IP Library Granted Patent US 12690625
Granted Patent B2
US 12690625 · App. 18/796,312 · Granted Jul 28, 2026

Inductive heating apparatus, control unit thereof, and operation method thereof

Inventor: Hajime Fujita (Tokyo, JP)
Assignee: JAPAN TOBACCO INC.
A24F40/57A24F40/20A24F40/465A24F40/51H05B6/06H05B6/105
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Quick Facts
Patent No.
US 12690625
App. No.
18/796,312
Granted
Jul 28, 2026
Kind
B2
Abstract

A control unit for an inductive heating apparatus configured to inductively heat a susceptor of an aerosol forming body includes the susceptor and an aerosol source, the control unit is configured to in a case where the susceptor ceases to be detected while the inductive heating is being executed, stop the inductive heating or notifying an error.

Claims (90)

1 . An aerosol-generating apparatus for inductively heating a susceptor of an aerosol-forming body that includes the susceptor and an aerosol source, the aerosol-generating apparatus comprising:

a housing into which the aerosol-forming body can be inserted,

wherein the housing comprises:

a power supply;

an alternating current generation circuit for generating an alternating current from a power supplied from the power supply;

an inductive heating circuit for inductively heating the susceptor;

a detection circuit including a circuit for detecting each of a voltage and a current of a circuit including the inductive heating circuit to which the alternating current generated by the alternating current generation circuit is supplied;

a controller configured to start the inductive heating in a case where it is determined that at least a part of the aerosol-forming body is inserted into the housing of the aerosol-generating apparatus based on a value obtained from the detection circuit; and

a voltage adjustment circuit connected to the power supply and the controller,

wherein the current is detected at a position on a path between the power supply and the alternating current generation circuit that is closer to the alternating current generation circuit than a branching point from the path to the voltage adjustment circuit.

2 . The aerosol-generating apparatus according to claim 1 , wherein

the voltage is detected on the path between the power supply and the alternating current generation circuit.

3 . The aerosol-generating apparatus according to claim 1 , wherein the housing further comprises:

a remaining amount measurement IC configured to measure a remaining amount of the power supply, and

wherein the remaining amount measurement IC is not included in the detection circuit.

4 . The aerosol-generating apparatus according to claim 1 , wherein the housing further comprises:

a charging circuit connected to the power supply,

wherein the current is detected at a position on the path between the power supply and the alternating current generation circuit that is closer to the alternating current generation circuit than a branching point from the path to the charging circuit.

5 . The aerosol-generating apparatus according to claim 1 ,

wherein the controller is further configured to:

obtain a temperature of the susceptor based on the value obtained from the detection circuit, and

control the inductive heating based on the obtained temperature.

6 . The aerosol-generating apparatus according to claim 1 ,

wherein the controller is further configured to:

detect whether or not the at least a part of the aerosol-forming body is inserted into the housing of the aerosol-generating apparatus,

at a first mode, detect whether or not the at least a part of the aerosol-forming body is inserted into the housing of the aerosol-generating apparatus, and

at a second mode different from the first mode, not detect whether or not at least a part of the aerosol-forming body is inserted into the housing of the aerosol-generating apparatus.

7 . The aerosol-generating apparatus according to claim 6 , further comprising:

a connection unit configured to enable connection with a charging power source,

wherein the controller is further configured to execute processing of the first mode until a predetermined period of time has passed after detecting removal of the charging power source from the connection unit.

8 . The aerosol-generating apparatus according to claim 6 , further comprising:

a user interface,

wherein the controller is further configured to transition to the first mode in response to a predetermined operation being performed at the user interface.

9 . The aerosol-generating apparatus according to claim 6 , further comprising:

a user interface,

wherein the controller is further configured to return to the first mode from the second mode in response to a predetermined operation being performed at the user interface after transitioning to the second mode in response to a predetermined period of time passing after transitioning to the first mode.

10 . The aerosol-generating apparatus according to claim 1 , further comprising:

a connection unit configured to enable connection with a charging power source,

wherein the controller is further configured to, while a connection of the charging power source to the connection unit is being detected, not measure the voltage and the current of the circuit to which alternating current generated by the alternating current generation circuit is supplied.

11 . The aerosol-generating apparatus according to claim 1 ,

wherein the controller is further configured to measure the voltage and the current of the circuit at a resonance frequency of the circuit to which the alternating current generated by the alternating current generation circuit is supplied.

12 . A method for operating an aerosol-generating apparatus for inductively heating a susceptor of an aerosol-forming body that includes the susceptor and an aerosol source, wherein the aerosol-generating apparatus comprises:

a housing into which the aerosol-forming body can be inserted,

wherein the housing comprises:

a power supply;

an alternating current generation circuit for generating an alternating current from a power supplied from the power supply;

an inductive heating circuit for inductively heating the susceptor;

a detection circuit including a circuit for detecting each of a voltage and a current of a circuit including the inductive heating circuit to which the alternating current generated by the alternating current generation circuit is supplied;

a controller; and

a voltage adjustment circuit connected to the power supply and the controller,

the method comprising:

starting the inductive heating in a case where it is determined that at least a part of the aerosol-forming body is inserted into the housing of the aerosol-generating apparatus based on a value obtained from the detection circuit,

wherein the current is detected at a position on a path between the power supply and the alternating current generation circuit that is closer to the alternating current generation circuit than a branching point from the path to the voltage adjustment circuit.

13 . The method according to claim 12 , wherein

the voltage is detected on a path between the power supply and the alternating current generation circuit.

14 . The method according to claim 12 ,

wherein the housing further comprises a remaining amount measurement IC configured to measure a remaining amount of the power supply, and

wherein the remaining amount measurement IC is not included in the detection circuit.

15 . The method according to claim 12 ,

wherein the housing further comprises a charging circuit connected to the power supply, and

wherein the current is detected at a position on the path between the power supply and the alternating current generation circuit that is closer to the alternating current generation circuit than a branching point from the path to the charging circuit.

16 . The method according to claim 12 ,

wherein the controller further is configured to detect whether or not the at least a part of the aerosol-forming body is inserted into the housing of the aerosol-generating apparatus,

the method further comprising at least one of:

switching between a first mode in which detection of whether or not the at least a part of the aerosol forming body is inserted into the housing of the aerosol-generating apparatus is performed and a second mode in which detection of whether or not the at least a part of the aerosol forming body is inserted into the housing of the aerosol-generating apparatus is not performed;

and

measuring the voltage and the current of the circuit at a resonance frequency of the circuit to which the alternating current generated by the alternating current generation circuit is supplied.

17 . An aerosol-generating apparatus for inductively heating a susceptor of an aerosol-forming body that includes the susceptor and an aerosol source, the aerosol-generating apparatus comprising:

the aerosol-forming body;

a housing into which the aerosol-forming body can be inserted,

wherein the housing comprises:

a power supply;

an alternating current generation circuit for generating an alternating current from a power supplied from the power supply;

an inductive heating circuit for inductively heating the susceptor;

a detection circuit including a circuit for detecting each of a voltage and a current of a circuit including the inductive heating circuit to which the alternating current generated by the alternating current generation circuit is supplied;

a controller configured to start the inductive heating in a case where it is determined that at least a part of the aerosol-forming body is inserted into the housing of the aerosol-generating apparatus based on a value obtained from the detection circuit; and

a voltage adjustment circuit connected to the power supply and the controller,

wherein the current is detected at a position on a path between the power supply and the alternating current generation circuit that is closer to the alternating current generation circuit than a branching point from the path to the voltage adjustment circuit.

18 . The aerosol-generating apparatus according to claim 17 , wherein

the voltage is detected on a path between the power supply and the alternating current generation circuit.

19 . The aerosol-generating apparatus according to claim 17 , wherein the housing further comprises:

a remaining amount measurement IC configured to measure a remaining amount of the power supply, and

wherein the remaining amount measurement IC is not included in the detection circuit.

20 . The aerosol-generating apparatus according to claim 17 , wherein the housing further comprises:

a charging circuit connected to the power supply,

wherein the current is detected at a position on the path between the power supply and the alternating current generation circuit that is closer to the alternating current generation circuit than a branching point from the path to the charging circuit.

21 . The method according to claim 16 ,

wherein the control unit executes any one of the following:

executing processing of the first mode until a predetermined period of time has passed after detecting removal of a charging power source from a connector of the aerosol-generating apparatus, the connector being configured to enable connection with the charging power source; and

transitioning to the first mode from the second mode, by the controller, in response to a predetermined operation being performed at a user interface of the aerosol-generating apparatus.