Intelligent massage physiotherapy shoe

By incorporating a detection module and control unit within the massage shoe, combined with motion and pressure sensors, intelligent control of the massage shoe is achieved. It automatically adjusts the massage mode according to the user's condition, solving the problem of insufficient sensing in existing massage shoes and improving comfort and safety.

CN121795680APending Publication Date: 2026-04-07DONG GUAN SHI LI DING TI YU KE JI FA ZHAN YOU XIAN GONG SI +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-02-06
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing massage shoes lack effective perception of the user's usage status, making it difficult to achieve on-demand activation and safety control, resulting in poor intelligent control performance.

Method used

A detection module and control unit are installed inside the shoe. The motion sensor and pressure sensor detect the user's movement and wearing status, and control the output of the electronic control output unit, such as the vibration motor, far-infrared light and electromuscular stimulation electrode, to achieve on-demand and safe control.

Benefits of technology

The massage shoes feature intelligent control, automatically adjusting the massage mode based on the user's movement and wearing status, thus improving comfort and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an intelligent massage physical therapy shoe, and relates to the technical field of shoes, the intelligent massage physical therapy shoe comprises a shoe body, the shoe body is provided with a massage physical therapy assembly, and the massage physical therapy assembly comprises an electric massage physical therapy module arranged on the shoe body; a detection module is arranged on the shoe body and used for detecting the specific state of the shoe body worn by a user; a control unit is further arranged, and the control unit is used for receiving detection information of the detection module and performing corresponding control based on the detection information; the massage physiotherapy shoe can perform corresponding intelligent control according to the use state of a user, such as on-demand starting, safety control and the like.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of shoes, in particular to a kind of intelligent massage physiotherapy shoes. BACKGROUND

[0002] With the popularization of healthy life concept, shoe products with massage function gradually attract attention. In the prior art, part of the massage shoes is physically stimulated to the foot bottom by setting fixed protruding structure on the shoe sole, and the comfort and physiotherapy effect are limited. Some other products rely on electrically controlled vibration or air bag inflation to realize massage, although they have better comfort and physiotherapy effect, but such massage shoes generally lack effective perception of actual use state of users (such as whether to be stationary), and it is difficult to realize intelligent control such as on-demand start, safety control, etc. SUMMARY

[0003] The present application is to overcome the above-mentioned deficiencies, and aims to provide an intelligent massage physiotherapy shoe, which can be intelligently controlled according to the use state of the user, such as on-demand start, safety control, etc.

[0004] To achieve the above-mentioned purpose, the present application provides the following technical scheme: an intelligent massage physiotherapy shoe, comprising a shoe body, a massage physiotherapy assembly is arranged on the shoe body, the massage physiotherapy assembly comprises an electric massage physiotherapy module arranged on the shoe body; A detection module is arranged on the shoe body, and the detection module is used to detect the specific state of the shoe body worn by the user; A control unit is further arranged, which receives the detection information of the detection module and makes corresponding control based on the detection information.

[0005] The further technical scheme of the present application: the electric massage physiotherapy module comprises a vibration electric control output unit and / or a far infrared electric control output unit and / or an electric muscle stimulation electric control output unit arranged on the shoe body.

[0006] The further technical scheme of the present application: the control unit controls the massage physiotherapy electric control execution module to output massage physiotherapy or stop outputting massage physiotherapy based on the detection information, or controls part of the electric control output unit of the massage physiotherapy electric control execution module to output massage physiotherapy or stop outputting massage physiotherapy.

[0007] The further technical scheme of the present application: when it is detected that the user is in motion, the vibration electric control output unit is controlled to stop outputting vibration, and the far infrared electric control output unit is controlled to keep outputting far infrared. When it is detected that the user is in stationary state, the vibration electric control output unit is controlled to output vibration.

[0008] The further technical solution of the present application is that the detection module comprises a motion sensor, and the control unit receives data detected by the motion sensor to detect or assist in detecting whether the user is in motion and / or in an unsafe motion state.

[0009] The further technical solution of the present application is that the detection module comprises at least one pressure sensor, and the control unit receives data detected by the pressure sensor to detect or assist in detecting whether the user is in motion and / or in an unsafe motion state.

[0010] The further technical solution of the present application is that the control unit confirms whether the shoe body is in a worn state according to pressure data detected by the pressure sensor. When it is confirmed that the shoe body is in a worn state, the current motion state is confirmed by the motion sensor.

[0011] The further technical solution of the present application is that a wireless module is further included. When the control unit detects that the user is in an unsafe motion state through the detection module, the control unit uploads state information to a mobile phone APP / upper computer for display through the wireless module.

[0012] The further technical solution of the present application is that when it is detected that the user is in an unsafe motion state, the control unit controls the vibration electric control output unit to output vibration reminders and / or controls the electric muscle stimulation electric control output unit to output electric stimulation reminders.

[0013] The further technical solution of the present application is that when it is detected that the user is in slow walking or fast running, the output degree of the vibration electric control output unit and / or the far infrared electric control output unit and / or the electric muscle stimulation electric control output unit is automatically adjusted.

[0014] Additional aspects and advantages of the present application will be made apparent from the following description. BRIEF DESCRIPTION OF DRAWINGS

[0015] 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 needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description only constitute some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.

[0016] Figure 1 is a structural perspective view of the present application; Figure 2 is another structural perspective view of the present application; Figure 3 is an exploded view of the structure of the present application; Figure 4This is a schematic diagram of the lower base structure of the present invention; Figure 5 This is another schematic diagram of the lower base of the present invention, in which a vibration motor is incorporated; Figure 6 This is a schematic diagram of the structure of the midsole of the present invention, and shows the treatment electrode; Figure 7 This is a structural cross-sectional view of the present invention; Figure 8 This is a circuit block diagram of the present invention.

[0017] The corresponding labels in the attached diagram are explained as follows: Shoe body - 1, Outsole - 101, Top sole - 1011, Insole - 1012, Midsole - 1013, Massage openings - 1014, Stress-bearing protrusions - 1015, Mounting slots - 1016, Heat dissipation channels - 1017, Carbon fiber plate - 1018, Upper - 102, Wearing space - 103, Foot support instep - 104 Massage bumps-2, massage bumps-2a, massage bumps-2b, insertion slot-201 Electro-massage therapy module-3, vibration electrical control output unit-301, vibration motor-3011, far-infrared electrical control output unit-302, IR LED light-3021, FPC flexible circuit board-3022, electromuscular stimulation electrical control output unit-303, treatment electrode-3031. Detection module-4, motion sensor-401, pressure sensor-402, Control Unit-5 Circuit control board-6 Battery-7, Charging port -8, Status indicator light -9 Wireless Module-10 Instruction input unit-11. Detailed Implementation

[0018] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0019] Please see Figures 1-8 A smart massage therapy shoe includes a shoe body 1, on which a massage therapy component is provided. When the user's feet are wearing the shoe body 1, the massage therapy component can be used to provide massage therapy to the user's feet.

[0020] In some embodiments, the shoe body 1 includes a sole 101 and an upper 102, the sole 101 and the upper 102 forming a wearing space 103 that can accommodate the user's foot, and massage therapy components may be disposed on the sole 101 and / or the upper 102.

[0021] In some embodiments, the massage therapy component includes a plurality of massage bumps 2 disposed on the sole 101, which can provide a simulated acupressure massage to the user's feet when the user wears the shoe 1.

[0022] In some embodiments, at least some of the massage bumps 2 are disposed on the foot support surface 104 of the sole 101 so that when the user puts on the shoe 1 and steps down, the massage bumps 2 located on the foot support surface 104 provide a simulated acupressure massage to the user's feet.

[0023] In some embodiments, the sole 101 includes an upper sole 1011 and a lower sole 1012, with at least some of the massage bumps 2 disposed on the upper sole 1011.

[0024] In some embodiments, the sole 101 includes an upper sole 1011 and a lower sole 1012, with at least some of the massage bumps 2 disposed on the lower sole 1012.

[0025] In some embodiments, the upper sole 1011 is a non-rigid upper sole 1011, and when the user's foot steps on the upper sole 1011, the user can feel the massage bumps 2 on the lower sole 1012 through the upper sole 1011. For example, the upper sole 1011 is made of flexible plastic.

[0026] In some embodiments, the sole 101 includes an upper sole 1011, a midsole 1013 and a lower sole 1012, with at least some of the massage bumps 2 disposed on the midsole 1013.

[0027] In some embodiments, the upper sole 1011 is a non-rigid upper sole 1011, and when the user's foot steps on the upper sole 1011, the user can feel the massage bumps 2 on the midsole 1013 through the upper sole 1011. For example, the upper sole 1011 is made of flexible plastic.

[0028] In some embodiments, the upper bottom 1011 has a massage opening 1014 corresponding to the massage bump 2, and the massage bump 2 on the lower bottom 1012 or the middle bottom 1013 extends toward the direction close to the wearing space 103 through the massage opening 1014.

[0029] In some embodiments, the massage bumps 2 on the bottom 1012 or the middle 1013 extend upward through the massage openings 1014.

[0030] In some embodiments, the upper sole 1011 is made of an elastic material and is configured such that the hardness of the upper sole 1011 is less than the hardness of the massage bumps 2.

[0031] Thus, when the user puts on the shoe body 1 and steps down, the upper sole 1011 can be more easily elastically pressed down compared to the massage bumps 2, causing the massage bumps 2 to protrude more obviously from the massage opening 1014 or causing the massage bumps 2 to form a protrusion from the massage opening 1014.

[0032] When the user's foot steps down, the upper bottom 1011 can be elastically flattened, so that the pressure massage effect of the massage bumps 2 can be felt more obviously.

[0033] Furthermore, the greater the downward pressure on the upper sole 1011, the greater the degree to which the massage bumps 2 protrude from the massage openings 1014, and correspondingly, the more obvious the pressure massage of the massage bumps 2 on the user's feet.

[0034] For example, when standing, walking slowly, or running, the force with which the user's foot presses on the shoe body 1 varies, resulting in different pressure massage effects.

[0035] In fact, the upper sole 1011 can be understood as an elastic support structure, which can be elastically flattened to different degrees when subjected to different pressure, so that the massage bumps 2 can protrude from the massage openings 1014, and to different degrees, thereby applying different massage effects to the user's feet based on the user's current movement state. This function is achieved by the difference in material properties between the upper sole 1011 and the massage bumps 2, and by the cooperation between the massage bumps 2 and the massage openings 1014, without the need for additional electronic control components.

[0036] In some embodiments, for example, the midsole 1013 and the massage bumps 2 can be structures made of TPU material with a hardness of 60 degrees, and the upper sole 1011 can be an elastomer made of EVA material with a hardness of 45-48 degrees.

[0037] In some embodiments, a plurality of force-bearing protrusions 1015 are also provided on the bottom surface of the bottom sole 1012. When the user puts on the shoe body 1 and steps down, the force-bearing protrusions 1015 and the massage protrusions 2 correspond to each other in the direction of the force applied when stepping down.

[0038] That is, the force-bearing protrusion 1015 has a more prominent force-bearing position than other parts of the bottom 1012, so that when the user steps down, the force of the bottom 1012 is mainly concentrated on the force-bearing protrusion 1015. The force-bearing protrusion 1015 can provide better support for the corresponding massage protrusion 2, so that the massage protrusion 2 can better form a top pressure massage on the user's foot.

[0039] In some embodiments, the lower bottom 1012 and the force-bearing protrusion 1015 can be, for example, an elastic structure made of EVA material with a hardness of 50-55 degrees and a certain elastic effect, which has a certain shock absorption effect and can also form a certain degree of concentrated force support at the force-bearing protrusion 1015; moreover, the hardness of the lower bottom 1012 and the force-bearing protrusion 1015 is greater than that of the upper bottom 1011, so that when subjected to force, the lower bottom 1012 and the force-bearing protrusion 1015 have a support effect due to the upper bottom 1011, that is, the elastic deformation effect of the upper bottom 1011 is more obvious than the elastic deformation effect of the lower bottom 1012.

[0040] In some embodiments, a portion of the massage bumps 2 is configured to correspond to acupoints on the foot, so that this portion of the massage bumps 2 may also be referred to as "acupoint massage bumps 2".

[0041] In some embodiments, multiple massage bumps 2 are distributed in different areas of the foot support surface 104, and the multiple massage bumps 2 have different heights, as well as different slopes and / or tilt directions of the top surface.

[0042] The height and slope of the massage bump 2 are adapted to the user's foot corresponding to the foot support surface 104 area. That is, the height and slope of the top surface of each massage bump 2 can be adapted to the engineering mechanics of the human foot so as to better support and press the user's foot.

[0043] For example, the massage bumps 2a corresponding to the arch of the foot are usually set to have a higher height, and the slope of their top surface is inclined from the edge of the foot to the middle of the foot, and is inclined from top to bottom, so as to have a larger tilt angle relative to the horizontal plane.

[0044] For example, the massage bumps 2b corresponding to the sole of the foot are usually set to have a relatively low height, and the slope of their top surface is inclined from the position near the heel to the position near the toes, and is inclined from top to bottom, with a small tilt angle relative to the horizontal plane.

[0045] In some embodiments, the massage therapy component further includes an electric massage therapy module 3 disposed on the shoe body 1, or a massage therapy electrical control execution module.

[0046] In some embodiments, the electro-massage therapy module 3 includes a vibration electronically controlled output unit 301 disposed on the shoe body 1.

[0047] In some embodiments, the vibration control output unit 301 includes, for example, at least one vibration motor 3011 mounted on the shoe body 1, which outputs vibrations to massage and treat the user's feet. The vibration of the vibration motor 3011 can be directly transmitted to the muscles, fascia, and tendons of the foot. This relieves tension and soreness, enhances blood circulation in the soles of the feet, improves peripheral blood supply, promotes the release of soothing substances such as serotonin and endorphins, and helps relax the mind and body, relieving nervous tension.

[0048] like Figure 3 As shown, the vibration motor 3011 can be configured with up to 6 motors.

[0049] In some embodiments, the electro-massage therapy module 3 includes a far-infrared electronically controlled output unit 302 disposed on the shoe body 1.

[0050] In some embodiments, the far-infrared electronically controlled output unit 302 includes, for example, at least one IR LED light 3021 disposed on the shoe body 1, which outputs far-infrared rays to massage and treat the user's feet. The far-infrared rays output by the IR LED light 3021 can penetrate the surface tissue of the sole, accelerate blood circulation, and achieve anti-inflammatory, analgesic, and repair-promoting effects.

[0051] In some embodiments, the electro-massage therapy module 3 includes an electromuscular stimulation control output unit 303 disposed on the shoe body 1.

[0052] In some embodiments, the electromuscular stimulation output unit 303 includes, for example, a therapeutic electrode 3031 mounted on the shoe body 1, which outputs current to stimulate and massage the user's feet, providing physical therapy. Specifically, it outputs low-frequency pulsed current. The electrical stimulation can act on the muscles and nerves of the foot, achieving passive exercise and soothing effects.

[0053] In some embodiments, the massage bumps 2 are light-transmitting, and the far-infrared rays output by the IR LED light 3021 can be irradiated onto the user's feet through the massage bumps 2.

[0054] In some embodiments, the massage bump 2 has an insertion groove 201 opened toward the bottom of the midsole 1013, and the IR LED lamp 3021 can be at least partially inserted into the insertion groove 201, in particular the light-emitting part of the IR LED lamp 3021 is inserted into the insertion groove 201.

[0055] On the one hand, the placement groove 201 can reduce the light transmission thickness of the massage bump 2 and reduce the weakening effect on far-infrared light penetration, thereby improving the irradiation effect of the IR LED light 3021; ​​on the other hand, the placement groove 201 in the massage bump 2 can provide better accommodation space for the installation of the IR LED light 3021, and in terms of thickness, it can facilitate the thickening design of the shoe body 1.

[0056] Moreover, the area where far-infrared rays first penetrate to the foot is the same as the area where massage bump 2 presses down, which can form a multi-effect massage and physiotherapy for the corresponding acupoint.

[0057] When the massage bumps 2 adopt the above-mentioned hardness design, it can also better ensure that the far-infrared rays can penetrate the massage bumps 2 and act on the user's feet at a closer distance.

[0058] In some embodiments, the far-infrared electronically controlled output unit 302 includes a plurality of IR LED lights 3021.

[0059] like Figure 3 As shown, for example, eight IR LED lights 3021 can be provided.

[0060] In some embodiments, multiple IR LEDs 3021 can be connected via an FPC flexible circuit board 3022.

[0061] In some embodiments, the top surface of the bottom 1012 is formed with a positioning groove corresponding to the FPC flexible circuit board 3022, for accommodating and positioning the FPC flexible circuit board 3022.

[0062] The FPC flexible circuit board 3022 is laid flat in the positioning groove of the bottom 1012, and is configured such that the IR LED lamp 3021 connected to the FPC flexible circuit board 3022 can be inserted into the insertion groove 201 through the bottom opening of the insertion groove 201.

[0063] In some embodiments, the top surface of the bottom 1012 is formed with a positioning groove corresponding to the vibration motor 3011 for accommodating and positioning the vibration motor 3011.

[0064] In some embodiments, the treatment electrode 3031 may be disposed on the massage bump 2 so that when the user wears the shoe body 1 and steps down, the treatment electrode 3031 can be closer to the user's foot, thereby providing better current stimulation.

[0065] Preferably, the treatment electrode 3031 is disposed on the top of the massage bump 2.

[0066] In this embodiment, when the massage bumps 2 adopt the above-mentioned hardness design, the contact between the treatment electrode 3031 and the user's foot can be better ensured, thereby applying current stimulation to the user's foot in a better way.

[0067] In some embodiments, the electro-massage therapy module 3 includes at least one of the above-described electronically controlled output units.

[0068] In some embodiments, the electro-massage therapy module 3 (massage therapy electro-control execution module) includes, for example, a vibration electro-control output unit 301, a far-infrared electro-control output unit 302, an electromuscular stimulation electro-control output unit 303, and other massage therapy output units that can be electrically controlled and executed, and are disposed on the shoe body 1.

[0069] In some embodiments, a detection module 4 is provided on the shoe body 1, which is used to detect the specific state of the shoe body 1 being worn by the user.

[0070] Detecting the specific state of the clothing worn by the user includes detecting the wearer's (or specifically, the movement of the feet) state, such as remaining still, walking slowly, walking fast, or engaging in unsafe movement.

[0071] In some embodiments, the detection module 4 includes, for example, a motion sensor 401 for detecting whether it is in motion, such as an attitude sensor, a gyroscope sensor, or other sensors.

[0072] The data detected by the motion sensor 401 is used, for example, to detect or assist in detecting whether the user is moving and / or in an unsafe state of motion.

[0073] For example, by detecting acceleration in all directions using motion sensor 401, the system can analyze and confirm whether the user's current motion state is a stationary state, a slow walking state, or a fast walking state.

[0074] For example, by detecting changes in angle in all directions using motion sensor 401, the system can analyze and confirm whether the user's current foot posture is in a safe movement state or an unsafe movement state such as severe lateral deviation or severe torsion.

[0075] In some embodiments, the motion sensor 401 may be disposed on the upper 102 or the sole 101.

[0076] In some embodiments, the detection module 4 includes, for example, at least one pressure sensor 402.

[0077] The data detected by the pressure sensor 402 can be used, for example, to detect or assist in detecting whether the user is moving and / or in an unsafe state.

[0078] For example, the pressure sensor 402 detects the frequency of pressure changes and correlates it with the step frequency, thereby analyzing and confirming whether the user's current movement state is a stationary state, a slow walking state, or a fast walking state.

[0079] For example, multiple pressure sensors 402 are provided, and these sensors are located in different areas of the sole 101 to receive pressure data from different parts of the user's foot. Based on the pressure data detected by the multiple pressure sensors 402, the system analyzes and confirms whether the user's current foot pressure is in a safe or unsafe state. For instance, if the pressure is concentrated in a certain area or in certain areas, it is confirmed as an unsafe state.

[0080] In some embodiments, the pressure sensor 402 may be disposed on the sole 101 of the shoe and adapted to detect the corresponding pressure when the user steps the shoe 1 onto the ground or other supporting surface.

[0081] In some embodiments, the pressure sensor 402 is, for example, a thin-film pressure sensor 402.

[0082] In some embodiments, the pressure sensor 402 is disposed between the lower bottom 1012 and the middle bottom 1013, and the pressure sensor 402 corresponds to the massage bump 2.

[0083] In some embodiments, thanks to the massage bumps 2 and the force protrusions 1015, the pressure sensor 402 can more accurately detect the pressure applied by the user to the sole 101.

[0084] In some embodiments, the massage bumps 2 corresponding to the treatment electrode 3031, IR LED light 3021, and pressure sensor 402 may be the same, partially the same, or completely different.

[0085] When the massage bumps 2 corresponding to the three are exactly the same or partially the same, they can be set up in the following positions: the treatment electrode 3031 can be set on the top of the massage bump 2, the IR LED light 3021 is at least partially placed in the insertion groove 201 and outputs far-infrared rays upward, and the pressure sensor 402 is set below the massage bump 2.

[0086] In some embodiments, the detection module 4 may include both the motion sensor 401 and the pressure sensor 402 described above.

[0087] In some embodiments, pressure data can be detected by pressure sensor 402 to confirm whether the shoe body 1 is being worn. When it is confirmed that the shoe body 1 is being worn, the current motion state can be confirmed by motion sensor 401 to obtain a more accurate confirmation of the user's motion state, thereby avoiding misidentification as the user being in a slow walking or fast walking state when the shoe body 1 is moving but the user is not wearing it.

[0088] In some embodiments, a control unit 5 is also provided, which can control the corresponding massage therapy output unit to perform output.

[0089] In some embodiments, the control unit 5 also serves to receive detection information from the detection module 4 and make corresponding controls based on the detection information.

[0090] In some embodiments, the control unit 5 also constitutes receiving the detection information from the detection module 4, and based on the detection information, controlling the massage therapy electrical control execution module to output massage therapy or stop outputting massage therapy, or controlling some of the electrical control output units of the massage therapy electrical control execution module to output massage therapy or stop outputting massage therapy.

[0091] In some embodiments, for example, when the user is detected to be stationary, the vibration motor 3011 and / or the treatment electrode 3031 and / or the IR LED lamp 3021 are controlled to output working output; when the user is detected to be moving (such as walking slowly or briskly), the vibration motor 3011 and / or the treatment electrode 3031 and / or the IR LED lamp 3021 are controlled to output stopping working output.

[0092] In some embodiments, for example, when the user is detected to be stationary, the vibration motor 3011 and / or the treatment electrode 3031 and / or the IR LED lamp 3021 are controlled to perform a first level of working output; when the user is detected to be moving (such as walking slowly or briskly), the vibration motor 3011 and / or the treatment electrode 3031 and / or the IR LED lamp 3021 are controlled to perform a second level of working output.

[0093] In some embodiments, the first degree is greater than the second degree. In other embodiments, the first degree may be less than the second degree for different purposes.

[0094] In some embodiments, for example, when the user is detected to be stationary, the vibration motor 3011 and / or the treatment electrode 3031 and / or the IR LED light 3021 are controlled to perform a first level of working output; when the user is detected to be walking slowly, the vibration motor 3011 and / or the treatment electrode 3031 and / or the IR LED light 3021 are controlled to perform a second level of working output; and when the user is detected to be walking briskly, the vibration motor 3011 and / or the treatment electrode 3031 and / or the IR LED light 3021 are controlled to perform a third level of working output.

[0095] In some embodiments, the first degree > the second degree > the third degree. In other embodiments, the first degree < the second degree < the third degree may be chosen for different purposes.

[0096] In some embodiments, when the detection module 4 detects that the user is moving, it controls the vibration motor 3011 to turn off. At this time, optical and physical contact massage is performed through the IR LED light 3021 and the massage bumps 2.

[0097] When the system detects that the user is stationary and will start a timed massage for a certain period of time, the vibration motor 3011 will be automatically turned on. After the set time value is reached, the system will remind the user that the automatic shutdown will begin in 3 minutes.

[0098] In some embodiments, such as when the user is detected to be in an unsafe state of motion, an electronically controlled output unit can be used to remind the user. For example, a vibration motor 3011 can output a vibration reminder, or a therapeutic electrode 3031 can output a current stimulation reminder.

[0099] In some embodiments, the control unit 5 may have a plurality of selectable operating modes.

[0100] For example, turning on the IR LED light 3021 physiotherapy massage mode separately, turning on the vibration motor 3011 physiotherapy massage mode separately, turning on the treatment electrode 3031 physiotherapy massage mode separately, and intelligent control mode.

[0101] In some embodiments, under intelligent control mode, the control unit 5 receives the detection information from the detection module 4 and makes corresponding control based on the detection information.

[0102] In some embodiments, the shoe body 1 is further provided with an instruction input unit 11. The instruction input unit 11 includes, for example, a push-button switch disposed on the side of the sole 101.

[0103] In some embodiments, the corresponding operating mode can be selected via a push-button switch.

[0104] In some embodiments, the button switch can be pressed and held to enter the previously user-defined working mode.

[0105] In some embodiments, a circuit control board 6 is also provided on the shoe body 1.

[0106] In some embodiments, the shoe body 1 is also provided with a storage battery 7, which can be powered by the storage battery 7 for convenient mobile use.

[0107] In some embodiments, the top surface of the bottom 1012 is provided with a mounting groove 1016, which is configured to accommodate at least the circuit control board 6 and / or the battery 7.

[0108] The mounting slot 1016 has a heat dissipation slot 1017 that connects downward to the bottom surface of the bottom plate 1012.

[0109] A carbon plate 1018 (carbon fiber plate) is installed in the mounting slot 1016, and the carbon plate 1018 is positioned between the mounting slot 1016 and the heat dissipation slot 1017.

[0110] In some embodiments, the carbon plate 1018 is mounted on the inner bottom wall of the mounting groove 1016.

[0111] In some embodiments, the carbon plate 1018 is configured to make thermally conductive contact with the heating element in the main positioning groove, such as with the battery 7.

[0112] In this embodiment, on the one hand, the carbon plate 1018 has good thermal conductivity, and the heat dissipation groove 1017 allows the surface of the carbon plate 1018 to be in direct contact with the air. The heat generated by the electrical components in the mounting groove 1016 can be conducted to the carbon plate 1018, thereby allowing for rapid heat dissipation through the surface of the carbon plate 1018 in contact with the air. On the other hand, the carbon plate 1018 can increase the torque of the sole 101, preventing ankle twisting due to deformation caused by external forces. Furthermore, the carbon plate 1018 can prevent hard objects from piercing into the mounting groove 1016, providing good protection for the circuit control board 6 and / or the battery 7.

[0113] In some embodiments, the shoe body 1 is also provided with a charging port 8, such as a TYPE-C magnetic charging port 8.

[0114] In some embodiments, the shoe body 1 is also provided with a status indicator light 9, such as an LED light.

[0115] In some embodiments, the shoe body 1 is also provided with a wireless module 10, such as a Bluetooth module.

[0116] In some embodiments, for example, the wireless module 10 can be connected to a mobile app / host computer. Through the app's interactive interface, users can configure their preferred settings. For example, the following settings can be configured: Automatic start / stop function: The motion sensor 401 intelligently detects posture and the pressure sensor 402 detects pressure, thereby automatically switching the working mode. For example, when stationary for a certain period of time, it switches to a low-power idle mode, and when motion is detected, it switches to a normal working mode.

[0117] Fall protection function: The motion sensor 401 intelligently detects the user's posture and the pressure sensor 402 detects the pressure status. If an abnormal posture or abnormal pressure is detected and maintained for a certain period of time, it is determined that the user may fall or be injured. At this time, the vibration motor 3011 is activated at full power to stimulate and the far-infrared light is turned on. At the same time, the LED light flashes quickly to remind the user, and / or the data is transmitted to the mobile APP / host computer via Bluetooth.

[0118] Monitoring and nursing functions: Configure the corresponding functions via the mobile app, as follows: The sedentary (standing) detection function detects when a user maintains a seated (still) posture for an extended period. It can periodically activate some of the vibration motors 3011 to promote blood circulation and remind the user. The sports mode detects whether the user is walking slowly or running fast, and automatically adjusts the power output of the vibration motor 3011 and the IR LED light 3021 to improve the user's comfort and experience. Posture monitoring records the posture (amplitude / speed, etc.) of the user's left and right feet and plantar pressure information when using the product to determine the balance of the two feet. The data is then uploaded to a mobile app / host computer via Bluetooth for display, reminding the user to take precautions in daily life.

[0119] In some embodiments, when the detection module 4 detects that the user is in an unsafe movement state, the status information can be uploaded to a mobile APP / host computer for display via the wireless module 10.

[0120] In some embodiments, the control unit 5 also serves to receive detection information from the detection module 4 and activate the corresponding working mode based on the detection information.

[0121] In some embodiments, detection methods, including but not limited to thresholding and frequency domain analysis, may be used to determine whether the detected state is a motion state.

[0122] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A smart massage therapy shoe, characterized in that, The shoe body includes a massage therapy component, which includes an electro-massage therapy module installed on the shoe body. The shoe body is equipped with a detection module, which is used to detect the specific state of the shoe body when it is worn by the user. It is also equipped with a control unit, which receives the detection information from the detection module and makes corresponding control based on the detection information.

2. The intelligent massage therapy shoe according to claim 1, characterized in that, The electro-massage therapy module includes a vibration-controlled electrical output unit and / or a far-infrared electrical output unit and / or an electromuscular stimulation electrical output unit installed on the shoe body.

3. The intelligent massage therapy shoe according to claim 1 or 2, characterized in that, Based on the detection information, the control unit can control the massage therapy electrical control execution module to output massage therapy or stop outputting massage therapy, or control some of the electrical control output units of the massage therapy electrical control execution module to output massage therapy or stop outputting massage therapy.

4. The intelligent massage therapy shoe according to claim 3, characterized in that, When the user is detected to be in motion, the vibration control output unit stops outputting vibration, while the far-infrared control output unit continues to output far-infrared rays. When the user is detected to be stationary, the vibration control output unit is controlled to output vibration.

5. The intelligent massage therapy shoe according to claim 1, characterized in that, The detection module includes a motion sensor, and the control unit receives the data detected by the motion sensor to detect or assist in detecting whether the user is moving and / or in an unsafe movement state.

6. The intelligent massage therapy shoe according to claim 1 or 5, characterized in that, The detection module includes at least one pressure sensor, and the control unit receives the data detected by the pressure sensor to detect or assist in detecting whether the user is moving and / or in an unsafe movement state.

7. The intelligent massage therapy shoe according to claim 6, characterized in that, The control unit determines whether the shoe is being worn based on pressure data detected by the pressure sensor. Once it is confirmed that the garment is in a wearing state, the current motion state is confirmed through motion sensors.

8. The intelligent massage therapy shoe according to claim 1, characterized in that, It also includes a wireless module; When the control unit detects that the user is in an unsafe movement state through the detection module, the control unit uploads the status information to the mobile APP / host computer for display via the wireless module.

9. The intelligent massage therapy shoe according to claim 2, characterized in that, When the user is detected to be in an unsafe movement state, the control unit controls the vibration electronic control output unit to output a vibration reminder and / or controls the electromuscular stimulation electronic control output unit to output an electrical stimulation reminder.

10. The intelligent massage therapy shoe according to claim 2, characterized in that, When the user is walking slowly or running fast, the output level of the vibration electronic control output unit and / or far-infrared electronic control output unit and / or electromuscular stimulation electronic control output unit is automatically adjusted.