WO2024078393A1 - 电系统、充电装置及气雾生成装置 - Google Patents

电系统、充电装置及气雾生成装置 Download PDF

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Publication number
WO2024078393A1
WO2024078393A1 PCT/CN2023/123267 CN2023123267W WO2024078393A1 WO 2024078393 A1 WO2024078393 A1 WO 2024078393A1 CN 2023123267 W CN2023123267 W CN 2023123267W WO 2024078393 A1 WO2024078393 A1 WO 2024078393A1
Authority
WO
WIPO (PCT)
Prior art keywords
aerosol generating
generating device
opening
received
charging
Prior art date
Application number
PCT/CN2023/123267
Other languages
English (en)
French (fr)
Inventor
方铿春
徐中立
李永海
Original Assignee
深圳市合元科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市合元科技有限公司 filed Critical 深圳市合元科技有限公司
Publication of WO2024078393A1 publication Critical patent/WO2024078393A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/20Devices using solid inhalable precursors
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/90Arrangements or methods specially adapted for charging batteries thereof
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/90Arrangements or methods specially adapted for charging batteries thereof
    • A24F40/95Arrangements or methods specially adapted for charging batteries thereof structurally associated with cases

Definitions

  • the embodiments of the present application relate to the technical field of heat-not-burn aerosol generation, and in particular to an electrical system, an aerosol generating device, and a charging device.
  • Smoking articles eg, cigarettes, cigars, etc.
  • People have attempted to replace these tobacco-burning articles by creating products that release compounds without combustion.
  • the heating device generally includes a heater to heat the tobacco or non-tobacco product, and a rechargeable battery cell for providing power to the heater; in use, to ensure that the battery cell in the heating device has sufficient power, a charging stand is provided to match the heating device; the heating device is removably coupled to the charging stand, so that the charging stand can charge the battery cell in the heating device.
  • An embodiment of the present application provides an electrical system, including:
  • An aerosol generating device for heating an aerosol generating article to generate an aerosol; the aerosol generating device comprises a first opening for receiving the aerosol generating article;
  • a charging device used to charge the aerosol generating device
  • the charging device comprises:
  • a receiving chamber for receiving the aerosol generating device the receiving chamber defines a second opening, and the aerosol generating device can be removably received in the receiving chamber through the second opening;
  • the door cover can be selectively configured between a first position and a second position; wherein,
  • the door cover opens the second opening in the first position to allow the aerosol generating device to be removably received in the receiving chamber through the second opening;
  • the door cover at least partially closes the second opening in the second position and avoids or reveals the first opening to prevent the aerosol generating device received in the receiving cavity from being removed from the second opening and allow the aerosol generating article to be received in the aerosol generating device through the first opening.
  • the door cover is arranged to be movable between the first position and the second position, thereby changing the configuration between the first position and the second position.
  • the movement includes at least one of linear movement or rotational movement.
  • the charging device includes: a first end and a second end that are opposite to each other along a length direction;
  • the second opening is defined at the first end; the door cover is movably arranged at the first end.
  • the first opening faces the first end.
  • the charging device is configured to bias the aerosol generating device received in the receiving chamber toward the second end when the door cover is located in the second position.
  • the aerosol generating device includes a first magnetic member
  • the door cover is provided with:
  • the second magnetic member is used to magnetically repel the first magnetic member when in the second position, thereby biasing the aerosol generating device toward the second end.
  • the second magnetic member and the first magnetic member of the aerosol generating device are substantially aligned along the length direction of the charging device.
  • the charging device includes:
  • the receiving cavity is arranged close to the second side
  • the first magnetic member is positioned away from the second side.
  • the charging device further includes a third magnetic member
  • the door cover is provided with:
  • a fourth magnetic member used for magnetically attracting the third magnetic member when in the first position, thereby keeping the door cover in the first position
  • a fifth magnetic member is used to magnetically attract the third magnetic member when in the second position, thereby keeping the door cover in the second position.
  • the door cover can also be selectively configured in a third position; the door cover at least partially closes the second opening and at least partially covers the first opening in the third position to prevent the aerosol generating device from being received in the receiving chamber from the second opening or removed from the receiving chamber, and to prevent the aerosol generating device in the receiving chamber from receiving the aerosol generating product through the first opening.
  • the second position is arranged to be located between the first position and the third position.
  • the door cover partially closes the second opening in the second position
  • the door cover substantially completely closes the second opening in the third position.
  • the charging device further includes a third magnetic member
  • the door cover is provided with:
  • the sixth magnetic member is used to magnetically repel the third magnetic member when in the third position, thereby keeping the door cover in the third position.
  • the charging device includes:
  • the receiving cavity is arranged close to the second side
  • the sixth magnetic member is closer to the second side than the third magnetic member.
  • the aerosol generating device when the aerosol generating device is received in the receiving cavity, it has a protruding portion that is exposed or extends out of the receiving cavity; during use, a user can remove the aerosol generating device from the receiving cavity by actuating the protruding portion.
  • the charging device includes:
  • the receiving cavity is arranged near the second side and defines a third opening located on the second side; when the aerosol generating device is received in the receiving cavity, the aerosol generating device The protruding portion is exposed from the third opening or extends out of the receiving cavity.
  • the aerosol generating device comprises an outer side surface surrounding the aerosol generating device in a circumferential direction; the outer side surface comprises:
  • the first surface portion is curved and the second surface portion is substantially flat; or the curvature or degree of curvature of the second surface portion is smaller than that of the first surface portion.
  • the first surface portion when the aerosol generating device is received in the receiving cavity, the first surface portion is substantially contained or hidden in the receiving cavity, and the second surface portion is substantially exposed or extends out of the receiving cavity.
  • the aerosol generating device when the aerosol generating device is received in the receiving chamber of the charging device for charging, the aerosol generating device is configured to heat the aerosol generating article received from the first opening in response to a user's operation or input.
  • the aerosol generating device comprises:
  • a rechargeable first battery cell at least used to supply power to the heater
  • the circuit is configured to simultaneously use the power provided by the charging device to partially charge the first battery cell and output part of the power provided by the charging device to the heater to heat the aerosol generating product.
  • the aerosol generating device is configured to intermittently or pulsedly receive power from the charging device for charging; and the aerosol generating device is configured to heat the aerosol generating article during the intermittent period of receiving power from the charging device or between adjacent pulses.
  • the aerosol generating device when the aerosol generating device is received in the receiving chamber of the charging device for charging, the aerosol generating device is configured to suspend or interrupt charging in response to user operation or input and heat the aerosol generating product received from the first opening until heating is completed and charging is resumed.
  • Another embodiment of the present application further provides an electrical system, comprising:
  • An aerosol generating device for heating an aerosol generating article to generate an aerosol; the aerosol generating device comprises a first opening for receiving the aerosol generating article;
  • a charging device used to charge the aerosol generating device;
  • the charging device comprises a receiving cavity, and the aerosol generating device is removably received in the receiving cavity for charging;
  • the charging device is configured to be selectively configurable between a first configuration, a second configuration, and a third configuration; wherein,
  • the charging device in the first configuration, allows the aerosol generating device to be received in or removed from the receiving chamber;
  • the charging device in the second configuration, prevents the aerosol generating device received in the receiving cavity from being removed from the receiving cavity, and allows the aerosol generating article to be received in the aerosol generating device through the first opening for heating;
  • the charging device prevents the aerosol-generating device received in the receiving cavity from being removed from the receiving cavity, and prevents the aerosol-generating device in the receiving cavity from receiving an aerosol-generating article through the first opening.
  • Another embodiment of the present application further provides an electrical system, comprising:
  • An aerosol generating device for heating an aerosol generating article to generate an aerosol; the aerosol generating device comprises a first opening for receiving the aerosol generating article;
  • a charging device used to charge the aerosol generating device
  • the charging device comprises:
  • a receiving chamber for receiving the aerosol generating device the receiving chamber defines a second opening, and the aerosol generating device can be removably received in the receiving chamber through the second opening;
  • the charging device is configured to be selectively configurable between a first configuration and a second configuration; wherein,
  • the charging device opens the second opening in the first configuration to allow the aerosol generating device to be received in or removed from the receiving chamber through the second opening;
  • the charging device at least partially closes the second opening and avoids or reveals the first opening to prevent the aerosol generating device received in the receiving cavity from being removed from the second opening and allow the aerosol generating article to be received in the aerosol generating device through the first opening.
  • Another embodiment of the present application further provides an electrical system, comprising:
  • An aerosol generating device for heating an aerosol generating article to generate an aerosol; the aerosol generating device comprises a first opening for receiving the aerosol generating article;
  • a charging device used to charge the aerosol generating device
  • the charging device comprises:
  • a receiving chamber for receiving the aerosol generating device the receiving chamber defines a second opening, and the aerosol generating device can be removably received in the receiving chamber through the second opening;
  • the door cover can be selectively configured between a first position, a second position and a third position; wherein,
  • the door cover opens the second opening in the first position to allow the aerosol generating device to be removably received in the receiving chamber through the second opening;
  • the door cover at least partially closes the second opening in the second position and avoids or reveals the first opening, so as to prevent the aerosol generating device received in the receiving chamber from being removed from the second opening and allow the aerosol generating product to be received in the aerosol generating device through the first opening;
  • the door cover at least partially closes the second opening and the first opening in the third position to prevent the aerosol generating device received in the receiving cavity from being removed from the second opening and to prevent the aerosol generating device in the receiving cavity from receiving the aerosol generating product through the first opening.
  • Another embodiment of the present application further provides a charging device for charging an aerosol generating device; the aerosol generating device is used to receive an aerosol generating product and heat it to generate an aerosol; the charging device includes:
  • a receiving chamber in which the aerosol generating device is removably received for charging
  • the charging device is configured to be selectively configurable between a first configuration, a second configuration, and a third configuration; wherein,
  • the charging device in the first configuration, allows the aerosol generating device to be received in or removed from the receiving chamber;
  • the charging device in the second configuration, prevents the aerosol generating device received in the receiving cavity from being removed from the receiving cavity and allows the aerosol generating article to be received in the aerosol generating device for heating;
  • the charging device prevents the aerosol-generating device received in the receiving cavity from being removed from the receiving cavity and prevents the aerosol-generating device in the receiving cavity from receiving an aerosol-generating article.
  • Another embodiment of the present application further provides a charging device for charging an aerosol generating device;
  • the aerosol generating device comprises a first opening for receiving an aerosol generating product;
  • the charging device comprises:
  • a receiving chamber for at least partially receiving the aerosol generating device
  • the charging device is configured to be selectively configurable between a first configuration and a second configuration; wherein,
  • the charging device opens the second opening in the first configuration to allow the aerosol generating device to be received in or removed from the receiving chamber through the second opening;
  • the charging device at least partially closes the second opening and avoids or reveals the first opening to prevent the aerosol generating device received in the receiving cavity from being removed from the second opening and allow the aerosol generating article to be received in the aerosol generating device through the first opening.
  • Another embodiment of the present application further provides a charging device for charging an aerosol generating device;
  • the aerosol generating device comprises a first opening for receiving an aerosol generating product;
  • the charging device comprises:
  • a receiving chamber used for receiving an aerosol generating device
  • the door cover can be selectively configured between a first position and a second position; wherein,
  • the door cover opens the second opening in the first position to allow the aerosol generating device to be removably received in the receiving chamber through the second opening;
  • the door cover at least partially closes the second opening in the second position and avoids or reveals the first opening to prevent the aerosol generating device received in the receiving chamber from The second opening is removed and an aerosol-generating article is allowed to be received into the aerosol-generating device through the first opening.
  • the door cover is arranged to be movable between the first position and the second position, thereby changing the configuration between the first position and the second position.
  • the movement includes at least one of linear movement or rotational movement.
  • the second opening is defined at the first end
  • the door cover is movably arranged at the first end.
  • the charging device is configured to bias the aerosol generating device received in the receiving chamber toward the second end when the door cover is located in the second position.
  • the aerosol generating device includes a first magnetic member
  • the door cover is provided with:
  • the second magnetic member is used to magnetically repel the first magnetic member when in the second position, thereby biasing the aerosol generating device toward the second end.
  • the second magnetic member when the door cover is located at the second position, the second magnetic member is substantially aligned with the first magnetic member along a length direction of the charging device.
  • the charging device includes:
  • the receiving cavity is arranged close to the second side
  • the first magnetic member is positioned away from the second side.
  • the charging device further includes a third magnetic member
  • the door cover is provided with:
  • a fourth magnetic member used for magnetically attracting the third magnetic member when in the first position, thereby keeping the door cover in the first position
  • a fifth magnetic member is used to magnetically attract the third magnetic member when in the second position, thereby keeping the door cover in the second position.
  • the door cover can also be selectively configured in a third position; The door cover at least partially closes the second opening and at least partially closes the first opening in the third position to prevent the aerosol generating device from being received into the receiving chamber from the second opening or being removed from the receiving chamber, and to prevent the aerosol generating device in the receiving chamber from receiving the aerosol generating product through the first opening.
  • the second position is arranged to be located between the first position and the third position.
  • the door cover only partially closes the second opening in the second position
  • the door cover substantially completely closes the second opening in the third position.
  • the charging device further includes a third magnetic member
  • the door cover is provided with:
  • the sixth magnetic member is used to magnetically repel the third magnetic member when the door cover is located at the third position, thereby keeping the door cover at the third position.
  • the charging device includes:
  • the receiving cavity is arranged close to the second side
  • the sixth magnetic member is closer to the second side than the third magnetic member.
  • Another embodiment of the present application further provides an aerosol generating device, which is used to heat an aerosol generating product to generate an aerosol; comprising:
  • a charging port arranged to charge the battery cell by inputting power into the charging port
  • the circuit is configured to heat the aerosol generating product received from the first opening in response to user operation or input when the battery cell is charged through the charging port.
  • the aerosol generating device comprises:
  • the circuit is configured to simultaneously partially use the power input from the charging port to The battery cell is charged, and the power input from the charging port is partially output to the heater to heat the aerosol generating product.
  • the circuit is configured to charge the battery cell intermittently or in pulses using the power input from the charging port; and the circuit is configured to enable the heater to heat the aerosol generating product during an intermittent period or between adjacent pulses.
  • the circuit is configured to suspend or interrupt charging of the battery cell in response to a user operation or input and to heat the aerosol-generating product received from the first opening until heating is completed and charging is resumed.
  • Another embodiment of the present application further provides an electrical system, comprising:
  • An aerosol generating device for heating an aerosol generating article to generate an aerosol; the aerosol generating device comprises a first opening for receiving the aerosol generating article;
  • a charging device used to charge the aerosol generating device
  • the charging device comprises:
  • a receiving chamber for receiving the aerosol generating device the receiving chamber defines a second opening, and the aerosol generating device can be removably received in the receiving chamber through the second opening;
  • an elastic electrical contact which can be selectively actuated between an extended state and a compressed state and biased to return to the extended state; the elastic electrical contact is at least partially exposed in the receiving cavity for outputting electricity to the aerosol generating device received in the receiving cavity;
  • the door cover can be selectively configured between a first position and a second position; wherein,
  • the door cover opens the second opening in the first position to allow the aerosol generating device to be removably received in the receiving chamber through the second opening;
  • the door cover at least partially closes the second opening in the second position, and partially abuts against or presses the aerosol generating device received in the receiving cavity, so that the aerosol generating device presses the elastic electrical contact to the compressed state and establishes a conductive connection with the elastic electrical contact;
  • the door cover avoids the first opening in the second position.
  • the elastic electrical contact when the door cover moves from the second position to the first position, the elastic electrical contact is configured to be actuated from the compressed state to the extended state to at least partially push out or extend the aerosol generating device received in the second opening of the receiving chamber. pop up.
  • the elastic electrical contact includes at least one conductive spring pin.
  • the charging device further includes:
  • a biasing mechanism is used to enable the aerosol generating device to bias the elastic electrical contact toward the compressed state when the door cover is in the second position.
  • the biasing mechanism includes:
  • a first magnetic member is arranged on the aerosol generating device
  • the second magnetic member is arranged on the door cover and is used to magnetically repel the first magnetic member when in the second position, so that the aerosol generating device biases the elastic electric contact toward the compressed state due to the magnetic repulsion.
  • the biasing mechanism includes a spring.
  • the door cover also includes being further selectively configurable in a third position
  • the door cover simultaneously closes the second opening and the first opening in the third position; and, the door cover at least partially abuts against or presses the aerosol generating device received in the receiving cavity in the third position, so that the aerosol generating device presses the elastic electric contact to the compressed state and establishes a conductive connection with the elastic electric contact.
  • Another embodiment of the present application further provides an electrical system, comprising:
  • An aerosol generating device for heating an aerosol generating article to generate an aerosol; the aerosol generating device comprises a first opening for receiving the aerosol generating article;
  • a charging device used to charge the aerosol generating device
  • the charging device comprises:
  • a receiving chamber for receiving the aerosol generating device the receiving chamber defines a second opening, and the aerosol generating device can be removably received in the receiving chamber through the second opening;
  • an elastic electrical contact which can be selectively actuated between an extended state and a compressed state and biased to return to the extended state; the elastic electrical contact is at least partially exposed in the receiving cavity for outputting electricity to the aerosol generating device received in the receiving cavity;
  • the charging device is configured to be selectively configurable between a first configuration and a second configuration; wherein,
  • the charging device opens the second opening in the first configuration to allow the The aerosol generating device is received in the receiving chamber or removed from the receiving chamber through the second opening;
  • the charging device at least partially closes the second opening in the second configuration and partially abuts against or presses the aerosol generating device received in the receiving cavity, thereby causing the aerosol generating device to at least partially press the elastic electrical contact into the compressed state and establish an electrically conductive connection with the elastic electrical contact;
  • the charging device avoids or reveals the first opening in the second configuration.
  • the charging device further includes being further selectively configurable in a third position
  • the charging device simultaneously closes the second opening and the first opening in the third position; and, the charging device at least partially abuts against or presses the aerosol generating device received in the receiving cavity in the third position, so that the aerosol generating device presses the elastic electric contact to the compressed state and establishes a conductive connection with the elastic electric contact.
  • Another embodiment of the present application further provides a charging device for charging an aerosol generating device;
  • the aerosol generating device comprises a first opening for receiving an aerosol generating product;
  • the charging device comprises:
  • a receiving chamber for at least partially receiving the aerosol generating device
  • an elastic electrical contact which can be selectively actuated between an extended state and a compressed state and biased to return to the extended state; the elastic electrical contact is at least partially exposed in the receiving cavity for outputting electricity to the aerosol generating device received in the receiving cavity;
  • the charging device is configured to be selectively configurable between a first configuration and a second configuration; wherein,
  • the charging device opens the second opening in the first configuration to allow the aerosol generating device to be received in or removed from the receiving chamber through the second opening;
  • the charging device at least partially closes the second opening in the second configuration, and partially abutting against or pressing the aerosol generating device received in the receiving cavity, so that the aerosol generating device at least partially presses the elastic electrical contact to the compressed state and establishes a conductive connection with the elastic electrical contact;
  • the charging device avoids or reveals the first opening in the second configuration.
  • Another embodiment of the present application further provides a charging device for charging an aerosol generating device;
  • the aerosol generating device comprises a first opening for receiving an aerosol generating product;
  • the charging device comprises:
  • a receiving chamber for at least partially receiving the aerosol generating device
  • an elastic electrical contact which can be selectively actuated between an extended state and a compressed state and biased to return to the extended state; the elastic electrical contact is at least partially exposed in the receiving cavity for outputting electricity to the aerosol generating device received in the receiving cavity;
  • the door cover can be selectively configured between a first position and a second position; wherein,
  • the door cover opens the second opening in the first position to allow the aerosol generating device to be removably received in the receiving chamber through the second opening;
  • the door cover at least partially closes the second opening in the second position, and partially abuts against or presses the aerosol generating device received in the receiving cavity, so that the aerosol generating device presses the elastic electrical contact to the compressed state and establishes a conductive connection with the elastic electrical contact;
  • the door cover avoids the first opening in the second position.
  • the aerosol generating device when the charging device is charging the aerosol generating device, the aerosol generating device can also receive the aerosol generating product and heat it for the user to inhale.
  • FIG1 is a schematic diagram of a position or state of an electrical system provided by an embodiment
  • FIG2 is a schematic diagram of the aerosol generating device and the charging device in FIG1 with the device removed;
  • FIG3 is a cross-sectional schematic diagram of the charging device in FIG2 from one viewing angle
  • FIG4 is a cross-sectional schematic diagram of the charging device in FIG2 from another viewing angle
  • FIG5 is a cross-sectional schematic diagram of the aerosol generating device in FIG2 from one viewing angle
  • FIG6 is a schematic diagram of the electrical system of FIG1 in which the door cover moves to another position or state;
  • FIG. 7 is a schematic diagram of the door cover in the electrical system of FIG. 1 moving to another position or state.
  • An embodiment of the present application provides an electrical system 1, as shown in FIG. 1 and FIG. 2 , including:
  • An aerosol generating device 200 and a charging device 100 for charging the aerosol generating device 200 is used to generate aerosol.
  • the aerosol generating device 200 is to at least partially receive a solid aerosol generating product 1000, such as a cigarette, and heat it, thereby causing at least part of the volatile components in the aerosol generating product 1000 to volatilize and release, thereby forming an aerosol that can be smoked.
  • a solid aerosol generating product 1000 such as a cigarette
  • the aerosol generating product 1000 preferably uses a tobacco-containing material that releases volatile compounds from the matrix when heated; or it can also be a non-tobacco material that can be heated and suitable for electric heating and smoking.
  • the aerosol generating product 1000 preferably uses a solid matrix, which can include one or more of powder, particles, fragments, strips, or flakes of one or more of vanilla leaves, tobacco leaves, homogenized tobacco, and expanded tobacco; or, the solid matrix can contain additional tobacco or non-tobacco volatile flavor compounds to be released when the matrix is heated.
  • a solid matrix which can include one or more of powder, particles, fragments, strips, or flakes of one or more of vanilla leaves, tobacco leaves, homogenized tobacco, and expanded tobacco; or, the solid matrix can contain additional tobacco or non-tobacco volatile flavor compounds to be released when the matrix is heated.
  • the aerosol generating device 200 generates an aerosol for inhalation by heating a liquid aerosol precursor and then vaporizing the liquid aerosol precursor.
  • the applicant provides the configuration details of the aerosol generating device 200 for heating a liquid aerosol precursor to generate an aerosol in the Chinese patent application publication No. CN215684777U.
  • a liquid storage chamber for storing a liquid aerosol precursor is set in the device, and the liquid aerosol precursor is absorbed and transferred to the heating element for heating and vaporization through a porous body or a capillary element; the above-mentioned aerosol generating device 200 is used to generate an aerosol by heating a liquid aerosol precursor.
  • the aerosol generating device 200 for superheating a liquid aerosol precursor is incorporated herein by reference in its entirety.
  • the charging device 100 is configured to be substantially square in shape; in use, the aerosol generating device 200 is removably received in the charging device 100 for charging.
  • the charging device 100 is basically configured to be in a square shape; and the charging device 100 has a length, a width and a thickness; and the length of the charging device 100 is greater than the width, and the width is greater than the thickness.
  • the charging device 100 includes:
  • the receiving chamber 150 is used to at least partially receive and accommodate the aerosol generating device 200 .
  • the receiving chamber 150 is arranged to extend along the length direction of the charging device 100 and is close to or defines the second side 140.
  • the receiving chamber 150 defines an opening 152 at the first end 110, so that in use, the aerosol generating device 200 can be received in the receiving chamber 150 or removed from the receiving chamber 150 through the opening 152 of the receiving chamber 150 at the first end 110, as shown by arrow R1 in FIG. 2 .
  • the receiving cavity 150 has an opening or notch 151 extending along the length direction on the second side 140; and thus when the aerosol generating device 200 is received in the receiving cavity 150, the aerosol generating device 200 is at least partially protruding or extending out of or exposed outside the receiving cavity 150.
  • the aerosol generating device 200 is at least partially protruding or extending out of or exposed outside the receiving cavity 150. For example, in FIG.
  • the aerosol generating device 200 has a protruding portion 260 protruding or extending outside the receiving cavity 150; and further, in use, the user actuates the aerosol generating device 200 by pressing or pushing the protruding portion 260 with a finger to remove the aerosol generating device 200 from the receiving cavity 150; for example, in use, the user moves the aerosol generating device 200 along the length direction by pressing or pushing the protruding portion 260 with a finger.
  • the width of the opening or notch 151 is smaller than the maximum width, maximum thickness or maximum radial width of the aerosol generating device 200, so that during use, the aerosol generating device 200 cannot receive or remove the receiving chamber 150 from the opening or notch 151, but can only receive or remove the receiving chamber 150 through the opening 152 of the receiving chamber 150 at the first end 110.
  • the receiving chamber 150 of the charging device 100 is closed at the end near the second end 120 ; then the aerosol generating device 200 is received in the receiving chamber 150 When the second end 120 is provided, the receiving cavity 150 can be pressed against the end thereof close to the second end 120 to provide a stop.
  • the outer surface of the aerosol generating device 200 includes: a smooth arc surface 270 or a curved arc surface 270, and a straight or flat surface 280 or a plane 280; the arc surface 270 and the straight or flat surface 280 together define a closed outer surface surrounding the aerosol generating device 200 in the circumferential direction.
  • the arc surface 270 is basically accommodated and shielded by the charging device 100; and the straight or flat surface 280 is exposed or protrudes outside the opening or notch 151 of the receiving cavity 150.
  • the opening or notch 151 extends to the first end 110 , and thus the opening or notch 151 and the opening 152 are connected to each other.
  • surface 280 is also a curved arc surface; and the curvature or degree of curvature of surface 280 is smaller than that of surface 270 .
  • the charging device 100 further includes:
  • the battery cell 101 is arranged close to the first side end 130;
  • the circuit board 102 is arranged near the first side end 130;
  • the battery cell 101 and the circuit board 102 are electrically connected to each other;
  • the battery cells 101 and the circuit board 102 are arranged sequentially along the length direction of the charging device 100, or the battery cells 101 and the circuit board 102 are opposite to each other along the length direction of the charging device 100; the battery cells 101 and the circuit board 102 basically have close width dimensions; the battery cells 101 are close to the first end 110, and the circuit board 102 are arranged close to the second end 120.
  • the sum of the dimensions of the battery cell 101 and the circuit board 102 along the length direction is substantially equal to the length dimension of the receiving cavity 150 .
  • circuit board 102 is arranged along a plane parallel to the length direction and/or the width direction of the charging device 100 .
  • the circuit board 102 is parallel to a plane defined by the length direction and the width direction of the charging device 100 .
  • the charging device 100 is further provided with an elastic electric contact 10, which is arranged near the second end 120; the elastic electric contact 10 is at least partially located in the receiving cavity 150 and arranged away from the opening 152; and the elastic electric contact 10 is opposite to the receiving cavity 150 along the length direction of the charging device 100. And after assembly, the elastic electric contact 10 At least part of it is exposed or extends into the receiving cavity 150 ; when the aerosol generating device 200 is received in the receiving cavity 150 , it is connected to the elastic electrical contact 10 , so that the battery core 101 charges the aerosol generating device 200 .
  • the aerosol generating device 200 has a charging port 20 , which is used to cooperate with the elastic electrical contact 10 to form conduction when the aerosol generating device 200 is received in the receiving cavity 150 of the charging device 100 , thereby charging the aerosol generating device 200 .
  • the charging port 20 is typically a USB charging port, such as a USB pin interface, or a USB type-C electrical port, or a power input port defined by a connector or device that can be used to charge the battery cell 250; in use, it is used to charge the battery cell 250 by inputting power into the charging port 20.
  • a USB charging port such as a USB pin interface, or a USB type-C electrical port, or a power input port defined by a connector or device that can be used to charge the battery cell 250; in use, it is used to charge the battery cell 250 by inputting power into the charging port 20.
  • the structure of the aerosol generating device 200 and the charging port 20 is shown in FIG5 ; the aerosol generating device 200 includes:
  • the proximal end 210 and the distal end 220 are spaced apart in the length direction; in this embodiment, the proximal end 210 defines an opening 211 through which the solid aerosol-generating article 1000 can be removably received in the aerosol-generating device 200 in use.
  • the aerosol generating device 200 further includes:
  • the heater 230 is, for example, in the shape of a pin, a needle, a sheet, a column, a rod, a bar, a tube, or a barrel, and is inserted into the aerosol generating article 1000 or surrounded by the aerosol generating article 1000 for heating.
  • the heater 230 is one or more of a resistance heater, an infrared heater, or an electromagnetic induction heater.
  • the aerosol generating device 200 further includes:
  • the circuit board 240 is arranged with a circuit and is located between the battery cell 250 and the heater 230 to guide the current between them; or the circuit of the circuit board 240 is used to control the power provided by the battery cell 250 to the heater 230 so that the heating temperature of the heater 30 is maintained at the target temperature.
  • the charging port 20 is close to or located at the distal end 220 ; and the charging port 20 and the battery cell 250 are conductively connected to each other.
  • the resilient electrical contact 10 of the charging device 100 includes a conductive resilient
  • the elastic electric contact 10 can be configured elastically in a compressed state and an extended state.
  • the door cover 111 presses or squeezes the aerosol generating device 200 so that the elastic electric contact 10 is at least partially compressed by the aerosol generating device 200.
  • the elastic electric contact 10 returns to the extended state.
  • the charging port 20 of the aerosol generating device 200 includes:
  • At least one elastic conductive element such as an electrical contact or a conductive spring pin.
  • At least one conductive element of the elastic electrical contact 10 and/or at least one conductive element of the charging port 20 is elastically compressed, thereby enabling them to stably conduct electricity.
  • the first end 110 of the charging device 100 is also provided with a door cover 111 that can be linearly moved in the width direction; the door cover 111 can selectively block or open the opening 152 of the receiving chamber 150 by moving at the first end 110.
  • the door cover 111 blocks or closes the opening 152 of the receiving chamber 150 at the first end 110, thereby pressing or fastening the aerosol generating device 200 in the receiving chamber 150 and preventing the aerosol generating device 200 from being removed from the receiving chamber 150 from the opening 152.
  • the door cover 111 is moved to open the opening 152, and the user pushes the aerosol generating device 200 to be removed from the opening 152.
  • the door cover 111 is rotatably arranged at the first end 110 of the charging device 100.
  • the door cover 111 can be arranged in a rotating manner or rotating around a pin, and then change different position states through rotational movement.
  • the door cover 111 can move along the width direction and has a plurality of moving positions, thereby selectively fully opening the opening 152 of the receiving cavity 150, partially opening the opening 152 of the receiving cavity 150, or fully closing the opening 152 of the receiving cavity 150 at the first end 110; thereby enabling the charging device 100 to be configured in different functional configuration states, and the configuration state of the charging device 100 can be changed by moving the door cover 111.
  • FIG. 4 shows that the door cover 111 is located at the first end and the opening 152 is fully opened. ; in this position, the charging device 100 is in a configuration state that allows the aerosol generating device 200 to be received or removed. In this position, the door cover 111 is against or close to the first side 130; and in this position, the door cover 111 is away from the second side 140; and in this position, the door cover 111 basically completely avoids the opening 152 of the receiving chamber 150 at the first end 110. And in this position, the aerosol generating device 200 can be received in the receiving chamber 150 through the opening 152 of the receiving chamber 150 at the first end 110, or removed from the opening 152.
  • FIG. 6 shows a schematic diagram of a position or state in which the door cover 111 is located at the first end to completely close or block the opening 152; in this position, the charging device 100 is in a configuration state that does not allow the aerosol generating device 200 to be removed, and the aerosol generating device 200 received in the charging device 100 cannot receive and heat the aerosol generating product 1000.
  • the door cover 111 is against or close to the second side 140; and in this position, the door cover 111 is away from the first side 130; and in this position, the door cover 111 basically completely blocks or closes the opening 152 of the receiving chamber 150 at the first end 110.
  • the door cover 111 can also prevent the aerosol generating device 200 received in the receiving chamber 150 from being removed from the opening 152.
  • the door cover 111 blocks or closes the opening 211 of the proximal end 210 of the aerosol generating device 200 , thereby preventing dust or other foreign matter from entering the opening 211 .
  • FIG. 7 shows a schematic diagram of a position or state in which the door cover 111 partially opens the opening 152 at the first end, and partially covers the opening 152; in this position, the charging device 100 is in a configuration state that does not allow the aerosol generating device 200 to be removed, and the aerosol generating device 200 received in the charging device 100 is allowed to receive and heat the aerosol generating product 1000.
  • the door cover 111 partially abuts against the proximal end 210 of the aerosol generating device 200, and substantially completely avoids the opening 211 of the proximal end 210 of the aerosol generating device 200, and thus in this position, the aerosol generating product 1000 can be received in the aerosol generating device 200 through the opening 211 for heating or removed from the aerosol generating device 200. And in this position, the aerosol generating device 200 can be charged by the charging device 100 at the same time, and the aerosol generating product 1000 can be heated at the same time.
  • the user can receive the mist generating device 200 in the receiving cavity 150 of the charging device 100 for charging. If there is still a need for inhalation, the door cover 111 can be moved to the position or state of partially covering the receiving cavity 150 as shown in FIG. 7 , so that the opening 211 of the proximal end 210 of the aerosol generating device 200 is exposed, and then the aerosol generating article 1000 is inserted into the aerosol generating device 200 to be heated for inhalation.
  • the power provided to the heater 30 by the circuit control of the circuit board 240 is not provided by the battery cell 250, but is provided to the heater 30 by the battery cell 101 of the charging device 100 through the elastic electrical contact 10.
  • the user operates to start the aerosol generating device 200 to heat the aerosol generating product 1000, which can be operated or input through a switch, button or touch screen of the aerosol generating device 200 exposed outside the receiving cavity 150.
  • the circuit control of the circuit board 240 provides part of the power outputted by the elastic electrical contact 10 of the battery cell 101 to the battery cell 250 for charging the battery cell, and part of the power is provided to the heater 30 for heating the heater 30.
  • two conductive paths are arranged on the circuit board 240, wherein the first path is located between the charging port 20 and the battery cell 250, so as to charge the battery cell 250 with the power outputted by the battery cell 101 to the charging port 20; and the second path is located between the charging port 20 and the heater 30, so as to provide the power outputted by the battery cell 101 to the charging port 20 to the heater 30.
  • both of the above two conductive paths can be selectively turned on or off.
  • the above two conductive paths can be turned on at the same time, so that the power output by the battery cell 101 can charge the battery cell 250 and heat the heater 30 at the same time.
  • the above two conductive paths can be alternately turned on, so that the power input to the charging port 20 can alternately charge the battery cell 250 and heat the heater 30; and, charging the battery cell 250 and heating the heater 30 can be performed at different times.
  • the circuit of the circuit board 240 is configured to suspend or interrupt the charging of the battery cell 250 in response to the user's operation or input, and the power output from the battery cell 101 to the charging port 20 by the elastic electrical contact 10 is provided to the heater 30 to heat the aerosol generating product 1000.
  • the aerosol generating product 1000 is heated. After that, the power output from the battery cell 101 to the charging port 20 by the elastic electrical contact 10 is stopped from being provided to the heater 30 , and the charging of the battery cell 250 is switched or restored instead.
  • the circuit of the circuit board 240 is configured to control the charging port 20 to charge the battery cell 250 at the same time, and to cause the battery cell 250 to output power to the heater 30 to heat the aerosol generating product 1000 at the same time.
  • a third magnetic element 112 is provided on the charging device 100 adjacent to or close to the first end 110; and the magnetic poles of the third magnetic element 112 are arranged opposite to each other along the longitudinal direction of the charging device 100; for example, in Figures 5 to 7, the magnetic pole of the third magnetic element 112 on the side facing the first end 110 is the S pole, and the magnetic pole on the other side away from the first end 110 is the N pole.
  • a first magnetic element 212 is disposed on a side of the aerosol generating device 200 that is away from the straight or flat surface 280; and the first magnetic element 212 is adjacent to or close to or located at the proximal end 210.
  • the magnetic poles of the first magnetic element 212 are arranged opposite to each other along the longitudinal direction of the aerosol generating device 200; for example, in FIG. 5 to FIG. 7 , the magnetic pole of the first magnetic element 212 on one side facing the proximal end 210 is an S pole, and the magnetic pole on the other side away from the proximal end 210 is an N pole.
  • the door cover 111 is provided with a second magnetic element 113, a fourth magnetic element 114, a fifth magnetic element 115 and a sixth magnetic element 116.
  • the second magnetic element 113, the fourth magnetic element 114, the fifth magnetic element 115 and the sixth magnetic element 116 are arranged in sequence along the width direction of the charging device 100 and/or the length direction of the door cover 111.
  • the fourth magnetic element 114, the fifth magnetic element 115 and the sixth magnetic element 116 are respectively used to magnetically attract or repel the third magnetic element 112, so that the door cover 111 can be stably maintained at the position when it moves to different positions.
  • the fourth magnetic element 114 is aligned with the third magnetic element 112. And in this position, the fourth magnetic element 114 and the third magnetic element 112 are magnetically attracted to each other, thereby keeping the door cover 111 in the position of fully opening the opening 152 of the receiving cavity 150. Then, in the arrangement of the magnetic poles of the fourth magnetic element 114, the fourth magnetic element 114 is directed toward or close to the third magnetic element 112.
  • One side of the third magnetic element 112 is an N pole, and the other side away from the third magnetic element 112 is an S pole. And in the position shown in FIG.
  • the second magnetic element 113 and/or the fifth magnetic element 115 and/or the sixth magnetic element 116 are staggered with the third magnetic element 112. And when the door cover 111 moves to the position or state of fully opening the opening 152 in FIG. 4, the second magnetic element 113 is located between the third magnetic element 112 and the receiving cavity 150 and/or the second side 140; and the fifth magnetic element 115 and/or the sixth magnetic element 116 are located between the third magnetic element 112 and the first side 130.
  • the second magnetic element 113 and/or the fourth magnetic element 114 and/or the fifth magnetic element 115 and/or the sixth magnetic element 116 are staggered from the third magnetic element 112; in this position, the second magnetic element 113 and/or the fourth magnetic element 114 and/or the fifth magnetic element 115 and/or the sixth magnetic element 116 are located between the third magnetic element 112 and the second side 140.
  • the fourth magnetic element 114 and/or the fifth magnetic element 115 and/or the sixth magnetic element 116 are located between the third magnetic element 112 and the receiving cavity 150; the second magnetic element 113 is at least partially opposite to the opening and/or the opening 152 of the receiving cavity 150; and the fourth magnetic element 114 and/or the fifth magnetic element 115 and/or the sixth magnetic element 116 deviate from or avoid the opening 152 of the receiving cavity 150. And in this position, the sixth magnetic element 116 is closest to the third magnetic element 112.
  • the sixth magnetic element 116 is magnetically repelled from the third magnetic element 112, thereby biasing the door cover 111 toward the second side 140, thereby stably maintaining the door cover 111 in a position that blocks or closes the opening 152 of the receiving cavity 150.
  • the side of the sixth magnetic element 116 facing or close to the third magnetic element 112 is the S pole, and the other side away from the third magnetic element 112 is the N pole, thereby causing magnetic repulsion between them, and the repulsive force is shown by arrow R2 in FIG6 .
  • the fifth magnetic element 115 is aligned with the third magnetic element 112; and the second magnetic element 113 and/or the fourth magnetic element 114 and/or the sixth magnetic element 116 are staggered from the third magnetic element 112.
  • the fifth magnetic element 115 and the third magnetic element 112 are magnetically attracted to each other, thereby stably maintaining the door cover 111 in the part.
  • the position or state of partially blocking or partially closing the opening 152 of the receiving cavity 150 is
  • the side of the fifth magnetic element 115 facing or close to the third magnetic element 112 is the N pole, and the other side away from the third magnetic element 112 is the S pole, so that they are magnetically attracted to each other.
  • the sixth magnetic element 116 is located between the third magnetic element 112 and the first side 130, and the second magnetic element 113 and/or the fourth magnetic element 114 are located between the third magnetic element 112 and the second side 140.
  • the second magnetic element 113 is opposite or aligned with at least the portion of the cavity 150 away from the second side 140.
  • the door cover 111 when the door cover 111 moves to the position shown in FIG. 7 , the door cover 111 partially covers or abuts against the proximal end 210 of the aerosol generating device 200. And, the part of the aerosol generating device 200 abutting against the door cover 111 is away from the second side 130 and/or the exposed part. Furthermore, the door cover 111 at least partially provides a stop for the aerosol generating device 200 at the first end 110, thereby preventing the aerosol generating device 200 from being removed.
  • the second magnetic element 113 is at least partially close to and aligned with the first magnetic element 212 of the aerosol generating device 200; and the second magnetic element 113 and the first magnetic element 212 are magnetically repelling.
  • the repulsive force between the second magnetic element 113 and the first magnetic element 212 can bias the aerosol generating device 200 toward the second end 120, as shown by the arrow R3 in FIG. 7 ; for stably maintaining the aerosol generating device 200 in the receiving cavity 150, and for stably contacting and conducting the elastic electrical contact 10 containing the conductive spring pin and the charging port 20.
  • the magnetic poles of the second magnetic element 113 are arranged such that the magnetic pole on one side facing or close to the receiving cavity 150 is the S pole, and the magnetic pole on the other side away from the receiving cavity 150 is the N pole.
  • the bias can also be realized by replacing magnetic repulsion with other biasing mechanisms such as springs; for example, in some implementations, other biasing mechanisms may include linear springs or torsion springs.
  • the aerosol generating device 200 when the aerosol generating device 200 is received in the receiving chamber 150, the aerosol generating device 200 is resisted by the door cover 111 at the first end 110.
  • the elastic electric contact 10 By pressing or squeezing and/or the above magnetic repulsion bias setting, the elastic electric contact 10 is at least partially compressed, so that the elastic electric contact 10 and the charging port 20 can stably contact and conduct.
  • the elastic electric contact 10 can recover or move from the compressed state to the extended state, and provide a thrust or elastic force to push the aerosol generating device 200 at least partially out of the opening 152.
  • the first magnetic element 212 is facing away from the opening or notch 151 of the receiving cavity 150 .

Landscapes

  • Charge And Discharge Circuits For Batteries Or The Like (AREA)

Abstract

本申请提出一种电系统、充电装置及气雾生成装置;其中,电系统包括气雾生成装置和用于对气雾生成装置的充电装置;所述充电装置包括:接收腔,第二开口;在使用中,气雾生成装置能通过第二开口可移除地接收于接收腔;门盖,能选择性地在第一位置和第二位置之间配置;门盖在第一位置以允许气雾生成装置通过第二开口可移除地接收于接收腔;门盖在第二位置阻止接收于接收腔内气雾生成装置从第二开口移除、且能允许气溶胶生成制品通过第一开口接收于气雾生成装置内加热。以上电系统,充电装置在对气雾生成装置充电时,气雾生成装置还能接收气溶胶生成制品并加热以供用户抽吸。

Description

电系统、充电装置及气雾生成装置
相关申请的交叉引用参考
本申请要求于2022年10月10日提交中国专利局,申请号为202211235597.9,名称为“电系统、充电装置及气雾生成装置”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请实施例涉及加热不燃烧气溶胶生成技术领域,尤其涉及一种电系统、气雾生成装置及充电装置。
背景技术
烟制品(例如,香烟、雪茄等)在使用过程中燃烧烟草以产生烟草烟雾。人们试图通过制造在不燃烧的情况下释放化合物的产品来替代这些燃烧烟草的制品。
此类产品的示例为加热装置,其通过加热而不是燃烧材料来释放化合物。例如,该材料可为烟草或其他非烟草产品,这些非烟草产品可包含或可不包含尼古丁。加热装置通常包括加热器以加热烟草或非烟草产品,以及用于对加热器提供电力的可充电电芯;在使用中为保证加热装置中电芯的电力充足,设置有配合加热装置的充电座;加热装置可移除地结合于充电座上,进而使充电座对加热装置内的电芯充电。
发明内容
本申请的一个实施例提供一种电系统,包括:
气雾生成装置,用于加热气溶胶生成制品产生气溶胶;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;
充电装置,用于对所述气雾生成装置充电;
所述充电装置包括:
接收腔,用于接收所述气雾生成装置;所述接收腔界定有第二开口,所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
门盖,能选择性地在第一位置和第二位置之间配置;其中,
所述门盖在所述第一位置打开所述第二开口,以允许所述气雾生成装置通过所述第二开口可移除地接收于所述接收腔;
所述门盖在所述第二位置至少部分地关闭所述第二开口、且避开或显露所述第一开口,以阻止接收于所述接收腔内所述气雾生成装置从所述第二开口移除、且允许气溶胶生成制品通过所述第一开口接收于气雾生成装置内。
在一些实施中,所述门盖被布置成能在所述第一位置和第二位置之间移动,进而改变在所述第一位置和第二位置之间的配置。
在一些实施中,所述移动包括线性移动或旋转移动中的至少一种。
在一些实施中,所述充电装置包括:沿长度方向相背离的第一端和第二端;
所述第二开口界定于所述第一端;所述门盖可移动地布置于所述第一端。
在一些实施中,当所述气雾生成装置接收于所述接收腔时,所述第一开口朝向所述第一端。
在一些实施中,所述充电装置被配置为当所述门盖位于所述第二位置时,使接收于所述接收腔内的所述气雾生成装置朝所述第二端偏压。
在一些实施中,所述气雾生成装置包括第一磁性件;
所述门盖上设有:
第二磁性件,用于在所述第二位置时与所述第一磁性件磁性相斥,进而使所述气雾生成装置朝所述第二端偏压。
在一些实施中,当所述门盖位于所述第二位置时,所述第二磁性件与所述气雾生成装置的第一磁性件基本是沿所述充电装置的长度方向对准的。
在一些实施中,所述充电装置包括:
沿宽度方向相背离的第一侧和第二侧;
所述接收腔靠近所述第二侧布置;
所述气雾生成装置接收于所述接收腔内时,所述第一磁性件背离所述第二侧定位。
在一些实施中,所述充电装置还包括第三磁性件;
所述门盖上设有:
第四磁性件,用于在所述第一位置时与所述第三磁性件磁性相吸,进而使所述门盖保持于所述第一位置;
和/或,第五磁性件,用于在所述第二位置时与所述第三磁性件磁性相吸,进而使所述门盖保持于所述第二位置。
在一些实施中,所述门盖还能选择性地在第三位置进行配置;所述门盖在所述第三位置至少部分地关闭所述第二开口、且至少部分地遮盖所述第一开口,以阻止所述气雾生成装置从所述第二开口接收于所述接收腔或从所述接收腔内移除、以及阻止所述接收腔内的所述气雾生成装置通过所述第一开口接收气溶胶生成制品。
在一些实施中,所述第二位置被布置成位于所述第一位置和所述第三位置之间。
在一些实施中,所述门盖在所述第二位置部分地关闭所述第二开口;
和/或,所述门盖在所述第三位置基本完全地关闭所述第二开口。
在一些实施中,所述充电装置还包括第三磁性件;
所述门盖上设有:
第六磁性件,用于在所述第三位置时与所述第三磁性件磁性相斥,进而使所述门盖保持于所述第三位置。
在一些实施中,所述充电装置包括:
沿宽度方向相背离的第一侧和第二侧;
所述接收腔靠近所述第二侧布置;
所述门盖位于所述第三位置时,所述第六磁性件比所述第三磁性件更靠近所述第二侧。
在一些实施中,所述气雾生成装置接收于所述接收腔内时,具有裸露或伸出至所述接收腔外的凸出部分;在使用中用户能通过对所述凸出部分进行致动,以将所述气雾生成装置从所述接收腔内移除。
在一些实施中,所述充电装置包括:
沿宽度方向相背离的第一侧和第二侧;
所述接收腔靠近所述第二侧布置,并界定有位于所述第二侧的第三开口;当所述气雾生成装置接收于所述接收腔时,所述气雾生成装置的 凸出部分由所述第三开口裸露或伸出至所述接收腔外。
在一些实施中,所述气雾生成装置包括沿周向方向围绕该气雾生成装置的外侧表面;所述外侧表面包括:
第一表面部分和第二表面部分;其中,
所述第一表面部分是弯曲的,所述第二表面部分基本是平坦的;或,所述第二表面部分的曲率或弯曲程度是小于所述第一表面部分的。
在一些实施中,所述气雾生成装置接收于所述接收腔内时,所述第一表面部分基本是被容纳或隐藏于所述接收腔内的、以及所述第二表面部分基本是裸露或伸出至所述接收腔外的。
在一些实施中,当所述气雾生成装置接收于所述充电装置的接收腔内充电时,所述气雾生成装置被配置为能响应用户的操作或输入对从所述第一开口接收的气溶胶生成制品进行加热。
在一些实施中,所述气雾生成装置包括:
加热器,用于加热气溶胶生成制品;
可充电的第一电芯,至少用于向所述加热器供电;
电路,被配置为能同时将所述充电装置提供的电力部分地对所述第一电芯充电,以及将所述充电装置提供的电力部分地输出至所述加热器以加热气溶胶生成制品。
在一些实施中,所述气雾生成装置被配置为能间歇性地或脉冲式地接收所述充电装置的电力以进行充电;以及,所述气雾生成装置被配置为在接收所述充电装置的电力的间歇期间或相邻脉冲之间加热气溶胶生成制品。
在一些实施中,当所述气雾生成装置接收于所述充电装置的接收腔内充电时,所述气雾生成装置被配置为能响应用户的操作或输入暂停或中断充电并加热从所述第一开口接收的气溶胶生成制品,直至加热结束恢复充电。
本申请的又一个实施例还提出一种电系统,包括:
气雾生成装置,用于加热气溶胶生成制品产生气溶胶;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;
充电装置,用于对所述气雾生成装置充电;所述充电装置包括接收腔,所述气雾生成装置可移除地接收于所述接收腔内充电;
所述充电装置被构造成能选择性地在第一配置、第二配置和第三配置之间配置;其中,
所述充电装置在所述第一配置中,允许所述气雾生成装置接收于所述接收腔或从所述接收腔内移除;
所述充电装置在所述第二配置中,阻止接收于所述接收腔内的所述气雾生成装置从所述接收腔移除、且允许气溶胶生成制品从所述第一开口接收于所述气雾生成装置内进行加热;
所述充电装置在所述第三配置中,阻止接收于所述接收腔内的所述气雾生成装置从所述接收腔移除、且阻止所述接收腔内的所述气雾生成装置通过所述第一开口接收气溶胶生成制品。
本申请的又一个实施例还提出一种电系统,包括:
气雾生成装置,用于加热气溶胶生成制品产生气溶胶;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;
充电装置,用于对所述气雾生成装置充电;
所述充电装置包括:
接收腔,用于接收所述气雾生成装置;所述接收腔界定有第二开口,所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
所述充电装置被构造成能选择性地在第一配置和第二配置之间进行配置;其中,
所述充电装置在所述第一配置中地打开所述第二开口,以允许所述气雾生成装置通过所述第二开口接收于所述接收腔或从所述接收腔内移除;
所述充电装置在所述第二配置中至少部分地关闭所述第二开口、且避开或显露所述第一开口,以阻止接收于所述接收腔内所述气雾生成装置从所述第二开口移除、且允许气溶胶生成制品通过所述第一开口接收于气雾生成装置内。
本申请的又一个实施例还提出一种电系统,包括:
气雾生成装置,用于加热气溶胶生成制品产生气溶胶;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;
充电装置,用于对所述气雾生成装置充电;
所述充电装置包括:
接收腔,用于接收所述气雾生成装置;所述接收腔界定有第二开口,所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
门盖,能选择性地在第一位置、第二位置和第三位置之间配置;其中,
所述门盖在所述第一位置打开所述第二开口,以允许所述气雾生成装置通过所述第二开口可移除地接收于所述接收腔;
所述门盖在所述第二位置至少部分地关闭所述第二开口、且避开或显露所述第一开口,以阻止接收于所述接收腔内所述气雾生成装置从所述第二开口移除、且允许气溶胶生成制品通过所述第一开口接收于气雾生成装置内;
所述门盖在所述第三位置至少部分关闭所述第二开口、且关闭所述第一开口,以阻止接收于所述接收腔内的所述气雾生成装置从所述第二开口移除、且阻止所述接收腔内的所述气雾生成装置通过所述第一开口接收气溶胶生成制品。
本申请的又一个实施例还提出一种充电装置,用于对气雾生成装置进行充电;所述气雾生成装置用于接收气溶胶生成制品并进行加热以产生气溶胶;所述充电装置包括:
接收腔,所述气雾生成装置可移除地接收于所述接收腔内进行充电;
所述充电装置被构造成能选择性地在第一配置、第二配置和第三配置之间配置;其中,
所述充电装置在所述第一配置中,允许所述气雾生成装置接收于所述接收腔或从所述接收腔内移除;
所述充电装置在所述第二配置中,阻止接收于所述接收腔内的所述气雾生成装置从所述接收腔移除、且允许气溶胶生成制品接收于所述气雾生成装置内进行加热;
所述充电装置在所述第三配置中,阻止接收于所述接收腔内的所述气雾生成装置从所述接收腔移除、且阻止所述接收腔内的所述气雾生成装置接收气溶胶生成制品。
本申请的又一个实施例还提出一种充电装置,用于对气雾生成装置进行充电;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;所述充电装置包括:
接收腔,用于至少部分接收气雾生成装置;
第二开口,在使用中所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
所述充电装置被构造成能选择性地在第一配置和第二配置之间进行配置;其中,
所述充电装置在所述第一配置中地打开所述第二开口,以允许所述气雾生成装置通过所述第二开口接收于所述接收腔或从所述接收腔内移除;
所述充电装置在所述第二配置中至少部分地关闭所述第二开口、且避开或显露所述第一开口,以阻止接收于所述接收腔内所述气雾生成装置从所述第二开口移除、且允许气溶胶生成制品通过所述第一开口接收于气雾生成装置内。
本申请的又一个实施例还提出一种充电装置,用于对气雾生成装置进行充电;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;所述充电装置包括:
接收腔,用于接收气雾生成装置;
第二开口,所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
门盖,能选择性地在第一位置和第二位置之间配置;其中,
所述门盖在所述第一位置打开所述第二开口,以允许所述气雾生成装置通过所述第二开口可移除地接收于所述接收腔;
所述门盖在所述第二位置至少部分地关闭所述第二开口、且避开或显露所述第一开口,以阻止接收于所述接收腔内所述气雾生成装置从所 述第二开口移除、且允许气溶胶生成制品通过所述第一开口接收于气雾生成装置内。
在一些实施中,所述门盖被布置成能在所述第一位置和第二位置之间移动,进而改变在所述第一位置和第二位置之间的配置。
在一些实施中,所述移动包括线性移动或旋转移动中的至少一种。
在一些实施中,包括:
沿长度方向相背离的第一端和第二端;
所述第二开口界定于所述第一端;
所述门盖可移动地布置于所述第一端。
在一些实施中,所述充电装置被配置为当所述门盖位于所述第二位置时,使接收于所述接收腔内的所述气雾生成装置朝所述第二端偏压。
在一些实施中,所述气雾生成装置包括第一磁性件;
所述门盖上设有:
第二磁性件,用于在所述第二位置时与所述第一磁性件磁性相斥,进而使所述气雾生成装置朝所述第二端偏压。
在一些实施中,当所述门盖位于所述第二位置时,所述第二磁性件与所述第一磁性件基本是沿所述充电装置的长度方向对准的。
在一些实施中,所述充电装置包括:
沿宽度方向相背离的第一侧和第二侧;
所述接收腔靠近所述第二侧布置;
所述气雾生成装置接收于所述接收腔内时,所述第一磁性件背离所述第二侧定位。
在一些实施中,所述充电装置还包括第三磁性件;
所述门盖上设有:
第四磁性件,用于在所述第一位置时与所述第三磁性件磁性相吸,进而使所述门盖保持于所述第一位置;
和/或,第五磁性件,用于在所述第二位置时与所述第三磁性件磁性相吸,进而使所述门盖保持于所述第二位置。
在一些实施中,所述门盖还能选择性地在第三位置进行配置;所述 门盖在所述第三位置至少部分地关闭所述第二开口、且至少部分地关闭所述第一开口,以阻止所述气雾生成装置从所述第二开口接收于所述接收腔或从所述接收腔内移除、以及阻止所述接收腔内的所述气雾生成装置通过所述第一开口接收气溶胶生成制品。
在一些实施中,所述第二位置被布置成位于所述第一位置和所述第三位置之间。
在一些实施中,所述门盖在所述第二位置仅部分地闭所述第二开口;
和/或,所述门盖在所述第三位置基本完全地关闭所述第二开口。
在一些实施中,所述充电装置还包括第三磁性件;
所述门盖上设有:
第六磁性件,用于当所述门盖位于所述第三位置时,与所述第三磁性件磁性相斥,进而使所述门盖保持于所述第三位置。
在一些实施中,所述充电装置包括:
沿宽度方向相背离的第一侧和第二侧;
所述接收腔靠近所述第二侧布置;
所述门盖位于所述第三位置时,所述第六磁性件比所述第三磁性件更靠近所述第二侧。
本申请的又一个实施例还提出一种气雾生成装置,用于加热气溶胶生成制品生成气溶胶;包括:
可充电的电芯;
充电端口,被布置成能通过向所述充电端口输入电力进而对所述电芯充电;
第一开口,以用于接收气溶胶生成制品;
电路,被配置为当通过所述充电端口对所述电芯进行充电时,能响应用户的操作或输入对从所述第一开口接收的气溶胶生成制品进行加热。
在一些实施中,所述气雾生成装置包括:
加热器,用于加热气溶胶生成制品;
所述电路被配置为能同时将所述充电端口输入的电力部分地对所 述电芯充电,以及将所述充电端口输入的电力部分地输出至所述加热器以加热气溶胶生成制品。
在一些实施中,所述电路被配置为能将所述充电端口输入的电力间歇性地或脉冲式地对所述电芯进行充电;以及,所述电路被配置为使所述加热器在间歇期间或相邻脉冲之间加热气溶胶生成制品。
在一些实施中,所述电路被配置为能响应用户的操作或输入暂停或中断对所述电芯的充电并加热从所述第一开口接收的气溶胶生成制品,直至加热结束恢复充电。
本申请的又一个实施例还提出一种电系统,包括:
气雾生成装置,用于加热气溶胶生成制品产生气溶胶;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;
充电装置,用于对所述气雾生成装置充电;
所述充电装置包括:
接收腔,用于接收所述气雾生成装置;所述接收腔界定有第二开口,所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
弹性的电触头,能选择性地在伸长状态和压缩状态之间致动且偏置返回到所述伸长状态;所述弹性的电触头至少部分裸露于所述接收腔内,以用于对接收于所述接收腔内的所述气雾生成装置输出电力;
门盖,能选择性地在第一位置和第二位置之间配置;其中,
所述门盖在所述第一位置打开所述第二开口,以允许所述气雾生成装置通过所述第二开口可移除地接收于所述接收腔;
所述门盖在所述第二位置至少部分地关闭所述第二开口、且部分地抵靠或压制接收于所述接收腔内的所述气雾生成装置,进而使所述气雾生成装置将所述弹性的电触头压制至所述压缩状态、并与所述弹性的电触头建立导电连接;
所述门盖在所述第二位置避开所述第一开口。
在一些实施中,当所述门盖从所述第二位置移动至所述第一位置时,所述弹性的电触头被配置成能由所述压缩状态朝向所述伸长状态致动,以至少部分将所述气雾生成装置接收于所述接收腔的第二开口推出或 弹出。
在一些实施中,所述弹性的电触头包括至少一个导电弹针。
在一些实施中,所述充电装置还包括:
偏压机构,用于当所述门盖在所述第二位置时,使所述气雾生成装置将所述弹性的电触头朝所述压缩状态偏压。
在一些实施中,所述偏压机构包括:
第一磁性件,布置于所述气雾生成装置上;
第二磁性件,布置于所述门盖上,用于在所述第二位置时与所述第一磁性件磁性相斥,进而磁性排斥使所述气雾生成装置将所述弹性的电触头朝所述压缩状态偏压。
在一些实施中,所述偏压机构包括弹簧。
在一些实施中,所述门盖还包括还能选择性地在第三位置进行配置;
所述门盖在所述第三位置同时关闭所述第二开口和所述第一开口;以及,所述门盖在所述第三位置至少部分地抵靠或压制接收于所述接收腔内的所述气雾生成装置,进而使所述气雾生成装置将所述弹性的电触头压制至所述压缩状态、并与所述弹性的电触头建立导电连接。
本申请的又一个实施例还提出一种电系统,包括:
气雾生成装置,用于加热气溶胶生成制品产生气溶胶;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;
充电装置,用于对所述气雾生成装置充电;
所述充电装置包括:
接收腔,用于接收所述气雾生成装置;所述接收腔界定有第二开口,所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
弹性的电触头,能选择性地在伸长状态和压缩状态之间致动且偏置返回到所述伸长状态;所述弹性的电触头至少部分裸露于所述接收腔内,以用于对接收于所述接收腔内的所述气雾生成装置输出电力;
所述充电装置被构造成能选择性地在第一配置和第二配置之间进行配置;其中,
所述充电装置在所述第一配置中地打开所述第二开口,以允许所述 气雾生成装置通过所述第二开口接收于所述接收腔或从所述接收腔内移除;
所述充电装置在所述第二配置中至少部分地关闭所述第二开口、且部分地抵靠或压制接收于所述接收腔内的所述气雾生成装置,进而使所述气雾生成装置至少部分将所述弹性的电触头压制至所述压缩状态、并与所述弹性的电触头建立导电连接;
所述充电装置在所述第二配置中避开或显露所述第一开口。
在一些实施中,所述充电装置还包括还能选择性地在第三位置进行配置;
所述充电装置在所述第三位置同时关闭所述第二开口和所述第一开口;以及,所述充电装置在所述第三位置至少部分地抵靠或压制接收于所述接收腔内的所述气雾生成装置,进而使所述气雾生成装置将所述弹性的电触头压制至所述压缩状态、并与所述弹性的电触头建立导电连接。
本申请的又一个实施例还提出一种充电装置,用于对气雾生成装置进行充电;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;所述充电装置包括:
接收腔,用于至少部分接收气雾生成装置;
第二开口,在使用中所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
弹性的电触头,能选择性地在伸长状态和压缩状态之间致动且偏置返回到所述伸长状态;所述弹性的电触头至少部分裸露于所述接收腔内,以用于对接收于所述接收腔内的所述气雾生成装置输出电力;
所述充电装置被构造成能选择性地在第一配置和第二配置之间进行配置;其中,
所述充电装置在所述第一配置中地打开所述第二开口,以允许所述气雾生成装置通过所述第二开口接收于所述接收腔或从所述接收腔内移除;
所述充电装置在所述第二配置中至少部分地关闭所述第二开口、且 部分地抵靠或压制接收于所述接收腔内的所述气雾生成装置,进而使所述气雾生成装置至少部分将所述弹性的电触头压制至所述压缩状态、并与所述弹性的电触头建立导电连接;
所述充电装置在所述第二配置中避开或显露所述第一开口。
本申请的又一个实施例还提出一种充电装置,用于对气雾生成装置进行充电;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;所述充电装置包括:
接收腔,用于至少部分接收气雾生成装置;
第二开口,在使用中所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
弹性的电触头,能选择性地在伸长状态和压缩状态之间致动且偏置返回到所述伸长状态;所述弹性的电触头至少部分裸露于所述接收腔内,以用于对接收于所述接收腔内的所述气雾生成装置输出电力;
门盖,能选择性地在第一位置和第二位置之间配置;其中,
所述门盖在所述第一位置打开所述第二开口,以允许所述气雾生成装置通过所述第二开口可移除地接收于所述接收腔;
所述门盖在所述第二位置至少部分地关闭所述第二开口、且部分地抵靠或压制接收于所述接收腔内的所述气雾生成装置,进而使所述气雾生成装置将所述弹性的电触头压制至所述压缩状态、并与所述弹性的电触头建立导电连接;
所述门盖在所述第二位置避开所述第一开口。
以上电系统,充电装置在对气雾生成装置充电时,气雾生成装置还能接收气溶胶生成制品并加热以供用户抽吸。
附图说明
一个或多个实施例通过与之对应的附图中的图片进行示例性说明,这些示例性说明并不构成对实施例的限定,附图中具有相同参考数字标号的元件表示为类似的元件,除非有特别申明,附图中的图不构成比例限制。
图1是一实施例提供的电系统一个位置或状态的示意图;
图2是图1中气雾生成装置与充电装置移除状态的示意图;
图3是图2中充电装置一个视角的剖面示意图;
图4是图2中充电装置又一个视角的剖面示意图;
图5是图2中气雾生成装置一个视角的剖面示意图;
图6是图1的电系统中门盖移动至又一个位置或状态的示意图;
图7是图1的电系统中门盖移动至又一个位置或状态的示意图。
具体实施方式
为了便于理解本申请,下面结合附图和具体实施方式,对本申请进行更详细的说明。
本申请的一个实施例提出一种电系统1,参见图1和图2所示,包括:
气雾生成装置200,以及用于对气雾生成装置200充电的充电装置100。其中,气雾生成装置200用于产生气溶胶。
具体地在一个实施例中,气雾生成装置200是通过至少部分接收固体的气溶胶生成制品1000例如烟支并进行加热,进而使气溶胶生成制品1000内的至少部分可挥发性的成分挥发释放,形成可供吸食的气溶胶。进一步在可选的实施中,气溶胶生成制品1000优选采用加热时从基质中释放的挥发化合物的含烟草的材料;或者也可以是能够加热之后适合于电加热发烟的非烟草材料。气溶胶生成制品1000优选采用固体基质,可以包括香草叶、烟叶、均质烟草、膨胀烟草中的一种或多种的粉末、颗粒、碎片细条、条带或薄片中的一种或多种;或者,固体基质可以包含附加的烟草或非烟草的挥发性香味化合物,以在基质受热时被释放。
或者在又一些变化的实施例中,气雾生成装置200是通过加热液体气溶胶前体进而使液体气溶胶前体汽化生成供吸食的气溶胶的。例如,例如申请人在中国专利申请公开第CN215684777U号中提供了关于这一种加热液体气溶胶前体生成气溶胶的气雾生成装置200的配置细节,具体地是通过在装置内设置存储液体气溶胶前体的储液腔,并通过多孔体或毛细元件吸取和传递液体气溶胶前体至加热元件上加热汽化;上述通 过加热液体气溶胶前体的气雾生成装置200文献全文以参见的方式纳入本文。
以及进一步参见图1和图2所示,充电装置100被构造成大体是方形的外形;在使用中,气雾生成装置200可移除地被接收于充电装置100内进行充电。
进一步根据图1和图2所示,充电装置100基本构造成是方形的形状;以及充电装置100具有长度、宽度和厚度;以及充电装置100的长度大于宽度、宽度大于厚度。充电装置100包括:
沿长度方向相背离的第一端110和第二端120;以及,
沿宽度方向相背离的第一侧130和第二侧140;以及,
接收腔150,用于至少部分接收和容纳气雾生成装置200。
接收腔150被布置成是,沿充电装置100的长度方向延伸,并且是靠近或界定第二侧140的。以及,接收腔150在第一端110处界定有开口152,进而在使用中,气雾生成装置200能通过接收腔150位于第一端110处的开口152接收于接收腔150内或从接收腔150内移除,如图2中箭头R1所示。
以及进一步地,接收腔150在第二侧140具有沿长度方向延伸的开口或缺口151;进而当气雾生成装置200接收于接收腔150内时,气雾生成装置200至少部分是凸出或延伸出或裸露于接收腔150外的,例如图1中,气雾生成装置200具有凸出或延伸至接收腔150外的凸出部分260;进而在使用中,用户通过用手指抵靠或按压或推动凸出部分260进而对气雾生成装置200进行致动,以将气雾生成装置200从接收腔150内移除;例如在使用中,由用户通过用手指抵靠或按压或推动凸出部分260沿长度方向移动。开口或缺口151的宽度小于气雾生成装置200的最大宽度或最大厚度或最大径向宽度,进而使得在使用中气雾生成装置200无法从开口或缺口151接收入或移除接收腔150,而仅能通过接收腔150在第一端110的开口152接收入或移除接收腔150。
当然,根据图1和图2中所示,充电装置100的接收腔150在靠近第二端120的端部是封闭的;则气雾生成装置200接收于接收腔150内 时,能抵靠于接收腔150靠近第二端120的端部上提供止动。
以及进一步地参见图1和图2所示,气雾生成装置200的外侧表面包括:平滑的弧形的表面270或弯曲的弧形表面270、以及平直或平坦的表面280或者平面280;弧形的表面270与平直或平坦的表面280共同界定形成周向方向围绕气雾生成装置200的闭合的外侧表面。以及,在接收于充电装置100的接收腔150内时,弧形的表面270基本上是被充电装置100所容纳和遮挡的;以及平直或平坦的表面280是露出或凸出至接收腔150的开口或缺口151外的。
以及在实施中,开口或缺口151是延伸至第一端110的,进而开口或缺口151与开口152是彼此连通的。
或者在又一些变化的实施中,表面280也是弯曲的弧形表面;以及,表面280的曲率或弯曲程度是小于表面270的。
以及进一步参见图2至图4所示,充电装置100还包括:
电芯101,靠近第一侧端130布置;
电路板102,靠近第一侧端130布置;
当然,电芯101与电路板102是彼此电连接的;
以及,电芯101和电路板102沿充电装置100的长度方向是依次布置的,或者电芯101和电路板102是沿充电装置100的长度方向相对的;电芯101和电路板102基本上具有接近的宽度尺寸;电芯101靠近第一端110,电路板102靠近第二端120布置。
以及在构造中,电芯101与电路板102沿长度方向的尺寸的和,基本是等于接收腔150的长度尺寸的。
以及,电路板102是沿充电装置100的平行于长度方向和/或宽度方向布置的。或者,电路板102是平行于充电装置100的长度方向和宽度方向界定的平面的。
以及进一步参见图3和图4所示,充电装置100内还设置有弹性的电触头10,靠近第二端120布置;弹性的电触头10至少部分位于接收腔150内且背离开口152布置;并且,弹性的电触头10沿充电装置100的长度方向是与接收腔150相对的。以及在装配后,弹性的电触头10 至少部分是裸露或者伸入至接收腔150内;进而当气雾生成装置200被接收于接收腔150内时,与弹性的电触头10形成导通,进而使电芯101对气雾生成装置200进行充电。
对应地在实施中,如图5所示,气雾生成装置200具有充电端口20,用于当气雾生成装置200接收于充电装置100的接收腔150内时,充电端口20与弹性的电触头10配合形成导通,进而对气雾生成装置200进行充电。
在一些实施中,充电端口20通常是USB的充电端口,例如USB pin针式接口,或者USB type-C式的电端口,或者是可用于对电芯250充电的接头或器件界定的电力输入端口;在使用中,以用于通过向该充电端口20输入电力进而对电芯250充电。
具体地,在一个实施例中气雾生成装置200及充电端口20的结构参见图5所示;气雾生成装置200包括:
沿长度方向相背离的近端210和远端220;在该实施中,近端210处界定有开口211,在使用中固体的气溶胶生成制品1000可移除地通过开口211被接收于气雾生成装置200内。
以及,气雾生成装置200还包括:
加热器230,例如是销钉或针状或片状或柱状或棒状或杆状或管状或筒状的形状,以用于插入至气溶胶生成制品1000内或包围在气溶胶生成制品1000外进行加热。以及在实施中,加热器230是电阻加热器、红外加热器、或者电磁感应加热器中的一种或多种。
以及,气雾生成装置200还包括:
可充电的电芯250,用于向加热器230提供电力;
电路板240,布置有电路,位于电芯250与加热器230之间,进而在它们之间引导电流;或者电路板240的电路,用于控制电芯250向加热器230提供的电力,以使加热器30的加热温度保持于目标温度。
以及,充电端口20,是靠近或者位于远端220的;以及,充电端口20是与电芯250彼此导电连接的。
以及在一些实施中,充电装置100的弹性的电触头10包括导电弹 针,或导电弹簧,或弹性的电极等等;使得弹性的电触头10是能够在压缩状态和伸长状态弹性地配置的。以及在实施中,当气雾生成装置200接收于接收腔150内充电时,门盖111压制或挤压气雾生成装置200使弹性的电触头10被气雾生成装置200至少部分压缩。当气雾生成装置200从接收腔150内移除后,弹性的电触头10恢复至伸长状态。
或者在又一些实施中,气雾生成装置200的充电端口20包括:
至少一个弹性的导电元件,例如电触头或导电弹针之类的导电元件。
进而当气雾生成装置200接收于接收腔150内充电时,弹性的电触头10的至少一个导电元件和/或充电端口20的至少一个导电元件是被弹性压缩的,进而使它们能稳定地导电接触是有利的。
以及进一步地参见图4、图5至图7所示,充电装置100的第一端110还设置有能沿宽度方向线性移动的门盖111;该门盖111能够通过移动在第一端110处选择性地遮挡或打开接收腔150的开口152。在使用中,当气雾生成装置200通过接收腔150在第一端110处的开口152接收于接收腔150内充电使;门盖111在第一端110处遮挡或封闭接收腔150的开口152,进而将气雾生成装置200压紧或紧固在接收腔150内,并阻止气雾生成装置200从开口152移除接收腔150。以及,当需要移除气雾生成装置200时,移动门盖111使其打开开口152,则用户推动气雾生成装置200从开口152移除。
或者在又一些变化的实施中,门盖111是可以转动地布置于充电装置100的第一端110的。例如可以旋转或围绕销轴转动的方式布置的,进而通过旋转移动等改变不同的位置状态。
以及进一步地参见图4、图5至图7所示,门盖111能沿宽度方向移动,并具有多个移动位置,进而在第一端110处选择地完全打开接收腔150的开口152、或者部分打开接收腔150的开口152、或者完全关闭接收腔150的开口152;进而使充电装置100能在不同的功能配置状态下进行配置,并通过门盖111的移动进而改变充电装置100的配置状态。
具体地图4中示出了门盖111在第一端处位于完全地打开开口152 的位置或状态的示意图;在该位置中,充电装置100处于允许气雾生成装置200接收或移除的配置状态。在该位置中,门盖111是抵靠或靠近第一侧130的;以及在该位置中,门盖111是远离第二侧140的;以及在该位置中,门盖111基本是完全避开接收腔150在第一端110的开口152的。以及该位置中,气雾生成装置200可以通过接收腔150在第一端110的开口152接收于接收腔150内,或者从开口152移除。
具体地图6中示出了门盖111在第一端处位于完全地关闭或遮挡开口152的位置或状态的示意图;在该位置中,充电装置100处于不允许气雾生成装置200移除的配置状态、且接收于充电装置100内的气雾生成装置200是不可接收和加热气溶胶生成制品1000的。在该位置中,门盖111是抵靠或靠近第二侧140的;以及在该位置中,门盖111是远离第一侧130的;以及在该位置中,门盖111基本是完全遮挡或关闭接收腔150在第一端110的开口152。以及该位置中,位于充电装置100外的气雾生成装置200不能接收至接收腔150内;以及,该位置中门盖111还能阻止接收于接收腔150内的气雾生成装置200从开口152移除。同时在该位置中,门盖111遮挡或关闭气雾生成装置200的近端210的开口211,从而阻止灰尘或其他异物进入至开口211是有利的。
以及具体地,图7中示出了门盖111在第一端处部分打开开口152、以及部分遮盖开口152的位置或状态的示意图;在该位置中,充电装置100处于不允许气雾生成装置200移除的配置状态、且接收于充电装置100内的气雾生成装置200是允许接收和加热气溶胶生成制品1000的。在该位置中,门盖111部分抵靠气雾生成装置200的近端210、且基本完全避开气雾生成装置200的近端210的开口211,进而在该位置中气溶胶生成制品1000能通过开口211接收于气雾生成装置200内加热或从气雾生成装置200内移除。以及在该位置中,可以同时由充电装置100对气雾生成装置200充电,以及可以同时对气溶胶生成制品1000加热。
以及在一些实施中,当雾生成装置200的电芯250的电荷水平或电量或电压低于预定的电荷水平或电量或电压时,则用户可以将雾生成装置200接收于充电装置100的接收腔150内进行充电。当充电时,用户 仍然具有抽吸的需求,则可以通过门盖111至图7所示的部分遮盖接收腔150的位置或状态,使气雾生成装置200的近端210的开口211裸露出,而后再将气溶胶生成制品1000插入至气雾生成装置200内加热从而抽吸。
以及在图7所示的实施中,当用户操作启动气雾生成装置200加热气溶胶生成制品1000时,电路板240的电路控制提供给加热器30的电力不由电芯250提供,而是由充电装置100的电芯101通过弹性的电触头10输出提供给加热器30。在一些实施中,用户操作启动气雾生成装置200加热气溶胶生成制品1000,是可以通过气雾生成装置200裸露于接收腔150外的开关、按键或触摸屏等进行操作或输入的。
或者在图7所示的实施中,当用户操作启动气雾生成装置200加热气溶胶生成制品1000时,电路板240的电路控制将电芯101由弹性的电触头10输出的电力,部分地提供至电芯250进而对电芯充电,以及部分地提供至加热器30以用于使加热器30加热。例如在一些具体的实施中,电路板240的电路上布置有两路导电通路,其中第一路位于充电端口20与电芯250之间,以用于将电芯101的输出给充电端口20的电力对电芯250充电;以及第二路位于充电端口20与加热器30之间,以用于将电芯101的输出给充电端口20的电力提供至加热器30。当然,以上两路导电通路均是可以选择性地导通或断开的。
或者在一些实施中,以上两路导电通路是可以同时导通的,进而使电芯101输出的电力可以同时对电芯250充电和对加热器30加热。
或者在一些实施中,以上两路导电通路是可以交替地导通的,使给充电端口20输入的电力可以交替地对电芯250充电和对加热器30加热;以及,电芯250充电和对加热器30加热可以不同时进行。
或者在图7所示的实施中,当用户操作或输入控制启动气雾生成装置200加热气溶胶生成制品1000时,电路板240的电路被配置为能响应用户的操作或输入暂停或中断对电芯250的充电,而将电芯101由弹性的电触头10输出给充电端口20的电力提供至加热器30,以加热气溶胶生成制品1000。而当用户抽吸完成以后或者加热器30加热预定时间 后,停止将电芯101由弹性的电触头10输出给充电端口20的电力提供至加热器30,转而再切换或恢复至对电芯250的充电。
又或者在图7所示的实施中,当用户操作启动气雾生成装置200加热气溶胶生成制品1000时,电路板240的电路被配置为控制同时使给充电端口20对电芯250充电,以及同时使电芯250输出电力至加热器30加热气溶胶生成制品1000。
以及进一步地参见图4、图5至图7所示,充电装置100上设置有毗邻或靠近第一端110的第三磁性元件112;以及,第三磁性元件112的磁极是沿充电装置100纵向方向相背布置的;例如图5至图7中,第三磁性元件112朝向第一端110的一侧的磁极为S极、以及背离第一端110的另一侧的磁极为N极。
以及进一步地参见图4、图5至图7所示,气雾生成装置200背离平直或平坦的表面280的一侧设置有第一磁性元件212;以及第一磁性元件212是毗邻或靠近或位于近端210。以及,第一磁性元件212的磁极是沿气雾生成装置200纵向方向相背布置的;例如图5至图7中,第一磁性元件212朝向近端210的一侧的磁极为S极、以及背离近端210的另一侧的磁极为N极。
以及进一步地参见图4、图5至图7所示,门盖111上设置有第二磁性元件113、第四磁性元件114、第五磁性元件115和第六磁性元件116。以及,第二磁性元件113、第四磁性元件114、第五磁性元件115和第六磁性元件116是沿充电装置100的宽度方向和/或门盖111的长度方向依次布置的。第四磁性元件114、第五磁性元件115和第六磁性元件116分别用于与第三磁性元件112磁性相吸或排斥,进而使门盖111移动至不同位置时能稳定地保持在所处的位置。
具体地,当门盖111移动至图4中完全打开接收腔150的开口152的位置或状态时,第四磁性元件114与第三磁性元件112是对准的。以及在该位置中,第四磁性元件114与第三磁性元件112是磁性相吸附的,进而使门盖111保持在完全打开接收腔150的开口152的位置。则在第四磁性元件114的磁极布置上,使第四磁性元件114朝向或靠近第三磁 性元件112的一侧为N极、以及背离第三磁性元件112的另一侧为S极。以及在该图4所示的位置中,第二磁性元件113和/或第五磁性元件115和/或第六磁性元件116是与第三磁性元件112错开的。以及当门盖111移动至图4中完全打开开口152的位置或状态时,第二磁性元件113位于第三磁性元件112与接收腔150和/或第二侧140之间;以及,第五磁性元件115和/或第六磁性元件116位于第三磁性元件112与第一侧130之间。
以及当门盖111移动至图6中完全遮挡或关闭接收腔150的开口152的位置或状态时,第二磁性元件113和/或第四磁性元件114和/或第五磁性元件115和/或第六磁性元件116是与第三磁性元件112错开的;以及在该位置时,第二磁性元件113和/或第四磁性元件114和/或第五磁性元件115和/或第六磁性元件116是位于第三磁性元件112与第二侧140之间的。以及在该位置中,第四磁性元件114和/或第五磁性元件115和/或第六磁性元件116位于第三磁性元件112与接收腔150之间;以及,第二磁性元件113至少部分是与接收腔150的敞口和/或开口152相对的;以及,第四磁性元件114和/或第五磁性元件115和/或第六磁性元件116是偏离或避开接收腔150的开口152的。以及在该位置中,第六磁性元件116是最靠近第三磁性元件112的。以及在该位置中,第六磁性元件116是与第三磁性元件112磁性相斥的,进而使门盖111朝第二侧140偏压,进而使门盖111稳定保持于遮挡或关闭接收腔150的开口152位置。则例如图6,在第六磁性元件116的磁极布置上,使第六磁性元件116朝向或靠近第三磁性元件112的一侧为S极、以及背离第三磁性元件112的另一侧为N极,进而使它们之间呈现磁性相斥,排斥力如图6中箭头R2所示。
以及当门盖111移动至图7中部分遮挡或部分关闭接收腔150的开口152的位置或状态时,第五磁性元件115与第三磁性元件112是对准的;以及,第二磁性元件113和/或第四磁性元件114和/或第六磁性元件116是与第三磁性元件112错开的。以及在该位置中,由第五磁性元件115与第三磁性元件112磁性相吸,进而使门盖111稳定地保持于部 分遮挡或部分关闭接收腔150的开口152的位置或状态。则例如图7,在第五磁性元件115的磁极布置上,使第五磁性元件115朝向或靠近第三磁性元件112的一侧为N极、以及背离第三磁性元件112的另一侧为S极,进而使它们之间呈现磁性相吸。以及在该位置中,第六磁性元件116位于第三磁性元件112与第一侧130之间,第二磁性元件113和/或第四磁性元件114位于第三磁性元件112与第二侧140之间。以及在图7所示的位置中,第二磁性元件113与腔室150背离第二侧140的至少部分是相对或对准的。
以及进一步地当门盖111移动至图7所示的位置中时,门盖111部分遮盖或抵靠气雾生成装置200的近端210。以及,气雾生成装置200与门盖111部分抵靠的部位是背离第二侧130和/或的裸露部分的。进而,门盖111至少部分在第一端110处对气雾生成装置200提供止动,进而阻止气雾生成装置200移除。
以及当门盖111移动至图7所示的位置中时,第二磁性元件113至少部分是与气雾生成装置200的第一磁性元件212靠近和对准的;且第二磁性元件113与第一磁性元件212是磁性相斥的。进而使门盖111移动至图7所示的位置中时,能由第二磁性元件113与第一磁性元件212的排斥力使气雾生成装置200朝第二端120偏压,如图7中箭头R3所示;对于使气雾生成装置200稳定保持于接收腔150内、以及使包含导电弹针的弹性的电触头10和充电端口20能稳定地接触导通。则例如在实施中,第二磁性元件113的磁极布置为朝向或靠近接收腔150的一侧的磁极为S极、以及背离接收腔150的另一侧的磁极为N极。在又一些实施中,偏压还可以将磁性排斥替换为弹簧等其他的偏压机构实现;例如在一些实施中,其他的偏压机构可以包括线性簧或扭簧。通过将弹簧设置于门盖111上,并对气雾生成装置200施加朝向第二端120的弹性推力,进而使气雾生成装置200朝第二端120偏压,并将弹性的电触头10压制在压缩状态下形成导电连接。
以及在图6和图7所示的实施中,当气雾生成装置200被接收于接收腔150内时,通过门盖111在第一端110处对气雾生成装置200的抵 靠或挤压和/或以上磁性排斥的偏压设置,使弹性的电触头10至少部分是被压缩的,从而使弹性的电触头10和充电端口20能稳定地接触导通。以及当门盖111移动至打开敞口152时,弹性的电触头10能由压缩状态朝向伸长状态恢复或移动,并提供推力或弹力将气雾生成装置200至少部分推出敞口152。
以及,当气雾生成装置200被接收和容纳于接收腔150内时,第一磁性元件212是背离接收腔150的开口或缺口151的。
需要说明的是,本申请的说明书及其附图中给出了本申请的较佳的实施例,但并不限于本说明书所描述的实施例,进一步地,对本领域普通技术人员来说,可以根据上述说明加以改进或变换,而所有这些改进和变换都应属于本申请所附权利要求的保护范围。

Claims (57)

  1. 一种电系统,包括:
    气雾生成装置,用于加热气溶胶生成制品产生气溶胶;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;
    充电装置,用于对所述气雾生成装置充电;
    其特征在于,所述充电装置包括:
    接收腔,用于接收所述气雾生成装置;所述接收腔界定有第二开口,所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
    门盖,能选择性地在第一位置和第二位置之间配置;其中,
    所述门盖在所述第一位置打开所述第二开口,以允许所述气雾生成装置通过所述第二开口可移除地接收于所述接收腔;
    所述门盖在所述第二位置至少部分地关闭所述第二开口、且避开或显露所述第一开口,以阻止接收于所述接收腔内所述气雾生成装置从所述第二开口移除、且允许气溶胶生成制品通过所述第一开口接收于气雾生成装置内。
  2. 如权利要求1所述的电系统,其特征在于,所述门盖被布置成能在所述第一位置和第二位置之间移动,进而改变在所述第一位置和第二位置之间的配置。
  3. 如权利要求2所述的电系统,其特征在于,所述移动包括线性移动或旋转移动中的至少一种。
  4. 如权利要求1至3任一项所述的电系统,其特征在于,所述充电装置包括:沿长度方向相背离的第一端和第二端;
    所述第二开口界定于所述第一端;所述门盖可移动地布置于所述第一端。
  5. 如权利要求4所述的电系统,其特征在于,当所述气雾生成装 置接收于所述接收腔时,所述第一开口朝向所述第一端。
  6. 如权利要求4所述的电系统,其特征在于,所述充电装置被配置为当所述门盖位于所述第二位置时,使接收于所述接收腔内的所述气雾生成装置朝所述第二端偏压。
  7. 如权利要求4所述的电系统,其特征在于,所述气雾生成装置包括第一磁性件;
    所述门盖上设有:
    第二磁性件,用于在所述第二位置时与所述第一磁性件磁性相斥,进而使所述气雾生成装置朝所述第二端偏压。
  8. 如权利要求7所述的电系统,其特征在于,当所述门盖位于所述第二位置时,所述第二磁性件与所述气雾生成装置的第一磁性件基本是沿所述充电装置的长度方向对准的。
  9. 如权利要求7所述的电系统,其特征在于,所述充电装置包括:
    沿宽度方向相背离的第一侧和第二侧;
    所述接收腔靠近所述第二侧布置;
    所述气雾生成装置接收于所述接收腔内时,所述第一磁性件背离所述第二侧定位。
  10. 如权利要求1至3任一项所述的电系统,其特征在于,所述充电装置还包括第三磁性件;
    所述门盖上设有:
    第四磁性件,用于在所述第一位置时与所述第三磁性件磁性相吸,进而使所述门盖保持于所述第一位置;
    和/或,第五磁性件,用于在所述第二位置时与所述第三磁性件磁性相吸,进而使所述门盖保持于所述第二位置。
  11. 如权利要求1至3任一项所述的电系统,其特征在于,所述门盖还能选择性地在第三位置进行配置;所述门盖在所述第三位置至少部分地关闭所述第二开口、且至少部分地遮盖所述第一开口,以阻止所述气雾生成装置从所述第二开口接收于所述接收腔或从所述接收腔内移除、以及阻止所述接收腔内的所述气雾生成装置通过所述第一开口接收气溶胶生成制品和/或阻止灰尘与其他异物进入所述第一开口。
  12. 如权利要求11所述的电系统,其特征在于,所述第二位置被布置成位于所述第一位置和所述第三位置之间。
  13. 如权利要求11所述的电系统,其特征在于,所述门盖在所述第二位置部分地关闭所述第二开口;
    和/或,所述门盖在所述第三位置基本完全地关闭所述第二开口。
  14. 如权利要求11所述的电系统,其特征在于,所述充电装置还包括第三磁性件;
    所述门盖上设有:
    第六磁性件,用于在所述第三位置时与所述第三磁性件磁性相斥,进而使所述门盖保持于所述第三位置。
  15. 如权利要求14所述的电系统,其特征在于,所述充电装置包括:
    沿宽度方向相背离的第一侧和第二侧;
    所述接收腔靠近所述第二侧布置;
    所述门盖位于所述第三位置时,所述第六磁性件比所述第三磁性件更靠近所述第二侧。
  16. 如权利要求1至3任一项所述的电系统,其特征在于,所述气雾生成装置接收于所述接收腔内时,具有裸露或伸出至所述接收腔外的凸出部分;在使用中用户能通过对所述凸出部分进行致动,以将所述气 雾生成装置从所述接收腔内移除。
  17. 如权利要求16所述的电系统,其特征在于,所述充电装置包括:
    沿宽度方向相背离的第一侧和第二侧;
    所述接收腔靠近所述第二侧布置,并界定有位于所述第二侧的第三开口;当所述气雾生成装置接收于所述接收腔时,所述气雾生成装置的凸出部分由所述第三开口裸露或伸出至所述接收腔外。
  18. 如权利要求1至3任一项所述的电系统,其特征在于,所述气雾生成装置包括沿周向方向围绕该气雾生成装置的外侧表面;所述外侧表面包括:
    第一表面部分和第二表面部分;其中,
    所述第一表面部分是弯曲的,所述第二表面部分基本是平坦的;或,所述第二表面部分的曲率或弯曲程度是小于所述第一表面部分的。
  19. 如权利要求18所述的电系统,其特征在于,所述气雾生成装置接收于所述接收腔内时,所述第一表面部分基本是被容纳或隐藏于所述接收腔内的、以及所述第二表面部分基本是裸露或伸出至所述接收腔外的。
  20. 如权利要求1至3任一项所述的电系统,其特征在于,当所述气雾生成装置接收于所述充电装置的接收腔内充电时,所述气雾生成装置被配置为能响应用户的操作或输入对从所述第一开口接收的气溶胶生成制品进行加热。
  21. 如权利要求20所述的电系统,其特征在于,所述气雾生成装置包括:
    加热器,用于加热气溶胶生成制品;
    可充电的第一电芯,至少用于向所述加热器供电;
    电路,被配置为能同时将所述充电装置提供的电力部分地对所述第一电芯充电,以及将所述充电装置提供的电力部分地输出至所述加热器以加热气溶胶生成制品。
  22. 如权利要求20所述的电系统,其特征在于,所述气雾生成装置被配置为能间歇性地或脉冲式地接收所述充电装置的电力以进行充电;以及,所述气雾生成装置被配置为在接收所述充电装置的电力的间歇期间或相邻脉冲之间加热气溶胶生成制品。
  23. 如权利要求1至3任一项所述的电系统,其特征在于,当所述气雾生成装置接收于所述充电装置的接收腔内充电时,所述气雾生成装置被配置为能响应用户的操作或输入暂停或中断充电并加热从所述第一开口接收的气溶胶生成制品,直至加热结束恢复充电。
  24. 一种电系统,包括:
    气雾生成装置,用于加热气溶胶生成制品产生气溶胶;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;
    充电装置,用于对所述气雾生成装置充电;所述充电装置包括接收腔,所述气雾生成装置可移除地接收于所述接收腔内充电;
    其特征在于,所述充电装置被构造成能选择性地在第一配置、第二配置和第三配置之间配置;其中,
    所述充电装置在所述第一配置中,允许所述气雾生成装置接收于所述接收腔或从所述接收腔内移除;
    所述充电装置在所述第二配置中,阻止接收于所述接收腔内的所述气雾生成装置从所述接收腔移除、且允许气溶胶生成制品从所述第一开口接收于所述气雾生成装置内进行加热;
    所述充电装置在所述第三配置中,阻止接收于所述接收腔内的所述气雾生成装置从所述接收腔移除、且阻止所述接收腔内的所述气雾生成装置通过所述第一开口接收气溶胶生成制品。
  25. 一种电系统,包括:
    气雾生成装置,用于加热气溶胶生成制品产生气溶胶;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;
    充电装置,用于对所述气雾生成装置充电;
    其特征在于,所述充电装置包括:
    接收腔,用于接收所述气雾生成装置;所述接收腔界定有第二开口,所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
    所述充电装置被构造成能选择性地在第一配置和第二配置之间进行配置;其中,
    所述充电装置在所述第一配置中地打开所述第二开口,以允许所述气雾生成装置通过所述第二开口接收于所述接收腔或从所述接收腔内移除;
    所述充电装置在所述第二配置中至少部分地关闭所述第二开口、且避开或显露所述第一开口,以阻止接收于所述接收腔内所述气雾生成装置从所述第二开口移除、且允许气溶胶生成制品通过所述第一开口接收于气雾生成装置内。
  26. 一种电系统,包括:
    气雾生成装置,用于加热气溶胶生成制品产生气溶胶;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;
    充电装置,用于对所述气雾生成装置充电;
    其特征在于,所述充电装置包括:
    接收腔,用于接收所述气雾生成装置;所述接收腔界定有第二开口,所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
    门盖,能选择性地在第一位置、第二位置和第三位置之间配置;其中,
    所述门盖在所述第一位置打开所述第二开口,以允许所述气雾生成装置通过所述第二开口可移除地接收于所述接收腔;
    所述门盖在所述第二位置至少部分地关闭所述第二开口、且避开或 显露所述第一开口,以阻止接收于所述接收腔内所述气雾生成装置从所述第二开口移除、且允许气溶胶生成制品通过所述第一开口接收于气雾生成装置内;
    所述门盖在所述第三位置至少部分关闭所述第二开口、且关闭所述第一开口,以阻止接收于所述接收腔内的所述气雾生成装置从所述第二开口移除、且阻止所述接收腔内的所述气雾生成装置通过所述第一开口接收气溶胶生成制品和/或阻止灰尘与其他异物进入所述第一开口。
  27. 一种充电装置,用于对气雾生成装置进行充电;所述气雾生成装置用于接收气溶胶生成制品并进行加热以产生气溶胶;其特征在于,所述充电装置包括:
    接收腔,所述气雾生成装置可移除地接收于所述接收腔内进行充电;
    所述充电装置被构造成能选择性地在第一配置、第二配置和第三配置之间配置;其中,
    所述充电装置在所述第一配置中,允许所述气雾生成装置接收于所述接收腔或从所述接收腔内移除;
    所述充电装置在所述第二配置中,阻止接收于所述接收腔内的所述气雾生成装置从所述接收腔移除、且允许气溶胶生成制品接收于所述气雾生成装置内进行加热;
    所述充电装置在所述第三配置中,阻止接收于所述接收腔内的所述气雾生成装置从所述接收腔移除、且阻止所述接收腔内的所述气雾生成装置接收气溶胶生成制品和/或阻止灰尘与其他异物进入所述第一开口。
  28. 一种充电装置,用于对气雾生成装置进行充电;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;其特征在于,所述充电装置包括:
    接收腔,用于至少部分接收气雾生成装置;
    第二开口,在使用中所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
    所述充电装置被构造成能选择性地在第一配置和第二配置之间进 行配置;其中,
    所述充电装置在所述第一配置中地打开所述第二开口,以允许所述气雾生成装置通过所述第二开口接收于所述接收腔或从所述接收腔内移除;
    所述充电装置在所述第二配置中至少部分地关闭所述第二开口、且避开或显露所述第一开口,以阻止接收于所述接收腔内所述气雾生成装置从所述第二开口移除、且允许气溶胶生成制品通过所述第一开口接收于气雾生成装置内。
  29. 一种充电装置,用于对气雾生成装置进行充电;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;其特征在于,所述充电装置包括:
    接收腔,用于接收气雾生成装置;
    第二开口,所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
    门盖,能选择性地在第一位置和第二位置之间配置;其中,
    所述门盖在所述第一位置打开所述第二开口,以允许所述气雾生成装置通过所述第二开口可移除地接收于所述接收腔;
    所述门盖在所述第二位置至少部分地关闭所述第二开口、且避开或显露所述第一开口,以阻止接收于所述接收腔内所述气雾生成装置从所述第二开口移除、且允许气溶胶生成制品通过所述第一开口接收于气雾生成装置内。
  30. 如权利要求29所述的充电装置,其特征在于,所述门盖被布置成能在所述第一位置和第二位置之间移动,进而改变在所述第一位置和第二位置之间的配置。
  31. 如权利要求30所述的充电装置,其特征在于,所述移动包括线性移动或旋转移动中的至少一种。
  32. 如权利要求29至31任一项所述的充电装置,其特征在于,包括:
    沿长度方向相背离的第一端和第二端;
    所述第二开口界定于所述第一端;
    所述门盖可移动地布置于所述第一端。
  33. 如权利要求32所述的充电装置,其特征在于,所述充电装置被配置为当所述门盖位于所述第二位置时,使接收于所述接收腔内的所述气雾生成装置朝所述第二端偏压。
  34. 如权利要求33所述的充电装置,其特征在于,所述气雾生成装置包括第一磁性件;
    所述门盖上设有:
    第二磁性件,用于在所述第二位置时与所述第一磁性件磁性相斥,进而使所述气雾生成装置朝所述第二端偏压。
  35. 如权利要求34所述的充电装置,其特征在于,当所述门盖位于所述第二位置时,所述第二磁性件与所述第一磁性件基本是沿所述充电装置的长度方向对准的。
  36. 如权利要求34所述的充电装置,其特征在于,所述充电装置包括:
    沿宽度方向相背离的第一侧和第二侧;
    所述接收腔靠近所述第二侧布置;
    所述气雾生成装置接收于所述接收腔内时,所述第一磁性件背离所述第二侧定位。
  37. 如权利要求29至31任一项所述的充电装置,其特征在于,所述充电装置还包括第三磁性件;
    所述门盖上设有:
    第四磁性件,用于在所述第一位置时与所述第三磁性件磁性相吸,进而使所述门盖保持于所述第一位置;
    和/或,第五磁性件,用于在所述第二位置时与所述第三磁性件磁性相吸,进而使所述门盖保持于所述第二位置。
  38. 如权利要求29至31任一项所述的充电装置,其特征在于,所述门盖还能选择性地在第三位置进行配置;所述门盖在所述第三位置至少部分地关闭所述第二开口、且至少部分地关闭所述第一开口,以阻止所述气雾生成装置从所述第二开口接收于所述接收腔或从所述接收腔内移除、以及阻止所述接收腔内的所述气雾生成装置通过所述第一开口接收气溶胶生成制品。
  39. 如权利要求38所述的充电装置,其特征在于,所述第二位置被布置成位于所述第一位置和所述第三位置之间。
  40. 如权利要求38所述的充电装置,其特征在于,所述门盖在所述第二位置仅部分地关闭所述第二开口;
    和/或,所述门盖在所述第三位置基本完全地关闭所述第二开口。
  41. 如权利要求38所述的充电装置,其特征在于,所述充电装置还包括第三磁性件;
    所述门盖上设有:
    第六磁性件,用于当所述门盖位于所述第三位置时,与所述第三磁性件磁性相斥,进而使所述门盖保持于所述第三位置。
  42. 如权利要求41所述的充电装置,其特征在于,所述充电装置包括:
    沿宽度方向相背离的第一侧和第二侧;
    所述接收腔靠近所述第二侧布置;
    所述门盖位于所述第三位置时,所述第六磁性件比所述第三磁性件 更靠近所述第二侧。
  43. 一种气雾生成装置,用于加热气溶胶生成制品生成气溶胶;其特征在于,包括:
    可充电的电芯;
    充电端口,被布置成能通过向所述充电端口输入电力进而对所述电芯充电;
    第一开口,以用于接收气溶胶生成制品;
    电路,被配置为当通过所述充电端口对所述电芯进行充电时,能响应用户的操作或输入对从所述第一开口接收的气溶胶生成制品进行加热。
  44. 如权利要求43所述的气雾生成装置,其特征在于,所述气雾生成装置包括:
    加热器,用于加热气溶胶生成制品;
    所述电路被配置为能同时将所述充电端口输入的电力部分地对所述电芯充电,以及将所述充电端口输入的电力部分地输出至所述加热器以加热气溶胶生成制品。
  45. 如权利要求43所述的气雾生成装置,其特征在于,所述电路被配置为能将所述充电端口输入的电力间歇性地或脉冲式地对所述电芯进行充电;以及,所述电路被配置为使所述加热器在间歇期间或相邻脉冲之间加热气溶胶生成制品。
  46. 如权利要求43所述的气雾生成装置,其特征在于,所述电路被配置为能响应用户的操作或输入暂停或中断对所述电芯的充电并加热从所述第一开口接收的气溶胶生成制品,直至加热结束恢复充电。
  47. 一种电系统,包括:
    气雾生成装置,用于加热气溶胶生成制品产生气溶胶;所述气雾生 成装置包括第一开口,以用于接收气溶胶生成制品;
    充电装置,用于对所述气雾生成装置充电;
    其特征在于,所述充电装置包括:
    接收腔,用于接收所述气雾生成装置;所述接收腔界定有第二开口,所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
    弹性的电触头,能选择性地在伸长状态和压缩状态之间致动且偏置返回到所述伸长状态;所述弹性的电触头至少部分裸露于所述接收腔内,以用于对接收于所述接收腔内的所述气雾生成装置输出电力;
    门盖,能选择性地在第一位置和第二位置之间配置;其中,
    所述门盖在所述第一位置打开所述第二开口,以允许所述气雾生成装置通过所述第二开口可移除地接收于所述接收腔;
    所述门盖在所述第二位置至少部分地关闭所述第二开口、且部分地抵靠或压制接收于所述接收腔内的所述气雾生成装置,进而使所述气雾生成装置将所述弹性的电触头压制至所述压缩状态、并与所述弹性的电触头建立导电连接;
    所述门盖在所述第二位置避开所述第一开口。
  48. 如权利要求47所述的电系统,其特征在于,当所述门盖从所述第二位置移动至所述第一位置时,所述弹性的电触头被配置成能由所述压缩状态朝向所述伸长状态致动,以至少部分将所述气雾生成装置接收于所述接收腔的第二开口推出或弹出。
  49. 如权利要求47或48所述的电系统,其特征在于,所述弹性的电触头包括至少一个导电弹针。
  50. 如权利要求47或48所述的电系统,其特征在于,所述充电装置还包括:
    偏压机构,用于当所述门盖在所述第二位置时,使所述气雾生成装置将所述弹性的电触头朝所述压缩状态偏压。
  51. 如权利要求50所述的电系统,其特征在于,所述偏压机构包括:
    第一磁性件,布置于所述气雾生成装置上;
    第二磁性件,布置于所述门盖上,用于在所述第二位置时与所述第一磁性件磁性相斥,进而磁性排斥使所述气雾生成装置将所述弹性的电触头朝所述压缩状态偏压。
  52. 如权利要求50所述的电系统,其特征在于,所述偏压机构包括弹簧。
  53. 如权利要求47或48所述的电系统,其特征在于,所述门盖还包括还能选择性地在第三位置进行配置;
    所述门盖在所述第三位置同时关闭所述第二开口和所述第一开口;以及,所述门盖在所述第三位置至少部分地抵靠或压制接收于所述接收腔内的所述气雾生成装置,进而使所述气雾生成装置将所述弹性的电触头压制至所述压缩状态、并与所述弹性的电触头建立导电连接。
  54. 一种电系统,包括:
    气雾生成装置,用于加热气溶胶生成制品产生气溶胶;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;
    充电装置,用于对所述气雾生成装置充电;
    其特征在于,所述充电装置包括:
    接收腔,用于接收所述气雾生成装置;所述接收腔界定有第二开口,所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
    弹性的电触头,能选择性地在伸长状态和压缩状态之间致动且偏置返回到所述伸长状态;所述弹性的电触头至少部分裸露于所述接收腔内,以用于对接收于所述接收腔内的所述气雾生成装置输出电力;
    所述充电装置被构造成能选择性地在第一配置和第二配置之间进行配置;其中,
    所述充电装置在所述第一配置中地打开所述第二开口,以允许所述 气雾生成装置通过所述第二开口接收于所述接收腔或从所述接收腔内移除;
    所述充电装置在所述第二配置中至少部分地关闭所述第二开口、且部分地抵靠或压制接收于所述接收腔内的所述气雾生成装置,进而使所述气雾生成装置至少部分将所述弹性的电触头压制至所述压缩状态、并与所述弹性的电触头建立导电连接;
    所述充电装置在所述第二配置中避开或显露所述第一开口。
  55. 如权利要求54所述的电系统,其特征在于,所述充电装置还包括还能选择性地在第三位置进行配置;
    所述充电装置在所述第三位置同时关闭所述第二开口和所述第一开口;以及,所述充电装置在所述第三位置至少部分地抵靠或压制接收于所述接收腔内的所述气雾生成装置,进而使所述气雾生成装置将所述弹性的电触头压制至所述压缩状态、并与所述弹性的电触头建立导电连接。
  56. 一种充电装置,用于对气雾生成装置进行充电;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;其特征在于,所述充电装置包括:
    接收腔,用于至少部分接收气雾生成装置;
    第二开口,在使用中所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
    弹性的电触头,能选择性地在伸长状态和压缩状态之间致动且偏置返回到所述伸长状态;所述弹性的电触头至少部分裸露于所述接收腔内,以用于对接收于所述接收腔内的所述气雾生成装置输出电力;
    所述充电装置被构造成能选择性地在第一配置和第二配置之间进行配置;其中,
    所述充电装置在所述第一配置中地打开所述第二开口,以允许所述气雾生成装置通过所述第二开口接收于所述接收腔或从所述接收腔内移除;
    所述充电装置在所述第二配置中至少部分地关闭所述第二开口、且部分地抵靠或压制接收于所述接收腔内的所述气雾生成装置,进而使所述气雾生成装置至少部分将所述弹性的电触头压制至所述压缩状态、并与所述弹性的电触头建立导电连接;
    所述充电装置在所述第二配置中避开或显露所述第一开口。
  57. 一种充电装置,用于对气雾生成装置进行充电;所述气雾生成装置包括第一开口,以用于接收气溶胶生成制品;其特征在于,所述充电装置包括:
    接收腔,用于至少部分接收气雾生成装置;
    第二开口,在使用中所述气雾生成装置能通过所述第二开口可移除地接收于所述接收腔;
    弹性的电触头,能选择性地在伸长状态和压缩状态之间致动且偏置返回到所述伸长状态;所述弹性的电触头至少部分裸露于所述接收腔内,以用于对接收于所述接收腔内的所述气雾生成装置输出电力;
    门盖,能选择性地在第一位置和第二位置之间配置;其中,
    所述门盖在所述第一位置打开所述第二开口,以允许所述气雾生成装置通过所述第二开口可移除地接收于所述接收腔;
    所述门盖在所述第二位置至少部分地关闭所述第二开口、且部分地抵靠或压制接收于所述接收腔内的所述气雾生成装置,进而使所述气雾生成装置将所述弹性的电触头压制至所述压缩状态、并与所述弹性的电触头建立导电连接;
    所述门盖在所述第二位置避开所述第一开口。
PCT/CN2023/123267 2022-10-10 2023-10-07 电系统、充电装置及气雾生成装置 WO2024078393A1 (zh)

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