WO2021138833A1 - 用于收纳雾化装置的收纳盒 - Google Patents

用于收纳雾化装置的收纳盒 Download PDF

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Publication number
WO2021138833A1
WO2021138833A1 PCT/CN2020/070865 CN2020070865W WO2021138833A1 WO 2021138833 A1 WO2021138833 A1 WO 2021138833A1 CN 2020070865 W CN2020070865 W CN 2020070865W WO 2021138833 A1 WO2021138833 A1 WO 2021138833A1
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WO
WIPO (PCT)
Prior art keywords
atomization device
magnet
storage box
connector
storage
Prior art date
Application number
PCT/CN2020/070865
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English (en)
French (fr)
Inventor
徐升阳
金扬云
项秋宽
Original Assignee
深圳雾芯科技有限公司
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Publication date
Application filed by 深圳雾芯科技有限公司 filed Critical 深圳雾芯科技有限公司
Priority to PCT/CN2020/070865 priority Critical patent/WO2021138833A1/zh
Publication of WO2021138833A1 publication Critical patent/WO2021138833A1/zh

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    • 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
    • A24F47/00Smokers' requisites not otherwise provided for

Definitions

  • the present disclosure generally relates to a storage box for storing a vaporization device, and in particular, to a storage box that can conveniently store the atomization device and provide charging of the atomization device.
  • an electronic cigarette is an electronic product that heats and atomizes an atomizable solution and generates an aerosol for users to inhale.
  • an electronic cigarette product includes a casing, an oil storage chamber, an atomization chamber, a heating component, an air inlet, an air flow channel, an air outlet, a power supply device, a sensing device, and a control device.
  • the oil storage chamber is used for storing vaporizable solution
  • the heating component is used for heating and atomizing the atomizable solution and generating aerosol.
  • the air inlet and the atomizing chamber communicate with each other, and provide air to the heating assembly when the user inhales.
  • the aerosol generated by the heating element is first generated in the atomization chamber, and then inhaled by the user through the air flow channel and the air outlet.
  • the power supply device provides the power required by the heating element, and the control device controls the heating time of the heating element according to the user's inhalation action detected by the sensing device.
  • the shell covers the above-mentioned components.
  • Some embodiments of the present application provide a storage box for storing an atomization device.
  • the proposed storage box includes: a main body with a storage slot for accommodating an atomization device, a PCB module, a battery, a connection module with a port, and a connector provided in the main body.
  • the port of the connection module is communicated with the outside of the body, and the connector is communicated with the receiving slot of the body.
  • the PCB module, the battery, the connection module and the connector are electrically connected to each other.
  • FIG. 1 is a three-dimensional schematic diagram of a storage box according to some embodiments of the application.
  • FIG. 2 is a schematic diagram of an exploded structure of a storage box according to some embodiments of the application.
  • 3A and 3B are three-dimensional schematic diagrams of the upper cover of the storage box according to some embodiments of the application.
  • 3C is a perspective schematic view of the base of the storage box according to some embodiments of the application.
  • Fig. 4 is a schematic cross-sectional view of AA' in Fig. 1.
  • FIG. 5 is a schematic diagram of an exploded structure of an atomization device according to some embodiments of the application.
  • 6A and 6B are schematic diagrams of the process of putting the atomization device of some embodiments of the application into the body of the storage box.
  • FIG. 7A is a schematic cross-sectional view of the body of the storage box and the atomizing device of some embodiments of the application, showing the configuration of the cigarette rod magnet and the base magnet of some embodiments of the application.
  • Fig. 7B is an enlarged view of part C in Fig. 7A.
  • FIG. 8A is a schematic cross-sectional view of the body of the storage box and the atomization device of some embodiments of the application, showing the configuration of the cigarette rod magnet and the base magnet of some embodiments of the application.
  • Fig. 8B is an enlarged view of part D in Fig. 8A.
  • first feature on or on the second feature may include an embodiment in which the first feature is formed in direct contact with the second feature, and may also include that additional features may be formed on An embodiment between the first feature and the second feature so that the first feature and the second feature may not be in direct contact.
  • present disclosure may repeat reference numerals and/or letters in various examples. This repetition is for the purpose of simplification and clarity, and does not in itself indicate the relationship between the various embodiments and/or configurations discussed.
  • the electronic atomizer device may also be called an electronic cigarette, and the electronic atomizer device includes an electronic atomizer device main body and an electronic atomizer, and the electronic atomizer device main body is also called a cigarette.
  • Rod, electronic atomizer is also called smoke bomb.
  • the cartridge and the cigarette rod are separate and separate structural parts, and the cartridge can be plugged and connected to the cigarette rod. The cartridge and the cigarette rod are combined to form an electronic cigarette.
  • the cartridge and the cigarette rod may be integrally formed structural members.
  • FIG. 1 is a three-dimensional schematic diagram of a storage box 100 for storing an atomization device according to some embodiments of the application.
  • the storage box 100 includes a flip cover 1 and a main body 2.
  • the side 11 of the flip cover 1 and the side 21 of the main body 2 are pivotally connected to each other, and the top of the main body 2 has a receiving groove 22 recessed downward, and an atomizing device can be accommodated in the receiving groove 22.
  • the other side 13 opposite to the side 11 of the flip cover 1 has two magnet pieces 131, 132, and the other side 23 opposite to the side 21 of the body 1 has two magnet pieces 231, 232 (for details, please refer to Figure 2 And its description); the magnet pieces 131, 132 correspond to the magnet pieces 231, 232, respectively, when the flip 1 is closed on the body 2, that is, when the storage box 100 is in the closed state, the magnet pieces 131, 132 and the magnet pieces 231, 232 will attract each other, so that the flip 1 can be stably covered on the main body 2.
  • FIG. 2 is a schematic diagram of an exploded structure of the storage box 100 according to some embodiments of the application.
  • the main body 2 further includes an upper cover 3 and a base 4, and the upper cover 3 and the base 4 can cooperate with each other to combine with the main body 2.
  • the receiving groove 22 is formed at the upper cover 3, and the pogo pin connector 51 is arranged at one end 31 of the upper cover 3; the spring connector 51 includes a plate 511 and a plate 511
  • the connected pogo pin 512 can be connected to the board 511 by welding.
  • the plate 511 is fixed on the side wall at the end 31 of the upper cover 3 so that the spring connector 51 is arranged on the upper cover 3, wherein the plate 511 can be fixed to the end 31 of the upper cover 3 with screws 39 Furthermore, the pogo pin 512 can extend through a side wall of the receiving groove 22 to the receiving groove 22. In some embodiments, the pogo pin connector 51 can be replaced by other types of connectors.
  • the side 41 of the base 4 has a pivoting portion 411, and the side 11 of the flip 1 can be pivotally connected to the body 2 through the pivoting portion 411 of the base 4; the magnet pieces 231 and 232 are disposed opposite to each other.
  • the magnet pieces 231 and 232 correspond to the magnet pieces 131 and 132 provided on the side 13 of the flip cover 1, so that when the storage box 100 is in the closed state, The flip cover 1 and the main body 2 can be firmly closed to each other by attracting the magnet pieces 131 and 132 and the magnet pieces 231 and 232 to each other.
  • the PCB module 52, the battery core 53, and the connection module 54 with a port 541 are arranged on the base 4.
  • the port 541 can be, but is not limited to, a Type-C port; the PCB module 52 is roughly arranged adjacent to one end 44 of the base 4,
  • the connecting module 54 is disposed adjacent to the other end 43 of the end 44 of the base 4, and it can be fixed to the base 4 with screws 49, wherein the port 541 of the connecting module 54 is connected through a through hole 431 of the end 43 of the base 4 It is connected to the outside of the base 4.
  • the battery core 53 is disposed between the PCB module 52 and the connection module 54, and the battery core adhesive 531 can be fixed to the base 4.
  • the spring connector 51, the PCB module 52, the battery core 53, and the connection module 54 can be electrically connected to each other by wires or other electrical connectors (not shown).
  • a base magnet 6 is disposed adjacent to the end 43 of the base 4, especially between the battery core 53 and the connection module 54, and is fixed to the base 4 by interference fit.
  • 3A and 3B are three-dimensional schematic diagrams of the upper cover 3 of the storage box according to some embodiments of the application.
  • the upper cover 3 has a receiving groove 22
  • the pogo pin connector 51 is provided adjacent to the end 31 of the upper cover 3, in particular, the plate 511 of the pogo pin connector 51 is fixed to the upper cover 3.
  • the pogo pin 512 of the pogo pin connector 51 can extend into the receiving groove 22.
  • FIG. 3C is a perspective schematic view of the base 4 of the storage box according to some embodiments of the application. 3C, as described above, the PCB module 52 is disposed adjacent to the end 42 of the base 4, the connection module 54 with the port 541 is disposed adjacent to the end 41 of the base 4, and the port 541 of the connection module 54 can pass through the base 4
  • the through hole 431 of 4 communicates with the outside of the base 4. 1
  • the electric core 53 is arranged between the PCB module 52 and the connection module 54, and the base magnet 6 is fixed between the connection module 54 and the electric core 53 by interference fit. Therefore, the base magnet 6 is arranged adjacent to the end 43 of the base 4.
  • the external power source can charge the battery cell 53 through the port 541.
  • Fig. 4 is a schematic cross-sectional view of AA' in Fig. 1.
  • a cross-sectional structure of the main body 2 can be understood.
  • the base magnet 6 is arranged in the base 4 of the main body 2 and is adjacent to the end 43 of the base 4.
  • the base magnet 6 is located on the lower side of the receiving groove 22.
  • the base magnet 6 is located on the lower side of the horizontal plane 223 extending along the bottom surface 221 of the receiving groove 22; in other words, in these embodiments
  • the height of the base magnet 6 does not exceed the horizontal plane 223 extending along the bottom surface 221 of the receiving groove 22.
  • FIG. 5 is a schematic diagram of an exploded structure of the atomization device 7 according to some embodiments of the application.
  • the atomization device 7 includes a cigarette cartridge 71, a cigarette rod 72, a cigarette rod magnet holder 73 and a cigarette rod magnet 8.
  • the cigarette rod magnet 8 is arranged at one end 731 of the cigarette rod magnet holder 73.
  • the cigarette rod magnet holder 73 can be arranged inside the cigarette rod 72 from the opening of one end 722 of the cigarette rod 72.
  • the cigarette rod magnet 8 will be arranged to be adjacent to the other end 721 opposite to the end 72 of the cigarette rod 72.
  • the cartridge 71 is connected to the end 722 of the cigarette rod 72.
  • the LED lamp group 725 that can be used as a mark
  • the end 721 of the cigarette rod 72 is provided with a connector 75.
  • the connector 75 is a pogo pin (pogo pin) socket.
  • FIG. 6A and 6B are schematic diagrams of the process of putting the atomization device 7 into the body 2 of the storage box 100 according to some embodiments of the application.
  • the user can put the atomization device 7 into the storage slot 22 of the main body 2 of the storage box 100 along the B direction. Put the atomization device 7 into the storage tank 22 along the direction B, so that the joint 75 roughly located at the end 721 of the cigarette rod 72 of the atomization device 7 can be used when the atomization device 7 is completely placed in the storage tank 22, As shown in FIG. 6B, the pogo pin 512 is smoothly contacted.
  • the atomizing device 7 is completely placed in the receiving slot 22 (refer to FIG.
  • the battery core 53 provided in the main body 2 can charge the atomizing device 7 through the pogo pin 512.
  • the atomization device 7 is provided with a cigarette rod magnet 8 at the end 721 adjacent to the cigarette rod 72 (see FIG. 5), and the main body 2 is provided with a base magnet 6 (see FIG. 2, FIG. 4) at the end 43 adjacent to its base 4 ), and the cigarette rod magnet 8 and the base magnet 6 can attract each other; therefore, when the atomizing device 7 is placed in the receiving slot 22 along the B direction (see FIG.
  • the cigarette rod magnet 8 of the atomizing device 7 and The base magnets 6 of the main body 2 can attract each other, so that the atomizing device 7 can be more smoothly placed in the receiving slot 22 by the attraction between the cigarette rod magnet 8 and the base magnet 6.
  • the cigarette rod magnet 8 of the atomizing device 7 and the base magnet 6 of the body 2 can attract each other, when the atomizing device 7 is completely placed in the storage slot 22 (see FIG. 6B), the atomizing device 7 can use the The pogo pin 512 in the receptacle 22 can be more stably in contact with the connector 75 of the atomizing device 7 so as to avoid the pogo pin 512 when the storage box 100 is shaken.
  • the joint 75 of the 512 and the atomization device 7 may be misaligned with each other, resulting in poor contact.
  • FIG. 7A is a schematic cross-sectional view of the body and the atomization device of the storage box according to some embodiments of the application.
  • FIG. 7B can show the configuration of the cigarette rod magnet and the base magnet of some embodiments of the application.
  • FIG. 7A is a schematic cross-sectional view showing that the atomization device 7 is completely stored in the receiving groove 22 of the main body 2.
  • the atomizing device 7 is provided with a cigarette rod magnet 8 at the end 721 adjacent to the cigarette rod 72
  • the body 2 is provided with a base magnet 6 at the end 43 adjacent to its base 4, and
  • the base magnet 6 is roughly arranged on the lower side of the receiving groove 22.
  • the cigarette rod magnet 8 of the atomizing device 7 when the atomizing device 7 is completely stored in the receiving slot 22 of the main body 2, the cigarette rod magnet 8 of the atomizing device 7 is not just above the base magnet 6 of the main body 2; as shown in FIG. 7B As shown, the distance between the cigarette rod magnet 8 of the atomizing device 7 and the base magnet 6 of the body 2 in the vertical direction is offset from each other. Therefore, the cross-sectional center 60 of the base magnet 6 does not align with the transverse direction of the cigarette rod magnet 8.
  • the cross-sectional center 80 in other words, a vertical line 601 passing through the cross-sectional center 60 of the base magnet 6 does not pass through the cross-sectional center 80 of the cigarette rod magnet 8, and the cross-sectional center 60 of the base magnet 6 and the end of the base 4
  • the horizontal distance d1 between the parts 43 will be smaller than the horizontal distance d2 between the cross-sectional center 80 of the cigarette rod magnet 8 and the end 43 of the base 4;
  • the base magnet 5 can be configured such that its two poles are located at the top of the base magnet 6 respectively Portion 61 and bottom end portion 62
  • the rod magnet 8 can be configured such that its two-pole magnetic systems are respectively located at one end 801 of the end 721 facing the rod 72 and the other end 802 away from the end 721 of the rod 72
  • the magnetism of the top end 61 of the base magnet 6 and the magnetism of the end 801 of the cigarette rod magnet 8 may be different from each other.
  • the magnetism of the top end 61 of the base magnet 6 is N pole
  • the magnetism of the cigarette rod magnet 8 The magnetism of the end 801 is S pole
  • the magnetism of the end 801 of the cigarette rod magnet 8 is N pole; this configuration can lift the base magnet 6
  • the suction force between the cigarette rod magnet 8 and the cigarette rod magnet 8 enables the atomization device 7 to be more smoothly placed in the storage groove 22 and can be more stably stored in the storage groove 22.
  • FIG. 8A is a schematic cross-sectional view of the body and the atomization device of the storage box according to some embodiments of the application.
  • FIG. 8B can show the configuration of the cigarette rod magnet and the base magnet of some embodiments of the application.
  • FIG. 7A is a schematic cross-sectional view showing that the atomization device 7 is completely stored in the receiving groove 22 of the main body 2.
  • the atomization device 7 is provided with cigarette rod magnets 81 and 82 at the end 721 adjacent to the cigarette rod 72
  • the body 2 is provided with a base magnet 6 at the end 43 adjacent to the base 4, and the base magnet 6 It is roughly provided on the lower side of the storage tank 22.
  • the atomization device 7 further includes a first cigarette rod magnet member 81 and a second cigarette rod magnet member substantially disposed on the upper side of the first cigarette rod magnet member 81 82; and when the atomizing device 7 is completely stored in the receiving slot 22 of the body 2, the first cigarette rod magnet member 81 and the second cigarette rod magnet member 82 of the atomizing device 7 will not be located exactly on the base magnet of the body 2 6 above; as shown in FIG.
  • the distance between the first cigarette rod magnet member 81 and the second cigarette rod magnet member 82 of the atomization device 7 and the base magnet 6 of the body 2 in the vertical direction is offset from each other, therefore,
  • the cross-sectional center 60 of the base magnet 6 does not align with the cross-sectional center 810 of the first cigarette rod magnet member 81 and the cross-sectional center 820 of the second cigarette rod magnet member 82, in other words, through the cross-section of the base magnet 6
  • a vertical line 601' of the center 60 does not pass through the cross-sectional center 810 of the first cigarette rod magnet 81, nor does it pass through the cross-sectional center 820 of the second cigarette rod magnet 82, and the cross-sectional center of the base magnet 6
  • the horizontal distance d1' between 60 and the end 43 of the base 4 will be smaller than the horizontal distance d2' between the cross-sectional center 810 of the first cigarette rod magnet 81 and the end 43 of the base 4, and will also be smaller than the second
  • the magnetic attraction generated between the top end 61 of the base magnet 6 and the end 811 of the first cigarette rod magnet 81 can make the atomization device 7 more smoothly placed in the storage slot 22 , And can be more stably stored in the receiving groove 22, and the repulsive magnetic force generated between the top end 61 of the base magnet 6 and the end 821 of the second cigarette rod magnet 82 can make the atomizing device 7 completely
  • the atomizer 7 can lie flat in the storage tank 22
  • the end 721 of the cigarette rod 72 of the atomization device 7 will not face downward due to the excessive magnetic attraction between the top end 61 of the base magnet 6 and the end 811 of the first cigarette rod magnet 81 Sink, and make the end 711 of the cartridge 71 of the atomization device 72 tilt up to be exposed outside the receiving groove 22.
  • the upper surface 723 of the cigarette rod 72 of the atomization device 7 is provided with an LED lamp group 725 that can be used as a sign.
  • the LED lamp group 725 on the upper surface 723 of the atomization device 72 faces away from the receiving slot 22 (see FIGS. 6A and 6B)
  • the first cigarette rod magnet member 81 and the second cigarette rod magnet member 82 of the cigarette rod 72 and The interaction between the base magnets 6 of the main body 2 will enable the atomization device 7 to be smoothly stored in the receiving groove 22 (as shown in FIGS. 8A and 8B and related descriptions).
  • the atomization device 7 when the atomization device 7 is placed in the receiving slot 22, if the LED lamp group 725 on the upper surface 723 of the atomizing device 72 faces the receiving slot 22, the first cigarette rod magnet 81 of the cigarette rod 72
  • the upper and lower configuration of the second cigarette rod magnet 82 will be opposite to that shown in FIG. 8B, and the interaction between the first cigarette rod magnet member 81 and the second cigarette rod magnet member 82 and the base magnet 6 of the body 2 will be As a result, the atomization device 7 cannot be smoothly stored in the storage tank 22.
  • references to “some embodiments”, “partial embodiments”, “one embodiment”, “another example”, “examples”, “specific examples” or “partial examples” throughout the specification mean At least one embodiment or example in this application includes the specific feature, structure, or characteristic described in the embodiment or example. Therefore, descriptions appearing in various places throughout the specification, such as: “in some embodiments”, “in embodiments”, “in one embodiment”, “in another example”, “in an example “In”, “in a specific example” or “exemplified”, which are not necessarily quoting the same embodiment or example in this application.
  • spatially relative terms for example, “below”, “below”, “lower”, “above”, “upper”, “lower”, “left”, “right” and the like can be The simplicity of description is used herein to describe the relationship between one component or feature and another component or feature as illustrated in the figure.
  • the spatial relative terms are intended to cover different orientations of the device in use or operation.
  • the device can be oriented in other ways (rotated by 90 degrees or in other orientations), and the spatial relative descriptors used herein can also be interpreted accordingly. It should be understood that when a component is referred to as being “connected to” or “coupled to” another component, it can be directly connected or coupled to the other component, or intervening components may be present.
  • the terms “approximately”, “substantially”, “substantially” and “about” are used to describe and consider small variations. When used in conjunction with an event or situation, the term may refer to an example in which the event or situation occurs precisely and an example in which the event or situation occurs in close proximity. As used herein with respect to a given value or range, the term “about” generally means within ⁇ 10%, ⁇ 5%, ⁇ 1%, or ⁇ 0.5% of the given value or range. Ranges can be expressed herein as from one endpoint to another or between two endpoints. Unless otherwise specified, all ranges disclosed herein include endpoints.
  • substantially coplanar may refer to two surfaces located within a few micrometers ( ⁇ m) along the same plane, for example, within 10 ⁇ m, within 5 ⁇ m, within 1 ⁇ m, or within 0.5 ⁇ m located along the same plane.
  • ⁇ m micrometers
  • the term may refer to a value within ⁇ 10%, ⁇ 5%, ⁇ 1%, or ⁇ 0.5% of the average value of the stated value.
  • the terms “approximately”, “substantially”, “substantially” and “about” are used to describe and explain small changes.
  • the term may refer to an example in which the event or situation occurs precisely and an example in which the event or situation occurs in close proximity.
  • the term when used in combination with a value, can refer to a range of variation less than or equal to ⁇ 10% of the stated value, for example, less than or equal to ⁇ 5%, less than or equal to ⁇ 4%, less than or equal to ⁇ 3% , Less than or equal to ⁇ 2%, less than or equal to ⁇ 1%, less than or equal to ⁇ 0.5%, less than or equal to ⁇ 0.1%, or less than or equal to ⁇ 0.05%.
  • the difference between two values is less than or equal to ⁇ 10% of the average value of the value (for example, less than or equal to ⁇ 5%, less than or equal to ⁇ 4%, less than or equal to ⁇ 3%, less than Or equal to ⁇ 2%, less than or equal to ⁇ 1%, less than or equal to ⁇ 0.5%, less than or equal to ⁇ 0.1%, or less than or equal to ⁇ 0.05%), then the two values can be considered “substantially” or " About” is the same.
  • substantially parallel may refer to a range of angular variation less than or equal to ⁇ 10° relative to 0°, for example, less than or equal to ⁇ 5°, less than or equal to ⁇ 4°, less than or equal to ⁇ 3°, Less than or equal to ⁇ 2°, less than or equal to ⁇ 1°, less than or equal to ⁇ 0.5°, less than or equal to ⁇ 0.1°, or less than or equal to ⁇ 0.05°.
  • substantially perpendicular may refer to an angular variation range of less than or equal to ⁇ 10° relative to 90°, for example, less than or equal to ⁇ 5°, less than or equal to ⁇ 4°, less than or equal to ⁇ 3°, Less than or equal to ⁇ 2°, less than or equal to ⁇ 1°, less than or equal to ⁇ 0.5°, less than or equal to ⁇ 0.1°, or less than or equal to ⁇ 0.05°.
  • a/an and “said” may include plural indicators.
  • a component provided “on” or “above” another component may cover the case where the former component is directly on the latter component (for example, in physical contact with the latter component), and one or more A situation in which an intermediate component is located between the previous component and the next component.

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Abstract

一种收纳雾化装置的收纳盒(100),包括用于容纳雾化装置(7)的收纳槽(22)的本体(2)及供雾化装置(7)充电的充电模块。

Description

用于收纳雾化装置的收纳盒 技术领域
本揭露大体上涉及一种用于收纳雾化装置(vaporization device)的收纳盒,具体而言涉及一种提供可方便收纳雾化装置并可提供雾化装置充电的收纳盒。
背景技术
电子烟系一种电子产品,其将可雾化溶液加热雾化并产生气雾以供用户吸食。近年来,各大厂商开始生产各式各样的电子烟产品。一般而言,一电子烟产品包括外壳、储油室、雾化室、加热组件、进气口、气流通道、出气口、电源装置、感测装置及控制装置。储油室用于储存可雾化(vaporizable)溶液,加热组件用于将可雾化溶液加热雾化并产生气雾。进气口与雾化室彼此连通,当使用者吸气时提供空气给加热组件。由加热组件产生之气雾首先产生于雾化室内,随后经由气流通道及出气口被使用者吸入。电源装置提供加热组件所需之电力,控制装置根据感测装置侦测到的用户吸气动作,控制加热组件的加热时间。外壳则包覆上述各个组件。
市面现有的电子烟产品存在有最大的问题不外乎有收纳不易,无法随时充电,现行大多数的电子烟收纳盒无法方便收纳和取出电子烟,且没有提供对电子烟充电的功能,这对用户体验是一个非常大的减分项。
因此,提出一种可解决上述问题的雾化装置的收纳盒。
发明内容
本申请的一些实施例提供了一种用于收纳雾化装置的收纳盒。所提出的收纳盒包含:具有用于容纳雾化装置的收纳槽的本体及设置于所述本体中的PCB模块、电池、具有端口的连接模块和连接器。连接模块的端口与所述本体的外部相连通,连接器与所述本体的收纳槽相连通。PCB模块、电池、连接模块和连接器彼此电性连接。
亦预期本揭露之其他态样及实施例。前述发明内容及以下实施方式并不意欲将本揭露限于任何特定实施例,而是仅意欲描述本揭露之一些实施例。
附图说明
为了更好地理解本揭露之一些实施例的本质及目标,将参考结合随附图式而采取之以下实施方式。在图式中,除非上下文另有明确规定,否则类似参考编号表示类似组件。
图1为本申请的一些实施例的收纳盒的立体示意图。
图2为本申请的一些实施例的收纳盒的分解结构示意图。
图3A、3B为本申请的一些实施例的收纳盒的上盖的立体示意图。
图3C为本申请的一些实施例的收纳盒的底座的立体示意图。
图4为图1的A-A'剖面示意图。
图5为本申请的一些实施例的雾化装置的分解结构示意图。
图6A和图6B为本申请的一些实施例的雾化装置放入收纳盒的本体的过程的示意图。
图7A为本申请的一些实施例的收纳盒的本体和雾化装置的剖面示意图,显示本申请的一些实施例的烟杆磁铁与底座磁铁的配置。
图7B为图7A中的C部分放大图。
图8A为本申请的一些实施例的收纳盒的本体和雾化装置的剖面示意图,显示本申请的一些实施例的烟杆磁铁与底座磁铁的配置。
图8B为图8A中的D部分放大图。
具体实施方式
以下公开内容提供用于实施所提供的目标物的不同特征的许多不同实施例或实例。下文描述组件和布置的特定实例。当然,这些仅是实例且并不意图为限制性的。在本揭露中,在以下描述中对第一特征在第二特征之上或上的形成的参考可包含第一特征与第二特征直接接触形成的实施例,并且还可包含额外特征可形成于第一特征与第二特征之间从而使得第一特征与第二特征可不直接接触的实施例。另外,本揭露可能在各个实例中重复参考标号和/或字母。此重复是出于简化和清楚的目的,且本身并不指示所论述的各种实施例和/或配置之间的关系。
下文详细论述本揭露的实施例。然而,应了解,本揭露提供了可在多种多样的特定情境中实施的许多适用的概念。所论述的特定实施例仅仅是说明性的且并不限制本揭露的范围。
在本申请的一些实施例中,电子雾化器装置也可称为电子烟,电子雾化器装置包括电子雾化器装置主体和电子雾化器,电子雾化器装置主体也被称为烟杆,电子雾化器也被称为烟弹。在本申请的一些实施例中,烟弹和烟杆为分离的单独结构件,烟弹可插拔连接于烟杆。烟弹和烟杆结合后以形成电子烟。在本申请的一些实施例中,烟弹和烟杆可为一体成型的结构件。
图1为本申请的一些实施例的用于收纳雾化装置的收纳盒100的立体示意图。收纳 盒100包括翻盖1及本体2。翻盖1的侧边11系与本体2的侧边21彼此枢转连接,在本体2的顶部具有一向下凹陷成形的收纳槽22,一雾化装置可容纳于收纳槽22中。相对翻盖1的侧边11的另一侧边13具有二磁铁件131、132,而相对本体1的侧边21的另一侧边23处具有二磁铁件231、232(详细说明可参图2及其说明);磁铁件131、132分别与磁铁件231、232相互对应,当翻盖1盖上于本体2上时,即收纳盒100处于关闭状态时,磁铁件131、132与磁铁件231、232会彼此相吸,如此使得翻盖1可稳定地盖上于本体2上。
图2为本申请的一些实施例的收纳盒100的分解结构示意图。本体2进一步包括上盖3及底座4,上盖3及底座4可相互配合以结合成本体2。如图2所示,收纳槽22形成于上盖3处,弹簧(pogo pin)连接器51系设置于上盖3之一端部31处;弹簧连接器51包括有板件511及与板件511连接之弹簧针(pogo pin)512,弹簧针512可利用焊接的方式与板件511连接。藉由板件511固定于上盖3的端部31处的侧壁上以使得弹簧连接器51设置于上盖3,其中可利用螺钉39将板件511固定于上盖3的端部31处的侧壁上;再者,弹簧针512可穿过收纳槽22的一侧壁延伸至收纳槽22中。在一些实施例中,弹簧(pogo pin)连接器51可用其他种类的连接器替代。
再参考图2,底座4的侧边41具有一枢接部411,翻盖1的侧边11可经由底座4的枢接部411而与本体2彼此枢转连接;磁铁件231及232设置于相对底座4的侧边41的一侧边42处,如上所述,磁铁件231及232系对应设置于翻盖1的侧边13的磁铁件131及132,如此使得当收纳盒100处于关闭状态时,翻盖1与本体2可藉由磁铁件131及132与磁铁件231及232彼此相吸而可稳固的彼此闭合。
PCB模块52、电芯53及具有端口541的连接模块54设置于底座4,所述端口541可以为,但不限于Type-C端口;PCB模块52大致设置于邻近底座4的一端部44处,连接模块54设置于邻近相对底座4的端部44的另一端部43处,其可利用螺钉49固定于底座4,其中,连接模块54的端口541经由底座4的端部43的一通孔431而与底座4的外部连通,再者,电芯53系设置于PCB模块52与连接模块54之间,其可利用电芯背胶531固定于底座4。当上盖3与底座4相互结合而成为本体2时,弹簧连接器51、PCB模块52、电芯53及连接模块54可利用电线或其他电性连接件(未显示)而彼此电性连接,以形成收纳盒100的充电模块。此外,一底座磁铁6设置于邻近底座4之端部43处,尤其设置于电芯53及连接模块54之间,其利用过盈配合而固定于底座4。
图3A、3B为本申请的一些实施例的收纳盒的上盖3的立体示意图。参考图3A、3B,如上所述,上盖3具有收纳槽22,弹簧针连接器51设置于邻近上盖3之端部31处,尤 其,弹簧针连接器51的板件511固定于上盖3,而弹簧针连接器51的弹簧针512可延伸进入收纳槽22中。当雾化装置容纳于收纳槽22时,所述雾化装置的端子可与弹簧针512接触,设置于底座4的电芯53可通过弹簧针512向所述雾化装置充电。
图3C为本申请的一些实施例的收纳盒的底座4的立体示意图。参考图3C,如上所述,PCB模块52设置于邻近底座4之端部42处,具有端口541的连接模块54设置于邻近底座4之端部41处,而连接模块54的端口541可经由底座4的通孔431而与底座4的外部相连通。1电芯53设置于PCB模块52与连接模块54之间,底座磁铁6利用过盈配合固定于连接模块54与电芯53之间,因此,底座磁铁6经设置邻近底座4之端部43。此外,外部电源可通过端口541向电芯53充电。
图4为图1的A-A'剖面示意图。经由图4所示,可了解本体2的一剖面结构。见图4,底座磁铁6设置于本体2的底座4中,且邻近底座4的端部43。此外,参考图4,底座磁铁6系位于收纳槽22的下侧,在一些实施例中,底座磁铁6系位于沿收纳槽22的底面221延伸的水平面223的下侧;换言之,在该些实施例中,底座磁铁6的高度不会超过沿收纳槽22的底面221延伸的水平面223。
图5为本申请的一些实施例的雾化装置7的分解结构示意图。雾化装置7包括烟弹71、烟杆72、烟杆磁铁支架73及烟杆磁铁8。烟杆磁铁8设置于烟杆磁铁支架73之一端部731,烟杆磁铁支架73可自烟杆72一端部722的开口设置于烟杆72内部,当烟杆磁铁支架73设置于烟杆72内部时,烟杆磁铁8则会经设置而邻近于相对烟杆72的端部72的另一端部721。又,烟弹71系与烟杆72的端部722相连接。此外,在烟杆72的上表面723上有一可作为一标志记号的LED灯组725,而在烟杆72的端部721设置有一接头75,在某些实施例中接头75为弹簧针(pogo pin)接孔。
图6A和图6B为本申请的一些实施例的雾化装置7放入收纳盒100的本体2的过程的示意图。如图6A所示,使用者可将雾化装置7沿着B方向放入收纳盒100的本体2的收纳槽22中。将雾化装置7沿着B方向放入收纳槽22中,可使大致位于雾化装置7的烟杆72的端部721的接头75可以在雾化装置7完全放入于收纳槽22时,如图6B所示,顺利的与弹簧针512接触。而当雾化装置7完全放入于收纳槽22时(参图6B),设置于本体2中的电芯53可透过弹簧针512对雾化装置7充电。又,雾化装置7在邻近烟杆72的端部721设置有烟杆磁铁8(参图5),本体2在邻近其底座4的端部43设置有底座磁铁6(参图2、图4),且烟杆磁铁8与底座磁铁6可互相吸引;因此,当将雾化装置7沿着B方向放入收纳槽22中(参图6A),因雾化装置7的烟杆磁铁8与本体2的底座磁铁6可互相吸引,如此可使得雾化装置7藉由烟杆磁铁8与底座磁铁6彼此之间的 吸引力而更为顺利地放入收纳槽22中。此外,因为雾化装置7的烟杆磁铁8与本体2的底座磁铁6可互相吸引,当雾化装置7完全放入于收纳槽22时(参图6B),雾化装置7可藉由该吸力而更为稳固地收纳于收纳槽22中,且收纳槽22中的弹簧针512可更为稳固的与雾化装置7的接头75接触,如此可避免当收纳盒100受到摇晃时,弹簧针512与雾化装置7的接头75会彼此错位而产生接触不良的情况。
图7A为本申请的一些实施例的收纳盒的本体和雾化装置的剖面示意图,尤其图7B可显示本申请的一些实施例的烟杆磁铁与底座磁铁的配置。图7A系显示雾化装置7完全收纳于本体2的收纳槽22中的一剖面示意图。如先前所述,参图7A和图7B,雾化装置7在邻近烟杆72的端部721设置有烟杆磁铁8,本体2在邻近其底座4的端部43设置有底座磁铁6,且底座磁铁6大致设置于收纳槽22的下侧。在一些实施例中,当雾化装置7完全收纳于本体2的收纳槽22中时,雾化装置7的烟杆磁铁8并不会正好位于本体2的底座磁铁6的上方;如图7B所示,雾化装置7的烟杆磁铁8与本体2的底座磁铁6在垂直方向上的距离系彼此偏置,因此,底座磁铁6的横截面中心60并不会对准烟杆磁铁8的横截面中心80,换句话说,通过底座磁铁6的横截面中心60的一垂直线601并不会通过烟杆磁铁8的横截面中心80,且底座磁铁6的横截面中心60与底座4的端部43间的水平距离d1会小于烟杆磁铁8的横截面中心80与底座4的端部43间的水平距离d2;此外,底座磁铁5可经配置使得其两极磁性系分别位于底座磁铁6顶端部61及底端部62,而烟杆磁铁8可经配置使得其两极磁性系分别位于其朝向烟杆72的端部721的一端部801及远离烟杆72的端部721的另一端部802,又,底座磁铁6的顶端部61的磁性与烟杆磁铁8的端部801的磁性可彼此相异,如,若底座磁铁6的顶端部61的磁性为N极,则烟杆磁铁8的端部801的磁性为S极;又如,若底座磁铁6的顶端部61的磁性为S极,则烟杆磁铁8的端部801的磁性为N极;如此的配置,可提升底座磁铁6与烟杆磁铁8彼此之间的吸力,使得雾化装置7可更为顺利地放入收纳槽22,并可更稳固的收纳于收纳槽22中。
图8A为本申请的一些实施例的收纳盒的本体和雾化装置的剖面示意图,尤其图8B可显示本申请的一些实施例的烟杆磁铁与底座磁铁的配置。图7A系显示雾化装置7完全收纳于本体2的收纳槽22中的一剖面示意图。参图8A和图8B,雾化装置7在邻近烟杆72的端部721设置有烟杆磁铁81和82,本体2在邻近其底座4的端部43设置有底座磁铁6,且底座磁铁6大致设置于收纳槽22的下侧。在一些实施例中,如图8A和8B所示,雾化装置7进一步包含有一第一烟杆磁铁件81及一大致设置于第一烟杆磁铁件81的上侧的第二烟杆磁铁件82;且当雾化装置7完全收纳于本体2的收纳槽22中时, 雾化装置7的第一烟杆磁铁件81及第二烟杆磁铁件82并不会正好位于本体2的底座磁铁6的上方;如图8B所示,雾化装置7的第一烟杆磁铁件81及第二烟杆磁铁件82与本体2的底座磁铁6在垂直方向上的距离系彼此偏置,因此,底座磁铁6的横截面中心60并不会对准第一烟杆磁铁件81的横截面中心810及第二烟杆磁铁件82的横截面中心820,换句话说,通过底座磁铁6的横截面中心60的一垂直线601'并不会通过第一烟杆磁铁件81的横截面中心810,亦不会通过第二烟杆磁铁件82的横截面中心820,且底座磁铁6的横截面中心60与底座4的端部43间的水平距离d1'会小于第一烟杆磁铁件81的横截面中心810与底座4的端部43间的水平距离d2',亦会小于第二烟杆磁铁件82的横截面中心820与底座4的端部43间的水平距离d3';此外,底座磁铁6可经配置使得其两极磁性系分别位于底座磁铁6的顶端部61及底端部62,而第一烟杆磁铁件81可经配置使得其两极磁性系分别位于其朝向烟杆72的端部721的一端部811及远离烟杆72的端部721的另一端部812,且第二烟杆磁铁件82可经配置使得其两极磁性系分别位于其朝向烟杆72的端部721的一端部821及远离烟杆72的端部721的另一端部822;又,底座磁铁6的顶端部61的磁性与第一烟杆磁铁件81的端部811的磁性可彼此相异,且底座磁铁6的顶端部61的磁性与第二烟杆磁铁件82的端部821的磁性可彼此相同,如,若底座磁铁6的顶端部61的磁性为N极,则第一烟杆磁铁件81的端部811的磁性为S极,第二烟杆磁铁件82的端部821的磁性为N极;又如,若底座磁铁6的顶端部61的磁性为S极,则第一烟杆磁铁件81的端部811的磁性为N极,第二烟杆磁铁件82的端部821的磁性为S极;经由如此的配置,底座磁铁6的顶端部61与第一烟杆磁铁件81的端部811之间所产生的相吸磁力可使得雾化装置7可更为顺利地放入收纳槽22,并可更稳固的收纳于收纳槽22中,而底座磁铁6的顶端部61与第二烟杆磁铁件82的端部821之间所产生的相斥磁力,可使得当雾化装置7完全收纳于本体2的收纳槽22中时,雾化装置7可平躺于收纳槽22的底面221上,不会因底座磁铁6的顶端部61与第一烟杆磁铁件81的端部811之间过大的相吸磁力而使得雾化装置7的烟杆72的端部721向下沈,并使得雾化装置72的烟弹71的端部711翘起以暴露于收纳槽22外。
此外,如图5所示,雾化装置7的烟杆72的上表面723上设有一可作为一标志记号的LED灯组725,當所述在雾化装置7放置于收纳槽22时,若位于雾化装置72的上表面723的LED灯组725朝向远离收纳槽22的方向时(参图6A及6B),烟杆72的第一烟杆磁铁件81和第二烟杆磁铁件82与本体2的底座磁铁6之间的相互作用将使得雾化装置7可顺利地收纳于收纳槽22中(如图8A及8B及其相关说明)。相对地,当所述在 雾化装置7放置于收纳槽22时,若位于雾化装置72的上表面723的LED灯组725面向收纳槽22时,烟杆72的第一烟杆磁铁件81和第二烟杆磁铁件82的上下配置将与图8B所绘示者相反,则第一烟杆磁铁件81和第二烟杆磁铁件82与本体2的底座磁铁6之间的相互作用将使得雾化装置7无法顺利地收纳于收纳槽22中。
整个说明书中对“一些实施例”、“部分实施例”、“一个实施例”、“另一举例”、“举例”、“具体举例”或“部分举例”的引用,其所代表的意思是在本申请中的至少一个实施例或举例包含了该实施例或举例中所描述的特定特征、结构或特性。因此,在整个说明书中的各处所出现的描述,例如:“在一些实施例中”、“在实施例中”、“在一个实施例中”、“在另一个举例中”,“在一个举例中”、“在特定举例中”或“举例“,其不必然是引用本申请中的相同的实施例或示例。
如本文中所使用,空间相对术语,例如,“之下”、“下方”、“下部”、“上方”、“上部”、“下部”、“左侧”、“右侧”及类似者可在本文中用于描述的简易以描述如图中所说明的一个组件或特征与另一组件或特征的关系。除了图中所描绘的定向之外,空间相对术语意图涵盖在使用或操作中的装置的不同定向。设备可以其它方式定向(旋转90度或处于其它定向),且本文中所使用的空间相对描述词同样可相应地进行解释。应理解,当一组件被称为“连接到”或“耦合到”另一组件时,其可直接连接或耦合到另一组件,或可存在中间组件。
如本文中所使用,术语“近似地”、“基本上”、“基本”及“约”用于描述并考虑小变化。当与事件或情况结合使用时,所述术语可指事件或情况精确地发生的例子以及事件或情况极近似地发生的例子。如本文中相对于给定值或范围所使用,术语“约”大体上意味着在给定值或范围的±10%、±5%、±1%或±0.5%内。范围可在本文中表示为自一个端点至另一端点或在两个端点之间。除非另外规定,否则本文中所公开的所有范围包括端点。术语“基本上共面”可指沿同一平面定位的在数微米(μm)内的两个表面,例如,沿着同一平面定位的在10μm内、5μm内、1μm内或0.5μm内。当参考“基本上”相同的数值或特性时,术语可指处于所述值的平均值的±10%、±5%、±1%或±0.5%内的值。
如本文中所使用,术语“近似地”、“基本上”、“基本”和“约”用于描述和解释小的变化。当与事件或情况结合使用时,所述术语可指事件或情况精确地发生的例子以及事件或情况极近似地发生的例子。举例来说,当与数值结合使用时,术语可指小于或等于所述数值的±10%的变化范围,例如,小于或等于±5%、小于或等于±4%、小于或等于±3%、小于或等于±2%、小于或等于±1%、小于或等于±0.5%、小于或等于± 0.1%,或小于或等于±0.05%。举例来说,如果两个数值之间的差小于或等于所述值的平均值的±10%(例如,小于或等于±5%、小于或等于±4%、小于或等于±3%、小于或等于±2%、小于或等于±1%、小于或等于±0.5%、小于或等于±0.1%,或小于或等于±0.05%),那么可认为所述两个数值“基本上”或“约”相同。举例来说,“基本上”平行可以指相对于0°的小于或等于±10°的角度变化范围,例如,小于或等于±5°、小于或等于±4°、小于或等于±3°、小于或等于±2°、小于或等于±1°、小于或等于±0.5°、小于或等于±0.1°,或小于或等于±0.05°。举例来说,“基本上”垂直可以指相对于90°的小于或等于±10°的角度变化范围,例如,小于或等于±5°、小于或等于±4°、小于或等于±3°、小于或等于±2°、小于或等于±1°、小于或等于±0.5°、小于或等于±0.1°,或小于或等于±0.05°。
如本文中所使用,除非上下文另外明确规定,否则单数术语“一(a/an)”和“所述”可包含复数指示物。在一些实施例的描述中,提供于另一组件“上”或“上方”的组件可涵盖前一组件直接在后一组件上(例如,与后一组件物理接触)的情况,以及一或多个中间组件位于前一组件与后一组件之间的情况。
除非另外规定,否则例如“上方”、“下方”、“上”、“左”、“右”、“下”、“顶部”、“底部”、“垂直”、“水平”、“侧面”、“高于”、“低于”、“上部”、“在……上”、“在……下”、“向下”等等的空间描述是相对于图中所示的定向来指示的。应理解,本文中所使用的空间描述仅出于说明的目的,且本文中所描述的结构的实际实施方案可以任何定向或方式在空间上布置,其前提是本发明的实施例的优点是不会因此类布置而有偏差。
虽然已参考本揭露的特定实施例描述并说明本揭露,但是这些描述和说明并不限制本揭露。所属领域的技术人员可清晰地理解,在不脱离如由所附权利要求书定义的本揭露的真实精神和范围的情况下,可进行各种改变,且可在实施例内取代等效组件。图示可能未必按比例绘制。归因于制造过程中的变量等等,本揭露中的艺术再现与实际设备之间可能存在区别。可能存在并未特定说明的本揭露的其它实施例。应将本说明书和图式视为说明性而非限定性的。可进行修改,以使特定情形、材料、物质组成、物质、方法或过程适宜于本揭露的目标、精神和范围。所有此类修改都意图在此所附权利要求书的范围内。虽然已参考按特定次序执行的特定操作描述本文中所公开的方法,但应理解,可在不脱离本揭露的教示的情况下组合、细分或重新排序这些操作以形成等效方法。因此,除非本文中特别指示,否则操作的次序和分组并非本揭露的限制。
前文概述本揭露的若干实施例及细节方面的特征。本揭露中描述的实施例可容易地 用作用于设计或修改其它过程的基础以及用于执行相同或相似目的和/或获得引入本文中的实施例的相同或相似优点的结构。此类等效构造并不脱离本揭露的精神和范围,并且可在不脱离本揭露的精神和范围的情况下作出各种改变、替代和变化。

Claims (25)

  1. 一种用于收纳雾化装置的收纳盒,其包含:
    包含用于容纳雾化装置的收纳槽的本体;
    设置于所述本体中的PCB模块;
    设置于所述本体中的电池;
    设置于所述本体中的具有端口的连接模块,其中所述端口与所述本体的外部相连通;及
    设置于所述本体中的连接器,其中所述连接器系与所述收纳槽相连通;
    其中所述PCB模块、所述电池、所述连接模块和所述连接器彼此电性连接。
  2. 根据权利要求1所述的收纳盒,其中所述端口为一Type-C端口。
  3. 根据权利要求1所述的收纳盒,其中所述连接器为一弹簧(pogo pin)连接器。
  4. 根据权利要求3所述的收纳盒,其中所述弹簧连接器包含板件及设置于所述板件的弹簧针(pogo pin),其中所述弹簧针延伸进入所述收纳槽中。
  5. 根据权利要求1所述的收纳盒,其中所述本体包括上盖及与所述上盖相互配合的底座,其中所述收纳槽形成于所述上盖。
  6. 根据权利要求5所述的收纳盒,其中所述PCB模块、所述电池和所述连接模块设置于所述底座,其中所述连接器设置于所述上盖。
  7. 根据权利要求6所述的收纳盒,其中所述连接器包含板件及设置于所述板件的弹簧针(pogo pin),其中所述板件固定于所述上盖,所述弹簧针延伸进入所述收纳槽中。
  8. 根据权利要求1所述的收纳盒,其进一步包含翻盖,其中所述翻盖的第一侧边与所述本体的第一侧边枢转连接。
  9. 根据权利要求8所述的收纳盒,其进一步包含二可相互吸引的金属组件,其中一金属组件设置于所述翻盖的第二侧边,另一金属组件设置于所述本体的第二侧边,其中所述翻盖的第二侧边系相对于所述翻盖的第一侧边,所述本体的第二侧边系相对于所述本体的第一侧边。
  10. 根据权利要求9所述的收纳盒,其中设置于所述翻盖的第二侧边的所述金属组件可为一磁铁。
  11. 根据权利要求9所述的收纳盒,其中设置于所述本体的第二侧边的所述金属组件可为一磁铁。
  12. 根据权利要求1所述的收纳盒,其进一步包含一磁铁件,其中所述磁铁件设置于所 述本体中且邻近所述本体的第一端,且所述磁铁件位于收纳槽的下侧。
  13. 根据权利要求1所述的收纳盒,其进一步包含一磁铁件,其中所述磁铁件设置于所述本体中且邻近所述本体的第一端,且所述磁铁件位于沿所述收纳槽的底面延伸的水平面。
  14. 一种雾化装置收纳总成,其包含:
    收纳盒;其包含:
    包含收纳槽的本体;其中所述收纳槽系自所述本体的一顶部向下凹陷形成;
    设置于所述本体中的充电模块;及
    可容纳于所述收纳盒的收纳槽内并与所述充电模块电连接的雾化装置。
  15. 根据权利要求14所述的雾化装置收纳总成,其中所述充电模块包含:
    PCB模块;
    电池;
    具有端口的连接模块,其中所述端口与所述本体的外部相连通;及
    连接器,其中所述连接器系与所述收纳槽相连通,并可连接容纳于所述收纳盒的收纳槽内的所述雾化装置;
    其中所述PCB模块、所述电池、所述连接模块和所述连接器彼此电性连接。
  16. 根据权利要求15所述的雾化装置收纳总成,其中所述端口可为一Type-C端口。
  17. 根据权利要求15所述的雾化装置收纳总成,其中所述连接器可为一弹簧(pogo pin)连接器。
  18. 根据权利要求17所述的雾化装置收纳总成,其中所述弹簧连接器包含板件及设置于所述板件的弹簧针(pogo pin),其中所述弹簧针延伸进入所述收纳槽中以可与容纳于所述收纳盒的收纳槽内的所述雾化装置相互接触。
  19. 根据权利要求14所述的雾化装置收纳总成,其中所述雾化装置的第一表面具有一标志记号,其中所述雾化装置的第一表面系远离所述收纳槽的底面。
  20. 根据权利要求19所述的雾化装置收纳总成,其中所述标志记号可为一LED灯组。
  21. 根据权利要求14所述的雾化装置收纳总成,其中所述收纳盒进一步包含翻盖,其中所述翻盖的第一侧边与所述本体的第一侧边枢转连接。
  22. 根据权利要求14所述的雾化装置收纳总成,其进一步包含第一金属组件,其设置于所述本体中且邻近所述本体的第一端,及进一步包含一第二金属组件,其设置于所述雾化装置中且邻近所述雾化装置的第一端;其中所述第一金属组件和所述第二金属组件可互相吸引;且其中所述雾化装置的第一端系邻近所述本体的第一端。
  23. 根据权利要求21所述的雾化装置收纳总成,其中所述第一金属组件可为一磁铁。
  24. 根据权利要求21所述的雾化装置收纳总成,其中所述第二金属组件可为一磁铁。
  25. 根据权利要求17所述的雾化装置收纳总成,其中所述第一金属组件可为一第一磁铁,第二金属组件可为一第二磁铁。
PCT/CN2020/070865 2020-01-08 2020-01-08 用于收纳雾化装置的收纳盒 WO2021138833A1 (zh)

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