Wearable long-distance motion data acquisition equipment and storage device
By incorporating air ducts and dust sensors in wearable devices, the problem of air quality detection in sports areas is solved, real-time monitoring and display of air quality is achieved, and users' sports health and safety are improved.
Patent Information
- Application Number
- CN202422155836.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-03
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-09-03
AI Technical Summary
The prior art cannot detect air quality in the exercise area, resulting in users being susceptible to health hazards when exercising in areas with poor air quality.
A wearable long-distance motion data acquisition device is designed with built-in air duct, fan and dust sensors. The fan generates negative pressure to introduce air into the air duct. The dust sensor detects air quality and displays data on the display.
Real-time detection of air quality in the exercise area is realized, and users can judge whether it is suitable for exercise based on the data on the display, improving health and safety during exercise.
Smart Images

Figure CN223091934U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of data acquisition devices and storage devices, in particular to a wearable long-distance motion data acquisition device and a storage device. Background Technique
[0002] According to a computer data acquisition device disclosed in Chinese Publication (Announcement) No. CN106484051A, which includes a hollow box body. Concave holes communicating with the inside of the box body are provided on the outer walls of both sides of the box body, and screws are rotatably connected in the concave holes. A baffle is sleeved on the outer wall of the screw, and convex blocks are provided on the inner walls of both sides of the baffle. Chute are provided on the inner walls of both sides of the box body, and the chute matches the movement track of the convex block. A first pull rod is rotatably connected to the baffle, and a second pull rod is connected to the side of the first pull rod away from the baffle. The invention can protect the camera externally connected to the computer, avoid the camera from falling and being damaged, can adjust the angle and height of the camera, can store multiple computer external devices, is convenient for storage and taking out for use. The baffle of the device can provide a stable platform for external devices, ensure the stable operation of external devices. The device can provide multiple USB connection ports for the computer, facilitate the connection between the computer and more external devices, and has extremely strong practicability.
[0003] When the above technology is used, the quality of the air in the movement area cannot be detected, so when the user exercises in an area with poor air quality, it is more likely to cause health hazards. Content of the Utility Model
[0004] The purpose of the utility model is to solve the shortcoming that the quality of the air in the movement area cannot be detected in the prior art, and to propose a wearable long-distance motion data acquisition device and a storage device.
[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme: A wearable long-distance motion data acquisition device and a storage device, including a storage box, a memory is arranged inside the storage box, a battery is arranged at the bottom of the memory, six mobile terminals are arranged on one side of the memory, a first communication chip is arranged in the middle of the six mobile terminals, a wireless communication chip is arranged on one side of the first communication chip, a central processing unit is arranged on the side of the first communication chip away from the memory, a control button is arranged on the top surface of the storage box away from the mobile terminals, a display is arranged between the mobile terminal and the control button, a control board is arranged at the bottom of the display, an air duct is arranged on the side of the inside of the storage box away from the mobile terminals, a fan is arranged inside the air duct, a dust sensor is arranged on the side of the inside of the air duct away from the fan, and four fixing bolts are arranged on one side of each of the fan and the dust sensor.
[0006] Preferably, six of the mobile terminals are plugged into the interior of the storage box in parallel in groups of three.
[0007] Preferably, the first battery communication chip, the wireless communication chip, and the central processor are all provided inside the storage box, and the battery, the first communication chip, the wireless communication chip, and the memory are all connected to the central processor through circuits.
[0008] Preferably, the control board is provided inside the storage box, and the control board is connected to the central processor through a circuit.
[0009] Preferably, the control button and the display on the top surface of the storage box are both connected to the control board through circuits.
[0010] Preferably, the air duct is linear, and the fan and the dust sensor are both fixed inside the air duct by four fixing bolts.
[0011] Preferably, the fan and the dust sensor are both connected to the central processor through circuits.
[0012] Advantageous Effects
[0013] In the present utility model, an air duct is provided inside the storage box, and both ends of the air duct penetrate the surface of the storage box. The fan and the dust sensor are both fixed inside the air duct by fixing bolts, and the dust sensor and the fan are both connected to the central processor through circuits. A control board is provided on the top of the air duct, and a display and a control button are provided on the top surface of the control board, and the display and the control button both penetrate the top surface of the storage box. The control board is connected to the central processor through a circuit. When in use, the fan and the dust sensor can be turned on through the control button on the top surface of the storage box. The fan will blow out the air in the air duct, making the air duct a negative pressure area, so that new air enters the interior of the air duct. Since the dust sensor is provided at the entrance of the air duct, when the fresh air enters the air duct, it will pass through the dust sensor and be detected by the dust sensor. When the dust sensor finishes detecting, it will transmit the detected information to the central processor through a circuit. The central processor receives the information, calculates and processes it into data, and transmits the data to the display through a circuit, and the processed result is displayed on the display, solving the problem of being unable to detect the quality of the air in the moving area. Description of the Drawings
[0014] Figure 1 Isometric view of the present utility model;
[0015] Figure 2 Partial top view of the present utility model;
[0016] Figure 3 For the present utility model Figure 2 Longitudinal sectional view;
[0017] Figure 4 Cross-sectional view of the present utility model Figure 2 in the horizontal direction;
[0018] Figure 5 Flow chart of the present utility model;
[0019] Figure 6 Circuit diagram of the present utility model.
[0020] Legend:
[0021] 1. Storage box; 2. Mobile terminal; 3. Control board; 4. Control button; 5. Memory; 6. First communication chip; 7. Central processing unit; 8. Wireless communication chip; 9. Display; 10. Dust sensor; 11. Air duct; 12. Fan; 13. Battery; 14. Fixing bolt. Detailed implementation manners
[0022] In order to make the technical means, creative features, achieved purposes and functions implemented by the present utility model easy to understand, the present utility model will be further described below in conjunction with specific embodiments and the accompanying drawings. However, the following embodiments are only the preferred embodiments of the present utility model and not all of them. Based on the embodiments in the implementation manners, other embodiments obtained by those skilled in the art without creative efforts all fall within the protection scope of the present utility model.
[0023] The specific embodiments of the present utility model will be described below in conjunction with the accompanying drawings. Specific Embodiment 1:
[0025] Refer to Figures 1-6, A wearable long-distance sports data collection device and storage device, including a storage box 1. Inside the storage box 1, there is a memory 5. At the bottom of the memory 5, there is a battery 13. On one side of the memory 5, there are six mobile terminals 2. In the middle of the six mobile terminals 2, there is a first communication chip 6. On one side of the first communication chip 6, there is a wireless communication chip 8. On the side of the first communication chip 6 away from the memory 5, there is a central processing unit 7. On the top surface of the storage box 1, on the side away from the mobile terminals 2, there is a control button 4. Between the mobile terminal 2 and the control button 4, there is a display 9. At the bottom of the display 9, there is a control board 3. Inside the storage box 1, on the side away from the mobile terminals 2, there is an air duct 11. Inside the air duct 11, there is a fan 12. On the side of the air duct 11 away from the fan 12, there is a dust sensor 10. On one side of both the fan 12 and the dust sensor 10, there are four fixing bolts 14. The six mobile terminals 2 are inserted into the inside of the storage box 1 in a parallel state with every three as a group. The battery 13, the first communication chip 6, the wireless communication chip 8, and the central processing unit 7 are all installed inside the storage box 1, and the battery 13, the first communication chip 6, the wireless communication chip 8, and the memory 5 are all electrically connected to the central processing unit 7. The control board 3 is installed inside the storage box 1, and the control board 3 is electrically connected to the central processing unit 7. The control button 4 and the display 9 on the top surface of the storage box 1 are both electrically connected to the control board 3. The air duct 11 is linear. The fan 12 and the dust sensor 10 are both fixed inside the air duct 11 through four fixing bolts 14. The fan 12 and the dust sensor 10 are both electrically connected to the central processing unit 7.
[0026] Inside the storage box 1, there is a battery 13 which powers the entire storage box 1. In the area near the right end inside the storage box 1, there is an air duct 11, and both ends of the air duct 11 penetrate the surface of the storage box 1. The air duct 11 is linear. The fan 12 and the dust sensor 10 are respectively fixed at the outlet and inlet of the air duct 11 by fixing bolts 14. And both the dust sensor 10 and the fan 12 are electrically connected to the central processor 7, and the central processor 7 is electrically connected to the battery 13. On the top of the air duct 11, there is a control board 3, and on the top surface of the control board 3, there are a display 9 and control buttons 4. The tops of the display 9 and the control buttons 4 penetrate the top surface of the storage box 1. The control board 3 is electrically connected to the central processor 7. When it is necessary to detect the air quality, the fan 12 and the dust sensor 10 can be turned on through the control buttons 4 on the top surface of the storage box 1. The control buttons 4 include a storage button, a stop button, a start / calibration button, a fan 12 button, and a dust sensor 10 button. When the fan 12 button and the dust sensor 10 button are pressed, the control board 3 will transmit the corresponding signals of the pressed fan 12 button and dust sensor 10 button to the central processor 7. The central processor 7 receives the electrical signals transmitted by the control board 3, performs calculation and processing, and transmits the corresponding electrical signals to the fan 12 and the dust sensor 10 according to the processed information, so that the fan 12 and the dust sensor 10 are powered on and started. The fan 12 will blow out the air in the air duct 11, making the air duct 11 a negative pressure area, so that new air enters the inside of the air duct 11. Since the dust sensor 10 is installed at the inlet of the air duct 11, when the fresh air enters the air duct 11, it will pass through the dust sensor 10 and be detected by the dust sensor 10. The dust sensor 10 has an infrared light-emitting diode (LED) inside. The emitter emits an infrared beam. There is also a receiver in the sensor, usually a photodiode, which is located opposite the emitter and is used to receive the infrared light scattered by the dust particles in the air. When the infrared beam encounters the dust particles in the ambient air, these particles will scatter the infrared light. The photodiode receives the light scattered by the dust and converts it into an electrical signal, which is transmitted to the central processor 7 through the circuit line. The central processor 7 performs signal processing, amplifies, filters, and digitizes the received electrical signal, and transmits the processed data to the control board 3 through the line. The control board 3 outputs these data to the display 9 according to the result after processing the received signal, and displays the concentration value of the dust particles through the display 9. The user can judge whether it is suitable to exercise according to the displayed concentration value.
[0027] When the detection is appropriate, the device can be started according to the control buttons 4 of the storage box 1. The control buttons 4 include a storage button, a stop button, a start / calibration button, a fan 12 button, and a dust sensor 10 button. On the side of the control board 3 away from the control buttons 4, there is also an indicator light group for displaying the usage information of the machine body. The indicator light group includes a wearable indicator light, two charging indicator lights, and a power indicator light. The indicator light group is electrically connected to the control board 3.
[0028] After the mobile terminal 2 is placed in the storage box 1, pressing the storage button can save the motion data in the mobile terminal 2 to the memory 5 of the storage box 1. After the saving is completed, the memory of the mobile terminal 2 is cleared to facilitate the next data collection. Pressing the stop button will cause the storage box 1 to stop receiving data from the mobile terminal 2 and also terminate the data upload function. Long-pressing the stop button for another three seconds will terminate the stop function, and the storage box 1 will continue to receive and upload data. When the storage box is in a non-working state, pressing the start / calibration button will cause the storage box 1 to start working. When the user wears the device, pressing the start / calibration button will initialize and calibrate the mobile terminal 2 to reduce the acquisition error. Long-pressing the start / calibration button for another three seconds will cause the storage box 1 to perform a shutdown operation.
[0029] After the mobile terminal 2 is taken out, the mobile terminal 2 is connected to the storage box 1 through the pre-set Sub-1G protocol. When the connection is successful, the corresponding wearable signal light stays on; when the mobile terminal 2 is disconnected due to certain factors, the corresponding signal light goes out. At this time, the user needs to be reminded to check the device and troubleshoot the reasons. When the storage box 1 is in the charging state, the charging indicator light flashes red alternately. When the charging is completed, the charging indicator light stays on red; when the storage box 1 is in use, if the power is greater than 40%, the power indicator light stays on red. If the power is greater than 10%, the power indicator light flashes red alternately. If the power is less than 10%, the power indicator light goes out.
[0030] In this embodiment, one storage box 1 can accommodate six mobile terminals 2. When the user uses it, different wearing forms can be freely combined. For example, wearing them on the head, abdomen, left and right wrists, and left and right ankles in sequence can achieve basic monitoring of the user's whole body movements; or three can be taken and worn on the left wrist, left elbow, and left shoulder in sequence to achieve detailed monitoring and description of the movements of the left arm. All six mobile terminals 2 are internally equipped with an IMU and a barometric sensor, which respectively collect the acceleration, gyroscope, magnetometer, and barometric data of the user's movement, and send the collected raw data to the first communication chip 6 inside the storage box 1 through the first communication chip 6 inside the mobile terminal 2.
[0031] After the user wears the device and conducts corresponding exercise training, the sensors in the mobile terminal 2 collect the corresponding original exercise data and save these data in the memory of the mobile terminal 2 to prevent data loss caused by disconnection, signal interference, etc.; at the same time, the data is sent to the first communication chip 6 inside the storage box 1 through the first communication chip 6 in the mobile terminal 2. After the storage box 1 receives the data, the central processor 7 calculates the data of different sensors to obtain the set of training action data, where the central processor 7 has previously written the processing logic for the corresponding actions; then the calculated results and / or the received exercise data are sent to the mobile terminal or the server through the wireless communication chip 8 for display or subsequent analysis; at the same time, the storage box 1 also saves the data in the memory 5 to prevent data loss in the case of no network.
[0032] In the above connection method between the mobile terminal or the server and the wireless communication chip 8 of the storage box 1, the mobile phone or PAD of the mobile terminal can connect to the storage box 1 through Bluetooth, and then scan the nearby WIFI. The user selects a WIFI and enters information such as the password, the IP address and port number of the server, and sends the information to the storage box 1. The storage box 1 stores and configures the wireless communication chip 8.
[0033] If you want to view the data in the background, you can configure information such as the WIFI, the IP address and port number of the server for the storage box 1 on the PAD at this time; if it has been configured before, this step can be omitted; at this time, the upload indicator light of the storage box 1 is on constantly, indicating that the data is being uploaded. After the upload indicator light goes out, it means that the upload is completed, and the uploaded data and detailed data changes can be viewed on the background server. In the data collection shown above in the embodiments of the present invention, the communication distance between the mobile terminal 2 and the storage box 1 is at least 200 meters. If the distance exceeds the range, the mobile terminal 2 will store the exercise data; when the mobile terminal 2 is put back into the storage box 1, the user presses the storage button, and the exercise data and calculation results will be stored in the memory 5 of the storage box 1 through UART. When connected to the server, the data and calculation results can be uploaded to the background. Specific Embodiment Two:
[0035] Refer to Figures 1-6, A wearable long-distance sports data collection device and storage device. Further, the user takes out three mobile terminals 2 from the storage box 1, and at the same time takes out the PAD and connects it to the storage box 1, and marks the positions where the mobile terminals 2 are worn. The PAD is pre-installed with an APP for configuring and displaying the information of the storage box 1. The user wears the mobile terminals 2 in sequence according to the marked positions. After wearing is completed, stand still for three seconds, and at the same time long-press the start / calibration button of the storage box 1 to calibrate the mobile terminals 2. The user starts to perform hurdle training. At this time, the storage box 1 receives the sports data, calculates the results of the corresponding wearing positions, and sends the results to the PAD for data display. After use, the mobile terminals 2 can be put back into the storage box 1.
[0036] In summary:
[0037] 1. There is an air duct 11 inside the storage box 1, and both ends of the air duct 11 penetrate the surface of the storage box 1. The fan 12 and the dust sensor 10 are both fixed inside the air duct 11 through fixing bolts 14, and the dust sensor 10 and the fan 12 are both circuit-connected to the central processor 7. There is a control board 3 on the top of the air duct 11, and a display 9 and control buttons 4 are arranged on the top surface of the control board 3, and both the display 9 and the control buttons 4 penetrate the top surface of the storage box 1. The control board 3 is circuit-connected to the central processor 7. When in use, the fan 12 and the dust sensor 10 can be turned on through the control buttons 4 on the top surface of the storage box 1. The fan 12 will blow out the air in the air duct 11, making the air duct 11 present a negative pressure area, so that new air enters the inside of the air duct 11. Since the dust sensor 10 is set at the entrance of the air duct 11, when the fresh air enters the air duct 11, it will pass through the dust sensor 10 and be detected by the dust sensor 10. When the dust sensor 10 finishes detecting, it will transmit the detected information to the central processor 7 through a line. The central processor 7 receives the information, calculates and processes it into data, and transmits the data to the display 9 through a line, and the processed result is displayed on the display 9, solving the problem of being unable to detect the quality of the air in the sports area.
[0038] In the present utility model, unless otherwise clearly specified and limited, the first feature being "above" or "below" the second feature may include direct contact between the first and second features, or may include the situation where the first and second features are not in direct contact but in contact through other features between them. Moreover, the first feature being "above", "over" and "on" the second feature includes the first feature being directly above and obliquely above the second feature, or merely indicating that the first feature has a higher horizontal height than the second feature. The first feature being "below", "under" and "beneath" the second feature includes the first feature being directly below and obliquely below the second feature, or merely indicating that the first feature has a lower horizontal height than the second feature.
[0039] The above has shown and described the basic principles, main features and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. The above embodiments and the descriptions in the specification are only preferred examples of the present utility model and are not used to limit the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.
Claims
1. A wearable long-distance sports data collection device and a storage device, including a storage box (1), characterized in that: Inside the storage box (1), there is a memory (5). At the bottom of the memory (5), there is a battery (13). On one side of the memory (5), there are six mobile terminals (2). In the middle of the six mobile terminals (2), there is a first communication chip (6). On one side of the first communication chip (6), there is a wireless communication chip (8). On the side of the first communication chip (6) away from the memory (5), there is a central processing unit (7). On the top surface of the storage box (1), on the side away from the mobile terminals (2), there is a control button (4). Between the mobile terminal (2) and the control button (4), there is a display (9). At the bottom of the display (9), there is a control board (3). Inside the storage box (1), on the side away from the mobile terminals (2), there is an air duct (11). Inside the air duct (11), there is a fan (12). On the side of the air duct (11) away from the fan (12) inside, there is a dust sensor (10). On one side of both the fan (12) and the dust sensor (10), there are four fixing bolts (14).
2. The wearable long-distance motion data acquisition device and storage device according to claim 1, characterized in that: The six mobile terminals (2) are inserted inside the storage box (1) in a parallel state, with every three as a group.
3. The wearable long-distance motion data acquisition device and storage device according to claim 1, characterized in that: The battery (13), the first communication chip (6), the wireless communication chip (8) and the central processing unit (7) are all located inside the storage box (1), and the battery (13), the first communication chip (6), the wireless communication chip (8) and the memory (5) are all electrically connected to the central processing unit (7).
4. The wearable long-distance motion data acquisition device and storage device according to claim 1, characterized in that: The control board (3) is located inside the storage box (1), and the control board (3) is electrically connected to the central processing unit (7).
5. The wearable long-distance motion data acquisition device and storage device according to claim 1, characterized in that: The control button (4) and the display (9) on the top surface of the storage box (1) are both electrically connected to the control board (3).
6. The wearable long-distance motion data acquisition device and storage device according to claim 1, wherein: The air duct (11) is linear, and both the fan (12) and the dust sensor (10) are fixed inside the air duct (11) by four fixing bolts (14).
7. The wearable long-distance motion data acquisition device and storage device according to claim 1, characterized in that: Both the fan (12) and the dust sensor (10) are electrically connected to the central processing unit (7).
Citation Information
Patent Citations
Computer data acquisition device
CN106484051A