Deformable rotary Hall type voltage-regulating electronic cigarette

By using a Hall switch and a rotating magnet to adjust the voltage, the problem of increased size and inconvenient operation caused by existing electronic cigarette voltage adjustment methods is solved, enabling flexible adjustment of voltage and power, and improving user experience and playability.

CN223759223UActive Publication Date: 2026-01-06MEGA TECH (DONGGUAN) CO LTD
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Patent Information

Application Number
CN202423071606.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2026-01-06
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

Current electronic cigarettes mainly rely on physical buttons or touch operation for voltage regulation, which leads to increased size, easy damage, or inconvenience in operation, failing to meet the diverse needs of users.

Method used

It adopts a rotary voltage regulation method that combines Hall switches and magnets. By rotating the component, the magnetic field strength around the Hall switch is changed, thereby adjusting the battery output voltage and the power of the atomizing component, simplifying operation and increasing interactivity.

Benefits of technology

It enables flexible adjustment of voltage and power, improves user experience and the playability of e-cigarettes, and avoids problems such as accidental button presses and inconvenient operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of electronic cigarettes, in particular to a deformable rotating Hall type voltage regulating electronic cigarette which comprises a fixing assembly and a rotating assembly arranged on the fixing assembly in a rotating mode, and the fixing assembly comprises a fixing upper shell and a fixing lower shell assembled with the fixing upper shell in a clamped connection mode. The upper fixing shell and the lower fixing shell are assembled in a clamped mode to define a first installation cavity, an atomization component used for generating oil smoke is arranged in the first installation cavity, a PCB and a battery electrically connected with the PCB are further arranged, and a Hall switch used for controlling the magnitude of output voltage of the battery according to the intensity of a surrounding magnetic field is arranged on the PCB. The execution end of the rotating assembly is provided with a magnet used for changing the intensity of a magnetic field around the Hall switch. Through the position cooperation of the Hall switch and the magnet, the output voltage of the battery is adjusted to change the power of the atomization part, the temperature generated by the atomization part is controlled, the smoke amount is changed, the requirements of different cigarette addicts are met, operation is easy, and damage is not prone to occurring.
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Description

Technical Field

[0001] This utility model relates to the field of electronic cigarette technology, and in particular to a deformable rotating Hall effect adjustable voltage electronic cigarette. Background Technology

[0002] In the field of e-cigarette technology, as consumers' demands for product diversity and user experience continue to rise, e-cigarette design is also constantly innovating and evolving. Traditional e-cigarette voltage adjustment methods mostly rely on physical buttons or touch operations. While these methods meet users' basic needs to a certain extent, they are relatively simple in form and function, lacking sufficient innovation and interactivity.

[0003] Physical button voltage adjustment typically requires multiple buttons on the e-cigarette, with users adjusting the voltage by pressing different buttons or combinations of buttons. While this method is intuitive and easy to understand, the increased number of buttons not only increases the size and weight of the e-cigarette but may also lead to accidental button presses or damage, affecting the user experience.

[0004] Touch-sensitive voltage adjustment involves touching a specific area on the e-cigarette surface to regulate the voltage. While this method simplifies the user interface and improves the product's aesthetics to some extent, the touch area is typically small and its position is fixed. Users may need to try multiple times to accurately locate the touch point, reducing the ease of operation.

[0005] Therefore, a deformable rotating Hall effect adjustable voltage electronic cigarette is provided to solve the above-mentioned technical problems. Utility Model Content

[0006] The purpose of this invention is to provide a deformable, rotating Hall effect adjustable electronic cigarette to address the shortcomings of existing technologies, thereby solving the problem that most existing electronic cigarettes use physical buttons or touch-based adjustable voltage methods, resulting in a relatively simple form.

[0007] To achieve the above objectives, the technical solution of this utility model is as follows:

[0008] A deformable rotary Hall effect adjustable voltage electronic cigarette includes a fixed component and a rotating component rotatably mounted on the fixed component. The fixed component includes a fixed upper shell and a fixed lower shell snapped together with the fixed upper shell. The fixed upper shell and the fixed lower shell are snapped together to form a first mounting chamber. The first mounting chamber is equipped with an atomizing component for generating oil fumes, a PCB board, and a battery electrically connected to the PCB board. The PCB board is equipped with a Hall effect switch for controlling the output voltage of the battery according to the strength of the surrounding magnetic field. The rotating component has a magnet on its actuator end for changing the strength of the magnetic field around the Hall effect switch.

[0009] Furthermore, the fixed upper shell is formed with a fixed post, and the rotating assembly includes a rotating lower shell and a rotating upper shell that is snapped together with the rotating lower shell. The fixed upper shell is snapped together with the fixed upper shell to form a second mounting chamber. The rotating lower shell is equipped with a bearing, and the inner ring of the bearing is fixedly set on the fixed post. The magnet is installed in the second mounting chamber and away from the bearing.

[0010] Furthermore, the end of the fixing column is provided with a fixing plate placed in the second mounting chamber. The display screen is attached to the fixing plate by an EVA board, and the ribbon cable on the display screen passes through the fixing upper shell and connects to the PCB board.

[0011] Furthermore, a lens is mounted on the rotating upper shell, which is coaxially aligned with the display screen.

[0012] Furthermore, a mouthpiece connected to the atomizing component is installed on the top of the fixed lower shell; a sealing plug is provided at the smoke outlet of the mouthpiece.

[0013] Furthermore, the atomizing component includes an oil cup and a sealing seat installed at the bottom of the oil cup. The oil cup and the sealing seat form an atomizing chamber. The atomizing chamber is provided with an oil storage cotton for storing e-liquid. The oil storage cotton is provided with a heating wire assembly that is connected to the mouthpiece and is used to heat and atomize the e-liquid. The sealing seat is provided with a fixing seat, and the fixing seat is installed in the first mounting chamber.

[0014] Furthermore, both the mounting base and the sealing base are formed with air inlets that allow the heating wire assembly to communicate with the outside air.

[0015] Furthermore, a condensation cotton for absorbing incompletely atomized e-liquid is provided between the heating wire assembly and the mouthpiece; an oil-absorbing cotton is provided between the sealing seat and the fixing seat, located next to the air inlet.

[0016] The beneficial effects of this invention are as follows: When the magnet is closest to the Hall switch, the magnetic field sensed by the Hall switch is strongest, the battery output voltage is highest, and the power of the atomizing component is at its maximum. By rotating the rotating component counterclockwise, the magnet is gradually moved away from the Hall switch. At this time, the magnetic field sensed by the Hall switch gradually weakens, the battery output voltage gradually decreases, and the power of the atomizing component gradually decreases, thereby achieving power adjustment of the atomizing component.

[0017] By adjusting the position of the Hall switch and the magnet, the battery output voltage is controlled, thereby changing the power of the atomizing component. This controls the temperature generated by the atomizing component and alters the amount of vapor produced, catering to the needs of different smokers. The device is simple to operate and not easily damaged. Furthermore, by mechanically changing the magnetic field strength, the power is adjusted, which also increases the playability of this electronic cigarette and enhances the user experience. Attached Figure Description

[0018] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0019] Figure 2 This is a schematic diagram of the internal structure of this utility model.

[0020] Figure 3 This is an exploded view of the present invention.

[0021] Figure 4 This is an exploded view of the present invention from another perspective.

[0022] Figure 5 This is a schematic diagram of the atomizing component of this utility model.

[0023] Figure 6 This is a diagram illustrating the voltage regulation of this utility model.

[0024] The reference numerals in the figures include:

[0025] 1. Fixed upper shell; 2. Fixed lower shell; 201. First mounting chamber; 3. Atomizing component; 301. Oil cup; 302. Sealing seat; 303. Oil storage cotton; 304. Heating wire assembly; 305. Condensing cotton; 306. Fixing seat; 307. Air inlet; 308. Oil-absorbing cotton; 4. Mouthpiece; 401. Sealing plug; 5. Battery; 6. PCB board; 7. Charging port; 8. Hall switch; 9. Fixing post; 10. Fixing plate; 11. EVA board; 12. Display screen; 1201. Ribbon cable; 13. Rotating lower shell; 14. Rotating upper shell; 15. Bearing; 16. Second mounting chamber; 17. Magnet; 18. Lens. Detailed Implementation

[0026] The following is a detailed description of a deformable rotating Hall effect adjustable electronic cigarette according to the present invention, with reference to the accompanying drawings.

[0027] like Figure 1-4 As shown, an embodiment of the deformable rotating Hall effect adjustable voltage electronic cigarette of this utility model includes a fixed assembly and a rotating assembly rotatably mounted on the fixed assembly. The fixed assembly includes a fixed upper shell 1 and a fixed lower shell 2 snap-fitted to the fixed upper shell 1. The fixed upper shell 1 and the fixed lower shell 2 are snap-fitted to form a first mounting chamber 201. An atomizing component 3 for generating fumes is installed inside the first mounting chamber 201. A mouthpiece 4, communicating with the atomizing component 3, is mounted on the top of the fixed lower shell 2. When the user smokes through the mouthpiece 4, the atomizing component 3 generates fumes for the user to inhale. Additionally, a sealing plug 401 is provided at the smoke outlet of the mouthpiece 4. When the electronic cigarette is not in use, the sealing plug 401 blocks the smoke outlet of the mouthpiece 4, preventing the e-liquid in the atomizing component 3 from leaking out of the mouthpiece 4 or impurities from entering the electronic cigarette, thus improving the service life of the electronic cigarette.

[0028] The first installation chamber 201 also houses a PCB board 6 and a battery 5 electrically connected to the PCB board 6. The PCB board 6 is a circuit board, and a Hall switch 8 is mounted on the PCB board 6 to control the output voltage of the battery 5 according to the strength of the surrounding magnetic field. The Hall switch 8 is a Hall sensor (model SS441A), a transducer that converts a changing magnetic field into a change in output voltage. Its principle is that the Hall voltage changes with the strength of the surrounding magnetic field; the stronger the magnetic field, the higher the voltage, and the weaker the magnetic field, the lower the voltage. In addition, a magnet 17 is provided on the actuating end of the rotating assembly to change the strength of the magnetic field around the Hall switch 8. When the magnet 17 is closest to the Hall switch 8 (e.g., when...), the magnetic field strength changes. Figure 1 As shown), the Hall switch 8 senses the strongest magnetic field, the battery 5 outputs the highest voltage, and the atomizing component 3 has the maximum power. This is achieved by rotating counter-clockwise (as shown). Figure 6 As shown, rotating the component causes magnet 17 to gradually move away from Hall switch 8. As the magnetic field sensed by Hall switch 8 weakens, the voltage output from battery 5 gradually decreases, resulting in a decrease in the power of atomizing component 3, thus adjusting the power of atomizing component 3. By coordinating the positions of Hall switch 8 and magnet 17, the output voltage of battery 5 is adjusted to change the power of atomizing component 3, thereby controlling the temperature generated by atomizing component 3 and altering the amount of vapor to meet the needs of different smokers. Furthermore, by mechanically changing the magnetic field strength to achieve power adjustment, this electronic cigarette also increases its playability and improves the user experience.

[0029] Specifically, the fixed upper shell 1 is formed with a fixed post 9, and the rotating assembly includes a rotating lower shell 13 and a rotating upper shell 14 that is snapped together with the rotating lower shell 13. The fixed upper shell 1 and the fixed upper shell 1 are snapped together to form a second mounting chamber 16. The rotating lower shell 13 is equipped with a bearing 15, and the inner ring of the bearing 15 is fixedly mounted on the fixed post 9. When force is applied to the rotating lower shell 13 and the rotating upper shell 14, they can rotate around the axis of the fixed post 9. Furthermore, the magnet 17 is installed in the second mounting chamber 16 and away from the bearing 15. When the rotating lower shell 13 rotates on the fixed post 9 through the bearing 15, it can rotate the magnet 17 around the axis of the fixed post 9, causing the magnet 17 to move closer to or away from the Hall switch 8.

[0030] Furthermore, the end of the fixing post 9 is provided with a fixing plate 10 placed in the second mounting chamber 16. The display screen 12 is attached to the fixing plate 10 by means of an EVA board 11, and the ribbon cable 1201 on the display screen 12 passes through the fixing upper shell 1 and is connected to the PCB board 6. When the rotating lower shell 13 and the rotating upper shell 14 rotate on the fixing post 9, the display screen 12 will not rotate.

[0031] The display screen 12 shows the percentage of e-liquid and battery power in the electronic cigarette. To facilitate user observation, a lens 18 is mounted on the rotating upper shell 14, coaxially aligned with the display screen 12. The user can then observe the display screen 12, located within the second mounting chamber 16, through the lens 18, allowing for timely refilling and charging of the electronic cigarette. The PCB board 6 also features a charging port 7. By connecting the charging port 7 to a data cable, the battery 5 can be charged.

[0032] like Figure 5 As shown, the atomizing component 3 includes an oil cup 301 and a sealing seat 302 installed at the bottom of the oil cup 301. The oil cup 301 and the sealing seat 302 form an atomizing chamber. Inside the atomizing chamber, there is an oil storage cotton 303 for storing e-liquid. Inside the oil storage cotton 303, there is a heating wire assembly 304 that communicates with the mouthpiece 4 and is used to heat and atomize the e-liquid. The heating wire assembly 304 is connected to the PCB board 6. The sealing seat 302 has a fixing seat 306, and the fixing seat 306 is installed in the first mounting chamber 201. By installing the fixing seat 306 in a designated position in the first mounting chamber 201, the oil cup 301 is placed in a designated position, which facilitates installation. Both the mounting base 306 and the sealing base 302 have air inlets 307 formed on them to allow the heating wire assembly 304 to communicate with the outside air. When the user smokes through the mouthpiece 4, outside air enters the heating wire assembly 304 through the air inlet 307. A microphone (not shown in the figure) is installed in the air inlet 307 to control the operation of the heating wire assembly 304. The microphone is an airflow sensor. When air enters the heating wire assembly 304, it is detected by the microphone, thereby controlling the operation of the heating wire assembly 304 to heat the e-liquid and heat it into smoke for the user to inhale. In addition, a condensation cotton 305 is provided between the heating wire assembly 304 and the mouthpiece 4 to absorb e-liquid that is not fully atomized. When the user smokes through the mouthpiece 4, the e-liquid that is not fully atomized is absorbed by the condensation cotton 305, preventing leakage from the smoke outlet of the mouthpiece 4. An oil-absorbing cotton 308 is provided between the sealing seat 302 and the fixing seat 306, located next to the air inlet 307. The oil-absorbing cotton 308 is used to absorb the e-liquid leaking from the bottom of the heating wire assembly 304, preventing the e-liquid from leaking from the air inlet 307 and improving the user experience.

[0033] In summary, this utility model possesses the aforementioned excellent characteristics, enabling it to achieve unprecedented efficiency in use and thus become a highly practical product.

[0034] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of ​​this utility model. The content of this specification should not be construed as a limitation of this utility model.

Claims

1. A deformable rotary Hall-effect regulated voltage electronic cigarette, characterized in that: The utility model provides a kind of smoke generator, including fixed component and rotation component arranged on fixed component, fixed component includes fixed upper shell (1) and with fixed upper shell (1) joint assembly fixed lower shell (2), fixed upper shell (1) is jointed with fixed upper shell (1) assembly to enclose first installation chamber (201), first installation chamber (201) is equipped with atomization component (3) for generating oil smoke, also be equipped with PCB board (6) and with PCB board (6) electric connection battery (5), PCB board (6) is equipped with Hall switch (8) for controlling battery (5) output voltage size according to surrounding magnetic field intensity, the execution end of rotation component is equipped with magnet (17) for changing the magnetic field intensity of surrounding Hall switch (8).

2. A deformable rotary Hall-effect regulated electronic cigarette according to claim 1, characterized in that: Fixed upper shell (1) is formed with fixed column (9), and the rotation component includes a rotating lower shell (13) and a rotating upper shell (14) jointed with the rotating lower shell (13). The fixed upper shell (1) is jointed with the fixed upper shell (1) to enclose a second installation chamber (16). The rotating lower shell (13) is equipped with a bearing (15), and the inner ring of the bearing (15) is fixedly arranged on the fixed column (9). The magnet (17) is arranged in the second installation chamber (16) and away from the bearing (15).

3. A deformable rotary Hall-effect regulated electronic cigarette according to claim 2, characterized in that: The end of the fixed column (9) is provided with a fixed sheet (10) arranged in the second installation chamber (16). The display screen (12) is attached to the fixed sheet (10) by an EVA plate (11). The wire (1201) on the display screen (12) passes through the fixed upper shell (1) and is connected with the PCB board (6).

4. The deformable rotary Hall-effect regulated electronic cigarette of claim 3, wherein: The rotating upper shell (14) is equipped with a lens (18) coaxially arranged with the display screen (12).

5. The deformable rotary Hall-effect regulated electronic cigarette of claim 1, wherein: The fixed lower shell (2) is equipped with a smoke nozzle (4) arranged in communication with the atomization component (3). The smoke nozzle (4) is provided with a sealing plug (401) at the smoke outlet.

6. A deformable rotary Hall-effect regulated electronic cigarette according to claim 5, wherein: The atomization component (3) includes an oil cup (301) and a sealing seat (302) arranged at the bottom of the oil cup (301). The oil cup (301) and the sealing seat (302) enclose an atomization chamber. The atomization chamber is provided with an oil storage cotton (303) for storing tobacco tar. The oil storage cotton (303) is provided with a heating wire assembly (304) arranged in communication with the smoke nozzle (4) and used for heating and atomizing the tobacco tar. The sealing seat (302) is provided with a fixed seat (306), and the fixed seat (306) is arranged in the first installation chamber (201).

7. A deformable rotary Hall-effect regulated electronic cigarette according to claim 6, characterized in that: The fixed seat (306) and the sealing seat (302) are both formed with air inlet holes (307) for communicating the heating wire assembly (304) with the outside air.

8. A deformable rotary Hall-effect regulated electronic cigarette according to claim 7, characterized in that: The heating wire assembly (304) and the smoke nozzle (4) are provided with a condensation cotton (305) for absorbing the tobacco tar that is not completely atomized. The sealing seat (302) and the fixed seat (306) are provided with an oil absorption cotton (308) arranged beside the air inlet hole (307).