Mesh heating wire structure combined by different resistance values, materials and lines

By designing mesh heating wire structures with different resistance values, materials, and textures, multiple vapor flavor variations in electronic cigarettes within the same e-liquid chamber are achieved, solving the problem that existing technologies with simple heating wire structures cannot meet the demands of vapor flavor variations.

CN223929526UActive Publication Date: 2026-02-24DONGGUAN JUNQIFENG ELECTRONIC TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520344955.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-01
Publication Date
2026-02-24
Estimated Expiration
2035-03-01

AI Technical Summary

Technical Problem

Existing electronic cigarette heating coils have a simple structure, which cannot meet the needs of varying vapor flavors. In multi-mesh structures, all meshes are the same, which can only improve vapor stability but cannot provide different flavors.

Method used

Design a mesh heating wire structure with different resistance values, materials and textures, in which multiple heating wires are independent of each other, connected in series or in parallel, and different oil-wicking cottons are used to achieve different flavors of smoke.

Benefits of technology

By using a combination of mesh heating wire structures with different resistance values, materials, and textures, a variety of vapor flavors can be created within the same e-liquid tank, satisfying users' needs for diverse flavors.

✦ 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 mesh heating wire structure combined by different resistance values, materials and lines. The mesh heating wire structure provided by the utility model comprises a plurality of heating wires, and the resistance values, materials or lines among the heating wires are different; and the heating wires are mutually independent, connected in series or connected in parallel. According to the utility model, the same tobacco tar in the same tar bin can form different taste states through the change of the working heating wire; the structure can be applied to the heating wire structure of the electronic cigarette.
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Description

Technical Field

[0001] This utility model relates to the field of electronic cigarette technology, and specifically refers to a mesh heating wire structure composed of different resistance values, materials and textures. Background Technology

[0002] Electronic cigarettes work by using a heating coil in the atomizing core assembly to atomize e-liquid into vapor for the user to inhale. Besides being limited by the e-liquid itself, the flavor of the vapor is also affected by the resistance, material, and texture of the heating coil. Current electronic cigarette heating coil structures are too simple, making it difficult to refine the flavor of the vapor. Even in multi-mesh structures, each mesh is identical; the multiple meshes can only improve the stability of the vapor. Therefore, existing heating coil structures cannot meet the demands for variations in vapor flavor. Utility Model Content

[0003] The technical problem solved by this invention is to provide a mesh heating wire structure composed of different resistance values, materials and textures; different flavors of smoke can be provided by changing the working heating wire.

[0004] The technical solution of this utility model to solve the above-mentioned technical problems is:

[0005] The aforementioned mesh heating wire structure includes multiple heating wires, each with different resistance, material, or texture; the heating wires are independent of each other, connected in series, or connected in parallel.

[0006] The aforementioned mesh heating wire structure includes three mesh heating wires, all of which are arranged on the same surface; one wire is arranged at the top and two at the bottom; the two bottom heating wires are connected in series.

[0007] The two heating wires arranged below are different in size and texture; the heating wire arranged above is different in texture and size from the heating wire arranged below.

[0008] The heating wire above is a mesh formed by vertical and horizontal diagonal lines, or a mesh formed by vertical and wavy lines.

[0009] One pin of the heating wire arranged above is connected to a pin on the same side of the heating wire connected in series below.

[0010] The heating wire pins arranged above are not connected to the heating wire pins connected in series below.

[0011] This invention features heating wires of varying sizes and textures across its mesh panels; their resistance values ​​and materials can also differ. Furthermore, different types of wicking cotton can be used. Therefore, when the heating wires are operating, the vapor produced by the atomization of the e-liquid will vary in flavor and style, allowing the same e-liquid in the same tank to achieve different taste profiles. This satisfies users' needs for diverse flavor profiles. Attached Figure Description

[0012] The present invention will be further described below with reference to the accompanying drawings:

[0013] Figure 1 This is a front view of one embodiment of the heating wire and mesh connection structure of this utility model;

[0014] Figure 2 This is a front view of a second embodiment of the heating wire and mesh connection structure of this utility model;

[0015] Figure 3 This is a third front view of an embodiment of the heating wire and mesh connection structure of this utility model;

[0016] Figure 4 This is the fourth front view of an embodiment of the heating wire and mesh connection structure of this utility model. Detailed Implementation

[0017] like Figure 1-4 As shown, the mesh heating wire structure of this utility model includes multiple heating wires, each with different resistance, material or texture; each heating wire is independent of the others, connected in series or in parallel.

[0018] The heating wire mesh of this invention can be composed of three mesh heating wires, all of which are arranged on the same surface; one mesh is arranged on the top and two meshes are arranged on the bottom. The two bottom heating wires 02 and 03 are different in size and texture; the heating wire 01 arranged on the top is also different in texture and size from the heating wires 02 and 03 arranged on the bottom.

[0019] See Figure 1 , 3 As shown, the heating wire 01 at the top is a mesh formed by vertical and diagonal lines. See Figure 2 , 4 As shown, the upper heating wire 01 is a mesh formed by vertical lines and curved lines.

[0020] The two heating wires 02 and 03 at the bottom are connected in series and form pin 1, pin 2 and pin 3 from left to right.

[0021] like Figure 1 , 2 As shown, one pin of the heating wire 01 arranged above is connected to the pin of the heating wires 02 and 03 connected in series below, which are located on the same side end, thus forming a shared pin 1; the other pin is independent, namely pin 4 shown in the figure.

[0022] like Figure 3 , 4 As shown, the upper heating wire 01 pin is not connected to the lower heating wires 02 and 03 pins connected in series; the upper heating wire forms independent pins 5 and 6.

[0023] Figure 1 , Figure 2 In the structure shown, the power supply to each pin and the operation of the heating wire can be configured as follows:

[0024] Option 1: Pins 1 and 4 are powered, and heating wire 01 is activated;

[0025] Option 2: Pins 1 and 2 are powered, and heating wire 03 is activated;

[0026] Option 3: Pins 2 and 3 are powered, and heating wire 02 is activated;

[0027] Option 4: Pins 1 and 3 are powered, and heating wires 02 and 03 are activated;

[0028] Option 5: Pins 1, 4, and 2 are powered, and heating wires 01 and 03 are operational.

[0029] Option 6: Pins 1, 4, and 3 are powered, and heating wires 01, 02, and 03 are operational.

[0030] Figure 3 , Figure 4 In the structure shown, the power supply to each pin and the operation of the heating wire can be configured as follows:

[0031] Option 1: Pins 1 and 2 are powered, and heating wire 03 is activated;

[0032] Option 2: Pins 1 and 3 are powered, and heating wires 02 and 03 are activated;

[0033] Option 3: Pins 2 and 3 are powered, and heating wire 02 is activated;

[0034] Option 4: Pins 5 and 6 are powered, and heating wire 01 is activated;

[0035] Option 5: Pins 1, 2, 5, and 6 are powered, and heating wires 03 and 01 are operational.

[0036] Option 6: Pins 1, 3, 5, and 6 are powered, and heating wires 03, 02, and 01 are operational.

[0037] Option 7: Pins 2, 3, 5, and 6 are powered, and heating wires 02 and 01 are operational.

[0038] Of course, in actual work, the above methods are not the only options. The specific working method can be controlled by the PCBA board connected to it.

[0039] The above heating wire combinations can be paired with different oil-wicking cotton to achieve different tastes.

[0040] In the above structure, the texture of the heating wire 01 is assembled to achieve a state similar to that of a nautilus coil, which can achieve a texture similar to that of a nautilus coil.

[0041] The above embodiments are descriptions of specific implementations of this utility model and are not intended to limit this utility model; all equivalent modifications that can be obtained from the above description should be within the protection scope of this utility model.

Claims

1. A mesh heating wire structure composed of combinations of different resistance values, materials, and textures, characterized in that: The aforementioned mesh heating wire structure includes multiple heating wires, each with different resistance, material, or texture; the heating wires are independent of each other, connected in series, or connected in parallel.

2. The mesh heating wire structure with different resistance values, materials, and textures as described in claim 1, characterized in that: The aforementioned mesh heating wire structure includes three mesh heating wires, all of which are arranged on the same surface; one wire is arranged on the top and two wires are arranged on the bottom. The two heating wires at the bottom are connected in series.

3. The mesh heating wire structure with different resistance values, materials, and textures as described in claim 2, characterized in that: The two heating wires arranged below are different in size and texture; the heating wire arranged above is different in texture and size from the heating wire arranged below.

4. The mesh heating wire structure with different resistance values, materials, and textures as described in claim 2, characterized in that: The heating wire above is a mesh formed by vertical and horizontal diagonal lines, or a mesh formed by vertical and wavy lines.

5. The mesh heating wire structure with different resistance values, materials, and textures as described in claim 2, 3, or 4, characterized in that: One pin of the heating wire arranged above is connected to a pin on the same side of the heating wire connected in series below.

6. The mesh heating wire structure with different resistance values, materials, and textures as described in claim 2, 3, or 4, characterized in that: The heating wire pins arranged above are not connected to the heating wire pins connected in series below.