Laser irradiation device and charging device combination

By designing a combination of laser irradiation and charging devices and adopting wireless charging, the problem of inconvenience in using existing laser acupuncture devices is solved, achieving convenient charging and safe, non-invasive treatment effects.

CN224070982UActive Publication Date: 2026-04-03SHANGHAI FUSHEN OPTOELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Existing laser acupuncture devices are wired, which is inconvenient to use and cannot be easily charged.

Method used

Design a combination of a laser irradiation device and a charging device, which adopts a wireless charging method and is charged through a contact point connection. It contains a rechargeable energy storage component. The laser irradiation device can be placed in the housing space of the charging device and charged using the power of the charging device.

Benefits of technology

It enables convenient charging of the laser irradiation device, avoids invasive infections and inconvenience of use, provides safe, painless, and non-invasive treatment effects, and supports repeated use.

✦ Generated by Eureka AI based on patent content.

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Abstract

A combination of a laser irradiation device and a charging device, the laser irradiation device comprises a body, a first circuit board, a plurality of laser modules and a first power storage assembly, the laser modules and the first power storage assembly are electrically connected to the first circuit board, and the body is also provided with a plurality of first contact points, a control key and a plurality of display lamps. The charging device comprises a box body, a cover body, a second circuit board and a second electricity storage assembly, the second electricity storage assembly is electrically connected to the second circuit board, the box body is provided with a containing space which can be used for containing the laser irradiation device, a plurality of second contact points are arranged in the containing space, and the first contact points can be in contact with the second contact points; the electric power of the charging device can be transmitted to the laser irradiation device so as to charge the laser irradiation device. The external soothing and internal conditioning effects can be achieved, safety, painless and noninvasive effects are achieved, and the circulation regulation function can be promoted.
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Description

Technical Field

[0001] This utility model relates to a combination of a laser irradiation device and a charging device, specifically a combination of a laser irradiation device and a charging device that can perform laser acupuncture and can be charged wirelessly (using wireless materials). Background Technology

[0002] Laser acupuncture eliminates the need for traditional metal needles, instead using low-energy lasers to stimulate acupoints in Traditional Chinese Medicine. It falls under the category of phototherapy, and by replacing actual acupuncture with lasers, it avoids the risks of infection, fainting, and fear of needles associated with invasive procedures. However, currently available laser acupuncture devices are all wired, making them less convenient to use. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide a combination of a laser irradiation device and a charging device to address the shortcomings of the prior art. The laser irradiation device can be charged by the charging device, which is made by contact point and adopts a wireless (wireless material) charging method. It contains a rechargeable energy storage component, is rechargeable and reusable, and is more convenient to use.

[0004] To address the aforementioned technical problems, this utility model provides a combination of a laser irradiation device and a charging device, comprising: a laser irradiation device, the laser irradiation device including a body, a first circuit board, multiple laser modules, and a first energy storage component, the first circuit board, the multiple laser modules, and the first energy storage component being disposed on the body, the multiple laser modules and the first energy storage component being electrically connected to the first circuit board, the laser light generated by the multiple laser modules being able to exit the body, the body having multiple first contact points, the multiple first contact points being electrically connected to the first circuit board; and a charging device, the charging device comprising: The device comprises a housing, a cover, a second circuit board, and a second energy storage component. The cover can selectively close onto the housing. The housing has an accommodating space. The second circuit board and the second energy storage component are disposed in the housing. The second energy storage component is electrically connected to the second circuit board. The accommodating space of the housing has multiple second contact points, which are electrically connected to the second circuit board. The laser irradiation device can be placed in the accommodating space, and the multiple first contact points can contact the multiple second contact points, so that the power of the charging device can be transferred to the laser irradiation device to charge the laser irradiation device.

[0005] Preferably, the main body is provided with at least one control key and at least one indicator light, the at least one control key and the at least one indicator light are electrically connected to the first circuit board, the plurality of first contact points, the at least one control key and the at least one indicator light are disposed on one side of the main body, and the plurality of laser modules are disposed on the opposite side of the main body.

[0006] Preferably, the control key is located at the center of the body, and the first contact point and the indicator light are located on opposite sides of the control key.

[0007] Preferably, the charging device includes an electrical connector that is electrically connected to the second circuit board.

[0008] Preferably, a wireless charging receiver is provided on the box body, and the wireless charging receiver is electrically connected to the second circuit board, so as to charge the charging device wirelessly.

[0009] Preferably, a pressing surface is formed on the inner side of the cover, which can be used to press the laser irradiation device.

[0010] Preferably, a limiting surface is formed on the inner side of the cover, and the limiting surface can surround the periphery of the laser irradiation device to limit the laser irradiation device.

[0011] Preferably, a first fixing member is provided on the main body of the laser irradiation device, and a second fixing member is provided on the box. When the laser irradiation device is placed in the accommodating space of the box, the first fixing member and the second fixing member are connected and fixed to each other.

[0012] Preferably, a third fixing member is provided on the box body, and a fourth fixing member is provided on the cover body. When the cover body is closed on the box body, the third fixing member and the fourth fixing member are connected and fixed to each other.

[0013] The beneficial effect of this utility model is that the laser irradiation device and charging device combination provided by this utility model includes a laser irradiation device and a charging device. The laser irradiation device includes a body, a first circuit board, multiple laser modules, and a first energy storage component. The first circuit board, laser modules, and first energy storage component are disposed on the body, and the laser modules and first energy storage component are electrically connected to the first circuit board. The body is provided with multiple first contact points, and the first contact points are electrically connected to the first circuit board. The charging device includes a box, a cover, a second circuit board, and a second energy storage component. The cover can selectively cover the box, and the box has an accommodating space. The second circuit board and second energy storage component are disposed on the box, and the second energy storage component is electrically connected to the second circuit board. The accommodating space of the box is provided with multiple second contact points, and the second contact points are electrically connected to the second circuit board. The laser irradiation device can be placed in the accommodating space, and these first contact points can contact these second contact points, so that the power of the charging device can be transferred to the laser irradiation device to charge the laser irradiation device. This invention utilizes photobiological regulation, injecting precisely targeted wavelengths of light into the skin to achieve both external soothing and internal conditioning effects. It is safe, painless, and non-invasive, and promotes circulatory regulation. This invention uses lasers instead of traditional acupuncture, avoiding invasive procedures that could lead to infection, fainting, or fear of needles. The laser irradiation device is rechargeable via a contact point system using wireless charging (wireless materials). It contains a rechargeable energy storage component, allowing for rechargeable and reusable use, making it convenient to use.

[0014] To further understand the features and technical content of this utility model, please refer to the following detailed description and drawings of this utility model. However, the drawings are for reference and illustration only and are not intended to limit this utility model. Attached Figure Description

[0015] Figure 1 This is a perspective view of the combination of the laser irradiation device and the charging device in an embodiment of the present invention.

[0016] Figure 2 This is a perspective view of the laser irradiation device according to an embodiment of the present invention.

[0017] Figure 3 This is a perspective view of the laser irradiation device according to an embodiment of the present invention from another angle.

[0018] Figure 4 This is a perspective view of the charging device in the open state according to an embodiment of the present invention.

[0019] Figure 5 for Figure 4 Sectional view of V-V.

[0020] Figure 6 This is a perspective view of the charging device in the closed state according to an embodiment of the present invention.

[0021] Figure 7 This is a perspective view of the charging device in the closed state according to an embodiment of the present invention. Detailed Implementation

[0022] [Example]

[0023] Please see Figure 1 This utility model provides a combination of a laser irradiation device and a charging device, including a laser irradiation device 1 and a charging device 2.

[0024] Please see Figure 2 and Figure 3 The laser irradiation device 1 includes a body 11, a first circuit board 12, multiple laser modules 13, and a first energy storage component 14. The body 11 can be square, circular, or other shapes; its shape is not limited, and it can be a hollow shell. The first circuit board 12, laser modules 13, and first energy storage component 14 are disposed on the body 11 and electrically connected to the first circuit board 12. For example, two, three, four, or five laser modules can be provided; the number of laser modules 13 is not limited. These laser modules 13 are spaced apart, allowing them to be distributed over a larger area for more precise targeting of acupoints. The laser beams generated by these laser modules 13 can exit the body 11. The first energy storage component 14 is a battery with energy storage function, used to supply the power required by the laser irradiation device 1.

[0025] The main body 11 is also provided with multiple first contact points 15, at least one control key 16, and at least one indicator light 17. The first contact points 15, control key 16, and indicator light 17 can be located on the side of the main body 11 away from the laser module 13, that is, the first contact points 15, control key 16, and indicator light 17 can be located on one side of the main body 11, while the laser module 13 is located on the opposite side of the main body 11. The first contact points 15, control key 16, and indicator light 17 are all electrically connected to the first circuit board 12, and the first contact points 15, control key 16, and indicator light 17 are exposed outside the main body 11. The first contact points 15 are electrical contacts that can be used to make contact with the charging device 2 to achieve an electrical connection. The control key 16 can be used as a switch, etc. The function of the control key 16 is not limited, for example, it can control the start-up of the laser module 13, the time of laser beam emission, wavelength, and optical power changes, etc. The indicator light 17 can be used to display the working status. Preferably, the control key 16 is located at the center of the body 11, and the first contact point 15 and the indicator light 17 are located on opposite sides of the control key 16, so that the first contact point 15, the control key 16 and the indicator light 17 form a preferred arrangement.

[0026] In this embodiment, the laser module 13 may have multiple wavelengths; that is, some or all of the laser modules 13 may be multi-band lasers, capable of emitting laser light of multiple wavelengths. These laser modules 13 can emit two, three, four, or five different wavelengths of laser light. The laser module 13 in this embodiment is a multi-band laser, capable of emitting laser light of multiple wavelengths. Different wavelengths of laser light have different penetration depths, reaching different depths into acupoints, resulting in better therapeutic effects. These laser modules 13 are preferably SMD type laser modules, but are not limited thereto. For example, these laser modules 13 may also be vertical-cavity surface-emitting laser (VCSEL) modules, where the laser light is emitted perpendicularly to one surface.

[0027] In use, the laser irradiation device 1 can be fixed to the area to be treated on the user's skin using fasteners, adhesive straps, or watch straps. The laser module 13 can be controlled using control interfaces such as control keys 16, so that the laser light generated by the laser module 13 can be emitted outward and can irradiate and stimulate acupoints to achieve a therapeutic effect.

[0028] Please see Figures 4 to 7 The charging device 2 includes a housing 21, a cover 22, a second circuit board 23, and a second energy storage component 24. The shapes of the housing 21 and the cover 22 are not limited. One side of the housing 21 and the cover 22 can be pivotally connected to each other via a pivot mechanism 25, allowing the housing 21 and the cover 22 to be opened (e.g., Figure 4 and Figure 5 (as shown) and cover (as shown) Figure 6 and Figure 7 The action shown allows the cover 22 to selectively close onto the box 21. The box 21 has a receiving space 211 for accommodating the laser irradiation device 1. A pressing surface 221 can be formed on the inner side of the cover 22, which can be used to press the laser irradiation device 1, so that the laser irradiation device 1 is stably positioned within the receiving space 211. A limiting surface 222 can also be formed on the inner side of the cover 22, which can surround the periphery of the laser irradiation device 1 to limit the laser irradiation device 1, so that the laser irradiation device 1 is stably positioned within the receiving space 211.

[0029] In this embodiment, a first fixing member 18 may also be provided on the body 11 of the laser irradiation device 1 (e.g., Figure 2 As shown), a second fixing member 29 can also be provided on the box body 21 (such as...). Figure 5As shown, the first fixing member 18 and the second fixing member 29 can be corresponding magnetic components or snap-fit ​​components, etc. When the laser irradiation device 1 is placed in the receiving space 211 of the box 21, the first fixing member 18 and the second fixing member 29 can be connected and fixed to each other, so that the laser irradiation device 1 can be more stably set in the receiving space 211.

[0030] In this embodiment, a third fixing member 30 may also be provided on the box body 21 (e.g., Figure 5 As shown, a fourth fixing member 31 may also be provided on the cover 22. The third fixing member 30 and the fourth fixing member 31 may be corresponding magnetic components or snap-on components, etc. When the cover 22 is closed on the box 21, the third fixing member 30 and the fourth fixing member 31 can be connected and fixed to each other, so that the cover 22 can be stably closed on the box 21.

[0031] The second circuit board 23 and the second energy storage component 24 are disposed in the housing 21. The second energy storage component 24 is electrically connected to the second circuit board 23 and is a battery with energy storage function. The second energy storage component 24 can be used to supply the power required by the charging device 2. The housing 211 has a plurality of second contact points 26, which are electrically connected to the second circuit board 23. These second contact points 26 can be Pogo Pins (also known as spring pins or probes), but are not limited thereto. Any component that can be used to transmit power, such as various terminals, springs, or conductive parts, is acceptable. When the laser irradiation device 1 is placed in the housing 211, the first contact points 15 can contact the second contact points 26, so that the power of the charging device 2 can be transmitted to the laser irradiation device 1 to charge the laser irradiation device 1.

[0032] In this embodiment, the charging device 2 further includes an electrical connector 27 (e.g., ...). Figure 7 As shown), the electrical connector 27 can be disposed on the housing 21, and the electrical connector 27 is exposed outside the housing 21. The electrical connector 27 is electrically connected to the second circuit board 23 so that the charging device 2 can be charged by wiring through the electrical connector 27. In addition, a wireless charging receiver 28 can also be disposed on the housing 21 (e.g., Figure 5 As shown, the wireless charging receiver 28 is electrically connected to the second circuit board 23. Therefore, when the charging device 2 is placed on an existing wireless charging stand, the wireless charging transmitter on the wireless charging stand and the wireless charging receiver 28 can transfer energy using a wireless communication transmission protocol, so as to charge the charging device 2 using a wireless charging method to provide the power required by the charging device 2.

[0033] [Beneficial Effects of the Examples]

[0034] The beneficial effect of this utility model is that the laser irradiation device and charging device combination provided by this utility model includes a laser irradiation device and a charging device. The laser irradiation device includes a body, a first circuit board, multiple laser modules, and a first energy storage component. The first circuit board, laser modules, and first energy storage component are disposed on the body, and the laser modules and first energy storage component are electrically connected to the first circuit board. The body is provided with multiple first contact points, and the first contact points are electrically connected to the first circuit board. The charging device includes a box, a cover, a second circuit board, and a second energy storage component. The cover can selectively cover the box, and the box has an accommodating space. The second circuit board and second energy storage component are disposed on the box, and the second energy storage component is electrically connected to the second circuit board. The accommodating space of the box is provided with multiple second contact points, and the second contact points are electrically connected to the second circuit board. The laser irradiation device can be placed in the accommodating space, and these first contact points can contact these second contact points, so that the power of the charging device can be transferred to the laser irradiation device to charge the laser irradiation device. This invention utilizes photobiological regulation, injecting precisely targeted wavelengths of light into the skin to achieve both external soothing and internal conditioning effects. It is safe, painless, and non-invasive, and promotes circulatory regulation. This invention uses lasers instead of traditional acupuncture, avoiding invasive procedures that could lead to infection, fainting, or fear of needles. The laser irradiation device is rechargeable via a contact point system using wireless charging (wireless materials). It contains a rechargeable energy storage component, allowing for rechargeable and reusable use, making it convenient to use.

[0035] The above description is only a preferred embodiment of the present utility model and is not intended to limit the patent protection scope of the present utility model. Therefore, all equivalent changes made based on the content of the present utility model specification and drawings are similarly included within the scope of protection of the present utility model and are hereby stated.

Claims

1. A combination of a laser irradiation device and a charging device, characterized in that, include: A laser irradiation device includes a main body, a first circuit board, multiple laser modules, and a first energy storage component. The first circuit board, the multiple laser modules, and the first energy storage component are disposed on the main body and electrically connected to the first circuit board. Laser beams generated by the multiple laser modules can exit the main body. The main body has multiple first contact points electrically connected to the first circuit board. A charging device includes a housing, a cover, a second circuit board, and a second energy storage component. The cover can selectively close onto the housing. The housing has an accommodating space. The second circuit board and the second energy storage component are disposed in the housing. The second energy storage component is electrically connected to the second circuit board. The accommodating space of the housing has a plurality of second contact points, which are electrically connected to the second circuit board. A laser irradiation device can be placed in the accommodating space, and the plurality of first contact points can contact the plurality of second contact points, so that the power of the charging device can be transferred to the laser irradiation device to charge the laser irradiation device.

2. The laser irradiation device and charging device combination as described in claim 1, characterized in that, The main body is provided with at least one control key and at least one indicator light. The at least one control key and at least one indicator light are electrically connected to the first circuit board. The plurality of first contact points, the at least one control key and the at least one indicator light are disposed on one side of the main body, and the plurality of laser modules are disposed on the opposite side of the main body.

3. The laser irradiation device and charging device combination as described in claim 2, characterized in that, The control key is located at the center of the body, and the first contact point and the indicator light are located on opposite sides of the control key.

4. The combination of laser irradiation device and charging device as described in claim 1, characterized in that, The charging device includes an electrical connector that is electrically connected to the second circuit board.

5. The laser irradiation device and charging device combination as described in claim 1, characterized in that, The box is equipped with a wireless charging receiver, which is electrically connected to the second circuit board and can charge the charging device wirelessly.

6. The laser irradiation device and charging device combination as described in claim 1, characterized in that, A pressing surface is formed on the inner side of the cover, which can be used to press the laser irradiation device.

7. The laser irradiation device and charging device combination as described in claim 1, characterized in that, A limiting surface is formed on the inner side of the cover, and the limiting surface can surround the periphery of the laser irradiation device to limit the laser irradiation device.

8. The laser irradiation device and charging device combination as described in claim 1, characterized in that, The laser irradiation device has a first fixing member on its main body and a second fixing member on its box. When the laser irradiation device is placed in the accommodating space of the box, the first fixing member and the second fixing member are connected and fixed to each other.

9. The laser irradiation device and charging device combination as described in claim 1, characterized in that, A third fixing member is provided on the box body, and a fourth fixing member is provided on the cover body. When the cover body is closed on the box body, the third fixing member and the fourth fixing member are connected and fixed to each other.