A multifunctional massager and a control method thereof

By intelligently adjusting the vibration and heating levels of the multi-functional massager through the control unit, the problems of user operation complexity and safety hazards in the existing technology are solved, and the massager's portability, applicability to multiple body parts, and personalized massage needs are met.

CN118058962BActive Publication Date: 2025-11-28深圳市金谷源科技有限公司
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Patent Information

Application Number
CN202410201160.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-02-23
Publication Date
2025-11-28
Estimated Expiration
2044-02-23

AI Technical Summary

Technical Problem

Existing multi-functional massagers present user complexity and safety risks in terms of timer function settings, making it difficult to meet the personalized massage needs of different users.

Method used

The massager achieves intelligent adjustment by cyclically responding to vibration and heating levels through the control unit and automatically adjusting the heating temperature or vibration intensity of the heating or vibration components according to the working time.

Benefits of technology

It achieves portability and applicability to multiple body parts, provides multiple massage modes and heating modes, avoids prolonged use, protects user safety, extends device life, and meets users' personalized needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a multifunctional massager, comprising an elastic adjusting belt and a massaging device. The elastic adjusting belt is used for fixing the massaging device on a part to be massaged. The massaging device comprises a heating assembly, a vibrating assembly and a control unit. The heating assembly and the vibrating assembly are connected with the control unit. The control unit comprises a mode switching module and a mode adjusting module. The mode switching module is used for receiving a first input instruction or a second input instruction and sequentially responding to the first input instruction or the second input instruction respectively, so as to switch the heating level or the vibration level of the heating assembly or the vibrating assembly. The mode adjusting module is used for automatically adjusting the heating level and / or the vibration level of the massaging device according to the working time length of the massaging device. The application is used for the massaging demand of different massaging parts.
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Description

TECHNICAL FIELD

[0001] The present application relates to a massager, in particular to a multifunctional massager and a control method thereof. BACKGROUND

[0002] The multifunctional massager has multiple massage functions such as massage, kneading, rubbing, vibration, etc., and can be used for different body parts such as neck, shoulder, back, waist, leg, etc. The multifunctional massager helps to relieve muscle fatigue, promote blood circulation and relax the body and mind. It is suitable for people of all ages, especially for people who work or study for a long time, and for people who need to relieve physical fatigue and tension.

[0003] The existing massager sets a timing function to avoid harm to the body when used for a long time. Since different users have different massage needs, if the timing is too short, the user needs to operate again when the massage stops, which is cumbersome. Some massagers can set the time according to the needs, but for users who are not familiar with electronic products, setting the timing function may increase the complexity and difficulty of using the massager, and there is a safety hazard.

[0004] For example, the application number CN201320086635.9 is a three-in-one massage pad with a remote control timer. The technical solution adopted is: a massage pad body is provided, a layer of pad cover is arranged on the surface of the massage pad body, a mechanical hand is arranged on the neck part of the human body above the massage pad body, a roller, a vibrator and a receiver are arranged on the middle part of the massage pad body respectively, the receiver is controlled by a remote controller, the remote controller includes a memory, a mainboard, a shell and a timer, the preset program is input into the memory, the receiver on the massage pad receives the specified command, and the massage is performed on the position. The remote controller can control the massage of the human body in all directions, the mechanical hand imitates a real hand, and the real feeling is very strong, which is very suitable for the existing market. The above-mentioned invention has a timing function, but if the user needs more or less massage time, it needs to be reset, which may be inconvenient.

[0005] Therefore, the present application provides a multifunctional massager and a control method thereof. SUMMARY

[0006] The present application provides a multifunctional massager and a control method thereof, which can meet the user's massage needs for different massage parts by controlling the sequence of vibration level and heating level response through the control unit, and automatically adjusting the heating temperature or vibration intensity of the heating component or vibration component according to the working time.

[0007] In one aspect, the present application provides a multifunctional massager, comprising an elastic adjusting belt and a massage device, wherein,

[0008] The elastic adjusting belt is used for fixing the massage device on a part to be massaged.

[0009] The massage device comprises a heating assembly, a vibration assembly and a control unit, the heating assembly and the vibration assembly are connected with the control unit, and the control unit comprises a mode switching module and a mode adjusting module.

[0010] The mode switching module is used for receiving a first input instruction or a second input instruction and sequentially responding to the first input instruction or the second input instruction respectively, so as to switch the heating level or the vibration level of the heating assembly or the vibration assembly.

[0011] The mode adjusting module is used for automatically adjusting the heating level and / or the vibration level of the massage device according to the working time length of the massage device.

[0012] In an implementable manner, the elastic adjusting belt comprises a covering part for wrapping the part to be massaged, and the covering part outwardly extends at two opposite diagonal positions to form a protruding part; the covering part is integrally connected with a tightening band on a side opposite to the protruding part, and the length of the tightening band is greater than the length of the protruding part.

[0013] In an implementable manner, the massage device further comprises a shell, a battery and a control panel, the shell is internally provided with a cavity, and the heating assembly, the vibration assembly, the control unit and the battery are located in the cavity inside the shell.

[0014] The control panel is arranged on the upper surface of the shell, and the control panel is provided with a power on / off button, a vibration level selection button, a heating level selection button and a charging port, and the power on / off button, the vibration level selection button, the heating level selection button and the charging port are connected with the control unit.

[0015] In an implementable manner, the heating assembly is a heating pad, and the heating pad is detachably connected on the covering part.

[0016] In an implementable manner, the mode adjusting module comprises a data acquisition submodule, a limit time length determination submodule, a judgment submodule and a mode switching submodule.

[0017] The data acquisition submodule is used for acquiring the heating level and / or the vibration level of the current massage device and the working time length corresponding to the heating level and / or the vibration level.

[0018] The limit time length determination submodule is used for determining the limit time length according to the current vibration level and / or the heating level.

[0019] The judgment submodule is used for judging whether the working time length reaches the limit time length.

[0020] The mode switching submodule is configured to: when the working time reaches the limit time, switch the current vibration level and / or heating level to a vibration level and / or heating level one level lower than the current vibration level and / or heating level, and recalculate the limit time according to the current vibration level and / or heating level;

[0021] If no first input instruction or second input instruction is detected within the limit time after switching, when the working time of the vibration level and / or heating level after switching reaches the limit time, the heating level and / or vibration level are switched again, and the limit time is recalculated until the heating level and / or vibration level is switched to level one, and the massager is turned off;

[0022] If a first input instruction or a second input instruction is received within the current limit time, the heating level and / or vibration level are switched to the initial heating level and / or vibration level.

[0023] In an implementable manner, the massager further comprises a pressure sensing module and a temperature sensing module, the pressure sensing module is used to monitor the pressure applied by the massage area to the massager, and the temperature sensing module is used to monitor the temperature in the massage area.

[0024] The step of determining the limit time according to the current vibration level and / or heating level specifically comprises:

[0025] Based on the preset level weight library, the safety time corresponding to the heating level and the vibration level is weighted to obtain the limit time; wherein,

[0026] The level weight library stores the safety time corresponding to each heating level and vibration level and the corresponding basic weight;

[0027] Determine whether the pressure value and / or temperature value in the current massage area exceeds the first threshold and / or the second threshold, and when the pressure value and / or temperature value exceeds the first threshold and / or the second threshold, dynamically adjust the weight of each vibration level and / or heating level.

[0028] In an implementable manner, the control panel is further provided with a display panel and a cycle button, the display panel and the cycle button are connected with the control unit, and the display panel is used to display the heating level and / or vibration level of the current massager;

[0029] The control unit is further configured to adjust the display content of the display panel according to the first input instruction or the second input instruction, and in response to the third input instruction, the heating level of the heating assembly and the vibration level of the vibration assembly are switched in a sequential cycle.

[0030] In an implementable mode, the shell further has an electricity monitoring sensor, and the control unit is further configured to calculate the percentage of the remaining electricity of the battery according to the output signal of the electricity monitoring sensor, and adjust the display content of the display panel according to the percentage of the remaining electricity.

[0031] In another aspect, the present application further provides a control method of a multifunctional massager, comprising the following steps:

[0032] receiving a first input instruction or a second input instruction;

[0033] sequentially and cyclically responding to the first input instruction or the second input instruction to switch the heating level or the vibration level of the heating assembly or the vibration assembly;

[0034] acquiring the working time length of each heating level and / or vibration level;

[0035] automatically adjusting the heating level and / or vibration level of the massaging device according to the working time length of the massaging device.

[0036] In an implementable mode, the step of automatically adjusting the heating level and / or vibration level of the massaging device according to the working time length of the massaging device specifically comprises:

[0037] acquiring the current heating level and / or vibration level of the massager, and the working time length corresponding to the heating level and / or vibration level;

[0038] determining the limit time length according to the current vibration level and / or heating level;

[0039] judging whether the current working time length reaches the limit time length;

[0040] when the working time length reaches the limit time length, the current vibration level and / or heating level is switched to the vibration level and / or heating level of the next lower level, and whether the first input instruction or the second input instruction is inputted is judged within the limit time length after the switching;

[0041] if the first input instruction or the second input instruction is not received, the heating level and / or vibration level is switched again when the working time length of the switched vibration level and / or heating level reaches the limit time length, until the heating level and / or vibration level is switched to the first level and the massager is turned off;

[0042] if the first input instruction or the second input instruction is received within the current limit time length, the heating level and / or vibration level is switched to the initial heating level and / or vibration level.

[0043] The present application can achieve the following beneficial effects:

[0044] The multifunctional massager has the advantages of small size and portability, and can be applied to multiple body parts. The multifunctional massager also has multiple massage modes and heating modes. In addition, the multifunctional massager can automatically adjust the massage level according to the working time of the massaging device to help relieve muscle fatigue, promote blood circulation, and meet the needs of users.

[0045] Other features and advantages of the present application will be set forth in the following description, and in part will become apparent to those skilled in the art from the description, or can be learned by practice of the application. The objects and other advantages of the present application can be realized and attained by the structure particularly pointed out in the written description and claims hereof as well as the appended drawings.

[0046] The technical solutions of the present application will be further described in detail below with the help of the accompanying drawings and examples. BRIEF DESCRIPTION OF DRAWINGS

[0047] The accompanying drawings are included to provide a further understanding of the present application, and constitute a part of the specification, illustrate the present application, and are used to explain the present application together with the embodiments of the present application, and do not constitute a limitation on the present application. In the drawings:

[0048] Figure 1 FIG. 1 is a structural schematic diagram of a multifunctional massager according to an embodiment of the present application;

[0049] Figure 2 FIG. 3 is a structural schematic diagram of an elastic adjusting belt according to an embodiment of the present application;

[0050] Figure 3 FIG. 5 is a structural schematic diagram of a control panel according to an embodiment of the present application;

[0051] Figure 4 FIG. 7 is a flow chart of a control method of a multifunctional massager according to an embodiment of the present application. DETAILED DESCRIPTION

[0052] The preferred embodiments of the present application will be described below in conjunction with the accompanying drawings, and it should be understood that the preferred embodiments described herein are only used to illustrate and explain the present application, and do not constitute a limitation on the present application.

[0053] Referring to Figure 1 The present embodiment 1 provides a multifunctional massager, which comprises an elastic adjusting belt and a massaging device.

[0054] The elastic adjusting belt 1 is used to fix the massaging device at a part to be massaged;

[0055] The massaging device 2 comprises a heating assembly, a vibrating assembly and a control unit, the heating assembly and the vibrating assembly are connected with the control unit, and the control unit comprises a mode switching module and a mode adjusting module;

[0056] The mode switching module is configured to receive the first input instruction or the second input instruction and sequentially and cyclically respond to the first input instruction or the second input instruction, so as to switch the heating level or the vibration level of the heating assembly or the vibration assembly.

[0057] The mode adjusting module is configured to automatically adjust the heating level and / or the vibration level of the massage device 2 according to the working time length of the massage device 2.

[0058] The heating assembly can be a heating wire or a ceramic heating element, and the control unit can control the heating temperature by adjusting the current of the heating wire or the ceramic heating element. The vibration assembly can be a driving motor or a vibrator to generate vibration.

[0059] The working principle of the above technical solution is as follows: when the multifunctional massager of the present application is used, the elastic adjusting belt 1 is used to fix the massage device 2 on the part to be massaged, and then the massager is turned on. When the mode switching module receives the first input instruction or the second input instruction of the user, it will sequentially and cyclically respond to the first input instruction or the second input instruction, so as to cyclically adjust the heating temperature of the heating assembly or the vibration intensity of the vibration assembly. The first input instruction and the second input instruction can be instructions issued by the user by pressing the button, or instructions issued by the mobile terminal APP. For example, the massager can be provided with low, medium and high massage modes and heating modes, and the massage intensity or the heating temperature is sequentially increased according to the above-mentioned gears. When the first input instruction is received for the first time, the temperature is increased to the heating temperature corresponding to the medium gear by controlling the current of the heating assembly. When the first input instruction is received for the second time, the heating temperature is increased again, until the heating temperature corresponding to the high gear is reached. When the first input instruction is received for the third time, the temperature is reduced to the heating temperature corresponding to the low gear. When the first input instruction is received for the fourth time, the temperature is increased to the heating temperature corresponding to the high gear. The sequential and cyclic response is carried out in the above-mentioned manner. The sequential and cyclic response steps of the second input instruction are the same as those of the first input instruction, which will not be described here. During the massage process, the mode adjusting module automatically adjusts the heating level and / or the vibration level of the massage device 2 according to the working time length of the massage device 2, so as to avoid the harm to the user's body due to the long massage or heating time.

[0060] The multifunctional massager of the present application has the advantages of small size and portability, and can be applied to multiple body parts. A plurality of massage modes and heating modes are provided, and to avoid long-time use, the massage level can be automatically adjusted according to the working time length of the massage device 2, which helps to relieve muscle fatigue, promote blood circulation and meet the needs of the user.

[0061] On the basis of Embodiment 1, see Figure 2The elastic adjusting belt 1 comprises a covering part 5 for wrapping the part to be massaged, the covering part 5 extends outward at two opposite diagonal positions to form a protruding part 4, and the covering part 5 is integrally connected with a tightening belt 3 at the side opposite to the protruding part 4, and the length of the tightening belt 3 is greater than that of the protruding part.

[0062] The working principle of the above technical solution is that: the existing massage device is generally symmetrically arranged, which can be closely arranged on the knee joint and elbow joint to massage. However, when the shoulder joint is massaged, it cannot be closely arranged on the shoulder joint, resulting in poor massage effect. The covering part 5 is adopted, and the covering part 5 extends outward at two opposite diagonal positions to form a protruding part 4, and the covering part 5 is integrally connected with a tightening belt 3 at the side opposite to the protruding part 4, and the length of the tightening belt 3 is greater than that of the protruding part 4. When the shoulder joint is massaged, the covering part 5 is wrapped around the part to be massaged, and then the tightening belt 3 on both sides is pulled to stretch the tightening belt 3 forward to achieve the required pressure, and then the tightening belt 3 is fixed at the protruding part opposite to it, which can be fixed by magic tape to realize the fixation of the multifunctional massager.

[0063] The above technical solution has the following beneficial effects: the present application can be applied to the knee joint, elbow joint and shoulder joint, and can be closely arranged on the part to be massaged during use, thereby improving the massage efficiency and being convenient and easy to use.

[0064] On the basis of embodiment 1, the massage device further comprises a shell 6, a battery and a control panel 7, the shell 6 is internally provided with a cavity, and the heating assembly, the vibration assembly, the control unit and the battery are located in the cavity inside the shell;

[0065] The control panel 7 is arranged on the upper surface of the shell 6, and the control panel 7 is provided with an on / off button 8, a vibration level selection button 9, a heating level selection button 10 and a charging port, and the on / off button 8, the vibration level selection button 9, the heating level selection button 10 and the charging port are connected with the control unit.

[0066] The shell 6 is preferably rectangular. The heating assembly, the vibration assembly, the control unit, the battery and other components are placed in the cavity of the shell 6, so that these modules can be conveniently managed and controlled to ensure their coordinated work. In order to facilitate the use of the user, the control panel 7 of the massager is arranged on the upper surface of the shell 6. The control panel 7 has a plurality of buttons and indicator lights, including an on / off button 8, a massage mode selection button 9, a heating mode selection button 10, and a charging port, etc. The above-mentioned buttons and indicator lights can be directly connected to each module through the control unit to realize the switching and adjustment of various functions. The size and shape of all buttons and ports can be set as needed to ensure that the user can easily and safely operate during use. In addition, when arranging, all buttons and ports can be placed in an easily accessible position, so that the user experience can be more comfortable.

[0067] The beneficial effects of the above technical solution are: the present application integrates multiple functions on the control panel, so that the user can use it without too many learning operation steps. The user can see the current settings and status and change them at any time as needed.

[0068] On the basis of embodiment 1, the heating assembly is a heating pad, and the heating pad is detachably connected to the covering part.

[0069] The working principle and beneficial effects of the above technical solution are: the present application uses a heating pad, and the heating pad is detachably connected to the covering part, which has a large contact area and is easy to clean. The size of the heating pad can be set as needed.

[0070] On the basis of embodiment 1, the mode adjustment module includes a data acquisition submodule, a limit duration determination submodule, a judgment submodule, and a mode switching submodule.

[0071] The data acquisition submodule is used to acquire the heating level and / or vibration level of the current massager, and the working duration corresponding to the heating level and / or vibration level;

[0072] The limit duration determination submodule is used to determine the limit duration according to the current vibration level and / or heating level;

[0073] The judgment submodule is used to judge whether the working duration reaches the limit duration;

[0074] The mode switching submodule is configured to: when the working duration reaches the limit duration, the current vibration level and / or heating level is switched to a vibration level and / or heating level one level lower than it, and the limit duration is recalculated according to the current vibration level and / or heating level;

[0075] If the first input instruction or the second input instruction is not detected within the limit duration after the switching, the heating level and / or the vibration level are switched again when the working duration of the vibration level and / or the heating level after the switching reaches the limit duration, and the limit duration is recalculated until the heating level and / or the vibration level reach the first level, and then the massager is turned off.

[0076] If the first input instruction or the second input instruction is received within the current limit duration, the heating level and / or the vibration level are switched to the initial heating level and / or the initial vibration level.

[0077] The working principle of the technical solution is that the mode adjustment module of the application includes a data acquisition submodule, a limit duration determination submodule, a judgment submodule, and a mode switching submodule. The data acquisition submodule receives and acquires the heating level and / or the vibration level of the current massager, and simultaneously acquires the working duration corresponding to the two levels. These information will be used by the subsequent modules to make appropriate mode adjustment. Then the limit duration determination submodule calculates the corresponding limit duration according to the acquired heating level and / or vibration level. For users who need to use the massager for a long time, the limit duration is set, and through the limit duration, it can be ensured that the massager will not exceed the set maximum working time during operation, reducing the harm of long-time use of the massager. The judgment submodule judges whether the current working duration has reached the limit duration. If it has reached, mode adjustment is needed. The mode switching submodule is set to switch the current vibration level and / or heating level to the vibration level and / or heating level of the next lower level when the working duration reaches the limit duration. After the level is switched, the limit duration determination submodule will recalculate the limit duration according to the switched heating level and / or vibration level. And within the limit duration after the switching, any triggering of the first input instruction or the second input instruction is monitored. If no triggering of any instruction is detected when the working duration of the vibration level and / or the heating level after the switching reaches the limit duration, the mode switching submodule will switch the heating level and / or the vibration level again when the working duration reaches the new limit duration, until the heating level and / or the vibration level reach the first level, and then the massager is completely turned off. If the user wants to massage with the initial heating level and / or vibration level, the first input instruction or the second input instruction can be sent, and when the mode adjustment module receives the first input instruction or the second input instruction, the heating level and / or the vibration level are switched to the initial heating level and / or the initial vibration level, meeting the user's demand.

[0078] The beneficial effects of the above technical solution: for users who need to use the massager for a long time, the application can automatically adjust the vibration level and heating level according to the working time of the massager. The method of adjusting the above mode can prolong the massage time to the maximum extent while protecting the user from being hurt, and meet the needs of the user; it can also avoid the massager running in a high-intensity working state for a long time, effectively prolonging the service life of the equipment.

[0079] On the basis of embodiment 1, the massager further comprises a pressure sensing module and a temperature sensing module, the pressure sensing module is used for monitoring the pressure applied by the massage area to the massager; the temperature sensing module is used for monitoring the temperature in the massage area;

[0080] The step of determining the limit time length according to the current vibration level and / or heating level comprises:

[0081] Based on the preset level weight library, the safety time lengths corresponding to the heating level and the vibration level are weighted calculated to obtain the limit time length; wherein,

[0082] The level weight library stores the safety time lengths corresponding to each heating level and vibration level and the corresponding basic weights;

[0083] Determine whether the pressure value and / or temperature value in the current massage area exceeds the first threshold and / or the second threshold, when the pressure value and / or temperature value exceeds the first threshold and / or the second threshold, dynamically adjust the weight of each vibration level and / or heating level.

[0084] The working principle and beneficial effects of the above technical solution: the application weights the safety time lengths corresponding to the heating level and the vibration level through the preset level weight library, so as to obtain the limit time length. The level weight library stores the safety time length and the basic weight of each heating level and vibration level. The weight and time length are formulated according to the safety standard of the massager. The calculation formula of the limit time length is as follows:

[0085] Limit time length=(heating level weight*heating safety time length+ vibration level weight*vibration safety time length) / (heating level weight+vibration level weight).

[0086] Meanwhile, the pressure sensing module of the massager monitors the pressure applied by the massaging area on the massager, i.e. the pressure applied by the user when fixing the massager at the part to be massaged; the temperature sensing module monitors the temperature in the massaging area in real time. When the pressure value exceeds the first preset threshold, the weight of the vibration level is increased, for example, from 0.3 to 0.4; when the temperature value exceeds the first preset threshold, the weight of the heating level is reduced, for example, from 0.8 to 0.7, and the specific adjustment value can be set as needed. For the pressure sensing module and the temperature sensing module, the pressure sensing module can be set at a position away from the vibration center of the massager, and the temperature sensing module can be set at a position in contact with the user's massaging part. The specific position can be set as needed.

[0087] On the basis of Embodiment 1, the control panel is further provided with a display panel 11 and a cycle button 12, the display panel 11 and the cycle button 12 are connected with the control unit, and the display panel 11 is used to display the heating level and / or the vibration level of the massaging device;

[0088] The control unit is further used to adjust the display content of the display panel according to the first input instruction or the second input instruction; and in response to the third input instruction, the heating level of the heating assembly and the vibration level of the vibration assembly are automatically switched in a sequential cycle.

[0089] The working principle of the above technical solution is that the control unit of the present application first analyzes the received first input instruction or second input instruction to determine the vibration intensity or heating temperature, and then displays the content capable of identifying the current working level of the massaging device 2 on the display panel 11 according to the vibration intensity or heating temperature. For example, the corresponding vibration level and heating level can be displayed in the form of text in the specified area of the display panel; or the heating level and vibration level can be identified by different colors according to the mapping relationship between the vibration level and the color and the mapping relationship between the heating temperature and the color. In order to distinguish the vibration level and the heating level, the vibration level and the heating level can be displayed at different areas of the display panel 11. For example, when the massage intensity is low, green is displayed; when the massage intensity is medium, blue is displayed; and when the massage intensity is high, red is displayed. Similarly, when the heating temperature is low, green is displayed; when the heating temperature is medium, blue is displayed; and when the heating temperature is high, blue is displayed. The present application is further provided with a cycle button 12, and after the user presses the cycle button 12, the massager will switch the heating level of the heating assembly and the vibration level of the vibration assembly in a sequential cycle. The switching time can be determined as needed, which will not be described here.

[0090] The beneficial effects of the above technical solutions are that when the user adjusts the intensity, the color on the display panel will immediately change, providing instant feedback. Not only does this enhance the user experience, but it also makes the operation more intuitive.

[0091] On the basis of Embodiment 1, an electric quantity monitoring sensor is further arranged in the shell, and the control unit is further configured to calculate the percentage of the remaining battery electric quantity according to the output signal of the electric quantity monitoring sensor and adjust the display content of the display panel according to the percentage of the remaining battery electric quantity.

[0092] The working principle of the above technical solutions is that the control unit calculates the percentage of the remaining battery electric quantity according to the output signal of the electric quantity monitoring sensor and controls the electric quantity to adjust the display content of the display panel according to the percentage of the remaining battery electric quantity. For example, when the power is turned on, the area of the display panel for displaying the electric quantity is constant, and when the massager is low on power, it flashes green; when charging, the battery electric quantity indication area gradually lights up, and when fully charged, all the battery electric quantity indication areas light up.

[0093] The beneficial effects of the above technical solutions are that the application not only enhances the user experience, but also makes the operation more intuitive.

[0094] Embodiment 2 provides a control method of a multifunctional massager, as shown in Figure 3 , comprising the following steps:

[0095] receiving a first input instruction or a second input instruction;

[0096] sequentially and cyclically responding to the first input instruction or the second input instruction to switch the heating level or the vibration level of the heating assembly or the vibration assembly;

[0097] obtaining the working time length of each heating level and / or vibration level;

[0098] automatically adjusting the heating level and / or vibration level of the massaging device 2 according to the working time length of the massaging device 2.

[0099] The working principle of the above technical solutions is that when the mode switching module receives the first input instruction or the second input instruction, it will sequentially and cyclically respond to the first input instruction or the second input instruction to cyclically adjust the heating temperature of the heating assembly or the vibration intensity of the vibration assembly. The first input instruction and the second input instruction can be issued by the user by pressing the button, or can be an instruction issued by the mobile terminal APP. During the massage process, the mode adjustment module will automatically adjust the heating level and / or vibration level of the massaging device 2 according to the working time length of the massaging device 2, so as to avoid harm to the user's body due to too long massage or heating time.

[0100] The multifunctional massager has the advantages of small size and portability, and can be applied to multiple body parts. A plurality of massage modes and heating modes are provided, and the massage level is automatically adjusted according to the working time of the massager 2 to avoid long-time use, which helps to relieve muscle fatigue, promote blood circulation, and meet the needs of users.

[0101] On the basis of embodiment 2, referring to the figure, the step of automatically adjusting the heating level and / or vibration level of the massager 2 according to the working time of the massager 2 specifically comprises:

[0102] obtaining the current heating level and / or vibration level of the massager, and the working time corresponding to the heating level and / or vibration level;

[0103] determining the limit time according to the current vibration level and / or heating level;

[0104] judging whether the current working time reaches the limit time;

[0105] when the working time reaches the limit time, the current vibration level and / or heating level is switched to the vibration level and / or heating level one level lower than the current vibration level and / or heating level; and within the limit time after switching, it is judged whether there is a first input instruction or a second input instruction input;

[0106] if no first input instruction or second input instruction is received, when the working time of the switched vibration level and / or heating level reaches the limit time, the heating level and / or vibration level is switched again until the heating level and / or vibration level is one level, and then the massager is turned off;

[0107] if the first input instruction or the second input instruction is received within the current limit time, the heating level and / or vibration level is switched to the initial heating level and / or vibration level.

[0108] The working principle of the above technical solution is as follows: the massage device receives and obtains the heating level and / or vibration level of the current massage device, and simultaneously obtains the working time corresponding to the two levels; then, according to the obtained heating level and / or vibration level, the corresponding limiting time is calculated; then, it is judged whether the current working time has reached the limiting time. If it has reached, mode adjustment is needed; when the working time reaches the limiting time, the current vibration level and / or heating level is switched to a vibration level and / or heating level one level lower than it; finally, the limiting time is recalculated according to the switched heating level and / or vibration level, and whether there is a trigger of the first input instruction or the second input instruction is monitored in real time. If there is no trigger of any instruction during the working time of the switched vibration level and / or heating level, when the working time reaches the new limiting time, the heating level and / or vibration level is switched to a vibration level and / or heating level one level lower than it again, until the heating level and / or vibration level reaches one level, and then the massage device is completely turned off.

[0109] The beneficial effects of the above technical solution are as follows: for users who need to use the massage device for a long time, the vibration level and the heating level can be automatically adjusted according to the working time of the massage device, and the above mode adjustment method is adopted, so that the massage time is maximally prolonged while the user is protected from being hurt, and the needs of the user are met; the massage device can also be prevented from running in a high-intensity working state for a long time, and the service life of the device is effectively prolonged.

[0110] Obviously, those skilled in the art can make various modifications and variations to the present application without departing from the spirit and scope of the present application. Thus, if these modifications and variations of the present application belong to the scope of the claims of the present application and their equivalent technologies, the present application also intends to include these modifications and variations.

Claims

1. A multifunctional massager characterized by comprising: The massage device comprises an elastic adjusting belt and a massage device, wherein, The elastic adjusting belt is used to fix the massage device on a part to be massaged; The massage device comprises a heating assembly, a vibration assembly and a control unit, the heating assembly and the vibration assembly are connected with the control unit, and the control unit comprises a mode switching module and a mode adjusting module; The mode switching module is used to receive a first input instruction or a second input instruction and sequentially cycle in response to the first input instruction or the second input instruction respectively, so as to switch the heating level or the vibration level of the heating assembly or the vibration assembly; The mode adjusting module is used to automatically adjust the heating level and / or the vibration level of the massage device according to the working time length of the massage device; The mode adjusting module comprises a data acquisition submodule, a limit time length determination submodule, a judgment submodule and a mode switching submodule; The data acquisition submodule is used to acquire the heating level and / or the vibration level of the current massage device and the working time length corresponding to the heating level and / or the vibration level; The limit time length determination submodule is used to determine the limit time length according to the current vibration level and / or the heating level; The judgment submodule is used to judge whether the working time length reaches the limit time length; The mode switching submodule is configured to: when the working time length reaches the limit time length, the current vibration level and / or the heating level is switched to a vibration level and / or a heating level one level lower than the current vibration level and / or the heating level, and the limit time length is recalculated according to the current vibration level and / or the heating level; If the first input instruction or the second input instruction is not detected within the switched limit time length, when the working time length of the switched vibration level and / or the heating level reaches the limit time length, the heating level and / or the vibration level is switched again, and the limit time length is recalculated, until the heating level and / or the vibration level is one level, and then the massage device is turned off; If the first input instruction or the second input instruction is received within the current limit time length, the heating level and / or the vibration level is switched to the initial heating level and / or the initial vibration level; The massage device further comprises a pressure sensing module and a temperature sensing module, the pressure sensing module is used to monitor the pressure applied by the massage area to the massage device, and the temperature sensing module is used to monitor the temperature in the massage area; The step of determining the limit time length according to the current vibration level and / or the heating level specifically comprises: Based on a preset level weight library, the safety time lengths corresponding to the heating level and the vibration level are weighted to obtain the limit time length; wherein, The level weight library stores the safety time lengths corresponding to each heating level and vibration level and the corresponding basic weights; It is determined whether the pressure value and / or the temperature value in the current massage area exceeds the first threshold and / or the second threshold, and when the pressure value and / or the temperature value exceeds the first threshold and / or the second threshold, the weights of each vibration level and / or heating level are dynamically adjusted.

2. The multifunctional massager according to claim 1, wherein The elastic adjusting belt comprises a covering part for wrapping the part to be massaged, the covering part extends outward at two opposite diagonal positions to form a protruding part, and the covering part is integrally connected with a tightening belt on the side opposite to the protruding part, and the length of the tightening belt is greater than the length of the protruding part.

3. The multifunctional massager according to claim 2, wherein The massage device further comprises a shell, a battery and a control panel, the shell is internally provided with a cavity, and the heating assembly, the vibration assembly, the control unit and the battery are located in the cavity inside the shell. The control panel is arranged on the upper surface of the shell, and the control panel is provided with an on / off button, a vibration level selection button, a heating level selection button and a charging port, and the on / off button, the vibration level selection button, the heating level selection button and the charging port are connected with the control unit.

4. The multi-functional massager according to claim 3, wherein The heating assembly is a heating pad which is detachably connected to the covering part.

5. The multi-functional massager according to claim 3, wherein The control panel is further provided with a display panel and a cycle button, and the display panel and the cycle button are connected with the control unit, the display panel is used for displaying the current heating level and / or vibration level of the massage device; The control unit is further used for adjusting the display content of the display panel according to the first input instruction or the second input instruction, and responding to the third input instruction to time-switch the heating level of the heating assembly and the vibration level of the vibration assembly in a sequential cycle mode.

6. The multi-functional massager according to claim 3, wherein The shell is further provided with a power monitoring sensor, and the control unit is further used for calculating the remaining power percentage of the battery according to the output signal of the power monitoring sensor, and adjusting the display content of the display panel according to the power percentage.

Citation Information

Patent Citations

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