LED photon treatment side cabin and whole-body LED photon treatment instrument

By designing an LED photon therapy side chamber, the problem that existing instruments cannot irradiate both ends of the human body has been solved, achieving effective irradiation and heat dissipation from all directions, and ensuring the normal operation of both the upper and lower chambers.

CN224141365UActive Publication Date: 2026-04-21RHEIN LASER TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
RHEIN LASER TECH CO LTD
Filing Date
2025-04-15
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

The existing upper and lower chamber design of LED photon therapy devices cannot effectively irradiate the top of the head and the soles of the feet, resulting in blind spots.

Method used

Design an LED photon therapy side chamber, including an upper side chamber component, a lower side chamber component, and an adapter. The upper side chamber component includes a cooling fan, an LED light panel, and a light-transmitting plate. The lower side chamber component includes a power supply. It is installed at the end of the lower chamber through the adapter to achieve effective irradiation of both ends of the human body and to separate the power supply from the LED light panel. The cooling fan is used to dissipate heat.

Benefits of technology

It achieves effective illumination of both ends of a lying human body, avoids mutual interference between the power supply and the LED light panel, and effectively dissipates heat without affecting the normal operation of the upper and lower cabins, thus achieving all-round illumination.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an LED photon treatment side cabin and a whole-body LED photon treatment instrument. The side cabin comprises a side cabin upper assembly, a side cabin lower assembly and an adapter. The side cabin upper assembly comprises a side cabin upper shell, a heat dissipation fan, an LED lamp panel and a light-transmitting plate, the heat dissipation fan and the LED lamp panel are installed in the side cabin upper shell, the light-transmitting plate is arranged on the working face, and the heat dissipation fan is located between the LED lamp panel and the heat dissipation face; the side cabin lower assembly comprises a side cabin lower shell and a power source, the power source is installed in the side cabin lower shell and used for supplying power to the cooling fan and the LED lamp panel, and the side cabin upper shell is installed on the upper side of the side cabin lower shell. The adapter is used for being installed at the end of a lower cabin and providing an installation position for a side cabin lower shell. When the side cabin lower shell is installed on the adapter, the side cabin lower shell is located below the lower cabin outer side lying plane, the side cabin upper shell is located above the lower cabin outer side lying plane, and the working face of the side cabin upper shell faces inwards. The side cabin can effectively irradiate the two ends of a lying human body without influencing the work of the upper cabin and the lower cabin.
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Description

Technical Field

[0001] This utility model belongs to the field of LED photon therapy, specifically relating to an LED photon therapy side chamber and a whole-body LED photon therapy device. Background Technology

[0002] The principle of LED photon therapy is to release high-power-density visible red light and invisible near-infrared light. Utilizing their deep penetration, they reach the deep layers of the skin to assist in treatment, reducing inflammation, pain, and swelling, thereby improving blood circulation, promoting tissue repair and regeneration, and accelerating wound healing. Current LED photon therapy devices generally use an upper and lower chamber design. The patient lies flat on the lower chamber, and the upper chamber covers the lower chamber, enclosing the body. LED lights in both chambers irradiate the upper and lower parts of the body. While this design provides a wide irradiation range, it still neglects the ends of the body, failing to effectively irradiate the top of the head and the soles of the feet. Utility Model Content

[0003] The purpose of this invention is to provide an LED photon therapy side chamber and a whole-body LED photon therapy device including the above-mentioned side chamber. The side chamber can effectively irradiate both ends of a lying human body without affecting the operation of the upper and lower chambers.

[0004] An LED photon therapy side chamber includes an upper side chamber assembly, a lower side chamber assembly, and an adapter. The upper side chamber assembly includes an upper side chamber shell, a cooling fan, an LED light panel, and a light-transmitting plate. One side of the upper side chamber shell is a working surface, and the other side is a heat dissipation surface with heat dissipation holes. The cooling fan and the LED light panel are installed inside the upper side chamber shell, and the light-transmitting plate is located on the working surface. The cooling fan is positioned between the LED light panel and the heat dissipation surface. The lower side chamber assembly includes a lower side chamber shell and a power supply. The power supply is installed inside the lower side chamber shell and is used to power the cooling fan and the LED light panel. The upper side chamber shell is installed on the upper side of the lower side chamber shell. The adapter is used to install the lower side chamber shell at the end of the lower chamber, providing an installation position for the lower side chamber shell. When the lower side chamber shell is installed on the adapter, the lower side chamber shell is below the outer horizontal plane of the lower chamber, and the upper side chamber shell is above the outer horizontal plane of the lower chamber with its working surface facing inward.

[0005] Preferably, the lower end heat dissipation surface of the side compartment upper shell is hinged to the outer side of the upper end of the side compartment lower shell, and the side compartment upper shell can be vertically supported on the side compartment lower shell. When the side compartment upper shell is vertically supported on the side compartment lower shell, it can only be flipped outward and downward under the action of external force.

[0006] Preferably, the upper shell of the side cabin and the lower shell of the side cabin are hinged together by hinges.

[0007] Preferably, the hinges are made of stainless steel.

[0008] Preferably, the adapter is an angled folding plate, which can be locked onto the external corner of the lower compartment end and fixed by its internal corner, and the vertical part of the adapter is the installation position of the lower shell of the side compartment.

[0009] Preferably, the mounting surface of the lower shell of the side cabin is open, and when the mounting surface of the lower shell of the side cabin is mounted on the vertical portion of the adapter, it is closed by the vertical portion of the adapter.

[0010] Preferably, both the vertical and horizontal portions of the adapter are provided with waist holes, and the adapter is installed at the lower compartment end by screws through the waist holes during installation.

[0011] Preferably, the cooling fan is integrated on the fan mounting plate, and both the fan mounting plate and the LED light panel are mounted in the upper shell of the side compartment via brackets. The fan mounting plate and the LED light panel are located on the back and front of the brackets, respectively.

[0012] Preferably, the working surface of the side cabin upper shell is open, and the light-transmitting plate is installed on the working surface through an annular component and closes the working surface. The annular component is used to increase the contact area between the side cabin upper shell and the light-transmitting plate.

[0013] A whole-body LED photon therapy device includes an upper chamber and a lower chamber, with the aforementioned LED photon therapy side chambers located at both ends of the lower chamber.

[0014] The beneficial effects of this utility model are:

[0015] This side chamber can be installed at the end of the lower chamber using an adapter and illuminates the body with its working surface facing inward, effectively illuminating both ends of a lying human body. Furthermore, the side chamber separates the power supply from the LED light panel, preventing mutual interference between the two. Additionally, the side chamber uses a cooling fan and ventilation holes to expel the heat generated by the LED light panel, avoiding any impact on the human body or other chambers. Therefore, this side chamber can effectively irradiate both ends of a lying human body without affecting the operation of the upper and lower chambers. Attached Figure Description

[0016] Figure 1 This is a three-dimensional view of the whole-body LED photon therapy device of this utility model.

[0017] Figure 2 This is a front view of the whole-body LED photon therapy device of this utility model.

[0018] Figure 3 This is a disassembly diagram of the LED photon therapy side chamber in this utility model.

[0019] In the picture:

[0020] 1-Upper cabin;

[0021] 2-Side compartment; 21-Upper side compartment assembly; 211-Light-transmitting panel; 212-Ring-shaped component; 213-LED light panel; 214-Bracket; 215-Cooling fan; 216-Fan mounting plate; 217-Upper side compartment shell; 2171-Heat dissipation hole; 22-Lower side compartment assembly; 221-Power supply; 222-Lower side compartment shell; 223-Hinge; 23-Adapter; 231-Waist hole;

[0022] 3-Lower cabin; 31-Lying flat surface. Detailed Implementation

[0023] The present application will be further described below with reference to the accompanying drawings and embodiments.

[0024] This embodiment discloses a whole-body LED photon therapy device, such as Figure 1 and Figure 2 As shown, it includes an upper cabin 1, a lower cabin 3, and side cabins 2, with side cabins 2 located at both ends of the lower cabin 3; as Figures 1 to 3 As shown, the side compartment 2 includes an upper side compartment assembly 21, a lower side compartment assembly 22, and an adapter 23. The upper side compartment assembly 21 includes an upper side compartment shell 217, a cooling fan 215, an LED light panel 213, and a light-transmitting plate 211. One side of the upper side compartment shell 217 is a working surface, and the other side is a heat dissipation surface with heat dissipation holes 2171. The cooling fan 215 and the LED light panel 213 are installed inside the upper side compartment shell 217. The light-transmitting plate 211 is located on the working surface. The cooling fan 215 is located between the LED light panel 213 and the heat dissipation surface. The lower side compartment assembly 22 includes... The device includes a lower side cabin shell 222 and a power supply 221. The power supply 221 is installed inside the lower side cabin shell 222 and is used to power the cooling fan 215 and the LED light panel 213. The upper side cabin shell 217 is installed on the upper side of the lower side cabin shell 222. The adapter 23 is used to install at the end of the lower cabin 3 to provide an installation position for the lower side cabin shell 222. When the lower side cabin shell 222 is installed on the adapter 23, the lower side cabin shell 222 is below the outer horizontal plane 31 of the lower cabin 3, and the upper side cabin shell 217 is above the outer horizontal plane 31 of the lower cabin 3 with its working surface facing inward.

[0025] The side chamber 2 can be installed at the end of the lower chamber 3 using the adapter 23 and irradiate with its working surface facing inward, effectively irradiating both ends of a lying human body. Furthermore, the side chamber 2 separates the power supply 221 from the LED light panel 213, preventing mutual interference between the power supply 221 and the LED light panel 213. In addition, the side chamber 2 can use the cooling fan 215 and heat dissipation holes 2171 to expel the heat generated by the LED light panel 213, avoiding any impact on the human body or other chambers. Therefore, the side chamber 2 can effectively irradiate both ends of a lying human body without affecting the operation of the upper and lower chambers. Thus, the whole-body LED photon therapy device using the upper chamber 1, lower chamber 3, and side chamber 2 can provide all-round irradiation of a lying human body without leaving any blind spots.

[0026] like Figures 1 to 3 As shown, in this embodiment, preferably, the lower end heat dissipation surface of the side cabin upper shell 217 is hinged to the upper outer side of the side cabin lower shell 222, and the side cabin upper shell 217 can be vertically supported on the side cabin lower shell 222. When the side cabin upper shell 217 is vertically supported on the side cabin lower shell 222, it can only be flipped outward and downward under the action of external force. After the side cabin 2 is installed, the side cabin upper shell 217 can be erected or lowered as needed. When it is not desired to irradiate the head area and foot area of ​​the human body and ventilation is desired, the side cabin upper shells 217 at both ends can be lowered. When it is desired to irradiate only one end of the lying human body and ventilation is desired at the other end, one side cabin upper shell 217 at one end can be erected and the other side cabin upper shell 217 at the other end can be lowered. When it is desired to irradiate both the head area and foot area of ​​the human body at the same time, the side cabin upper shells 217 at both ends can be erected. The upper shell 217 and the lower shell 222 of the side cabin can be hinged together by a hinge 223, which can be made of stainless steel.

[0027] like Figure 1 and Figure 3 As shown, in this embodiment, preferably: the adapter 23 is an angled folding plate, and the adapter 23 can be fixed to the external corner of the lower compartment 3 by its internal corner. The vertical part of the adapter 23 is the installation position of the side compartment lower shell 222, which makes the installation stable. In addition, the installation surface of the side compartment lower shell 222 is open, and when the installation surface of the side compartment lower shell 222 is installed on the vertical part of the adapter 23, it is closed by the vertical part of the adapter 23. This setting reduces the weight and material usage. In addition, both the vertical and horizontal parts of the adapter 23 are provided with waist holes 231. When the adapter 23 is installed, it is installed at the end of the lower compartment 3 by screws through the waist holes 231. This setting makes the installation convenient.

[0028] like Figure 3 As shown, in this embodiment, preferably, the cooling fan 215 is integrated on the fan mounting plate 216, and both the fan mounting plate 216 and the LED light panel 213 are mounted in the side cabin upper housing 217 through the bracket 214. The fan mounting plate 216 and the LED light panel 213 are located on the back and front of the bracket 214, respectively.

[0029] like Figure 3 As shown, in this embodiment, preferably, the working surface of the side cabin upper shell 217 is open, and the light-transmitting plate 211 is installed on the working surface through the annular member 212 and closes the working surface. The annular member 212 is used to increase the contact area between the side cabin upper shell 217 and the light-transmitting plate 211. This arrangement avoids stress concentration at the connection position of the light-transmitting plate 211, which could cause damage.

[0030] When installing side compartment 2: First, install adapter 23 at the end of lower compartment 3, then assemble lower side compartment component 22 and upper side compartment component 21 together, and then install lower side compartment shell 222 onto adapter 23. Alternatively, first assemble lower side compartment component 22 and upper side compartment component 21 together, then install adapter 23 onto lower side compartment shell 222, and then install adapter 23 at the end of lower compartment 3. When assembling upper side compartment component 21: First, install fan mounting plate 216 onto the back of bracket 214, then install bracket 214 inside upper side compartment shell 217, then install LED light panel 213 onto the front of bracket 214, and then install light-transmitting plate 211 and annular component 212 together on the working surface of upper side compartment shell 217.

[0031] The embodiments described above are some, but not all, of the embodiments of this application. The detailed description of the embodiments of this application is not intended to limit the scope of the claimed application, but merely to illustrate selected embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort are within the scope of protection of this application.

Claims

1. An LED photon therapy side chamber, characterized in that: The system includes an upper side cabin assembly, a lower side cabin assembly, and an adapter. The upper side cabin assembly includes an upper side cabin shell, a cooling fan, an LED light panel, and a light-transmitting plate. One side of the upper side cabin shell is a working surface, and the other side is a heat dissipation surface with ventilation holes. The cooling fan and LED light panel are installed inside the upper side cabin shell, and the light-transmitting plate is located on the working surface. The cooling fan is positioned between the LED light panel and the heat dissipation surface. The lower side cabin assembly includes a lower side cabin shell and a power supply. The power supply is installed inside the lower side cabin shell and is used to power the cooling fan and LED light panel. The upper side cabin shell is installed on the upper side of the lower side cabin shell. The adapter is used to provide an installation position for the lower side cabin shell at the end of the lower cabin. When the lower side cabin shell is installed on the adapter, the lower side cabin shell is below the outer horizontal plane of the lower cabin, and the upper side cabin shell is above the outer horizontal plane of the lower cabin with its working surface facing inward.

2. The LED photonic treatment side pod of claim 1, wherein: The lower end of the upper shell of the side compartment is hinged to the outer side of the upper end of the lower shell of the side compartment. The upper shell of the side compartment can be vertically supported on the lower shell of the side compartment. When the upper shell of the side compartment is vertically supported on the lower shell of the side compartment, it can only be flipped outward and downward under the action of external force.

3. The LED photonic treatment side pod of claim 2, wherein: The upper and lower shells of the side cabins are hinged together by hinges.

4. The LED photonic treatment pod of claim 3, wherein: The hinges are made of stainless steel.

5. The LED photonic treatment pod of claim 1, wherein: The adapter is an angled folding plate. The adapter can be locked onto the external corner of the lower compartment through its internal corner and connected and fixed. The vertical part of the adapter is the installation position of the lower shell of the side compartment.

6. The LED photonic treatment pod of claim 5, wherein: The mounting surface of the lower shell of the side compartment is open, and when the mounting surface of the lower shell of the side compartment is mounted on the vertical part of the adapter, it is closed by the vertical part of the adapter.

7. The LED photon therapy side chamber as described in claim 5, characterized in that: Both the vertical and horizontal sections of the adapter have waist holes, which are used to install the adapter at the lower compartment end during installation.

8. The LED photonic treatment pod of claim 1, wherein: The cooling fan is integrated into the fan mounting plate. Both the fan mounting plate and the LED light panel are mounted in the upper shell of the side compartment via brackets. The fan mounting plate and the LED light panel are located on the back and front of the brackets, respectively.

9. The LED photonic treatment pod of claim 1, wherein: The working surface of the side cabin upper shell is open, and the light-transmitting plate is installed on the working surface through an annular component and closes the working surface. The annular component is used to increase the contact area between the side cabin upper shell and the light-transmitting plate.

10. A whole body LED photonic therapeutic apparatus comprising an upper cabin and a lower cabin, characterized in that: The lower chamber is equipped with LED photon therapy side chambers as described in any one of claims 1 to 9 at both ends.