Modularized phototherapy module

Through the design of hub components, phototherapy components and connection components, the problem of structural fixation of existing phototherapy modules is solved, and the flexible combination and rapid connection of modular components are realized, thereby improving applicability and reliability.

CN222841420UActive Publication Date: 2025-05-09DONGGUAN HERON OPTO CO LTD
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Patent Information

Application Number
CN202421323267.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-11
Publication Date
2025-05-09
Estimated Expiration
2034-06-11

AI Technical Summary

Technical Problem

The existing phototherapy module structure is fixed and cannot be flexibly operated and combined, affecting matching and applicability.

Method used

Through the structural design of the hub assembly, phototherapy assembly and connection of the connection components, the modular components are achieved, supporting rapid assembly and disassembly.

Benefits of technology

Improves the flexibility and applicability of the phototherapy module, simplifies the assembly and maintenance process, reduces installation time and cost, and ensures the reliability and safety of electrical connections.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of phototherapy, in particular to a modularized phototherapy module which comprises a line concentration assembly, a phototherapy assembly and a connecting assembly, the line concentration assembly is provided with a first interface, the phototherapy assembly is provided with a second interface and a third interface, and the connecting assembly is provided with a second interface and a third interface. The connecting assembly comprises a connecting line and a first connector and a second connector which are arranged at the two ends of the connecting line, the first connector is connected with the first interface, and the second connector is connected with the second interface; the phototherapy assembly comprises a phototherapy shell, a phototherapy lamp wick arranged in the phototherapy shell and a condensing lens covering the phototherapy lamp wick. According to the utility model, through the structural design of the line concentration assembly, the phototherapy assembly and the connection assembly, the matching and connection of modularized assemblies are realized. Therefore, the assembly and disassembly of the phototherapy module become simple and flexible, the phototherapy module can be combined according to actual requirements, and the flexibility and applicability are improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of phototherapy, in particular to a modular phototherapy module. Background Art

[0002] Phototherapy is a method of treatment using light. It irradiates the human body with light of a specific wavelength and intensity to achieve the purpose of treating diseases, relieving symptoms or promoting recovery. Light of different wavelengths can regulate the cells, tissues and physiological processes of organisms. Some light can dilate blood vessels, increase blood circulation, and improve the nutrient supply and metabolism of tissues. Phototherapy can reduce inflammatory responses and relieve swelling and pain. Phototherapy has a wide range of applications in the medical field, such as the treatment of skin diseases, cardiovascular diseases, nervous system diseases, bone injuries, etc. It is a non-invasive treatment method with the advantages of simple operation and few side effects.

[0003] The generation of light therapy, whether on equipment or products, needs to be achieved by setting up a light therapy module. The structure of existing light therapy modules is fixed, which cannot be flexibly operated and used, affects the matching, and cannot be combined according to actual needs. Therefore, it is necessary to improve the existing light therapy module structure. Utility Model Content

[0004] To solve the above problems, the utility model provides a modular light therapy module that realizes the matching and connection of modular components through the structural design of the wiring assembly, the light therapy assembly and the connection assembly. This design makes the assembly and disassembly of the light therapy module simple and flexible, and can be combined according to actual needs, thereby improving the flexibility and applicability of the modular light therapy module.

[0005] The technical solution adopted by the utility model is: a modular phototherapy module, including a wiring assembly, a phototherapy assembly and a connecting assembly, the wiring assembly is provided with a first interface, the phototherapy assembly is provided with a second interface and a third interface, the connecting assembly includes a connecting line and a first connector and a second connector arranged at both ends of the connecting line, the first connector is connected to the first interface, and the second connector is connected to the second interface; the phototherapy assembly includes a phototherapy housing, a phototherapy wick arranged in the phototherapy housing, and a focusing lens covered on the outside of the phototherapy wick.

[0006] A further improvement to the above scheme is that the wiring hub components are provided in multiple groups, and wiring harnesses are arranged between the multiple groups of wiring hub components and are connected in series in sequence; the phototherapy components are provided in multiple groups, and the multiple groups of phototherapy components are connected in series in sequence through connecting components.

[0007] A further improvement to the above scheme is that the cable hub assembly includes a cable hub base, a cable hub upper shell and a cable hub board, the cable hub upper shell is provided with a support frame, the cable hub board is installed on the support frame, and serial connection ports are provided at both ends of the cable hub base, and the serial connection ports are used to connect the wiring harness to the cable hub board.

[0008] A further improvement to the above scheme is that reinforcement seats are provided at both ends of the wiring hub base, the serial connection port is provided on the reinforcement seat, the wiring hub upper shell is provided with a pressing groove, and the pressing groove is used to cooperate with the serial connection port to press and fix the wiring harness; the first interface is provided on the wiring hub board, and the wiring hub upper shell is provided with a through groove corresponding to the first interface; the support frame is provided with a positioning groove, and the positioning groove is used to position the first interface.

[0009] A further improvement to the above scheme is that the phototherapy shell includes a phototherapy bottom shell, a phototherapy upper shell and a phototherapy PCB board, the phototherapy bottom shell is provided with an assembly side panel, the phototherapy upper shell is provided with a matching bracket and a positioning frame, and the matching bracket is used to match the assembly side panel to connect the phototherapy bottom shell with the phototherapy upper shell.

[0010] A further improvement to the above scheme is that the positioning frame is used to fix the phototherapy wick, the phototherapy wick is arranged on the phototherapy PCB board, the second interface and the third interface are respectively arranged on both sides of the phototherapy PCB board, and the first opening and the second opening are arranged on both sides of the phototherapy upper shell, the first opening is used to fix the second interface, and the second opening is used to fix the third interface.

[0011] A further improvement to the above scheme is that the positioning frame is ring-shaped, the positioning frame is provided with a positioning slot, the focusing lens is provided with a positioning block, the positioning block is used to cooperate with the positioning slot to fix the focusing lens on the positioning frame, and one end of the focusing lens extends to the surface of the phototherapy upper shell.

[0012] A further improvement to the above scheme is that the focusing lens is provided with a lamp cavity, and the focusing lens is arranged on the outside of the phototherapy lamp wick through a lamp cavity cover, and a hemispherical protrusion is provided on a side of the lamp cavity facing the phototherapy lamp wick.

[0013] A further improvement to the above solution is that the first interface includes a first plug socket, a first plug slot arranged on the first plug socket, and a first plug terminal arranged in the first plug slot; a first plug card slot is arranged on the upper side of the first plug slot.

[0014] A further improvement to the above solution is that the second interface includes a second plug socket, a second plug slot arranged on the second plug socket, and a second plug terminal arranged in the second plug slot; a second plug card slot is arranged on the upper side of the second plug slot.

[0015] A further improvement to the above solution is that the third interface includes a third plug socket, a third plug slot arranged on the third plug socket, and a third plug terminal arranged in the third plug slot; and a third plug card slot is arranged on the upper side of the third plug slot.

[0016] A further improvement to the above scheme is that the first connector is provided with a first plug socket, a first pair of slots provided in the first plug socket, and a first plug terminal provided in the first pair of slots, and a first plug-in fixing plate is provided at one end of the first plug socket; the second connector is provided with a second plug socket, a second pair of slots provided in the second plug socket, and a second plug terminal provided in the second pair of slots, and a second plug-in fixing plate is provided at one end of the second plug socket.

[0017] The beneficial effects of the utility model are:

[0018] Compared with the existing phototherapy module, the utility model connects the phototherapy component with the wire collection component through a connecting component, which can be used in any combination, has a wide range of applications and strong practicality. The matching and connection of modular components are realized through the structural design of the wire collection component, the phototherapy component and the connecting component. This design makes the assembly and disassembly of the phototherapy module simple and flexible, and can be combined according to actual needs, thereby improving flexibility and applicability. The connecting component includes a connecting line and a first connector and a second connector arranged at both ends of the connecting line. Through the connection of the first connector with the first interface and the second connector with the second interface, the phototherapy component can be quickly connected and disassembled. This convenient connection method helps to save installation time and labor costs and improves the convenience of operation. Through the design of the connecting line and the connector, a stable and reliable electrical connection is achieved. In this way, the electrical connection quality of the phototherapy module can be ensured, electrical problems caused by poor contact or looseness can be avoided, and the reliability and safety of the phototherapy module can be improved. The phototherapy component includes a phototherapy housing, a phototherapy wick and a focusing lens. This design can effectively protect the phototherapy wick, and through the design of the focusing lens, the scattering and focusing of light can be effectively controlled, the phototherapy effect can be improved, and the effectiveness and safety of the treatment can be ensured. The modular design makes the maintenance and replacement of the phototherapy module more convenient. When the phototherapy components need to be repaired or replaced, only the corresponding modules need to be disassembled for processing, without the need for large-scale disassembly of the entire system, saving maintenance time and cost. The design of modular phototherapy modules can effectively save space, making the layout of phototherapy equipment more compact and flexible, adapting to the needs of various different space conditions, and improving the flexibility of equipment use. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a schematic diagram of the combined state of the modular phototherapy module of the utility model;

[0020] Figure 2It is a three-dimensional schematic diagram of another state of the modular light therapy module of the utility model;

[0021] Figure 3 It is a three-dimensional schematic diagram of the modular phototherapy module of the utility model;

[0022] Figure 4 for Figure 3 Exploded diagram of the modular light therapy module;

[0023] Figure 5 for Figure 3 An exploded diagram of the modular light therapy module from another perspective;

[0024] Figure 6 for Figure 3 An exploded diagram of the modular light therapy module from another perspective;

[0025] Figure 7 It is a connection diagram of the connection assembly of the utility model;

[0026] Figure 8 This is a schematic diagram of the connection component of the utility model from another perspective.

[0027] Explanation of the reference numerals: line collection component 1, line collection base 11, serial connection port 111, reinforcement seat 112, line collection shell 12, support frame 121, pressure groove 122, through groove 123, positioning groove 124, line collection plate 13, phototherapy component 2, phototherapy shell 21, phototherapy bottom shell 211, assembly side plate 2111, phototherapy upper shell 212, matching bracket 2121, positioning frame 2122, first opening 2123, second opening 2124, positioning card slot 2125, phototherapy PCB board 213, phototherapy wick 22, focusing lens 23, positioning card block 231, lamp cavity 232, connection component 3, connecting line 31, first Connector 32, first plug socket 321, first pair of slots 322, first plug terminal 323, first plug fixing plate 324, second connector 33, second plug socket 331, second pair of slots 332, second plug terminal 333, second plug fixing plate 334, first interface 4, first plug socket 41, first plug slot 42, first plug terminal 43, first plug card slot 44, second interface 5, second plug socket 51, second plug slot 52, second plug terminal 53, second plug card slot 54, third interface 6, third plug socket 61, third plug slot 62, third plug terminal 63, third plug card slot 64. DETAILED DESCRIPTION

[0028] In order to facilitate the understanding of the present invention, the present invention will be described more fully below with reference to the relevant drawings. The preferred embodiments of the present invention are given in the drawings. However, the present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the understanding of the disclosure of the present invention more thorough and comprehensive.

[0029] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly on the other element or there may be an intermediate element. When an element is considered to be "connected to" another element, it may be directly connected to the other element or there may be an intermediate element at the same time.

[0030] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art of the present invention. The terms used herein in the specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention.

[0031] like Figures 1 to 8As shown, in one embodiment of the utility model, a modular phototherapy module is involved, including a line collection component 1, a phototherapy component 2 and a connection component 3, wherein the line collection component 1 is provided with a first interface 4, the phototherapy component 2 is provided with a second interface 5 and a third interface 6, the connection component 3 includes a connecting line 31 and a first connector 32 and a second connector 33 provided at both ends of the connecting line 31, the first connector 32 is connected to the first interface 4, and the second connector 33 is connected to the second interface 5; the phototherapy component 2 includes a phototherapy housing 21, a phototherapy wick 22 provided in the phototherapy housing 21, and a focusing lens 23 provided outside the phototherapy wick 22. In this embodiment, the phototherapy component 2 is connected to the line collection component 1 through the connection component 3, and can be used in any combination, with a wide range of applications and strong practicality. The combination and connection of modular components are realized through the structural design of the line collection component 1, the phototherapy component 2 and the connection component 3. This design makes the assembly and disassembly of the phototherapy module simple and flexible, and can be combined according to actual needs, thereby improving flexibility and applicability. The connection component 3 includes a connecting line 31 and a first connector 32 and a second connector 33 arranged at both ends of the connecting line 31. The first connector 32 is connected to the first interface 4, and the second connector 33 is connected to the second interface 5, so that the phototherapy component 2 can be quickly connected and disassembled. This convenient connection method helps to save installation time and labor costs, and improves the convenience of operation. Through the design of the connecting line 31 and the connector, a stable and reliable electrical connection is achieved. In this way, the electrical connection quality of the phototherapy module can be ensured, electrical problems caused by poor contact or looseness can be avoided, and the reliability and safety of the phototherapy module can be improved. The phototherapy component 2 includes a phototherapy housing 21, a phototherapy wick 22 and a focusing lens 23. This design can effectively protect the phototherapy wick 22, and through the design of the focusing lens 23, the scattering and focusing of light can be effectively controlled, the phototherapy effect can be improved, and the effectiveness and safety of the treatment can be ensured. The modular design makes the maintenance and replacement of the phototherapy module more convenient. When the phototherapy component 2 needs to be repaired or replaced, it is only necessary to disassemble the corresponding module for processing, without the need for large-scale disassembly of the entire system, saving maintenance time and cost. The design of modular phototherapy modules can effectively save space, making the layout of phototherapy equipment more compact and flexible, adapting to the needs of various spatial conditions and improving the flexibility of equipment use.

[0032] There are multiple groups of wiring components 1, and wiring harnesses are arranged between the multiple groups of wiring components 1 in series; there are multiple groups of phototherapy components 2, and the multiple groups of phototherapy components 2 are connected in series through connecting components 3. In this embodiment, the flexible expansion of the modular phototherapy module is achieved by arranging wiring harnesses in series between multiple groups of wiring components 1, and connecting multiple groups of phototherapy components 2 in series through connecting components 3. In this way, the wiring components 1 and phototherapy components 2 can be gradually increased according to actual needs, the treatment range can be expanded or the treatment intensity can be increased, and phototherapy treatment scenes of different scales and needs can be met. Through the series design of the wiring components 1 and the connecting components 3, the wiring of the entire system can be simplified, and the complexity and cost of the wiring can be reduced. This design makes the layout of the modular phototherapy module clearer and more unified, and is convenient for maintenance and management. Through the series connection of multiple groups of wiring components 1 and phototherapy components 2, centralized control and management of the entire system is achieved. In this way, unified electrical and phototherapy parameter adjustment can be easily performed, which improves the operating convenience and management efficiency of the treatment equipment. The serial connection design of multiple sets of wiring components 1 and phototherapy components 2 allows for the free combination of different numbers and types of components as needed to achieve a variety of treatment configurations. This flexible configuration combination helps meet the needs of different patients and treatments, and improves the personalization and targeting of treatments. The serial connection design can effectively save space and resources, avoiding repeated wiring and repeated space occupation by equipment. This helps optimize the layout of treatment equipment and space utilization efficiency, and improves the overall efficiency and utilization of treatment sites.

[0033] See also Figures 4 to 6As shown, the line collection assembly 1 includes a line collection base 11, a line collection upper shell 12 and a line collection board 13, the line collection upper shell 12 is provided with a support frame 121, the line collection board 13 is installed on the support frame 121, and serial connection ports 111 are provided at both ends of the line collection base 11, and the serial connection ports 111 are used to connect the wiring harness to the line collection board 13. Specifically, reinforcement seats 112 are provided at both ends of the line collection base 11, the serial connection ports 111 are provided on the reinforcement seats 112, the line collection upper shell 12 is provided with a pressing groove 122, and the pressing groove 122 is used to cooperate with the serial connection port 111 to press and fix the wiring harness; the first interface 4 is provided on the line collection board 13, and the line collection upper shell 12 is provided with a through groove 123 corresponding to the first interface 4; the support frame 121 is provided with a positioning groove 124, and the positioning groove 124 is used to position the first interface 4. In this embodiment, the serial connection port 111 and the reinforcement seat 112 provided at both ends of the wiring hub base 11, as well as the design of the pressure groove 122 on the wiring hub shell 12, achieve a stable connection between the wiring harness and the wiring hub 13. This design can ensure the firmness and stability of the connection, avoid loosening and disconnection caused by vibration or external force, and improve the reliability of the electrical connection. The wiring hub 13 is installed on the support frame 121. Through the design of the support frame 121, the wiring hub 13 can be conveniently installed and fixed, reducing the complexity and time cost during the installation process and improving the installation efficiency. The positioning groove 124 provided on the support frame 121, the first interface 4 on the wiring hub 13, and the through groove 123 of the wiring hub shell 12 achieve a good guiding and positioning effect. This design can ensure the correct alignment of the wiring hub 13 and the wiring hub shell 12, avoid errors and offsets during installation, and improve the installation accuracy and stability of the components. Through the design of the serial connection port 111, the wiring harness and the wiring hub 13 can be quickly disassembled and replaced. This design makes the maintenance process simpler and more convenient, saving maintenance time and labor costs. The pressing groove 122 provided on the upper shell 12 of the hub is used to cooperate with the serial connection port 111 to press and fix the wiring harness. This design not only ensures the stability of the connection, but also plays a certain protective role, effectively protecting the wiring harness and the hub 13 and extending the service life.

[0034] The phototherapy housing 21 includes a phototherapy bottom shell 211, a phototherapy upper shell 212 and a phototherapy PCB board 213. The phototherapy bottom shell 211 is provided with an assembly side panel 2111, and the phototherapy upper shell 212 is provided with a matching bracket 2121 and a positioning bracket 2122. The matching bracket 2121 is used to match the assembly side panel 2111 to connect the phototherapy bottom shell 211 with the phototherapy upper shell 212. Specifically, the positioning bracket 2122 is used to fix the phototherapy wick 22, and the phototherapy wick 22 is arranged on the phototherapy PCB board 213. The second interface 5 and the third interface 6 are respectively arranged on both sides of the phototherapy PCB board 213. The first opening 2123 and the second opening 2124 are provided on both sides of the phototherapy upper shell 212. The first opening 2123 is used to fix the second interface 5, and the second opening 2124 is used to fix the third interface 6. In this embodiment, the phototherapy bottom shell 211 is firmly connected to the phototherapy upper shell 212 by the assembly side plate 2111 provided on the phototherapy bottom shell 211 and the matching bracket 2121 provided on the phototherapy upper shell 212. This design can ensure a firm connection between the shell components and improve the stability and reliability of the overall structure. The matching bracket 2121 is used to match the assembly side plate 2111, so that the assembly of the phototherapy bottom shell 211 and the phototherapy upper shell 212 becomes more flexible and convenient. This helps to simplify the assembly process and improve the assembly efficiency and accuracy. The positioning frame 2122 provided on the phototherapy upper shell 212 is used to fix the phototherapy wick 22, ensuring the stability of the position of the phototherapy wick 22 in the shell. At the same time, the fixing design of the second interface 5 and the third interface 6 can also effectively fix the position of the phototherapy PCB board 213 to avoid connection problems caused by vibration or displacement. The first opening 2123 and the second opening 2124 of the phototherapy upper shell 212 are used to fix the second interface 5 and the third interface 6, so as to achieve convenient interface fixing. This can simplify the interface fixing operation steps and improve the efficiency and accuracy of assembly. The design of the phototherapy housing 21 can not only achieve a stable connection and flexible assembly of the structure, but also effectively protect the phototherapy lamp wick 22 and internal components such as the circuit board, extending their service life.

[0035] The positioning frame 2122 is annular, and the positioning frame 2122 is provided with a positioning card slot 2125, and the focusing lens 23 is provided with a positioning card block 231, and the positioning card block 231 is used to cooperate with the positioning card slot 2125 to fix the focusing lens 23 on the positioning frame 2122, and one end of the focusing lens 23 extends to the surface of the phototherapy upper shell 212. In this embodiment, the positioning card slot 2125 on the positioning frame 2122 and the positioning card block 231 on the focusing lens 23 are designed to achieve accurate positioning and fixation of the focusing lens 23 on the positioning frame 2122. Such a design can ensure that the connection between the focusing lens 23 and the positioning frame 2122 is stable, and avoid displacement and looseness caused by vibration or external force. The design of the positioning card block 231 cooperating with the positioning card slot 2125 makes the installation of the focusing lens 23 simpler and more convenient, reduces the complexity and time cost during the installation process, and improves the installation efficiency.

[0036] The focusing lens 23 is provided with a lamp cavity 232, and the focusing lens 23 is arranged outside the phototherapy wick 22 through the lamp cavity 232 cover, and the lamp cavity 232 is provided with a hemispherical protrusion on the side facing the phototherapy wick 22. In this embodiment, the phototherapy wick 22 is effectively protected from interference and damage by external factors through the lamp cavity 232 in the focusing lens 23. The lamp cavity 232 provides a safe space to prevent the wick from contacting the external environment, thereby extending the life of the phototherapy wick 22. The lamp cavity 232 cover surrounds the phototherapy wick 22 on the outside, so that the light can be reflected and scattered in the lamp cavity 232, thereby achieving a more uniform illumination effect. This design can improve the lighting uniformity of the phototherapy module and provide a more comfortable and uniform phototherapy effect. Since the lamp cavity 232 is provided with a hemispherical protrusion on the side facing the phototherapy wick 22, this design can enhance the focusing effect of light. The hemispherical protrusion will make the light more concentrated and focused, and improve the brightness and penetration of the lighting.

[0037] See also Figure 7-Figure 8As shown, the first interface 4 includes a first plug-in seat 41, a first plug-in slot 42 arranged on the first plug-in seat 41, and a first plug-in terminal 43 arranged in the first plug-in slot 42; a first plug-in card slot 44 is arranged on the upper side of the first plug-in slot 42. The second interface 5 includes a second plug-in seat 51, a second plug-in slot 52 arranged on the second plug-in seat 51, and a second plug-in terminal 53 arranged in the second plug-in slot 52; a second plug-in card slot 54 is arranged on the upper side of the second plug-in slot 52. The third interface 6 includes a third plug-in seat 61, a third plug-in slot 62 arranged on the third plug-in seat 61, and a third plug-in terminal 63 arranged in the third plug-in slot 62; a third plug-in card slot 64 is arranged on the upper side of the third plug-in slot 62. In this embodiment, the provision of the plug-in card slot helps to ensure the stable connection of the plug-in terminal and prevent loosening or falling off due to vibration or external interference. The plug-in card slot can provide accurate alignment guidance so that the plug-in terminal can be accurately inserted into the plug-in slot, thereby ensuring the accuracy and reliability of the connection. The design of the card slot can avoid misoperation or wrong insertion, thereby improving safety and stability during use.

[0038] The first connector 32 is provided with a first plug socket 321, a first pair of slots 322 provided in the first plug socket 321, and a first plug terminal 323 provided in the first pair of slots 322, and a first plug fixing piece 324 is provided at one end of the first plug socket 321; the second connector 33 is provided with a second plug socket 331, a second pair of slots 332 provided in the second plug socket 331, and a second plug terminal 333 provided in the second pair of slots 332, and a second plug fixing piece 334 is provided at one end of the second plug socket 331. In this embodiment, the provision of the plug fixing piece helps to ensure the stable connection of the plug terminal and prevent loosening or falling off due to vibration or external interference. The plug fixing piece can provide accurate alignment guidance so that the plug terminal can be accurately inserted into the slot, thereby ensuring the accuracy and reliability of the connection. Through the design of the plug fixing piece, misoperation or wrong insertion can be avoided, and the safety and stability during use are improved.

[0039] The above embodiments only express several implementation methods of the utility model, and the descriptions are relatively specific and detailed, but they cannot be understood as limiting the scope of the utility model patent. It should be pointed out that for ordinary technicians in this field, several modifications and improvements can be made without departing from the concept of the utility model, which all belong to the protection scope of the utility model. Therefore, the protection scope of the utility model patent shall be based on the attached claims.

Claims

1. A modular phototherapy module, characterized in that: It includes a wire hub component, a phototherapy component and a connecting component, the wire hub component is provided with a first interface, the phototherapy component is provided with a second interface and a third interface, the connecting component includes a connecting wire and a first connector and a second connector provided at both ends of the connecting wire, the first connector is connected to the first interface, and the second connector is connected to the second interface; the phototherapy component includes a phototherapy housing, a phototherapy wick provided in the phototherapy housing, and a focusing lens covered on the outside of the phototherapy wick.

2. The modular phototherapy module according to claim 1, characterized in that: The wiring hub components are provided in multiple groups, and wiring harnesses are arranged between the multiple groups of wiring hub components and connected in series in sequence; the phototherapy components are provided in multiple groups, and the multiple groups of phototherapy components are connected in series in sequence through connecting components.

3. The modular phototherapy module according to claim 1, characterized in that: The cable hub assembly includes a cable hub base, a cable hub upper shell and a cable hub plate. The cable hub upper shell is provided with a support frame, and the cable hub plate is installed on the support frame. Serial connection ports are provided at both ends of the cable hub base, and the serial connection ports are used to connect the wiring harness to the cable hub plate.

4. The modular phototherapy module according to claim 3, characterized in that: Reinforcement seats are provided at both ends of the wiring hub base, the serial connection port is provided on the reinforcement seat, and a pressing groove is provided on the wiring hub upper shell, and the pressing groove is used to cooperate with the serial connection port to press and fix the wiring harness; the first interface is provided on the wiring hub board, and a through groove is provided on the wiring hub upper shell corresponding to the first interface; the support frame is provided with a positioning groove, and the positioning groove is used to position the first interface.

5. The modular phototherapy module according to claim 1, characterized in that: The phototherapy shell includes a phototherapy bottom shell, a phototherapy top shell and a phototherapy PCB board. The phototherapy bottom shell is provided with an assembly side panel, and the phototherapy top shell is provided with a matching bracket and a positioning bracket. The matching bracket is used to match the assembly side panel to connect the phototherapy bottom shell with the phototherapy top shell.

6. The modular phototherapy module according to claim 5, characterized in that: The positioning frame is used to fix the phototherapy wick, and the phototherapy wick is set on the phototherapy PCB board. The second interface and the third interface are respectively set on both sides of the phototherapy PCB board. The first opening and the second opening are set on both sides of the phototherapy upper shell. The first opening is used to fix the second interface, and the second opening is used to fix the third interface.

7. The modular phototherapy module according to claim 5, characterized in that: The positioning frame is ring-shaped and is provided with a positioning slot. The focusing lens is provided with a positioning block. The positioning block is used to cooperate with the positioning slot to fix the focusing lens on the positioning frame. One end of the focusing lens extends to the surface of the phototherapy upper shell.

8. The modular phototherapy module according to claim 1, characterized in that: The focusing lens is provided with a lamp cavity, and the focusing lens is arranged outside the phototherapy lamp wick through a lamp cavity cover. A hemispherical protrusion is provided on one side of the lamp cavity facing the phototherapy lamp wick.

9. The modular phototherapy module according to claim 1, characterized in that: The first interface includes a first plug socket, a first plug slot disposed on the first plug socket, and a first plug terminal disposed in the first plug slot; a first plug card slot is disposed on the upper side of the first plug slot; The second interface includes a second plug-in socket, a second plug-in slot arranged on the second plug-in socket, and a second plug-in terminal arranged in the second plug-in slot; a second plug-in card slot is arranged on the upper side of the second plug-in slot; The third interface comprises a third plug socket, a third plug slot arranged on the third plug socket and a third plug terminal arranged in the third plug slot; a third plug card slot is arranged on the upper side of the third plug slot.

10. The modular phototherapy module according to claim 1, characterized in that: The first connector is provided with a first plug socket, a first pair of slots provided in the first plug socket, and a first plug terminal provided in the first pair of slots, and a first plug fixing plate is provided at one end of the first plug socket; the second connector is provided with a second plug socket, a second pair of slots provided in the second plug socket, and a second plug terminal provided in the second pair of slots, and a second plug fixing plate is provided at one end of the second plug socket.