Light physiotherapy device

By introducing modulated traveling wave group technology into the photophysiotherapy device, the problem of insufficient physiotherapy effect of existing phototherapy devices has been solved, more effective body fluid driving and meridian activation have been achieved, and the physiotherapy effect has been significantly improved.

CN222917986UActive Publication Date: 2025-05-30HENGTONG TAILONG CO LTD
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Patent Information

Application Number
CN202421391620.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-18
Publication Date
2025-05-30
Estimated Expiration
2034-06-18

AI Technical Summary

Technical Problem

The existing phototherapy devices still have shortcomings in terms of physiotherapy effects, and have failed to effectively utilize the traveling wave group principle, the reflection function of the human body's photosensitive and thermal contrast, the driving effect of body fluids, and the reflection and activation of meridians.

Method used

An optical physiotherapy device is designed, including a physiotherapy light source device and a modulated traveling wave group device. The modulated traveling wave group device modulates the frequency and amplitude of the physiotherapy light source device, so that the physiotherapy light generates a traveling wave group, thereby achieving dynamic changes in the irradiated physiotherapy light and changing the amplitude and frequency in time sequence.

Benefits of technology

By generating physical therapy light from traveling wave groups, the human body's reflection function can be better utilized, the driving effect on body fluids, and the reflection and activation of meridians can be achieved, thereby significantly improving the physical therapy effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a light physical therapy device, which relates to the technical field of light physical therapy and comprises a physical therapy light source device and a traveling wave group modulation device for modulating physical therapy light to generate a traveling wave group. The traveling wave group modulation device is connected with the physiotherapy light source device and used for modulating the frequency and the amplitude of a physiotherapy light source device body, so that the physiotherapy light on the irradiated object generates a traveling wave group. According to the design, when the physical therapy light irradiates the specific area of the body surface, the amplitude and frequency can be changed according to the time sequence, the physical therapy light modulation traveling wave group is generated, the body reaction is generated, the driving effect on the body fluid is effectively improved, and the effects of reflecting and activating the channels and collaterals can be generated, so that the physical therapy effect can be effectively improved.
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Description

Technical Field

[0001] This application relates to the technical field of light physiotherapy, and particularly to a light physiotherapy device. Background Art

[0002] Currently, there are many light therapy instruments, and the electromagnetic wave spectra they use include blue light and red light in the visible light range, as well as infrared light in the IR-A, IR-B, and IR-C bands. Most of them mainly adopt the static irradiation scheme, and occasionally adopt the Pulse Code Modulation (PCM) technology to control the intensity of the irradiation light source. However, none of them utilize the traveling wave group principle, do not utilize the reflection function when there is a contrast in the human body's light and heat sensation, do not enhance the driving of body fluids, and have no effect on the reflection and activation of meridians, resulting in insufficient physiotherapy effects. Utility Model Content

[0003] In view of this, the purpose of this application is to provide a light physiotherapy device to solve the technical problem of insufficient physiotherapy effects of existing physiotherapy devices.

[0004] To achieve the above technical purpose, this application provides a light physiotherapy device, including a physiotherapy light source device and a modulation traveling wave group device for modulating the physiotherapy light to generate a traveling wave group;

[0005] The modulation traveling wave group device is connected to the physiotherapy light source device and is used to modulate the frequency and amplitude of the physiotherapy light source device itself, so that a traveling wave group is generated on the irradiated object.

[0006] Further, the physiotherapy light source device includes a plurality of physiotherapy light generators or groups of physiotherapy light generators with different wavelengths arranged in an array;

[0007] The modulation traveling wave group device is used to control the power on or off of each of the physiotherapy light generators or groups of physiotherapy light generators according to a preset control mode.

[0008] Further, the modulation traveling wave group device includes a dimming component;

[0009] The dimming component includes a plurality of program-controlled switches;

[0010] The plurality of program-controlled switches are respectively connected to each of the physiotherapy light generators or groups of physiotherapy light generators in one-to-one correspondence.

[0011] Further, the physiotherapy light source device includes a plurality of physiotherapy light generators or groups of physiotherapy light generators with different wavelengths arranged in an array;

[0012] The modulation traveling wave group device is used to adjust the illuminance, period, and order of each of the physiotherapy light generators or groups of physiotherapy light generators based on pulse code modulation.

[0013] Further, the modulation traveling wave group device includes a dimming component;

[0014] The dimming component includes a pulse amplitude modulation device or a pulse width modulation device;

[0015] The pulse amplitude modulation device or the pulse width modulation device is connected to each of the physiotherapy light generators or each group of physiotherapy light generators.

[0016] Further, a plurality of the physiotherapy light generators or the groups of physiotherapy light generators are arranged in a linear array.

[0017] Further, a plurality of the groups of physiotherapy light generators are arranged in a circular array along a radial direction around the same preset center.

[0018] Further, the physiotherapy light generator is a single physiotherapy light LED bead;

[0019] The group of physiotherapy generators is a light strip composed of a plurality of single physiotherapy light LED beads on a lamp board.

[0020] Further, a reflecting cup is mounted on the single physiotherapy light LED bead.

[0021] Further, it further includes a plurality of light pipes for guiding the physiotherapy light from the physiotherapy light source device to the irradiated object.

[0022] As can be seen from the above technical solutions, the optical physiotherapy device designed in this application includes a physiotherapy light source and a modulation traveling wave group device, which modulates the frequency and amplitude of the physiotherapy light source device body by using the modulation traveling wave group device; or adjusts the position and / or angle of the physiotherapy light source device itself. So that the physiotherapy light irradiated on the irradiated object generates a traveling wave group, realizing a dynamic change of the irradiated physiotherapy light. Under this design, when the physiotherapy light irradiates a specific area of the body surface, it can change the amplitude and frequency in sequence, generate a modulated traveling wave group of the physiotherapy light, cause the body to produce a reaction, make better use of the body's reflection function, effectively improve the driving effect on body fluids, and also have an effect on the reflection and activation of meridians, so as to effectively improve the physiotherapy effect. Description of the Drawings

[0023] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0024] Figure 1It is the top view of specific application example C of Embodiment 2 of a light physiotherapy device provided in this application;

[0025] Figure 2 It is Figure 1 the sectional view taken along the position B - B in

[0026] Figure 3 It is Figure 1 the sectional view taken along the position A - A in

[0027] Figure 4 It is the enlarged partial view of specific application example C of Embodiment 2 of a light physiotherapy device provided in this application;

[0028] Figure 5 It is the front view of specific application example D of Embodiment 2 of a light physiotherapy device provided in this application;

[0029] Figure 6 It is the sectional view of specific application example D of Embodiment 2 of a light physiotherapy device provided in this application;

[0030] In the figure: Specific application example C of Embodiment 2:

[0031] c1, single infrared LED lamp bead; c2, lamp board; c3, reflector cup; c4, light guide tube;

[0032] Specific application example D of Embodiment 2:

[0033] d1, single infrared LED lamp bead; d2, lamp board; d3, heat insulation layer; d4, convection radiator; d5, device housing; d6, heat dissipation air inlet hole. Specific implementation manners

[0034] Next, the technical solutions of the embodiments of this application will be clearly and completely described in conjunction with the accompanying drawings. Obviously, the described embodiments are part of the embodiments of this application, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in this application without creative efforts shall fall within the scope of protection of the embodiments of this application.

[0035] In the description of the embodiments of this application, it should be noted that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the embodiments of this application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the embodiments of this application. In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance.

[0036] In the description of the embodiments of the present application, it should be noted that unless otherwise clearly specified and limited, the terms "installation", "connection", and "coupling" should be understood in a broad sense. For example, it can be a fixed connection, a replaceable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the embodiments of the present application can be understood according to specific situations.

[0037] Embodiment 1:

[0038] Embodiment 1 of the present application discloses a light physiotherapy device:

[0039] It includes a physiotherapy light source device and a modulated traveling wave group device that modulates the physiotherapy light to generate a traveling wave group.

[0040] The modulated traveling wave group device is connected to the physiotherapy light source device.

[0041] The modulated traveling wave group device is used to modulate the frequency and amplitude of the physiotherapy light source device itself, and finally make the physiotherapy light on the irradiated object generate a traveling wave group. Among them, making the physiotherapy light on the irradiated object generate a traveling wave group can be understood as making the physiotherapy light irradiated on the irradiated object generate a traveling wave group.

[0042] It should be noted that the traveling wave group (TWG) - also simply referred to as TWG. The carrier frequency spectrum output by the physiotherapy light source device of the present application is the frequency spectrum from visible light to infrared light, and its wavelength is an electromagnetic wave of 0.39 micrometers to 1000 micrometers (it can be understood that the light used for physiotherapy is not limited to infrared light, but can also be visible light, such as red light, orange light, etc.). The modulated physiotherapy light travels in space at the speed of light (the phase velocity of the carrier), while the traveling wave group travels at the group velocity of the modulated signal envelope.

[0043] Regarding infrared light, according to the definition of the International Commission on Illumination (CIE):

[0044] The wavelength of IR-A is 0.78 - 1.40 micrometers;

[0045] The wavelength of IR-B is 1.40 - 3.00 micrometers;

[0046] The wavelength of IR-C is 3.00 - 1000 micrometers.

[0047] Through the above-designed light physiotherapy device, the physiotherapy light irradiated on the human body has a dynamic change, thereby generating a traveling wave group:

[0048] The human body can perceive this physiotherapy light traveling wave group and the tissues will respond. For example, blood and body fluids will move faster along with the dynamic changes of the physiotherapy light during the irradiation of the traveling wave group, achieving the effect of enhancing the driving effect of body fluids / blood;

[0049] The improvement of the body fluid driving effect enables the diffusion of body fluids and their suspended substances to be faster, making it easier for substances in the body fluids to penetrate tissues; while the improvement of the local blood driving effect can accelerate the blood circulation between upstream and downstream blood vessels, making it easier to disperse blockages such as congestion.

[0050] If it acts on the meridians, it will have the effect of activating and dredging the meridians.

[0051] If it acts on the visceral area, it can effectively increase the temperature of the visceral area and the function of related enzymes, so as to achieve the effect of activating physiological functions.

[0052] In addition, the light physiotherapy device designed in this application can be used not only for relevant physiotherapy in the medical field, but also for scientific research in the life science field on "photobiology" and its "photobiomodulation therapy".

[0053] Specific research can be carried out as follows:

[0054] 1. The effects of physiotherapy light traveling wave groups with different wavelengths on meridians, viscera, and nerves;

[0055] 2. Research and optimization on the irradiation power, illuminance, and irradiation time of the device;

[0056] 3. The responses of the twelve meridians under the action of the "physiotherapy light traveling wave group";

[0057] 4. The responses of each viscus under the action of the "physiotherapy light traveling wave group";

[0058] 5. The influence of different action directions of the "physiotherapy light traveling wave group" on the recovery effect of nerve fibers;

[0059] Based on the experimental situation, the "physiotherapy light traveling wave group" has good physiotherapy effects on headache, stomachache, menstrual pain, breast congestion, etc.

[0060] Regarding the specific application of the light physiotherapy device designed in this application:

[0061] If the purpose is to dredge the meridians, the light source of the physiotherapy light source device is preferably an IR-B light source or an IR-C light source. At the same time, the infrared light irradiated onto the human body should move along the meridian direction. Moving in the opposite direction will result in insufficient meridian dredging effect or even no meridian dredging effect. Taking an experiment as an example, use a modulated traveling wave group device to drive the physiotherapy light source device to scan the bladder meridian repeatedly from the neck to the buttocks at a speed of 80 mm / s to 120 mm / s; among them, if the physiotherapy light source device is an infrared light radiation plate, control the surface temperature of the light source of the physiotherapy light source device at 200°C ± 10°C, and control the temperature irradiated onto the human epidermis at 40°C ± 2°C; under the above conditions, the meridian reflection phenomenon can occur in about 2 minutes to 5 minutes. That is, whenever the physiotherapy light source scans from the neck to the buttocks, the warm feeling will spread along the bladder meridian from the buttocks to the soles of the feet in about one second, and this cycle repeats, thus dredging the entire bladder meridian. This operating condition is only an experimental example condition and does not mean that it must be applied to other meridians under the same conditions. For different meridians, there will be corresponding different effects under the action of infrared light sources of different wavelength types. Different scanning speeds, the size of the infrared light area irradiated onto the human body, the power of the infrared light source, etc. are all influencing factors, and those skilled in the art can make adaptive adjustments according to actual needs.

[0062] If the purpose is to disperse and move the subcutaneous body fluid, the physiotherapy light irradiated onto the human body should move from the center to the periphery. Among them, the power of the infrared light source is preferably set lower to control the surface temperature of the light source of the physiotherapy light source device at 200°C ± 10°C, and control the temperature irradiated onto the human epidermis at 40°C ± 2°C. Acting under the above conditions for a certain period of time until the body has a reaction is regarded as achieving the effect of driving the body fluid.

[0063] If the purpose is to rehabilitate the nerve line, the light source of the physiotherapy light source device is preferably an orange light source to an IR-A light source, and the acting time is preferably controlled within 30 minutes.

[0064] Example Two:

[0065] Example Two of this application further explains around the design means of "connecting a modulated traveling wave group device to a physiotherapy light source device for modulating the frequency and amplitude of the physiotherapy light source device body":

[0066] In this embodiment, the physiotherapy light source device is designed to include a plurality of physiotherapy light generators or groups of physiotherapy light generators with different wavelengths arranged in an array. It should be noted that the group of physiotherapy light generators is composed of a plurality of single physiotherapy light emitters. Taking this as an example:

[0067] The modulated traveling wave group device is used to control each physiotherapy light generator or group of physiotherapy light generators to be powered on or off according to a preset control mode;

[0068] Alternatively, the modulated traveling wave group device is used to adjust the illuminance, period, and order of each physical therapy light generator or group of physical therapy light generators based on pulse code modulation.

[0069] As Figures 1 to 4 shown, a specific application example C in the second embodiment is as follows:

[0070] When acting on a single meridian, multiple physical therapy light generators can be arranged in a linear array.

[0071] When acting on multiple meridians, it is designed that multiple groups of physical therapy light generators are arranged in a linear array.

[0072] The physical therapy light generator can be a single physical therapy LED lamp bead c1, fixed on the lamp board c2. Each group of physical therapy light generators can be regarded as including a light strip composed of multiple single physical therapy LED lamp beads c1 on a lamp board c2. Therefore, the array of multiple groups of physical therapy light generators is also the array of multiple light strips on the lamp board c2.

[0073] The modulated traveling wave group device includes a dimming component, which is connected to each single physical therapy LED lamp bead c1 and is used to control the on / off of each single physical therapy LED lamp bead c1 to form a linearly moving physical therapy light traveling wave group on the irradiated object.

[0074] Taking a group of physical therapy light generators with three consecutive lamp beads lit simultaneously as an example, its on / off control can be as follows:

[0075] At the zero time point, the first single physical therapy LED lamp bead c1, the second single physical therapy LED lamp bead c1, and the third single physical therapy LED lamp bead c1 are all lit;

[0076] At the first time point, the first single physical therapy LED lamp bead c1 is turned off, and at the same time the fourth single physical therapy LED lamp bead c1 is lit;

[0077] At the second time point, the second single physical therapy LED lamp bead c1 is turned off, and at the same time the fifth single physical therapy LED lamp bead c1 is lit;

[0078] At the third time point, the third single physical therapy LED lamp bead c1 is turned off, and at the same time the sixth single physical therapy LED lamp bead c1 is lit.

[0079] And so on, repeating in a cycle to form a linearly moving physical therapy light traveling wave group.

[0080] Generally speaking, taking a group of physical therapy light generators composed of 0 to Y linearly arranged single physical therapy LED lamp beads c1 and designed with 6 consecutive lamp beads lit simultaneously as an example, its on / off control order is:

[0081] At the zeroth time point, the nth to (n + 5)th single-physiotherapy light-emitting LED beads c1 light up simultaneously;

[0082] At the first time point, when the nth single-physiotherapy light-emitting LED bead c1 is powered off, the (n + 6)th single-physiotherapy light-emitting LED bead c1 starts to be powered on;

[0083] At the second time point, when the (n + 1)th single-physiotherapy light-emitting LED bead c1 is powered off, the (n + 7)th single-physiotherapy light-emitting LED bead c1 starts to be powered on;

[0084] At the third time point, when the (n + 2)th single-physiotherapy light-emitting LED bead c1 is powered off, the (n + 8)th single-physiotherapy light-emitting LED bead c1 starts to be powered on;

[0085] And so on, in a cycle, thus forming a physiotherapy light traveling wave group with linear motion.

[0086] In terms of on-off control, the dimming component can specifically include multiple program-controlled switches, and the multiple program-controlled switches are respectively connected to the single-physiotherapy light-emitting LED beads c1 one by one, for respectively controlling the on-off of the single-physiotherapy light-emitting LED beads c1.

[0087] In terms of illuminance, period, and sequence control, the dimming component can specifically further include a pulse amplitude modulation device (PAM) or a pulse width modulation device (PWM), which can not only adjust the irradiation brightness of the single-physiotherapy light-emitting LED beads c1 by adjusting the power, but also adjust the physiotherapy light waveform output by the single-physiotherapy light-emitting LED beads c1, such as square waves, sine waves, pulse waves, etc. In this way, during the process of controlling the irradiation mode of the single-physiotherapy light-emitting LED beads c1, the brightness change or waveform output change can be controlled according to a certain preset mode.

[0088] To ensure the light-concentrating effect, each single-physiotherapy light-emitting LED bead c1 is covered with a corresponding reflector cup c3, and light pipes c4 with the same or different heights are connected to each reflector cup c3, so as to enhance the irradiation contrast effect and guide the physiotherapy light to make the physiotherapy light irradiate the human body more intensively.

[0089] The lamp board c2, as the base of the lamp beads c1, can be made of rigid material, soft material or elastic material. The lamp board c2 made of soft material can be designed according to the surface of different irradiation objects, so that the physiotherapy light generator group can closely adhere to the surface of the irradiation object, shortening the path of the physiotherapy light irradiating the human body, thus forming a design that can shorten or cancel the light pipe c4.

[0090] Furthermore, in order to ensure the sustainable use of the single-physiotherapy light LED lamp bead c1 and avoid thermal damage caused by insufficient heat dissipation, the physiotherapy light source device designed in this application further includes a device housing and a radiator device. The lamp board c2 is installed in the device housing. The radiator device may include a heat pipe, a heat conduction plate, a self-cooling or forced-cooling heat dissipation module, etc., or heat dissipation designs such as liquid cooling and annular cold pumps applied in electronic devices in the prior art. Specifically, the radiator device may be installed on the back of the device housing without limitation.

[0091] The lamp board c2 can also provide a heat dissipation function for the lamp bead c1, and a convection radiator or other heat dissipation structures can be connected to the lamp board c2.

[0092] Such as Figures 5 to 6 shown, a specific application example D in the second embodiment is as follows:

[0093] If it is to act on the internal organs, multiple physiotherapy light generator groups are arranged in a polygonal ring array along the radial direction around the same preset center. Each physiotherapy light generator group is composed of multiple single-physiotherapy light LED lamp beads d1 distributed in a polygonal ring. Multiple physiotherapy light generator groups are fixed on a circular lamp board d2. A single-physiotherapy light LED lamp bead d1 can also be distributed on the preset center. The ring in the ring array of this embodiment can be a circular ring, a square ring, a polygonal ring, etc., without limitation.

[0094] In this embodiment, multiple physiotherapy light generator groups may be arranged on both sides along a preset center line. Each physiotherapy light generator group is composed of multiple single-physiotherapy light LED lamp beads d1 arranged in a parallel strip array. Multiple physiotherapy light generator groups are fixed on the lamp board d2.

[0095] The modulated traveling wave group device includes a dimming component. The dimming component is electrically connected to each physiotherapy light generator group and is used to control the on / off of each physiotherapy light generator group so that the physiotherapy light irradiated by the physiotherapy light source onto the object to be irradiated generates a traveling wave group.

[0096] Taking the lamp board d2 as a flat plate structure as an example, it generates a two-dimensional diffusive motion traveling wave group. Taking the example that there are ten physiotherapy light generator groups and three of them are lit at the same time, the on / off control is as follows (the group numbers are sorted from the inner circle to the outer circle):

[0097] At the zero time point, the first physiotherapy light generator group, the second physiotherapy light generator group, and the third physiotherapy light generator group are all lit;

[0098] At the first time point, the first physiotherapy light generator group is turned off, and at the same time the fourth physiotherapy light generator group is lit;

[0099] At the second time point, the second physiotherapy light generator group is turned off, and at the same time the fifth physiotherapy light generator group is lit;

[0100] At the third time point, the third physical therapy light generator group is turned off, and at the same time, the sixth physical therapy light generator group lights up.

[0101] And so on, in a cycle, thus forming a physical therapy light traveling wave group for diffusion movement.

[0102] When the lamp board d2 is designed as a spherical surface, an inner spherical surface or an arc panel structure, a three-dimensional diffusion movement traveling wave group can be generated.

[0103] In terms of on-off control, the dimming component may specifically include a plurality of program-controlled switches, and the plurality of program-controlled switches are respectively connected to each physical therapy light generator group in one-to-one correspondence, for respectively controlling the on and off of each physical therapy light generator group.

[0104] In terms of illuminance, period and sequence control, the dimming component may specifically further include a pulse amplitude modulation device (PAM) or a pulse width modulation device (PWM), which can not only adjust the irradiation brightness of each single physical therapy LED lamp bead d1 by adjusting the power, but also adjust the physical therapy light waveform output by each single physical therapy LED lamp bead d1, such as square wave, sine wave, pulse wave, etc. In this way, during the control process of the irradiation mode of each single physical therapy LED lamp bead d1, the brightness change or waveform output change can be controlled according to a certain preset mode.

[0105] To ensure the light collection effect, each single physical therapy LED lamp bead d1 is covered with a corresponding reflecting cup, and light guide tubes with the same or different heights are connected to each reflecting cup, and the design of the light guide tubes can be changed according to actual needs.

[0106] Furthermore, in order to ensure the sustainable use of the single physical therapy LED lamp bead d1 and avoid thermal damage caused by insufficient heat dissipation, the physical therapy light source device designed in this application further includes a device housing d5 and a convection radiator d4. The lamp board d2 is installed in the device housing d5, and a heat insulation layer d3 is installed between the lamp board d2 and the device housing d5. The convection radiator d4 can be an active heat dissipation module, such as a fan, and it can be specifically installed on the back of the device housing d5. To ensure the use effect of the convection radiator d4, heat dissipation air intake holes d6 can be opened on the device housing d5, and / or heat dissipation air intake holes can also be added to the lamp board d2, without limitation.

[0107] The above has introduced in detail a light physical therapy device provided by this application. For those of ordinary skill in the art, according to the idea of the embodiments of this application, there will be changes in the specific implementation manners and application scopes. In summary, the content of this specification should not be construed as a limitation to this application.

Claims

1. A phototherapy device, characterized in that: It includes a physiotherapy light source device and a modulated traveling wave group device for modulating the physiotherapy light to generate a traveling wave group; The modulated traveling wave group device is connected to the physiotherapy light source device, and is used to modulate the frequency and amplitude of the physiotherapy light source device body, so that the physiotherapy light on the irradiated object generates a traveling wave group.

2. A phototherapy device according to claim 1, characterized in that: The physiotherapy light source device comprises a plurality of physiotherapy light generators or a physiotherapy light generator group with different wavelengths arranged in an array; The modulated traveling wave group device is used to control the power on or off of each of the therapeutic light generators or the therapeutic light generator group according to a preset control mode.

3. A phototherapy device according to claim 2, characterized in that: The modulated traveling wave group device includes a dimming component; The dimming component includes a plurality of program-controlled switches; The plurality of program-controlled switches are connected one-to-one with each of the therapeutic light generators or each of the therapeutic light generator groups.

4. A phototherapy device according to claim 1, characterized in that: The physiotherapy light source device comprises a plurality of physiotherapy light generators or a physiotherapy light generator group with different wavelengths arranged in an array; The modulated traveling wave group device is used to adjust the illumination, period and order of each of the therapeutic light generators or the therapeutic light generator group based on pulse code modulation.

5. A phototherapy device according to claim 4, characterized in that: The modulated traveling wave group device includes a dimming component; The dimming component includes a pulse amplitude modulation device or a pulse width modulation device; The pulse amplitude modulation device or the pulse width modulation device is connected to each of the therapeutic light generators or each of the therapeutic light generator groups.

6. A phototherapy device according to claim 2 or 4, characterized in that: The plurality of therapeutic light generators or the plurality of therapeutic light generator groups are arranged in a linear array.

7. A phototherapy device according to claim 2 or 4, characterized in that: The plurality of therapeutic light generator groups are arranged in a ring-shaped array along the radial direction around the same preset center.

8. A phototherapy device according to claim 2 or 4, characterized in that: The therapeutic light generator is a single therapeutic light LED lamp bead; The therapy generator group is a light strip composed of multiple single therapy light LED lamp beads on a light board.

9. A phototherapy device according to claim 8, characterized in that: The single therapy light LED lamp bead is covered with a reflective cup.

10. The phototherapy device according to claim 1, characterized in that: It also includes a plurality of light guides for guiding the therapeutic light from the therapeutic light source device to the irradiated object.