Multi-tar-cup electronic cigarette with wiring structure
By adopting the design of upper and lower wiring silicone and diaphragm grooves in e-cigarettes, the problem of unreasonable wiring structure in dual-oil-tank e-cigarettes has been solved, achieving stable electrical connection and space utilization efficiency, improving the processing experience and enterprise competitiveness.
Patent Information
- Application Number
- CN202422805102.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-18
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2034-11-18
AI Technical Summary
The wiring structure design of existing dual-tank e-cigarettes is unreasonable, which leads to the occupation of internal space in the lower tank and the possibility of oil leakage, affecting the processing experience and the competitiveness of enterprises.
The design employs upper and lower silicone wiring. Through the setting of upper and lower wiring diaphragms and grooves, the pins of the upper and lower atomizers are stably fixed, avoiding the wiring from occupying the internal space of the lower oil cup atomizing component. The wires are fixed by friction, ensuring stable electrical connection.
This effectively avoids the wiring occupying the internal space of the lower oil cup atomizing component, improves the stability of electrical connections and processing efficiency, reduces the risk of instability between the wires and controller components, and enhances the company's competitiveness.
Smart Images

Figure CN223787126U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electronic cigarette technology, specifically to a multi-cup electronic cigarette with a wiring structure. Background Technology
[0002] An electronic cigarette is a device that heats a liquid e-liquid and atomizes it into an aerosol using a heating coil. Although small, this product involves numerous disciplines, including fluid mechanics, electronic control technology, materials science, toxicology, and ergonomics, making it a high-tech product integrating multiple fields. Electronic cigarettes vaporize a liquid containing nicotine through an atomizer for the user to inhale. They contain e-liquid and an atomizing coil that converts the liquid nicotine into vapor, providing a sensation similar to smoking, allowing the user to "exhale clouds of vapor."
[0003] With the increasing demand for diverse flavors, dual-tank e-cigarettes have emerged on the market, capable of storing two different flavors of e-liquid, allowing users to switch between or mix flavors to satisfy their taste preferences. However, during the manufacturing process, the dual-tank design requires each tank to operate with an independent atomizing coil assembly. Most existing dual-tank systems are stacked vertically, with the atomization channels in the upper and lower tanks connected. This necessitates the installation of a wiring channel in the lower tank to accommodate the heating coil in the upper tank, which takes up internal space in the lower tank and increases the risk of leakage from the wiring channel or the connection point between the wiring channel and the lower tank. This results in a poor manufacturing experience and hinders the company's competitiveness. Utility Model Content
[0004] To address the problems in the existing technology, this utility model provides a multi-cup electronic cigarette with a wiring structure, which solves the problem of unreasonable design in the wiring structure of existing electronic cigarettes.
[0005] This utility model discloses a multi-cup electronic cigarette with a wiring structure, including an electronic cigarette shell. Inside the shell are an upper oil cup atomizing component, an upper wiring silicone, a lower oil cup atomizing component, and a controller component. The upper wiring silicone is located below the upper oil cup atomizing component. The upper oil cup atomizing component has an upper atomizing channel, within which an upper atomizer component is located. The upper atomizer component has upper wiring pins. The upper wiring silicone has an upper suction hole that mates with the upper atomizing channel. A first upper wiring hole is located on the side of the upper suction hole, and an upper wiring diaphragm is located within the first upper wiring hole. The upper wiring diaphragm and the upper wiring silicone are integrally injection molded, and the upper wiring diaphragm can generate frictional force to fix the upper wiring pins.
[0006] In a further improvement, the upper wiring silicone is provided with a second upper wiring hole, and an upper wiring diaphragm is also provided in the second upper wiring hole. The upper wiring pins pass through the upper wiring diaphragm of the first upper wiring hole and the upper wiring diaphragm of the second upper wiring hole in sequence.
[0007] This utility model is further improved by providing a first upper wiring groove on the upper wiring silicone to cooperate with and position the upper wiring pin. The two ends of the first upper wiring groove are respectively connected to the first upper wiring hole and the second upper wiring hole. The first upper wiring groove can make the upper wiring pin more stable when assembled on the upper wiring silicone.
[0008] The present invention is further improved by providing a second upper wiring groove on the upper wiring silicone, with a first wire outlet at one end of the second upper wiring groove and the other end of the second upper wiring groove connected to the second upper wiring hole.
[0009] The present invention is further improved in that the routing direction of the first upper routing hole is downward and the routing direction of the second upper routing hole is upward. The first upper routing groove is disposed on the lower surface of the upper routing silicone and is disposed between the first upper routing hole and the second upper routing hole. The second upper routing groove is disposed on the upper surface of the upper routing silicone.
[0010] This utility model is further improved by including a lower wiring silicone, a lower atomization channel in the lower oil cup atomization assembly, the upper end of the lower atomization channel communicating with the upper atomization channel, a lower atomizer assembly in the lower atomization channel, a lower wiring pin on the lower atomizer assembly, a lower wiring silicone with a lower suction hole that cooperates with the lower atomization channel, a first lower wiring hole on the side of the lower suction hole, a lower wiring diaphragm in the first lower wiring hole, the lower wiring diaphragm and the lower wiring silicone are integrally injection molded, and the lower wiring diaphragm can generate frictional force to fix the lower wiring pin.
[0011] In a further improvement, the lower wiring silicone is provided with a second lower wiring hole, and a lower wiring diaphragm is also provided in the second lower wiring hole. The lower wiring pins pass through the lower wiring diaphragm of the first lower wiring hole and the lower wiring diaphragm of the second lower wiring hole in sequence.
[0012] This utility model is further improved by providing a first lower wiring groove on the lower wiring silicone to cooperate with and position the lower wiring pin. The two ends of the first lower wiring groove are respectively connected to the first lower wiring hole and the second lower wiring hole. The first lower wiring groove can make the lower wiring pin more stable when mounted on the lower wiring silicone. A second lower wiring groove is also provided on the lower wiring silicone. One end of the second lower wiring groove is provided with a second cable outlet, and the other end of the second lower wiring groove is connected to the second lower wiring hole. The wiring direction of the first lower wiring hole is downward, and the wiring direction of the second lower wiring hole is upward. The first lower wiring groove is located on the lower surface of the lower wiring silicone and is located between the first lower wiring hole and the second lower wiring hole. The second lower wiring groove is located on the upper surface of the lower wiring silicone.
[0013] This utility model is further improved by setting the controller assembly on the same side of the upper oil cup atomizing assembly and the lower oil cup atomizing assembly.
[0014] This utility model is further improved by including a lower oil cup atomizing component, a lower oil storage cotton and an upper sealing silicone, with the upper sealing silicone and the upper wiring silicone being injection molded as a single unit.
[0015] Compared with the prior art, the beneficial effects of this utility model are as follows: This utility model provides a multi-cup electronic cigarette with a wiring structure. This structure effectively solves the problem of unreasonable design in the wiring structures of existing electronic cigarettes. By using this product structure, during assembly, the upper wiring pins are pierced through the upper wiring diaphragm in the first upper wiring hole to make an electrical connection with the controller assembly. The upper wiring pins do not need to pass through the lower cup atomizing assembly, effectively avoiding the wiring occupying the internal space of the lower cup atomizing assembly. Furthermore, the upper wiring diaphragm provides a certain frictional force to fix the wires, preventing unstable electrical connection between the wires and the controller assembly, which is beneficial to improving the company's competitiveness. Attached Figure Description
[0016] To more clearly illustrate the solutions in this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0017] Figure 1 A schematic diagram of the overall structure of a dual-oil-cup electronic cigarette with a highly efficient oil-filling structure;
[0018] Figure 2 This is a schematic diagram of the exploded structure of the dual-oil-cup electronic cigarette with a highly efficient oil-filling structure;
[0019] Figure 3 This is a top-view schematic diagram of the silicone cable routing structure.
[0020] Figure 4 This is a schematic diagram of the silicone tube with top wiring from an upward angle.
[0021] Figure 5 A top-down view diagram of the silicone substrate structure for the under-wire routing.
[0022] Figure 6 This is a schematic diagram of the silicone tube underrun structure viewed from above. Detailed Implementation
[0023] Unless otherwise defined, all technical and scientific terms used in this invention have the same meaning as commonly understood by one of ordinary skill in the art. The terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The terms "comprising" and "having," and any variations thereof, in the specification, claims, and accompanying drawings are intended to cover non-exclusive inclusion. The terms "first," "second," etc., in the specification, claims, and accompanying drawings are used to distinguish different objects, not to describe a particular order.
[0024] In this invention, the reference to "embodiment" means that a specific feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this invention. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor is it a mutually exclusive, independent, or alternative embodiment to other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described in this invention can be combined with other embodiments.
[0025] To enable those skilled in the art to better understand the present invention, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.
[0026] like Figure 1-6 As shown, this utility model discloses a multi-cup electronic cigarette with a wiring structure, including an electronic cigarette shell 1. The electronic cigarette shell 1 contains an upper oil cup atomizing component 2, an upper wiring silicone 3, a lower oil cup atomizing component, and a controller component. The upper wiring silicone 3 is located below the upper oil cup atomizing component 2. The upper oil cup atomizing component 2 has an upper atomizing channel, and an upper atomizer component is located within the upper atomizing channel. The upper atomizer component has upper wiring pins. The upper wiring silicone 3 has an upper suction hole 31 that cooperates with the upper atomizing channel. A first upper wiring hole 32 is located on the side of the upper suction hole 31. An upper wiring diaphragm 33 is located within the first upper wiring hole 32. The upper wiring diaphragm 33 and the upper wiring silicone 3 are integrally injection molded. The upper wiring diaphragm 33 can generate frictional force to fix the upper wiring pins.
[0027] With the upper wiring silicone 3, the upper wiring pins do not need to pass through the lower oil cup atomizing component for wiring, effectively avoiding the situation where the wiring occupies the internal space of the lower oil cup atomizing component. During installation, the upper wiring pins only need to be pierced through the upper wiring diaphragm 33 in the first upper wiring hole 32 to make an electrical connection with the controller component. Furthermore, the upper wiring diaphragm 33 provides a certain friction to fix the wire, preventing the electrical connection position between the wire and the controller component from being unstable.
[0028] Furthermore, since the upper wiring silicone 3 is made of silicone, the upper wiring diaphragm 33 is also elastic. After puncture, the diaphragm will stick tightly to the outer wall of the wire, effectively preventing leakage and ensuring a certain degree of airtightness, preventing impurities from entering the atomization channel, thus improving processing efficiency and the processing experience of the processing personnel.
[0029] The upper wiring silicone 3 is also provided with a second upper wiring hole 34, and an upper wiring diaphragm 33 is also provided in the second upper wiring hole 34. The upper wiring pins are sequentially passed through the upper wiring diaphragm 33 of the first upper wiring hole 32 and the upper wiring diaphragm 33 of the second upper wiring hole 34.
[0030] The second upper wiring hole 34 allows the upper axis pin to pass through two wiring holes, further improving the stability of the upper wiring pin installation position and preventing it from being pulled by external forces, which would affect the normal operation of the upper atomizer assembly.
[0031] The upper wiring silicone 3 is provided with a first upper wiring groove 35 that is positioned in conjunction with the upper wiring pin. The two ends of the first upper wiring groove 35 are respectively connected to the first upper wiring hole 32 and the second upper wiring hole 34.
[0032] By setting the first upper wiring slot 35, the upper wiring pins can be more stably mounted on the upper wiring silicone 3.
[0033] Obviously, the connection between the two ends of the first upper wiring slot 35 and the first upper wiring hole 32 and the second upper wiring hole 34 respectively, which improves the stability of the upper wiring pin assembly, is only the optimal solution of this scheme. It is not limited to this structure. A structure in which the two ends of the first upper wiring slot 35 are not connected can also be adopted, which can achieve the same effect as the above scheme.
[0034] The upper wiring silicone 3 is also provided with a second upper wiring groove 36. One end of the second upper wiring groove 36 is provided with a first wire outlet, and the other end of the second upper wiring groove 36 is connected to the second upper wiring hole 34.
[0035] The second upper cable tray 36 can limit the movement of the cable, improving the accuracy of the installation process for the processing personnel.
[0036] The routing direction of the first upper routing hole 32 is downward, the routing direction of the second upper routing hole 34 is upward, the first upper routing groove 35 is disposed on the lower surface of the upper routing silicone 3, and the first upper routing groove 35 is disposed between the first upper routing hole 32 and the second upper routing hole 34, and the second upper routing groove 36 is disposed on the upper surface of the upper routing silicone 3.
[0037] With this setup, the wires pass through the first upper wiring hole 32 and the second upper wiring hole 34 in sequence, which can effectively improve the stability of the position of the upper wiring pins on the upper wiring silicone 3 and make installation more convenient.
[0038] Obviously, the routing direction of the first upper routing hole 32 is downward and the routing direction of the second upper routing hole 34 is upward. It is not limited to the above one, and it can be any direction, as long as the routing pins pass through the first upper routing hole 32 and the second upper routing hole 34 in sequence.
[0039] The multi-cup electronic cigarette with wiring structure also includes a lower wiring silicone 4. The lower atomizing component is provided with a lower atomizing channel. The upper end of the lower atomizing channel is connected to the upper atomizing channel. A lower atomizer component 5 is provided in the lower atomizer component 5. A lower wiring pin is provided on the lower atomizer component 5. The lower wiring silicone 4 is provided with a lower suction hole 41 that cooperates with the lower atomizing channel. A first lower wiring hole 42 is provided on the side of the lower suction hole 41. A lower wiring diaphragm 43 is provided in the first lower wiring hole 42. The lower wiring diaphragm 43 and the lower wiring silicone 4 are integrally injection molded.
[0040] The lower wiring silicone 4 facilitates the wiring of the lower atomizer assembly 5. The lower wiring diaphragm 43 effectively generates friction to fix the lower wiring pins, preventing them from being pulled excessively and affecting the normal operation of the lower atomizer assembly 5.
[0041] The bottom trace silicone 4 is also provided with a second bottom trace hole 44, and a bottom trace diaphragm 43 is also provided in the second bottom trace hole 44. The bottom trace pins are sequentially passed through the bottom trace diaphragm 43 of the first bottom trace hole 42 and the bottom trace diaphragm 43 of the second bottom trace hole 44.
[0042] The second lower wiring hole 44 can further improve the stability of the lower wiring silicone 4 in fixing the lower wiring pin.
[0043] The thickness range of both the upper wiring diaphragm 33 and the lower wiring diaphragm 43 is 0.01-0.2mm. This thickness range allows for easy piercing while effectively securing the wire.
[0044] The lower wiring silicone 4 is provided with a first lower wiring groove 45 that is positioned to cooperate with the lower wiring pin. The two ends of the first lower wiring groove 45 are respectively connected to the first lower wiring hole 42 and the second lower wiring hole 44. The first lower wiring groove 45 can make the lower wiring pin more stable when mounted on the lower wiring silicone 4. The lower wiring silicone 4 is also provided with a second lower wiring groove 46. One end of the second lower wiring groove 46 is provided with a second cable outlet, and the other end of the second lower wiring groove 46 is connected to the second lower wiring hole 44. The wiring direction of the first lower wiring hole 42 is downward, and the wiring direction of the second lower wiring hole 44 is upward. The first lower wiring groove 45 is located on the lower surface of the lower wiring silicone 4 and is located between the first lower wiring hole 42 and the second lower wiring hole 44. The second lower wiring groove 46 is located on the upper surface of the lower wiring silicone 4.
[0045] By setting the first lower wiring slot 45 and the second lower wiring slot 46, the relative fixation of the position between the lower wiring silicone 4 and the lower wiring pin can be further improved.
[0046] The controller assembly is located on the same side of the upper oil cup atomizing assembly 2 and the lower oil cup atomizing assembly. This arrangement can effectively shorten the length required for the upper and lower cable pins to be electrically connected to the controller assembly, reduce the cost of the cable, and facilitate the electrical connection of the pins.
[0047] The controller assembly includes a main control board 8, a power supply battery 9, and a microphone assembly 10.
[0048] The lower oil cup atomizing component also includes a lower oil cup cylinder 6, a lower oil storage cotton 7, and an upper oil sealing silicone, which is injection molded as a single piece with the upper wiring silicone 3.
[0049] By using injection molding as a single unit, the number of parts can be effectively reduced, improving the assembly efficiency of processing personnel.
[0050] As can be seen from the above, the beneficial effects of this utility model are: by adopting its mechanism, it can effectively solve the problem of unreasonable design in the wiring structure of electronic cigarettes in the prior art. By using this product structure, during assembly, the upper wiring pin is pierced through the upper wiring diaphragm 33 in the first upper wiring hole 32 to make an electrical connection with the controller assembly. The upper wiring pin does not need to pass through the lower oil cup atomizing assembly for wiring, which effectively avoids the wiring occupying the internal space of the lower oil cup atomizing assembly. Furthermore, the setting of the upper wiring diaphragm 33 can provide a certain friction force to fix the wire, avoiding the instability of the electrical connection position between the wire and the controller assembly, which is conducive to improving the competitiveness of enterprises.
[0051] The specific embodiments described above are preferred embodiments of this utility model, and are not intended to limit the specific scope of this utility model. The scope of this utility model includes but is not limited to the specific embodiments described above. All equivalent changes made in accordance with this utility model are within the protection scope of this utility model.
Claims
1. A multi-oil cup electronic cigarette with a wiring structure, characterized in that: The electronic cigarette shell is internally provided with an upper oil cup atomization assembly, upper wire leading silica gel, a lower oil cup atomization assembly and a controller assembly, the upper wire leading silica gel is arranged below the upper oil cup atomization assembly, the upper oil cup atomization assembly is provided with an upper atomization channel, the upper atomization channel is internally provided with an upper atomizer assembly, the upper atomizer assembly is provided with upper wire leading pins, the upper wire leading silica gel is provided with an upper suction hole matched with the upper atomization channel, the upper suction hole is provided with a first upper wire leading hole at the side, the first upper wire leading hole is provided with an upper wire leading diaphragm, the upper wire leading diaphragm is integrally formed with the upper wire leading silica gel by injection molding, and the upper wire leading diaphragm can generate frictional force to fix the upper wire leading pins.
2. The multi-oil cup electronic cigarette with a wiring structure according to claim 1, characterized in that: The upper wire leading silica gel is also provided with a second upper wire leading hole, the second upper wire leading hole is also provided with an upper wire leading diaphragm, and the upper wire leading pins are sequentially arranged through the upper wire leading diaphragms of the first upper wire leading hole and the second upper wire leading hole.
3. The multi-oil cup electronic cigarette with a wiring structure according to claim 2, characterized in that: The upper wire leading silica gel is provided with a first upper wire leading groove matched with the upper wire leading pins, and the first upper wire leading groove is in communication with the first upper wire leading hole and the second upper wire leading hole at both ends, so that the upper wire leading pins are more stable on the upper wire leading silica gel.
4. The multi-oil cup electronic cigarette with a wiring structure according to claim 3, characterized in that: The upper wire leading silica gel is also provided with a second upper wire leading groove, one end of the second upper wire leading groove is provided with a first wire outlet, and the other end of the second upper wire leading groove is in communication with the second upper wire leading hole.
5. The multi-oil cup electronic cigarette with a wiring structure according to claim 4, characterized in that: The wire leading direction of the first upper wire leading hole is downward, the wire leading direction of the second upper wire leading hole is upward, the first upper wire leading groove is arranged on the lower surface of the upper wire leading silica gel, the first upper wire leading groove is arranged between the first upper wire leading hole and the second upper wire leading hole, and the second upper wire leading groove is arranged on the upper surface of the upper wire leading silica gel.
6. The multi-oil cup electronic cigarette with a wiring structure according to claim 1, characterized in that: The lower wire leading silica gel is provided with a lower suction hole matched with the lower atomization channel, the lower suction hole is provided with a first lower wire leading hole at the side, the first lower wire leading hole is provided with a lower wire leading diaphragm, the lower wire leading diaphragm is integrally formed with the lower wire leading silica gel by injection molding, and the lower wire leading diaphragm can generate frictional force to fix the lower wire leading pins.
7. The multi-oil cup electronic cigarette with a wiring structure according to claim 6, characterized in that: The lower wire leading silica gel is also provided with a second lower wire leading hole, the second lower wire leading hole is also provided with a lower wire leading diaphragm, and the lower wire leading pins are sequentially arranged through the lower wire leading diaphragms of the first lower wire leading hole and the second lower wire leading hole.
8. The multi-oil cup electronic cigarette with a wiring structure according to claim 7, characterized in that: The lower wiring silica gel is provided with a first lower wiring groove matched with the lower wiring pin for positioning, two ends of the first lower wiring groove are communicated with the first lower wiring hole and the second lower wiring hole respectively, the first lower wiring groove can make the lower wiring pin more stable on the lower wiring silica gel, the lower wiring silica gel is further provided with a second lower wiring groove, one end of the second lower wiring groove is provided with a second wire outlet, the other end of the second lower wiring groove is communicated with the second lower wiring hole, the wiring direction of the first lower wiring hole is downward, the wiring direction of the second lower wiring hole is upward, the first lower wiring groove is arranged on the lower surface of the lower wiring silica gel, the first lower wiring groove is arranged between the first lower wiring hole and the second lower wiring hole, and the second lower wiring groove is arranged on the upper surface of the lower wiring silica gel.
9. The multi-oil cup electronic cigarette with a wiring structure according to claim 1, characterized in that: The controller assembly is arranged on the same side of the upper oil cup atomization assembly and the lower oil cup atomization assembly.
10. The electronic cigarette with multi-oil cup and wiring structure according to any one of claims 1-9, characterized in that: The lower oil cup atomization assembly further comprises a lower oil cup barrel, lower oil storage cotton and upper oil sealing silica gel, and the upper oil sealing silica gel is integrally formed with the upper wiring silica gel by injection molding.