IP Library › Granted Patent US 11,559,084
Granted Patent B2
US 11,559,084 · App. 16/554,292 · Granted Jan 24, 2023

Battery unit, flavor inhaler, method for controlling battery unit, and program

Inventors: Manabu Takeuchi (Tokyo, JP); Takaya Takahashi (Tokyo, JP); Manabu Yamada (Tokyo, JP)
Assignee: JAPAN TOBACCO INC.
A24F40/50A24F40/53H02H3/20H02H7/18H02H7/20H02J7/007184A24F40/10A24F40/90H02J7/00302
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Quick Facts
Patent No.
US 11,559,084
App. No.
16/554,292
Granted
Jan 24, 2023
Kind
B2
Abstract

A battery unit includes a power source; a detection part for detecting an output voltage of the power source; a connection part to which a load for atomizing an aerosol source or heating a flavor source and a charger for charging the power source are connectable; and a control part being able to execute a power supplying mode that allows supply of electric power from the power source to the load and a charging mode that allows charging of the power source by the charger, wherein if a decreased quantity of the output voltage per predetermined period in the charging mode is equal to or less than a threshold value that has been set based on a decreased quantity of the output voltage per the predetermined period in the power supplying mode, the control part determines that there is abnormality in the charging mode.

Claims (40)

1. A battery unit comprising:

a power source;

circuitry configured to detect an output voltage of the power source;

a connector to which a load for atomizing an aerosol source or heating a flavor source and a charger for charging the power source are connectable;

a switch configured to allow electrical connection and electrical disconnection between the power source and the load or the charger which is connected to the connector; and

a controller configured to execute a power supplying mode that allows supply of electric power from the power source to the load and a charging mode that allows charging of the power source by the charger, wherein

the controller is configured to turn the switch on if a first condition is satisfied in the power supplying mode, and turn the switch on if a second condition that is different from the first condition is satisfied in the charging mode, and

if a decreased quantity of the output voltage per predetermined period in the charging mode is equal to or less than a threshold value that has been set based on a decreased quantity of the output voltage per the predetermined period in the power supplying mode, the controller is configured to determine that there is abnormality in the charging mode.

2. The battery unit according to claim 1 , wherein the threshold value is set to be a value equal to or less than the decreased quantity of the output voltage per the predetermined period in the power supplying mode.

3. The battery unit according to claim 1 , further comprising:

a sensor configured to detect manipulation that is performed for using the load, wherein

the first condition is a condition based on detection of the manipulation.

4. The battery unit according to claim 1 , wherein the second condition is a condition based on connection of the charger to the connector.

5. The battery unit according to claim 1 , wherein the controller is configured to change the threshold value, according to a degree of deterioration of the power source.

6. The battery unit according to claim 1 , wherein:

if the number of times of detection of the output voltages counted since the charging mode has started is less than a predetermined number of times, the decreased quantity of the output voltage per the predetermined period in the charging mode is calculated by taking a difference between a value of the output voltage obtained in most recent detection and a value of the output voltage obtained in detection just before the most recent detection; and

if the number of times of detection of the output voltages counted since the charging mode has started is equal to or more than a predetermined number of times, the decreased quantity of the output voltage per the predetermined period in the charging mode is calculated by taking a difference between a value of the output voltage obtained in most recent detection and a predictive value obtained based on a plurality of the output voltages that have been detected since the charging mode has started.

7. A flavor inhaler comprising:

the battery unit according to claim 1 ; and

the load.

8. A method for controlling a battery unit which comprises a controller configured to execute a power supplying mode that allows electric power to be supplied from a power source to a load via a connector configured to connect the load for atomizing an aerosol source or heating a flavor source and a charger for charging the power source, and a charging mode allowing the power source to be charged by the charger via the connector, the method comprising:

detecting an output voltage of the power source;

turning on a switch of the battery unit, the switch configured to allow electrical connection and electrical disconnection between the power source and the load or the charger, which is connected to the connector, if a first condition is satisfied in the power supplying mode, and turning the switch on if a second condition that is different from the first condition is satisfied in the charging mode, and

determining that there is abnormality in the charging mode if a decreased quantity of the output voltage per predetermined period in the charging mode is equal to or less than a threshold value that has been set based on a decreased quantity of the output voltage per the predetermined period in the power supplying mode.

9. A program embodied on a non-transitory computer readable medium that causes a battery unit to perform a method for controlling the battery unit which comprises a controller configured to execute a power supplying mode that allows electric power to be supplied from a power source to a load via a connector configured to connect the load for atomizing an aerosol source or heating a flavor source and a charger for charging the power source, and a charging mode allowing the power source to be charged by the charger via the connector, the method comprising:

detecting an output voltage of the power source;

determining that there is abnormality in the charging mode if a decreased quantity of the output voltage per predetermined period in the charging mode is equal to or less than a threshold value that has been set based on a decreased quantity of the output voltage per the predetermined period in the power supplying mode.

10. The battery unit according to claim 3 , wherein the second condition is a condition based on connection of the charger to the connector.

11. The battery unit according to claim 2 , wherein the controller is configured to change the threshold value, according to the degree of deterioration of the power source.

12. The battery unit according to claim 3 , wherein the controller is configured to change the threshold value, according to the degree of deterioration of the power source.

13. The battery unit according to claim 4 , wherein the controller is configured to change the threshold value, according to the degree of deterioration of the power source.

14. The battery unit according to claim 2 , wherein:

if the number of times of detection of the output voltages counted since the charging mode has started is less than a predetermined number of times, the decreased quantity of the output voltage per the predetermined period in the charging mode is calculated by taking a difference between a value of the output voltage obtained in most recent detection and a value of the output voltage obtained in detection just before the most recent detection; and

if the number of times of detection of the output voltages counted since the charging mode has started is equal to or more than a predetermined number of times, the decreased quantity of the output voltage per the predetermined period in the charging mode is calculated by taking a difference between a value of the output voltage obtained in most recent detection and a predictive value obtained based on a plurality of the output voltages that have been detected since the charging mode has started.

15. The battery unit according to claim 3 , wherein:

if the number of times of detection of the output voltages counted since the charging mode has started is less than a predetermined number of times, the decreased quantity of the output voltage per the predetermined period in the charging mode is calculated by taking a difference between a value of the output voltage obtained in most recent detection and a value of the output voltage obtained in detection just before the most recent detection; and

if the number of times of detection of the output voltages counted since the charging mode has started is equal to or more than a predetermined number of times, the decreased quantity of the output voltage per the predetermined period in the charging mode is calculated by taking a difference between a value of the output voltage obtained in most recent detection and a predictive value obtained based on a plurality of the output voltages that have been detected since the charging mode has started.

16. The battery unit according to claim 4 , wherein:

if the number of times of detection of the output voltages counted since the charging mode has started is less than a predetermined number of times, the decreased quantity of the output voltage per the predetermined period in the charging mode is calculated by taking a difference between a value of the output voltage obtained in most recent detection and a value of the output voltage obtained in detection just before the most recent detection; and

if the number of times of detection of the output voltages counted since the charging mode has started is equal to or more than a predetermined number of times, the decreased quantity of the output voltage per the predetermined period in the charging mode is calculated by taking a difference between a value of the output voltage obtained in most recent detection and a predictive value obtained based on a plurality of the output voltages that have been detected since the charging mode has started.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 13, 2020
From: TAKEUCHI, MANABU; TAKAHASHI, TAKAYA; YAMADA, MANABU
To: JAPAN TOBACCO INC.
Reel/Frame 051490/0158 →
Continuity (2)
Continuation PCTJP2017008857 · Mar 6, 2017
Related Publication 20190380395A1 · Dec 19, 2019