An electronic atomization device with a microphone protection function
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-19
- Publication Date
- 2026-08-11
AI Technical Summary
[0003]相关技术中,市面上很多的电子雾化装置,咪头的气道与雾化气道采用的方式是公用一个气道,而在长时间使用时,雾化液等酸性物质可能会通过该气道进入至咪头中,导致咪头被雾化液等酸性物质腐蚀,从而导致咪头损坏,进而使电子雾化装置无法进行工作
[0017]在电子雾化装置使用时,滑动处于调节腔底部的调节板,以使连通槽横向移动,使得咪头气道一与咪头气道二均与连通槽连通,即咪头气道一和咪头气道二通过连通槽实现连通,所以在使用者使用时,咪头可以检测到气压变化,以控制雾化芯启动,而在不使用时,滑动调节板,以使调节板将咪头气道一或咪头气道二进行封堵,此时咪头气道一与咪头气道二不连通,使得咪头与主气道不连通,通过调节板的滑动来控制咪头与主气道的连接与关闭,尽量降低长期储存过程中咪头被雾化液等酸性物质挥发而腐蚀的风险,提升产品的使用寿命。
Smart Images

Figure CN224611914U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of electronic atomization devices, specifically an electronic atomization device with microphone protection function. Background Technology
[0002] Electronic atomizing devices are products that generate aerosols by heating the atomizing liquid with the heating element of the atomizer. Due to their ease of use and the fact that the flavor can be changed by adjusting the atomizing liquid, they have been widely and rapidly promoted in domestic and foreign markets in recent years.
[0003] In related technologies, many electronic atomizing devices on the market use a shared airway for the microphone and the atomizing airway. During prolonged use, acidic substances such as atomizing liquid may enter the microphone through this airway, causing corrosion of the microphone and resulting in microphone damage, which in turn renders the electronic atomizing device inoperable.
[0004] Therefore, existing technologies need to be improved. Utility Model Content
[0005] To address the shortcomings of existing technologies, this application proposes an electronic atomizing device with microphone protection function.
[0006] The technical solution adopted by this utility model to solve its technical problem is as follows:
[0007] An electronic atomizing device with microphone protection function includes a housing. The housing contains a working chamber and an adjustment chamber arranged from top to bottom. An air inlet is located at the bottom of the adjustment chamber. A control block and an adjustment plate are disposed within the adjustment chamber. A microphone is mounted on the control block. The control block has a main airway communicating with the working chamber, a microphone airway one, and a microphone airway two communicating with the microphone. The adjustment plate slides against the lower side of the control block to block the microphone airway two. The adjustment plate has a connecting groove and a connecting hole. The connecting groove is distributed along the sliding direction of the adjustment plate, and the connecting hole connects the main airway to the air inlet. When the adjustment plate slides to a predetermined position, microphone airway one and microphone airway two are connected through the connecting groove, and the connecting hole is connected to the main airway.
[0008] Preferably, the control block is provided with an insertion block, which is used to extend into the working chamber. The main airway and the microphone airway pass through the control block and the insertion block to communicate with the working chamber.
[0009] Preferably, the main air passage includes two main air passages with different aperture sizes, and the two main air passages are spaced apart along the sliding direction of the adjusting plate.
[0010] Preferably, there are two microphone air passages, which are symmetrically distributed on both sides of the microphone air passage, and the distance between the two microphone air passages is greater than the length of the connecting groove. There are two connecting holes, which are symmetrically arranged and correspond to the two main air passages respectively.
[0011] Preferably, the control block is provided with a pressure relief groove, which is used to balance the air pressure of the microphone.
[0012] Preferably, the adjustment plate has a lever on the side away from the control block, the lever slides in the air intake, and the lever is for the user to turn.
[0013] Preferably, the control block has an extension groove on one side near the adjustment plate, the microphone air passage one communicates with the bottom of the extension groove, the length direction of the extension groove is along the sliding direction of the adjustment plate, and the extension groove is disposed between the two microphone air passages two, and the extension groove is configured to communicate with the communication groove.
[0014] Preferably, a circuit board is provided in the adjustment cavity, the circuit board is connected to the microphone and the atomizing core in the working cavity, the circuit board is provided with a dial button, the dial button is used to adjust the output power of the circuit board, and the adjustment plate is provided with a slot for inserting the dial button to drive the dial button to move.
[0015] Preferably, the control block is provided with a placement groove for placing the microphone. A lifting block is provided at the bottom of the placement groove, and the upper side of the lifting block is used for placing the microphone. A liquid guiding slope is provided between the microphone air passage two and the placement groove, and the liquid guiding slope is connected to the microphone air passage two and the bottom of the placement groove.
[0016] In summary, this application has the following beneficial technical effects:
[0017] When using the electronic atomizing device, slide the adjusting plate at the bottom of the adjusting chamber to move the connecting groove laterally, so that both microphone air passage one and microphone air passage two are connected to the connecting groove. That is, microphone air passage one and microphone air passage two are connected through the connecting groove. So when the user is using it, the microphone can detect the air pressure change and control the atomizing coil to start. When not in use, slide the adjusting plate to block microphone air passage one or microphone air passage two. At this time, microphone air passage one and microphone air passage two are not connected, so the microphone is not connected to the main air passage. The connection and closing of the microphone and the main air passage are controlled by sliding the adjusting plate, which minimizes the risk of the microphone being corroded by the volatilization of acidic substances such as atomizing liquid during long-term storage and extends the service life of the product. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 This is an overall schematic diagram of the electronic atomizing device in this application;
[0020] Figure 2 This is an exploded view of the electronic atomizing device in this application;
[0021] Figure 3 This is a schematic diagram of the control block in this application;
[0022] Figure 4 This is another perspective view of the control block in this application;
[0023] Figure 5 This is a schematic diagram of the adjustment plate in this application.
[0024] Explanation of reference numerals in the attached drawings: 1. Housing; 11. Adjustment chamber; 12. Air inlet; 13. Control block; 131. Main air passage; 132. Microphone air passage one; 133. Microphone air passage two; 134. Insertion block; 135. Placement slot; 136. Lifting block; 137. Liquid guiding slope; 138. Pressure relief groove; 139. Extension groove; 14. Adjustment plate; 141. Connecting groove; 142. Connecting hole; 143. Toggle block; 144. Slot; 2. Circuit board; 21. Toggle key. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present utility model.
[0026] This application discloses an electronic atomizing device with microphone protection function.
[0027] Reference Figures 1 to 5An electronic atomizing device with microphone protection function includes a housing 1. Specifically, the housing 1 includes, from top to bottom, a working chamber (not shown in the figure) and an adjustment chamber 11. The working chamber is equipped with components such as an atomizing core and a power supply. An air inlet 12 is provided at the bottom of the adjustment chamber 11, through which external air enters the housing 1. The upper side of the adjustment chamber 11 is connected to the working chamber. A control block 13 and an adjustment plate 14 are provided in the adjustment chamber 11, arranged vertically. The control block 13 is located at the connection between the adjustment chamber 11 and the working chamber, and covers the connection. A microphone (not shown in the figure) is provided on the control block 13. The microphone is used to control the start and stop of the atomizing coil in the working chamber. The control block 13 is equipped with a main airway 131, a microphone airway one 132, and a microphone airway two 133. The main airway 131, microphone airway one 132, and microphone airway two 133 all vertically penetrate the control block 13. The lower end of the main airway 131 faces the air inlet 12, and the upper end communicates with the working chamber. The upper end of microphone airway one 132 communicates with the working chamber, and the upper end of microphone airway two 133 communicates with the microphone. An adjusting plate 14 is slidably positioned at the bottom of the adjusting chamber 11, and the lower side of the adjusting plate 14 covers the air inlet 12. That is, during the sliding process of the adjusting plate 14, the adjusting plate 14 always covers the air inlet 12, and the upper side of the adjusting plate 14... The control block 13 slides against the control block 13. A connecting groove 141 and a connecting hole 142 are provided on the side of the adjusting plate 14 near the control block 13. The connecting groove 141 is strip-shaped, and its length is distributed along the sliding direction of the adjusting plate 14. The connecting hole 142 is used to communicate with the air inlet 12 and the main air passage 131, allowing external air to enter the main air passage 131 from the air inlet 12. When the adjusting plate 14 slides to a predetermined position, the connecting groove 141 moves to the bottom of microphone air passage one 132 and microphone air passage two 133, so that microphone air passage one 132 and microphone air passage two 133 are connected through the connecting groove 141. When the adjusting plate 14 slides to the predetermined position, the connection... The slot 141 connects the bottom of microphone air passage 132 and microphone air passage 2 133. At the same time, the connecting hole 142 on the adjusting plate 14 connects the air inlet 12 and the main air passage 131, so that external air enters the main air passage 131 from the air inlet 12. The microphone senses the change in air pressure in the working chamber through the connection between microphone air passage 132 and microphone air passage 2 133, and then activates the atomizing core to make the electronic atomizing device work. The connection between microphone air passage 132 and microphone air passage 2 133 is controlled by sliding the adjusting plate 14. By blocking the flow of the adjusting plate 14, the risk of the microphone being corroded by the volatilization of acidic substances such as atomizing liquid during long-term storage is minimized, thus improving the service life of the product.
[0028] In some embodiments, in order to adjust the air intake of the electronic atomizing device, two main air channels 131 are provided. The two main air channels 131 have different aperture sizes and are spaced apart along the sliding direction of the adjusting plate 14. According to the required air intake, the adjusting plate 14 is slid so that the connecting hole 142 is aligned with the main air channels 131 of different aperture sizes, so as to realize the purpose of adjusting the air intake of the atomizing core by the user.
[0029] Specifically, there are two microphone air passages 133, which are symmetrically distributed on both sides of microphone air passage 132. The distance between the two microphone air passages 133 is greater than the length of the connecting groove 141, so that the connecting groove 141 will only connect one microphone air passage 133 to microphone air passage 132. At the same time, there are also two connecting holes 142, which correspond to the two main air passages 131 respectively. Therefore, the connection between different main air passages 131 can be achieved by adjusting the left and right sides of the adjusting plate 14.
[0030] In some embodiments, an insertion block 134 is provided on the side of the control block 13 away from the key 21. The insertion block 134 is generally triangular prism-shaped. The two main air passages 131 and the microphone air passage 132 pass through the insertion block 134 and communicate with the working chamber, and are arranged in a triangular pattern. The insertion block 134 is used to insert into the working chamber to prevent the control block 13 from being misaligned when the adjustment plate 14 slides.
[0031] In some embodiments, the control block 13 is provided with a placement groove 135, which is used to protect the microphone. The microphone air passage 133 is connected to the side wall of the placement groove 135 so that the microphone can sense the change in air pressure inside the housing 1 and start the atomizing core. A lifting block 136 is provided at the bottom of the placement groove 135. The upper side of the lifting block 136 is used for placing and installing the microphone so that there is a predetermined distance between the microphone and the bottom of the placement groove 135. At the same time, a liquid guiding slope 137 is provided on the side of the microphone air passage 133 and the placement groove 135. The liquid guiding slope 137 is connected to the bottom of the placement groove 135 so that the condensed atomized liquid flows along the liquid guiding slope 137 to the bottom of the placement groove 135, avoiding direct contact with the microphone and preventing damage to the microphone.
[0032] In addition, a pressure relief groove 138 is provided on the control block 13. The pressure relief groove 138 is connected to the placement groove 135. The pressure at the microphone is released through the pressure relief groove 138 to prevent the microphone from being activated by false pressure.
[0033] In some embodiments, for user convenience, a lever 143 is provided on the side of the adjustment plate 14 away from the control block 13. The lever 143 extends into the air inlet 12 of the adjustment chamber 11 and moves in the air inlet 12 as the adjustment plate 14 slides. Therefore, when the user needs to use the electronic atomizing device, the adjustment plate 14 is slid by the lever 143 to make the microphone airway one 132 and the microphone airway two 133 connected, making it convenient for the user to move the dial 21.
[0034] In some embodiments, an extension groove 139 is provided on one side of the control block 13 near the adjustment plate 14. The extension groove 139 is waist-shaped and is located between two microphone air passages 133. The length direction of the extension groove 139 is along the sliding direction of the adjustment plate 14. The bottom of the extension groove 139 is connected to the microphone air passage 132. During the left and right sliding of the adjustment plate 14, as long as the extension groove 139 is connected to the bottom of one of the microphone air passages 133, the microphone can work. This design is equivalent to enlarging the cross-sectional area of the microphone air passage 132, which facilitates the connection between the microphone air passage 132 and the microphone air passage 133. Therefore, it is not necessary to slide the adjustment plate 14 to a specific position to achieve normal operation of the microphone, which is convenient for users.
[0035] In some embodiments, a circuit board 2 is provided in the adjustment chamber 11. The circuit board 2 is connected to the microphone and the atomizing core in the working chamber. A dial 21 is provided on the circuit board 2, and a slot 144 is provided on the adjustment plate 14. The slot 144 is in the form of a through slot and is located on one side of the adjustment plate 14. The slot 144 is used for inserting the dial 21 on the circuit board 2. By moving the dial 21, the output power of the circuit board 2 can be changed. Therefore, when the adjustment plate 14 slides left and right, it can drive the dial 21 to move. That is, when the air intake of the electronic atomizing device decreases, the output power also decreases synchronously, and when the air intake increases, the output power increases synchronously. This can avoid the waste caused by too much power and also avoid the phenomenon of insufficient power resulting in a small amount of mist.
[0036] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. An electronic atomization device with a microphone protection function, characterized in that: The device includes a housing, the interior of which comprises a working chamber and an adjustment chamber arranged from top to bottom. An air inlet is located at the bottom of the adjustment chamber. A control block and an adjustment plate are disposed within the adjustment chamber. A microphone is mounted on the control block. The control block has a main air passage communicating with the working chamber, a microphone air passage one, and a microphone air passage two communicating with the microphone. The adjustment plate slides against the lower side of the control block to block the microphone air passage two. The adjustment plate has a connecting groove and a connecting hole. The connecting groove is distributed along the sliding direction of the adjustment plate. The connecting hole connects the main air passage to the air inlet. When the adjustment plate slides to a predetermined position, microphone air passage one and microphone air passage two are connected through the connecting groove, and the connecting hole connects to the main air passage.
2. The electronic atomization device with the microphone protection function according to claim 1, characterized in that: The control block is provided with an insertion block, which is used to extend into the working chamber. The main airway and the microphone airway pass through the control block and the insertion block to communicate with the working chamber.
3. The electronic atomizing device with the microphone protection function according to claim 1, characterized in that: The main air passage includes two passages with different aperture sizes, and the two main air passages are spaced apart along the sliding direction of the adjusting plate.
4. The electronic atomizing device with the microphone protection function according to claim 3, characterized in that: Two microphone air passages are provided, which are symmetrically distributed on both sides of the microphone air passage. The distance between the two microphone air passages is greater than the length of the connecting groove. Two connecting holes are symmetrically provided, which are respectively provided corresponding to the two main air passages.
5. The electronic atomizing device with the microphone protection function according to claim 1, characterized in that: The control block is equipped with a pressure relief groove, which is used to balance the air pressure of the microphone.
6. An electronic atomizing device with microphone protection function according to claim 1, characterized in that: The adjustment plate has a lever on one side away from the control block. The lever slides in the air intake and is used by the user to turn it.
7. An electronic atomizing device with microphone protection function according to claim 4, characterized in that: An extension groove is provided on one side of the control block near the adjustment plate. The first microphone air passage is connected to the bottom of the extension groove. The length direction of the extension groove is along the sliding direction of the adjustment plate, and the extension groove is located between the two second microphone air passages. The extension groove is used to connect with the connecting groove.
8. An electronic atomizing device with microphone protection function according to claim 4, characterized in that: A circuit board is provided in the adjustment cavity. The circuit board is connected to the microphone and the atomizing core in the working cavity. A dial is provided on the circuit board. The dial is used to adjust the output power of the circuit board. A slot is provided on the adjustment plate. The slot is used for inserting the dial to drive the dial to move.
9. An electronic atomizing device with microphone protection function according to claim 1, characterized in that: The control block is provided with a placement slot for placing the microphone. A lifting block is provided at the bottom of the placement slot, and the upper side of the lifting block is used for placing the microphone. A liquid guiding slope is provided between the microphone air passage two and the placement slot, and the liquid guiding slope is connected to the microphone air passage two and the bottom of the placement slot.