IP Library › Granted Patent US 11,627,763
Granted Patent B2
US 11,627,763 · App. 16/850,012 · Granted Apr 18, 2023

Aerosol generating apparatus and method for controlling aerosol generating apparatus

Inventors: Manabu Yamada (Tokyo, JP); Takeshi Akao (Tokyo, JP); Kazuma Mizuguchi (Tokyo, JP); Hajime Fujita (Tokyo, JP)
Assignee: JAPAN TOBACCO INC.
A24F40/53A24F40/50A24F40/57A24F40/10A24F40/40
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Quick Facts
Patent No.
US 11,627,763
App. No.
16/850,012
Granted
Apr 18, 2023
Kind
B2
Abstract

An aerosol generating apparatus comprises: a power source; a load configured to have an electric resistance value that varies according to a temperature and atomize an aerosol source or heat a flavor source when supplied with power from the power source; a sensor configured to output a measurement value corresponding to a current value of a current flowing through the load; and a control unit configured to control power supply from the power source to the load and perform a determination operation for determining that there is an abnormality if the measurement value becomes smaller than a threshold value within a determination period, on a time axis, in a feeding sequence during which power is supplied from the power source to the load, wherein the control unit adjusts a length of the determination period based on the measurement value.

Claims (56)

1. An aerosol generating apparatus comprising:

a power source;

a load configured to have an electric resistance value that varies according to a temperature and atomize an aerosol source or heat a flavor source when supplied with power from the power source;

a sensor configured to output a measurement value corresponding to a current value of a current flowing through the load; and

processing circuitry configured to

control power supply from the power source to the load;

perform a determination operation for determining that there is an abnormality in a case that the measurement value becomes smaller than a threshold value corresponding to a predetermined current value within a determination period that is included, on a time axis, in a feeding sequence during which power is supplied from the power source to the load; and

adjust a length of the determination period based on the measurement value.

2. The aerosol generating apparatus of claim 1 , wherein

the feeding sequence is performed a plurality of times, and

based on the measurement value obtained in a preceding feeding sequence, the processing circuitry is configured to adjust the length of the determination period included in a following feeding sequence that is performed later than the preceding feeding sequence along the time axis.

3. The aerosol generating apparatus of claim 2 , wherein

the processing circuitry is configured to adjust the determination period included in the following feeding sequence based on a period it takes for the measurement value to become smaller than the threshold value in the preceding feeding sequence.

4. The aerosol generating apparatus of claim 2 , wherein

the processing circuitry is configured to adjust the determination period included in the following feeding sequence based on a shorter one of a period it takes for the measurement value to become smaller than the threshold value in the preceding feeding sequence and a period for which power supply from the power source to the load has been continued in the preceding feeding sequence.

5. The aerosol generating apparatus of claim 1 , wherein

in a case that the number of determination periods within which the measurement value has become smaller than the threshold value exceeds a prescribed number, the processing circuitry is configured to cease supplying power from the power source to the load.

6. The aerosol generating apparatus of claim 1 , wherein

in the case that the number of determination periods within which the measurement value has become smaller than the threshold value is not larger than a prescribed number, the processing circuitry is configured to continue supplying supply power from the power source to the load.

7. The aerosol generating apparatus of claim 1 , wherein

in a case that the number of consecutive determination periods within which the measurement value has become smaller than the threshold value is equal to or larger than a prescribed number, the processing circuitry is configured to cease supplying power from the power source to the load.

8. The aerosol generating apparatus of claim 1 , wherein

in a case that the number of consecutive determination periods within which the measurement value has become smaller than the threshold value is smaller than a prescribed number, the processing circuitry is configured to continue supplying power from the power source to the load.

9. The aerosol generating apparatus of claim 1 , further comprising:

a feed circuit that electrically connects the power source to the load, wherein

the feed circuit includes a first power supply path and a second power supply path that are connected in parallel, and

the processing circuitry is configured to

selectively cause one of the first power supply path and the second power supply path to function;

control the second power supply path such that power supplied from the power source to the load is small when compared to a case in which the first power supply path is caused to function; and

execute the determination operation while causing the second power supply path to function.

10. The aerosol generating apparatus of claim 1 , further comprising

a feed circuit that electrically connects the power source to the load, wherein

the feed circuit includes a first power supply path and a second power supply path that are connected in parallel,

the second power supply path is configured such that a current that flows through the second power supply path is smaller than a current that flows through the first power supply path, and

the processing circuitry is configured to

selectively cause one of the first power supply path and the second power supply path to function; and

perform the determination operation while causing the second power supply path to function.

11. The aerosol generating apparatus of claim 9 , further comprising:

a mouthpiece end that is provided at an end portion of the aerosol generating apparatus to emit an aerosol, wherein

the processing circuitry is configured to control the second power supply path such that the aerosol is not emitted from the mouthpiece end while the second power supply path is caused to function.

12. The aerosol generating apparatus of claim 9 , wherein

the processing circuitry is configured to control the feed circuit such that the load generates an aerosol only when the first power supply path out of the first and second power supply paths is caused to function.

13. The aerosol generating apparatus of claim 9 , wherein

the processing circuitry is configured to cause the second power supply path to function, after causing the first power supply path to function.

14. A method for controlling an aerosol generating apparatus, comprising:

controlling power supply to a load configured to atomize an aerosol source or heat a flavor source when supplied with power from a power source and have an electric resistance value that varies according to a temperature;

acquiring a measurement value from a sensor that outputs the measurement value corresponding to a current value of a current flowing through the load;

performing a determination operation for determining that there is an abnormality if the measurement value becomes smaller than a threshold value corresponding to a predetermined current value within a determination period that is included, on a time axis, in a feeding sequence during which power is supplied from the power source to the load; and

adjust a length of the determination period based on the measurement value.

15. An aerosol generating apparatus comprising:

a power source;

a load configured to have an electric resistance value that varies according to a temperature and atomize an aerosol source or heat a flavor source when supplied with power from the power source;

a sensor configured to output a measurement value corresponding to a current value of a current flowing through the load; and

a processing circuitry configured to

control a plurality of feeding sequences during which power is supplied from the power source to the load; and

based on the measurement value obtained in a preceding feeding sequence, determine a length of a following feeding sequence that is performed later than the preceding feeding sequence along a time axis.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 16, 2020
From: YAMADA, MANABU; AKAO, TAKESHI; MIZUGUCHI, KAZUMA; FUJITA, HAJIME
To: JAPAN TOBACCO INC.
Reel/Frame 052415/0884 →
Continuity (2)
Continuation PCTJP2017038393 · Oct 24, 2017
Related Publication 20200237012A1 · Jul 30, 2020
Cited By (1)
US 12,520,880