Treatment handle and treatment instrument

By integrating motion detection and signal processing modules into the treatment handpiece and using a prompting component to provide feedback on movement speed, the problem of users having difficulty controlling the movement speed of the treatment handpiece is solved, thereby improving the safety and effectiveness of treatment.

CN223582559UActive Publication Date: 2025-11-21HUNAN PENINSULA MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202423053068.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-11-21
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

Existing treatment handpieces cannot provide real-time feedback on movement speed, making it difficult for users to accurately control the movement speed of the treatment handpiece, affecting treatment effectiveness and potentially posing risks to skin health.

Method used

The treatment handpiece integrates a motion detection device, a prompting component, and a signal processing module. The motion detection device collects the movement speed, and the signal processing module controls the prompting component to emit sound, vibration, or light signals according to the preset speed range to guide the user to adjust the movement speed.

Benefits of technology

It enables users to monitor and adjust the speed of the treatment handpiece movement in real time, ensuring uniform energy distribution and improving treatment safety and effectiveness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a treatment handle and a treatment instrument, and relates to the technical field of medical instruments, and the treatment handle comprises a handle main body, a motion detection member, a prompt assembly and a signal processing module; one end of the handle main body is a treatment end; the motion detection piece is installed on the handle body and used for detecting the moving speed of the handle body. The prompting assembly is installed on the handle body and comprises at least one prompting piece, and the prompting piece sends out a prompting signal. The signal processing module is installed on the handle body and is in communication connection with the motion detection piece and the prompting assembly, and a plurality of speed intervals are preset in the signal processing module; wherein the signal processing module receives the movement speed of the handle main body collected by the movement detection piece, and controls the corresponding prompt piece to send out different prompt signals according to the speed interval where the movement speed is located. A user can determine whether the moving speed needs to be increased or decreased according to the prompt signal, and the user can control the moving speed of the treatment handle conveniently.
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Description

TECHNICAL FIELD

[0001] The utility model relates to medical instrument technical field, especially a kind of treatment handle and therapeutic instrument. BACKGROUND

[0002] Medical cosmetology treatment handle includes ultrasonic treatment handle, radio frequency treatment handle and light therapy handle etc., when using treatment handle to treat skin, treatment handle needs to be attached with skin, energy generation unit inside treatment handle emits ultrasonic wave, radio frequency energy or light wave, and focus energy in target area, to treat. When a target area is treated, treatment handle needs to be moved to next target area, that is, in the whole treatment process, user controls treatment handle to move on skin surface, to facilitate skin surface different positions are treated in turn.

[0003] The moving speed of treatment handle can affect the uniformity of energy, for example, when treatment handle moves too slowly, energy can be accumulated in skin, and cause skin temperature to be too high, thereby producing pain even bringing safety risk;When treatment handle moves too fast, less energy is gathered in treatment area, and expected treatment effect cannot be achieved.

[0004] Existing treatment handle cannot feedback moving speed to user in time, so that user lacks intuitive feeling when using treatment handle to treat when moving treatment handle, cannot accurately control the moving speed of treatment handle, and it is difficult to ensure that the moving speed of treatment handle is in proper range. This not only affects treatment effect, but also causes potential risk to user's skin health. SUMMARY

[0005] The main purpose of the utility model is to provide a kind of treatment handle and therapeutic instrument, to solve the problem that user cannot accurately know the moving speed of treatment handle when using treatment handle to treat.

[0006] To achieve the above-mentioned purpose, the treatment handle provided by the utility model comprises:

[0007] Handle main body, one end of the handle main body is treatment end;

[0008] Motion detection piece, the motion detection piece is installed on the handle main body, and the motion detection piece is used to detect the moving speed of the handle main body;

[0009] Prompt component, the prompt component is installed on the handle main body, and the prompt component comprises at least one prompt piece, and the prompt piece is used to issue prompt signal;And

[0010] A signal processing module is installed on the handle body and in communication connection with the motion detection member and the prompting component, and the signal processing module is pre-stored with a plurality of speed intervals;

[0011] The signal processing module receives the moving speed of the handle body collected by the motion detection member, and controls the prompting member to emit different prompt signals according to the speed interval in which the moving speed is located.

[0012] In an embodiment of the present application, the prompting member is a loudspeaker, and each loudspeaker is arranged at intervals along the circumference of the handle body.

[0013] In an embodiment of the present application, the moving speed of the handle body 10 is positively correlated with the sound frequency emitted by the loudspeaker.

[0014] In an embodiment of the present application, a plurality of accommodating grooves are formed on the outer periphery of the treatment handle, and each loudspeaker is embedded in one accommodating groove.

[0015] In an embodiment of the present application, the prompting member is a vibrator, the other end of the handle body is a holding end, an accommodating cavity is formed in the holding end, and each vibrator is arranged in the accommodating cavity.

[0016] In an embodiment of the present application, the motion detection member at least includes one of a displacement sensor, an acceleration sensor and a contact sensor.

[0017] In an embodiment of the present application, an installation groove is formed on the end face of the treatment end, and the motion detection member is arranged in the installation groove.

[0018] In an embodiment of the present application, the treatment handle further includes a temperature detection member, the temperature detection member is arranged in the installation groove, the temperature detection member is in communication connection with the signal processing module, and the temperature detection member is used for collecting the temperature of a treatment area.

[0019] The signal processing module controls the prompting member to emit a corresponding prompt signal according to the temperature of the treatment area collected by the temperature detection member and the speed interval in which the moving speed is located.

[0020] In an embodiment of the present application, the treatment handle further includes a fitting detection member, the fitting detection member is arranged in the installation groove and flush with the end face of the treatment end, the fitting detection member is in communication connection with the signal processing module, and the fitting detection member is used for detecting the fitting degree of the treatment handle and a treatment area.

[0021] In an embodiment of the utility model, the treatment handle further includes a display panel, the display panel is arranged on the outer surface of the handle main body and is in communication connection with the signal processing module, and the display panel is used for displaying the moving speed of the handle main body.

[0022] In an embodiment of the utility model, the treatment handle further includes an energy emitting element, the treatment handle has a mounting cavity, and the energy emitting element is mounted in the mounting cavity and is in communication connection with the signal processing module.

[0023] The signal processing module adjusts the energy emitted by the energy emitting element according to the moving speed of the handle main body.

[0024] The utility model also provides a therapeutic instrument, the therapeutic instrument includes the treatment handle and host computer as any above described, the treatment handle with the host computer communication connection.

[0025] The treatment handle provided by the utility model includes a handle main body, a motion detection element, a prompt assembly and a signal processing module, and the motion detection element, the prompt assembly and the signal processing module are all mounted on the handle main body. The motion detection element is used for collecting the moving speed of the handle main body, the prompt assembly includes a plurality of prompt elements, the plurality of prompt elements respectively emit different prompt signals, for example, different kinds of prompt signals: sound signals, vibration signals, light signals; or different degrees of prompt signals: different volume of sound, different frequency of vibration, different color of light. The signal processing module is built-in with a plurality of speed intervals, for example, a normal speed interval, an excessively high speed interval and an excessively low speed interval. Each different prompt signal corresponds to a speed interval, the signal processing module obtains the speed interval corresponding to the moving speed of the handle main body according to the moving speed of the handle main body, and controls the prompt element corresponding to the speed interval to emit the corresponding prompt signal. Therefore, during treatment, the user can judge whether the moving speed of the treatment handle at this time is within the normal range according to different prompt signals, and can obtain that the moving speed should be increased or decreased according to the prompt signal, thereby facilitating the user to control the moving speed of the treatment handle. BRIEF DESCRIPTION OF DRAWINGS

[0026] In order to more clearly illustrate the technical scheme in the embodiments of the utility model or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or the prior art description, and obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained according to the structure shown in these drawings without paying creative labor.

[0027] Figure 1 It is the structural schematic diagram of the treatment handle of an embodiment provided by the utility model;

[0028] Figure 2 for Figure 1 sectional view along A-A;

[0029] Figure 3 for Figure 2 enlarged view of a portion at B.

[0030] BRIEF DESCRIPTION OF DRAWINGS

[0031] 1, treatment handle; 10, handle body; 11, treatment end; 111, mounting groove; 12, holding end; 121, accommodating cavity; 13, mounting cavity; 14, accommodating groove; 20, motion detection piece; 30, prompting assembly; 31, loudspeaker; 32, vibrator; 40, signal processing module; 50, temperature detection piece; 60, fitting detection piece; 70, display panel; 80, energy emitting piece.

[0032] The realization, functional features and advantages of the utility model will be further described with reference to the drawings in combination with embodiments. DETAILED DESCRIPTION

[0033] The technical solutions in the embodiments of the utility model will be clearly and completely described below in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0034] It should be noted that if the embodiments of the utility model involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative position relationship, movement condition, etc. between components in a certain specific posture, and if the specific posture changes, the directional indications also change accordingly.

[0035] In addition, if the description of "first", "second" and the like is involved in the embodiments of the utility model, the description of "first", "second" and the like is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can be explicitly or implicitly included at least one of the features. In addition, if "and / or" or "and / or" appears throughout the text, it means that the three parallel schemes are included, for example, "A and / or B" includes A scheme, or B scheme, or A and B scheme. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of ordinary skilled in the art, when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the utility model.

[0036] The utility model provides a kind of treatment handle 1.

[0037] Combined Figures 1 to 3 In an embodiment of the utility model, treatment handle 1 includes handle main body 10, motion detection piece 20, prompt component 30 and signal processing module 40;One end of handle main body 10 is treatment end 11;Motion detection piece 20 is installed in handle main body 10, and motion detection piece 20 is used to detect the moving speed of handle main body 10;Prompt component 30 is installed in handle main body 10, and prompt component 30 includes at least one prompt piece, and prompt piece is used to issue prompt signal;Signal processing module 40 is installed in handle main body 10, and is all connected with communication with motion detection piece 20, prompt component 30, and signal processing module 40 is prepositioned with multiple speed intervals;

[0038] Among them, signal processing module 40 receives the moving speed of handle main body 10 collected by motion detection piece 20, and according to the speed interval where the moving speed is located, controls the different prompt signals of corresponding prompt piece to issue.

[0039] In the embodiment, handle main body 10 is designed as L shape, and the corner of L shape is designed as smooth transition, to improve the comfort and stability when user holds, of course, handle main body 10 can also be cylindrical. Handle main body 10 is internally provided with accommodating cavity 121, to install other electronic components and battery and the like. One end of handle is treatment end 11, for contacting with skin and providing treatment function, and the other end is used as holding end 12, and it is the part of user hand.

[0040] The motion detecting member 20 is used to capture the speed change of the treatment handle 1 when moving on the surface of the treatment area during treatment, and feed the collected data to the information processing module. The motion detecting member 20 can be selected from one or a combination of displacement sensors, acceleration sensors or contact sensors. The motion detecting member 20 can be arranged at a position close to the treatment end 11 of the handle body 10, or at a position away from the treatment end 11 of the handle body 10. In addition, the motion detecting member 20 can be arranged on the outside of the handle body 10, or in the accommodating cavity 121.

[0041] The prompting assembly 30 prompts the user to adjust the moving speed of the treatment handle 1 by issuing different types of prompt signals, to ensure the safety and effectiveness of the treatment process. The prompting member can be provided in multiple forms, which can include sound prompting devices, vibration prompting devices or light prompting devices. For example, the sound prompting device can be a loudspeaker 31, and multiple sound prompting devices can be arranged at the circumferential position of the handle body 10, or can be centrally installed at the front end or rear end of the handle, so that the sound prompting devices can emit sound from different angles of the handle body 10. The vibration prompting device can be arranged inside the gripping end 12 or distributed on the outside of the handle, and different degrees of vibration feedback can be generated by a micro vibration motor to the fingertips or palms of the user. The light prompting device can be arranged at the edge or top of the handle, and different colors and flashing modes can be used to convey speed information. This multi-form prompting method not only enhances the user's sensory experience, but also makes the prompting assembly 30 suitable for use in different environments. For example, in a noisy environment, the user may not be able to hear the sound prompt, at which time the vibration or light prompt can play a complementary role. Of course, multiple prompting members can also be the same type of prompting device, such as sound prompting devices, which can generate different volumes or types of sound through the information processing module to feed different speeds to the user. In addition, the prompting member can also be provided in only one, and different prompt signals such as different volumes or different tones of sound signals, different vibration frequencies or vibration amplitudes of vibration signals can be generated by controlling the prompting member.

[0042] The signal processing module 40 is integrated inside the handle body 10, adopts a microprocessor or an integrated circuit, and has real-time processing and analysis capabilities. The signal processing module 40 is preconfigured with at least three speed intervals: a low-speed interval, a normal interval, and a high-speed interval. After receiving the movement speed data collected by the movement detection member 20, the information processing module determines the speed interval in which the movement speed is located, and controls the corresponding prompt component 30 to send a corresponding prompt signal according to the preconfigured speed interval. For example, when the movement speed of the handle body 10 is in the normal interval, the information processing module controls the prompt member to send a prompt signal with moderate frequency or moderate sound; but if the movement speed is in the low-speed interval or the high-speed interval, the information processing module controls the prompt member to send a prompt signal with lower or higher video or lower or higher sound volume, so as to remind the user to adjust the movement speed of the handle. This mechanism ensures that the user can judge whether the movement speed of the treatment handle 1 is appropriate according to different prompt signals during the treatment process, so as to ensure that the energy is uniformly distributed in the treatment area, avoid the problem of excessive concentration or dispersion of energy caused by improper speed, and improve the treatment effect.

[0043] In addition, the signal processing module 40 can also continuously learn and optimize the prompt strategy according to the operation habits of the user. Through analysis of multiple use data, the signal processing module 40 can identify the habit of the user's movement speed when operating the treatment handle 1, and adjust the timing and signal strength of the prompt accordingly, to further improve the user experience. At the same time, the signal processing module 40 can also be in communication connection with other system components (such as the temperature detection member 50 and the fitting detection member 60), comprehensively consider multiple factors to provide more accurate operation guidance, to ensure the safety and effectiveness of the treatment process.

[0044] The treatment handle 1 provided in the present application integrates the movement detection member 20, the prompt component 30, and the signal processing module 40, so that the user can accurately know the movement speed of the treatment handle 1 when using the treatment handle 1 for treatment. The movement detection member 20 accurately captures the movement speed of the handle and transmits the data to the signal processing module 40. The signal processing module 40 selects appropriate prompt signals according to the preconfigured speed interval, and reminds the user to adjust the movement speed of the handle in the form of sound, vibration, or light through the prompt component 30. This mechanism enables the user to understand and adjust the movement speed of the handle in real time, ensuring that the energy is uniformly distributed during the treatment process, and improving the safety and effectiveness of the treatment.

[0045] In combination Figure 1 and Figure 2 In an embodiment of the present application, the prompt member is a loudspeaker 31, and each loudspeaker 31 is arranged at intervals along the circumference of the handle body 10.

[0046] In the embodiment, each loudspeaker 31 can emit a sound signal of different tone or volume to remind the user to adjust the moving speed of the handle, and correspond to different speed intervals respectively. Specifically, when the motion detection member 20 detects that the moving speed of the handle is in the normal interval, the information processing module controls the corresponding loudspeaker 31 to emit a sound signal of moderate tone or moderate volume; when the moving speed of the handle body 10 is in the low speed interval, the loudspeaker 31 will emit a sound signal of low frequency or lower volume to remind the user to speed up the moving speed; when the moving speed of the handle body 10 is in the high speed interval, the loudspeaker 31 will emit a sound signal of high frequency or higher volume to remind the user to slow down the moving speed. The low speed and high speed are distinguished by the tone and volume of the sound, and the user can intuitively perceive the current operating state and adjust in time to ensure the safety and effectiveness of the treatment process.

[0047] The loudspeaker 31 can be fixedly installed on the outer surface of the handle body 10 by an adhesive or a buckle, or can be embedded in the outer periphery of the handle body 10. Each loudspeaker 31 is arranged at intervals along the circumference of the handle body 10, so that the sound can be emitted from multiple directions of the handle body 10, improving the clarity of the prompt sound heard by the user.

[0048] In addition, the loudspeaker 31 also has the function of automatically adjusting the volume, which can dynamically adjust the volume according to the environmental noise level to avoid discomfort caused by excessive volume to the user. The shell of the loudspeaker 31 is designed as a waterproof and dustproof structure, which enhances its durability and makes it suitable for more use scenarios.

[0049] In combination with Figure 1 and Figure 2 , the moving speed of the handle body 10 is positively correlated with the frequency of the sound emitted by the loudspeaker 31. In the embodiment, the high and low of the sound frequency usually determines the high and low of the tone. Therefore, as the sliding speed increases, the sound frequency can also be raised synchronously, and the corresponding tone can also be gradually raised.

[0050] For example, the speed interval can be divided into several intervals corresponding to different speed gears, and the specific number of divisions can be designed as needed, such as 2, 3, 4, 5, etc. When the treatment end 11 slides on the skin surface, it can realize a mode similar to stepless adjustment, that is, as the sliding speed changes, the tone also changes. As the sliding speed gradually increases, the tone gradually increases; as the sliding speed gradually decreases, the tone gradually decreases. In this way, the user can easily judge whether the current sliding speed meets the treatment needs by the high and low of the tone.

[0051] In combination with Figure 1 and Figure 2 , in an embodiment of the utility model, the outer periphery of the treatment handle 1 is provided with a plurality of accommodating grooves 14, and each loudspeaker 31 is embedded in one accommodating groove 14.

[0052] In the embodiment, the loudspeaker 31 is embedded in the accommodating groove 14, and the loudspeaker 31 is flush with the outer surface of the treatment handle 1, so that the installation stability of the loudspeaker 31 is improved, the appearance of the handle is improved, and the user's hand is not uncomfortable or scratched by the protruding loudspeaker 31. The loudspeaker 31 can be fixed in the accommodating groove 14 by buckles, adhesives or screws, and a waterproof sealing element such as a sealing ring is arranged between the side wall of the accommodating groove 14 and the loudspeaker 31 to prevent liquid from entering the internal circuit of the loudspeaker 31, thereby enhancing the durability and safety of the loudspeaker 31.

[0053] In combination Figure 2 In an embodiment of the utility model, the prompt member is a vibrator 32, the other end of the handle main body 10 is a holding end 12, the holding end 12 is formed with an accommodating cavity 121, and each vibrator 32 is arranged in the accommodating cavity 121.

[0054] In the embodiment, the vibrator 32 can directly remind the user to adjust the moving speed of the handle main body 10 through tactile feedback, so that the user can clearly perceive the prompt information in a noisy environment or a complex light environment. Specifically, when the motion detection member 20 detects that the moving speed of the handle main body 10 is in the normal interval, the vibrator 32 does not vibrate or maintains a moderate vibration frequency; when the moving speed of the handle main body 10 is in the low-speed interval, the vibrator 32 sends a weak or low-frequency vibration signal to remind the user to speed up the moving speed; when the moving speed of the handle main body 10 is in the high-speed interval, the vibrator 32 sends a strong or high-frequency vibration signal to remind the user to slow down the moving speed. In addition, the vibrator 32 can also adopt continuous vibration or intermittent vibration and other multi-mode vibration prompts to help the user more accurately judge the current operation state and adjust in time.

[0055] Further, by embedding the vibrator 32 in the accommodating cavity 121 in the holding end 12, the installation stability of the vibrator 32 is ensured, and the distance between the vibrator 32 and the user's palm is shortened to enhance the tactile perception experience.

[0056] In combination Figure 2 In an embodiment of the utility model, the motion detection member 20 at least includes one of a displacement sensor, an acceleration sensor and a contact sensor.

[0057] In the embodiment, the displacement sensor can accurately record the linear displacement of the treatment handle 1 and return the data to the information processing module to confirm whether the moving speed of the treatment handle 1 is too fast or too slow.

[0058] The acceleration sensor can accurately perceive the acceleration and deceleration of the treatment handle 1, provide real-time speed change information, and return the information to the information processing module. By analyzing the acceleration data, the information processing module can calculate the instantaneous speed change of the treatment handle 1, so that the user can adjust the operation in time, thereby ensuring the safety and consistency of the treatment process.

[0059] The contact sensor can detect the actual contact between the treatment handle 1 and the skin in real time, and return the contact state information to the information processing module. The moving speed of the treatment handle 1 is judged by judging the change of the position where the treatment handle 1 is attached to the skin.

[0060] By using one or more combinations of sensors, the embodiment realizes all-round monitoring of the moving speed and state of the treatment handle 1. Different types of sensors provide complementary information, enhancing the reliability and accuracy of the data. For example, the combination of displacement sensor and acceleration sensor can provide more detailed speed change data when treating different contours of the skin surface; and the contact sensor ensures the close attachment of the treatment handle 1 to the treatment area, avoiding loss or ineffective operation in energy transmission.

[0061] In combination Figure 3 In an embodiment of the present application, the end face of the treatment end 11 is provided with a mounting groove 111, and the motion detection member 20 is arranged in the mounting groove 111.

[0062] In the embodiment, the mounting groove 111 provides a mounting and fixing position for the motion detection member 20, so as to ensure that the motion detection member 20 can be stably and accurately integrated on the treatment handle 1, thereby ensuring the accuracy and stability of data acquisition. When treating the skin surface with uneven or certain arc, the orientation of the treatment head needs to be adjusted, so that the handle body 10 swings within a certain range with the treatment end 11 as the swing center, and the treatment end 11 is attached to the skin of the treatment area. At this time, the motion speed of the treatment end 11 and the end away from the treatment end 11 is different, so the motion detection member 20 is arranged on the end face of the treatment end 11, so that the motion detection member 20 can more accurately obtain the energy density of the treatment area through the moving speed of the treatment handle 1, thereby improving the accuracy of speed adjustment.

[0063] The design of the mounting groove 111 fully considers the size and shape of the motion detection member 20, and the inside adopts buckle, adhesive or screw structure, so that the motion detection member 20 can be seamlessly embedded and firmly fixed in the mounting groove 111.

[0064] In combination Figure 3In an embodiment of the present application, the treatment handle 1 further comprises a temperature detection member 50, which is arranged in the mounting groove 111 and is in communication connection with the signal processing module 40, and is used to collect the temperature of the treatment area.

[0065] The signal processing module 40 controls the corresponding prompt member to issue the corresponding prompt signal according to the temperature of the treatment area collected by the temperature detection member 50 and the speed interval of the moving speed.

[0066] In this embodiment, the temperature detection member 50 can be an infrared temperature sensor, a thermocouple, a thermistor, etc. By integrating the temperature detection member 50 in the treatment handle 1, real-time monitoring of the temperature of the treatment area is realized, so that the user can always maintain the optimal temperature range of the treatment area during the operation process, to ensure the safety and uniformity of energy transmission, and avoid skin damage or poor treatment effect caused by abnormal temperature.

[0067] The temperature detection member 50 is in communication connection with the signal processing module 40 through a special interface or a wireless way, so as to timely transmit the temperature data to the information processing module. The signal processing module 40 receives data from the temperature detection member 50 and the motion detection member 20, and performs comprehensive analysis and processing. Specifically, when the temperature is too high or too low, or the moving speed is too fast or too slow, the signal processing module 40 will activate the corresponding prompt member to remind the user to adjust the operation.

[0068] Through real-time monitoring of the changes of temperature and speed, the signal processing module 40 can dynamically adjust the prompt strategy to help the user maintain the optimal operation state, thereby ensuring the safety and consistency of the treatment process.

[0069] In combination Figure 3 In an embodiment of the present application, the treatment handle 1 further comprises a fit detection member 60, which is arranged in the mounting groove 111 and is flush with the end face of the treatment end 11, and is in communication connection with the signal processing module 40, and is used to detect the fitting degree of the treatment handle 1 and the treatment area.

[0070] In this embodiment, the fit detection member 60 can adopt a pressure sensor, a capacitive sensor, etc. By integrating the fit detection member 60 in the treatment handle 1, real-time monitoring of the fitting degree of the treatment handle 1 and the treatment area is realized, so that the user can always maintain the optimal contact state of the treatment handle 1 and the treatment area during the operation process, to ensure the uniformity of the energy focusing depth, and avoid poor treatment effect or skin damage caused by poor contact.

[0071] The fitting detection piece 60 is arranged in the mounting groove 111 of the treatment end 11 and is flush with the end face of the treatment end 11, so that the actual contact condition of the treatment handle 1 and the skin surface can be accurately detected, and the accuracy and reliability of the fitting degree measurement are improved.

[0072] The fitting detection piece 60 is connected with the signal processing module 40 in communication through a special interface or a wireless manner, so that the fitting degree data can be transmitted to the information processing module in time. The signal processing module 40 receives the data from the fitting detection piece 60 and combines the information of the motion detection piece 20 and the temperature detection piece 50 to perform comprehensive analysis and processing. Specifically, when the fitting degree is good, the temperature is in a normal range, and the moving speed is also in a normal range, the corresponding prompt piece is controlled to send a corresponding prompt signal; when the fitting degree is insufficient, the temperature is too high or too low, or the moving speed is too fast or too slow, the signal processing module 40 activates the corresponding prompt piece to remind the user to adjust the operation. The fitting degree data, the moving speed and the temperature are combined to provide more accurate operation guidance for the user, and the consistency and reliability of the treatment process are further improved.

[0073] In combination Figure 1 In an embodiment of the present application, the treatment handle 1 further comprises a display panel 70, which is arranged on the end face of the handle main body 10 away from the treatment end 11 and is connected with the signal processing module 40 in communication, and the display panel 70 is used to display the moving speed of the handle main body 10.

[0074] In this embodiment, the display panel 70 provides real-time speed feedback of the treatment handle 1 for the user, so that the user can more intuitively understand the moving condition of the treatment handle 1 during the operation, so as to control the treatment handle 1 to always keep in the best speed range.

[0075] The display panel 70 is arranged on the end face of the handle main body 10 away from the treatment end 11, so as to ensure that the user can view the relevant information during the operation. The display panel 70 can adopt a display screen of the types of LCD, LED or OLED, which has high resolution and good visual angle and is suitable for use in different environments. In addition, the display panel 70 can also have a touch function, allowing the user to directly make simple settings or adjustments on the screen to improve the interactive experience of the user. In other embodiments, the display panel can also be arranged on the circumferential side of the handle main body. For example, as shown in the handle main body 10 of the Figure 1 The handle main body 10 has a relatively long length, and the display panel can also be arranged on the circumferential surface of the holding end.

[0076] The display panel 70 cooperates with the signal processing module 40, when the moving speed deviates from the preset range, the signal processing module 40 immediately sends a warning information on the display panel 70, reminding the user to adjust the operation. Meanwhile, the display panel 70 can also display the moving speed of the treatment handle 1 in real time during the treatment process, by monitoring the speed change in real time, the display panel 70 also helps the user to better understand the speed change law in the operation process, so as to more scientifically adjust the operation method, and improve the overall treatment effect.

[0077] In combination Figure 2 In an embodiment of the utility model, the treatment handle 1 further includes an energy emitting element 80, the treatment handle 1 has an installation cavity 13, and the energy emitting element 80 is installed in the installation cavity 13 and is in communication connection with the signal processing module 40.

[0078] The signal processing module 40 adjusts the energy emitted by the energy emitting element 80 according to the moving speed of the handle main body 10.

[0079] In the embodiment, the energy emitting element 80 can be a transducer, a radio frequency electrode, an infrared light wave generator, etc., and can emit different types of energy, such as ultrasonic waves, radio frequency microwaves or infrared rays, to meet the treatment needs of different users.

[0080] The signal processing module 40 dynamically adjusts the output energy of the energy emitting element 80 according to the moving speed of the handle main body 10. When the moving speed is too fast and the user does not reduce the speed, the signal processing module 40 controls the energy emitting element 80 to increase the energy output; when the moving speed is too slow and the user does not increase the speed, the signal processing module 40 controls the energy emitting element 80 to reduce the energy output; the above-mentioned dynamic adjustment of the energy output of the energy element enables the treatment handle 1 to be self-adapted in the case that the user cannot receive the prompt signal of the prompt element or receives the prompt signal but does not take measures, so as to ensure the consistency and uniformity of the treatment effect, and provides the user with a safer and more reliable treatment experience and treatment effect.

[0081] The utility model also proposes a therapeutic instrument, the therapeutic instrument includes host computer and treatment handle 1, the specific structure of this treatment handle 1 refers to the above-mentioned embodiment, because the therapeutic instrument has adopted all the technical schemes of the above-mentioned embodiments, therefore at least has all the beneficial effects brought by the technical scheme of the above-mentioned embodiment, here will not repeat.

[0082] Among them, the treatment handle 1 is connected with the host computer through communication, so as to realize data transmission and control between the two. The host computer stores and analyzes the received sensor data to generate the treatment log of the user, such as treatment habit, speed adjustment suggestion, so as to help the user to adjust to the best operation state.

[0083] The above merely illustrates the exemplary embodiments of the present application, and does not limit the patent scope of the present application, and any equivalent structural transformation or direct / indirect application in other related technical fields under the technical concept of the present application and by using the content of the present application specification and drawings are included in the patent protection scope of the present application.

Claims

1. A therapeutic handpiece, characterized in that, include: The handle body has one end as the treatment end; A motion detection device is installed on the handle body and is used to detect the moving speed of the handle body; A prompting component, mounted on the handle body, comprising at least one prompting element for emitting a prompting signal; and A signal processing module is installed on the handle body and is communicatively connected to the motion detection component and the prompting component. The signal processing module has multiple preset speed ranges. The signal processing module receives the moving speed of the handle body collected by the motion detection device, and controls the corresponding prompt device to emit different prompt signals according to the speed range in which the moving speed is located.

2. The treatment handle as described in claim 1, characterized in that, The notification device is a loudspeaker, and each loudspeaker is spaced apart circumferentially along the handle body.

3. The treatment handle as described in claim 2, characterized in that, The moving speed of the handle body is positively correlated with the frequency of the sound emitted by the loudspeaker.

4. The treatment handle as described in claim 2, characterized in that, The outer periphery of the treatment handle is provided with multiple receiving slots, and each of the amplifiers is embedded in one of the receiving slots.

5. The treatment handle as described in claim 1, characterized in that, The prompting element is a vibrator, and the other end of the handle body is a gripping end. A receiving cavity is formed in the gripping end, and each of the vibrators is disposed in the receiving cavity.

6. The treatment handle as described in any one of claims 1-5, characterized in that, The motion detection device includes at least one of the following: displacement sensor, acceleration sensor, and contact sensor.

7. The treatment handle as described in claim 6, characterized in that, The end face of the treatment end is provided with a mounting groove, and the motion detection component is disposed in the mounting groove.

8. The treatment handle as described in claim 7, characterized in that, The treatment handle also includes a temperature detection element, which is disposed in the mounting slot and is communicatively connected to the signal processing module. The temperature detection element is used to collect the temperature of the treatment area. The signal processing module controls the corresponding prompting device to issue a corresponding prompting signal based on the temperature of the treatment area collected by the temperature detection device and the speed range in which the movement speed is located.

9. The treatment handle as described in claim 7, characterized in that, The treatment handle also includes a fit detection element, which is disposed in the mounting groove and flush with the end face of the treatment end. The fit detection element is communicatively connected to the signal processing module and is used to detect the degree of fit between the treatment handle and the treatment area.

10. The treatment handle according to any one of claims 1-5, characterized in that, The treatment handle also includes a display panel, which is disposed on the outer surface of the handle body and is communicatively connected to the signal processing module. The display panel is used to display the moving speed of the handle body.

11. The treatment handle according to any one of claims 1-5, characterized in that, The treatment handle also includes an energy emitter. The treatment handle has a mounting cavity, the energy emitter is mounted in the mounting cavity, and is communicatively connected to the signal processing module. The signal processing module adjusts the energy emitted by the energy emitter according to the moving speed of the handle body.

12. A therapeutic device, characterized in that, The therapeutic device includes a therapeutic handle and a main unit as described in any one of claims 1-11, wherein the therapeutic handle is communicatively connected to the main unit.