Aerosol Generator
The aerosol generating device addresses uneven light diffusion and high power consumption by using a substrate and actuator system to uniformly diffuse light from a single source, reducing the number of light sources.
Patent Information
- Application Number
- JP2024520774
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2022-02-17
- Filing Date
- 2022-10-14
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2042-10-14
AI Technical Summary
Existing aerosol generating devices face issues with uneven light diffusion from the exterior button and high power consumption due to multiple light sources.
The aerosol generating device incorporates a button with a substrate and actuator system, where a light source is positioned adjacent to the button and emits light parallel to the substrate, allowing for uniform light diffusion and reducing the number of light sources needed.
This configuration achieves uniform light diffusion and reduces power consumption by minimizing the number of light sources required.
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Abstract
Description
[Technical Field]
[0001] The present disclosure relates to aerosol generating devices. [Background technology]
[0002] An aerosol generating device is used to extract a predetermined component from a medium or substance via an aerosol. The medium may contain a variety of components. The components contained in the medium may be flavorings of a variety of components. For example, the components contained in the medium may include nicotine, herbal, and / or coffee components. In recent years, much research has been conducted on such aerosol generating devices. Summary of the Invention [Problem to be solved by the invention]
[0003] The present disclosure is directed to solving the above-mentioned problems and other problems.
[0004] Another object of the present disclosure is to uniformly diffuse the light emanating from the exterior of the button.
[0005] It is yet another object of the present disclosure to reduce the required number of light sources and power consumption. [Means for solving the problem]
[0006] According to one aspect of the present disclosure to achieve the above-mentioned object, an aerosol generating device is provided, which includes a body forming a long insertion space that is open to the outside, a button located on one side of the body, a substrate arranged within the body facing the button, an actuator arranged between the substrate and the button to provide elastic force to the button, and a light source coupled to the substrate adjacent to the button and emitting light in a direction parallel to the button and the substrate. [Effects of the Invention]
[0007] According to at least one of the embodiments of the present disclosure, light radiating outside the button can be uniformly diffused.
[0008] According to at least one of the embodiments of the present disclosure, the required number of light sources and power consumption can be reduced.
[0009] Further scope of applicability of the present disclosure will become apparent from the following detailed description. However, since various changes and modifications within the spirit and scope of the present disclosure will be apparent to those skilled in the art, it should be understood that the detailed description and specific examples, such as preferred embodiments of the present disclosure, are given by way of example only. [Brief explanation of the drawings]
[0010] [Figure 1] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. [Figure 2] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. [Figure 3] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. [Figure 4] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. [Figure 5] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. [Figure 6] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. [Figure 7] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. [Figure 8] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. [Figure 9] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. [Figure 10] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. [Figure 11] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. [Figure 12] FIG. 1 illustrates an example of an aerosol generating device according to an embodiment of the present disclosure. DETAILED DESCRIPTION OF THE INVENTION
[0011] Hereinafter, the embodiments disclosed in this specification will be described in detail with reference to the accompanying drawings. The same or similar components are given the same reference numerals even if they are shown in different drawings, and redundant description thereof will be omitted.
[0012] The suffixes "module" and "section" for components used in the following description are used solely for the convenience of explanation of the specification. "Module" and "section" do not have different meanings or roles from each other.
[0013] Furthermore, in the following description of the embodiments disclosed herein, detailed descriptions of related known technologies may be omitted if they may obscure the gist of the embodiments disclosed herein. The accompanying drawings are provided to facilitate understanding of the embodiments disclosed herein, and do not limit the technical ideas disclosed herein. Therefore, the accompanying drawings should be interpreted as including all modifications, equivalents, and alternatives within the spirit and scope of the present disclosure.
[0014] Terms including ordinal numbers such as "first," "second," etc. may be used to describe various components, but it should be understood that the components are not limited by the terms. The terms are used only to distinguish one component from another.
[0015] When a component is said to be "connected" to another component, it will be understood that there may be other components in between, whereas when a component is said to be "directly connected" to another component, it will be understood that there are no other components in between.
[0016] The singular expression includes the plural expression unless the context clearly dictates otherwise.
[0017] 1 and 2, the aerosol generating device 100 may include at least one of a battery 10, a control unit 20, and a heater 30. Referring to Figures 3 and 4, the aerosol generating device 100 may further include a cartridge 400. At least one of the battery 10, the control unit 20, and the heater 30 may be disposed inside the body 110.
[0018] 1 and 2, the battery 10, the control unit 20, and the heater 30 may be arranged in a row. Referring to Fig. 3, the battery 10, the control unit 20, the heater 30, and the cartridge 40 may be arranged in a row. Referring to Fig. 4, the cartridge 40 and the heater 30 may be arranged side by side so as to face each other. The internal structure of the aerosol generating device 100 is not limited to that shown in the drawings.
[0019] The aerosol generating device 100 may provide an insertion space 54. The insertion space 54 may be open to the upper side of the aerosol generating device 100. The insertion space 54 may have a cylindrical shape. A stick 200 may be inserted into the insertion space 54.
[0020] The heater 30 may be disposed around the insertion space 54 or inside the insertion space 54. The heater 30 can heat the insertion space and / or the stick 200 inserted into the insertion space 54. The heater 30 can heat the stick 200 to generate an aerosol. The heater 30 may be an electrical resistance heater. The heater 30 may be made of a conductive metal.
[0021] 1 and 2, the heater 30 may protrude upward from the bottom of the insertion space 54. The heater 30 may have a long rod shape. The heater 30 may be formed with a pointed upper end. When the stick 200 is inserted into the insertion space 54, the heater 30 may be inserted into the stick 200. Referring to FIG. 1, the heater 30 may receive current from the battery 10 to generate heat directly. Referring to FIG. 2, the induction coil 14 may surround the heater 30 and the insertion space 54. The induction coil 14 may be wound around the insertion space 54. The heater 30 may generate heat by a magnetic field generated by an AC current flowing through the induction coil 14. The magnetic field passes through the heater 30 and may generate eddy currents within the heater 30. The current may cause the heater 30 to generate heat.
[0022] 3 and 4, the heater 30 may surround the insertion space 54. The heater 30 may surround the lower part of the stick 200 inserted into the insertion space 54. The heater 30 may extend circumferentially along the periphery of the insertion space 54. The heater 30 may be formed in a ring or cylindrical shape. The heater 30 may generate heat directly by receiving current from the battery 10. Although FIGS. 3 and 4 show the heater 30 being included in the aerosol generating device 100, the heater 30 may not be included in the aerosol generating device, if necessary.
[0023] The battery 10 can supply power to operate at least one of the control unit 20, the heater 30, and the cartridge 40. The battery 10 can supply power necessary to operate the display, sensor, motor, etc. provided in the aerosol generating device 100.
[0024] The control unit 20 can control the overall operation of the aerosol generation device 100. The control unit 20 can control the operation of at least one of the battery 10, the heater 20, and the cartridge 40. The control unit 20 can control the operation of a display, a sensor, a motor, etc. provided in the aerosol generation device 100. The control unit 20 can check the status of each component of the aerosol generation device 100 and determine whether the aerosol generation device 100 is in an operable state.
[0025] The cartridge 40 can store a liquid. The cartridge 40 can generate an aerosol from the stored liquid. The aerosol generated in the cartridge 40 can be delivered to a user through the stick 200 inserted into the aerosol generating device 100.
[0026] The lower end of the stick 200 is inserted into the insertion space 54, and the upper end thereof may be exposed to the outside from the insertion space 54. A user can hold the exposed upper end of the stick 200 in their mouth and inhale air. The air passes through the inside of the aerosol generating device 100 and can be provided to the user together with the aerosol.
[0027] 5, the cap 120 may be coupled to the upper part of the body 110 and cover the upper part of the body 110. One side of the cap 120 may be open to communicate with the insertion space 54. The cap 120 may include a cover 125 that opens and closes the insertion space 54.
[0028] The button assembly 60 may be provided on one side of the body 110. The button 61 may be disposed on one side of the body 110. A buttonhole 114 may be formed by opening one side of the body 110. The button 61 may be inserted into the buttonhole 114. When the button 61 is pressed, the button 61 moves toward the inside of the body 110 and can also move to return to its original state. The button 61 may be connected to the control unit 20. A user can press the button 61 to transmit a command to the control unit 20. For example, pressing the button 61 can activate or deactivate the aerosol generating device 100.
[0029] As another example, the buttonhole 114 may not be formed, and the button 61 may be formed on one side of the body. Here, the button 61 may be formed integrally with the body on one side of the body 110. The button 61 may be made of an elastic material. For example, the button 61 may be made of light-transmitting silicone.
[0030] The buttonholes 114 and buttons 61 may be elongated on one side, having a major axis and a shortening. For example, the buttonholes 114 and buttons 61 may be elongated in the vertical direction more than in the horizontal direction. Here, the vertical direction is the major axis, and the horizontal direction is the shortening.
[0031] Fig. 6 is a view showing the inside of the button assembly 60 with the button 61 removed. Referring to Figs. 6 and 7, a buttonhole 114 may be formed by opening one side of the body 110. The button 61 may be inserted into the buttonhole 114. The front part of the button 61 has a shape corresponding to the buttonhole 114 and is inserted into the buttonhole 114, while the rear part of the button 61 is disposed behind the buttonhole 114 and may hang on the body 110 around the buttonhole 114. As another example, the buttonhole 114 may not be formed, and the button 61 may be integrally formed on one side of the body 110 and made of an elastic material.
[0032] The board 62 may be mounted inside the body 110. The board 62 may face the button 61 and the buttonhole 114. The board 62 may be disposed behind the button 61. The board 62 may be disposed parallel to the button 61 and the buttonhole 114. For example, the buttonhole 114, the button 61, and the board 62 may be formed vertically. The control unit 20 may be mounted on the board 62 or electrically connected to the board 62.
[0033] The actuator 63 may be disposed between the substrate 62 and the button 61. One end of the actuator 63 may be coupled to the substrate 62, and the other end may be coupled to the button 61. The substrate 62 is electrically connected to the actuator 63 and may receive a signal from the actuator 63. The actuator 63 may provide an elastic force from the substrate 62 to the button 61. When the button 61 moves backward, i.e., toward the inside of the body 110, the button 61 pushes the actuator 63 backward, and the substrate 62 may detect the push signal. The actuator 63 may return the button 61 to its forward position. The actuator 63 may be disposed at a position corresponding to the center of the button 61.
[0034] The diffusion space 64 may be formed between the substrate 62 and the button 61 or between the substrate 62 and the seal 67. The substrate 62 may cover the rear side of the diffusion space 64. The button 61 or the seal 67 may cover the front side of the diffusion space 64. The actuator 63 may be disposed in the diffusion space 64. The diffusion space 64 may be surrounded by a peripheral wall 66.
[0035] The diffusion space 64 and the buttonhole 114 may have shapes that roughly correspond to each other. The diffusion space 64 may extend in one direction and have a major axis and a minor axis. For example, the longitudinal length D1 of the diffusion space 64 may be longer than the lateral length D2. The buttonhole 114 may also have a longitudinal length longer than the lateral length.
[0036] The substrate support wall 66 can support the rear side of the substrate 61. The substrate support wall 66 can be arranged parallel to the substrate 61. The peripheral wall 66 can protrude forward from the substrate support wall 66. The peripheral wall 66 can extend along the edge of the diffusion space 64 and surround the diffusion space 64. The peripheral wall 66 can surround the periphery of the actuator 63.
[0037] The seal 67 may be disposed behind the button 61 inside the body 110. The seal 67 may cover the buttonhole 114. The seal 67 may be tightly attached to the body 110 around the edge of the buttonhole 114. An edge 671 of the seal 67 may be tightly attached to the peripheral wall 65 and the body 110. The center of the seal 67 may be coupled to the actuator 63. A diffusion space 64 may be formed between the substrate 62 and the seal 67. The seal 67 may be made of an elastic material. For example, the seal 67 may be made of rubber or silicone. The seal 67 may prevent foreign matter such as liquid from entering the inside of the device from the outside through the buttonhole 114.
[0038] The light source 70 may be disposed inside the body 110 adjacent to the button 61. The light source 70 may be attached to the substrate 62. The light source 70 may emit light. For example, the light source 70 may be an LED. The light source 70 may be disposed between the substrate 62 and the button 61. The light source 70 may be attached to the substrate 62. The light source 70 may face toward the area between the substrate 62 and the button 61. The light source 70 may face in a direction parallel to the button 61 and the substrate 62. The light source 70 may be disposed to face in a direction other than the front-to-back direction of the button 61. For example, the light source 70 may be disposed to face in the vertical direction. The light source 70 may emit light in the vertical direction in which the light source 70 faces.
[0039] The button 61 may be light-transmitting. The button 61 may be made of a translucent material. The button 61 can diffuse light. The seal 67 may be light-transmitting. The seal 67 may be made of a translucent material. The seal 67 can diffuse light. The seal 67 may have a relatively high transmittance, and the button 61 may have a relatively high degree of light dispersion.
[0040] Light emitted from the light source 70 can be diffused to the outside by passing through the button 61. Light emitted from the light source 70 can be diffused to the outside by passing through the seal 67. Light can be diffused forward by passing through the seal 67. Light can be diffused to the outside by passing through the gap of the buttonhole 114 formed between the body 110 and the button 61.
[0041] Figure 8(a) shows the prior art, and Figure 8(b) shows one embodiment of the present invention. In the prior art, a light source 70' is positioned behind the button 61 so as to face the button 61. In the prior art, light is concentrated at the point on the button 61 corresponding to the light source 70', which causes a hot spot at the corresponding point, resulting in an uneven light diffusion problem (see Figure 9(a)).
[0042] According to one embodiment of the present invention, the light source 70 may be arranged to face the diffusion space 64 between the button 61 and the substrate 62. As a result, the light source 70 does not emit light directly onto the button 61, preventing the occurrence of hot spots at specific points and allowing the light to be diffused relatively uniformly to the outside (see FIG. 9(b)). Furthermore, the number of light sources 70 required to diffuse the light uniformly and the power consumption can be reduced.
[0043] 6 and 7, the light source 70 may be positioned adjacent to the buttonhole 114 and / or the edge of the button 61. The light source 70 may be positioned at the edge of the diffusion space 64.
[0044] The buttonhole 114 and / or the button 61 may extend in the vertical direction. The axis along which the buttonhole 114 and / or the button 61 are formed relatively longer can be defined as the long axis, and the axis along which they are formed relatively shorter can be defined as the short axis. The diffusion space 64 may extend in the vertical direction. The vertical length D1 of the diffusion space 64 may be relatively longer than the horizontal length D2.
[0045] The light source 70 may be disposed adjacent to the long axis end of the buttonhole 114 or the button 61. The light source 70 may be disposed adjacent to the long axis end of the diffusion space 64. The light source 70 disposed on one side of the long axis end may be disposed so as to face the other side of the long axis end.
[0046] The light sources 70 may be provided in a plurality. The light sources 70 may be provided in a pair. The pair of light sources 70 may be adjacent to opposite ends of the long axis of the buttonhole 114 or button 61. The pair of light sources 70 may face each other.
[0047] FIG. 10(a) shows an embodiment in which a light source 70" is disposed at the shortened end, and FIG. 10(b) shows an embodiment of the present disclosure in which a pair of light sources 70" is disposed at the long axis end. Referring to FIG. 10, the distance D2 between the pair of light sources 70" shown in FIG. 10(a) may be shorter than the distance D1 between the pair of light sources 70 shown in FIG. 10(b).
[0048] The intensity of light may be inversely proportional to the square of the distance from the light source. When a pair of light sources 70″ is arranged at both ends of the axis as shown in FIG. 10(a), the light intensity may be relatively strong at the center and relatively weak at the periphery compared to when a pair of light sources 70″ is arranged at both ends of the major axis as shown in FIG. 10(b) (see FIG. 11(a)). In other words, when a pair of light sources 70″ is arranged at both ends of the major axis as shown in FIG. 10(b), the light is not concentrated at the center of the button 61 but can be diffused evenly (see FIG. 11(b)).
[0049] 7, the light source 70 may be disposed at a position corresponding to the outside of the buttonhole 114 or the button 61. The light source 70 may be disposed behind a portion of the body 110 surrounding the buttonhole 114 or the button 61 and may be covered by the body 110. The body 110 may overlap the light source 70 in the front-to-rear direction. The body 110 can block the light emitted from the light source 70. This prevents direct light from the light source 70 from diffusing outside the buttonhole 114 or the button 61 and allows the light to be diffused evenly.
[0050] 12, the diffusion space 64, the buttonhole 114, and the button 61 can each be defined as a rectangle whose vertical length is longer than its horizontal length. The light source 70 can be disposed between the long axis end and the shortened end of the diffusion space 64. The light source 70 can be disposed at the edge of the diffusion space 64. The light source 70 can face the center or toward the actuator 63. A pair of light sources 70 can face each other. A pair of light sources 70 can be disposed on opposite sides of the actuator 63. A pair of light sources 70 can be disposed at positions separated from each other in an oblique direction with respect to the diffusion space 64. The distance D3 between the pair of light sources 70 can be longer than the long axis length D1 or the shortened length D2 of the diffusion space 64.
[0051] Referring to Figures 1 to 12, an aerosol generating device 100 according to one aspect of the present disclosure may include a body forming a long insertion space that is open to the outside, a button located on one side of the body, a substrate arranged within the body facing the button, an actuator arranged between the substrate and the button to provide elastic force to the button, and a light source coupled to the substrate adjacent to the button and emitting light in a direction parallel to the button and the substrate.
[0052] According to another aspect of the present disclosure, the light source may be positioned adjacent to an edge of the button.
[0053] According to another aspect of the present disclosure, the button may be elongate and have a major axis and a minor axis, and the light source may be positioned adjacent one end of the button along the major axis and point toward the other end of the button along the major axis.
[0054] According to another aspect of the present disclosure, the aerosol generating device may further include a plurality of light sources, wherein the button is elongated and has a major axis and a minor axis, and a first light source of the plurality of light sources may be positioned adjacent to one end of the button in the major axis direction, and a second light source of the plurality of light sources may be positioned adjacent to the other end of the button in the major axis direction.
[0055] According to another aspect of the present disclosure, the button may include a light-transmitting material.
[0056] According to another aspect of the present disclosure, the aerosol generating device may further include a light-transmitting seal disposed between the substrate and the body to fill a gap between the button and the body.
[0057] According to another aspect of the present disclosure, the button may be positioned relative to the substrate to form a diffusion space between the button and the substrate, each of the button and the diffusion space extending elongately and having a major axis and a shortening, and the light source may be positioned between the major axis end and the shortening end of the diffusion space.
[0058] According to another aspect of the present disclosure, the aerosol generating device further includes a plurality of light sources, the button is positioned relative to the substrate to form a diffusion space between the button and the substrate, each of the button and the diffusion space is elongated and has a major axis and a shortening, and the distance between a first light source and a second light source among the plurality of light sources may be longer than the length of the major axis of the diffusion space.
[0059] According to another aspect of the present disclosure, the light source may be directed toward a position corresponding to the center of the button.
[0060] According to another aspect of the present disclosure, the light source may be disposed at a position corresponding to the outside of the button.
[0061] According to another aspect of the present disclosure, one side of the body may be formed with a buttonhole sized to receive the button.
[0062] The specific embodiments or other embodiments of the present disclosure described above are not mutually exclusive or distinct, and the structure or function of any or all elements of the embodiments of the present disclosure described above can be combined with other elements or combined with each other.
[0063] For example, configuration A described in one embodiment of the present disclosure and drawings and configuration B described in another embodiment of the present disclosure and drawings can be combined with each other. That is, even if a combination between configurations is not directly described, the combination is possible unless it is described that the combination is not possible.
[0064] While the embodiments have been described above in accordance with a number of exemplary embodiments, it should be understood that many other variations and embodiments are possible for those skilled in the art that fall within the scope of the principles of the present disclosure. More particularly, various modifications and variations are possible in the components and / or arrangements of the subject combinations within the scope of the present disclosure, the drawings, and the appended claims. In addition to the modifications and variations of the components and / or arrangements, other uses will also be apparent to those skilled in the art.
Claims
1. a body forming a long insertion space that opens to the outside; a button positioned on one side of the body, extending elongately and having a major axis and a minor axis; a substrate disposed within the body so as to face the button; an actuator disposed between the substrate and the button to provide a resilient force to the button; An aerosol generating device comprising: a light source arranged at a position corresponding to the outside of the button and coupled to the substrate, the light source including a pair of a first light source and a second light source arranged adjacent to both ends of the long axis of the button, each of the first light source and the second light source arranged toward the other end of the long axis and emitting light in a direction parallel to the button and the substrate.
2. The aerosol generating device according to claim 1 , wherein the light source is disposed adjacent to an edge of the button.
3. The aerosol generating device according to claim 1 , wherein the button comprises a light-transmitting material.
4. The aerosol generating device according to claim 1 , further comprising a light-transmitting seal disposed between the substrate and the body to fill a gap between the button and the body.
5. the button is positioned relative to the substrate to form a diffusion space between the button and the substrate; each of the button and the diffusion space is elongated and has a major axis and a minor axis; The aerosol generating device according to claim 1 , wherein the light source is disposed between a major axis end and a minor axis end of the diffusion space.
6. The button is positioned relative to the substrate to form a diffusion space between the button and the substrate; each of the button and the diffusion space is elongated and has a major axis and a minor axis; The aerosol generating device according to claim 1 , wherein the distance between the first light source and the second light source is longer than the length of the major axis of the diffusion space.
7. The aerosol generating device according to claim 1 or claim 6, wherein the light source is directed toward a position corresponding to the center of the button.
8. The aerosol generating device according to claim 1 , wherein one side of the body forms a buttonhole having a size to accommodate the button.
Citation Information
Patent Citations
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JP2003178657A
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JP2021518762A
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US20210059305A1
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