Electromagnetic emitter with magnetic shielding and electromagnetic induction eddy current heating function and electronic cigarette comprising electromagnetic emitter

By employing a combination of magnetic shielding and coil support in electronic cigarettes, the problems of low production efficiency and high energy loss caused by the complexity of magnetic coil components in existing technologies are solved, thereby simplifying production, reducing energy loss, and improving user experience.

CN223886266UActive Publication Date: 2026-02-10ZHONGSHAN AIMENG TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520263461.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-19
Publication Date
2026-02-10
Estimated Expiration
2035-02-19

AI Technical Summary

Technical Problem

The magnetic coil components of existing electronic cigarette devices have complex structures, resulting in low production efficiency and significant magnetic field energy loss, which affects the user experience.

Method used

The system employs a combination of a magnetic shield and a coil support. The magnetic shield, made of ferrite material, is tightly attached to the e-cigarette shell to reduce magnetic field energy loss, while the coil support ensures stable insertion of the cartridge, simplifying the production process.

Benefits of technology

It improves the production efficiency of e-cigarettes, reduces energy consumption, and enhances the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electromagnetic induction eddy current heating electromagnetic emitter with magnetic shielding, the electromagnetic emitter comprises a magnetic shielding cover (1), a coil (2) and a coil support (3), the coil (2) comprises a coil main body (21) formed by conducting wires and a pair of coil pins (22), the coil support (3) comprises a support wall (31), a support bottom (32) located at the lower end of the support wall (31) and a pin through hole (33), and the support wall (31) is connected with the support bottom (32). The coil body (21) is arranged on the coil support (3), the coil pins (22) penetrate out of the pin through holes (33), and the coil body (21) is located in a coil space (14) defined by the coil support (3) and the magnetic shielding cover (1). The structure of the magnetic induction coil assembly is simplified, the magnetic shielding efficiency is improved, the provided electromagnetic emitter is high in integration degree, large-scale assembly production is facilitated, and the production efficiency of electronic cigarette appliances can be effectively improved.
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Description

Technical Field

[0001] This utility model relates to electronic cigarette devices, and in particular to an electromagnetic transmitter with magnetic shielding and electromagnetic induction eddy current heating for use in electronic cigarettes. Background Technology

[0002] E-liquid-based electronic cigarette devices are electronic products that generate vapor by heating liquid e-liquid, serving as an alternative to traditional cigarettes. They consist of three parts: a battery, an atomizer, and an e-liquid tank. The battery powers the atomizer, which heats and vaporizes the e-liquid to produce inhalable vapor. The electromagnetic transmitter utilizes the principle of electromagnetic induction to convert electrical energy into heat energy, thereby heating the liquid in the atomizer.

[0003] For example, Chinese utility model patent CN 217038905U discloses an improved electromagnetic induction heating electronic cigarette, including a shell, an electromagnetic heating assembly, and a cleaning plate. The shell has an internal receiving cavity and a device cavity, with a battery and control module housed within the device cavity. The electromagnetic heating assembly, disposed within the receiving cavity, includes a magnetic sleeve, an isolation cylinder, and an excitation coil. The magnetic sleeve is movably disposed inside the isolation cylinder, and the excitation coil is sleeved outside the isolation cylinder. The cleaning plate is disposed inside the magnetic sleeve, with its sidewall in contact with the inner wall of the magnetic sleeve.

[0004] However, its coil and insulating tube are relatively complex in structure, and the component contains multiple parts. Therefore, the production process of this electronic cigarette device involves a large number of assembly operations, which significantly restricts the improvement of equipment production efficiency. Utility Model Content

[0005] The purpose of this invention is to simplify the structure of the magnetic coil assembly, improve the magnetic shielding efficiency, and provide a new electromagnetic transmitter.

[0006] This utility model provides an electromagnetic transmitter with magnetic shielding and electromagnetic induction eddy current heating. The electromagnetic transmitter includes a magnetic shielding cover 1, a coil 2 and a coil support 3. The magnetic shielding cover 1 includes a connected vertical wall 12 and an annular extension 11 located at the upper end of the vertical wall 12. The coil 2 includes a coil body 21 made of wire and a pair of coil pins 22. The coil support 3 includes a connected support wall 31 and a support bottom 32 located at the lower end of the support wall 31. The coil support 3 has pin through holes 33. The inner wall surface of the support wall 31 forms a smoke cartridge passage 34 for the smoke cartridge 100 to pass through.

[0007] The coil body 21 is placed on the coil support 3, the inner diameter of the coil body 21 matches the support wall 31, the coil pin 22 passes through the pin through hole 33, the magnetic shield 1 is placed on the coil support 3, the inner diameter of the annular extension 11 matches the support wall 31, and the lower end face of the vertical wall 12 abuts against the bottom 32 of the support, so that the coil body 21 is placed in the coil space 14 enclosed by the coil support 3 and the magnetic shield 1.

[0008] In this invention, for ease of description and not limitation, the direction toward the base 32 of the support is referred to as "down," and the direction toward the annular extension 11 is referred to as "up." The electromagnetic transmitter, as part of an electronic cigarette (also known as a smoke generator), is typically used in conjunction with a cartridge. Since the cartridge's external shape is usually a cylinder of a certain length, the axial direction of the coil support 3 is also referred to as the length direction.

[0009] In this invention, the magnetic shield 1 is made of ferrite material.

[0010] To facilitate the connection of the coil pins to other components of the electronic cigarette, a notch is constructed in the base 32 of the bracket as a pin through hole 33, allowing the coil pins to pass through.

[0011] Since the outer shape of a cartridge is usually a cylinder of a certain length, the cross-sectional shape of the cartridge passage 34 is circular or approximately circular, or matches the cross-sectional shape of the cartridge shell 101.

[0012] When the cartridge casing 101 is made of a rigid material such as food-grade PVC, in order to prevent the cartridge from slipping out when inserted into the electromagnetic transmitter, a preferred embodiment is to construct protrusions 35 along the length of the inner wall surface of the support wall 31. For example, there are three or more protrusions 35, evenly distributed on the inner wall surface of the support wall 31, so as to ensure that the cartridge is easy to insert and avoid falling out.

[0013] This invention also provides an electronic cigarette containing the above-mentioned electromagnetic transmitter.

[0014] As the heating element of an electronic cigarette, the electromagnetic transmitter generates heat and a magnetic field when direct current is input to the coil through its pins. Without a magnetic shield, metal components within the magnetic field (such as the metal casing of the electronic cigarette) cut through the magnetic field lines and generate heat, resulting in energy loss. This is detrimental to the rapid heating of the cartridge and negatively impacts the user experience.

[0015] The electromagnetic transmitter of this invention is assembled in an electronic cigarette device. Because the electromagnetic transmitter is in close contact with the inner wall of the electronic cigarette casing, the closest distance between the outer wall of the magnetic shield 1 and the metal casing 200 of the electronic cigarette is only 0.1 mm. The inductance between a pair of coil pins is measured using an LCR device. After removing the magnetic shield, the inductance between the pins is measured again. The effect of the magnetic shield in the electromagnetic transmitter is examined by the change in inductance. Experimental results show that the magnetic shield effectively shields the device, significantly reducing the cutting of magnetic lines of force by the metal material in the casing of the electronic cigarette device, reducing energy loss within the device, and preventing excessive heating of the casing.

[0016] Compared with existing technologies, the electromagnetic transmitter of this invention has a high degree of integration, which facilitates large-scale assembly and production, and can effectively improve the production efficiency of electronic cigarette devices. Attached Figure Description

[0017] Figure 1A This is a schematic diagram of the magnetic shielding cover structure;

[0018] Figure 1B This is a cross-sectional view of the magnetic shielding cover;

[0019] Figure 2 This is a schematic diagram of the main structure of the coil;

[0020] Figure 3A This is a schematic diagram of the coil support structure;

[0021] Figure 3B This is a cross-sectional view of the coil support;

[0022] Figure 4A This is a schematic diagram of an electromagnetic transmitter.

[0023] Figure 4B This is a top view of the electromagnetic transmitter;

[0024] Figure 5A This is a schematic diagram of the magnetic field of an electromagnetic transmitter after it is powered on;

[0025] Figure 5B This is a schematic diagram of the magnetic field of a magnetic induction coil without a magnetic shield after it is energized;

[0026] Figure 6 This is a schematic diagram of the structure after the electromagnetic transmitter and smoke cartridge are assembled;

[0027] Wherein: 1-Magnetic shielding cover; 2-Coil; 3-Coil bracket; 11-Annular extension; 12-Vertical wall; 14-Coil space; 21-Coil body; 22-Coil pin; 31-Bracket wall; 32-Bracket bottom; 33-Pin through hole; 34-Cartridge passage; 35-Protruding ridge; 100-Cartridge; 101-Cartridge shell; 200-Metal shell. Detailed Implementation

[0028] The following embodiments are used to explain the technical solution of this utility model in a non-limiting manner.

[0029] Example 1

[0030] like Figure 6 The electromagnetic transmitter shown includes a magnetic shield 1 and a coil support 3 fitted together, wherein the magnetic shield 1 is made of ferrite material. Figure 1A , 1B As shown in 3A and 3B, the magnetic shield 1 has a vertical wall 12 and an annular extension 11 at its upper end, and the coil support 3 has a support wall 31 and a support base 32, with a pin through hole 33 on the support base 32.

[0031] like Figure 2 The coil 2 shown is installed between the magnetic shield 1 and the coil support 3, the coil pin 22 passes through the pin through hole 33, and the coil body 21 is located in the coil space 14.

[0032] The inner wall dimensions of the coil support 3 match the cartridge shell 101, and the inner wall surface of the support wall 31 has three protruding ribs 35 to ensure that the electromagnetic transmitter can be fitted onto the outer wall of the cartridge shell 101 and is not easily detached. Figure 6 As shown.

[0033] Connect the two input lines of the digital bridge tester to a pair of pins of the coil, inject 100kHz, 1V current into the coil, and test the Ls reading. With the magnetic shield 1 removed, the reading is 3.3μH. With the magnetic shield installed, the reading is 4.6μH. Installing the electromagnetic transmitter of this invention in an electronic cigarette device containing a metal casing 200 and conducting power-on tests revealed a significant reduction in heat generation from the metal casing 200, further confirming that the electromagnetic transmitter of this invention can reduce energy loss within the device.

Claims

1. An electromagnetic transmitter with magnetic shielding and electromagnetic induction eddy current heating, the electromagnetic transmitter comprising a magnetic shield (1), a coil (2), and a coil support (3), characterized in that... The magnetic shield (1) includes a connected vertical wall (12) and an annular extension (11) located at the upper end of the vertical wall (12). The coil (2) includes a coil body (21) made of wires and a pair of coil pins (22). The coil support (3) includes a connected support wall (31) and a support bottom (32) located at the lower end of the support wall (31). The coil support (3) has pin through holes (33). The inner wall surface of the support wall (31) forms a cigarette cartridge passage (34) through which the cigarette cartridge (100) passes. The coil body (21) is placed on the coil support (3), the inner diameter of the coil body (21) matches the support wall (31), the coil pin (22) passes through the pin through hole (33), the magnetic shield (1) is placed on the coil support (3), the inner diameter of the annular extension (11) matches the support wall (31), and the lower end face of the vertical wall (12) abuts against the bottom (32) of the support, so that the coil body (21) is in the coil space (14) enclosed by the coil support (3) and the magnetic shield (1).

2. The electromagnetic transmitter according to claim 1, characterized in that... The magnetic shield (1) is made of ferrite material.

3. The electromagnetic transmitter according to claim 1, characterized in that... A notch is constructed at the bottom (32) of the support as a pin through hole (33).

4. The electromagnetic transmitter according to claim 1, characterized in that... The cross-sectional shape of the smoke cartridge passage (34) is circular.

5. The electromagnetic transmitter according to claim 1, characterized in that... A protruding rib (35) is constructed along the length direction on the inner wall surface of the support wall (31).

6. The electromagnetic transmitter according to claim 1, characterized in that... There are three or more protruding ridges (35), which are evenly distributed on the inner wall surface of the support wall (31).

7. An electronic cigarette containing an electromagnetic transmitter according to any one of claims 1-6.

Citation Information

Patent Citations

  • Improved electromagnetic induction heating electronic cigarette

    CN217038905U