IP Library › Granted Patent US 12,733,682
Granted Patent B2
US 12,733,682 · App. 18/295,038 · Granted Sep 15, 2026

Electronic vaping device, battery section, and charger

Inventors: Charles Dendy (Ruther Glen, VA); Phillip Diana (Richmond, VA); Isaac Weigensberg (Richmond, VA); Kai Cao (Somerville, MA); Patrick J. Cobler (Andover, MA); Paul Butler (Methuen, MA)
Assignee: Altria Client Services LLC
A24F40/50A24F40/90G01R31/389H01M10/46H01M10/48H01M50/213H02J7/00H02J7/70H02J7/82H05B1/0244H01M2220/30H05B2203/021
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Quick Facts
Patent No.
US 12,733,682
App. No.
18/295,038
Granted
Sep 15, 2026
Kind
B2
Abstract

A battery section of an electronic vaping device may include a housing extending in a longitudinal direction, the housing having a first end and a second end, a power supply in the housing, a control circuit in the housing, and a conductive contact assembly at the second end of the housing, the contact assembly electrically connecting the power supply and the control circuit. The contact assembly is configured to receive external power and at least one command.

Claims (62)

1 . A battery section of an electronic vaping device, the battery section comprising:

a power supply;

a control circuit; and

a conductive contact assembly at an end of the battery section, the conductive contact assembly electrically connecting the power supply and the control circuit, and the conductive contact assembly being configured to receive external power and to receive a touch input command, wherein

the conductive contact assembly includes a first contact and a second contact, and

the second contact is insulated from a conductive portion of the first contact.

2 . The battery section of claim 1 , wherein

the first contact is arranged at the end of the battery section,

the first contact includes the conductive portion and a non-conductive portion,

the conductive portion extends transverse to a longitudinal axis of the battery section,

the non-conductive portion extends about a perimeter of the conductive portion,

the second contact extends about a perimeter of the first contact, and

the second contact at least partially overlaps the non-conductive portion.

3 . The battery section of claim 1 , wherein

the first contact is configured as a charge anode when the external power is received by the conductive contact assembly;

the second contact is configured as a charge cathode when the external power is received by the conductive contact assembly; and

the control circuit includes a switch configured to electrically separate the charge cathode from a common ground plane.

4 . The battery section of claim 1 , wherein

the first contact includes the conductive portion and a non-conductive portion, and

the second contact is insulated from the conductive portion by the non-conductive portion.

5 . The battery section of claim 4 , wherein the second contact extends about a perimeter of the non-conductive portion.

6 . The battery section of claim 1 , wherein the conductive contact assembly comprises:

an end cap housing including at least one slot, the end cap housing configured to hold the first contact.

7 . The battery section of claim 6 , wherein

the conductive contact assembly includes at least one tab extending along a longitudinal axis of the battery section, the at least one tab configured to engage with the at least one slot.

8 . The battery section of claim 1 , wherein at least a portion of the conductive contact assembly is magnetic.

9 . The battery section of claim 1 , wherein, based on an operating mode of the control circuit, the control circuit is configured to either (i) charge the power supply through the conductive contact assembly or (ii) monitor the conductive contact assembly for the touch input command.

10 . The battery section of claim 1 , wherein the control circuit is configured to one of (i) charge the power supply through the conductive contact assembly or (ii) monitor the conductive contact assembly for the touch input command.

11 . The battery section of claim 10 , wherein the control circuit is configured to disable charging of the power supply when monitoring the conductive contact assembly for the touch input command.

12 . The battery section of claim 10 , wherein the control circuit is configured to disable monitoring of the conductive contact assembly for the touch input command when charging of the power supply is enabled.

13 . An electronic vaping device comprising:

a power supply;

a control circuit;

a reservoir configured to hold a pre-vapor formulation;

a heater configured to heat pre-vapor formulation drawn from the reservoir, the heater electrically connected to the power supply; and

a conductive contact assembly at an end of the electronic vaping device, the conductive contact assembly electrically connecting the power supply and the control circuit, and the conductive contact assembly being configured to receive external power and to receive a touch input command, wherein

the conductive contact assembly includes a first contact and a second contact, and

the second contact is insulated from a conductive portion of the first contact.

14 . The electronic vaping device of claim 13 , wherein

the first contact is at the end of the electronic vaping device,

the first contact includes the conductive portion and a non-conductive portion,

the conductive portion extends transverse to a longitudinal axis of the electronic vaping device,

the non-conductive portion extends about a perimeter of the conductive portion,

the second contact extends about a perimeter of the first contact, and

the second contact at least partially overlaps the non-conductive portion.

15 . The electronic vaping device of claim 13 , wherein

the first contact is configured as a charge anode when the external power is received by the conductive contact assembly;

the second contact is configured as a charge cathode when the external power is received by the conductive contact assembly; and

the control circuit includes a switch configured to electrically separate the charge cathode from a common ground plane.

16 . The electronic vaping device of claim 13 , wherein

the first contact includes the conductive portion and a non-conductive portion, and

the second contact is insulated from the conductive portion by the non-conductive portion.

17 . The electronic vaping device of claim 16 , wherein the second contact extends about a perimeter of the non-conductive portion.

18 . The electronic vaping device of claim 13 , wherein the conductive contact assembly comprises:

an end cap housing including at least one slot, the end cap housing configured to hold the first contact.

19 . The electronic vaping device of claim 18 , wherein

the conductive contact assembly includes at least one tab extending along a longitudinal axis of the electronic vaping device, the at least one tab configured to engage with the at least one slot.

20 . The electronic vaping device of claim 13 , wherein at least a portion of the conductive contact assembly is magnetic.

21 . The electronic vaping device of claim 13 , wherein, based on an operating mode of the control circuit, the control circuit is configured to either (i) charge the power supply through the conductive contact assembly or (ii) monitor the conductive contact assembly for the touch input command.

22 . The electronic vaping device of claim 13 , wherein the control circuit is configured to one of (i) charge the power supply through the conductive contact assembly or (ii) monitor the conductive contact assembly for the touch input command.

23 . The electronic vaping device of claim 22 , wherein the control circuit is configured to disable charging of the power supply when monitoring the conductive contact assembly for the touch input command.

24 . The electronic vaping device of claim 22 , wherein the control circuit is configured to disable monitoring of the conductive contact assembly for the touch input command when charging of the power supply is enabled.

Continuity (3)
Continuation 16925611 · Jul 10, 2020
Division 15224608 · Jul 31, 2016
Related Publication 20230240372A1 · Aug 3, 2023
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