IP Library Granted Patent US 10,624,393
Granted Patent B2
US 10,624,393 · App. 15/496,774 · Granted Apr 21, 2020

Heated aerosol-generating device and method for generating aerosol with consistent properties

Inventor: Arkadiusz Kuczaj (Colombier, CH)
Assignee: Philip Morris Products S.A.
A24F47/008H05B1/0225H05B1/0244H05B3/0014H05B2203/021
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Quick Facts
Patent No.
US 10,624,393
App. No.
15/496,774
Granted
Apr 21, 2020
Kind
B2
Abstract

There is provided a method of controlling aerosol production in an aerosol-generating device, the device comprising: a heater comprising at least one heating element configured to heat an aerosol-forming substrate; and a power source for providing power to the heating element, comprising the steps of: controlling the power provided to the heating element such that in a first phase power is provided such that the temperature of the heating element increases from an initial temperature to a first temperature, in a second phase power is provided such that the temperature of the heating element drops below the first temperature and in a third phase power is provided such that the temperature of the heating element increases again. Increasing the temperature of the heating element during a final phase of the heating process reduces or prevents the reduction in aerosol delivery over time.

Claims (49)

1. A method of controlling aerosol production in an aerosol-generating device, the device comprising a heater comprising at least one heating element configured to contact and to heat a solid aerosol-forming substrate, the method comprising:

heating the solid aerosol-forming substrate in contact with the at least one heating element by supplying power to the at least one heating element to increase a temperature of the at least one heating element, and conducting heat from the at least one heating element to the solid aerosol-forming substrate that is in contact therewith; and

controlling an amount of electrical power supplied to the at least one heating element such that:

the temperature of the at least one heating element increases from an initial temperature to a first temperature in a first phase and during which the electrical power is supplied to the at least one heating element,

the temperature of the at least one heating element is reduced to and maintained at a second temperature in a second phase following the first phase and during which the electrical power is supplied to the at least one heating element, the second temperature being lower than the first temperature, and

the temperature of the at least one heating element increases to a third temperature in a third phase following the second phase and during which the electrical power is supplied to the at least one heating element.

2. The method according to claim 1 , wherein the controlling the electrical power supplied to the at least one heating element is performed so as to maintain the temperature of the at least one heating element within a desired temperature range in the second phase and in the third phase.

3. The method according to claim 2 , wherein the desired temperature range has a lower bound of between 240 degrees centigrade and 340 degrees centigrade, and an upper bound of between 340 degrees centigrade and 400 degrees centigrade.

4. The method according to claim 1 , wherein the first temperature is between 340 degrees centigrade and 400 degrees centigrade.

5. The method according to claim 1 , wherein the first phase, the second phase, or the third phase has a predetermined duration.

6. The method according to claim 1 , wherein the first phase is ended when the at least one heating element reaches the first temperature.

7. The method according to claim 1 , wherein a predetermined duration of the second phase is based on an amount of electrical power supplied to the at least one heating element during the first phase and the second phase.

8. The method according to claim 1 ,

wherein the aerosol-generating device includes a flow sensor configured to detect a number of user puffs on the aerosol-generating device, the method further comprising detecting the number of user puffs on the aerosol-generating device, and

wherein the first phase, the second phase, or the third phase is ended following detection of a predetermined number of user puffs.

9. The method according to claim 8 , wherein the flow sensor is part of the heater.

10. The method according to claim 1 ,

wherein the aerosol-generating device includes electrical circuitry configured to identify a characteristic of the solid aerosol-forming substrate, the method further comprising identifying the characteristic of the solid aerosol-forming substrate,

wherein the controlling the electrical power further comprises adjusting the electrical power supplied based on the identified characteristic.

11. An electrically operated aerosol-generating device, comprising:

at least one heating element configured to directly contact and to heat a solid aerosol-forming substrate to generate an aerosol;

a power supply configured to supply electrical power to the at least one heating element; and

electric circuitry configured to control the electrical power supplied to the at least one heating element, such that:

a temperature of the at least one heating element increases from an initial temperature to a first temperature in a first phase,

the temperature of the at least one heating element is reduced to and maintained at a second temperature in a second phase following the first phase and the second temperature is lower than the first temperature, and

the temperature of the at least one heating element increases to a third temperature in a third phase following the second phase.

12. The device according to claim 11 , wherein the first phase, the second phase, or the third phase has a predetermined duration.

13. The device according to claim 11 , further comprising a means for detecting a number of user puffs on the aerosol-generating device, wherein the first phase, the second phase, or the third phase is ended following detection of a predetermined number of user puffs.

14. The device according to claim 11 , further comprising a means for identifying a characteristic of the solid aerosol-forming substrate in the aerosol-generating device, wherein the electric circuitry includes a memory storing a look-up table of power control instructions and corresponding aerosol-forming substrate characteristics.

15. The device according to claim 11 , wherein the electrical power is continually supplied to the at least one heating element during each of the first phase, the second phase, and the third phase.

16. The device according to claim 11 ,

wherein the at least one heating element is disposed within a cavity in the aerosol-generating device, and

wherein the cavity is configured to removably receive the solid aerosol-forming substrate such that the at least one heating element is disposed within the solid aerosol-forming substrate.

17. An electrically operated aerosol-generating system, comprising:

an aerosol-generating article comprising a solid aerosol-forming substrate; and

an aerosol-generating device configured to removably receive the aerosol-generating article, the device comprising:

a heater comprising at least one heating element configured to contact and to heat the solid aerosol-forming substrate to generate an aerosol,

a power supply configured to supply electrical power to the at least one heating element, and

electric circuitry configured to control the electrical power supplied to the at least one heating element, such that:

a temperature of the at least one heating element increases from an initial temperature to a first temperature in a first phase,

the temperature of the at least one heating element is reduced to and maintained at a second temperature in a second phase following the first phase and the second temperature is lower than the first temperature, and

the temperature of the at least one heating element increases to a third temperature in a third phase following the second phase.

18. The system according to claim 17 , wherein the electrical power is continually supplied to the at least one heating element during each of the first phase, the second phase, and the third phase.

19. The system according to claim 17 ,

wherein the aerosol-generating device further comprises a cavity configured to removably receive the solid aerosol-forming substrate, and

wherein the at least one heating element is disposed within the solid aerosol-forming substrate when the solid aerosol-forming substrate is inserted into the aerosol-generating device.

20. The system according to claim 17 , further comprising a means for detecting a number of user puffs on the aerosol-generating device, wherein the first phase, the second phase, or the third phase is ended following detection of a predetermined number of user puffs.

21. The system according to claim 17 , wherein the solid aerosol-forming substrate comprises a tobacco-containing material including volatile tobacco flavor compounds, which are released from said substrate upon heating.

22. The system according to claim 17 , wherein the solid aerosol-forming substrate is partially contained within the aerosol-generating device.

Priority Claims (1)
EP 12199708 · Dec 28, 2012 · regional
Continuity (3)
Continuation 15053581 · Feb 25, 2016
Continuation 14414778
Related Publication 20170224019A1 · Aug 10, 2017
Cited By (7)
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