: Randolph H. McHugh (Sullivan, WI); Gareth Mueckl (Milwaukee, WI); Tauhira Hoossainy (Milwaukee, WI)
Assignee: Milwaukee Electric Tool Corporation
H01M10/615H01M10/486H01M10/6235H01M10/657H02J7/70H05B6/04H05B6/06H05B6/44H01M50/213H01M2220/30
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Quick Facts
Patent No.
US 12700626
App. No.
18/738,576
Granted
Aug 4, 2026
Kind
B2
Abstract

A battery pack charger configured to heat a power tool battery pack, the battery pack charger comprising a housing, an adapter portion integrated with the housing of the battery pack charger, the adapter portion configured to mechanically and electrically connect to the power tool battery pack, and an inductive heater including a coil portion, the coil portion including a coil housing and one or more inductive coil windings, the inductive heater configured to generate an electromagnetic field to heat the power tool battery pack.

Claims (42)

1 . A battery pack charger configured to heat a power tool battery pack, the battery pack charger comprising:

a housing;

an adapter portion including a battery pack interface; and

an inductive heater including a coil portion configured to encompass the power tool battery pack, the coil portion including a coil housing and an inductive coil winding, the inductive heater configured to generate an electromagnetic field to heat the power tool battery pack.

2 . The battery pack charger of claim 1 , wherein the adapter portion is pivotable relative to the coil portion between an open position and a closed position.

3 . The battery pack charger of claim 2 , wherein, when the coil portion is in the open position, the adapter portion is exposed, and a battery pack can engage the adapter portion.

4 . The battery pack charger of claim 3 , wherein, when the coil portion is in the closed position, the battery pack is prevented from engaging or disengaging the adapter portion.

5 . The battery pack charger of claim 4 , further comprising:

a first stop assembly configured to limit a movement of the coil portion relative to the adapter portion in an opening direction.

6 . The battery pack charger of claim 5 , further comprising:

a second stop assembly configured to limit a movement of the coil portion relative to the adapter portion in a closing direction.

7 . The battery pack charger of claim 1 , further comprising:

a second inductive heater.

8 . A battery pack enclosure, the battery pack enclosure comprising:

a lower housing portion;

an upper housing portion pivotably connected to a lower housing portion;

an adapter portion including a battery pack interface; and

an inductive heater including a coil portion, the coil portion including a coil housing and an inductive coil winding, the inductive heater configured to generate an electromagnetic field to heat a battery pack.

9 . The battery pack enclosure of claim 8 , wherein the coil portion defines a receptacle within the battery pack enclosure.

10 . The battery pack enclosure of claim 8 , further comprising:

a power supply; and

a power input terminal connected to the power supply, the power supply configured to supply power to the inductive heater.

11 . The battery pack enclosure of claim 10 , wherein the power input terminal includes an alternating current (“AC”) power input terminal.

12 . The battery pack enclosure of claim 10 , wherein the power input terminal includes a direct current (“DC”) power input terminal including a power input battery pack interface.

13 . The battery pack enclosure of claim 10 , wherein the upper housing portion includes a plurality connection recesses including retaining features configured to receive and retain a portion of a complementary interface.

14 . A battery pack enclosure, the battery pack enclosure comprising:

a lower housing portion;

an upper housing portion pivotably connected to the lower housing portion;

a first adapter portion including a first battery pack interface;

a second adapter portion including a second battery pack interface;

a first inductive heater configured to generate an electromagnetic field to heat a first battery pack;

a second inductive heater configured to generate an electromagnetic field to heat a second battery pack; and

an ambient temperature sensor configured to receive a first temperature signal associated with the first battery pack and a second temperature signal associated with the second battery pack.

15 . The battery pack enclosure of claim 14 , further comprising:

a controller configured to control the first inductive heater and the second inductive heater to heat the first battery pack and the second battery pack, respectively, based on the first temperature signal and the second temperature signal.

16 . The battery pack enclosure of claim 15 , wherein a coil portion of the first inductive heater defines a receptacle within the battery pack enclosure.

17 . The battery pack enclosure of claim 15 , further comprising:

a power supply; and

a power input terminal connected to the power supply, the power supply configured to supply current to the first inductive heater.

18 . The battery pack enclosure of claim 17 , wherein the power input terminal includes an alternating current (“AC”) power input terminal.

19 . The battery pack enclosure of claim 17 , wherein the power input terminal includes a direct current (“DC”) power input terminal including a power input battery pack interface.

20 . The battery pack enclosure of claim 17 , wherein the upper housing portion includes a plurality connection recesses including retaining features configured to receive and retain a portion of a complementary interface.