Electronic cigarette with double-taste adjusting function

By designing the vapor control valve and buttons, the dual-flavor e-cigarette achieves multi-flavor mixing and individual release, solving the problem of poor functional selectivity in existing technologies and improving ease of operation and consumer experience.

CN224112129UActive Publication Date: 2026-04-14深圳市禾晗科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
深圳市禾晗科技有限公司
Filing Date
2025-03-12
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing dual-flavor e-cigarettes cannot achieve multi-flavor mixing and have poor function selectivity, resulting in a low selection of function modes.

Method used

A dual-flavor adjustable electronic cigarette was designed. Through the cooperation of the air regulating valve and the button, the valve body air holes can be opened individually or together, and the left and right gas channels can be opened individually or together. Combined with the microphone gel and PCBA components, multiple flavors can be mixed and released individually.

Benefits of technology

It enables flexible switching and mixing of multiple flavors, improves functional selectivity, simplifies operation, and enhances the consumer experience.

✦ 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 double-taste adjustable electronic cigarette. The utility model relates to an electronic cigarette, which comprises an air adjusting valve, a microphone colloid, a button, a first taste atomization assembly and a second taste atomization assembly, the air adjusting valve is in relative sliding fit with the microphone colloid, the button is connected with the air adjusting valve, the air adjusting valve is provided with a valve body left air hole and a valve body right air hole, and the air adjusting valve and the microphone colloid are matched to form a left air flow channel and a right air flow channel. The first taste atomization assembly is in butt joint with the valve body left air hole and the left air flow channel, the second taste atomization assembly is in butt joint with the valve body right air hole and the right air flow channel, the air adjusting valve is pressed to slide to control the valve body left air hole and the valve body right air hole to be independently or jointly communicated, and the left air flow channel and the right air flow channel are synchronously controlled to be independently or jointly communicated. The position of the air adjusting valve is adjusted by operating one key, airflow of the atomizing cores with two different tastes is controlled to be conducted independently or jointly, switching of multiple single-taste or multi-taste mixed output modes is achieved, and the experience feeling of consumers is improved.
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Description

Technical Field

[0001] This utility model relates to the field of electronic cigarette technology, and in particular to an electronic cigarette with dual flavor adjustment. Background Technology

[0002] Currently, most dual-flavor e-cigarettes on the market operate with a single flavor working independently, and cannot be mixed with multiple flavors. Furthermore, the output ratio of different flavors cannot be adjusted, resulting in limited selectivity in functional modes. Utility Model Content

[0003] This invention provides an electronic cigarette with dual flavor adjustment, aiming to solve the problems of multiple flavors not being able to be mixed and poor functional selectivity in dual-flavor electronic cigarettes.

[0004] This utility model provides an electronic cigarette with dual flavor adjustment, including a vapor control valve, a microphone gel, a button, a first flavor atomizing component, and a second flavor atomizing component. The vapor control valve and the microphone gel slide relative to each other. The button is connected to the vapor control valve. The vapor control valve has a left air hole and a right air hole. The vapor control valve and the microphone gel cooperate to form a left gas flow channel and a right gas flow channel. The first flavor atomizing component is connected to the left air hole and the left gas flow channel, and the second flavor atomizing component is connected to the right air hole and the right gas flow channel. By sliding the vapor control valve through the button, the individual or joint conduction of the left and right air holes of the valve body can be controlled, and the individual or joint conduction of the left and right gas flow channels can be controlled simultaneously.

[0005] As a further improvement of this utility model, the microphone gel is provided with a left pore and a right pore, the left pore of the valve body is connected to the left pore of the gel, the right pore of the valve body is connected to the left pore of the gel, the left gas flow channel is connected to the left pore of the gel, the right gas flow channel is connected to the right pore of the gel, and the air inlets of the first flavor atomizing component and the second flavor atomizing component are respectively connected to the left pore and the right pore of the gel.

[0006] As a further improvement of this utility model, when the air regulating valve is moved to the left by the button, the left air hole of the valve body is connected to the left air hole of the colloid, and the right air hole of the valve body is misaligned with the right air hole of the colloid; when the air regulating valve is moved to the right by the button, the right air hole of the valve body is connected to the right air hole of the colloid, and the left air hole of the valve body is misaligned with the left air hole of the colloid; when the air regulating valve is moved in the center by the button, the left air hole of the valve body is connected to the left air hole of the colloid, and the right air hole of the valve body is connected to the right air hole of the colloid.

[0007] As a further improvement of this utility model, the microphone colloid is provided with a left microphone airway and a right microphone airway, and the air regulating valve is provided with a left microphone air groove and a right microphone air groove. The left microphone airway and the right microphone airway are respectively divided into multiple non-connected left microphone airway segments and right microphone airway segments. When the left microphone airway is connected to the left microphone airway, the multiple left microphone airway segments are connected to form a left gas flow channel. When the right microphone airway is connected to the right microphone airway, the multiple right microphone airway segments are connected to form a right gas flow channel.

[0008] As a further improvement of this utility model, the left microphone air slot includes a first left microphone air slot and a second left microphone air slot, which are parallel to each other. The right microphone air slot includes a first right microphone air slot and a second right microphone air slot, which are parallel to each other. When the air regulating valve is slid by the button, the relative positions of the first left microphone air slot, the second left microphone air slot and the left microphone air channel are switched, as are the relative positions of the first right microphone air slot, the second right microphone air slot and the right microphone air channel.

[0009] As a further improvement of this utility model, when the air regulating valve is turned in the center by the button, the first left microphone air slot is connected to the left microphone air channel, and the first right microphone air slot is connected to the right microphone air channel; when the air regulating valve is turned to the left by the button, the second left microphone air slot is connected to the left microphone air channel, and both the first and second right microphone air slots are offset from the right microphone air channel; when the air regulating valve is turned to the right by the button, the second right microphone air slot is connected to the right microphone air channel, and both the first and second left microphone air slots are offset from the left microphone air channel.

[0010] As a further improvement of this utility model, the dual-flavor electronic cigarette also includes a PCBA assembly, which includes a motherboard, output electrodes, and a microphone switch. The microphone switch and two sets of output electrodes are all connected to the motherboard. The left gas flow channel and the right gas flow channel converge to the microphone switch, and the two sets of output electrodes are respectively connected to the first flavor atomizing assembly and the second flavor atomizing assembly.

[0011] As a further improvement of this utility model, the PCBA assembly also includes a sub-board, a toggle switch, and a push-button switch. The sub-board is connected to the main board, and the toggle switch and push-button switch are connected to the sub-board. A push-button switch is provided on each of the left and right sides of the toggle switch. The toggle switch's lever is connected to the gas regulating valve. The push-button switches on both sides are respectively located within the coverage area of ​​the button. Pressing the push-button switches on the left and right sides controls the output power of the left and right sets of output electrodes respectively.

[0012] As a further improvement of this utility model, the main board is connected to the microphone gel, the air regulating valve is slidably connected between the microphone gel and the PCBA assembly, the main board is provided with a left air hole and a right air hole, the left air hole of the main board is connected to the left air hole of the valve body, and the right air hole of the main board is connected to the right air hole of the valve body.

[0013] As a further improvement of this utility model, the dual-flavor adjustable electronic cigarette also includes a mouthpiece, which has two suction holes, and the two suction holes are respectively connected to the air outlets of the first flavor atomizing component and the second flavor atomizing component.

[0014] The beneficial effects of this utility model are: by operating a button to adjust the position of the air regulating valve, the airflow of two different flavor atomizing cores can be controlled to be conducted individually or together, thereby realizing the switching of multiple single flavors or multi-flavor mixed output modes. It has strong function selectivity, is easy to operate, and greatly improves the consumer experience. Attached Figure Description

[0015] Figure 1 This is an overall structural diagram of the dual-flavor adjustable electronic cigarette of this utility model;

[0016] Figure 2 This is an exploded view of the structure of the dual-flavor adjustable electronic cigarette of this utility model;

[0017] Figure 3 This is a front structural cross-sectional view of the dual-flavor adjustable electronic cigarette of this utility model;

[0018] Figure 4 This is a side structural cross-sectional view of the dual-flavor adjustable electronic cigarette of this utility model;

[0019] Figure 5 This is the first internal structure diagram of the dual-flavor adjustable electronic cigarette of this utility model;

[0020] Figure 6 This is a second internal structure diagram of the dual-flavor adjustable electronic cigarette of this utility model;

[0021] Figure 7 This is a structural diagram of the PCBA assembly in this utility model;

[0022] Figure 8 This is a schematic diagram of the gas flow channel in this utility model;

[0023] Figure 9 This is a front view of the structure of the mixed flavor simultaneous working mode in this utility model;

[0024] Figure 10 This is a top view of the structure of the mixed flavor simultaneous working mode in this utility model;

[0025] Figure 11This is a front view of the structure of the single-flavor working mode on the left side of this utility model;

[0026] Figure 12 This is a top view of the structure of the single-flavor working mode on the left side of this utility model;

[0027] Figure 13 This is a front view of the structure of the single-flavor working mode on the right side of this utility model;

[0028] Figure 14 This is a top view of the structure of the single-flavor working mode on the right side of this utility model. Detailed Implementation

[0029] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments.

[0030] like Figures 1 to 6 As shown, this utility model discloses a dual-flavor adjustable electronic cigarette, including a gas regulating valve 1, a microphone gel 2, a button 3, a first flavor atomizing component 41, and a second flavor atomizing component 42. The gas regulating valve 1 and the microphone gel 2 slide relative to each other. The button 3 is connected to the gas regulating valve 1. The gas regulating valve 1 has a left air hole 11 and a right air hole 12. The gas regulating valve 1 and the microphone gel 2 cooperate to form a left gas flow channel and a right gas flow channel. The first flavor atomizing component 41 is connected to the left air hole 11 and the left gas flow channel, and the second flavor atomizing component 42 is connected to the right air hole 12 and the right gas flow channel. By sliding the gas regulating valve 1 with the button 3, the individual or joint conduction of the left air hole 11 and the right air hole 12 can be controlled, and the individual or joint conduction of the left gas flow channel and the right gas flow channel can be controlled simultaneously.

[0031] When the left air port 11 and right air port 12 of the air regulating valve 1 are open, they provide sufficient airflow to the first flavor atomizing component 41 and / or the second flavor atomizing component 42, delivering the atomized substances of different flavors to the mouthpiece 5. The left and right air channels serve as airflow sensing channels for the microphone switch 63, and both air channels are connected to the same microphone switch 63. When the left and / or right air channels are open, airflow flows through the microphone switch 63. After sensing the airflow, the microphone switch 63 sends a signal back to the main board 61, thereby controlling the heating of the first flavor atomizing component 41 and / or the second flavor atomizing component 42, thus releasing the corresponding flavor atomized substances. The left vent and left gas flow channel are opened or closed synchronously, as are the right vent and right gas flow channel. By sliding button 3, the gas regulating valve 1 can be moved synchronously, thereby controlling the gas regulating valve 1 to switch between different vent positions and flow channels to achieve the separate release or combined release of the two flavors.

[0032] The dual-flavor e-cigarette also includes a mouthpiece 5, which has two suction holes 51. The two suction holes 51 are respectively connected to the air outlets of the first flavor atomizing component 41 and the second flavor atomizing component 42. The two suction holes 51 of the mouthpiece 5 serve as release channels for two different flavors. When a flavor is atomized and released alone, it will be expelled from its corresponding suction hole 51. When the two flavors are mixed and released, the two suction holes 51 will expel atomized products of the two different flavors respectively.

[0033] The microphone gel 2 is provided with a left pore 21 and a right pore 22. The left pore 11 of the valve body is connected to the left pore 21 of the gel, and the right pore 12 of the valve body is connected to the left pore 21 of the gel. The left gas flow channel is connected to the left pore 21 of the gel, and the right gas flow channel is connected to the right pore 22 of the gel. The air inlets of the first flavor atomizing component 41 and the second flavor atomizing component 42 are respectively connected to the left pore 21 and the right pore 22 of the gel.

[0034] When the air regulating valve 1 is moved to the left by button 3, the left air hole 11 of the valve body is connected to the left air hole 21 of the colloid, and the right air hole 12 of the valve body is misaligned with the right air hole 22 of the colloid; when the air regulating valve 1 is moved to the right by button 3, the right air hole 12 of the valve body is connected to the right air hole 22 of the colloid, and the left air hole 11 of the valve body is misaligned with the left air hole 21 of the colloid; when the air regulating valve 1 is moved to the center by button 3, the left air hole 11 of the valve body is connected to the left air hole 21 of the colloid, and the right air hole 12 of the valve body is connected to the right air hole 22 of the colloid.

[0035] When the air regulating valve 1 slides relative to the microphone gel 2, it causes the left air hole 11 and the right air hole 12 of the valve body to slide relative to the left air hole 21 and the right air hole 22 of the gel, thereby controlling their mutual alignment or misalignment, and thus realizing the opening or closing of the holes. The distance between the left air hole 11 and the right air hole 12 of the valve body can be designed according to the diameter of the left air hole 21 and the right air hole 22 of the gel. The diameter of the left air hole 21 and the right air hole 22 of the gel is much larger than that of the left air hole 11 and the right air hole 12 of the valve body, so as to sufficiently cover the moving position of the left air hole 11 and the right air hole 12 of the valve body. Therefore, when the air regulating valve 1 is centered, it can be ensured that the left air hole 11 of the valve body is exactly aligned with the left air hole 21 of the colloid, and the right air hole 12 of the valve body is exactly aligned with the right air hole 22 of the colloid. When the air regulating valve 1 is close to the left side, the left air hole 11 of the valve body moves to the left but is still within the coverage area of ​​the left air hole 21 of the colloid. At this time, the left air hole 11 of the valve body remains open, and at the same time, after the right air hole 12 of the valve body moves to the left, it is just offset from the right air hole 22 of the colloid, thus achieving the effect of closing the right air hole 12 of the valve body. When the air regulating valve 1 is close to the right side, the right air hole 12 of the valve body moves to the right but is still within the coverage area of ​​the right air hole 22 of the colloid. At this time, the right air hole 12 of the valve body remains open, and at the same time, after the left air hole 11 of the valve body moves to the right, it is just offset from the left air hole 21 of the colloid, thus achieving the effect of closing the left air hole 11 of the valve body.

[0036] Combination Figure 8As shown, the microphone colloid 2 is provided with a left microphone airway 23 and a right microphone airway 24, and the air regulating valve 1 is provided with a left microphone air groove 13 and a right microphone air groove 14. The left microphone airway 23 and the right microphone airway 24 are respectively divided into multiple non-connected left microphone airway segments 25 and right microphone airway segments 26. When the left microphone airway 23 is connected to the other left microphone airway segment 23, the multiple left microphone airway segments 25 are connected to form a left gas flow channel. When the right microphone airway 24 is connected to the other right microphone airway segment 26, the multiple right microphone airway segments 26 are connected to form a right gas flow channel.

[0037] The left microphone air slot 13 includes a first left microphone air slot 131 and a second left microphone air slot 132, which are parallel to each other. The right microphone air slot 14 includes a first right microphone air slot 141 and a second right microphone air slot 142, which are parallel to each other. When the air regulating valve 1 is slid by the button 3, the relative positions of the first left microphone air slot 131, the second left microphone air slot 132 and the left microphone air passage 23 are switched, as are the relative positions of the first right microphone air slot 141, the second right microphone air slot 142 and the right microphone air passage 24.

[0038] When the air regulating valve 1 is turned to the center by button 3, the first left microphone air slot 131 is connected to the left microphone air passage 23, and the first right microphone air slot 141 is connected to the right microphone air passage 24; when the air regulating valve 1 is turned to the left by button 3, the second left microphone air slot 132 is connected to the left microphone air passage 23, and both the first right microphone air slot 141 and the second right microphone air slot 142 are offset from the right microphone air passage 24; when the air regulating valve 1 is turned to the right by button 3, the second right microphone air slot 142 is connected to the right microphone air passage 24, and both the first left microphone air slot 131 and the second left microphone air slot 132 are offset from the left microphone air passage 23.

[0039] The multiple left microphone airway segments 25 and multiple right microphone airway segments 26 are not interconnected. Communication between these segments is only achieved when the left microphone air slot 13 and right microphone air slot 14 are connected. Therefore, the positional relationship between the left microphone air slot 13 and right microphone air slot 14 and the multiple left microphone airway segments 25 and 26 can be controlled to adjust the flow of gas in the left and right channels. When designing the spacing between the first left microphone air slot 131 and the second left microphone air slot 132, and the first right microphone air slot 141 and the second right microphone air slot 142, it can be adapted according to the positional relationship of the multiple left microphone airway segments 25 and 26. For example... Figure 6As shown, the first left microphone air slot 131 and the first right microphone air slot 141 are located outside the air regulating valve 1, and the second left microphone air slot 132 and the second right microphone air slot 142 are located inside the air regulating valve 1. When the air regulating valve 1 is centered, the first left microphone air slot 131 and the first right microphone air slot 141 are respectively connected to multiple left microphone airway segments 25 and multiple right microphone airway segments 26. After the air regulating valve 1 is moved to the left, the multiple left microphone airway segments 25 are connected to the second left microphone airway segments 26. When slot 132 is used to open the left gas channel, the first right microphone gas slot 141 and the second right microphone gas slot 142 are both staggered from the multiple right microphone gas channel segments 26, and the right gas channel is disconnected. After the gas regulating valve 1 is moved to the right, the multiple right microphone gas channel segments 26 are connected to the second right microphone gas slot 142 to open the right gas channel. At this time, the first left microphone gas slot 131 and the second left microphone gas slot 132 are both staggered from the multiple left microphone gas channel segments 25, and the left gas channel is disconnected.

[0040] like Figure 7 As shown, the dual-flavor electronic cigarette also includes a PCBA assembly 6. The PCBA assembly 6 includes a main board 61, output electrodes 62, and a microphone switch 63. The microphone switch 63 and the two sets of output electrodes 62 are all connected to the main board 61. The left and right gas channels converge at the microphone switch 63, and the two sets of output electrodes 62 are respectively connected to the first flavor atomizing assembly 41 and the second flavor atomizing assembly 42. A display screen 610 can also be installed on the main board 61, and the display screen 610 can be protected by a lens 69.

[0041] In existing dual-flavor electronic cigarette structures, each flavor's atomizing core 43 requires a corresponding microphone switch 63, which increases the number of components and costs. In this structure, the left and right gas channels converge at the microphone switch 63. When the microphone switch 63 senses the airflow, it initiates the smoking action in single-flavor or multi-flavor modes. Only one microphone switch 63 is needed to initiate smoking, reducing component costs. When the microphone switch 63 senses the airflow, the main board 61 controls the output electrode 62 to output current, heating the first flavor atomizing component 41 and / or the second flavor atomizing component 42 to release the corresponding flavor's atomized material.

[0042] PCBA component 6 also includes a sub-board 64, a toggle switch 65, and a push-button switch 66. The sub-board 64 is connected to the main board 61. The toggle switch 65 and the push-button switch 66 are connected to the sub-board 64. There is a push-button switch 66 on each side of the toggle switch 65. The toggle switch 65 is connected to the gas regulating valve 1. The push-button switches 66 on both sides are located within the coverage area of ​​the button 3. Pressing the push-button switches 66 on both sides controls the output power of the left and right sets of output electrodes 62 respectively.

[0043] The toggle switch 65 has three positions, corresponding to the left, center, and right positions of button 3. Button 3 pushes the air regulating valve 1 to the corresponding position and then stops. The two flavor atomizing components are switched on or off based on the corresponding positions of the left air hole 11, right air hole 12, left microphone air slot 13, and right microphone air slot 14 on the air regulating valve 1. The left-side button switch 66 controls the left-side output electrode 62, and the right-side button switch 66 controls the right-side output electrode 62. Pressing the left side of button 3 engages the left-side button switch 66, and the depth of the press controls the power of the left-side output electrode 62, thus controlling the output volume of the corresponding flavor of the left atomizing component. Pressing the right side of button 3 engages the right-side button switch 66, and the depth of the press controls the power of the right-side output electrode 62, thus controlling the output volume of the corresponding flavor of the right-side atomizing component. Button 3 is made of plastic, allowing for elastic bending and resetting upon pressing.

[0044] The main board 61 is connected to the microphone gel 2. The air regulating valve 1 is slidably connected between the microphone gel 2 and the PCBA assembly 6. The main board 61 has a main board left air hole 67 and a main board right air hole 68. The main board left air hole 67 is connected to the valve body left air hole 11, and the main board right air hole 68 is connected to the valve body right air hole 12. After the main board 61 is connected to the microphone gel 2, the microphone switch 63 set on the main board 61 is also connected to the convergence point of the left and right air flow channels on the microphone gel 2. After docking, the main board left air hole 67 is aligned with the gel's left air hole 21, and the main board right air hole 68 is aligned with the gel's right air hole 22. When the air regulating valve 1 slides, the valve body left air hole 11 and valve body right air hole 12 can also be aligned or misaligned relative to the main board left air hole 67 and main board right air hole 68 to realize the conduction or disconnection of the corresponding flavor airflow.

[0045] Both the first flavor atomizing component 41 and the second flavor atomizing component 42 include an atomizing core 43 and an oil-retaining cotton 44. The oil-retaining cotton 44 is wrapped around the atomizing core 43. The output electrode 62 is connected to the atomizing core 43. By controlling the power of the output electrode 62, the atomizing core 43 heats the oil-retaining cotton 44 to release the corresponding flavor of atomized material. The dual-flavor adjustable electronic cigarette structure also includes an oil cup 71, an oil cup colloid 72, and an atomizing absorbent cotton 73. The oil cup 71 has two chambers for installing the first flavor atomizing component 41 and the second flavor atomizing component 42, respectively. Both the upper and lower ends of the oil cup 71 are sealed with oil cup colloid 72. An atomizing absorbent cotton 73 is connected between the air outlet of the first flavor atomizing component 41 and the second flavor atomizing component 42 and the mouthpiece 5 to absorb the oil vapor in the atomized product and prevent the oil vapor from being discharged from the mouthpiece 5, which would affect the taste. The air inlets of the first flavor atomizing component 41 and the second flavor atomizing component 42 are also equipped with atomizing absorbent cotton 73 to prevent the oil vapor from seeping out from below.

[0046] The dual-flavor adjustable electronic cigarette structure also includes a battery 74, a battery bracket 75, a battery mainboard 76, and a battery absorbent cotton 77. The battery 74 and battery mainboard 76 are mounted on the battery bracket 75. The battery mainboard 76 is connected to the mainboard 61 of the PVBA component for controlling and monitoring the battery 74. The battery absorbent cotton 77 is positioned between the battery 74 and the air inlets of the first-flavor atomizing component 41 and the second-flavor atomizing component 42 to prevent oil and vapor from seeping into the battery 74 and damaging it. The dual-flavor adjustable electronic cigarette structure also includes a housing 8, which houses all the internal components of the electronic cigarette.

[0047] The working mode of this utility model of a dual-flavor adjustable electronic cigarette is as follows:

[0048] (1) such as Figure 9 and Figure 10 As shown, in the simultaneous working mixed flavor mode: when the plastic button 3 is moved to the middle position, the air regulating valve 1 and the toggle switch 65 are moved to the middle position. At this time, it is a dual flavor working mode. The left air hole 11 and the right air hole 12 of the air regulating valve 1 are opened, and the left and right air channels are also opened at the same time. Pressing the left and right elastic buttons of the plastic button 3 can adjust the output power of the left / right atomizing core 43 to achieve the left and right ratio of mixed flavors.

[0049] (2) For example Figure 11 and Figure 12 As shown, in the single-flavor working mode on the left: when the plastic button 3 is moved to the left position, it drives the air regulating valve 1 and the toggle switch 65 to the left position; at this time, it is the single-flavor working mode on the left. The left air hole 11 of the air regulating valve 1 is open and the right air hole 12 of the valve body is closed. The left gas flow channel is open and the right gas flow channel is closed. The plastic button 3 is still in the pressing area of ​​the button switch 66 of the PCBA assembly 6. Pressing the left elastic button of the plastic button 3 can adjust the output power of the left atomizing core 43, thereby realizing the power adjustment of the left atomizing core 43.

[0050] (3) such as Figure 13 and Figure 14 As shown, in the single-flavor working mode on the right: when the plastic button 3 is moved to the right position, it moves the air regulating valve 1 and the toggle switch 65 to the right position; at this time, it is the single-flavor working mode on the right. The right air hole 12 of the air regulating valve 1 is open, the left air hole 11 of the valve body is closed, the right gas flow channel is open, and the left gas flow channel is closed; the plastic button 3 is still in the pressing area of ​​the PCBA button switch 66; pressing the right elastic button of the plastic button 3 can adjust the output power of the right atomizer core 43, thereby realizing the power adjustment of the right atomizer core 43.

[0051] This utility model features a dual-flavor electronic cigarette with a four-in-one combination button structure, which differs from conventional dual-flavor electronic cigarettes on the market. This structure incorporates a four-in-one combination button system, where a single main button can simultaneously control four product functional states (microphone airflow switching, smoking airflow switching, left and right atomizer core 43 operation switching, and left and right atomizer core 43 power adjustment). It can also switch between three operating modes (left atomizer core 43 working alone + power adjustment / left and right atomizer cores 43 working simultaneously + power ratio adjustment / right atomizer core 43 working alone + power adjustment). The advantages of this structure lie in its ability to simultaneously control four product functional states (microphone airflow switching, smoking airflow switching, left and right atomizer core 43 operation switching, and left and right atomizer core 43 power adjustment) with a single main button; it also saves product costs, simplifies operation, and significantly improves the consumer experience.

[0052] The above description, in conjunction with specific preferred embodiments, provides a further detailed explanation of the present invention. It should not be construed that the specific implementation of the present invention is limited to these descriptions. For those skilled in the art, various simple deductions or substitutions can be made without departing from the concept of the present invention, and all such modifications and substitutions should be considered within the protection scope of the present invention.

Claims

1. An electronic cigarette with dual flavor adjustment, characterized in that, The device includes a vapor regulator, a microphone gel, a button, a first flavor atomizing component, and a second flavor atomizing component. The vapor regulator slides relative to the microphone gel. The button is connected to the vapor regulator. The vapor regulator has a left air hole and a right air hole. The vapor regulator and the microphone gel cooperate to form a left gas flow channel and a right gas flow channel. The first flavor atomizing component is connected to the left air hole and the left gas flow channel of the valve body, and the second flavor atomizing component is connected to the right air hole and the right gas flow channel of the valve body. By sliding the vapor regulator through the button, the individual or joint conduction of the left and right air holes of the valve body can be controlled, and the individual or joint conduction of the left and right gas flow channels can be controlled simultaneously.

2. The dual-flavor electronic cigarette according to claim 1, characterized in that, The microphone gel has a left pore and a right pore. The left pore of the valve body is connected to the left pore of the gel, and the right pore of the valve body is connected to the left pore of the gel. The left gas flow channel is connected to the left pore of the gel, and the right gas flow channel is connected to the right pore of the gel. The air inlets of the first flavor atomizing component and the second flavor atomizing component are connected to the left pore and the right pore of the gel, respectively.

3. The dual-flavor electronic cigarette according to claim 2, characterized in that, When the air regulating valve is moved to the left by the button, the left air hole of the valve body is connected to the left air hole of the colloid, and the right air hole of the valve body is misaligned with the right air hole of the colloid; when the air regulating valve is moved to the right by the button, the right air hole of the valve body is connected to the right air hole of the colloid, and the left air hole of the valve body is misaligned with the left air hole of the colloid; when the air regulating valve is moved to the center by the button, the left air hole of the valve body is connected to the left air hole of the colloid, and the right air hole of the valve body is connected to the right air hole of the colloid.

4. The dual-flavor electronic cigarette according to claim 1, characterized in that, The microphone colloid has a left microphone airway and a right microphone airway, and the air regulating valve has a left microphone air groove and a right microphone air groove. The left microphone airway and the right microphone airway are respectively divided into multiple non-connected left microphone airway segments and right microphone airway segments. When the left microphone airway is connected to the left microphone airway, the multiple left microphone airway segments are connected to form a left gas flow channel. When the right microphone airway is connected to the right microphone airway, the multiple right microphone airway segments are connected to form a right gas flow channel.

5. The dual-flavor electronic cigarette according to claim 4, characterized in that, The left microphone air slot includes a first left microphone air slot and a second left microphone air slot, which are parallel to each other. The right microphone air slot includes a first right microphone air slot and a second right microphone air slot, which are also parallel to each other. When the air regulating valve is slid by the button, the relative positions of the first left microphone air slot, the second left microphone air slot and the left microphone air channel are switched, as are the relative positions of the first right microphone air slot, the second right microphone air slot and the right microphone air channel.

6. The dual-flavor electronic cigarette according to claim 5, characterized in that, When the air regulating valve is moved to the center by the button, the first left microphone air slot aligns with the left microphone air passage, and the first right microphone air slot aligns with the right microphone air passage; when the air regulating valve is moved to the left by the button, the second left microphone air slot aligns with the left microphone air passage, and both the first and second right microphone air slots are offset from the right microphone air passage; when the air regulating valve is moved to the right by the button, the second right microphone air slot aligns with the right microphone air passage, and both the first and second left microphone air slots are offset from the left microphone air passage.

7. The dual-flavor electronic cigarette according to claim 1, characterized in that, It also includes a PCBA assembly, which includes a motherboard, output electrodes, and a microphone switch. The microphone switch and two sets of output electrodes are connected to the motherboard. The left gas flow channel and the right gas flow channel converge to the microphone switch, and the two sets of output electrodes are respectively connected to the first flavor atomizing assembly and the second flavor atomizing assembly.

8. The dual-flavor electronic cigarette according to claim 7, characterized in that, The PCBA assembly also includes a sub-board, a toggle switch, and a push-button switch. The sub-board is connected to the main board. The toggle switch and push-button switch are connected to the sub-board. Each side of the toggle switch has a push-button switch. The toggle switch's lever is connected to the gas regulating valve. The push-button switches on both sides are located within the button's coverage area. Pressing the push-button switches on both sides controls the output power of the left and right sets of output electrodes, respectively.

9. The dual-flavor electronic cigarette according to claim 7, characterized in that, The mainboard is connected to the microphone colloid, and the air regulating valve is slidably connected between the microphone colloid and the PCBA assembly. The mainboard has a left air hole and a right air hole. The left air hole of the mainboard is connected to the left air hole of the valve body, and the right air hole of the mainboard is connected to the right air hole of the valve body.

10. The dual-flavor electronic cigarette according to claim 1, characterized in that, It also includes a mouthpiece, which has two suction holes, and the two suction holes are respectively connected to the air outlets of the first flavor atomizing component and the second flavor atomizing component.