Fascia gun
By setting data tags on the massage head of the fascia gun and using a reader to automatically adjust the massage parameters, the problem of traditional fascia guns requiring manual adjustment of power and mode is solved, achieving an automated massage effect, improving user experience and product competitiveness.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-27
- Publication Date
- 2026-03-13
AI Technical Summary
Traditional fascia guns require manual adjustment of power and mode after changing the massage head, which is cumbersome and makes it difficult to achieve the best massage effect, resulting in a poor user experience.
Data tags are set on the massage head, and the reader on the device automatically identifies the head type and applicable body parts. The controller then automatically adjusts the motion parameters of the massage head, such as vibration frequency and intensity, based on this information.
The system enables automated parameter adjustment of the massage headgear, simplifies the user operation process, improves ease of use and comfort, enhances the level of intelligence, and ensures the best massage effect.
Smart Images

Figure CN223988006U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of massage equipment, and in particular to a fascia gun. Background Technology
[0002] A fascia gun is a convenient tool for muscle relaxation and massage, widely used by athletes, fitness enthusiasts, and users who need to relieve muscle fatigue daily. Its main function is to relieve muscle tension, reduce soreness, and promote blood circulation through high-frequency vibration or impact.
[0003] Traditional fascia guns can be equipped with multiple different types of massage heads to meet different usage scenarios and needs, and each massage head can be applied to different body parts.
[0004] However, when users change the massage head, they often need to manually adjust the device's power and mode to suit the different muscle groups' massage intensity requirements. The entire operation is cumbersome, and manually adjusting the device's power and mode makes it difficult to achieve the best massage effect, resulting in a poor user experience with the fascia gun. Utility Model Content
[0005] The purpose of this invention is to solve the technical problems of cumbersome operation and poor user experience of traditional fascia guns.
[0006] To address the aforementioned technical problems, this application provides a fascia gun, comprising: a body with a controller internally; a massage head detachably connected to the body; the body can drive the massage head to move for massaging the human body; a data tag disposed on the massage head, the data tag carrying data information on the type of the massage head and / or the applicable massage area; and a reader disposed on the body, the reader being electrically connected to the controller; when the massage head is connected to the body, the reader can automatically identify the data information carried on the data tag and transmit the data information to the controller, the controller controlling the movement parameters of the massage head based on the data information.
[0007] In some embodiments of this application, the data tag is an NFC storage module, and the reader is an NFC read / write module; when the massage head is connected to the device body, the data tag is communicatively connected to the reader.
[0008] In some embodiments of this application, the device body includes a main body and a tapping head; one end of the tapping head is detachably connected to the main body, and the controller can control the reciprocating motion of the tapping head; the other end of the tapping head extends out of the main body and is connected to the massage head cover; the identifier is disposed on the tapping head.
[0009] In some embodiments of this application, the tapping head includes a connecting portion and a tapping portion, the diameter of the tapping portion being larger than the diameter of the connecting portion; the connecting portion is used for detachable connection with the main body, the tapping portion is located outside the main body and is used for connection with the massage head cover; the tapping portion has a receiving chamber inside, and the identifier is fixed inside the receiving chamber.
[0010] In some embodiments of this application, the massage head cover is a flexible component; the side of the massage head cover facing the tapping head has a mounting cavity, the shape of which matches the shape of the tapping part, so that the tapping part can be embedded in the mounting cavity to connect the massage head cover to the tapping head; different types of massage head covers have different curvatures on the side facing away from the tapping head.
[0011] In some embodiments of this application, the main body includes a housing, a drive assembly, and a transmission assembly; the drive assembly is disposed inside the housing and is used to provide driving force; one end of the transmission assembly is connected to the drive assembly, and the other end is connected to the striking head, so that the drive assembly can drive the transmission assembly to move, thereby causing the striking head connected to the transmission assembly to reciprocate.
[0012] In some embodiments of this application, the outer casing is provided with a first cavity extending longitudinally and a second cavity extending laterally. The first cavity is in communication with the second cavity. The second cavity has an opening at one end away from the first cavity, and the opening connects the second cavity to the outside. The striking head is connected to the opening of the second cavity and is capable of reciprocating along the axial direction of the second cavity.
[0013] In some embodiments of this application, the drive assembly includes a power supply and a drive motor, the power supply and the drive motor being respectively disposed at both ends of the first cavity of the housing; the controller is electrically connected to the drive motor and the power supply respectively, enabling the controller to control the output parameters of the drive motor.
[0014] In some embodiments of this application, the transmission assembly includes an eccentric wheel, a connecting rod, and a piston. The eccentric wheel is fixed to the power output end of the drive motor. One end of the connecting rod is connected to the eccentric wheel, and the other end of the connecting rod extends along the axial direction of the second cavity toward the opening of the second cavity. The piston is movably disposed within the second cavity and is connected to the end of the connecting rod away from the eccentric wheel. This allows the drive motor to drive the eccentric wheel to rotate, thereby causing the piston on the connecting rod to reciprocate along the axis of the second cavity.
[0015] In some embodiments of this application, the controller includes an electronic control board, control buttons, and indicator lights. The electronic control board is disposed on the side of the first cavity near the power source, and the control buttons and indicator lights are disposed on the electronic control board and electrically connected to the electronic control board.
[0016] As can be seen from the above technical solution, the beneficial effects of this utility model are as follows:
[0017] This application provides a fascia gun, comprising a main body and a massage head detachably connected to the main body. By setting a data tag on the massage head and using a reader on the main body to automatically identify the type of massage head and the applicable body part, it can achieve automated adjustment of motion parameters. Compared with traditional fascia guns that require manual adjustment of power and mode, this application allows the controller to intelligently adjust the motion parameters output by the massage head, such as vibration frequency and intensity, according to the specific needs of different massage head types and body parts, thereby ensuring optimal massage effects. This greatly simplifies the user operation process, improves ease of use and comfort, enhances the level of intelligence, and strengthens the product's market competitiveness. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the connection structure between the body of the fascia gun and the massage head in some embodiments.
[0019] Figure 2 for Figure 1 A cross-sectional view of the connection between the body of the fascia gun and the massage head.
[0020] Figure 3 A schematic diagram showing the dissected structure of the massage head, tapping head, and main body of a fascia gun.
[0021] Figure 4 This is a half-section diagram of the body of a device containing multiple massage heads and a fascia gun.
[0022] Figure 5 This is another exploded structural diagram of a fascia gun.
[0023] The annotations in the attached figures are explained as follows:
[0024] 100. Fascia gun; 10. Body; 11. Main body; 111. Outer shell; 1111. First half shell; 1112. Second half shell; 1113. Ring cover; 1114. Ring cover mating part; 112. Power supply; 113. Drive motor; 114. Eccentric wheel; 115. Connecting rod; 116. Piston; 117. Sleeve; 12. Striking head; 121. Striking part; 1211. Striking disc; 1212. Striking disc surface; 1213. Reception chamber; 1214. Card plate; 122. Connecting part; 13. Controller; 131. Electrical control board; 132. Control button; 133. Indicator light; 20. Massage head cover; 21. Mounting cavity; 30. Data tag; 40. Recognizer; 41. Mounting plate; 411. Card slot. Detailed Implementation
[0025] Typical embodiments embodying the features and advantages of this utility model will be described in detail in the following description. It should be understood that this utility model can have various variations in different embodiments, all of which do not depart from the scope of this utility model, and the descriptions and illustrations therein are for illustrative purposes only and not intended to limit this utility model.
[0026] In the description of this application, it should be understood that, in the embodiments shown in the accompanying drawings, the indications of direction or positional relationships (such as up, down, left, right, front, and back, etc.) are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. These descriptions are appropriate when these elements are in the positions shown in the accompanying drawings. If the description of the positions of these elements changes, these directional indications also change accordingly.
[0027] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the stated features. In the description of this application, "a plurality of" means two or more, unless otherwise explicitly specified.
[0028] Existing fascia guns require manual adjustment of power and mode to suit the massage intensity needs of different muscle groups. This cumbersome process, coupled with the difficulty for users to achieve optimal massage results through manual power and mode adjustments, leads to a poor user experience.
[0029] Please see Figures 1 to 5 This embodiment provides a fascia gun 100, which includes a body 10, a massage head cover 20, a data tag 30, and a reader 40.
[0030] The main body 10 houses a controller 13. A massage head cover 20 is detachably connected to the main body 10, and the main body 10 drives the massage head cover 20 to move and massage the human body. A data tag 30 is affixed to the massage head cover 20, carrying data information about the type of massage head cover 20 and / or the applicable massage area. A reader 40 is located on the main body 10 and is electrically connected to the controller 13. When the massage head cover 20 is connected to the main body 10, the reader 40 automatically recognizes the data information carried by the data tag 30 and transmits the data information to the controller 13. The controller 13 then controls the mode of output from the main body 10 to the massage head cover 20 based on the data information, thereby changing the motion parameters of the massage head cover 20.
[0031] Each type of massage head 20 is equipped with a data tag 30. The data tag 30 can be located inside the massage head 20 or on the outer surface of the massage head 20 facing the main body 10. The data tag 30 can carry data information about the massage head 20, such as the type of massage head 20, the applicable massage areas, recommended exercise modes, and power, etc.
[0032] The identifier 40 is mounted on the body 10 and is electrically connected to the controller 13. When the massage head cover 20 is detachably connected to the body 10, the identifier 40 can automatically read the information on the data tag 30 and transmit the data information to the controller 13.
[0033] The controller 13 automatically adjusts its operating parameters, such as vibration frequency, impact intensity, and massage mode, based on data received from the recognizer 40. This ensures optimal massage performance that matches the connected massage head 20. For example, when connected to a massage head 20 suitable for the shoulders, the controller 13 may automatically select a stronger vibration frequency and a deep massage mode; while when connected to a massage head 20 suitable for the neck, the controller 13 may select a gentler massage intensity. The controller 13 can flexibly adjust the output power and mode according to the different types of massage heads 20 and the needs of the applicable body parts, ensuring a more precise and personalized massage experience for the user. This greatly simplifies the user's operation process, improves ease of use and comfort, enhances the level of intelligence, and strengthens the product's market competitiveness.
[0034] Please see Figure 2 and Figure 3 In some embodiments, the data tag 30 is an NFC storage module, and the reader 40 is an NFC read / write module. When the massage head cover 20 is connected to the body 10, the data tag 30 and the reader 40 are in communication connection.
[0035] Specifically, the data tag 30 and the reader 40 employ NFC (Near Field Communication) technology, which supports rapid data transmission. This allows for very fast communication between the NFC data tag 30 on the massage head 20 and the NFC reader 40 on the body 10 of the fascia gun 100, without the need for pairing. Data exchange is typically completed within milliseconds. When the massage head 20 is connected to the body 10, data information such as the type of massage head 20 and the applicable body part on the data tag 30 can be quickly read.
[0036] In other embodiments, the data tag 30 and the reader 40 may communicate wirelessly using other methods. For example, the data tag 30 and the reader 40 may be connected via Bluetooth, or connected via a magnetic component to a Hall effect chip. Alternatively, in other embodiments, the data tag 30 may be configured as a QR code / barcode, and the reader 40 as a scanner. When the massage head cover 20 is installed on the body 10, the reader 40 can scan the data tag 30 and identify the data information of the massage head cover 20, thereby adjusting the massage parameters.
[0037] Please see Figure 3 In some embodiments, the device body 10 includes a main body 11 and a tapping head 12. One end of the tapping head 12 is detachably connected to the main body 11, and the other end of the tapping head 12 extends out of the main body 11. A massage head cover 20 is detachably connected to the end of the tapping head 12 that extends out of the main body 11. A recognizer 40 is disposed on the tapping head 12, and a controller 13 can control the tapping head 12 to reciprocate, thereby driving the massage head cover 20 connected to the tapping head 12 to reciprocate.
[0038] Specifically, the body 10 may include a main body 11 and a tapping head 12 connected to the main body 11. The main body 11 is used to drive the tapping head 12 to reciprocate. One end of the tapping head 12 can be connected to the main body 11 by means of threads, snaps, or magnetic connection, ensuring stability and firmness during use. The other end of the tapping head 12 extends out of the body 10 for connecting to different types of massage head covers 20. A reader 40 is set on the tapping head 12, which can be on the inside or outside of the tapping head 12. When the massage head cover 20 is connected to the tapping head 12, the reader 40 can be aligned with the data tag 30 inside the massage head cover 20, making it easier for the reader 40 to fit tightly with the data tag 30 on the massage head cover 20, thereby improving recognition efficiency.
[0039] Please see Figure 3 and Figure 5In some embodiments, the tapping head 12 includes a connecting portion 122 and a tapping portion 121, the diameter of the tapping head 12 being larger than the diameter of the connecting portion 122. The connecting portion 122 is used for detachable connection with the main body 11. The tapping portion 121 is located outside the main body 11 and is used for connection with the massage head cover 20. A receiving chamber 1213 is provided inside the tapping portion 121, and the identifier 40 is fixed inside the receiving chamber 1213.
[0040] The connecting part 122 is the part that connects the tapping head 12 to the main body 11 of the body 10, and it is a rod-shaped structure. The outer surface of the connecting part 122 is threaded, allowing it to be connected and fixed to the main body 11 of the body 10 via the threads. The tapping part 121 is located outside the main body 11 of the body 10 and is the part that connects to the massage head cover 20. The tapping part 121 is disc-shaped, and in some usage scenarios, it can be used directly to massage the user's body parts. The tapping part 121 has a receiving chamber 1213 inside to house the identifier 40, protecting it from external impacts and damage. Placing the identifier 40 within the receiving chamber 1213 of the tapping part 121 not only brings it closer to the data tag 30 but also ensures that the identifier 40 maintains a stable position during prolonged use and avoids functional failure due to external pressure.
[0041] Please see Figure 5 In some embodiments, the striking part 121 includes a striking disc body 1211 and a striking disc surface 1212. The striking disc body 1211 has a receiving chamber 1213 with one end open, and a plurality of spaced-apart retaining plates 1214 are disposed inside. The identifier 40 is disposed on a mounting plate 41, and the mounting plate 41 has a retaining groove 411 corresponding to the retaining plate 1214.
[0042] When the card plate 1214 aligns with the slot 411 on the mounting plate 41, the mounting plate 41 is positioned within the receiving chamber 1213 of the striking part 121, and can be fixed to the striking disc body 1211 with screws. Finally, the metal striking disc surface 1212 is engaged with the striking disc body 1211, so that the striking disc surface 1212 seals the receiving chamber 1213, thus realizing the installation of the identifier 40 and the striking head 12.
[0043] Please see Figure 2 and Figure 3 In some embodiments, the massage head cover 20 is a flexible component. The massage head cover 20 has a mounting cavity 21 on the side facing the tapping head 12. The shape of the mounting cavity 21 matches the shape of the tapping part 121, allowing the tapping part 121 to be embedded within the mounting cavity 21, thus connecting the massage head cover 20 to the tapping head 12. Furthermore, different types of massage head covers 20 have different curvatures on the side facing away from the tapping head 12.
[0044] Specifically, the massage head cover 20 can be made of soft materials such as silicone or rubber to provide good flexibility and elasticity. The flexible design of the massage head cover 20 allows it to closely conform to the skin and provide a comfortable massage effect during use. A mounting cavity 21 is provided on the side of the massage head cover 20 facing the tapping head 12. The shape of the mounting cavity 21 is highly matched to the shape of the tapping part 121 to ensure that the tapping part 121 can be securely embedded in the mounting cavity 21 of the massage head cover 20, thereby achieving a tight connection between the two and preventing loosening or detachment during use.
[0045] Different types of massage headbands 20 have different curvatures on the side opposite to the tapping head 12, allowing them to adapt to the massage needs of different areas. For example, a massage headband 20 for the shoulders may be designed with a larger curvature to cover a wider area, while a massage headband 20 for the neck may be designed with a smaller curvature to provide more precise massage points. The curvature of each massage headband 20 can be adjusted according to the needs of the massage area to ensure that muscles and tissues in different areas can be effectively relaxed, providing a personalized massage experience. Furthermore, the different curvatures of the massage headbands 20, combined with the properties of flexible materials, allow them to better adapt to the curves of the human body when pressure is applied, reducing discomfort and improving the massage effect.
[0046] Please see Figure 4 and Figure 5 In some embodiments, the main body 11 includes a housing 111, a drive assembly, and a transmission assembly. The drive assembly is disposed within the housing 111 and provides driving force. One end of the transmission assembly is connected to the drive assembly, and the other end is connected to the striking head 12 to transmit the mechanical power generated by the drive assembly to the striking head 12 and convert it into reciprocating motion. This enables the drive assembly to drive the transmission assembly, thereby causing the striking head 12 connected to the transmission assembly to reciprocate.
[0047] Please see Figure 5 In some embodiments, the housing 111 has a first cavity extending longitudinally and a second cavity extending laterally. The first cavity is in communication with the second cavity, and the end of the second cavity away from the first cavity has an opening that connects the second cavity to the outside. The striking head 12 is connected to the opening of the second cavity and is capable of reciprocating along the axial direction of the second cavity.
[0048] Specifically, the outer casing 111 includes a first half-shell 1111 and a second half-shell 1112, which are connected to each other to enclose a first cavity extending in a vertical direction and a second cavity extending in a horizontal direction. The first cavity can be used to house a drive assembly, and the second cavity can be used to house a transmission assembly.
[0049] Please see Figure 5In some embodiments, the outer casing 111 further includes a ring cover 1113. Both the first half-shell 1111 and the second half-shell 1112 are provided with ring cover mating portions 1114 that connect to the ring cover 1113. The ring cover mating portions 1114 are located at the opening of the second cavity. The ring cover 1113 can connect to the ring cover mating portions 1114 on the first half-shell 1111 and the second half-shell 1112, thereby reducing the aperture of the opening of the second cavity.
[0050] Please see Figure 5 In some embodiments, the drive assembly includes a power supply 112 and a drive motor 113. The power supply 112 and the drive motor 113 are respectively disposed at both ends of the first cavity of the housing 111. The controller 13 is electrically connected to the drive motor 113 and the power supply 112 respectively, enabling the controller 13 to control the output parameters of the drive motor 113.
[0051] The drive assembly is one of the core components of the fascia gun 100, primarily responsible for providing driving force to propel the tapping head 12 in reciprocating motion. The power supply 112 of the drive assembly is the energy supply unit for the fascia gun 100, typically consisting of a rechargeable lithium battery. The power supply 112 is installed at the end of the housing 111 used for gripping and provides the necessary electrical energy to the drive motor 113 via a circuit connection.
[0052] The drive motor 113 is the power source of the fascia gun 100, responsible for converting electrical energy into mechanical motion. The drive motor 113 is mounted on the other end of the housing 111 away from the power supply 112. The power output end of the drive motor 113 is arranged opposite to and spaced apart from the power supply 112, allowing the transmission components to connect to the output end of the drive motor 113. The drive motor 113 can be a servo motor, which can change its output parameters such as speed or torque after receiving a signal.
[0053] The controller 13 is an intelligent module responsible for coordinating the operation between the power supply 112 and the drive motor 113. Through its electrical connection with the power supply 112 and the drive motor 113, it controls the output voltage and current of the power supply 112, and adjusts the output of the drive motor 113 according to preset massage modes, intensity and frequency parameters, thereby changing the motion output of the massage head cover 20.
[0054] Please see Figure 4 and Figure 5 In some embodiments, the controller 13 includes an electronic control board 131, control buttons 132, and indicator lights 133. The electronic control board 131 is disposed on the side of the first cavity near the power supply 112, and the control buttons 132 and indicator lights 133 are disposed on the electronic control board 131 and electrically connected to the electronic control board 131.
[0055] The control board 131 can be a printed circuit board, which can receive and process the data information transmitted by the identifier 40, and adjust the operating parameters of the drive motor 113 according to the data information.
[0056] Control buttons 132 are mounted on the electronic control board 131 and extend beyond the outer casing 111 of the body 10. Control buttons 132 may include, for example, a power button, a mode selection button, and an intensity adjustment button. The function of each control button 132 is controlled by the electronic control board 131, and the signal is transmitted to the control module of the electronic control board 131 for analysis and processing. Each triggering of a control button 132 generates a signal, and the electronic control board 131 executes a corresponding action based on this signal. For example, when the user presses the "increase intensity" button, the electronic control board 131 sends a command to adjust the output torque of the drive motor 113, thereby changing the vibration intensity of the striking head 12. This allows the fascia gun 100 to be adjusted automatically as well as manually, to meet the different needs of different users.
[0057] Indicator light 133 can be used to display the current working status and some operation feedback of the fascia gun 100, so as to help users understand the operation status of the fascia gun 100 in real time. Indicator light 133 is usually an LED light with different colors and flashing patterns to indicate different states, such as charging status, working status, error status, etc.
[0058] For example, when the fascia gun 100 is charging, indicator light 133 may display red; when the device is fully charged and ready for use, indicator light 133 may turn green. While the fascia gun 100 is running, indicator light 133 may flash or remain constantly lit. Different output modes may also display different colors on indicator light 133, etc., for user observation.
[0059] Please see Figure 4 and Figure 5 In some embodiments, the transmission assembly includes an eccentric wheel 114, a connecting rod 115, and a piston 116. The eccentric wheel 114 is fixed to the power output end of the drive motor 113. One end of the connecting rod 115 is connected to the eccentric wheel 114, and the other end of the connecting rod 115 extends along the axial direction of the second cavity toward the opening of the second cavity. The piston 116 is movably disposed within the second cavity and is connected to the end of the connecting rod 115 away from the eccentric wheel 114. This allows the drive motor 113 to drive the eccentric wheel 114 to rotate, thereby driving the piston 116 on the connecting rod 115 to reciprocate along the axis of the second cavity.
[0060] Specifically, the eccentric wheel 114 is fixed to the power output end of the drive motor 113 and can generate an eccentric force to convert the rotational motion of the drive motor 113 into an eccentric rotational motion. One end of the connecting rod 115 is connected to the eccentric wheel 114, converting the eccentric rotation of the eccentric wheel 114 into linear motion, and transmitting the motion to the piston 116 at the other end of the connecting rod 115, so that the piston 116 can reciprocate along the axis of the second cavity.
[0061] Furthermore, the connecting part 122 of the tapping head 12 is threadedly connected to the piston 116, so that when the piston 116 reciprocates along the axis of the second cavity, it can drive the tapping head 12 to reciprocate along the axis of the second cavity, thereby driving the massage head cover 20 on the tapping head 12 to reciprocate, so as to provide the user with a precise and comfortable massage experience.
[0062] When the drive motor 113 starts, the power output end of the drive motor 113 drives the eccentric wheel 114 to rotate. The eccentric force generated by the rotation of the eccentric wheel 114 is transmitted to the piston 116 through the connecting rod 115, causing the piston 116 to reciprocate along the axial direction in the second cavity, thereby pushing the tapping head 12 connected to the piston 116 to reciprocate, so as to realize the movement of the massage head cover 20 connected to the tapping head 12.
[0063] It is conceivable that in some other embodiments, the massage head 20 can also be detachably connected to the piston 116 to achieve reciprocating motion.
[0064] Please see Figure 4 and Figure 5 In some embodiments, a sleeve 117 is provided inside the outer casing 111. The sleeve 117 extends along the axial direction of the second cavity and is fixed inside the second cavity of the outer casing 111. The piston 116 is disposed inside the sleeve 117 and is capable of sliding along the inner sidewall of the sleeve 117.
[0065] Sleeve 117 guides and supports the sliding of piston 116, ensuring that piston 116 can slide smoothly and steadily within sleeve 117, while avoiding instability or increased resistance caused by excessive friction or inaccurate guidance. Sleeve 117 can be made of materials with low friction coefficients and high wear resistance, such as aluminum alloy or special plastics, to reduce wear during piston 116 sliding and extend the service life of housing 111.
[0066] In summary, this embodiment provides a fascia gun 100, which includes a body 10 and a massage head cover 20 detachably connected to the body 10. By setting a data tag 30 on the massage head cover 20 and automatically identifying the type and applicable area of the massage head cover 20 through the identifier 40 on the body 10, automated adjustment of motion parameters can be achieved. Compared with the fascia gun 100 of the traditional technology that requires manual adjustment of power and mode, this application allows the controller 13 to intelligently adjust the motion parameters output by the massage head cover 20, such as vibration frequency and intensity, according to the specific needs of different massage head cover types and areas, thereby ensuring the best massage effect. This greatly simplifies the user operation process, improves the convenience and comfort of use, enhances the level of intelligence, and strengthens the market competitiveness of the product.
[0067] Although the present invention has been described with reference to several typical embodiments, it should be understood that the terminology used is descriptive and exemplary, and not restrictive. Since the present invention can be embodied in many forms without departing from the spirit or essence of the invention, it should be understood that the above embodiments are not limited to any of the foregoing details, but should be interpreted broadly within the spirit and scope defined by the appended claims. Therefore, all variations and modifications falling within the scope of the claims or their equivalents should be covered by the appended claims.
Claims
1. A fascia gun, characterized in that, The utility model relates to a massage machine, including: Machine body, which is internally provided with a controller; Massage head cover, which is detachably connected to the machine body; The machine body can drive the massage head cover to move to massage the human body; Data tag, which is provided on the massage head cover, carries data information of the type of the massage head cover and / or the applicable massage part; Identifier, which is provided on the machine body, is electrically connected to the controller; When the massage head cover is connected to the machine body, the identifier can automatically identify the data information carried by the data tag and transmit the data information to the controller, and the controller controls the motion parameters of the massage head cover according to the data information.
2. The fascia gun of claim 1, wherein, The data tag is an NFC storage module, and the identifier is an NFC read-write module; when the massage head cover is connected to the machine body, the data tag is communicatively connected to the identifier.
3. The fascia gun of claim 1, wherein, The machine body includes a main body and a knocking head; one end of the knocking head is detachably connected to the main body, and the controller can control the reciprocating motion of the knocking head; the other end of the knocking head extends out of the main body and is connected to the massage head cover; and the identifier is provided on the knocking head.
4. The fascia gun of claim 3, wherein, The knocking head includes a connecting portion and a knocking portion, and the diameter of the knocking portion is greater than that of the connecting portion; the connecting portion is used for detachable connection with the main body, the knocking portion is located outside the main body and is used for connection with the massage head cover; and the knocking portion is internally provided with a containing chamber, and the identifier is fixed in the containing chamber.
5. The fascia gun of claim 4, wherein, The massage head cover is a flexible member; one side of the massage head cover facing the knocking head is provided with a mounting cavity, the shape of the mounting cavity matches that of the knocking portion, so that the knocking portion can be embedded in the mounting cavity to connect the massage head cover with the knocking head; and different types of the massage head cover have different curvatures on the side away from the knocking head.
6. The fascia gun of claim 3, wherein, The main body includes a housing, a driving assembly and a transmission assembly; the driving assembly is provided in the housing and is used for providing driving force; one end of the transmission assembly is connected to the driving assembly, and the other end is connected to the knocking head, so that the driving assembly can drive the transmission assembly to move, and in turn drive the knocking head connected to the transmission assembly to reciprocate.
7. The fascia gun of claim 6, wherein, The housing is internally provided with a first cavity extending in the longitudinal direction and a second cavity extending in the transverse direction; the first cavity communicates with the second cavity; one end of the second cavity away from the first cavity is provided with an opening, and the opening communicates the second cavity with the outside; and the knocking head is connected to the opening of the second cavity and can reciprocate along the axial direction of the second cavity.
8. The fascia gun of claim 7, wherein, The driving assembly includes a power supply and a driving motor, and the power supply and the driving motor are respectively provided at two ends of the first cavity of the housing; The controller is electrically connected to the driving motor and the power supply, so that the controller can control the output parameters of the driving motor.
9. The fascia gun of claim 8, wherein, The transmission assembly comprises an eccentric wheel, a connecting rod and a piston, the eccentric wheel is fixed on the power output end of the driving motor; one end of the connecting rod is connected with the eccentric wheel, the other end of the connecting rod extends along the axis direction of the second cavity towards the opening of the second cavity; The piston is movably arranged in the second cavity and connected with the other end of the connecting rod away from the eccentric wheel; so that the driving motor can drive the eccentric wheel to rotate, and in turn drive the piston on the connecting rod to do reciprocating motion along the axis of the second cavity.
10. The fascia gun of claim 8, wherein, The controller comprises an electric control board, control buttons and indicator lights, the electric control board is arranged on the side of the first cavity close to the power supply, the control buttons and the indicator lights are arranged on the electric control board and electrically connected with the electric control board.