Electronic atomizer with display function
By introducing a slip-on adjusting member and a data transmission unit into the electronic atomizer, combined with the suction strain valve and oil suction member, the problem of unbalanced e-liquid quantity is solved, precise control and efficient utilization are achieved, and user experience and equipment transparency are improved.
Patent Information
- Application Number
- CN202422308832.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-21
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-09-21
AI Technical Summary
In existing electronic atomizers, the amount of e-liquid inhaled by the suctionee each time is uneven, especially when the suction force is too large, it may cause the e-liquid to be atomized in time, affecting the user experience.
The power of the atomization part is adjusted by sliding adjusting the power, and combined with the data transmission unit and temperature detection sensor, the precise control of the atomization amount is achieved. The flow of e-liquid is optimized through the suction strain valve and oil suction piece, and the oil-conducting cotton improves the utilization rate of e-liquid.
Accurate control of the amount of e-liquid is achieved, improving the flexibility and transparency of use, improving the user experience and e-liquid utilization rate, and reducing the loss of unatomized e-liquid.
Smart Images

Figure CN223262343U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of electronic atomizers, and in particular to an electronic atomizer with a display function. Background Art
[0002] An electronic cigarette is an electronic device, usually composed of a shell, a cigarette cartridge, a flue, an atomizing part, a battery and other components. Its working principle is to heat the electronic cigarette oil through a heater, thereby atomizing the oil to produce smoke. Users obtain nicotine or other chemicals by inhaling this smoke without burning tobacco, thus playing the role of tobacco substitute. At the same time, different flavors of flavors can also be added to the oil to enhance the user's experience of using the electronic cigarette.
[0003] There is an electronic atomizer with a display function, which can display the current remaining power of the electronic atomizer and the remaining amount of tobacco oil on the display screen, so that the smoker can understand the working status of the electronic atomizer at any time. It is easy to operate, highly practical, and conducive to promotion and application.
[0004] However, in actual application, the amount of atomized e-liquid inhaled each time by the smoker will change with the change of the smoker's suction force, so that the amount of atomized e-liquid inhaled each time by the smoker is in an unbalanced state. Even when the smoker applies too much suction force to the electronic atomizer, some of the e-liquid will not be atomized in time, thereby affecting the user's experience. There is room for improvement. Utility Model Content
[0005] In order to facilitate smokers to control the amount of smoke liquid inhaled each time, the present application provides an electronic atomizer with a display function.
[0006] The electronic atomizer with display function provided in this application adopts the following technical solution:
[0007] An electronic atomizer with a display function comprises a shell, a flue, an atomizing portion, a cigarette cartridge, a control module, a display screen and a battery, wherein the flue, the cigarette cartridge, the control module and the battery are sequentially arranged in the shell, the atomizing portion is arranged in the flue, the atomizing portion is used to atomize the cigarette oil in the cigarette cartridge, the battery is used to power the atomizing portion, the control module and the display screen, the control module is electrically connected to the atomizing portion, the display screen and the battery, and the control module comprises an adjusting member, which is slidably arranged on the shell, and the adjusting member is used to adjust the working power of the atomizing portion.
[0008] By adopting the above technical solution, a slidable adjustment member is provided on the housing to adjust the power of the atomization unit, achieving effective control of the atomization volume. This design allows smokers to adjust the amount of e-liquid inhaled each time according to their personal preferences and needs, improving user flexibility and personalized experience.
[0009] Preferably, the control module further comprises a data transmission unit, and the data transmission unit is used to transmit the battery level, the remaining number of inhalations and the actual atomization power to the display screen.
[0010] By adopting the above technical solution and adding a data transmission unit, not only the battery level and the remaining number of inhalations can be displayed, but also the current atomization power can be displayed in real time, allowing smokers to understand the working status of the device more clearly, increasing the transparency and convenience of use.
[0011] Preferably, the adjusting member is used to adjust the power of the atomizing portion between gear I and gear X. When the adjusting member is in gear X, the atomizing portion is in full-power operation.
[0012] By adopting the above technical solution, the adjustment range of the adjustment member is specifically defined (Gear I to Gear X), where Gear X is full power operation. This graded design allows smokers to more accurately control the atomization power to meet different usage needs.
[0013] Preferably, the data transmission unit includes a temperature detection sensor, which is arranged in the flue and is used to detect the temperature of the atomization part when it is working. The temperature detection sensor is electrically connected to the control module.
[0014] By adopting the above technical solution, the actual temperature of the atomization part when it is working is detected by a temperature detection sensor, and the detection signal is sent to the control module. The control module detects the deviation between the detection signal and the current gear position of the adjustment part. Therefore, through the cooperation of the temperature detection sensor and the control module, the actual working power of the atomization part can be adjusted in real time so that it can match the power required by the gear position of the adjustment part.
[0015] Preferably, a suction strain valve is provided in the cigarette cartridge, and the suction strain valve is connected to the atomization part. When the suction applied by the smoker to the flue changes, the opening and closing degree of the suction strain valve will change with the change of the suction, and when the suction strain valve is fully opened, the amount of smoke oil flowing along the cigarette cartridge to the atomization part is adapted to the amount of smoke oil that can be atomized when the atomization part is running at full power.
[0016] By adopting the above technical solution, the design of the suction strain valve responds to the changes in the smoker's suction and automatically adjusts the degree of opening and closing, which helps to reduce unatomized e-liquid when the suction is too strong, thereby improving the user experience and atomization efficiency.
[0017] Preferably, an oil suction member is provided between the oil outlet of the flue and the atomization part, and the oil suction member is used to absorb part of the un-atomized smoke oil.
[0018] By adopting the above technical solution, the setting of the oil absorption component can effectively absorb part of the un-atomized smoke oil, reduce the situation where the smoke oil directly flows out into the flue, and improve the cleanliness and usage experience.
[0019] Preferably, the oil-absorbing member is provided with oil-guiding cotton, which is connected to the atomization part. The oil-absorbing capacity of the oil-guiding cotton is greater than the oil-absorbing capacity of the oil-absorbing member. The oil-guiding cotton is used to absorb the un-atomized tobacco oil on the oil-absorbing member to the atomization part.
[0020] By adopting the above technical solution, the addition of the oil-guide cotton further optimizes the processing of un-atomized e-liquid. Through its powerful oil absorption capacity, the e-liquid on the oil absorption component is redirected to the atomization part for atomization, thereby improving the utilization rate of the e-liquid and the atomization effect.
[0021] Preferably, the cigarette cartridge is provided with an oil filling port.
[0022] By adopting the above technical solution, the setting of the oil filling port makes it convenient to refill the cigarette cartridge with oil, thereby extending the service life of the cigarette cartridge, reducing the frequency of replacing the cigarette cartridge, and being more environmentally friendly and economical.
[0023] In summary, this application includes at least one of the following beneficial technical effects:
[0024] 1. By setting a slidable adjustment member on the housing to adjust the power of the atomization unit, effective control of the atomization volume is achieved, which plays a positive guiding role in improving the convenience of smokers in controlling the amount of e-liquid inhaled each time;
[0025] 2. By adding a data transmission unit, it can not only display the battery level and the number of remaining inhalations, but also display the current atomization power in real time, allowing smokers to more clearly understand the working status of the device, increasing the transparency and convenience of use;
[0026] 3. The control module detects the deviation between the detection signal and the current gear position of the adjustment member, so that the actual working power of the atomization part can be adjusted in real time through the cooperation of the temperature detection sensor and the control module, so that it can match the power required by the gear position of the adjustment member. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1This is a schematic diagram of the overall structure of an electronic atomizer with a display function according to an embodiment of the present application.
[0028] Figure 2 yes Figure 1 A schematic diagram of the cross-sectional structure of an electronic atomizer with a display function.
[0029] Figure 3 yes Figure 2 Schematic diagram of the enlarged structure of part A.
[0030] Figure 4 This is an example diagram of information displayed on a display screen in an electronic atomizer with a display function according to an embodiment of the present application.
[0031] Explanation of the accompanying symbols: 1. Shell; 2. Flue; 3. Atomization part; 4. Cartridge; 41. Suction strain valve; 5. Control module; 51. Adjustment part; 52. Data transmission unit; 521. Temperature detection sensor; 53. Central processing unit; 6. Display screen; 7. Battery; 8. Oil suction part; 9. Oil guide cotton; 10. Oil filling port; 11. Circuit substrate. DETAILED DESCRIPTION
[0032] The following is combined with Figure 1-4 This application is described in further detail.
[0033] The embodiment of the present application discloses an electronic atomizer with a display function. Figure 1-Figure 3 An electronic atomizer with a display function includes a shell 1, a flue 2, an atomizing unit 3, a cigarette cartridge 4, a control module 5, a display screen 6 and a battery 7. The cigarette cartridge 4, flue 2, control module 5 and battery 7 are sequentially arranged in the shell 1, the atomizing unit 3 is arranged in the flue 2, the atomizing unit 3 is used to atomize the cigarette oil in the flue 2, the battery 7 is used to power the atomizing unit 3, the control module 5 and the display screen 6, and the control module 5 is electrically connected to the atomizing unit 3, the display screen 6 and the battery 7.
[0034] Specifically, the atomizing part 3 is a conventional component in the electronic atomizer for atomizing the e-liquid, and its specific composition and working principle are not described in detail here.
[0035] The control module 5 includes an adjustment member 51 and a central processing unit (CPU) 53. The adjustment member 51 is slidably mounted on the housing 1 and is used to adjust the power of the atomization unit 3. A circuit substrate 11 is mounted on the housing 1 below the flue 2. The CPU 53 is mounted on the circuit substrate 11, and the adjustment member 51 is also mounted on the circuit substrate 11. The adjustment member 51 penetrates the housing 1 along its thickness and extends to the outside of the housing 1, facilitating adjustment by the smoker.
[0036] Here, the circuit substrate 11 is powered by the battery 7 , and the central control processor is electrically connected to the battery 7 , the adjustment member 51 , the atomization unit 3 , the circuit substrate 11 and the display screen 6 .
[0037] Therefore, the user can send an adjustment instruction through the adjustment member 51. When the central processing unit 53 receives the adjustment signal from the adjustment member 51, the central processing unit 53 will send a control instruction to the atomization unit 3 and the battery 7, thereby changing the current flowing into the atomization unit 3 along the battery 7, thereby adjusting the working power of the atomization unit 3 to meet the different concentrations of the user's inhalation needs.
[0038] Correspondingly, the adjusting member 51 is used to adjust the power of the atomization section 3 between gears I and X. When the adjusting member 51 is in gear X, the atomization section 3 is in full-power operation, and the amount of smoke oil instantaneously atomized along the atomization section 3 is at its peak. At the same time, when the adjusting member 51 is in gear I, the power of the atomization section 3 is at its minimum, and the amount of smoke oil instantaneously atomized along the atomization section 3 is at its minimum. The amount of atomized smoke oil inhaled by the smoker is relatively small. Therefore, the smoker can arbitrarily adjust the working power of the atomization section 3 from gear X to gear I to meet the demand for inhalation of atomized smoke oil of different concentrations. Among them, "I" and "X" in gears I to X are Roman numerals, representing 1 and 10 respectively.
[0039] Among them, reference Figure 2 and Figure 3 A suction strain valve 41 is provided in the cigarette cartridge 4, and the suction strain valve 41 is connected to the atomization part 3. When the suction applied by the smoker to the flue 2 changes, the opening and closing degree of the suction strain valve 41 will change with the change of the suction. When the suction strain valve 41 is fully opened, the amount of tobacco oil flowing along the cigarette cartridge 4 to the atomization part 3 is adapted to the amount of tobacco oil that can be atomized when the atomization part 3 is running at full power.
[0040] It should be noted here that the suction strain valve 41 is a component whose opening and closing degree of the valve changes with the change of the suction force it receives, and is used to control the instantaneous amount of the oil in the cigarette cartridge 4 flowing to the atomization part 3. Its specific composition and working principle are not described in detail here.
[0041] Therefore, when the smoker needs to make the atomization part 3 run at full power, the adjustment member 51 can be adjusted to the X position. Then, during the smoking process, when the smoker applies suction to the flue 2, the suction strain valve 41 will open, so that the tobacco oil can flow smoothly along the tobacco cartridge 4 to the atomization part 3.
[0042] Correspondingly, an oil suction member 8 is provided between the oil outlet of the flue 2 and the atomization unit 3. This member is used to absorb some of the un-atomized tobacco liquid. Because the suction force applied by the smoker to the flue 2 is constantly changing, the opening and closing degree of the suction strain valve 41 cannot accurately match the amount of tobacco liquid that can be atomized instantly by the atomization unit 3. When the amount of tobacco liquid instantly flowing out of the cigarette cartridge 4 exceeds the atomization capacity of the atomization unit 3, some tobacco liquid may not be fully atomized. Therefore, the oil suction member 8 absorbs the tobacco liquid that has not been atomized by the atomization unit 3, thereby reducing the amount of un-atomized tobacco liquid that enters the smoker's mouth directly along the flue 2 during the smoke process.
[0043] At the same time, oil-absorbing member 8 is provided with oil-guiding cotton 9, which is connected to atomizing section 3. The oil-guiding cotton 9 has a greater oil-absorbing capacity than the oil-absorbing member 8 and is used to draw un-atomized tobacco oil from the oil-absorbing member 8 into the atomizing section 3. As the amount of un-atomized tobacco oil accumulated on the oil-absorbing member 8 increases, the ventilation capacity of the flue 2 decreases. The un-atomized tobacco oil is then re-drawn into the atomizing section 3 through the oil-guiding cotton 9, where it is atomized again, thereby improving the utilization rate of the tobacco oil.
[0044] On the other hand, refer to Figure 2 and Figure 4 The control module 5 further includes a data transmission unit 52 for transmitting the power level, the remaining number of inhalations, and the actual atomization power to the display screen 6 . The data transmission unit is integrated on the circuit substrate 11 .
[0045] It should be noted that the remaining number of inhalations is a simulated estimated value, that is, it is estimated based on the actual instantaneous atomization capacity of the adjustment member 51 from position I to position X.
[0046] For example, when the adjustment member 51 is in gear I, the actual amount of e-liquid that can be atomized by the atomization part 3 is 16 mg (international unit L, milligrams); when the adjustment member 51 is in gear X, the amount of e-liquid that can be atomized by the atomization part 3 is 6 mg (linearly changing from gear I to gear X along a range from 3 mg to 8 mg). The amount of e-liquid actually stored in the cartridge 4 is thus calculated. For example, when 10 g (international unit, grams) is actually stored in the cartridge 4 and the adjustment member 51 is in gear I, the theoretical number of inhalations will be displayed on the display screen 6 as 1667 times. Each time the adjustment member 51 is adjusted, the central controller will calculate based on the position of the adjustment member 51 before adjustment and the number of inhalations, thereby improving the display accuracy of the remaining number of inhalations on the display screen 6.
[0047] It should be noted that the actual atomization power refers to the specific gear position between gears I and X (inclusive) before adjustment, and is displayed on the display screen 6 using Roman numerals from I to X.
[0048] Reference Figure 2 and Figure 3 The data transmission unit includes a temperature detection sensor 521, which is arranged in the flue 2. The temperature detection sensor 521 is used to detect the temperature of the atomization part 3 when it is working. The temperature detection sensor 521 is electrically connected to the control module 5.
[0049] Specifically, the temperature detection sensor 521 is electrically connected to the central processing unit 53. The actual temperature of the atomization part 3 when it is working is detected by the temperature detection sensor 521, and the detection signal is sent to the central processing unit 53. The central processing unit 53 detects the deviation between the detection signal and the current gear position of the adjustment member 51. Therefore, through the cooperation of the temperature detection sensor 521 and the central processing unit 53, the actual working power of the atomization part 3 can be adjusted in real time so that it can match the power required by the gear position of the adjustment member 51.
[0050] In another embodiment, the cigarette cartridge 4 is provided with an oil filling port 10 , through which the cigarette cartridge 4 can be refilled with tobacco oil.
[0051] It should be noted here that the information on the remaining number of inhalations displayed on the above-mentioned display screen 6 is applicable to the re-injection of oil after the oil in the cartridge 4 is used up, and the amount of oil injected is a fixed value (the actual capacity of the cartridge 4). If the oil in the cartridge 4 is not used up, the measurement result will be affected if the oil is injected into the cartridge 4 again.
[0052] The implementation principle of an electronic atomizer with a display function in the embodiment of the present application is as follows: the actual working power of the atomization part 3 can be adjusted by the adjustment part 51, so that the smoker can change it according to his own smoking concentration requirements to meet the smoking needs of smoke oil with different concentrations of atomized smoke. At the same time, an oil suction part 8 and an oil guide part are provided in the flue 2. The oil suction part 8 absorbs the un-atomized part of the smoke oil, and the oil suction part 8 is used to re-introduce the smoke oil absorbed by the oil suction part 8 into the atomization part 3 through the oil guide, which is beneficial to improve the utilization rate of the smoke oil.
[0053] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.
Claims
1. An electronic atomizer with a display function, characterized in that: The invention comprises a shell (1), a flue (2), an atomizing part (3), a cigarette cartridge (4), a control module (5), a display screen (6) and a battery (7); the flue (2), the cigarette cartridge (4), the control module (5) and the battery (7) are sequentially arranged in the shell (1); the atomizing part (3) is arranged in the flue (2); the atomizing part (3) is used to atomize the cigarette oil in the cigarette cartridge (4); the battery (7) is used to supply power to the atomizing part (3), the control module (5) and the display screen (6); the control module (5) is electrically connected to the atomizing part (3), the display screen (6) and the battery (7); the control module (5) comprises an adjusting part (51); the adjusting part (51) is slidably arranged on the shell (1); and the adjusting part (51) is used to adjust the working power of the atomizing part (3).
2. The electronic atomizer with a display function according to claim 1, characterized in that: The control module (5) further comprises a data transmission unit (52), and the data transmission unit (52) is used to transmit the battery level, the remaining number of inhalations, and the actual atomization power to the display screen (6).
3. The electronic atomizer with a display function according to claim 2, characterized in that: The regulating member (51) is used to regulate the power of the atomizing portion (3) between gear I and gear X. When the regulating member (51) is in gear X, the atomizing portion (3) is in a full-power operating state.
4. The electronic atomizer with a display function according to claim 3, characterized in that: The data transmission unit (52) comprises a temperature detection sensor (521), the temperature detection sensor (521) being arranged in the flue (2), the temperature detection sensor (521) being used to detect the temperature of the atomizing part (3) when it is in operation, and the temperature detection sensor (521) being electrically connected to the control module (5).
5. The electronic atomizer with a display function according to claim 1, characterized in that: A suction strain valve (41) is provided in the cigarette cartridge (4), and the suction strain valve (41) is connected to the atomization part (3). When the suction force applied by the smoker to the smoke duct (2) changes, the opening and closing degree of the suction strain valve (41) will change in accordance with the change of the suction force, and when the suction strain valve (41) is fully opened, the amount of the smoke oil flowing along the cigarette cartridge (4) to the atomization part (3) is adapted to the amount of the smoke oil that can be atomized when the atomization part (3) is running at full power.
6. The electronic atomizer with a display function according to claim 1, characterized in that: An oil suction piece (8) is provided between the oil outlet of the flue (2) and the atomization part (3), and the oil suction piece (8) is used to absorb part of the un-atomized smoke oil.
7. The electronic atomizer with display function according to claim 6, characterized in that: The oil-absorbing member (8) is provided with an oil-guiding cotton (9), which is connected to the atomizing portion (3). The oil-guiding cotton (9) has an oil-absorbing capacity greater than that of the oil-absorbing member (8), and is used to absorb un-atomized tobacco oil on the oil-absorbing member (8) to the atomizing portion (3).
8. The electronic atomizer with a display function according to claim 1, characterized in that: The cigarette cartridge (4) is provided with an oil filling port (10).