IP Library Granted Patent US 12,317,933
Granted Patent B2
US 12,317,933 · App. 17/857,462 · Granted Jun 3, 2025

Variable power control electronic vaping device

Inventor: Sammy Capuano (Ramat Bet Shemesh, IL)
Assignee: ALTRIA CLIENT SERVICES LLC
A24F40/50A24F40/57A61M15/06A24F40/10
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Quick Facts
Patent No.
US 12,317,933
App. No.
17/857,462
Granted
Jun 3, 2025
Kind
B2
Abstract

Disclosed are an electronic cigarette and methods for controlling the power to the electronic cigarette which provides various modes of operation, including both regulated and no-regulated mode. The method is implemented m the form of an electronic power control program that controls the constituent parts of the electronic cigarette, including the battery, atomizer, heating element, smoke liquid or juice, and related circuitry.

Claims (31)

1. An electronic vaping device comprising:

a heating element;

a power source configured to apply a voltage to the heating element;

a sensor configured to sense airflow; and

a processor configured to,

control the power source to apply a first voltage to the heating element for at least a first time interval in response to the sensed airflow regardless of whether the sensed airflow stops before expiration of the first time interval,

control the power source to apply a second voltage to the heating element based on the sensed airflow, and stop application of the second voltage to the heating element in response to cessation of the sensed airflow, the first voltage being greater than the second voltage, and

control the power source to apply a third voltage to the heating element based on the sensed airflow, and stop application of the third voltage to the heating element in response to cessation of the sensed airflow, the second voltage being greater than the third voltage, and the third voltage being a non-zero voltage.

2. The electronic vaping device of claim 1 , wherein the processor is configured to control the power source to apply the first voltage in response to initial sensing of the sensed airflow by the sensor.

3. The electronic vaping device of claim 1 , wherein the processor is configured to control the power source to apply the second voltage in response to determining that a time between two puffs is greater than a first amount of time and less than a second amount of time.

4. The electronic vaping device of claim 3 , wherein the processor is configured to control the power source to apply the third voltage in response to determining that the time between two puffs is in less than the first amount of time.

5. The electronic vaping device of claim 1 , wherein the processor is further configured to switch between the first voltage, the second voltage, and the third voltage based on the sensed airflow and one of a time between puffs, a temperature of the electronic vaping device, or a combination of the time between puffs and the temperature of the electronic vaping device.

6. The electronic vaping device of claim 1 , wherein the power source includes a battery.

7. An electronic vaping device comprising:

a heating element;

a power source configured to apply a voltage to the heating element;

a sensor configured to sense airflow; and

a processor configured to,

control the power source to apply a first voltage based on the sensed airflow,

control the power source to apply a second voltage after applying the first voltage, the first voltage being greater than the second voltage, and

control the power source to apply a third voltage in a safety mode after applying the second voltage, the second voltage being greater than the third voltage, and the third voltage being a non-zero voltage, wherein,

in the safety mode, the processor is further configured to control the heating element to heat a liquid enough to evaporate the liquid while also limiting accumulation of heat within the electronic vaping device.

8. The electronic vaping device of claim 7 , wherein the processor is configured to control the power source to apply the first voltage in response to initial sensing of the sensed airflow by the sensor.

9. The electronic vaping device of claim 7 , wherein the processor is configured to control the power source to apply the second voltage in response to determining that a time between two puffs is greater than a first amount of time and less than a second amount of time.

10. The electronic vaping device of claim 9 , wherein the processor is configured to control the power source to apply the third voltage in the safety mode in response to determining the time between two puffs is less than the first amount of time.

11. The electronic vaping device of claim 7 , wherein the processor is further configured to

apply the first voltage in a first operating mode,

apply the second voltage in a second operating mode, and

switch between the first operating mode, the second operating mode and the safety mode based on the sensed airflow and one of a time between puffs, a temperature of the electronic vaping device, or a combination of the time between puffs and the temperature of the electronic vaping device.

12. The electronic vaping device of claim 7 , wherein the power source includes a battery.

13. The electronic vaping device of claim 7 , wherein the processor is configured to control the power source to apply the first voltage to the heating element for at least a first time interval in response to the sensed airflow regardless of whether the sensed airflow stops before expiration of the first time interval.

Continuity (5)
Continuation 16361743 · Mar 22, 2019
Continuation 13962584 · Aug 8, 2013
Continuation PCTUS2012024353 · Feb 8, 2012
Provisional Application 61441133 · Feb 9, 2011
Related Publication 20220400765A1 · Dec 22, 2022
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