Key-triggered electronic atomizer

By combining the light guide plate with the light-transmitting ring and the arc-shaped light-transmitting sheet, a uniform light-transmitting area is formed. By utilizing air pressure changes and cleaning components, dust and moisture intrusion are prevented. This solves the problems of poor visual effect of button indicator lights and insufficient sealing in existing electronic atomizers, improving user experience and device reliability.

CN121867480APending Publication Date: 2026-04-17SHENZHEN FUTURE TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHENZHEN FUTURE TECH CO LTD
Filing Date
2026-01-27
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

The existing electronic atomizers have simple visual effects and low visibility of the button indicator lights. They also have poor light uniformity and insufficient sealing of the button structure, which makes them easy for dust and moisture to enter, affecting the stability and service life of the device.

Method used

The light guide plate is combined with a large-area light-transmitting ring and an arc-shaped light-transmitting sheet to form a uniform light-transmitting area. The sealed chamber design uses air pressure changes to prevent dust and moisture from entering, while the cleaning components are linked to perform automatic cleaning, enhancing the visual effect and sealing performance.

Benefits of technology

It significantly enhances the visual appeal and recognizability of the button area, creating a visual focal point, strengthening brand identity, and effectively preventing dust and moisture from entering, ensuring the reliability and cleanliness of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of electronic atomizers, and discloses a key-triggered electronic atomizer, comprising: a circuit board; a key frame; a light guide plate; a light-transmitting ring; a support block; the circuit board, the light-transmitting ring and the arc-shaped light-transmitting piece block the two ends of the mounting hole and form a sealed cavity, a plurality of air inlet holes are formed in the circuit board, inner blocking plates are elastically and rotationally installed at the ends, close to the mounting hole, of the air inlet holes, an air outlet groove is formed in the light-transmitting ring, and the air outlet groove communicates with the sealed cavity. A plurality of air outlet holes are formed in the outer side and the side face of the light-transmitting ring, and outer blocking plates are elastically and rotationally mounted at the outward ends of the air outlet holes. The light guide plate is combined with the large-area light-transmitting ring and the arc-shaped light-transmitting piece, a point light source is converted into a uniform and large-area light-transmitting display area, the visual expressive force, the identification degree and the attractiveness of a key area are remarkably improved, a visual focus can be effectively formed, and the brand identification characteristic of a product is enhanced.
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Description

Technical Field

[0001] This invention relates to the field of electronic atomizer technology, and more specifically to a button-triggered electronic atomizer. Background Technology

[0002] Electronic atomizers, as a common type of electronic product, typically have function buttons for controlling power on / off, adjusting output power, or switching operating modes. To enhance the intuitiveness and interactive experience of user operation, existing technologies generally include indicator lights in the button area to display information such as device status, operating mode, or remaining battery power.

[0003] Currently, most button indicator lights use an independent point light source design, such as a single LED bead placed below or on the side of the button. This design has the following significant drawbacks:

[0004] First, point light sources have a limited luminous area, typically forming only localized light spots on the button surface or relying on narrow light-transmitting structures on the button's sidewalls for light guidance. This results in a monotonous visual effect and low recognizability. Especially in complex lighting environments, users find it difficult to quickly and clearly identify the indicator light status, impacting the user experience. Second, these point light sources have poor light uniformity, easily exhibiting uneven brightness or localized overbrightness, affecting not only aesthetics but also potentially causing visual discomfort. Furthermore, existing indicator solutions struggle to create visually impactful lighting effects, failing to effectively attract user attention or create a unique visual focus, thus weakening the product's brand identity and differentiated competitiveness.

[0005] On the other hand, the button structure of existing electronic atomizers also has shortcomings in terms of sealing. Commonly, the assembly between the button and the housing usually maintains a certain gap to meet the button travel requirements, but these gaps often lack effective sealing. During long-term use, external dust and moisture can easily seep into the device through these gaps, potentially adhering to the circuit board or other electronic components, leading to poor circuit contact, short circuits, or component corrosion, thereby affecting the stable operation and lifespan of the device. Summary of the Invention

[0006] The purpose of this invention is to address the shortcomings of existing technologies by providing a button-triggered electronic atomizer, thereby enhancing the visual appeal and brand recognition of the button area, while also improving structural sealing and preventing dust and vapor intrusion.

[0007] The objective of this invention can be achieved through the following technical solutions:

[0008] A button-triggered electronic atomizer includes a housing, and the electronic atomizer further includes:

[0009] A circuit board is fixedly installed inside a housing. The housing has mounting holes, and the circuit board is located at the mounting holes.

[0010] A button holder is mounted on a circuit board and is located inside a mounting hole. The button holder is provided with silicone buttons.

[0011] A light guide plate is fixed on a circuit board. A button holder is located between the circuit board and the light guide plate. A silicone button passes through the light guide plate. The outer extension of the light guide plate is inclined outward toward the mounting hole. A light-emitting element is mounted on the circuit board.

[0012] A light-transmitting ring has a recessed groove outside the mounting hole, and the light-transmitting ring is installed in the recessed groove. An arc-shaped light-transmitting sheet is provided on the inner side of the light-transmitting ring.

[0013] A support block is provided with a pressing rod, which is movably installed in a mounting hole, and the support block abuts against the inner side of the arc-shaped light-transmitting sheet;

[0014] The circuit board, the light-transmitting ring, and the arc-shaped light-transmitting sheet seal both ends of the mounting hole to form a sealed chamber. The circuit board has several air inlets, and an inner blocking plate is elastically rotatably installed at the end of the air inlet near the mounting hole. An air outlet groove is opened inside the light-transmitting ring, and the air outlet groove communicates with the sealed chamber. Several air outlets are opened on the outer side and side of the light-transmitting ring, and an outer blocking plate is elastically rotatably installed at the outward end of the air outlet.

[0015] As a further aspect of the present invention: both the light-transmitting ring and the arc-shaped light-transmitting sheet are made of transparent material.

[0016] As a further aspect of the present invention: a cleaning component is installed outside the light-transmitting ring, and a driving component is installed inside the mounting hole. The driving component controls the operation of the cleaning component. The cleaning component includes a movable ring, which is rotatably installed around the light-transmitting ring. A plurality of cleaning plates are provided on the movable ring, and the cleaning plates abut against the outer side and side surface of the light-transmitting ring and the surface of the arc-shaped light-transmitting sheet.

[0017] As a further aspect of the present invention: the movable ring is provided with a ramp, and the cleaning plate is provided with a wedge-shaped portion on its side.

[0018] As a further aspect of the present invention: a conical ring is provided around the light-transmitting ring, the movable ring is located outside the conical ring, a spring is provided on the side of the cleaning plate, and a plurality of baffles are provided on the outer shell. The plurality of baffles are arranged in a ring array and distributed outside the light-transmitting ring. When the spring moves to the baffle, it will be squeezed and deformed by the baffle.

[0019] As a further embodiment of the present invention: the driving assembly includes a fixed ring and a rotating cylinder. The fixed ring is provided with several support rods on its periphery, and the other end of each support rod is fixed to the inner wall of the mounting hole. The fixed ring is provided with several guide plates on its inner side. The pressing rod is provided with several vertical grooves on its periphery, and the guide plates are located in the vertical grooves. The rotating cylinder is rotatably mounted on the fixed ring, and the pressing rod passes through the rotating cylinder. Several fixed plates are fixed on the periphery of the rotating cylinder. The other end of each fixed plate is provided with an elastic strip, and the other end of the elastic strip is provided with a magnetic block. The mounting hole is provided with an annular groove, and the movable ring is provided with a magnetic attracting element. The magnetic block and the magnetic attracting element are magnetically attracted to each other.

[0020] As a further aspect of the present invention: a spiral groove is provided on the inner side of the rotating cylinder, and a guide block is provided on the periphery of the pressing rod. The guide block is located in the spiral groove and moves along the spiral groove.

[0021] As a further aspect of the present invention: the support block is provided with a plurality of support strips on its periphery, the support strips are made of elastic material, the support strips are arc-shaped and abut against the inner side of the arc-shaped light-transmitting sheet.

[0022] The beneficial effects of this invention are:

[0023] (1) By combining the light guide plate with a large-area light-transmitting ring and an arc-shaped light-transmitting sheet, the present invention transforms the point light source into a uniform, large-area light-transmitting display area, which significantly improves the visual performance, recognizability and aesthetics of the button area, effectively forming a visual focus and enhancing the brand recognition characteristics of the product.

[0024] (2) The present invention forms a sealed chamber by enclosing the circuit board, the light-transmitting ring and the arc-shaped light-transmitting sheet together, and combines the air inlet, the air outlet, the inner blocking plate and the outer blocking plate. During the pressing and rebound of the button, the air pressure change in the chamber actively blows air outward and draws in internal hot air, forming a dynamic airflow barrier and internal dehumidification circulation. This fundamentally prevents dust and moisture from entering the device from the button gap, greatly improving the sealing protection performance and the reliability of the device.

[0025] (3) The present invention links the button pressing action with the cleaning component. The user's pressing operation is converted into the rotational movement of the cleaning component through the driving component, so that the cleaning plate can automatically scrape and clean the surface of the light-transmitting ring and the arc-shaped light-transmitting sheet, preventing dust and moisture from entering the device from the button gaps, while keeping the light-transmitting area clean and ensuring that the indicator light display effect is always clear.

[0026] (4) During the cleaning process, the rotating cleaning plate driven by the movable ring will intermittently block the transmitted light, naturally forming a dynamic flashing light effect, which further enriches the visual feedback and enhances the user experience. At the same time, the shaking effect generated by the support bar and the spring during the movement can effectively shake off the attached dust and improve the self-cleaning effect. Attached Figure Description

[0027] The invention will now be further described with reference to the accompanying drawings.

[0028] Figure 1 This is a schematic diagram of the exploded structure of the present invention;

[0029] Figure 2 This is a schematic diagram of the internal structure of the outer shell in this invention;

[0030] Figure 3 This is a schematic diagram of the cross-sectional structure of the present invention;

[0031] Figure 4 yes Figure 3 Enlarged structural diagram at point A in the middle;

[0032] Figure 5 This is a partial cross-sectional structural schematic diagram of the present invention;

[0033] Figure 6 yes Figure 5 Enlarged structural diagram at point B;

[0034] Figure 7 This is a schematic diagram of the light-transmitting ring and support block structure in this invention;

[0035] Figure 8 This is a schematic diagram of the driving component structure in this invention;

[0036] Figure 9 yes Figure 8 Enlarged structural diagram at point C.

[0037] In the picture:

[0038] 1. Outer shell; 2. Mounting hole; 21. Slot; 22. Ring groove; 3. Circuit board; 31. Air inlet; 32. Inner blocking plate; 4. Button bracket; 41. Silicone button; 5. Light guide plate; 6. Light-transmitting ring; 61. Arc-shaped light-transmitting sheet; 62. Conical ring; 63. Air outlet slot; 64. Air outlet; 65. Outer blocking plate; 7. Support block; 71. Pressing rod; 711. Vertical groove; 712. Guide block; 72. Support strip; 8. Cleaning assembly; 81. Moving ring; 811. Ramp; 82. Cleaning plate; 821. Wedge-shaped part; 83. Spring; 84. Magnetic suction component; 9. Drive assembly; 91. Fixing ring; 911. Guide plate; 912. Support rod; 92. Rotary drum; 921. Spiral groove; 922. Fixing plate; 923. Elastic strip; 924. Magnetic block; 10. Stop post. Detailed Implementation

[0039] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0040] like Figures 1-6 As shown, a button-triggered electronic atomizer includes a housing 1, and the electronic atomizer further includes:

[0041] Circuit board 3 is fixedly installed inside the housing 1. The housing 1 has a mounting hole 2, and the circuit board 3 is located at the mounting hole 2.

[0042] Button holder 4 is mounted on circuit board 3. Button holder 4 is located in mounting hole 2. Silicone button 41 is provided on button holder 4.

[0043] Light guide plate 5 is fixed on circuit board 3. Button bracket 4 is located between circuit board 3 and light guide plate 5. Silicone button 41 passes through light guide plate 5. The outer extension of light guide plate 5 is inclined outward toward mounting hole 2. Light emitting element is installed on circuit board 3.

[0044] The light-transmitting ring 6 has a recessed groove 21 outside the mounting hole 2. The light-transmitting ring 6 is installed in the recessed groove 21. An arc-shaped light-transmitting sheet 61 is provided on the inner side of the light-transmitting ring 6.

[0045] Support block 7, with a pressing rod 71 on it, the pressing rod 71 is movably installed in the mounting hole 2, and the support block 7 abuts against the inner side of the arc-shaped light-transmitting sheet 61;

[0046] Circuit board 3, light-transmitting ring 6, and arc-shaped light-transmitting sheet 61 seal both ends of mounting hole 2 and form a sealed chamber. Circuit board 3 has several air inlets 31. An inner blocking plate 32 is elastically rotatably installed at the end of air inlet 31 near mounting hole 2. An air outlet groove 63 is opened inside the light-transmitting ring 6. The air outlet groove 63 communicates with the sealed chamber. Several air outlets 64 are opened on the outer side and side of the light-transmitting ring 6. An outer blocking plate 65 is elastically rotatably installed at the end of the air outlet 64 facing outward.

[0047] Both the light-transmitting ring 6 and the curved light-transmitting sheet 61 are made of transparent material.

[0048] In one embodiment, the light-emitting element can be an LED bead. The LED bead and the trigger part of the silicone button 41 are electrically connected to the circuit board 3. The arc-shaped light-transmitting sheet 61 is made of a flexible and easily deformable material, such as transparent silicone or transparent rubber.

[0049] In practical application, when the button is pressed, the user presses the arc-shaped light-transmitting sheet 61 with their finger, applying force to the support block 7. The pressing rod 71 on the support block 7 moves and squeezes the silicone button 41, causing the trigger part on the silicone button 41 to contact the trigger switch on the circuit board 3, thereby connecting the circuit and adjusting the working state of the electronic atomizer. After the circuit is connected, the circuit board 3 controls the light-emitting element to emit light. The light from the light-emitting element is guided by the light guide plate 5 and evenly illuminates the light-transmitting ring 6 and the arc-shaped light-transmitting sheet 61. This allows the light to pass through the light-transmitting ring 6 and the arc-shaped light-transmitting sheet 61, increasing the overall light-emitting area. This enhances visual appeal and improves recognizability. Furthermore, in complex lighting environments, users can quickly and clearly identify the indicator light status, improving the user experience. Additionally, the light guide plate 5 ensures uniform light distribution from the light-transmitting ring 6 and the curved light-transmitting sheet 61, preventing uneven brightness or localized overexposure and avoiding visual discomfort. Finally, the light-transmitting ring 6 and the curved light-transmitting sheet 61 allow the buttons to be fully transparent, creating a visually impactful light effect that effectively attracts user attention or creates a unique visual focus, thereby strengthening the product's brand identity and differentiated competitiveness.

[0050] During the user's pressing of the arc-shaped light-transmitting sheet 61, a sealed chamber is formed inside the mounting hole 2. As the arc-shaped light-transmitting sheet 61 deforms towards the sealed chamber, it compresses the air inside, putting the sealed chamber under high pressure. The compressed air compresses the outer blocking plate 65, causing the outer blocking plate 65 to flip outward. Consequently, some of the compressed air is ejected through the air outlet groove 63 from several air outlet holes 64. If there is dust or moisture near the light-transmitting ring 6, the high-speed ejected gas will blow the dust or moisture away from the light-transmitting ring 6. Since the light-transmitting ring 6 is installed in the recess 21, this effectively prevents dust or moisture from entering the mounting hole 2, preventing dust from falling onto the circuit board 3, and preventing damage to the circuit board 3 or a reduction in its service life. Each time the user presses the button, a blowing action is generated, which effectively prevents dust or moisture from existing near the light-transmitting ring 6.

[0051] When the user releases the button, the curved light-transmitting sheet 61 rebounds. As some of the air in the sealed chamber is expelled, the sealed chamber is in a low-pressure state. At this time, several inner blocking plates 32 will flip into the mounting hole 2, allowing air from the outer shell 1 to enter the sealed chamber, thus maintaining the sealed chamber at normal pressure. Since there are vent holes on the outer shell 1, the pressure inside the outer shell 1 remains constant and unaffected. During use, the electronic atomizer generates a certain amount of heat. As a result, some of the air containing heat from the outer shell 1 will enter the sealed chamber. This air containing heat will transfer heat to the circuit board 3, button holder 4, silicone button 41, light guide plate 5, light-transmitting ring 6, and curved light-transmitting sheet 61. If there is moisture on the light-transmitting ring 6 or the curved light-transmitting sheet 61, this moisture may be heated and evaporated, further preventing moisture from entering the mounting hole 2 and damaging the circuit board 3. If moisture does enter the mounting hole 2, the moisture may also evaporate and be expelled from the vent 64 when the button is pressed again, further preventing moisture from damaging the circuit board 3.

[0052] like Figures 2-9 As shown, a cleaning component 8 is installed outside the light-transmitting ring 6, and a driving component 9 is installed inside the mounting hole 2. The driving component 9 controls the operation of the cleaning component 8. The cleaning component 8 includes a movable ring 81, which is rotatably installed around the light-transmitting ring 6. Several cleaning plates 82 are provided on the movable ring 81, and the cleaning plates 82 abut against the outer side and side of the light-transmitting ring 6 and the surface of the arc-shaped light-transmitting sheet 61.

[0053] The movable ring 81 is provided with a ramp 811, and the cleaning plate 82 is provided with a wedge-shaped part 821 on its side.

[0054] In practical application, when the user presses the arc-shaped light-transmitting sheet 61, the support block 7 drives the drive assembly 9 to rotate the movable ring 81, thereby moving several cleaning plates 82. Through the wedge-shaped part 821 and the ramp 811 on the cleaning plate 82, the dust or moisture attached to the light-transmitting ring 6 and the arc-shaped light-transmitting sheet 61 can be scraped off and moved away from the light-transmitting ring 6 and the arc-shaped light-transmitting sheet 61, thereby further preventing dust or moisture from entering the mounting hole 2 and damaging the circuit board 3.

[0055] When the moving ring 81 drives several cleaning plates 82 to rotate, the light emitted from the light-transmitting ring 6 and the arc-shaped light-transmitting sheet 61 will be intermittently blocked, so that the light transmitted from the light-transmitting ring 6 and the arc-shaped light-transmitting sheet 61 will appear to be in a flickering state, thereby further enhancing the visual effect.

[0056] Furthermore, a conical ring 62 is provided around the light-transmitting ring 6, and a movable ring 81 is located outside the conical ring 62. A spring piece 83 is provided on the side of the cleaning plate 82, and a number of baffles 10 are provided on the outer shell 1. The baffles 10 are arranged in a ring array and distributed outside the light-transmitting ring 6. When the spring piece 83 moves to the baffle 10, it will be squeezed and deformed by the baffle 10.

[0057] The support block 7 is surrounded by several support strips 72. The support strips 72 are made of elastic material and are arc-shaped, abutting against the inner side of the arc-shaped light-transmitting sheet 61.

[0058] In practical application, when the movable ring 81 rotates, several spring pieces 83 rotate with it. The dust or moisture cleaned by the cleaning plate 82 will fall onto the conical ring 62. The spring pieces 83 will scrape off the original dust or moisture on the conical ring 62 as well as the dust or moisture cleaned by the cleaning plate 82, so that the dust or moisture is away from the light-transmitting ring 6 and the arc-shaped light-transmitting sheet 61, thereby further preventing dust or moisture from entering the mounting hole 2 and damaging the circuit board 3.

[0059] When the spring 83 moves, it will be blocked by the baffle 10. First, the spring 83 will deform and bend. Some of the dust or moisture attached to the spring 83 will be scraped off by the baffle 10. After the deformed and bent spring 83 passes the baffle 10, the spring 83 will quickly rebound, thus producing a rapid shaking action, which will separate the dust or moisture attached to the spring 83 from the spring 83, thereby improving the cleaning effect.

[0060] After the curved light-transmitting sheet 61 is pressed, several support strips 72 will undergo elastic deformation. When the user releases the curved light-transmitting sheet 61, several support strips 72 will elastically rebound, causing the curved light-transmitting sheet 61 to produce a rapid shaking action, thereby causing dust or moisture on the curved light-transmitting sheet 61 to be blown away and moved away from the curved light-transmitting sheet 61, further improving the cleaning effect.

[0061] Furthermore, the drive assembly 9 includes a fixed ring 91 and a rotating cylinder 92. The fixed ring 91 is provided with several support rods 912 on its periphery. The other end of the support rods 912 is fixed to the inner wall of the mounting hole 2. The fixed ring 91 is provided with several guide plates 911 on its inner side. The pressing rod 71 is provided with several vertical grooves 711 on its periphery. The guide plates 911 are located in the vertical grooves 711. The rotating cylinder 92 is rotatably mounted on the fixed ring 91. The pressing rod 71 passes through the rotating cylinder 92. The rotating cylinder 92 is fixed with several fixed plates 922 on its periphery. The other end of the fixed plate 922 is provided with an elastic strip 923. The other end of the elastic strip 923 is provided with a magnetic block 924. The mounting hole 2 is provided with an annular groove 22. The movable ring 81 is provided with a magnetic attractant 84 on its inner side. The magnetic block 924 and the magnetic attractant 84 are magnetically attracted to each other.

[0062] A spiral groove 921 is provided on the inner side of the rotating drum 92, and a guide block 712 is provided on the periphery of the pressing rod 71. The guide block 712 is located in the spiral groove 921 and moves along the spiral groove 921.

[0063] In practical application, when the pressing rod 71 moves into the mounting hole 2, the guide block 712 and the spiral groove 921 cooperate to rotate the rotating cylinder 92. The rotating cylinder 92 will drive several fixed plates 922 to rotate. Under the action of inertia, the originally bent elastic strip 923 will gradually straighten during rotation, so that the magnetic block 924 enters the annular groove 22. In this way, the magnetic block 924 and the magnetic suction member 84 approach and attract each other. Then, the attraction between the magnetic block 924 and the magnetic suction member 84 will cause the movable ring 81 to rotate, so that the cleaning component 8 cleans the light-transmitting ring 6 and the arc-shaped light-transmitting sheet 6. 1. After the magnetic block 924 enters the annular groove 22, some of the magnetic dust will be attracted to the movable ring 81. This allows the dust to be fixed on the movable ring 81 in a short time, thus preventing dust from entering the mounting hole 2 during cleaning of the cleaning component 8. When the rotation force of the rotating drum 92 decreases, the magnetic block 924 will move away from the annular groove 22. At this time, the dust in the fixed state is released from restriction and slides down the ramp 811 onto the conical ring 62. Under the action of the rotational inertia of the movable ring 81, the dust is cleaned again, further improving the cleaning effect.

[0064] Working principle: When the user needs to operate the electronic atomizer, they press the curved light-transmitting plate 61 with their finger. The force is transmitted to the pressing rod 71 through the support block 7, causing it to move inward and squeeze the silicone button 41, triggering the switch on the circuit board 3. At the same time, the guide block 712 on the pressing rod 71 moves along the spiral groove 921 inside the rotating cylinder 92, driving the rotating cylinder 92 to rotate. The rotating cylinder 92 drives the fixed plate 922, elastic strip 923 and magnetic block 924 on it to rotate. Under the action of centrifugal force, the magnetic block 924 swings outward until it is magnetically coupled with the magnetic suction member 84 on the inner side of the movable ring 81, thereby driving the movable ring 81 and the cleaning plate 82 installed on it to rotate. During the rotation, the cleaning plate 82 scrapes and cleans the outer side and sides of the light-transmitting ring 6 and the surface of the curved light-transmitting plate 61, scraping off the water vapor and dust attached to it onto the conical ring 62. The synchronously rotating spring 83 further sweeps away the dirt on the conical ring 62 and vibrates when passing the baffle 10, thus achieving self-cleaning.

[0065] During button pressing, the arc-shaped light-transmitting sheet 61 deforms inward, compressing the air in the sealed cavity formed by the circuit board 3, the light-transmitting ring 6, and the arc-shaped light-transmitting sheet 61, thus increasing its pressure. The high-pressure gas pushes open the outer blocking plate 65 at the vent 64, forming a high-speed airflow that is ejected from the vent 64, sweeping around the button and preventing external dust and vapor from approaching. When the user releases their finger, the arc-shaped light-transmitting sheet 61 rebounds under the elastic force of the support strip 72, increasing the volume of the sealed cavity and creating negative pressure. External air then pushes open the inner blocking plate 32 at the air inlet 31 and enters the cavity. During this process, some of the residual heat gas from inside the outer casing 1 is drawn in, which can gently dry the internal components and light-transmitting areas, helping to evaporate moisture.

[0066] Throughout the process, the light-emitting components on circuit board 3 are triggered and illuminated. After being homogenized and guided by light guide plate 5, the light is evenly irradiated onto the entire light-transmitting ring 6 and the arc-shaped light-transmitting sheet 61, making it a bright, uniform, and large-area luminous indicator area. During button pressing, the rotating cleaning plate 82 periodically blocks part of the light, thereby producing a dynamic flashing light effect, enhancing the sense of layering and attractiveness of the visual feedback.

Claims

1. A button-triggered electronic atomizer, comprising a housing (1), characterized in that, The electronic atomizer also includes: Circuit board (3), the circuit board (3) is fixedly installed inside the outer shell (1), the outer shell (1) has a mounting hole (2), and the circuit board (3) is located at the mounting hole (2); A button holder (4) is mounted on a circuit board (3). The button holder (4) is located inside a mounting hole (2). A silicone button (41) is provided on the button holder (4). A light guide plate (5) is fixed on a circuit board (3). A button holder (4) is located between the circuit board (3) and the light guide plate (5). A silicone button (41) passes through the light guide plate (5). The light guide plate (5) extends outward toward the mounting hole (2). A light-emitting element is installed on the circuit board (3). A light-transmitting ring (6) is provided with a recessed groove (21) outside the mounting hole (2). The light-transmitting ring (6) is installed in the recessed groove (21). An arc-shaped light-transmitting sheet (61) is provided on the inner side of the light-transmitting ring (6). Support block (7), the support block (7) is provided with a pressing rod (71), the pressing rod (71) is movably installed in the mounting hole (2), and the support block (7) abuts against the inner side of the arc-shaped light-transmitting sheet (61); The circuit board (3), the light-transmitting ring (6), and the arc-shaped light-transmitting sheet (61) seal the two ends of the mounting hole (2) and form a sealed chamber. The circuit board (3) has several air inlets (31). An inner blocking plate (32) is elastically rotatably installed at one end of the air inlet (31) near the mounting hole (2). An air outlet groove (63) is opened in the light-transmitting ring (6). The air outlet groove (63) is connected to the sealed chamber. Several air outlets (64) are opened on the outer side and the side of the light-transmitting ring (6). An outer blocking plate (65) is elastically rotatably installed at the outward end of the air outlet (64).

2. The button-triggered electronic atomizer according to claim 1, characterized in that, Both the light-transmitting ring (6) and the arc-shaped light-transmitting sheet (61) are made of transparent material.

3. The button-triggered electronic atomizer according to claim 1, characterized in that, A cleaning component (8) is installed outside the light-transmitting ring (6), and a driving component (9) is installed inside the mounting hole (2). The driving component (9) controls the operation of the cleaning component (8). The cleaning component (8) includes a movable ring (81), which is rotatably installed around the light-transmitting ring (6). Several cleaning plates (82) are provided on the movable ring (81), and the cleaning plates (82) abut against the outer side and side of the light-transmitting ring (6) and the surface of the arc-shaped light-transmitting sheet (61).

4. The button-triggered electronic atomizer according to claim 3, characterized in that, The movable ring (81) is provided with a ramp (811), and the cleaning plate (82) is provided with a wedge-shaped part (821) on its side.

5. The button-triggered electronic atomizer according to claim 4, characterized in that, The light-transmitting ring (6) is surrounded by a conical ring (62), and the movable ring (81) is located outside the conical ring (62). The cleaning plate (82) is provided with a spring piece (83) on its side. The outer shell (1) is provided with several baffles (10). The baffles (10) are arranged in a ring array and distributed outside the light-transmitting ring (6). When the spring piece (83) moves to the baffle (10), it will be squeezed and deformed by the baffle (10).

6. The button-triggered electronic atomizer according to claim 5, characterized in that, The drive assembly (9) includes a fixed ring (91) and a rotating cylinder (92). The fixed ring (91) is surrounded by several support rods (912), and the other end of the support rods (912) is fixed to the inner wall of the mounting hole (2). The fixed ring (91) is surrounded by several guide plates (911). The pressing rod (71) is surrounded by several vertical grooves (711), and the guide plates (911) are located in the vertical grooves (711). The rotating cylinder (92) is rotatably mounted on the fixed ring (91). On the ring (91), the pressing rod (71) passes through the rotating cylinder (92). Several fixing plates (922) are fixed around the rotating cylinder (92). An elastic strip (923) is provided at the other end of the fixing plate (922). A magnetic block (924) is provided at the other end of the elastic strip (923). A ring groove (22) is opened in the mounting hole (2). A magnetic attractor (84) is provided on the inner side of the movable ring (81). The magnetic block (924) and the magnetic attractor (84) are magnetically attracted to each other.

7. The button-triggered electronic atomizer according to claim 6, characterized in that, The inner side of the rotating cylinder (92) is provided with a spiral groove (921), and the outer periphery of the pressing rod (71) is provided with a guide block (712). The guide block (712) is located in the spiral groove (921) and moves along the spiral groove (921).

8. The button-triggered electronic atomizer according to claim 1, characterized in that, The support block (7) is provided with several support strips (72) on its periphery. The support strips (72) are made of elastic material and are arc-shaped and abut against the inner side of the arc-shaped light-transmitting sheet (61).