A shoe

The design of the human-computer interaction base solves the problem that the charging port of the luminous shoe is easily affected by dust and water, realizes the display of charging status and intelligent control of LED lights, and improves user experience and structural stability.

CN113133566BActive Publication Date: 2025-11-11FILA SPORTS CO LTD +1
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Patent Information

Application Number
CN202110615244.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-06-02
Publication Date
2025-11-11
Estimated Expiration
2041-06-02

AI Technical Summary

Technical Problem

The charging ports of existing light-up shoes are prone to getting dust or water in, resulting in poor charging performance. Furthermore, users cannot be notified in time when the ports are damaged, which affects the user experience.

Method used

A human-computer interaction base was designed, including a base body, a cover body, a light guide, a charging terminal and a circuit board. Through a magnetic charging port, a touch switch and a Bluetooth connection module, it realizes intelligent control of LED lights and display of charging status. It has a compact structure and is waterproof and dustproof.

Benefits of technology

It achieves real-time display of charging status and intelligent control of LED lights, improving user experience, avoiding damage from poor charging and mechanical plug-in charging, and has a sturdy and aesthetically pleasing structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a shoe, which comprises a shoe body, a man-machine interaction seat and a control box. The man-machine interaction seat is fixed to the heel of the shoe upper and comprises a seat body, a cover body, a light guide piece, a charging terminal, a first circuit board and a fixing plate. The side of the first circuit board facing the light guide piece is provided with an LED lamp. The fixing plate is clamped between the first circuit board and the protruding column, and the LED lamp is held on the light guide protrusion of the light guide piece. The fixing plate is locked with the protruding column of the cover body through a screw. The control module in the control box is used for receiving a charging signal to control the lighting of the LED lamp. When the user charges, the connection module sends a charging signal when the battery is charging, and the control module is used for receiving the charging signal to control the lighting of the LED lamp, so that the user can know the charging state in real time, and the user experience is good.
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Description

Technical Field

[0001] This invention relates to the technical field of footwear, and more specifically to a type of footwear. Background Technology

[0002] With societal development, people have increasingly higher demands for the functionality of shoes, and their fashion concepts regarding traditional footwear have reached new heights. Products incorporating sound, light, and kinetic energy, along with DIY human-computer interaction, experiential products, and automated control technologies that enhance user participation, are gaining popularity. Among these, luminous shoes are widely used. Currently, most shoe lights on the market use USB charging ports. If dust gets inside, it significantly affects charging efficiency. Footwear products are susceptible to water damage and oxidation in harsh environments. Furthermore, users are often unaware if the charging port is damaged during charging, causing considerable inconvenience. Summary of the Invention

[0003] The purpose of this invention is to overcome the aforementioned defects or problems in the prior art and to provide a solution.

[0004] To achieve the above objectives, the present invention adopts the following technical solution:

[0005] Technical Solution 1: A shoe, comprising: a shoe body having a sole and an upper; a human-computer interaction seat fixed to the heel of the upper, comprising: a seat body having a main body penetrating the heel portion of the upper and a skirt for fixing to the upper, the main body having a plurality of slots and a perimeter surrounding each slot; a cover having a cover plate and a sidewall surrounding the edge of the cover plate and matching the perimeter, the cover plate having a first through hole and a plurality of hollow portions; the back of the cover plate having a plurality of protrusions, the protrusions having threaded holes; a light guide having a clearance for each of the protrusions and placed on the back of the cover plate, the side of the light guide facing the cover plate having a light guide portion embedded in the hollow portion, the side of the light guide facing away from the cover plate having a light-guiding protrusion; the light guide having a second through hole corresponding to the first through hole; a charging terminal fixed to the light guide, the terminal passing through the second through hole and embedded in the first through hole; a first circuit board having a plurality of fixed terminals corresponding to the threaded holes. A mounting hole; an LED light protruding from the side facing the light guide; a first connection terminal connected via a lead wire on the side facing away from the light guide; the first connection terminal connecting the charging terminal and the LED light respectively; a fixing plate clamping the first circuit board between itself and the protrusion, and holding the LED light atop the light guiding protrusion; it is locked to the protrusion with screws; a hook engaging with the slot is provided on the surface facing away from the first circuit board; a control box fixed inside the sole, comprising: a box body placed inside the sole; a battery placed inside the box body; a second circuit board fixed inside the box body and having a control module and a connection module, connected via a lead wire to a second connection terminal that plugs into the first connection terminal; the connection module connecting the second connection terminal and the battery and sending a charging signal when the battery is charging; the control module receiving the charging signal to control the LED light to illuminate.

[0006] Based on technical solution one, there is also technical solution two. In technical solution two, after receiving the charging signal, the control module controls the LED to light up in a first color; the connection module also sends a full charge signal when the battery is fully charged, and the control module is also used to receive the full charge signal to control the LED to light up in a second color.

[0007] Based on technical solution one, there is also technical solution three, which further includes an LED light strip. The outer edge of the shoe sole has a transparent part, and the LED light strip is attached to the inner surface of the transparent part. The second circuit board also has a third connecting terminal, which is electrically connected to the connecting end of the LED light strip. The control module is also used to control the LED light strip to light up.

[0008] Based on technical solution three, there is also technical solution four. In technical solution four, the human-computer interaction base further includes a touch switch, which is disposed on the side wall of the cover and electrically connected to the first circuit board. The first circuit board is provided with a sensing circuit for detecting the capacitance value of the touch switch and sending a touch signal when the capacitance value is greater than a threshold. The first connection terminal is also connected to the sensing circuit. The control module is used to receive the touch signal to control the LED light strip to light up.

[0009] Based on technical solution four, there is also technical solution five. In technical solution five, the second circuit board is further provided with a Bluetooth connection module. The Bluetooth connection module is used to connect with an external Bluetooth device to receive operation signals and send them to the control module. The control module is used to receive the touch signal to control the Bluetooth connection module to establish a connection with the external Bluetooth device. The control module is also used to receive the operation signal sent by the Bluetooth connection module to control the LED light strip to change the lighting color.

[0010] Based on technical solution four, there is also technical solution six. In technical solution six, the control module is further used to receive touch signals and count the received touch signals. When the number of received touch signals changes, the control module controls the LED light strip to change the color of the light.

[0011] Based on technical solution one, there is also technical solution seven, in which the charging terminal is a magnetic charging port.

[0012] Based on technical solution one, there is also technical solution eight, in which the human interaction seat is mirror-symmetrical.

[0013] Based on technical solution one, there is also technical solution nine, in which the light guide is made of ABS or PC material.

[0014] Based on technical solution one, there is also technical solution ten. In technical solution ten, a limiting protrusion is provided on the inner wall of the first through hole, and the charging terminal is provided with an abutting surface facing the limiting protrusion.

[0015] As can be seen from the above description of the present invention, compared with the prior art, the present invention has the following beneficial effects:

[0016] 1. In technical solution one, when the user charges, the charging head is electrically connected to the charging terminal. The charging terminal is connected to the second connecting terminal through the first connecting terminal, and then to the battery through the second connecting terminal. The connection module sends a charging signal when the battery is charging, and the control module receives the charging signal to control the LED light to illuminate, allowing the user to know the charging status in real time, resulting in a better user experience. In this technical solution, the human-interactive seat is fixed to the heel of the shoe upper for easy user operation. The main body of the seat extends through the heel of the shoe upper, and the skirt of the seat is fixed to the shoe upper for easy fixation. The solution includes a cover, a light guide, a first circuit board, charging terminals, and a fixing mechanism. The plates are assembled into a fixed unit, which is fixed by the cooperation of the fixing plate's hooks and the seat's slots, and by the cooperation of the cover's side wall and the seat's edge, making it easy to assemble and disassemble. The first circuit board has an LED light protruding from the side facing the light guide. The fixing plate holds the LED light up to the light guide protrusion, which then diffuses the LED light onto the outside of the shoe surface through the light guide, resulting in more uniform overall illumination. The LED light is directly integrated into the first circuit board, making it less susceptible to damage during shoe movement and ensuring a more stable structure. This human-interactive seat has a compact overall structure, excellent lighting effect, and is waterproof, dustproof, and highly practical.

[0017] 2. In technical solution two, after receiving the charging signal, the control module controls the LED to light up in the first color; the connection module also sends a full charge signal when the battery is fully charged, and the control module is also used to receive the full charge signal to control the LED to light up in the second color, so that the user can understand the charging status of the battery in real time.

[0018] 3. In technical solution three, LED light strips are also included. A transparent part is provided at the heel of the sole, and the LED light strip is attached to the inner surface of the transparent part. The control module is also used to control the LED light strip to light up, so as to realize the effect of flashing lights on the shoe.

[0019] 4. In technical solution four, the LED light strip can be switched on and off via a touch switch, providing a superior user experience.

[0020] 5. In technical solution five, a Bluetooth connection module is also provided. The Bluetooth connection module can establish a connection with an external Bluetooth device, thereby enabling the LED light strip to be controlled through an external Bluetooth device such as a mobile phone, achieving linkage and interactive lighting effects, and providing a better user experience.

[0021] 6. In technical solution six, the control module is also used to receive touch signals and count the received touch signals. When the number of received touch signals changes, the control module controls the LED light strip to change the color of the light, so that the LED light strip can be linked and interact with the light effect by touching the touch switch.

[0022] 7. In technical solution seven, the charging terminal is a magnetic charging port. The magnetic charging port can automatically align, making charging convenient and fast, and avoiding the damage to accessories caused by mechanical insertion charging, which can lead to poor charging.

[0023] 8. In technical solution eight, the human-interactive seat is mirror-symmetrical, making it more aesthetically pleasing.

[0024] 9. In technical solution nine, the light guide is made of light-transmitting materials such as ABS or PC, which has a good light guiding effect.

[0025] 10. In technical solution ten, a limiting protrusion is provided on the inner wall of the first through hole, and the charging terminal is provided with an abutting surface facing the limiting protrusion, which makes the charging terminal more stable and less likely to detach. Attached Figure Description

[0026] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the following description of the embodiments are briefly introduced. Obviously, the drawings described below are some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0027] Figure 1 This is a schematic diagram of a shoe according to an embodiment of the present invention;

[0028] Figure 2 This is a three-dimensional schematic diagram of the human-computer interaction seat, control box, and LED light strip according to an embodiment of the present invention;

[0029] Figure 3 This is a three-dimensional schematic diagram of the cover of the present invention;

[0030] Figure 4 This is a three-dimensional schematic diagram of the light guide component of the present invention;

[0031] Figure 5 This is a three-dimensional schematic diagram of the human body interaction seat of the present invention;

[0032] Figure 6 This is a top view of the human body interaction seat of the present invention;

[0033] Figure 7 for Figure 6 Sectional view along the AA direction;

[0034] Figure 8 This is a schematic diagram of the control flow of the present invention.

[0035] Explanation of key figure labels:

[0036] 10. Shoe body; 11. Sole; 111. Transparent part; 12. Upper;

[0037] Human-interactive seat 20;

[0038] 21 base; 211 body; 2111 slot; 2112 edging; 212 skirt;

[0039] 22; Cover plate 221; First through hole 2211; Limiting protrusion 22111; Hollowed-out part 2212; Protruding column 2213; Side wall 222;

[0040] Light guide 23; light guide portion 231; light guiding protrusion 232; second through hole 233;

[0041] Charging terminal 24; contact surface 241; first circuit board 25; positioning hole 251; LED light 252; sensing circuit 253; first connection terminal 254; fixing plate 26; hook 261; touch switch 27;

[0042] Control box 30; Box body 31; Control module 32; Connection module 33; Bluetooth connection module 34; Second connection terminal 35; Third connection terminal 36;

[0043] 40 LED light strip. Detailed Implementation

[0044] 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 preferred embodiments of the present invention and should not be considered as excluding other embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative effort are within the scope of protection of the present invention.

[0045] Unless otherwise expressly defined, the use of terms such as "first," "second," or "third" in the claims, description, and accompanying drawings of this invention is for distinguishing different objects and not for describing a specific order.

[0046] Unless otherwise expressly defined, in the claims, description, and accompanying drawings of this invention, the use of directional terms such as "center," "lateral," "longitudinal," "horizontal," "vertical," "top," "bottom," "inner," "outer," "upper," "lower," "front," "rear," "left," "right," "clockwise," and "counterclockwise" to indicate orientation or positional relationships is based on the orientation and positional relationships shown in the accompanying drawings and is only for the convenience of describing the invention and simplifying the description, and is not intended to indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as limiting the specific scope of protection of this invention.

[0047] Unless otherwise expressly defined, the terms "fixed connection" or "fixed connection" used in the claims, description and drawings of this invention should be interpreted broadly to refer to any connection in which there is no displacement or relative rotation relationship between the two parties, including non-removable fixed connection, detachable fixed connection, integral connection and fixed connection by other means or components.

[0048] In the claims, description and accompanying drawings of this invention, the terms "comprising," "having," and variations thereof are used to mean "including but not limited to."

[0049] See Figure 1-8 A shoe includes a shoe body 10, a human interaction seat 20, a control box 30, and an LED light strip 40.

[0050] The shoe body 10 is provided with a sole 11 and an upper 12, and the outer edge of the sole 11 is provided with a transparent part 111.

[0051] The human interaction seat 20 is fixed to the heel of the shoe upper 12 and includes a seat body 21, a cover body 22, a light guide 23, a charging terminal 24, a first circuit board 25, a fixing plate 26, and a touch switch 27.

[0052] In this embodiment, the human interaction seat 20 is mirror-symmetrical, and correspondingly, the seat body 21, cover body 22, light guide 23, first circuit board 25 and fixing plate 26 are also mirror-symmetrical, which is more aesthetically pleasing.

[0053] The seat 21 has a body 211 that extends through the heel of the shoe upper 12 and a skirt 212 for fixing to the shoe upper 12. The body 211 has a plurality of slots 2111 and a perimeter 2112 surrounding each slot 2111. In this embodiment, the skirt 212 is integrally formed with the body 211 and is located on the outer edge of the body 211.

[0054] The cover 22 is provided with a cover plate 221 and a side wall 222 surrounding the edge of the cover plate 221 and matching the side edge 2112. The cover plate 221 is provided with a first through hole 2211 and a plurality of hollow portions 2212. The back of the cover plate 221 has a plurality of protrusions 2213, and the protrusions 2213 are provided with threaded holes. In this embodiment, the hollow portions 2212 are symmetrically distributed on both sides of the first through hole 2211, the axis of the first through hole 2211 is located on the plane of symmetry of the cover plate 221, and the inner wall of the first through hole 2211 is provided with a limiting protrusion 22111.

[0055] The light guide 23 accommodates the protrusions 2213 and is positioned on the back of the cover plate 221. The side of the light guide 23 facing the cover plate 221 has a light guide portion 231 embedded in the hollow portion 2212. The side of the light guide 23 facing away from the cover plate 221 has a light-guiding protrusion 232. The light guide 23 has a second through hole 233 corresponding to the position of the first through hole 2211. In this embodiment, the light guide 23 is made of a light-transmitting material such as ABS or PC, resulting in excellent light guiding performance.

[0056] The charging terminal 24 is fixedly connected to the light guide 23. The charging terminal 24 passes through the second through hole 233 and is embedded in the first through hole 2211. In this embodiment, the charging terminal 24 is a magnetic charging port. The outer edge of the charging terminal 24 has an abutment surface 241 facing the limiting protrusion 22111, which abuts against the limiting protrusion 22111. The magnetic charging port can automatically align, making charging convenient and fast, and avoiding the damage to accessories caused by mechanical insertion charging, which can easily lead to poor charging.

[0057] The touch switch 27 is located on the side wall 222 of the cover 22 and is electrically connected to the first circuit board 25. In practice, the touch switch 27 is a capacitive waterproof switch, which provides a better user experience and more stable product quality.

[0058] The first circuit board 25 has several positioning holes 251 corresponding to the threaded holes; an LED light 252 protrudes from the side of the first circuit board 25 facing the light guide 23; the first circuit board 25 has a sensing circuit 253 for detecting the capacitance value of the touch switch 27 and sending a touch signal when the capacitance value is greater than a threshold; the side of the first circuit board 25 away from the light guide 23 has a first connection terminal 254 connected by a lead wire; the first connection terminal 254 is connected to the charging terminal 24, the LED light 252 and the sensing circuit 253 respectively. In this embodiment, the touch signal is a low-level signal, and the sensing circuit 253 outputs a touch signal once each time the touch switch 27 is touched.

[0059] The fixing plate 26 clamps the first circuit board 25 between itself and the protrusion 2213, and holds the LED lamp 252 on the light-guiding protrusion 232; the first circuit board 25 is locked to the protrusion 2213 by screws; the surface of the first circuit board 25 facing away from the first circuit board 25 is provided with a hook 261 that engages with the slot 2111.

[0060] The control box 30 is fixed inside the sole 11 and includes a box body 31, a battery (not shown in the figure), and a second circuit board (not shown in the figure).

[0061] The box 31 is placed inside the shoe sole 11, and the box 31 is filled with waterproof glue to prevent water and dust.

[0062] The battery is placed inside the housing 31 and is used to power the first circuit board 25, the second circuit board and the LED light strip 40.

[0063] The second circuit board is fixed inside the housing 31 and includes a control module 32, a connection module 33, and a Bluetooth connection module 34. It is connected to a second connection terminal 35, which is plugged into the first connection terminal 254, via a lead wire. It also has a third connection terminal 36, which is connected to the connection end of the LED light strip 40, via a lead wire. The connection module 33 is used to connect the second connection terminal 35 and the battery and to send a charging signal when the battery is charging. The connection module 33 also sends a full charge signal when the battery is fully charged. The Bluetooth connection module 34 is used to connect to an external Bluetooth device to receive operation signals and send them to the control module 32.

[0064] The control module 32 receives touch signals to control the LED strip 40 to light up. The control module 32 also receives and counts the received touch signals. When the number of received touch signals changes, the control module 32 controls the LED strip 40 to change its illuminated color. The control module 32 also receives touch signals to control the Bluetooth connection module 34 to establish a connection with an external Bluetooth device. The control module 32 also receives operation signals sent by the Bluetooth connection module 34 to control the LED strip 40 to change its illuminated color. The control module 32 receives charging signals to control the LED to light up in a first color, and also receives a fully charged signal to control the LED to light up in a second color.

[0065] The installation process of the human-computer interaction console is as follows:

[0066] Electrically connect the touch switch 27, charging terminal 24, and first circuit board 25. Then, install the touch switch 27 on the side wall 222 of the cover 22. Insert the charging terminal 24 into the second through hole 233 of the light guide 23 and fix the charging terminal 24 to the light guide 23. For example, the charging terminal 24 can be glued to the light guide 23 with transparent tape. Then, make the light guide 23 move aside from the protrusion 2213 of the cover plate 221 and place it on the back of the cover plate 221. The light guide 231 is embedded in the hollow part 2212 of the cover plate 221, and the charging terminal 24 passes through the first through hole 2211. The abutting surface 241 of the charging terminal 24 abuts against the limiting protrusion 22111. The first circuit board 25 is located on the side of the light guide 23 away from the cover plate 221. Next, the fixing plate 26 is fixed to the cover plate 221. Specifically, screws are used to sequentially pass through the positioning holes 251 on the fixing plate 26 and the first circuit board 25 to lock the protrusions 2213 on the fixing plate 26 and the cover plate 2213. The fixing plate 26 clamps the first circuit board 25 between the fixing plate 26 and the protrusions 2213, and holds the LED light 252 on the light guiding protrusion 232. The cover 22, the light guide 23, the first circuit board 25, the charging terminal 24 and the fixing plate 26 are combined into a fixing unit. The hook 261 of the fixing plate 26 in the fixing unit is engaged with the slot 2111 of the base 21 to achieve fixation with the base 21. At the same time, the side wall 222 of the cover 22 cooperates with the edge 2112 of the base 21 to achieve limiting.

[0067] As can be seen from the above installation process, the cover 22, light guide 23, first circuit board 25, charging terminal 24 and fixing plate 26 are combined into a fixing unit. This fixing unit is fixed by the cooperation of the hook 261 of the fixing plate 26 and the slot 2111 of the seat 21, and by the cooperation of the side wall 222 of the cover 22 and the edge 2112 of the seat 21, which makes it easy to assemble and disassemble. Among them, the first circuit board 25 has an LED light 252 protruding on the side facing the light guide 23. The fixing plate 26 holds the LED light to the light guiding protrusion 232. The light guiding protrusion 232 diffuses the light of the LED to the outside of the shoe surface 12 through the light guide part 231, making the overall light emission more uniform. The LED light is directly integrated on the first circuit board 25, which is not easily damaged during the movement of the shoe, and the structure is more stable. The human interaction seat 20 of this technical solution has a compact overall structure, good light emission effect, and is waterproof and dustproof, and has strong practicality.

[0068] The usage process is as follows:

[0069] Press and hold the touch switch for 3 seconds, and the sensing circuit 253 outputs a touch signal. The touch signal reaches the control module 32 through the first connection terminal 254 and the second connection terminal 35. After receiving the touch signal, the control module 32 controls the Bluetooth connection module 34 to open Bluetooth communication, and at the same time, the control module 32 controls the LED strip 40 to light up. When the Bluetooth connection module 34 establishes a connection with an external Bluetooth device, such as a mobile phone, the user can operate the device via a mobile app and send operation signals to the Bluetooth connection device. The control module 32 then receives the operation signals sent by the Bluetooth connection module 34 to control the LED strip 40 to change its lighting color. Similarly, when not operating through a mobile app, the sensing circuit 253 can continue to output touch signals by touching the touch switch 27. The control module 32 receives the touch signals and counts the received touch signals. The control module 32 controls the LED strip 40 to change its lighting color when the number of received touch signals changes. For example, if the LED strip 40 is lit up and the touch switch 27 is touched again, the control module 32 will change the lighting color of the LED strip 40. When LED strip 40 is not needed, press and hold the touch switch for 3 seconds to turn it off.

[0070] The LED light strip 40 uses the RGB color mode, thus covering a wider color gamut and emitting more vibrant colors. This, combined with the control module 32, controls the brightness and color of each LED on the LED light strip 40. The RGB color mode is an industry standard that generates a wide variety of colors by varying the red, green, and blue color channels and their interactions.

[0071] As can be seen, by adopting this technical solution, the LED light strip 40 can be controlled not only on the shoe, but also through mobile devices such as mobile phones, resulting in a superior user experience.

[0072] The charging process is as follows:

[0073] The charging head is electrically connected to the charging terminal 24. The charging terminal 24 is connected to the second connecting terminal 35 through the first connecting terminal 254, and then to the battery through the second connecting terminal 35. The connection module 33 sends a charging signal when the battery is charging. After receiving the charging signal, the control module 32 controls the LED to light up in the first color. The connection module 33 also sends a full charge signal when the battery is fully charged. After receiving the full charge signal, the control module 32 controls the LED to light up in the second color.

[0074] It is evident that this approach allows users to know the charging status in real time, resulting in a superior user experience.

[0075] In this technical solution, the human interaction seat 20 is fixed to the heel of the shoe upper 12 for easy operation by the user. The main body 211 of the seat body 21 passes through the heel of the shoe upper 12, and the perimeter 2112 of the seat body 21 is fixed to the shoe upper 12 to facilitate the fixation of the seat body 21 to the shoe upper 12.

[0076] The foregoing description of the specifications and embodiments is intended to explain the scope of protection of this invention, but does not constitute a limitation on the scope of protection of this invention. Modifications, equivalent substitutions, or other improvements to the embodiments of this invention or a portion thereof that can be obtained by those skilled in the art through logical analysis, reasoning, or limited experimentation, based on the teachings of this invention or the foregoing embodiments, in conjunction with common knowledge, general technical knowledge, and / or existing technology, should all be included within the scope of protection of this invention.

Claims

1. A type of shoe, characterized in that, include: The shoe body consists of a sole and an upper; A human-computer interaction seat, fixed to the heel of the shoe upper, includes: The seat has a body that extends through the heel portion of the shoe upper and a skirt for fixing to the shoe upper. The body has several slots and a surrounding edge around each slot. The cover body has a cover plate and a side wall surrounding the edge of the cover plate and matching the side wall. The cover plate has a first through hole and several hollow parts. The back of the cover plate has several protruding posts, and the protruding posts have threaded holes. A light guide is provided, which makes way for each of the protruding posts and is placed on the back of the cover plate. The side of the light guide facing the cover plate is provided with a light guide portion embedded in the hollow part, and the side of the light guide facing away from the cover plate is provided with a light-guiding protrusion. A second through hole is provided at the position corresponding to the first through hole. A charging terminal is fixedly connected to the light guide, and it passes through the second through hole and is embedded in the first through hole; The first circuit board has a plurality of positioning holes corresponding to the threaded holes; an LED light is protruding on the side facing the light guide; and a first connection terminal is provided on the side facing away from the light guide via a lead wire; the first connection terminal is respectively connected to the charging terminal and the LED light. A fixing plate clamps the first circuit board between itself and the protrusion, and holds the LED lamp on the light-guiding protrusion; it is locked to the protrusion by screws; and a hook that engages with the slot is provided on the surface of the fixing plate opposite to the first circuit board. A control box, fixedly disposed within the sole of the shoe, comprises: The box body is placed inside the sole of the shoe; The battery is housed within the casing; The second circuit board is fixed inside the housing and includes a control module and a connection module. It is connected to a second connection terminal that is plugged into the first connection terminal via a lead wire. The connection module is used to connect the second connection terminal and the battery and send a charging signal when the battery is charging. The control module is used to receive the charging signal to control the LED light to illuminate.

2. The shoe as described in claim 1, characterized in that, Upon receiving the charging signal, the control module controls the LED to light up in a first color; the connection module also sends a full charge signal when the battery is fully charged, and the control module is also used to receive the full charge signal to control the LED to light up in a second color.

3. The shoe as described in claim 1, characterized in that, It also includes an LED light strip, with a transparent part on the outer edge of the sole, and the LED light strip is attached to the inner surface of the transparent part; the second circuit board is also provided with a third connection terminal, which is electrically connected to the connection end of the LED light strip; the control module is also used to control the LED light strip to light up.

4. A shoe as described in claim 3, characterized in that, The human-machine interface seat also includes a touch switch, which is disposed on the side wall of the cover and electrically connected to the first circuit board; the first circuit board is provided with a sensing circuit for detecting the capacitance value of the touch switch and sending a touch signal when the capacitance value is greater than a threshold; the first connection terminal is also connected to the sensing circuit; the control module is used to receive the touch signal to control the LED light strip to light up.

5. A shoe as described in claim 4, characterized in that, The second circuit board is also provided with a Bluetooth connection module, which is used to connect to an external Bluetooth device to receive operation signals and send them to the control module; the control module is used to receive the touch signal to control the Bluetooth connection module to establish a connection with the external Bluetooth device, and the control module is also used to receive the operation signal sent by the Bluetooth connection module to control the LED light strip to change the lighting color.

6. A shoe as described in claim 4, characterized in that, The control module is also used to receive touch signals and count the received touch signals. When the number of received touch signals changes, the control module controls the LED light strip to change the color of the light.

7. A shoe as described in claim 1, characterized in that, The charging terminal is a magnetic charging port.

8. A shoe as described in claim 1, characterized in that, The human-computer interaction seat is mirror-symmetrical.

9. A shoe as described in claim 1, characterized in that, The light guide is made of ABS or PC.

10. A shoe as described in claim 1, characterized in that, The inner wall of the first through hole is provided with a limiting protrusion, and the charging terminal is provided with an abutting surface facing the limiting protrusion.

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