Aerosol Delivery System

The aerosol delivery system optimizes battery life and power usage by switching between device and charging unit power sources based on connection states, addressing inefficiencies in existing systems and ensuring seamless operation.

JP2025527339AActive Publication Date: 2025-08-20NICOVENTURES TRADING LTD

Patent Information

Application Number
JP2025508467
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-02-15
Filing Date
2023-08-15
Publication Date
2025-08-20
Estimated Expiration
2043-08-15

AI Technical Summary

Technical Problem

Existing aerosol delivery systems lack efficient battery management strategies to optimize power usage and extend the life of the aerosol delivery device's battery, particularly when connected to a charging unit.

Method used

An aerosol delivery system with a first and second controller in the device and charging unit, respectively, that determines the connection state and switches between operating modes to manage power usage, including options for initiating sessions with either the device's or charging unit's battery, or a combination, to optimize battery life and seamless transitions.

Benefits of technology

The system effectively extends the life of the aerosol delivery device's battery by prioritizing the use of the charging unit's larger battery and minimizing recharge cycles, ensuring seamless power transitions, and maintaining device functionality.

✦ Generated by Eureka AI based on patent content.

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Abstract

1. An aerosol delivery system comprising: An aerosol delivery system is provided, comprising: an aerosol delivery device comprising a first controller and a first electrical energy storage device; and a charging unit for charging the aerosol delivery device, the charging unit comprising a second controller and a second electrical energy storage device, wherein the first controller and / or the second controller is configured to determine a connection state between the aerosol delivery device and the charging unit and cause the aerosol delivery device to enter several optional operating modes. Methods of operating the aerosol delivery system, the aerosol delivery device, and the charging unit are also provided.
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Description

[Technical Field]

[0001] The present invention relates to an aerosol delivery system, a method of operating an aerosol delivery system, an aerosol delivery device and a charging unit. [Background technology]

[0002] Smoking articles, such as cigarettes and cigars, burn tobacco during use to produce tobacco smoke. Attempts have been made to provide alternatives to these articles by creating products that release compounds without combustion. Examples of such products include so-called "heat-not-burn" products, or tobacco heating devices or products, which release compounds by heating materials without burning them. The materials may be, for example, tobacco or other non-tobacco products, and may or may not contain nicotine.

[0003] Aerosol delivery systems covering the above-mentioned devices or products are known. A typical system uses a heater to generate an aerosol from a suitable medium, which is then inhaled by the user. In many cases, the medium used must be replaced or changed to provide a different aerosol for inhalation. It is known to use an induction heating system as a heater for generating an aerosol from a suitable medium. An induction heating system generally consists of a magnetic field generating device for generating a fluctuating magnetic field and a susceptor or heating material that can be heated by immersing the fluctuating magnetic field in the suitable medium to heat it. Conventional aerosol delivery devices include a cylindrical heating chamber into which a rod-shaped consumable is inserted.

[0004] It is known to provide an aerosol delivery system that includes an aerosol delivery device and a charging unit.

[0005] It would be desirable to provide an improved aerosol delivery system. Summary of the Invention

[0006] According to one aspect, there is provided an aerosol delivery system comprising: an aerosol delivery device comprising a first controller and a first electrical energy storage device; a charging unit for charging the aerosol delivery device, the charging unit comprising a second controller and a second electrical energy storage device; the first controller and / or the second controller are configured to determine a connection state between the aerosol delivery device and the charging unit, and cause the aerosol delivery device to enter an operating mode to which any of the following options (A), (B), (C), (D), and / or (E) apply: According to option (A), if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller are configured to cause the aerosol delivery device to enter a first operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate and optionally complete a first use session; According to option (B), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a second operating mode, in which the aerosol delivery device is powered by the first electrical energy storage device; According to option (C), if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller are configured to cause the aerosol delivery device to enter a third operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate a first use session at time t1; the first controller is configured to determine at a later time t2 during the first use session that the aerosol delivery device is subsequently electrically disconnected from the charging unit and then cause the aerosol delivery device to be powered by the first electrical storage device; According to option (D), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fourth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a first use session at time t3; either the first controller and / or the second controller is configured to determine at a later time t4 during the first use session that the aerosol delivery device is thereafter continuously electrically connected to the charging unit, and then (a) cause the aerosol delivery device to be at least partially powered by the second electrical storage device to continue and optionally complete the first use session, or (b) cause the aerosol delivery device to be powered by the first electrical storage device; According to option (E), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fifth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a usage session; An aerosol delivery system is provided in which, if the first controller and / or the second controller determine that the aerosol delivery device is electrically connected to the charging unit at a later time during the use session, the first controller is configured to control the first electrical energy storage device to continue to energize the aerosol delivery device.

[0007] According to various embodiments, an aerosol delivery device may be provided in which only one of options (A), (B), (C), (D) and (E) is provided.

[0008] For example, an aerosol delivery device may be provided that includes any of option (A), option (B), option (C), option (D) or option (E).

[0009] For example, according to one embodiment, there is provided an aerosol delivery system comprising: an aerosol delivery device comprising a first controller and a first electrical energy storage device; a charging unit for charging the aerosol delivery device, the charging unit comprising a second controller and a second electrical energy storage device; The first controller and / or the second controller are configured to determine a connection state between the aerosol delivery device and the charging unit and cause the aerosol delivery device to enter an operation mode, in which: (A) An aerosol delivery system is provided, wherein if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller are configured to cause the aerosol delivery device to enter a first operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate and optionally complete a first use session.

[0010] According to another embodiment, there is provided an aerosol delivery system comprising: an aerosol delivery device comprising a first controller and a first electrical energy storage device; a charging unit for charging the aerosol delivery device, the charging unit comprising a second controller and a second electrical energy storage device; The first controller and / or the second controller are configured to determine a connection state between the aerosol delivery device and the charging unit and cause the aerosol delivery device to enter an operating mode, in which (B) An aerosol delivery system is provided, wherein if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a second operating mode, in which the aerosol delivery device is powered by the first electrical energy storage device.

[0011] According to another embodiment, there is provided an aerosol delivery system comprising: an aerosol delivery device comprising a first controller and a first electrical energy storage device; a charging unit for charging the aerosol delivery device, the charging unit comprising a second controller and a second electrical energy storage device; The first controller and / or the second controller are configured to determine a connection state between the aerosol delivery device and the charging unit and cause the aerosol delivery device to enter an operating mode, in which (C) if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller is configured to cause the aerosol delivery device to enter a third operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate a first use session at time t1; An aerosol delivery system is provided, wherein the first controller is further configured to determine that the aerosol delivery device is subsequently electrically disconnected from the charging unit at a later time t2 during the first use session, and then cause the aerosol delivery device to be powered by the first electrical storage device. According to another embodiment, there is provided an aerosol delivery system comprising: an aerosol delivery device comprising a first controller and a first electrical energy storage device; a charging unit for charging the aerosol delivery device, the charging unit comprising a second controller and a second electrical energy storage device; The first controller and / or the second controller are configured to determine a connection state between the aerosol delivery device and the charging unit and cause the aerosol delivery device to enter an operation mode, in which: (D) if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fourth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a first use session at time t3; An aerosol delivery system is provided in which either the first controller and / or the second controller determines that at a later time t4 during the first use session, the aerosol delivery device is subsequently electrically connected to the charging unit, and is then configured to (a) cause the aerosol delivery device to be at least partially powered by the second electrical storage device, or (b) cause the aerosol delivery device to be powered by the first electrical storage device, in order to continue and optionally complete the first use session.

[0012] According to another embodiment, there is provided an aerosol delivery system comprising: an aerosol delivery device comprising a first controller and a first electrical energy storage device; a charging unit for charging the aerosol delivery device, the charging unit comprising a second controller and a second electrical energy storage device; The first controller and / or the second controller are configured to determine a connection state between the aerosol delivery device and the charging unit and cause the aerosol delivery device to enter an operation mode, in which: According to option (E), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fifth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a usage session; An aerosol delivery system is provided in which, if the first controller and / or the second controller determine that the aerosol delivery device is electrically connected to the charging unit at a later time during the use session, the first controller is configured to control the first electrical energy storage device to continue to energize the aerosol delivery device.

[0013] According to various embodiments, an aerosol delivery device may be provided in which two of the options (A), (B), (C), (D) and (E) detailed above are provided.

[0014] For example, an aerosol delivery device may be provided that includes any of options (A) and (B), options (A) and (C), options (A) and (D), options (A) and (E), options (B) and (C), options (B) and (D), options (B) and (E), options (C) and (D), or options (C) and (E).

[0015] For example, according to one embodiment, there is provided an aerosol delivery system comprising: an aerosol delivery device comprising a first controller and a first electrical energy storage device; a charging unit for charging the aerosol delivery device, the charging unit comprising a second controller and a second electrical energy storage device; the first controller and / or the second controller are configured to determine a connection status between the aerosol delivery device and the charging unit and cause the aerosol delivery device to enter an operating mode; (C) if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller is configured to cause the aerosol delivery device to enter a third operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate a first use session at time t1; the first controller is configured to determine at a later time t2 during the first use session that the aerosol delivery device is subsequently electrically disconnected from the charging unit, and then cause the aerosol delivery device to be powered by the first electrical storage device; (D) if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fourth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a first use session at time t3; An aerosol delivery system is provided in which either the first controller and / or the second controller determines that at a later time t4 during the first use session the aerosol delivery device is subsequently electrically connected to the charging unit, and is then configured to (a) cause the aerosol delivery device to be at least partially powered by the second electrical storage device, or (b) cause the aerosol delivery device to be powered by the first electrical storage device, in order to continue and optionally complete the first use session.

[0016] According to various embodiments, an aerosol delivery device may be provided that provides three of the options (A), (B), (C), (D) and (E) detailed above.

[0017] For example, an aerosol delivery device may be provided that includes any of options (A) and (B) and (C), options (A) and (B) and (D), options (B) and (C) and (D), options (A) and (C) and (D), options (A) and (B) and (E), options (B) and (C) and (E), or options (A) and (C) and (E).

[0018] For example, according to one embodiment, there is provided an aerosol delivery system comprising: an aerosol delivery device comprising a first controller and a first electrical energy storage device; a charging unit for charging the aerosol delivery device, the charging unit comprising a second controller and a second electrical energy storage device; the first controller and / or the second controller are configured to determine a connection status between the aerosol delivery device and the charging unit and cause the aerosol delivery device to enter an operating mode; (A) if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller are configured to cause the aerosol delivery device to enter a first operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate and optionally complete a first use session; (C) if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller is configured to cause the aerosol delivery device to enter a third operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate a first use session at time t1; the first controller is configured to determine at a later time t2 during the first use session that the aerosol delivery device is subsequently electrically disconnected from the charging unit, and then cause the aerosol delivery device to be powered by the first electrical storage device; (D) if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fourth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a first use session at time t3; An aerosol delivery system is provided in which either the first controller and / or the second controller determines that at a later time t4 during the first use session the aerosol delivery device is subsequently electrically connected to the charging unit, and is then configured to (a) cause the aerosol delivery device to be at least partially powered by the second electrical storage device, or (b) cause the aerosol delivery device to be powered by the first electrical storage device, in order to continue and optionally complete the first use session.

[0019] According to various embodiments, an aerosol delivery device may be provided in which four of the options (A), (B), (C) and (D) detailed above are provided. For example, an aerosol delivery device may be provided that includes options (A) and (B) and (C) and (D), or options (A), (B), (C) and (E).

[0020] For example, according to one embodiment, there is provided an aerosol delivery system comprising: an aerosol delivery device comprising a first controller and a first electrical energy storage device; a charging unit for charging the aerosol delivery device, the charging unit comprising a second controller and a second electrical energy storage device; the first controller and / or the second controller are configured to determine a connection status between the aerosol delivery device and the charging unit and cause the aerosol delivery device to enter an operating mode; (A) if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller are configured to cause the aerosol delivery device to enter a first operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate and optionally complete a first use session; (B) if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a second operating mode, in which the aerosol delivery device is powered by the first electrical energy storage device; (C) if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller is configured to cause the aerosol delivery device to enter a third operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate a first use session at time t1; the first controller is configured to determine at a later time t2 during the first use session that the aerosol delivery device is subsequently electrically disconnected from the charging unit, and then cause the aerosol delivery device to be powered by the first electrical storage device; (D) if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fourth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a first use session at time t3; An aerosol delivery system is provided in which either the first controller and / or the second controller determines that at a later time t4 during the first use session the aerosol delivery device is subsequently electrically connected to the charging unit, and is then configured to (a) cause the aerosol delivery device to be at least partially powered by the second electrical storage device, or (b) cause the aerosol delivery device to be powered by the first electrical storage device, in order to continue and optionally complete the first use session.

[0021] At the broadest level, an aerosol delivery system is provided, the aerosol delivery system comprising: an aerosol delivery device comprising a first controller and a first electrical energy storage device; a charging unit for charging the aerosol delivery device, the charging unit comprising a second controller and a second electrical energy storage device; The first controller and / or the second controller are configured to determine a connection state between the aerosol delivery device and the charging unit and cause the aerosol delivery device to enter an operation mode, in which: Optionally, (A) if the first controller and / or the second controller determine that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller are configured to cause the aerosol delivery device to enter a first operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate and optionally complete a first use session; Optionally, (B) if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a second operating mode, in which the aerosol delivery device is powered by the first electrical energy storage device; Optionally, (C) if the first controller and / or the second controller determine that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller are configured to cause the aerosol delivery device to enter a third operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate a first use session at time t1; the first controller is configured to determine that the aerosol delivery device is subsequently electrically disconnected from the charging unit at a later time t2 during the first use session, and then cause the aerosol delivery device to be powered by the first electrical storage device; and / or Optionally, (D) if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fourth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a first use session at time t3; either the first controller and / or the second controller is configured to determine at a later time t4 during the first use session that the aerosol delivery device is thereafter continuously electrically connected to the charging unit, and then (a) cause the aerosol delivery device to be at least partially powered by the second electrical storage device to continue and optionally complete the first use session, or (b) cause the aerosol delivery device to be powered by the first electrical storage device; and / or Optionally, (E) if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fifth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a usage session; An aerosol delivery system is provided in which, if the first controller and / or the second controller determine that the aerosol delivery device is electrically connected to the charging unit at a later time during the use session, the first controller is configured to control the first electrical energy storage device to continue to energize the aerosol delivery device.

[0022] It will be appreciated that option (A) relates to a mode of operation in which the aerosol delivery device is electrically / physically connected to a charging unit and the aerosol delivery device draws power from the battery of the charging unit. By way of example only, this mode of operation may facilitate, for example, 20 sessions and / or 4 consecutive sessions.

[0023] Option (B) relates to an operating mode in which the aerosol delivery device operates independently of the charging unit, i.e., the aerosol delivery device is not electrically / physically connected to the charging unit. By way of example only, this operating mode may facilitate, for example, two sessions and / or two consecutive sessions.

[0024] Option (C) relates to a mode of operation in which the aerosol delivery device is initially electrically / physically connected to the charging unit when a usage session is initiated, and the aerosol delivery device is then removed from the charging unit midway through the session, and the session is then completed by the aerosol delivery device without interruption.

[0025] Option (D) relates to an operating mode in which (i) the aerosol delivery device operates independently of the charging unit, and then midway through a session the aerosol delivery device is inserted into the charging unit, and then power to complete the session is drawn from the charging unit's battery, optionally with the timing of the session controlled by the aerosol delivery device, or (ii) the aerosol delivery device operates independently of the charging unit, and then midway through a session the aerosol delivery device is inserted into the charging unit, and then power to complete the session is drawn from the aerosol delivery device's battery (not the charging unit).

[0026] Regarding option (D), according to various embodiments, a determination may be made that the aerosol delivery device is not electrically connected to the charging unit. The aerosol delivery device may be powered by the aerosol delivery device's first electrical storage device (i.e., battery) when a first use session begins. However, if a determination is made during the same first use session at a later time t4 during the use session that the aerosol delivery device is subsequently electrically connected to the charging unit, the aerosol delivery device may be at least partially powered by the charging unit's second electrical energy storage device (i.e., battery). As a result, the battery life of the aerosol delivery device may be preserved, and further, a substantially immediate switch of power from the aerosol delivery device's battery to the charging unit's battery may occur when the aerosol delivery device is inserted into the charging unit. According to various embodiments, an essentially seamless transition of battery power management may be achieved when the aerosol delivery device is electrically connected to the charging unit mid-session, thereby also preserving the aerosol delivery device's battery life.

[0027] Option (E) relates to an operating mode in which the aerosol delivery device initially operates independently of the charging unit, i.e., the aerosol delivery device is not electrically / physically connected to the charging unit, and the aerosol delivery device is subsequently electrically / physically connected to the charging unit mid-session. Despite being connected to the charging unit, the aerosol delivery device continues to draw energy from the aerosol delivery device's battery rather than from the charging unit's battery (i.e., continues to operate independently of the charging unit).

[0028] Regarding option (E), according to various embodiments, a determination may be made that the aerosol delivery device is not electrically connected to the charging unit. The aerosol delivery device may be powered by the first electrical energy source when a use session is initiated. However, during the same use session, if a determination is then made at a later time during the use session that the aerosol delivery device is electrically connected to the charging unit, the aerosol delivery device may continue to be powered by the first electrical energy source.

[0029] According to various embodiments, the first and second controllers may be configured to prioritize the use of the larger electrical storage device of the charging unit, thereby extending the life of the electrical storage device of the aerosol delivery device, i.e., keeping the total number of cycles of the first electrical storage device to a minimum.

[0030] According to various embodiments, the first controller and the second controller may operate in a master / slave relationship. According to various embodiments, the controller of the charging unit may operate as the master controller, and the controller of the aerosol delivery device may operate as the slave controller. The controller (particularly the controller of the charging unit) may be configured to prioritize use of the battery of the charging unit whenever possible to power the aerosol delivery device. According to various embodiments, the battery of the charging unit may have a maximum capacity greater than the maximum capacity of the battery of the aerosol delivery device. The battery of the charging unit may be a lithium cobalt oxide (LiCoO2) battery, a lithium manganese oxide (LiMn2O4) battery, a lithium nickel manganese cobalt oxide (LiNi x Mn y CO zThe battery of the aerosol delivery device may include a lithium iron phosphate (LiFePO4) battery or a lithium titanate or lithium titanium oxide (LTO) battery.

[0031] The battery of the aerosol delivery device may have a capacity of ≦200 mAh, and the battery of the charging unit may have a capacity of ≧1000 mAh. Thus, the battery of the charging unit may have at least five times the capacity of the battery of the aerosol delivery device. Furthermore, it may be possible to recharge the battery of the aerosol delivery device relatively few times before the battery's performance begins to deteriorate. Therefore, it may be desirable to limit the number of times the battery of the aerosol delivery device is recharged. According to various embodiments by following the approaches discussed above, the life of the battery of the aerosol delivery device can be extended as much as possible, for example, the total number of recharge cycles experienced by the battery of the aerosol delivery device can be kept to a minimum to extend the performance of the aerosol delivery device.

[0032] The first controller may comprise a first microcontroller or a first microprocessor, and the second controller may comprise a second microcontroller or a second microprocessor.

[0033] Optionally, according to option (C), the system further comprises a notification unit configured to provide a notification to the user in response to the first electrical energy storage device having insufficient energy to complete the first usage session. Optionally, the notification is a tactile notification.

[0034] Optionally, according to option (D), the first controller is further configured to (i) determine that the aerosol delivery device is subsequently electrically disconnected from the charging unit at a later time t5 during the first use session, and (ii) cause the aerosol delivery device to be powered by the first electrical storage device.

[0035] Optionally, either the first controller and / or the second controller is configured to (i) determine that the aerosol delivery device is subsequently electrically connected to the charging unit at a later time t6 during the first use session, and (ii) cause the aerosol delivery device to be at least partially powered by the second electrical storage device to continue the first use session.

[0036] Optionally, t6>t5>t4>t3. In other words, time t5 is followed by time t6, time t4 is followed by time t5, and time t3 is followed by time t4.

[0037] Optionally, according to option (D), either the first controller and / or the second controller is further configured to (i) determine that the first use session has been completed, (ii) determine that the aerosol delivery device is electrically connected to the charging unit, (iii) optionally determine that it is desirable to perform a second use session, and (iv) determine whether the first electrical energy storage device and / or the second electrical energy storage device contains sufficient electrical energy to energize the aerosol delivery device to initiate and optionally complete the second use session.

[0038] Optionally, according to option (D), the first controller is further configured to (i) determine that the first use session has been completed, (iii) determine that the aerosol delivery device is electrically disconnected from the charging unit, (iii) optionally determine that it is desirable to perform a second use session, and (iv) determine whether the first electrical energy storage device contains sufficient electrical energy to energize the aerosol delivery device to initiate and optionally complete the second use session.

[0039] Optionally, according to option (C) and / or option (E), when the first electrical energy storage device energizes the aerosol delivery device and the aerosol delivery device is electrically connected to the charging unit, the first controller or the second controller is configured to terminate the usage session when a charge level of the first electrical energy device storage reaches a shutdown threshold. Optionally, the first electrical energy storage device has a shutdown threshold that provides sufficient energy to allow the first controller to perform charging communication with the charging unit.

[0040] Optionally, according to option (C) and / or option (E), when the first electrical energy storage device energizes the aerosol delivery device and the aerosol delivery device is connected to the charging unit, the first controller or the second controller is configured to control the second electrical energy storage device to energize the aerosol delivery device when a charge level of the first electrical energy storage device reaches a shutdown threshold.

[0041] Optionally, according to option (C) and / or option (E), the first controller or the second controller is configured to determine a charge level of the second electrical energy storage device in response to the further usage session being initiated.

[0042] Optionally, in response to the second electrical energy storage device having a charge level above a threshold, the first controller or the second controller is configured to control the second electrical energy storage device to energize the aerosol delivery device for a further use session.

[0043] Optionally, in response to the second electrical energy storage device having a charge level below the threshold, the first controller or the second controller is configured to control the first electrical energy storage device to energize the aerosol delivery device for a further use session.

[0044] In embodiments according to option (C) and / or option (E), a notification unit is provided that provides a notification to the user in response to a subsequent use session being initiated while the aerosol delivery device is connected to the charging unit and in response to the first energy storage having insufficient energy to complete the aerosol generation session.

[0045] Optionally, the first electrical energy storage device comprises either (i) a lithium iron phosphate (LiFePO4) battery, or (ii) a lithium titanate or lithium titanium oxide (LTO) battery.

[0046] Optionally, the first electrical energy storage device has a capacity in the range of (i) <50 mAh, (ii) 50-100 mAh, (iii) 100-150 mAh, or (iv) 150-200 mAh.

[0047] Optionally, the second electrical energy storage device is (i) a lithium cobalt oxide (LiCoO2) battery, (ii) a lithium manganese oxide (LiMn2O4) battery, (iii) a lithium nickel manganese cobalt oxide (LiNi x Mn yCO z O2) battery, or (iv) a lithium nickel cobalt aluminum oxide (LiNiCoAlO2) battery.

[0048] Optionally, the second electrical energy storage device has a capacity in the range of: (i) 1000-1100 mAh, (ii) 1100-1200 mAh, (iii) 1100-1200 mAh, (iv) 1200-1300 mAh, (v) 1300-1400 mAh, (vi) 1400-1500 mAh, (vii) 1500-2000 mAh, or (viii) >2000 mAh.

[0049] Optionally, the first electrical energy storage device has a capacity C1 and the second electrical energy storage device has a capacity C2, and the ratio C2 / C1 is in the range of (i) <2, (ii) 2 to 3, (iii) 3 to 4, (iv) 4 to 5, (v) 5 to 6, (vi) 6 to 7, (vii) 7 to 8, (viii) 8 to 9, (ix) 9 to 10, (x) 10 to 11, (xi) 11 to 12, (xii) 12 to 13, (xiii) 13 to 14, (xiv) 14 to 15, (xv) 15 to 20, or (xvi) > 20.

[0050] According to one aspect, there is provided a method of operating an aerosol delivery system, comprising: providing an aerosol delivery device comprising a first controller and a first electrical energy storage device; providing a charging unit for charging the aerosol delivery device, the charging unit comprising a second controller and a second electrical energy storage device; determining a connection state between the aerosol delivery device and the charging unit and configuring the first controller and / or the second controller to cause the aerosol delivery device to enter an operation mode, wherein in the operation mode, any of the following options (A) and / or (B) and / or (C) and / or (D) and / or (E) apply; According to option (A), if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the method further includes configuring the first controller and / or the second controller to cause the aerosol delivery device to enter a first operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate and optionally complete a first use session; According to option (B), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the method further includes configuring the first controller to cause the aerosol delivery device to enter a second operating mode, wherein in the second operating mode, the aerosol delivery device is powered by the first electrical energy storage device; According to option (C), if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the method further includes configuring the first controller and / or the second controller to cause the aerosol delivery device to enter a third operating mode, wherein in the third mode, the aerosol delivery device is energized by the second electrical energy storage device to initiate a first use session at time t1; the method further comprising determining at a later time t2 during the first use session that the aerosol delivery device is thereafter subsequently electrically disconnected from the charging unit, and then configuring the first controller to cause the aerosol delivery device to be powered by the first electrical storage device; According to option (D), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the method further includes configuring the first controller to cause the aerosol delivery device to enter a fourth operating mode, wherein in the fourth operating mode, the aerosol delivery device is energized by the first electrical energy storage device to initiate a first use session at time t3; the method further comprising determining at a later time t4 during the first use session that the aerosol delivery device is thereafter continuously electrically connected to the charging unit, and then configuring either the first controller and / or the second controller to (a) cause the aerosol delivery device to be at least partially powered by the second electrical storage device to continue and optionally complete the first use session, or (b) cause the aerosol delivery device to be powered by the first electrical storage device; According to option (E), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fifth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a usage session; A method is provided in which, if the first controller and / or the second controller determine that the aerosol delivery device is electrically connected to the charging unit at a later time during the use session, the first controller is configured to control the first electrical energy storage device to continue to energize the aerosol delivery device.

[0051] According to another aspect, there is provided an aerosol delivery device comprising a first controller and a first electrical energy storage device, the aerosol delivery device being connectable, during use, to a charging unit for charging the aerosol delivery device, the charging unit comprising an aerosol delivery device comprising a second controller and a second electrical energy storage device; the first controller and / or the second controller are configured to determine a connection state between the aerosol delivery device and the charging unit and cause the aerosol delivery device to enter an operating mode to which any of option (A), option (B), option (C), option (D), and / or option (E) applies; According to option (A), if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller are configured to cause the aerosol delivery device to enter a first operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate and optionally complete a first use session; According to option (B), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a second operating mode, in which the aerosol delivery device is powered by the first electrical energy storage device; According to option (C), if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller are configured to cause the aerosol delivery device to enter a third operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate a first use session at time t1; the first controller is configured to determine at a later time t2 during the first use session that the aerosol delivery device is subsequently electrically disconnected from the charging unit and then cause the aerosol delivery device to be powered by the first electrical storage device; According to option (D), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fourth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a first use session at time t3; either the first controller and / or the second controller determines that at a later time t4 during the first use session, the aerosol delivery device is thereafter continuously electrically connected to the charging unit, and is then configured to: (a) cause the aerosol delivery device to be at least partially powered by the second electrical storage device to continue and optionally complete the first use session, or (b) cause the aerosol delivery device to be powered by the first electrical storage device; According to option (E), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fifth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a usage session; An aerosol delivery device is provided, wherein if the first controller and / or the second controller determine that the aerosol delivery device is electrically connected to the charging unit at a later time during the use session, the first controller is configured to control the first electrical energy storage device to continue to supply energy to the aerosol delivery device.

[0052] According to another aspect, there is provided a charging unit including a second controller and a second electrical energy storage device, the charging unit connectable to the aerosol delivery device during use to charge the aerosol delivery device, the aerosol delivery device including a first controller and a first electrical energy storage device. the first controller and / or the second controller are configured to determine a connection state between the aerosol delivery device and the charging unit and cause the aerosol delivery device to enter an operation mode, in which any of option (A) and / or option (B) and / or option (C) and / or option (D) and / or option (E) is applied; According to option (A), if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller are configured to cause the aerosol delivery device to enter a first operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate and optionally complete a first use session; According to option (B), if the first controller and / or the second controller determine that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a second operating mode, in which the aerosol delivery device is powered by the first electrical energy storage device; According to option (C), if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller are configured to cause the aerosol delivery device to enter a third operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate a first use session at time t1; the first controller is configured to determine at a later time t2 during the first use session that the aerosol delivery device is subsequently electrically disconnected from the charging unit and then cause the aerosol delivery device to be powered by the first electrical storage device; According to option (D), if the first controller / second controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fourth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a first use session at time t3; either the first controller and / or the second controller determines that at a later time t4 during the first use session, the aerosol delivery device is thereafter subsequently electrically connected to the charging unit, and is then configured to: (a) cause the aerosol delivery device to be at least partially powered by the second electrical storage device to continue and optionally complete the first use session, or (b) cause the aerosol delivery device to be powered by the first electrical storage device; According to option (E), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fifth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a usage session; A charging unit is provided in which, if the first controller and / or the second controller determine that the aerosol delivery device is electrically connected to the charging unit at a later time during the use session, the first controller is configured to control the first electrical energy storage device to continue to energize the aerosol delivery device.

[0053] Various embodiments will now be described, by way of example only, with reference to the accompanying drawings, in which: [Brief explanation of the drawings]

[0054] [Figure 1] FIG. 1 illustrates an aerosol delivery system including an aerosol delivery device located within a charging unit. [Figure 2] 1 is a flowchart illustrating various modes of operation of an aerosol delivery device according to various embodiments. [Figure 3] 10 is a flowchart illustrating various modes of operation of a charging unit according to various embodiments. DETAILED DESCRIPTION OF THE INVENTION

[0055] According to the present disclosure, a "non-combustion" aerosol delivery system is one in which the constituent aerosol-generating materials (or components thereof) of the aerosol delivery system are not combusted or burned to facilitate delivery of at least one substance to a user.

[0056] In some embodiments, the delivery system is a non-combustion aerosol delivery system, such as a powered non-combustion aerosol delivery system.

[0057] In some embodiments, the non-combustion aerosol delivery system is an electronic cigarette, also known as a vaping device or electronic nicotine delivery system (END), although it should be noted that the presence of nicotine in the aerosol-generating material is not a requirement.

[0058] In some embodiments, the non-combustion aerosol delivery system is an aerosol-generating material heating system, also known as a non-combustion heating system. One example of such a system is a tobacco heating system.

[0059] In some embodiments, the non-combustion aerosol delivery system is a hybrid system for generating an aerosol using a combination of aerosol-generating materials, one or more of which may be heated. Each of the aerosol-generating materials may be, for example, in solid, liquid, or gel form, and may or may not contain nicotine. In some embodiments, the hybrid system includes a liquid or gel aerosol-generating material and a solid aerosol-generating material. The solid aerosol-generating material may include, for example, tobacco or a non-tobacco product.

[0060] Typically, a non-combustion aerosol delivery system may include a non-combustion aerosol delivery device and a consumable item for use with the non-combustion aerosol delivery device.

[0061] In some embodiments, the present disclosure relates to consumables that include aerosol-generating materials and are configured for use with non-combustion aerosol delivery devices. These consumables may be referred to as articles throughout this disclosure.

[0062] In some embodiments, a non-combustion aerosol delivery system, such as a non-combustion aerosol delivery device, can include a power source and a controller. The power source can be, for example, an electrical power source or a heat-generating power source. In some embodiments, the heat-generating power source includes a carbon substrate that can be energized to deliver power in the form of heat to an aerosol-generating material or a heat-transfer material proximate the heat-generating power source.

[0063] In some embodiments, the non-combustion aerosol delivery system may include an area for receiving a consumable, an aerosol generator, an aerosol-generating area, a housing, a mouthpiece, a filter, and / or an aerosol modifier.

[0064] In some embodiments, consumables for use with non-combustion aerosol delivery devices may include aerosol-generating materials, aerosol-generating material storage regions, aerosol-generating material transfer components, aerosol generators, aerosol-generating regions, housings, packaging, filters, mouthpieces, and / or aerosol modifiers.

[0065] An aerosol-forming material is a material that can generate an aerosol when, for example, heated, irradiated, or otherwise energized. The aerosol-forming material may be, for example, in the form of a solid, liquid, or semi-solid (such as a gel), which may or may not contain an active agent and / or flavoring.

[0066] The aerosol-generating material may include a binder and an aerosol-forming agent. Optionally, an active agent and / or a filler may also be present. Optionally, a solvent, such as water, may also be present, and one or more other components of the aerosol-generating material may or may not be soluble in the solvent. In some embodiments, the aerosol-generating material is substantially free of plant material. In particular, in some embodiments, the aerosol-generating material is substantially free of tobacco.

[0067] The aerosol-generating material may include or be an aerosol-generating film. The aerosol-generating film may be formed by combining a binder, such as a gelling agent, with a solvent, such as water, an aerosol-forming agent, and one or more other ingredients, such as an active agent, to form a slurry, and then heating the slurry to volatilize at least a portion of the solvent to form the aerosol-generating film. The slurry may be heated to remove at least about 60%, 70%, 80%, 85%, or 90% by weight of the solvent. The aerosol-generating film may be a continuous film or a discontinuous film, such as a construction of individual portions of film on a substrate. The aerosol-generating film may be substantially free of tobacco.

[0068] The aerosol-generating film may include or be a sheet that can optionally be shredded to form shredded sheets.

[0069] The aerosol-generating materials may include one or more active agents and / or flavorings, one or more aerosol former materials, and optionally one or more other functional materials.

[0070] An aerosol generator is a device configured to generate an aerosol from an aerosol-generating material. In some embodiments, the aerosol generator is a heater configured to subject the aerosol-generating material to thermal energy to release one or more volatile substances from the aerosol-generating material and form an aerosol. In some embodiments, the aerosol generator is configured to generate an aerosol from the aerosol-generating material without heating. For example, the aerosol generator may be configured to subject the aerosol-generating material to one or more of vibration, elevated pressure, or electrostatic energy.

[0071] A consumable is an article containing or consisting of an aerosol-generating material, some or all of which is intended to be consumed during use by a user. A consumable may include one or more other components, such as an aerosol-generating material storage area, an aerosol-generating material transfer component, an aerosol-generating area, a housing, a packaging material, a mouthpiece, a filter, and / or an aerosol modifier. A consumable may also include an aerosol generator, such as a heater, that generates heat to cause the aerosol-generating material to generate an aerosol upon use. The heater may include, for example, a combustible material, a material heatable by electrical conduction, or a susceptor.

[0072] The susceptor is a heating material that can be heated by penetration by a varying magnetic field, such as an alternating magnetic field. The susceptor can be a conductive material, such that penetration of the conductive material by the varying magnetic field causes induction heating of the heating material. The heating material can be a magnetic material, such that penetration of the magnetic material by the varying magnetic field causes magnetic hysteresis heating of the heating material. The susceptor can be both conductive and magnetic, such that the susceptor can be heated by both heating mechanisms. An aerosol delivery device configured to generate a varying magnetic field is referred to herein as a magnetic field generator.

[0073] The non-combustion aerosol delivery system may comprise a modular assembly that includes both a reusable aerosol delivery device and a replaceable aerosol product article. In some implementations, the non-combustion aerosol delivery device may comprise a power source and a controller (i.e., control circuitry). The power source may comprise an electrical source, such as, for example, a battery or a rechargeable battery. In some implementations, the non-combustion aerosol delivery device may also comprise an aerosol generating component. However, in other implementations, the aerosol product article may comprise, in part or entirely, the aerosol generating component.

[0074] Induction heating is a process in which a conductive object, called a susceptor, is heated by penetrating a varying magnetic field through the object. This process is explained by Faraday's law of induction and Ohm's law. An induction heater may include an electromagnet and a device for passing a varying current, such as an alternating current, through the electromagnet. When the electromagnet and the object to be heated are properly positioned relative to one another, such that the resulting varying magnetic field produced by the electromagnet penetrates the object, one or more eddy currents are generated within the object. The object has a resistance to the flow of current, and when such eddy currents are generated within the object, their flow against the object's electrical resistance heats the object. This process is called Joule heating, ohmic heating, or resistive heating.

[0075] Magnetic hysteresis heating is a process by which an object made of a magnetic material is heated by penetrating a changing magnetic field into the object. Magnetic materials can be thought of as containing many atomic-scale magnets, or magnetic dipoles. When a magnetic field penetrates such a material, the magnetic dipoles align with the field. Thus, when a changing magnetic field, such as an alternating magnetic field generated by an electromagnet, penetrates a magnetic material, the orientation of the magnetic dipoles changes with the applied changing magnetic field. Such magnetic dipole reorientation causes the generation of heat within the magnetic material.

[0076] When an object is both conductive and magnetic, a fluctuating magnetic field penetrating the object can induce both Joule heating and magnetic hysteresis heating within the object. Furthermore, the use of magnetic materials can strengthen the magnetic field, which can enhance Joule heating.

[0077] Various embodiments will now be described in more detail.

[0078] 1 illustrates an aerosol delivery system comprising an aerosol delivery device 100, which is shown positioned within a cavity of a charging unit 101. Aerosol delivery device 100 is configured to generate aerosol from an aerosol production item or consumable (not shown) that may be inserted into aerosol delivery device 100 during use.

[0079] The aerosol delivery device 100 may comprise an elongated structure extending along a longitudinal axis. The aerosol delivery device 100 has a proximal end that is closest to a user (e.g., the user's mouth) when used by the user to inhale the aerosol generated by the aerosol delivery device 100. The aerosol delivery device 100 further comprises a distal end that is furthest from the user when in use. The proximal end may also be referred to as the mouth end. Thus, the aerosol delivery device 100 also defines a proximal direction that is oriented toward the user when in use, i.e., from the distal end to the proximal end. Furthermore, the aerosol delivery device 100 also defines a distal direction that is oriented away from the user when in use, i.e., from the proximal end to the distal end.

[0080] Aerosol delivery device 100 may be removably inserted into charging unit 101 to be charged. Charging unit 101 includes a cavity for receiving aerosol delivery device 100. Aerosol delivery device 100 may be inserted into the cavity through an opening. The cavity may also include a longitudinal opening. A portion of aerosol delivery device 100 may include a first side. One or more user-operable control elements, such as button 106, that can be used to operate aerosol delivery device 100 may be provided on the first side of aerosol delivery device 100. The first side of aerosol delivery device 100 may be received within the longitudinal opening provided in charging unit 101.

[0081] The cavity in charging unit 101 may have a cross-sectional profile that allows aerosol delivery device 100 to be inserted into charging unit 101 in only a single orientation. The outer profile of aerosol delivery device 100 may include an arcuate portion and a straight portion. The cross-sectional profile of the cavity provided within charging unit 101 may also include similar arcuate and straight portions. The straight portion of the cross-sectional profile of the cavity may correspond to the longitudinal opening.

[0082] Aerosol delivery device 100 includes an opening that leads into a heating chamber. A rod-shaped aerosol product article containing an aerosol-generating material may be inserted through the opening and held within the heating chamber of aerosol delivery device 100. The aerosol product article may be heated by the heating element, resulting in the generation of an aerosol or other inhalable medium that may then be inhaled by a user of aerosol delivery device 100.

[0083] Charging unit 101 may include a slidable lid 103. When aerosol delivery device 100 is inserted into charging unit 101 to be recharged, slidable lid 103 may be closed to cover an opening into aerosol delivery device 100. Charging unit 101 may include a user interface, such as a display 108.

[0084] The charging unit 101 includes a controller (not shown) configured to control various aspects of the charging unit 101. In particular, the controller located within the charging unit 101 may be configured to control an electrical energy storage device of the charging unit 101. The electrical energy storage device may comprise, for example, a battery. The controller located within the charging unit 101 may include a central processing unit (CPU), a microprocessor, or a microcontroller (MCU).

[0085] The battery of the charging unit 101 may be a lithium cobalt oxide (LiCoO2) battery, a lithium manganese oxide (LiMn2O4) battery, a lithium nickel manganese cobalt oxide (LiNi x Mn y CO z The battery may include a lithium nickel cobalt aluminum oxide (LiNiCoAlO2) battery, or a lithium nickel cobalt aluminum oxide (LiNiCoAlO2) battery. The battery may have a capacity of ≧1000 mAh.

[0086] Aerosol delivery device 100 may also include a controller (not shown) configured to control various aspects of aerosol delivery device 100. In particular, a controller located within aerosol delivery device 100 may be configured to control the electrical energy source of aerosol delivery device 100. The controller may include a central processing unit (CPU), a microprocessor, or a microcontroller (MCU). The electrical energy storage device may include a battery. For example, the battery of aerosol delivery device 100 may include a lithium iron phosphate (LiFePO4) battery or a lithium titanate or lithium titanium oxide (LTO) battery. The battery may have a capacity of ≦200 mAh.

[0087] The respective controllers of the charging unit 101 and the aerosol delivery device 100 may be configured to communicate with each other when the aerosol delivery device 100 is electrically connected to the charging unit 101, i.e., when the aerosol delivery device 100 is inserted or docked within the charging unit 101.

[0088] It is also contemplated that the respective controllers may be configured to wirelessly communicate with each other when aerosol delivery device 100 is away from charging unit 101. Wireless communication may be enabled by Wireless Fidelity (WiFi), Bluetooth, any other suitable Wireless Local Area Network (WLAN), Wireless Personal Area Network (WPAN), or Wireless Sensor Actor Network (WSAN) protocol.

[0089] In a situation where the aerosol delivery device 100 is inserted into and secured to the charging unit 101, resulting in an electrical connection between the aerosol delivery device 100 and the charging unit 101, the controller of the charging unit 101 (which may hereinafter be referred to as the “second” controller) may be configured to operate as a master controller. In contrast, the controller of the aerosol delivery device 100 (which may hereinafter be referred to as the “first” controller) may be configured to operate as a slave controller. According to such an embodiment, various decisions that could potentially be made by either the first controller or the second controller may be made preferentially by the second controller acting as the master controller. For example, according to one embodiment, an operating mode that includes supplying electrical energy from the battery of the charging unit 101 to the battery of the aerosol delivery device 100 may be made after it is determined that the aerosol delivery device 100 has been inserted into the charging unit 101 during a use session. According to one embodiment, the decision may be made by the second controller acting as the master controller.

[0090] However, other embodiments are contemplated in which the determination that aerosol delivery device 100 has been inserted into charging unit 101 during a use session may be made by a first controller located within aerosol delivery device 100. For example, further embodiments are contemplated in which the determination may be made first by a second controller, and then that determination may be confirmed or checked by the first controller (or vice versa).

[0091] According to one embodiment, when a user initiates a session, electrical energy may be supplied from a battery in the charging unit 101 to heat one or more heating elements located within the aerosol delivery device 100, resulting in the generation of an aerosol or other inhalable medium, which may then be inhaled by the user of the aerosol delivery device 100.

[0092] In situations where aerosol delivery device 100 is remote or separate from charging unit 101, each of the respective controllers of aerosol delivery device 100 and charging unit 101 may operate as a master controller. In this situation, when a session is initiated by a user, the battery of the aerosol delivery device provides energy to heat the heating element, which may result in the generation of an aerosol or other inhalable medium, which may then be inhaled by the user of aerosol delivery device 100.

[0093] It will be appreciated that charging unit 101 and aerosol delivery device 100 can move in and out of a master / slave relationship whenever the aerosol delivery device is inserted into or removed from charging unit 101 .

[0094] Details of the operating modes of aerosol delivery device 100 and charging unit 101 during use are described in more detail herein.

[0095] 2 shows a flow chart of an operational mode of aerosol delivery device 100 according to various embodiments. In particular, FIG. 2 shows aspects of the controller logic used by the controller of aerosol delivery device 100.

[0096] The controller of aerosol delivery device 100 may initially operate in idle state 200 until an operational command is received by the controller of aerosol delivery device 100. The operational command may occur when a user activates one or more of buttons 106 on aerosol delivery device 100, for example, to begin a use session.

[0097] When an operational command is received by the controller of aerosol delivery device 100, the controller enters a first state 210, which corresponds to a situation where aerosol delivery device 100 is not inserted into charging unit 101 and a session has not yet started. In first state 210 (i.e., aerosol delivery device 100 is not inserted into charging unit 101 and a session has not yet started), the controller of aerosol delivery device 100 first monitors the battery level of aerosol delivery device 100 to check the voltage and / or power level of the battery of aerosol delivery device 100 to determine whether there is enough charge in the battery to start (but not necessarily complete) a session that may be initiated by a user.

[0098] The battery of aerosol delivery device 100 may be considered fully charged if it meets acceptable threshold criteria. According to various embodiments, the battery of aerosol delivery device 100 may include either a lithium iron phosphate (LiFePO4) battery or a lithium titanate or lithium titanium oxide (LTO) battery. The battery of aerosol delivery device 100 may have a capacity within the following ranges when fully charged: (i) <50 mAh, (ii) 50-100 mAh, (iii) 100-150 mAh, or (iv) 150-200 mAh. According to various embodiments, the battery of the aerosol delivery device 100 may be considered sufficiently charged to at least begin a usage session if the determined current capacity of the battery exceeds a threshold within the following ranges: (i) <20 mAh, (ii) 20-40 mAh, (iii) 40-60 mAh, (iv) 60-80 mAh, (v) 80-100 mAh, (vi) 100-120 mAh, (vii) 120-140 mAh, (viii) 140-160 mAh, (ix) 160-180 mAh, or (x) 180-200 mAh.

[0099] If, after a session is initiated by a user, it is determined that the battery of aerosol delivery device 100 is sufficiently charged and that aerosol delivery device 100 is not inserted into charging unit 101, the controller of aerosol delivery device 100 enters third state 230, which corresponds to a situation in which aerosol delivery device 100 is not inserted into charging unit 101 but a session has nevertheless been initiated. If aerosol delivery device 101 is already inserted into charging unit 101 or if aerosol delivery device 100 is inserted into charging unit 101 while the controller is in first state 210 (i.e., aerosol delivery device 100 is not inserted into charging unit 101 and a session has not yet been initiated), the controller of aerosol delivery device 100 may enter second state 220, which corresponds to a situation in which aerosol delivery device 100 is inserted into charging unit 101 but a session has not yet been initiated.

[0100] In third state 230 (i.e., aerosol delivery device 100 is not inserted into charging unit 101, but a session has nevertheless been initiated), the battery of aerosol delivery device 100 provides energy to heat the heating element, which may result in the generation of an aerosol or other inhalable medium, which may then be inhaled by a user of aerosol delivery device 100. In third state 230 (i.e., aerosol delivery device 100 is not inserted into charging unit 101, but a session has nevertheless been initiated), the controller of aerosol delivery device 100 may record the battery level or current battery capacity of aerosol delivery device 100.

[0101] When the session ends (e.g., the session cycle ends, the user finishes, or the battery is no longer full), the controller may return to first state 210 (i.e., aerosol delivery device 100 is not inserted into charging unit 101 and a session has not yet started). If aerosol delivery device 100 is inserted into charging unit 101 after a session has started, the controller may enter fourth state 240, which corresponds to a situation where aerosol delivery device 100 is inserted into charging unit 101 and a use session is started.

[0102] In second state 220 (i.e., when aerosol delivery device 100 is inserted into charging unit 101 but a use session has not yet begun), either the controller of aerosol delivery device 100 and / or the controller of charging unit 101 may check the battery level of aerosol delivery device 100 and / or the charging unit 101 to determine whether the battery of aerosol delivery device 100 and / or the battery of charging unit 101 are sufficiently charged to support a use session. If it is determined that the battery of aerosol delivery device 100 and / or the battery of charging unit 101 are sufficiently charged to support a use session, the controller of aerosol delivery device 100 may return to fourth state 240 (i.e., when aerosol delivery device 100 is inserted into charging unit 101 and a use session has begun).

[0103] If the aerosol delivery device 100 is removed from the charging unit 101 while in the second state 220 (i.e., the aerosol delivery device 100 is inserted into the charging unit 101 but the session has not yet started), the controller of the aerosol delivery device 100 may enter the first state 210 (i.e., the aerosol delivery device 100 is not inserted into the charging unit 101 and the session has not yet started).

[0104] The controller of aerosol delivery device 100 may be configured to remain in fourth state 240 (i.e., aerosol delivery device 100 is inserted into charging unit 101 and a use session is initiated) while a use session is occurring. When the controller of aerosol delivery device 100 is in fourth state 240, aerosol delivery device 100 is located within charging unit 100, aerosol delivery device 100 is electrically connected to charging unit 100, and a use session is occurring. When the controller of aerosol delivery device 100 is in fourth state 240, the controller of aerosol delivery device 100 may be configured to periodically record the battery level or current capacity of the battery of aerosol delivery device 100. In a fourth state 240 (i.e., the aerosol delivery device 100 is inserted into the charging unit 101 and a use session is initiated), the battery of the charging unit 101 may be used to provide energy to heat the heating element, resulting in the generation of an aerosol or other inhalable medium, which may then be inhaled by a user of the aerosol delivery device 100.

[0105] When the controller of the aerosol delivery device 100 is in the fourth state 240 (i.e., the aerosol delivery device 100 is inserted into the charging unit 101 and a use session is initiated) and the session ends (e.g., the session cycle ends, the user ends the session, or the battery level of either the aerosol delivery device 100 and / or the charging unit 101 is no longer sufficient to continue executing the use session) and the aerosol delivery device 100 is not removed from the charging unit 101, the controller of the aerosol delivery device 100 may be configured to enter the second state 220 (i.e., the aerosol delivery device 100 is inserted into the charging unit 101 but a use session is not being executed). When the aerosol delivery device 100 is in the second state 220 (i.e., when the aerosol delivery device 100 is inserted into the charging unit 101 but no session is running), and then the aerosol delivery device 100 is removed from the charging unit 101, the controller of the aerosol delivery device 100 may be configured to enter the first state 210 (i.e., when the aerosol delivery device 100 is not inserted into the charging unit 101 and no session is running).

[0106] According to various embodiments, if the controller of the aerosol delivery device 100 is in the fourth state 240 and the aerosol delivery device 100 is removed from the charging unit 101 by the user midway through a session, the controller of the aerosol delivery device 100 may then be configured to enter the third state 230 (i.e., the aerosol delivery device 100 is not inserted into the charging unit 101, but the session has nevertheless begun), and the usage session may be configured to continue.

[0107] 3 shows a flow diagram illustrating various modes of operation of the controller of charging unit 101 according to various embodiments. More specifically, the flow diagram shown in FIG. 3 shows the controller logic of charging unit 101.

[0108] The controller of the charging unit 101 may start in a fifth (idle) state 250 until an operational command is received by the controller of the aerosol delivery device 100 and / or the charging unit 101. The operational command can be, for example, when a charging cable is inserted into the charging unit 101 or when a user activates one or more of the buttons 106 on the aerosol delivery device 106 or a button on the charging unit 101.

[0109] When the operation command is received by the controller of the charging unit 101, the controller of the charging unit 101 may be configured to enter a sixth state 260, which corresponds to a situation where the aerosol delivery device 100 is not inserted into the charging unit 101 and a use session has not been initiated. In the sixth state 260 (i.e., the aerosol delivery device 100 is not inserted into the charging unit 101 and a use session has not been initiated), the controller of the charging unit 101 may be configured to check the battery level or current capacity of the charging unit 101 and whether a charging cable (e.g., a USB cable) that can be connected to an external power source is inserted into the charging unit 101.

[0110] If a charging cable is inserted into the charging unit 101 while the controller of the charging unit 101 is in the sixth state 260 (i.e., the charging unit 101 is not electrically connected to the aerosol delivery device 100 and a use session has not been initiated), the battery of the charging unit 101 may be configured to be charged by an external power source. If the aerosol delivery device 100 is already inserted into the charging unit 101 when the operating command is received, or if the aerosol delivery device 100 is subsequently inserted into the charging unit 101 while the controller of the charging unit 101 is in the sixth state 260 (i.e., the aerosol delivery device 100 is not inserted into the charging unit 101 and a use session has not been initiated), the controller of the charging unit 101 may be configured to enter the seventh state 270 (i.e., the aerosol delivery device 100 is inserted into the charging unit 101, but a use session has not yet been initiated). According to various embodiments, the seventh state 270 relates to a situation in which the aerosol delivery device 100 is inserted into the charging unit 101 and is electrically connected to the charging unit 101, but a usage session has not yet begun.

[0111] In the seventh state 270 (i.e., the aerosol delivery device 100 is inserted into the charging unit 101 but a use session has not yet begun), the controller of the charging unit 101 may be configured to again check whether the aerosol delivery device 100 is still connected to the charging unit 101. If it is determined that the aerosol delivery device 100 has been removed from the charging unit 101, or if it is determined that the aerosol delivery device 100 has subsequently been removed from the charging unit 101 while in the seventh state 270 (i.e., the aerosol delivery device 100 is inserted into the charging unit 101 but a use session has not yet begun), the controller of the charging unit 101 may return to the sixth state 260 (i.e., the charging unit 101 is not electrically connected to the aerosol delivery device and a use session has not yet begun).

[0112] In a seventh state 270 when the aerosol delivery device 100 is connected to the charging unit 101 (i.e., the aerosol delivery device 100 is inserted into the charging unit 101 but a use session has not yet begun), the controller of the charging unit 101 may be configured to check the battery energy or current capacity of the battery in the charging unit 101 and / or the battery in the aerosol delivery device 100. If, with the charging cable plugged in, it is determined that the battery in the aerosol delivery device 100 is below an acceptable threshold criterion, the battery in the aerosol delivery device 100 may be recharged via the charging cable. For example, the battery in the aerosol delivery device 100 may have a capacity within the range of (i) <50 mAh, (ii) 50-100 mAh, (iii) 100-150 mAh, or (iv) 150-200 mAh when fully charged. According to various embodiments, the battery of the aerosol delivery device 100 may be deemed to be below an acceptable threshold standard and therefore in need of recharging if the determined current capacity of the battery is determined to be within the following ranges: (i) <20 mAh, (ii) 20-40 mAh, (iii) 40-60 mAh, (iv) 60-80 mAh, (v) 80-100 mAh, (vi) 100-120 mAh, (vii) 120-140 mAh, (viii) 140-160 mAh, (ix) 160-180 mAh, or (x) 180-200 mAh.

[0113] In situations where the battery of the charging unit 101 is also determined to be below the acceptable threshold, the battery of the charging unit 101 may also be recharged via the charging cable. The battery of the charging unit 101 may be charged simultaneously with the battery of the aerosol delivery device 100. According to various embodiments, power from an external power source may be supplied in a pulsed manner to either the battery of the aerosol delivery device 100 and / or the battery of the charging unit 100. According to one embodiment, charging pulses may be supplied alternately between the aerosol delivery device 100 and the charging unit 101, such that at any particular time, either the battery of the aerosol delivery device 100 is being charged by the external power source or, alternatively, the battery of the charging unit 101 is being charged by the external power source, such that the batteries of the aerosol delivery device 100 and the charging unit 101 are not being charged simultaneously. Embodiments are contemplated in which the battery of the aerosol delivery device 100 has a lower capacity than the battery of the charging unit 101, thereby allowing the battery of the aerosol delivery device 100 to be fully recharged before the battery of the charging unit 101 is fully recharged.

[0114] According to various embodiments, the battery (or more generally, the electrical energy storage device) of the charging unit 101 may be: (i) a lithium cobalt oxide (LiCoO) battery; (ii) a lithium manganese oxide (LiMnO) battery; or (iii) a lithium nickel manganese cobalt oxide (LiNi x Mn y CO z02) battery, or (iv) a Lithium Nickel Cobalt Aluminum Oxide (LiNiCoAlO2) battery. According to various embodiments, the battery of the charging unit 101 may be recharged by an external power source if the determined capacity of the battery of the charging unit 101 is determined to be below a threshold value, the threshold value being within the following ranges: (i) 1000-1100 mAh, (ii) 1100-1200 mAh, (iii) 1100-1200 mAh, (iv) 1200-1300 mAh, (v) 1300-1400 mAh, (vi) 1400-1500 mAh, (vii) 1500-2000 mAh, or (viii) >2000 mAh.

[0115] According to various embodiments, the battery of the aerosol delivery device 100 and the battery of the charging unit 101 may optionally be charged individually, simultaneously, synchronously, or asynchronously via a charging cable or wireless charging interface when in the seventh state 270 (i.e., when the aerosol delivery device 100 is inserted into the charging unit 101 but a usage session has not yet begun).

[0116] When in the seventh state 270 (i.e., the aerosol delivery device 100 is inserted into the charging unit 101 but the use session has not yet begun), and when the controller of the charging unit 101 determines that the charging cable is not inserted into the charging unit 101 (or the wireless charging interface is not activated), and when it determines that the power level or current capacity of the battery of the aerosol delivery device 100 is below an acceptable threshold criterion, the battery of the aerosol delivery device 100 may be charged via the battery of the charging unit 101.

[0117] When a use session is initiated or initiated by the user (or otherwise) and the controller of the charging unit 101 is in the seventh state 270 (i.e., the aerosol delivery device 100 is inserted into the charging unit 101 but the use session has not yet begun), any charging of the battery of the aerosol delivery device 100 and / or the battery of the charging unit 101 that may have begun during the seventh state 270 may be disabled, and the controller of the charging unit 101 may be configured to enter the eighth state 280.

[0118] The controller of the charging unit 101 may be configured to remain in the eighth state 280 until the aerosol delivery device 100 is removed from the charging unit 101, the session is stopped, or is otherwise no longer active.

[0119] In a situation where the aerosol delivery device 100 is removed from the charging unit 101, the controller of the charging unit 101 may return to the sixth state 260 (i.e., the charging unit 101 is not electrically connected to the aerosol delivery device and a session has not been initiated). In a situation where the session has been stopped or is no longer active but the aerosol delivery device 100 remains inserted within the charging unit 101 and the aerosol delivery device 100 remains electrically connected to the charging unit 101, the controller of the charging unit 101 may return to the seventh state 270 (i.e., the aerosol delivery device 100 is inserted into the charging unit 101 but a usage session is not being performed).

[0120] According to various embodiments, criteria that may be used to determine an inactive session include the session being terminated (or desired to be terminated) by a user activating one or more buttons 106 on aerosol delivery device 100 and / or one or more buttons on charging unit 101. Another criterion for determining that a session is inactive or otherwise desired to be stopped includes a determination made by the controller of charging unit 101 and / or the controller of aerosol delivery 100 that either the battery of aerosol delivery device 100 and / or the battery of charging unit 101 is depleted.

[0121] With reference to the flowcharts shown in both Figures 2 and 3, it will be understood that when the controller of the aerosol delivery device 100 is in the first state 210 (i.e., the aerosol delivery device 100 is not located in the charging unit 101 and a session has not been initiated), the controller of the charging unit 101 is in the sixth state 260 (i.e., the charging unit 101 is not electrically connected to the aerosol delivery device 100 and a session has not been initiated).

[0122] When the controller of the aerosol delivery device 100 is in the second state 220 (i.e., the aerosol delivery device 100 is inserted into the charging unit 101, but a usage session has not yet started), the controller of the charging unit 101 is in the seventh state 270 (i.e., the aerosol delivery device 100 is inserted into the charging unit 101, but a usage session has not yet started). In this situation, with the charging cable plugged in, if it is determined that the battery in the aerosol delivery device 100 is below an acceptable threshold criterion, the battery of the aerosol delivery device 100 may be recharged via the charging cable. If it is determined that the battery of the charging unit 101 is below an acceptable threshold criterion, the battery of the charging unit 101 may also be recharged via the charging cable.

[0123] Alternatively, when the controller of the aerosol delivery device 100 is in the second state 220 (i.e., the aerosol delivery device 100 is inserted into the charging unit 101 but the session has not yet started), the controller of the charging unit 101 is in its corresponding seventh state 270 (i.e., the aerosol delivery device 100 is inserted into the charging unit 101 but the usage session has not yet started), and the controller of the charging unit 101 determines that a charging cable is not inserted into the charging unit 101, and also determines that the battery in the aerosol delivery device 100 is below an acceptable threshold criterion, the battery of the aerosol delivery device 100 may be charged via the battery of the charging unit 101.

[0124] Finally, when the controller of the aerosol delivery device 100 is in the fourth state 240 , the controller of the charging unit 101 can be in the eighth state 280 .

[0125] According to various embodiments, when aerosol delivery device 100 is inserted into charging unit 101, the controller of charging unit 101 may act as a master controller. That is, the controller of charging unit 101 may control the transfer of energy to the heating element of aerosol delivery device 100 during a usage session. If aerosol delivery device 100 is removed from charging unit 101 during the same session, the controller of aerosol delivery device 100 may then act as the master controller of aerosol delivery device 100 (e.g., in third state 230, where aerosol delivery device 100 is not inserted into charging unit 101 but the session has nevertheless begun) and substantially immediately control the battery of aerosol delivery device 100 to transfer energy to the heating element of aerosol delivery device 100 in a substantially seamless manner.

[0126] According to various embodiments, the system may also include a notification unit configured to provide a notification to the user in response to the battery level or current capacity of the battery of the aerosol delivery device 100 being insufficient to complete a usage session. The notification may be a tactile notification. Alternatively, the notification may be displayed via the user interface 108.

[0127] It will be appreciated that the above process can also occur in reverse, i.e., when aerosol delivery device 100 is in third state 230 (i.e., when aerosol delivery device 100 is not inserted into charging unit 101, but a session has nevertheless been initiated), and then aerosol delivery device 100 is reinserted into charging unit 101, and the controller of charging unit 101 can act as the master controller for aerosol delivery device 100. Upon insertion, the controller of charging unit 101 substantially immediately enters eighth state 280, and energy from the battery of charging unit 101 may be supplied to the heating element located within aerosol delivery device 100 to heat the heating element.

[0128] The interchangeable master / slave relationship described above allows the use of the battery in charging unit 101 to be prioritized whenever possible. The battery in charging unit 101 may have a maximum capacity greater than the maximum capacity of the battery in aerosol delivery device 100. As a result, the battery life of aerosol delivery device 100 can be extended as long as possible, for example, as long as the total number of cycles of the battery in aerosol delivery device 100 can be minimized.

[0129] Furthermore, the ability of the heating element of the aerosol delivery device 100 to draw power substantially instantly and uninterrupted from the battery of the aerosol delivery device 100 (when not inserted into the charging unit 101) or from the battery of the charging unit 101 (when the aerosol delivery device 100 is inserted into the charging unit 101) allows for a seamless transition for the user if the user decides to use the aerosol delivery device 100 separately from the charging unit 101 or if the aerosol delivery device is subsequently inserted into the charging unit 101 during a usage session.

[0130] Alternatively, according to various embodiments, the aerosol delivery device may be in a third state 230 (i.e., the aerosol delivery device 100 is not inserted into the charging unit 101, but a use session has begun), and the battery of the aerosol delivery device 100 transfers energy to the heating element of the aerosol delivery device. In the third state 230, the controller of the aerosol delivery device 100 may record the battery level or current battery capacity of the aerosol delivery device 100.

[0131] Aerosol delivery device 100 may be inserted into charging unit 101 during a use session and electrically connected to charging unit 101. This corresponds to the controller of aerosol delivery device 100 being in fourth state 240, where aerosol delivery device 100 is inserted into charging unit 101 and a use session is initiated.

[0132] In this embodiment, the battery of the aerosol delivery device 100 continues to transfer energy to the heating element of the aerosol delivery device 100. This corresponds to a fourth state, in which the battery of the aerosol delivery device 100 transfers energy to the heating element of the aerosol delivery device 100. By continuing the energy supply from the first electrical energy source, the likelihood of a usage session being interrupted (e.g., if the transfer from the energy supply by the first energy unit to the energy supply by the second energy unit fails) may be reduced.

[0133] When aerosol delivery device 100 is inserted into charging unit 101 during a use session and the battery of aerosol delivery device 100 continues to supply energy to the heating element of aerosol delivery device 100, the controller of aerosol delivery device 100 and / or the controller of charging unit 101 may be configured to periodically record the battery level or current capacity of the battery of aerosol delivery device 100. The controller of aerosol delivery device 100 or the controller of charging unit 101 may determine when the battery level or current capacity of the battery of aerosol delivery device 100 reaches a predetermined shutdown threshold.

[0134] In various embodiments, when it is determined that the battery level or current capacity of the battery of aerosol delivery device 100 has reached a predetermined shutdown threshold, the battery of aerosol delivery device 100 has sufficient energy at the shutdown threshold to allow the controller of aerosol delivery device 100 to perform charging communication with charging unit 101. The usage session may continue while the charging communication is performed.

[0135] In an alternative embodiment, if it is determined that the battery level or current capacity of the battery of aerosol delivery device 100 has reached a predetermined shutdown threshold, the controller of aerosol delivery device 100 and / or the controller of charging unit 101 may immediately control the battery of charging unit 101 to supply energy to a heating element located within aerosol delivery device 100 to initiate a further use session. The change in energy supply to the heating element from the battery of aerosol delivery device 100 to the battery of charging unit 101 may occur substantially seamlessly so that the use session is not interrupted for the user.

[0136] The controller of aerosol delivery device 100 or the controller of charging unit 101 may be configured to determine and / or periodically record the battery level or current capacity of the battery of charging unit 101 in response to the initiation of a further use session. In a situation during the further use session in which the battery level or current capacity of the battery of charging unit 101 is determined to fall below a predetermined shutdown threshold, the controller of aerosol delivery device 100 or the controller of charging unit 101 may control the battery of aerosol delivery device 100 to transfer energy to a heating element of aerosol delivery device 100.

[0137] In various embodiments, the aerosol delivery system may further include a notification unit configured to provide a notification to the user in response to the battery level or current capacity of the battery of the aerosol delivery device 100 being insufficient to complete a usage session. The notification may be, for example, a vibration of the aerosol delivery device and / or charging unit, a notification on the charging unit user interface, or other notification means for communicating with the user.

[0138] The various embodiments described herein are presented solely to aid in the understanding and teaching of the claimed features. These embodiments are provided only as a representative sample of embodiments and are not exhaustive and / or exclusive. The advantages, embodiments, examples, functions, features, structures, and / or other aspects described herein should not be construed as limitations on the scope of the invention as defined by the claims or limitations on the equivalents of the claims, and it should be understood that other embodiments may be utilized and modifications may be made without departing from the scope of the claimed invention. Various embodiments of the present invention may suitably comprise, consist of, or consist essentially of any suitable combination of the disclosed elements, components, features, parts, steps, means, etc., other than those specifically described herein. Furthermore, the present disclosure may include other inventions not currently claimed but which may be claimed in the future.

Claims

1. 1. An aerosol delivery system comprising: an aerosol delivery device comprising a first controller and a first electrical energy storage device; a charging unit for charging the aerosol delivery device, the charging unit comprising a second controller and a second electrical energy storage device; Equipped with the first controller and / or the second controller are configured to determine a connection state between the aerosol delivery device and the charging unit and cause the aerosol delivery device to enter an operation mode, in which the following option (A) and / or option (B) and / or option (C) and / or option (D) and / or option (E) apply: According to option (A), if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller is configured to cause the aerosol delivery device to enter a first operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate and optionally complete a first use session; According to option (B), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a second operating mode, in which the aerosol delivery device is powered by the first electrical energy storage device; According to option (C), if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller is configured to cause the aerosol delivery device to enter a third operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate a first use session at time t1; the first controller is further configured to determine that the aerosol delivery device is subsequently electrically disconnected from the charging unit at a later time t2 during the first use session, and then cause the aerosol delivery device to be powered by the first electrical storage device; According to option (D), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fourth operating mode, wherein in the fourth operating mode, the aerosol delivery device is energized by the first electrical energy storage device to initiate a first use session at time t3; either the first controller and / or the second controller determines that the aerosol delivery device is subsequently continuously electrically connected to the charging unit at a later time t4 during the first use session, and is then configured to: (a) cause the aerosol delivery device to be at least partially powered by the second electrical storage device to continue and optionally complete the first use session; or (b) cause the aerosol delivery device to be powered by the first electrical storage device; According to option (E), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fifth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a usage session; An aerosol delivery system, wherein if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit at a later time during the use session, the first controller is configured to control the first electrical energy storage device to continue supplying energy to the aerosol delivery device.

2. According to option (C), the aerosol delivery system of claim 1, wherein the system further comprises a notification unit configured to provide a notification to a user in response to the first electrical energy storage device having insufficient energy to complete the first use session.

3. The aerosol delivery device of claim 2 , wherein the notification unit provides the notification to the user when the first use session begins at the time t1.

4. According to option (D), the first controller: (i) determining at a later time t5 during the first use session that the aerosol delivery device is subsequently electrically disconnected from the charging unit; and 10. The aerosol delivery system of claim 1, further configured to: (ii) cause the aerosol delivery device to be powered by the first electrical storage device.

5. Either the first controller and / or the second controller: (i) determining at a later time t6 during the first use session that the aerosol delivery device is subsequently electrically reconnected to the charging unit; and 5. The aerosol delivery system of claim 4, further configured to: (ii) cause the aerosol delivery device to be at least partially powered by the second electrical storage device to continue the first use session.

6. 6. The aerosol delivery system of claim 5, wherein t6 > t5 > t4 > t3.

7. According to option (D), either the first controller and / or the second controller: (i) determining that the first use session is complete; (ii) determining that the aerosol delivery device is electrically connected to the charging unit; (iii) optionally, determining that it is desirable to perform a second use session; and (iv) the aerosol delivery system of any one of claims 1 to 6, further configured to determine whether the first electrical energy storage device and / or the second electrical energy storage device contain sufficient electrical energy to energize the aerosol delivery device to initiate and optionally complete a second use session.

8. According to option (D), the first controller: (i) determining that the first use session is complete; (ii) determining that the aerosol delivery device is electrically disconnected from the charging unit; (iii) optionally, determining that it is desirable to perform a second use session; and (iv) determining whether the first electrical energy storage device contains sufficient electrical energy to energize the aerosol delivery device to initiate and optionally complete a second use session.

9. According to option (C) and / or option (E), when the first electrical energy storage device energizes the aerosol delivery device and the aerosol delivery device is electrically connected to the charging unit, the first controller or the second controller is configured to terminate the usage session when the charge level of the first electrical energy device storage reaches a shutdown threshold.

10. 10. The aerosol delivery system of claim 9, wherein the first electrical energy storage device has sufficient energy at the shutdown threshold to enable the first controller to perform charging communication with the charging unit.

11. According to option (C) and / or option (E), when the first electrical energy storage device energizes the aerosol delivery device and the aerosol delivery device is connected to the charging unit, the first controller or the second controller is configured to control the second electrical energy storage device to energize the aerosol delivery device when the charge level of the first electrical energy storage device reaches a shutdown threshold. An aerosol delivery system as described in any one of claims 1 to 10.

12. According to option (C) and / or option (E), the first controller or the second controller is configured to determine a charge level of the second electrical energy storage device in response to a further use session being initiated. An aerosol delivery system as described in any one of claims 1 to 11.

13. 12. The aerosol delivery system of claim 11, wherein in response to the second electrical energy storage device having a charge level above a threshold, the first controller or the second controller is configured to control the second electrical energy storage device to power the aerosol delivery device for a further use session.

14. 12. The aerosol delivery system of claim 11, wherein in response to the second electrical energy storage device having a charge level below the threshold, the first controller or the second controller is configured to control the first electrical energy storage device to supply energy to the aerosol delivery device in a further use session.

15. 1. A method of operating an aerosol delivery system, comprising: Providing an aerosol delivery device comprising a first controller and a first electrical energy storage device; providing a charging unit for charging the aerosol delivery device, the charging unit comprising a second controller and a second electrical energy storage device; and configuring the first controller and / or the second controller to determine a connection status between the aerosol delivery device and the charging unit and cause the aerosol delivery device to enter an operational mode, wherein any of the following options (A) and / or (B) and / or (C) and / or (D) and / or (E) apply: According to option (A), if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the method further includes configuring the first controller and / or the second controller to cause the aerosol delivery device to enter a first operating mode, wherein in the first operating mode, the aerosol delivery device is energized by the second electrical energy storage device to initiate and optionally complete a first use session; According to option (B), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the method further includes configuring the first controller to cause the aerosol delivery device to enter a second operating mode, wherein in the second operating mode, the aerosol delivery device is powered by the first electrical energy storage device; According to option (C), if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, The method further includes configuring the first controller and / or the second controller to cause the aerosol delivery device to enter a third operational mode, wherein in the third mode, the aerosol delivery device is energized by the second electrical energy storage device to initiate a first use session at time t1; the method further comprising: determining at a later time t2 during the first use session that the aerosol delivery device is subsequently electrically disconnected from the charging unit; and then configuring the first controller to cause the aerosol delivery device to be powered by the first electrical storage device; According to option (D), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the method further includes configuring the first controller to cause the aerosol delivery device to enter a fourth operating mode, wherein in the fourth operating mode, the aerosol delivery device is energized by the first electrical energy storage device to initiate a first use session at time t3; the method further comprising configuring either the first controller and / or the second controller to determine at a later time t4 during the first use session that the aerosol delivery device remains electrically connected to the charging unit, and then (a) cause the aerosol delivery device to be at least partially powered by the second electrical storage device to continue and optionally complete the first use session, or (b) cause the aerosol delivery device to be powered by the first electrical storage device; According to option (E), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fifth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a usage session; The method, wherein if the first controller and / or second controller determines that the aerosol delivery device is electrically connected to the charging unit at a later time during the use session, the first controller is configured to control the first electrical energy storage device to continue supplying energy to the aerosol delivery device.

16. an aerosol delivery device comprising a first controller and a first electrical energy storage device, the aerosol delivery device connectable during use to a charging unit for charging the aerosol delivery device, the charging unit comprising a second controller and a second electrical energy storage device; the first controller and / or the second controller are configured to determine a connection state between the aerosol delivery device and the charging unit and cause the aerosol delivery device to enter an operation mode, in which any of the following options (A) and / or (B) and / or (C) and / or (D) and / or (E) applies: According to option (A), if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller is configured to cause the aerosol delivery device to enter a first operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate and optionally complete a first use session; According to option (B), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a second operating mode, in which the aerosol delivery device is powered by the first electrical energy storage device; According to option (C), if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller is configured to cause the aerosol delivery device to enter a third operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate a first use session at time t1; the first controller is further configured to determine that the aerosol delivery device is subsequently electrically disconnected from the charging unit at a later time t2 during the first use session, and then cause the aerosol delivery device to be powered by the first electrical storage device; According to option (D), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fourth operating mode, wherein in the fourth operating mode, the aerosol delivery device is energized by the first electrical energy storage device to initiate a first use session at time t3; either the first controller and / or the second controller determines that the aerosol delivery device is subsequently continuously electrically connected to the charging unit at a later time t4 during the first use session, and is then configured to: (a) cause the aerosol delivery device to be at least partially powered by the second electrical storage device to continue and optionally complete the first use session; or (b) cause the aerosol delivery device to be powered by the first electrical storage device; According to option (E), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fifth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a usage session; If the first controller and / or second controller determines that the aerosol delivery device is electrically connected to the charging unit at a later time during the use session, the first controller is configured to control the first electrical energy storage device to continue to energize the aerosol delivery device. Aerosol delivery device.

17. a charging unit comprising a second controller and a second electrical energy storage device, the charging unit connectable to the aerosol delivery device for charging the aerosol delivery device during use, the aerosol delivery device comprising a first controller and a first electrical energy storage device; the first controller and / or the second controller are configured to determine a connection state between the aerosol delivery device and the charging unit and cause the aerosol delivery device to enter an operation mode, in which any of the following options (A) and / or (B) and / or (C) and / or (D) and / or (E) applies: According to option (A), if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or the second controller is configured to cause the aerosol delivery device to enter a first operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate and optionally complete a first use session; According to option (B), if the first controller and / or the second controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a second operating mode, in which the aerosol delivery device is powered by the first electrical energy storage device; According to option (C), if the first controller and / or the second controller determines that the aerosol delivery device is electrically connected to the charging unit, the first controller and / or second controller are configured to cause the aerosol delivery device to enter a third operating mode, in which the aerosol delivery device is energized by the second electrical energy storage device to initiate a first use session at time t1; the first controller is configured to determine at a later time t2 during the first use session that the aerosol delivery device is subsequently electrically disconnected from the charging unit, and then cause the aerosol delivery device to be powered by the first electrical storage device; According to option (D), if the first controller and / or the second controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fourth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a first use session at time t3; either the first controller and / or the second controller is configured to determine at a later time t4 during the first use session that the aerosol delivery device is thereafter continuously electrically connected to the charging unit, and then (a) cause the aerosol delivery device to be at least partially powered by the second electrical storage device to continue and optionally complete the first use session, or (b) cause the aerosol delivery device to be powered by the first electrical storage device; According to option (E), if the first controller determines that the aerosol delivery device is not electrically connected to the charging unit, the first controller is configured to cause the aerosol delivery device to enter a fifth operating mode, in which the aerosol delivery device is energized by the first electrical energy storage device to initiate a usage session; A charging unit, wherein if the first controller and / or the second controller determine that the aerosol delivery device is electrically connected to the charging unit at a later time during the use session, the first controller is configured to control the first electrical energy storage device to continue supplying energy to the aerosol delivery device.

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