WO2022042332A1 - 触式检测转换不同功率工作模式装置及气溶胶产生装置 - Google Patents

触式检测转换不同功率工作模式装置及气溶胶产生装置 Download PDF

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Publication number
WO2022042332A1
WO2022042332A1 PCT/CN2021/112430 CN2021112430W WO2022042332A1 WO 2022042332 A1 WO2022042332 A1 WO 2022042332A1 CN 2021112430 W CN2021112430 W CN 2021112430W WO 2022042332 A1 WO2022042332 A1 WO 2022042332A1
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Prior art keywords
atomizer
magnetic
host
magnetic member
groove
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PCT/CN2021/112430
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English (en)
French (fr)
Inventor
黄欣荣
杨勇
赵贯云
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深圳市吉迩科技有限公司
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Publication of WO2022042332A1 publication Critical patent/WO2022042332A1/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
    • A24F40/50Control or monitoring
    • 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

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  • the invention relates to the field of aerosol generating devices, in particular to a touch detection and conversion device for different power working modes and an aerosol generating device.
  • the aerosol generating device is a portable device that replaces conventional cigarettes. It is usually plugged into the host by a pod to heat the e-liquid in the pod to form smoke, so as to achieve the effect of smoking.
  • the user sucks the smoke through the suction nozzle in the pod, while in the existing aerosol generating device, the output power is constant, that is, the power cannot be adjusted, and it cannot meet the needs of different users for different powers. needs.
  • the present invention provides a touch detection and conversion device for different power operating modes and an aerosol generating device.
  • a touch detection and conversion device for different power working modes including an atomizer and a main unit, the atomizer is plugged into one end of the main unit; the atomizer At least two magnetic parts are arranged at one end of the device close to the main body, the positions of the at least two magnetic parts are different, and the magnetic forces of the at least two magnetic parts are different; the end of the main body close to the atomizer is provided with an induction
  • the induction assembly senses the magnitude of the magnetic force of the magnetic member;
  • the host is further provided with a power module, the power module is electrically connected with the induction assembly, and the induction assembly controls the The output power of the power module.
  • the induction assembly includes an induction plate and a control module, the induction plate is arranged at one end of the main body close to the atomizer, the control module is built in the main body, and the control module is respectively connected with the The induction board and the power module are electrically connected.
  • the atomizer when the atomizer is plugged into one end of the main unit, the atomizer can rotate relative to the main unit; the at least two magnetic parts are located on the side of the atomizer close to the main unit.
  • the surfaces are evenly arranged around the circumference.
  • the at least two magnetic pieces include a first magnetic piece and a second magnetic piece, the first magnetic piece is symmetrically arranged with the second magnetic piece about the axis of the atomizer; the first magnetic piece The magnetic force of the second magnetic piece is greater than the magnetic force of the second magnetic piece.
  • the surface of the atomizer is provided with a first groove corresponding to the position of the first magnetic member, and a second groove is formed corresponding to the position of the second magnetic member, the first groove and the The depths of the second grooves are different.
  • the atomizer further includes two prompt cards, and the two prompt cards are respectively inserted into the first groove and the second groove.
  • the end of the main body close to the atomizer is further provided with a third magnetic piece, and the third magnetic piece is arranged opposite to the induction plate with the axis of the main machine.
  • the atomizer is plugged into the When on the host, at least one magnetic element is magnetically connected with the third magnetic element.
  • an annular plug portion extends from one end of the atomizer close to the main body, the end of the main body close to the atomizer is in a recessed structure, and the plug portion is inserted into the main body;
  • the surface of the plug-in portion is provided with a snap-connection block protruding outward, the host computer is provided with a snap-fit slot at a position corresponding to the snap-on block, and the snap-fit block is inserted into the snap-fit slot.
  • the surfaces of the clamping block and the clamping groove are arc-shaped surfaces.
  • the present invention also provides an aerosol generating device, which includes the touch detection and conversion device for different power working modes as described in any one of the above.
  • the touch detection and conversion device for different power operating modes and the aerosol generating device provided by the present invention have the following advantages:
  • the positions of the at least two magnetic pieces are different, and the magnetic forces of the at least two magnetic pieces are different, and an induction component is arranged at one end of the host near the atomizer, and the induction The component senses the magnetic force of the magnetic piece, and adjusts the position where the atomizer is inserted into the host, so that the magnetic pieces with different magnetic forces are detected by the sensing component, and the host can be controlled to output different powers.
  • the position of the atomizer can complete the adjustment of the output power of the host, which is convenient for the user's operation, adapts to the needs of different users for different power usage, facilitates market promotion, realizes the effect of one thing with multiple uses, and improves the user experience.
  • the induction plate is arranged at one end of the main body close to the atomizer, the control module is built in the main body, and the control module is respectively connected with the induction plate and the power module. It is electrically connected so that the induction board is in contact with the magnetic piece to sense the current magnetic force, and the power module can be controlled to output the corresponding power through the control module, so that the user can adjust the position of the magnetic piece based on the position of the induction board, which is convenient for the user to put in the fog atomizer and adjust the position of the atomizer.
  • the plurality of magnetic parts are evenly arranged in the circumferential direction of the surface of the atomizer near the main body, and the user can realize a variety of different power outputs based on a plurality of magnetic parts with different magnetic forces , adapted to the needs of different users for different power usage.
  • the first groove is at the position corresponding to the first magnetic member, and the user can use the first groove
  • the position of the groove and the second groove can judge the current sensed magnetic piece, and at the same time, the corresponding power can be judged based on the depth of the groove, which is convenient for users to distinguish the adjustability of the current output power and avoid frequent operation by users. used by users.
  • the atomizer also includes two prompt cards, which are respectively inserted into the first groove and the second groove, that is, by setting the two prompt cards, the user can
  • the prompt board directly checks the current corresponding power size.
  • the prompt board can also be pulled out of the groove and then re-inserted into the corresponding groove, which is further convenient for the user. Modify the program.
  • the user can realize the blind insertion effect of the atomizer based on the third magnetic element, which is also convenient for the user to judge the accuracy of the current insertion position, and further improves the direct connection between the atomizer and the host. plugging stability.
  • the user can also realize the guiding effect when the atomizer is inserted into the host based on the third magnetic member, so as to avoid the user's insertion error and improve the user's use experience.
  • the snap block By setting the snap block and snap slot, the snap block is placed in the snap slot.
  • the snap block When the user inserts the atomizer, the snap block can be inserted into the host based on the Insertion and fixation are realized in the snap-fit slot, and at the same time, the snap-fit block can move in the snap-fit slot, and the user can rotate the atomizer based on the snap-fit block to adjust the position of the magnetic piece.
  • the surface of the clamping block and the clamping groove are arc-shaped surfaces, which is convenient for users to plug in the atomizer, and at the same time, it is also convenient for users to pull out the atomizer.
  • the arc-shaped surface allows users to pull out the atomizer. It is more labor-saving when atomizing and improves the user experience.
  • FIG. 1 is a schematic structural diagram of a touch detection and conversion device for different power operating modes provided by a first embodiment of the present invention.
  • FIG. 2 is a schematic structural diagram of the atomizing core pulled out of the casing in the touch detection and conversion device for different power working modes provided by the first embodiment of the present invention.
  • FIG. 3 is a schematic structural diagram of an atomizer in the touch detection and conversion device for different power operating modes provided by the first embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of a clamping slot in the touch detection and conversion device for different power operating modes provided by the first embodiment of the present invention.
  • 11-Atomizer 111-First magnetic piece, 112-Second magnetic piece, 113-First groove, 114-Second groove, 115-Plug part, 1151-Clamping block, 116-Prompt board ,
  • the first embodiment of the present invention provides a touch detection and conversion device 1 of different power working modes, including an atomizer 11 and a main unit 12 , the atomizer 11 is plugged into one end of the main unit 12 , and the main unit 12 Electric energy used to provide different power to the atomizer 11 .
  • the atomizer 11 is provided with at least two magnetic parts at one end close to the main body 12 , the positions of the at least two magnetic parts are different, and the magnetic forces of the at least two magnetic parts are different.
  • an induction assembly 121 is provided at one end of the host 12 close to the atomizer 11 , and the induction assembly 121 senses the magnitude of the magnetic force of the magnetic element.
  • the host 12 is further provided with a power module 122, the power module 122 is electrically connected with the induction component 121, and the induction component 121 controls the output power of the power module 122 based on the magnetic magnitude of the induction.
  • a first magnetic member 111 and a second magnetic member 112 are provided at one end of the atomizer 11 close to the main body 12 , the first magnetic member 111 is symmetrically arranged with the second magnetic member 112 with the axis of the atomizer 11 , and the first magnetic member 111 is symmetrical with the second magnetic member 112 .
  • the magnetic force of the magnetic element 111 is greater than the magnetic force of the second magnetic element 112 .
  • the sensing component 121 includes a sensing board 1211 and a control module 1212 .
  • the sensing board 1211 is located at one end of the main unit 12 close to the atomizer 11 , the control module 1212 is built in the main unit 12 , and the control module 1212 is connected to the sensing board 1211 and the power supply module 122 respectively. electrical connection.
  • the control module 1212 is based on The magnetic force value sensed by the induction plate 1211 controls the power supply module 122 to output to the atomizer 11 according to the preset power, so that the atomizer 11 has the usage power corresponding to the current magnetic force.
  • the control module 1212 controls the power output of the power module 122 according to the preset lower magnetic force by changing the magnetic force of the current second magnetic element 112 .
  • first magnetic member 111 can also be set to a low power output
  • second magnetic member 112 can also be set to a relatively high power output, as long as different powers can be output according to different magnetic forces, which is not discussed here. Do limit.
  • the sensing board 1211 can be set as a milliTesla meter or a Gauss meter
  • the control module 1212 can be set as a control circuit board based on PCBA or 51 single-chip microcomputer, which can adjust the magnitude of the preset magnetic force,
  • the control power module 122 outputs different powers.
  • the number of magnetic parts may also be 3, 4, 5 or more.
  • the number of magnetic parts is greater than 2, multiple magnetic parts are close to the atomizer 11 .
  • the surface on one side of the host 12 is evenly arranged in the circumferential direction, and the user can achieve a variety of different power outputs based on multiple magnetic components with different magnetic forces, which meets the needs of different users for different power usage.
  • only the number of magnetic elements is 2 for description, but this is not a limitation of this solution.
  • the atomizer 11 when the atomizer 11 is plugged into one end of the main unit 12, the atomizer 11 can be rotated relative to the main unit 12, so that when the user needs to change the output power, he can directly rotate the atomizer 11 or The host 12 is sufficient, and there is no need to pull out the atomizer 11, which is convenient for the user to operate.
  • the surface of the atomizer 11 is provided with a first groove 113 at a position corresponding to the first magnetic member 111 , a second groove 114 is formed at a position corresponding to the second magnetic member 112 , and the first groove 113 Different from the depth of the second groove 114, when the user aligns the first magnetic member 111 with the induction plate 1211, the first groove 113 is at the position corresponding to the first magnetic member 111.
  • the position of the second groove 114 can determine the currently sensed magnetic element, and at the same time, it can also judge the current corresponding power size based on the depth of the groove, which is convenient for the user to distinguish the adjustability of the current output power size, avoids frequent operation by the user, and is convenient for the user use.
  • the atomizer 11 further includes two reminder cards 116, and the two reminder cards 116 are respectively inserted into the first groove 113 and the second groove 114, that is, by setting two
  • the prompt card 116 enables the user to directly view the current corresponding power level based on the prompt card 116 .
  • the prompt board 116 can also be pulled out from the groove and then re-inserted into the corresponding groove, which is further convenient. User modifies the program.
  • the end of the main unit 12 close to the atomizer 11 is also provided with a third magnetic member 123 , and the third magnetic member 123 is arranged opposite to the induction plate 1211 with the axis of the main unit 12 .
  • the first magnetic element 111 or the second magnetic element 112 is magnetically connected to the third magnetic element 123 .
  • the third magnetic member 123 is disposed opposite to the induction plate 1211, so that the third magnetic member 123 does not affect the magnetic force of the magnetic member to be sensed, and when the user inserts it into the atomizer 11, for example, the first magnetic member 111 Align the induction plate 1211, and at this time the second magnetic member 112 is aligned with the third magnetic member 123, the second magnetic member 112 and the third magnetic member 123 are magnetically connected, that is, when the user uses the first magnetic member 111 as the current When the magnetic element is induced, the second magnetic element 112 is magnetically connected by the third magnetic element 123, and the user can realize the blind insertion effect of the atomizer 11 based on the magnetic attraction. If the atomizer 11 is not magnetically attracted, it means Currently, the induction plate 1211 does not sense the magnetic force, that is, the magnetic element is not aligned with the induction plate 1211, and the insertion fails.
  • the user can realize the blind insertion effect of the atomizer 11 based on the third magnetic member 123, which is also convenient for the user to judge the accuracy of the current insertion position, and further improves the atomizer 11 and the host 12. Direct mating stability.
  • the user can also guide the atomizer 11 when the atomizer 11 is inserted into the host 12 based on the third magnetic member 123, so as to avoid the user's insertion error and improve the user's experience.
  • the end of the atomizer 11 close to the main unit 12 is extended with a ring-shaped plug portion 115 , the end of the main unit 12 close to the atomizer 11 is a concave structure, and the plug portion 115 is inserted into the main unit 12 .
  • the surface of the plug-in portion 115 is provided with a snap-on block 1151 that protrudes outward.
  • the host 12 is provided with a snap-on slot 124 at a position corresponding to the snap-on block 1151.
  • the snap-on block 1151 is placed in the snap-on slot 124.
  • the surfaces of the clamping block 1151 and the clamping groove 124 are arc-shaped surfaces, which is convenient for the user to insert and connect the atomizer 11, and at the same time, it is also convenient for the user to pull out the atomizer 11.
  • the curved surface makes it easier for the user to pull out the atomizer 11 and improves the user experience.
  • the second embodiment of the present invention provides an aerosol generating device, which includes the touch detection and conversion device 1 of different power operating modes as provided in the above-mentioned first embodiment.
  • the touch detection and conversion device for different power working modes provided by the present invention has the following advantages:
  • the positions of the at least two magnetic parts are different, and the magnetic forces of the at least two magnetic parts are different;
  • the size of the magnetic force of the magnetic piece is adjusted by adjusting the position where the atomizer is inserted into the host, so that after the magnetic pieces of different magnetic forces are detected by the induction component, the host can be controlled to output different power, and the atomization can be achieved by plugging and adjusting.
  • the adjustment of the output power of the host can be completed by the position of the device, which is convenient for the user's operation, adapts to the needs of different users for different power usage, facilitates market promotion, realizes the effect of multiple uses for one thing, and improves the user experience.

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Abstract

一种触式检测转换不同功率工作模式装置(1)及气溶胶产生装置,通过设置至少两个磁性件,所述至少两个磁性件的位置不同,且所述至少两个磁性件的磁力不同,所述主机(12)靠近所述雾化器(11)一端设置感应组件(121),所述感应组件(121)感应所述磁性件的磁力大小,通过调整雾化器(11)插接入主机(12)的位置,使得不同磁力的磁性件被感应组件(121)检测当前磁力后,控制主机(12)输出不同的功率,实现了通过插接和调节雾化器(11)的位置即可完成对主机(12)输出功率的调节,方便了用户的操作,适应了不同用户对不同使用功率的需求,便于市场的推广,实现一物多用的效果,提高用户体验。

Description

触式检测转换不同功率工作模式装置及气溶胶产生装置
本申请要求于2020年8月24日提交中国专利局、申请号为202010856345.2发明名称为“触式检测转换不同功率工作模式装置及气溶胶产生装置”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
本发明涉及气溶胶产生装置领域,特别涉及一种触式检测转换不同功率工作模式装置及气溶胶产生装置。
背景技术
气溶胶产生装置是替代常规卷烟的便携式设备,其通常是由烟弹插接在主机上,以将烟弹中的烟油加热形成烟雾,以达到出烟效果。
现有的气溶胶产生装置中,用户通过烟弹中的吸嘴吸取烟雾,而现有的气溶胶产生装置中,其输出的功率为恒定,也即无法调节功率,不能满足不同用户对不同功率的需要。
发明内容
为了克服目前现有的气溶胶产生装置中无法调节输出功率的问题,本发明提供一种触式检测转换不同功率工作模式装置及气溶胶产生装置。
本发明为解决上述技术问题,提供一技术方案如下:一种触式检测转换不同功率工作模式装置,包括雾化器及主机,所述雾化器插接于所述主机一端;所述雾化器靠近所述主机一端设有至少两个磁性件,所述至少两个磁性件的位置不同,且所述至少两个磁性件的磁力不同;所述主机靠近所述雾化器一端设有感应组件,所述感应组件感应所述磁性件的磁力大小;所述主机内还设有电源模块,所述电源模块与所述感应组件电连接,所述感应组件基于感应的磁性 大小,控制所述电源模块的输出功率。
优选地,所述感应组件包括感应板和控制模块,所述感应板设于所述主机靠近所述雾化器一端,所述控制模块内置于所述主机内,所述控制模块分别与所述感应板及所述电源模块电连接。
优选地,所述雾化器插接于所述主机一端时,所述雾化器可相对于所述主机转动;所述至少两个磁性件于所述雾化器靠近所述主机一侧的表面周向均匀设置。
优选地,所述至少两个磁性件包括第一磁性件和第二磁性件,所述第一磁性件以所述雾化器的轴线与所述第二磁性件对称设置;所述第一磁性件的磁力大于所述第二磁性件的磁力。
优选地,所述雾化器表面对应所述第一磁性件的位置设有第一凹槽,对应所述第二磁性件的位置设有第二凹槽,所述第一凹槽与所述第二凹槽的深度不同。
优选地,所述雾化器还包括两个提示牌,所述两个提示牌分别插接于第一凹槽与第二凹槽内。
优选地,所述主机靠近所述雾化器一端还设有第三磁性件,所述第三磁性件以所述主机的轴线与所述感应板相对设置,当所述雾化器插接于所述主机上时,至少一个磁性件与所述第三磁性件磁吸连接。
优选地,所述雾化器靠近所述主机一端延伸有环状的插接部,所述主机靠近所述雾化器一端为凹陷结构,所述插接部插接置入所述主机内;所述插接部表面设有向外凸起的卡接块,所述主机对应所述卡接块的位置设有卡接槽,所述卡接块置入所述卡接槽内。
优选地,所述卡接块及所述卡接槽表面均为圆弧状表面。
本发明还提供一种气溶胶产生装置,其包括如上述任一项所述触式检测转换不同功率工作模式装置。
与现有技术相比,本发明提供的触式检测转换不同功率工作模式装置及气溶胶产生装置具有以下优点:
1、通过设置至少两个磁性件,所述至少两个磁性件的位置不同,且所述至少两个磁性件的磁力不同,所述主机靠近所述雾化器一端设置感应组件,所述感应组件感应所述磁性件的磁力大小,通过调整雾化器插接入主机的位置,使得不同磁力的磁性件被感应组件检测当前磁力后,控制主机输出不同的功率,实现了通过插接和调节雾化器的位置即可完成对主机输出功率的调节,方便了用户的操作,适应了不同用户对不同使用功率的需求,便于市场的推广,实现一物多用的效果,提高用户体验。
2、通过设置感应板,所述感应板设于所述主机靠近所述雾化器一端,所述控制模块内置于所述主机内,所述控制模块分别与所述感应板及所述电源模块电连接,使得所述感应板与磁性件接触以感应当前磁力大小,并可通过控制模块控制电源模块输出对应的功率,使得用户可基于感应板的位置调节磁性件的位置,方便用户置入雾化器并调整雾化器的位置。
3、通过设置多个磁性件,多个磁性件于所述雾化器靠近所述主机一侧的表面周向均匀设置,用户可基于多个不同磁力的磁性件,实现多种不同功率的输出,适应了不同用户对不同使用功率的需要。
4、通过设置第一凹槽和第二凹槽,当用户将第一磁性件对准所述感应板时,所述第一凹槽在对应第一磁性件的位置,用户可基于第一凹槽和第二凹槽的位置判断当前被感应的磁性件,同时也可基于凹槽的深度判断当前对应的功率大小,便于用户区分当前输出功率大小的可调整性,避免用户的频繁操作,方便 了用户使用。
5、所述雾化器还包括两个提示牌,所述两个提示牌分别插接于第一凹槽与第二凹槽内,也即通过设置所述两个提示牌,使得用户可基于提示牌直接查看当前对应的功率大小。同时,当用户修改功率后,也即用户将磁力大小与输出功率大小的对应关系改变后,也可以将提示牌从凹槽内拔出后,重新置入对应的凹槽内,进一步方便了用户修改程序。
6、通过设置所述第三磁性件,使得用户可基于第三磁性件实现雾化器的盲插效果,也便于用户判断当前插接位置的准确性,也进一步提高了雾化器与主机直接的插接稳定性。同时,用户还可基于所述第三磁性件实现对雾化器插入主机时的引导作用,避免用户插接错误,提高用户的使用体验。
7、通过设置所述卡接块和卡接槽,使得所述卡接块置入所述卡接槽内,当用户插接雾化器时,可基于所述卡接块卡入主机中的卡接槽内实现插接固定,同时,所述卡接块可位于所述卡接槽内移动,用户可基于卡接块转动所述雾化器,以调节磁性件的位置。
8、所述卡接块及所述卡接槽表面均为圆弧状表面,方便了用户插接雾化器,同时,也方便用户拔出雾化器,圆弧状表面让用户在拔出雾化器时更省力,提高用户体验。
附图说明
图1是本发明第一实施例所提供的触式检测转换不同功率工作模式装置的结构示意图。
图2是本发明第一实施例所提供的触式检测转换不同功率工作模式装置中雾化芯拔出于壳体内的结构示意图。
图3是本发明第一实施例所提供的触式检测转换不同功率工作模式装置中雾化器的结构示意图。
图4是本发明第一实施例所提供的触式检测转换不同功率工作模式装置中卡接槽的结构示意图。
附图标记说明:
1-触式检测转换不同功率工作模式装置,
11-雾化器,111-第一磁性件,112-第二磁性件,113-第一凹槽,114-第二凹槽,115-插接部,1151-卡接块,116-提示牌,
12-主机,121-感应组件,1211-感应板,1212-控制模块,122-电源模块,123-第三磁性件,124-卡接槽。
具体实施方式
下面结合附图,对本发明的具体实施方式进行详细描述,但应当理解本发明的保护范围并不受具体实施方式的限制。
请结合图1和图2,本发明第一实施例提供一种触式检测转换不同功率工作模式装置1,包括雾化器11及主机12,雾化器11插接于主机12一端,主机12用于给雾化器11提供不同功率的电能。
雾化器11靠近主机12一端设有至少两个磁性件,至少两个磁性件的位置不同,且至少两个磁性件的磁力不同。对应地,主机12靠近雾化器11一端设有感应组件121,感应组件121感应磁性件的磁力大小。主机12内还设有电源模块122,电源模块122与感应组件121电连接,感应组件121基于感应的磁性大小,控制电源模块122的输出功率。
具体地,雾化器11靠近主机12一端设有第一磁性件111和第二磁性件112,第一磁性件111以雾化器11的轴线与第二磁性件112对称设置,且第一磁性件111的磁力大于第二磁性件112的磁力。对应地,感应组件121包括感应板1211和控制模块1212,感应板1211设于主机12靠近雾化器11一端,控制模块1212内置于主机12内,控制模块1212分别与感应板1211及电源模块122电连接。
使用时,用户将雾化器11插接于主机12上,并将第一磁性件111或第二磁性件112对准感应板1211,使得感应板1211感应到对应的磁力数值,控制模块1212基于感应板1211感应的磁力数值,控制电源模块122按照预设的功率输出至雾化器11,使得雾化器11具有当前磁力对应的使用功率。当用户需要改变功率时,拔出雾化器11后,将另一个磁性件(也即将第二磁性件112)对准感应板1211后插接入主机12即可,感应板1211感应到第二磁性件112的磁力较低时,控制模块1212通过对当前第二磁性件112的磁力改变,控制电源模块122按照预设的较低磁力对应的功率输出。
可以理解,第一磁性件111也可以对应设置为低功率输出,第二磁性件112也可以对应设置为较高功率输出,只要可以根据不同的磁力大小,输出不同的功率即可,在此不做限定。
可以理解,在本实施例中,感应板1211可以设置为毫特斯拉计或高斯计,控制模块1212可以设置为基于PCBA或51单片机的控制电路板,其可以通过对预设磁力的大小,控制电源模块122输出不同功率。
可选地,作为一种实施例,磁性件的数量也可以为3个、4个、5个或者多个,当磁性件的数量为大于2个时,多个磁性件于雾化器11靠近主机12一侧的表面周向均匀设置,用户可基于多个不同磁力的磁性件,实现多种不同功率 的输出,适应了不同用户对不同使用功率的需要。而在本实施例中,仅以磁性件的数量为2个进行说明,但不作为对本方案的限制。
可以理解,当磁性件的数量为大于2个时,多个磁性件之间的设置位置互不影响,也即当一个磁性件被感应板1211感应时,其他磁性件不会影响当前被感应的磁性件的磁力大小。
可选地,作为又一种实施例,雾化器11插接于主机12一端时,雾化器11可相对于主机12转动,使得用户需要改变输出功率时,可直接旋转雾化器11或主机12即可,无需拔出雾化器11,方便了用户操作。
请结合图3和图4,雾化器11表面对应第一磁性件111的位置设有第一凹槽113,对应第二磁性件112的位置设有第二凹槽114,第一凹槽113与第二凹槽114的深度不同,当用户将第一磁性件111对准感应板1211时,第一凹槽113在对应第一磁性件111的位置,用户可基于第一凹槽113和第二凹槽114的位置判断当前被感应的磁性件,同时也可基于凹槽的深度判断当前对应的功率大小,便于用户区分当前输出功率大小的可调整性,避免用户的频繁操作,方便了用户使用。
可选地,作为一种实施例,雾化器11还包括两个提示牌116,两个提示牌116分别插接于第一凹槽113与第二凹槽114内,也即通过设置两个提示牌116,使得用户可基于提示牌116直接查看当前对应的功率大小。同时,当用户修改功率后,也即用户将磁力大小与输出功率大小的对应关系改变后,也可以将提示牌116从凹槽内拔出后,重新置入对应的凹槽内,进一步方便了用户修改程序。
请继续结合图1和图2,主机12靠近雾化器11一端还设有第三磁性件123, 第三磁性件123以主机12的轴线与感应板1211相对设置,当雾化器11插接于主机12上时,第一磁性件111或第二磁性件112与第三磁性件123磁吸连接。
可以理解,第三磁性件123与感应板1211相对设置,使得第三磁性件123不影响被感应磁性件的磁力大小,而当用户插接入雾化器11时,例如,第一磁性件111对准感应板1211,而此时第二磁性件112则对准第三磁性件123,第二磁性件112与第三磁性件123磁吸连接,也即当用户将第一磁性件111作为当前被感应的磁性件时,第二磁性件112被第三磁性件123磁吸连接,用户可基于磁吸作用实现对雾化器11的盲插效果,若雾化器11没有磁力吸引,则表示当前感应板1211没有感应到磁力,也即磁性件没有对准感应板1211,插接失败。
通过设置第三磁性件123,使得用户可基于第三磁性件123实现雾化器11的盲插效果,也便于用户判断当前插接位置的准确性,也进一步提高了雾化器11与主机12直接的插接稳定性。同时,用户还可基于第三磁性件123实现对雾化器11插入主机12时的引导作用,避免用户插接错误,提高用户的使用体验。
请继续结合图3和图4,雾化器11靠近主机12一端延伸有环状的插接部115,主机12靠近雾化器11一端为凹陷结构,插接部115插接置入主机12内。
插接部115表面设有向外凸起的卡接块1151,主机12对应卡接块1151的位置设有卡接槽124,卡接块1151置入卡接槽124内,当用户插接雾化器11时,可基于卡接块1151卡入主机12中的卡接槽124内实现插接固定,同时,卡接块1151可位于卡接槽124内移动,用户可基于卡接块1151转动雾化器11,以调节磁性件的位置。
可选地,作为一种实施例,卡接块1151及卡接槽124表面均为圆弧状表面,方便了用户插接雾化器11,同时,也方便用户拔出雾化器11,圆弧状表面让用户在拔出雾化器11时更省力,提高用户体验。
本发明第二实施例提供一种气溶胶产生装置,其包括如上述第一实施例中提供的触式检测转换不同功率工作模式装置1。
与现有技术相比,本发明提供的触式检测转换不同功率工作模式装置具有以下优点:
通过设置至少两个磁性件,所述至少两个磁性件的位置不同,且所述至少两个磁性件的磁力不同,所述主机靠近所述雾化器一端设置感应组件,所述感应组件感应所述磁性件的磁力大小,通过调整雾化器插接入主机的位置,使得不同磁力的磁性件被感应组件检测当前磁力后,控制主机输出不同的功率,实现了通过插接和调节雾化器的位置即可完成对主机输出功率的调节,方便了用户的操作,适应了不同用户对不同使用功率的需求,便于市场的推广,实现一物多用的效果,提高用户体验。
前述对本发明的具体示例性实施方案的描述是为了说明和例证的目的。这些描述并非想将本发明限定为所公开的精确形式,并且很显然,根据上述教导,可以进行很多改变和变化。对示例性实施例进行选择和描述的目的在于解释本发明的特定原理及其实际应用,从而使得本领域的技术人员能够实现并利用本发明的各种不同的示例性实施方案以及各种不同的选择和改变。本发明的范围意在由权利要求书及其等同形式所限定。

Claims (18)

  1. 一种触式检测转换不同功率工作模式装置,包括雾化器及主机,所述雾化器插接于所述主机一端;
    所述雾化器靠近所述主机一端设有至少两个磁性件,所述至少两个磁性件的位置不同,且所述至少两个磁性件的磁力不同;
    所述主机靠近所述雾化器一端设有感应组件,所述感应组件感应所述磁性件的磁力大小;
    所述主机内还设有电源模块,所述电源模块与所述感应组件电连接,所述感应组件基于感应的磁性大小,控制所述电源模块的输出功率。
  2. 如权利要求1中所述触式检测转换不同功率工作模式装置,其中,所述感应组件包括感应板和控制模块,所述感应板设于所述主机靠近所述雾化器一端,所述控制模块内置于所述主机内,所述控制模块分别与所述感应板及所述电源模块电连接。
  3. 如权利要求1中所述触式检测转换不同功率工作模式装置,其中,所述雾化器插接于所述主机一端时,所述雾化器可相对于所述主机转动;
    所述至少两个磁性件于所述雾化器靠近所述主机一侧的表面周向均匀设置。
  4. 如权利要求1中所述触式检测转换不同功率工作模式装置,其中,所述至少两个磁性件包括第一磁性件和第二磁性件,所述第一磁性件以所述雾化器的轴线与所述第二磁性件对称设置;
    所述第一磁性件的磁力大于所述第二磁性件的磁力。
  5. 如权利要求4中所述触式检测转换不同功率工作模式装置,其中,所述 雾化器表面对应所述第一磁性件的位置设有第一凹槽,对应所述第二磁性件的位置设有第二凹槽,所述第一凹槽与所述第二凹槽的深度不同。
  6. 如权利要求5中所述触式检测转换不同功率工作模式装置,其中,所述雾化器还包括两个提示牌,所述两个提示牌分别插接于第一凹槽与第二凹槽内。
  7. 如权利要求2中所述触式检测转换不同功率工作模式装置,其中,所述主机靠近所述雾化器一端还设有第三磁性件,所述第三磁性件以所述主机的轴线与所述感应板相对设置,当所述雾化器插接于所述主机上时,至少一个磁性件与所述第三磁性件磁吸连接。
  8. 如权利要求1中所述触式检测转换不同功率工作模式装置,其中,所述雾化器靠近所述主机一端延伸有环状的插接部,所述主机靠近所述雾化器一端为凹陷结构,所述插接部插接置入所述主机内;
    所述插接部表面设有向外凸起的卡接块,所述主机对应所述卡接块的位置设有卡接槽,所述卡接块置入所述卡接槽内。
  9. 如权利要求8中所述触式检测转换不同功率工作模式装置,其中,所述卡接块及所述卡接槽表面均为圆弧状表面。
  10. 一种气溶胶产生装置,包括触式检测转换不同功率工作模式装置;
    所述触式检测转换不同功率工作模式装置包括雾化器及主机,所述雾化器插接于所述主机一端;
    所述雾化器靠近所述主机一端设有至少两个磁性件,所述至少两个磁性件的位置不同,且所述至少两个磁性件的磁力不同;
    所述主机靠近所述雾化器一端设有感应组件,所述感应组件感应所述磁性件的磁力大小;
    所述主机内还设有电源模块,所述电源模块与所述感应组件电连接,所述感应组件基于感应的磁性大小,控制所述电源模块的输出功率。
  11. 如权利要求10中所述气溶胶产生装置,其中,所述感应组件包括感应板和控制模块,所述感应板设于所述主机靠近所述雾化器一端,所述控制模块内置于所述主机内,所述控制模块分别与所述感应板及所述电源模块电连接。
  12. 如权利要求10中所述气溶胶产生装置,其中,所述雾化器插接于所述主机一端时,所述雾化器可相对于所述主机转动;
    所述至少两个磁性件于所述雾化器靠近所述主机一侧的表面周向均匀设置。
  13. 如权利要求10中所述气溶胶产生装置,其中,所述至少两个磁性件包括第一磁性件和第二磁性件,所述第一磁性件以所述雾化器的轴线与所述第二磁性件对称设置;
    所述第一磁性件的磁力大于所述第二磁性件的磁力。
  14. 如权利要求13中所述气溶胶产生装置,其中,所述雾化器表面对应所述第一磁性件的位置设有第一凹槽,对应所述第二磁性件的位置设有第二凹槽,所述第一凹槽与所述第二凹槽的深度不同。
  15. 如权利要求14中所述气溶胶产生装置,其中,所述雾化器还包括两个提示牌,所述两个提示牌分别插接于第一凹槽与第二凹槽内。
  16. 如权利要求11中所述气溶胶产生装置,其中,所述主机靠近所述雾化器一端还设有第三磁性件,所述第三磁性件以所述主机的轴线与所述感应板相对设置,当所述雾化器插接于所述主机上时,至少一个磁性件与所述第三磁性件磁吸连接。
  17. 如权利要求10中所述气溶胶产生装置,其中,所述雾化器靠近所述主机一端延伸有环状的插接部,所述主机靠近所述雾化器一端为凹陷结构,所述插接部插接置入所述主机内;
    所述插接部表面设有向外凸起的卡接块,所述主机对应所述卡接块的位置设有卡接槽,所述卡接块置入所述卡接槽内。
  18. 如权利要求17中所述气溶胶产生装置,其中,所述卡接块及所述卡接槽表面均为圆弧状表面。
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