Electronic shoe label component for attaching to shoe body and electronic device
By attaching electronic shoe label components to the shoe body, and using motion sensors and display components to reflect the exercise level in real time, the problem of traditional smart shoe electronic systems being unable to obtain the exercise status in real time is solved, realizing the convenience and intuitiveness of information acquisition during exercise.
Patent Information
- Application Number
- CN202422505131.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-16
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-10-16
AI Technical Summary
Traditional smart footwear electronic systems are not convenient for obtaining real-time exercise status information during exercise; users need to check the mobile terminal after exercise.
Design an electronic shoe label component for attachment to the shoe body, including a motion sensor, a display component, a power module, and a processor, which reflects the amount of exercise achieved through light emission effects, and realizes real-time status monitoring.
Athletes can obtain information about their exercise status at any time during exercise, improving the convenience and intuitiveness of exercise management.
Smart Images

Figure CN223463714U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of intelligent footwear or intelligent footwear electronic system, in particular to an electronic shoe tag component and an electronic device for attaching to a shoe body. BACKGROUND
[0002] With the development of society, people pay more and more attention to physical health, and sports health care is increasingly valued. People hope to obtain and manage their exercise amount and exercise state during exercise to achieve the expected exercise goal and improve physical health indicators.
[0003] Traditional intelligent footwear and intelligent footwear electronic system meet part of the needs of people. Intelligent footwear generally has a sensor for sensing motion, and the intelligent footwear is communicatively connected with a mobile terminal, and sends the motion state signal collected by the sensor to the mobile terminal, which analyzes and processes the signal and presents relevant motion state information to the user.
[0004] Since it is inconvenient to check the mobile terminal at any time during exercise, people generally obtain relevant motion state information from the mobile terminal after exercise, which has the problem of not being convenient to obtain motion state information at any time during exercise. CONTENT OF THE INVENTION
[0005] Therefore, it is necessary to provide an electronic shoe tag component and an electronic device for attaching to a shoe body in view of the above problems.
[0006] In one embodiment, an electronic shoe tag component for attaching to a shoe body, the electronic shoe tag component is a sheet structure, comprising a bottom surface layer for being opposite to the shoe body, and a top surface layer opposite to the bottom surface layer; the top surface layer is a light-transmitting layer; the top surface layer and the bottom surface layer are spliced into a closed space, and the edge profile of the top surface layer and the bottom surface layer is a preset shape; the electronic shoe tag component further comprises an electronic device packaged in the closed space;
[0007] The electronic device comprises:
[0008] a motion sensor for generating a corresponding motion signal triggered by the motion of the shoe body;
[0009] a display component for generating a light effect reflecting the achievement condition of the corresponding exercise amount of the motion signal to the predetermined target exercise amount;
[0010] a power module for supplying power to the electronic device.
[0011] In the embodiment, the display component attached to the shoe body can generate a light effect reflecting the achievement status of the corresponding motion amount of the motion signal to the predetermined target motion amount, so that the motioner wearing the shoe body can obtain the achievement status information of the predetermined target motion amount at any time during the motion, and the motioner can conveniently obtain and manage the motion state.
[0012] In one embodiment, the display component comprises a plurality of light-emitting components arranged in a queue with a sequential relationship between each light-emitting component.
[0013] The display component is used to light up sequentially from one end to the other end of the queue, and when the corresponding motion amount of the motion signal reaches a predetermined proportion of the predetermined target motion amount, part of the light-emitting components of the display component are lit up, and when the corresponding motion amount of the motion signal reaches the predetermined target motion amount, all the light-emitting components of the display component are lit up.
[0014] In the embodiment, the light-emitting components of the display component are arranged in a queue, and the proportion of the light-emitting components of the display component that are lit up can reflect the proportion of the shoe body motion amount that reaches the preset target motion amount, so that the motioner can obtain the motion state information very intuitively.
[0015] In one embodiment, the electronic device further comprises a light-sensitive sensor for detecting the intensity of ambient light.
[0016] The display component is also used to display light with intensity and color adapted to the intensity and color of the ambient light to meet the predetermined visibility condition.
[0017] In the embodiment, the display component can adjust its light according to the adaptability of the intensity and color of the ambient light to meet the predetermined visibility condition, so that the motioner can clearly observe the light of the display component to obtain the motion state information.
[0018] In one embodiment, the electronic device further comprises:
[0019] The first communication unit is used to communicate with the mobile terminal and receive the predetermined target motion amount sent by the mobile terminal.
[0020] The first processor is used to count the motion amount corresponding to the motion signal, and determine whether the motion amount reaches a predetermined proportion of the predetermined target motion amount, and if so, generate a preset indication signal, which is used to trigger the display component to generate the light effect.
[0021] In the embodiment, the first processor built in the electronic shoe marker component can count the motion signal, make a determination and generate a preset indication signal, without relying on the processing capability of the outside (such as the mobile terminal).
[0022] In another embodiment, the electronic device further comprises:
[0023] a second processor configured to count the motion amount corresponding to the motion signal;
[0024] a second communication unit configured to communicate with the mobile terminal and send the motion amount corresponding to the motion signal to the mobile terminal;
[0025] The second communication unit is further configured to receive a preset indication signal sent by the mobile terminal when the motion amount corresponding to the motion signal reaches a predetermined proportion of the predetermined target motion amount, and the preset indication signal is used to trigger the display component to generate the light effect.
[0026] In this embodiment, the second processor built in the electronic shoe tag only needs to count the motion signal, and does not need to make a judgment and generate a preset indication signal, which can reduce the complexity of the circuit structure of the second processor and thus reduce the cost of the second processor.
[0027] In one embodiment, the light-emitting component is an LED lamp bead.
[0028] In one embodiment, the motion sensor comprises an acceleration sensor and a gyroscope sensor.
[0029] In one embodiment, it further comprises a waterproof coating wrapped on the outer surfaces of the top surface layer and the bottom surface layer and the joint thereof.
[0030] In one embodiment, an electronic device for attaching to a shoe body comprises:
[0031] a motion sensor configured to generate a corresponding motion signal triggered by the movement of the shoe body;
[0032] a first communication unit configured to communicate with the mobile terminal and receive a predetermined target motion amount sent by the mobile terminal;
[0033] a first processor configured to count the motion amount corresponding to the motion signal and determine whether the motion amount reaches a predetermined proportion of the predetermined target motion amount, and if so, generate a preset indication signal;
[0034] a display component, the display component comprising a plurality of light-emitting components arranged in a queue with a sequential relationship between each light-emitting component; the display component is configured to be gradually and sequentially lit from one end of the queue to the other end, and whenever a preset indication signal generated by the first processor is received, part of the light-emitting components of the display component are lit until all the light-emitting components included in the display component are lit;
[0035] A power module is configured to supply power to the electronic device.
[0036] In one embodiment, an electronic device configured to be attached to a shoe body comprises:
[0037] A motion sensor is configured to generate a corresponding motion signal upon triggering of a motion of the shoe body.
[0038] A second processor is configured to count a motion amount corresponding to the motion signal.
[0039] A second communication unit is configured to communicate with a mobile terminal and send the motion amount corresponding to the motion signal to the mobile terminal.
[0040] The second communication unit is further configured to receive a preset indication signal sent by the mobile terminal when the motion amount corresponding to the motion signal reaches a preset proportion of the predetermined target motion amount.
[0041] A display component comprises a plurality of light-emitting components arranged in a queue with a sequential relationship between each light-emitting component; the display component is configured to be gradually lit in sequence from one end of the queue to the other end; whenever the preset indication signal is received, part of the light-emitting components of the display component are lit until all the light-emitting components of the display component are lit.
[0042] A power module is configured to supply power to the electronic device. BRIEF DESCRIPTION OF DRAWINGS
[0043] The accompanying drawings, which form a part of this application, are included to provide a further understanding of the application and are incorporated herein in their entirety. The application illustratively described herein suitably can be practiced in the absence of any element(s) not specifically disclosed. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of this application.
[0044] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the accompanying drawings needed to be used in the embodiments description will be briefly introduced. Obviously, the accompanying drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained without creative effort based on these drawings.
[0045] Figure 1 A schematic view of an electronic shoe tag component configured to be attached to a shoe body and a plan view of the shoe body in one embodiment;
[0046] Figure 2 A schematic view of the arrangement of light-emitting components of a display component of an electronic shoe tag component configured to be attached to a shoe body in one embodiment;
[0047] Figure 3 A schematic view of the structure of an electronic device in one embodiment;
[0048] Figure 4 A schematic diagram of the structure of an electronic device in one embodiment;
[0049] Figure 5 A schematic diagram of the structure of an electronic device in one embodiment. DETAILED DESCRIPTION
[0050] In order to make the above objectives, features and advantages of the present application more apparent, specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. The specific embodiments described below set forth in detail the preferred embodiments of the present application. However, it should be understood that the present application can be carried out in many different ways as long as it does not depart from the spirit and scope of the present application. Therefore, specific embodiments disclosed below are not intended to limit the present application but to explain the present application in detail.
[0051] In one embodiment, an electronic shoe tag member for attaching to a shoe body, the electronic shoe tag member is a sheet structure, comprising a bottom layer for facing the shoe body, and a top layer opposite to the bottom layer; the top layer is a light-transmitting layer; the top layer and the bottom layer are combined into a closed space, and the edge profile of the top layer and the bottom layer is a preset shape; the electronic shoe tag member further comprises an electronic device packaged in the closed space; the electronic device comprises:
[0052] a motion sensor for generating a corresponding motion signal upon triggering of the motion of the shoe body; a display component for generating a light effect reflecting the achievement status of the corresponding motion amount of the motion signal to a predetermined target motion amount; and a power module for supplying power to the electronic device. It is easy to understand that the motion sensor is indirectly attached to the shoe body, and the motion sensor can sense the motion of the attached shoe body when the shoe body moves and generate a corresponding motion signal. In this embodiment, the display component attached to the shoe body can generate a light effect reflecting the achievement status of the corresponding motion amount of the motion signal to a predetermined target motion amount, so that the wearer can obtain the achievement status information of the predetermined target motion amount at any time during the movement, and the wearer can conveniently obtain and manage the movement state.
[0053] In one embodiment, the motion sensor includes an acceleration sensor and a gyroscope sensor. The acceleration sensor and the gyroscope sensor can be used to monitor the footstep action and the motion state of the wearer. The acceleration sensor can be a three-axis G Sensor acceleration sensor, for example; the gyroscope sensor can be a six-axis with gyroscope, for example. In one embodiment, the reaching condition for the predetermined target motion amount includes a condition of reaching all of the predetermined target motion amount, a condition of reaching part of the predetermined target motion amount, a condition of reaching a certain proportion of the predetermined target motion amount, and the like. In one embodiment, the power module includes a power management circuit and a battery. The power management circuit is used to perform battery charging processing and overheat protection processing. The battery can be a high-performance lithium battery, for example. The power management circuit is also used to determine whether the electronic device is in a non-working state or a low-load state, and if so, trigger the electronic device to enter a sleep mode to reduce power consumption.
[0054] In one embodiment, the edge profile of the top surface layer and the bottom surface layer forms a preset shape with an identification significance, for example, the preset shape is the contour shape of a trademark. Figure 1 An electronic shoe tag member 10 for attaching to a shoe body is shown in an application scenario, wherein the edge profile of the electronic shoe tag member 10 is in the contour shape of a trademark.
[0055] In one embodiment, the display component includes a plurality of light-emitting components arranged in a queue with a sequential relationship between each light-emitting component. As shown in Figure 2 The display component of the electronic shoe tag member 10 for attaching to a shoe body includes 5 light-emitting components 101 arranged in a queue, which can not be in a straight line, but has an easily recognizable extension direction from one end to the other end. In one embodiment, the light-emitting component is an LED lamp bead.
[0056] In one embodiment, the light-emitting components of the display component are used to be lit in sequence from one end of the queue to the other end. When the motion signal corresponding to the motion amount reaches a predetermined proportion of the predetermined target motion amount, part of the light-emitting components of the display component are lit, and when the motion signal corresponding to the motion amount reaches all of the predetermined target motion amount, all of the light-emitting components included in the display component are lit. In this embodiment, the light-emitting components of the display component are arranged in a queue, and the proportion of the light-emitting components of the display component that are lit can reflect the proportion of the shoe body motion amount that reaches the preset target motion amount, so that the wearer can very intuitively obtain his own motion state information.
[0057] In one embodiment, when the motion signal corresponds to a predetermined proportion of the predetermined target motion amount, the corresponding proportion of the light-emitting components are lit. For example, when the motion signal corresponds to 20% of the predetermined target motion amount, 20% of the light-emitting components are lit, when the motion signal corresponds to 40% of the predetermined target motion amount, 40% of the light-emitting components are lit, and so on, until the motion signal corresponds to the entire predetermined target motion amount, all of the light-emitting components included in the display component are lit. It can be understood that the display component being lit includes various situations, such as intermittent light, flashing light, or steady and continuous light.
[0058] In one embodiment, the electronic device further includes a light-sensitive sensor for detecting the intensity and color of ambient light; and the display component is further configured to display light with intensity and color adapted to the intensity and color of the ambient light to meet a predetermined visibility condition. In this embodiment, the display component can adjust its light according to the intensity and color of the ambient light to meet the predetermined visibility condition, so that the exerciser can clearly observe the light of the display component to obtain the exercise state information.
[0059] In one embodiment, light with intensity stronger than the ambient light and / or light with color different from the color of the ambient light (e.g., the difference in color RGB value exceeds a predetermined threshold) can be generated to facilitate the exerciser to identify the light emitted by the display component.
[0060] In one embodiment, the electronic device further includes a first communication unit configured to communicate with a mobile terminal and receive the predetermined target motion amount sent by the mobile terminal; and a first processor configured to count the motion amount corresponding to the motion signal, determine whether the motion amount reaches a predetermined proportion of the predetermined target motion amount, and generate a predetermined indication signal if so, the predetermined indication signal being configured to trigger the display component to generate a light effect reflecting the status of the motion amount corresponding to the motion signal reaching the predetermined target motion amount. In this embodiment, the first processor built in the electronic shoe marker can count the motion signal, make the determination, and generate the predetermined indication signal, without relying on the processing capability of the external device (e.g., the mobile terminal).
[0061] In one embodiment, the first processor includes a counting circuit, a determination circuit, and a signal generation circuit. The counting circuit is configured to count the motion amount corresponding to the motion signal, the determination circuit is configured to determine whether the motion amount reaches a predetermined proportion of the predetermined target motion amount, and the signal generation circuit is configured to generate the predetermined indication signal; and the determination circuit is further configured to trigger the signal generation circuit to generate the predetermined indication signal when the motion amount reaches the predetermined proportion of the predetermined target motion amount. The predetermined indication signal may, for example, be configured to trigger the display component to light a predetermined proportion or a predetermined number of light-emitting components.
[0062] In another embodiment, the electronic device further comprises a second processor configured to count the amount of motion corresponding to the motion signal; a second communication unit configured to communicate with the mobile terminal and send the amount of motion corresponding to the motion signal to the mobile terminal; and the second communication unit is further configured to receive a preset indication signal sent by the mobile terminal when the amount of motion corresponding to the motion signal reaches a predetermined proportion of the predetermined target amount of motion, and the preset indication signal is used to trigger the display component to generate a light effect reflecting the achievement status of the amount of motion corresponding to the motion signal with respect to the predetermined target amount of motion. In this embodiment, the second processor built in the electronic shoe tag component only needs to count the motion signal, and does not need to make a judgment and generate a preset indication signal, which can reduce the complexity of the circuit structure of the second processor, thereby reducing the cost of the second processor.
[0063] In one embodiment, the electronic shoe tag component for attaching to the shoe body further comprises a waterproof coating wrapped on the outer surfaces of the top surface layer and the bottom surface layer and the joint thereof. Thus, the electronic shoe tag component can achieve waterproof effect. In one embodiment, the electronic device is not limited to be packaged in the electronic shoe tag component, but can be directly installed in the shoe body.
[0064] For the convenience of understanding, the following will be described in conjunction with the accompanying drawings Figure 3 An electronic device 30 of a specific embodiment is provided for attaching to the shoe body, which comprises:
[0065] A motion sensor 301 configured to generate a corresponding motion signal under the triggering of the motion of the shoe body;
[0066] A first communication unit 302 configured to communicate with the mobile terminal and receive the predetermined target amount of motion sent by the mobile terminal;
[0067] A first processor 303 configured to count the amount of motion corresponding to the motion signal, and determine whether the amount of motion reaches a predetermined proportion of the predetermined target amount of motion, and if so, generate a preset indication signal;
[0068] A display component 304, which comprises a plurality of light emitting components 3041 arranged in a queue with a sequential relationship between each light emitting component 3041; the display component 304 is configured to be gradually and sequentially lit in order from one end of the queue to the other end, and each time the preset indication signal generated by the first processor 303 is received, part of the light emitting components 3041 of the display component 304 are lit, until all the light emitting components 2041 included in the display component 304 are lit;
[0069] A power module 305 configured to supply power to the electronic device 30.
[0070] In this embodiment, the first processor 303 includes: a statistical circuit 3032, a judgment circuit 3034, and a signal generating circuit 3036. The statistical circuit 3032 is used to count the amount of motion corresponding to the motion signal, the judgment circuit 3034 is used to determine whether the amount of motion reaches a predetermined proportion of the predetermined target amount of motion, and the signal production circuit 3036 is used to generate a preset indication signal. The judgment circuit 3034 is also used to trigger the signal production circuit 3036 to generate a preset indication signal when the amount of motion reaches a predetermined proportion of the predetermined target amount of motion. The preset indication signal can, for example, be used to trigger a display component to illuminate a predetermined proportion or a predetermined number of light-emitting components. The circuit structure of the first processor 303 in this embodiment is not intended to limit the technical solution of this application. In other embodiments, the first processor 303 can be arranged as other feasible circuit structures.
[0071] like Figure 4 As shown, in one embodiment, an electronic device 40 is attached to a shoe body, comprising:
[0072] The motion sensor 401 is used to generate a corresponding motion signal when triggered by the movement of the shoe body;
[0073] The second processor 402 is configured to count the amount of motion corresponding to the motion signal;
[0074] The second communication unit 403 is used to communicate with the mobile terminal and send the exercise amount corresponding to the exercise signal to the mobile terminal;
[0075] The second communication unit 403 is further configured to receive a preset indication signal sent by the mobile terminal when the amount of exercise corresponding to the exercise signal reaches a predetermined proportion of a predetermined target amount of exercise;
[0076] Display component 404, comprising a plurality of light-emitting components arranged in a queue with a sequential relationship between the light-emitting components; display component 404 is configured to be illuminated in sequence from one end of the queue to the other end, and each time a preset indication signal is received, some of the light-emitting components of the display component are illuminated until all the light-emitting components of the display component are illuminated;
[0077] The power module 405 is used to supply power to the electronic device 40 .
[0078] In this embodiment, the second processor 402 includes a statistical circuit 4022, which is used to count the amount of motion corresponding to the motion signal. The circuit layout of the second processor 402 in this embodiment does not limit the scope of protection of this application. Those skilled in the art can layout the circuit of the second processor 402 according to specific needs.
[0079] In one embodiment, the electronic device further comprises a memory for locally storing data collected by the motion sensor and / or the light sensitive sensor, user information received by the electronic device, and the like. The memory can employ Nand Flash (flash memory) or EMMC (embedded memory) storage technology.
[0080] In one embodiment, the processor (first processor or second processor), the memory, and the communication unit (first communication unit or second communication unit) included in the electronic device of the above embodiment can be integrated in a master chip. Taking the electronic device 30 in the above embodiment as an example, as shown in FIG. 3, the electronic device 30 comprises a motion sensor 301, a first communication unit 302, a first processor 303, a display component 304, and a power module 305. In this embodiment, the electronic device 30 further comprises a memory 306, wherein the first communication unit 302, the first processor 303, and the memory 306 are integrated on a master chip 307. Figure 5
[0081] In the description of the present application, it should be understood that if the terms "first", "second", and the like are used, these terms are only used for the purpose of description and should not be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined with "first" and "second" can explicitly or implicitly include at least one of the features. In the description of the present application, if the term "plurality" appears, the meaning of "plurality" is at least two, for example, two, three, and the like, unless otherwise specifically limited.
[0082] The technical features of the above embodiments can be combined in any manner. In order to make the description concise, all possible combinations of the technical features in the above embodiments are not described, however, as long as the combination of the technical features does not exist contradictory, it should be considered as the scope of the present application.
[0083] The above embodiments only express several embodiments of the present application, and the description is more specific and detailed, but it should not be understood as limiting the scope of the patent application. It should be noted that for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which are within the scope of the present application. Therefore, the scope of the patent of the present application should be subject to the appended claims.
Claims
1. An electronic shoe tag member for attachment to a shoe body, characterized by, The electronic shoe tag component is a sheet structure, comprising a bottom layer opposite to the shoe body, and a top layer opposite to the bottom layer; the top layer is a light-transmitting layer; the top layer and the bottom layer are combined into a closed space, and the edge profile of the combination of the top layer and the bottom layer is a preset shape; the electronic shoe tag component further comprises an electronic device encapsulated in the closed space; The electronic device comprises: a motion sensor for generating a corresponding motion signal triggered by the motion of the shoe body; a display component for generating a light effect reflecting the achievement status of the corresponding motion amount of the motion signal to a predetermined target motion amount; a power module for supplying power to the electronic device.
2. An electronic shoe tag member for attachment to a shoe, according to claim 1, wherein, The display component comprises a plurality of light-emitting components arranged in a queue with a sequential relationship between each light-emitting component; The display component is used to light up the light-emitting components in sequence from one end of the queue to the other end, and when the corresponding motion amount of the motion signal reaches a predetermined proportion of the predetermined target motion amount, part of the light-emitting components of the display component are lit up, and when the corresponding motion amount of the motion signal reaches the predetermined target motion amount, all the light-emitting components included in the display component are lit up.
3. An electronic shoe tag member for attachment to a shoe, according to claim 1, wherein, The electronic device further comprises a light-sensitive sensor for detecting the intensity of ambient light; The display component is further used to display light with intensity and color adapted to the intensity and color of the ambient light to meet the predetermined visibility condition.
4. An electronic shoe tag member for attachment to a shoe, according to claim 1, wherein, The electronic device further comprises: a first communication unit for communicating with a mobile terminal and receiving a predetermined target motion amount sent by the mobile terminal; a first processor for counting the motion amount corresponding to the motion signal and determining whether the motion amount reaches a predetermined proportion of the predetermined target motion amount, and if so, generating a preset indication signal, which is used to trigger the display component to generate the light effect.
5. An electronic shoe tag member for attachment to a shoe, according to claim 1, wherein, The electronic device further comprises: a second processor for counting the motion amount corresponding to the motion signal; a second communication unit for communicating with a mobile terminal and sending the motion amount corresponding to the motion signal to the mobile terminal; The second communication unit is further used to receive a preset indication signal sent by the mobile terminal when the motion amount corresponding to the motion signal reaches a predetermined proportion of the predetermined target motion amount, and the preset indication signal is used to trigger the display component to generate the light effect.
6. An electronic shoe tag member for attachment to a shoe, according to claim 2, wherein, The light-emitting component is an LED lamp bead.
7. An electronic shoe tag member for attachment to a shoe, according to claim 1, wherein, The motion sensor comprises an acceleration sensor and a gyroscope sensor.
8. An electronic shoe tag member for attachment to a shoe, according to claim 1, wherein, It further comprises a waterproof coating wrapped on the outer surfaces of the top layer and the bottom layer and the combined part of the two.
9. An electronic device for attachment to a shoe body, comprising: It comprises: a motion sensor for generating a corresponding motion signal triggered by the motion of the shoe body; a first communication unit for communicating with a mobile terminal and receiving a predetermined target motion amount sent by the mobile terminal; a first processor for counting the motion amount corresponding to the motion signal and determining whether the motion amount reaches a predetermined proportion of the predetermined target motion amount, and if so, generating a preset indication signal; The display component comprises a plurality of light-emitting components arranged in a queue with a sequential relationship between each light-emitting component; the display component is used to be gradually lit in sequence from one end of the queue to the other end, and each time a preset indication signal generated by the first processor is received, part of the light-emitting components of the display component are lit until all the light-emitting components included in the display component are lit; The power module is used to supply power for the electronic device.
10. An electronic device for attachment to a shoe body, comprising: Comprise: The motion sensor is used to generate a corresponding motion signal under the trigger of the movement of the shoe body; The second processor is used to count the motion amount corresponding to the motion signal; The second communication unit is used to communicate with the mobile terminal and send the motion amount corresponding to the motion signal to the mobile terminal; The second communication unit is also used to receive a preset indication signal sent by the mobile terminal when the motion amount corresponding to the motion signal reaches a predetermined proportion of a predetermined target motion amount; The display component comprises a plurality of light-emitting components arranged in a queue with a sequential relationship between each light-emitting component; the display component is used to be gradually lit in sequence from one end of the queue to the other end, and each time a preset indication signal generated by the first processor is received, part of the light-emitting components of the display component are lit until all the light-emitting components included in the display component are lit; The power module is used to supply power for the electronic device.