Electrical stimulation massage equipment and electrical stimulation massage system
By introducing communication, storage, processing and pulse output components into the electrical stimulation massage equipment, and receiving and analyzing massage techniques files from the server, the electrical stimulation massage equipment can dynamically update the massage techniques, solving the problem of single techniques of existing equipment and achieving a richer and more flexible massage experience.
Patent Information
- Application Number
- CN202311602836.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-27
- Publication Date
- 2025-05-27
AI Technical Summary
The massage techniques of existing electrical stimulation massage equipment are fixed and unchanged, resulting in a single technique and cannot meet the diverse massage needs of users.
An electrical stimulation massage device is designed, including a communication unit, a storage unit, a processor and a pulse output unit. It can receive target massage technique files from the server, analyze and store these data, determine massage technique parameters according to the mapping relationship, and output electrical pulses, thereby realizing dynamic updates of various massage techniques.
By receiving and analyzing new massage technique files, the electrical stimulation massage device can output a variety of new massage techniques, improving the richness and flexibility of massage techniques in the equipment and meeting the diverse needs of users.
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Figure CN120037579A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of massage devices, and in particular, to an electro-stimulating massage device and an electro-stimulating massage system. Background Art
[0002] With the continuous improvement of people's living standards, people have more and more needs. Electro-stimulating massage devices are widely used because they can relieve fatigue and massage and relax through electro-stimulation. At present, a variety of massage techniques can be set on electro-stimulating massage devices, and users can select one from a variety of massage techniques for massage according to their needs. However, since the massage techniques on electro-stimulating massage devices are fixed, the massage techniques on the massage devices are relatively single. Summary of the Invention
[0003] Embodiments of this application disclose an electro-stimulating massage device and an electro-stimulating massage system for improving the richness of massage techniques in the electro-stimulating massage device.
[0004] In a first aspect, embodiments of this application disclose an electro-stimulating massage device, including a communication unit, a storage unit, a processor, and a pulse output unit;
[0005] The communication unit receives a target massage technique file from a server;
[0006] The processor parses the target massage technique file to obtain target massage technique data;
[0007] The memory stores the target massage technique data;
[0008] The processor determines target massage technique parameters corresponding to the target massage technique data according to the mapping relationship between the massage technique data stored in the memory and the massage technique parameters;
[0009] The pulse output unit outputs an electric pulse according to the target massage technique parameters.
[0010] In a second aspect, embodiments of this application disclose an electro-stimulating massage system, including a server and an electro-stimulating massage device, where:
[0011] The server is configured to send a target massage technique file to the electro-stimulating massage device;
[0012] The electro-stimulating massage device is configured to parse the target massage technique file to obtain target massage technique data, store the target massage technique data, determine target massage technique parameters corresponding to the target massage technique data according to the mapping relationship between the stored massage technique data and the massage technique parameters, and output an electric pulse according to the target massage technique parameters.
[0013] In the embodiments of the present application, the electrostimulation massage device includes a communication unit, a storage unit, a processor, and a pulse output unit. The communication unit receives a target massage technique file from a server. The processor parses the target massage technique file to obtain target massage technique data. The memory stores the target massage technique data. The processor determines the target massage technique parameters corresponding to the target massage technique data according to the mapping relationship between the massage technique data stored in the memory and the massage technique parameters. The pulse output unit outputs an electric pulse according to the target massage technique parameters. It can be seen that the electrostimulation massage device can receive a new massage technique file, thereby parsing to obtain new massage technique parameters and outputting new massage techniques, rather than only the massage techniques in the electrostimulation massage device, which can improve the richness of the massage techniques in the electrostimulation massage device. Description of the Drawings
[0014] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are only some embodiments of the present application. For those skilled in the art, without creative efforts, other drawings can be obtained according to these drawings.
[0015] Figure 1 It is a schematic diagram of a system architecture disclosed in the embodiments of the present application;
[0016] Figure 2 It is a schematic diagram of the structure of an electrostimulation massage device disclosed in the embodiments of the present application;
[0017] Figure 3 It is a schematic diagram of a low-frequency electric pulse signal disclosed in the embodiments of the present application;
[0018] Figure 4 It is a schematic diagram of an intermediate-frequency electric pulse signal disclosed in the embodiments of the present application;
[0019] Figure 5 It is a schematic diagram of the envelope of an intermediate-frequency electric pulse signal disclosed in the embodiments of the present application;
[0020] Figure 6 It is a schematic diagram of an alternately output waveform disclosed in the embodiments of the present application;
[0021] Figure 7 It is a schematic diagram of a dead zone disclosed in the embodiments of the present application;
[0022] Figure 8 It is a schematic diagram of another low-frequency electric pulse signal disclosed in the embodiments of the present application;
[0023] Figure 9 It is a schematic diagram of yet another low-frequency electric pulse signal disclosed in the embodiments of the present application;
[0024] Figure 10 It is a schematic diagram of the pulse width of an intermediate frequency electrical pulse signal disclosed in an embodiment of the present application;
[0025] Figure 11 It is a schematic diagram of a setting interface disclosed in an embodiment of the present application;
[0026] Figure 12 It is a schematic diagram of another setting interface disclosed in an embodiment of the present application;
[0027] Figure 13 It is a schematic diagram of the structure of an electro - stimulation massage system disclosed in an embodiment of the present application. Detailed implementation manners
[0028] In order to enable those skilled in the art to better understand the solution of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application.
[0029] An embodiment of the present application discloses an electro - stimulation massage device and an electro - stimulation massage system, which are used to improve the richness of massage techniques in the electro - stimulation massage device. The following will be described in detail respectively.
[0030] To better understand the embodiments of the present application, the related technologies will be described first below.
[0031] Electro - stimulation massage devices can perform massage by directly contacting the user's skin through dry electrodes or gel patches. Usually, there are multiple different modes / techniques / prescriptions (hereinafter collectively referred to as massage techniques) in an electro - stimulation massage device. Each massage technique has a corresponding logic code for the waveform output logic. These logic codes are solidified in the electro - stimulation massage device in the form of firmware, such as being solidified in the micro - control unit (MCU) or the internal storage medium of the electro - stimulation massage device. When the electro - stimulation massage device outputs electrical pulses, it will output corresponding electrical pulse waveforms according to the previously stored logic codes.
[0032] When a user needs to add new massage techniques, it is necessary to modify the logic codes again and generate firmware before it can be realized. However, since the massage techniques of the electro - stimulation massage device are solidified and burned in the electro - stimulation massage device in the form of logic codes, after the electro - stimulation massage device leaves the factory, the massage techniques therein have been solidified and cannot be modified or extended secondly, resulting in relatively single massage techniques on the massage device.
[0033] To solve the above technical problems, the present application discloses an electrostimulation massage device, which includes a communication unit, a storage unit, a processor, and a pulse output unit. The communication unit receives a target massage technique file from a server. The processor parses the target massage technique file to obtain target massage technique data. The memory stores the target massage technique data. The processor determines the target massage technique parameters corresponding to the target massage technique data according to the mapping relationship between the massage technique data stored in the memory and the massage technique parameters. The pulse output unit outputs an electrical pulse according to the target massage technique parameters. It can be seen that the electrostimulation massage device can receive a new massage technique file, thereby parsing to obtain new massage technique parameters and outputting new massage techniques, rather than only the massage techniques in the electrostimulation massage device, which can improve the richness of the massage techniques in the electrostimulation massage device.
[0034] To better understand the embodiments of the present application, the system architecture will be described first below.
[0035] Please refer to Figure 1 , Figure 1 which is a schematic diagram of a system architecture disclosed in the embodiments of the present application. As Figure 1 shown, the system architecture may include at least one electrostimulation massage device 101 ( Figure 1 one electrostimulation massage device is schematically shown in Figure 1 ), a server 102, and at least one terminal device 103 (
[0036] one terminal device is schematically shown in
[0037] The electrostimulation massage device 101 and the server 102 can be connected wirelessly. The server 102 and the terminal device 103 can be connected wirelessly or can be connected wirelessly.
[0038] It should be noted that Figure 1 the network architecture shown is not limited to including the electrostimulation massage devices and / or terminal devices shown in the figure, and may also include other electrostimulation massage devices and / or terminal devices not shown in the figure. Specifically, the present application will not list them one by one here.
[0039] The above-mentioned electrical stimulation massage device can be an electrical stimulation lumbar massager, an electrical stimulation cervical massager, an electrical stimulation massage chair, etc., which are massage devices that can perform massage through electrical stimulation.
[0040] The above-mentioned terminal device is a terminal device that can install a client. The terminal device can be a handheld terminal, a Very Small Aperture Terminal (VSAT), a laptop computer, a Customer Premise Equipment (CPE) laptop computer, a cellular phone, a SmartPhone, a Personal Digital Assistant (PDA) computer, a tablet computer, a handheld device, a laptop computer, a cordless phone, a wearable device (such as a smart watch, a smart bracelet, a pedometer, etc.). The present application does not limit the specific technologies and specific device forms adopted by the above-mentioned terminal devices.
[0041] The above-mentioned server is a server corresponding to the electrical stimulation massage device.
[0042] Please refer to Figure 2 , Figure 2 which is a schematic structural diagram of an electrical stimulation massage device disclosed in an embodiment of the present application. As Figure 2 shown, the electrical stimulation massage device may include a communication unit, a storage unit, a processor, and a pulse output unit, where:
[0043] The processor is respectively connected to the communication unit, the storage unit, and the pulse output unit.
[0044] It should be understood that the above connection can be understood as an electrical connection.
[0045] The communication unit can receive a target massage technique file from the server, and then can send the target massage technique file to the processor. After receiving the target massage technique file, the processor can parse the target massage technique file to obtain target massage technique data, and then can send it to the memory.
[0046] The communication unit is a component with communication functions. The communication unit may include a remote communication module and / or a short-range communication module. The remote communication module is a module for performing long-distance communication. The short-range communication module is a module for performing short-distance communication. The short-range communication module may include Bluetooth, Near Field Communication (NFC), WiFi, ZigBee, etc. The communication unit can receive the target massage technique data through the remote communication module or the short-range communication module.
[0047] After the storage unit receives the target massage technique data, it can store the target massage technique data so that when the user needs to use the massage technique corresponding to the target massage technique data later, the processor can obtain the target massage technique data from the storage unit.
[0048] The storage unit can be a memory, a storage medium, or other components that can store information.
[0049] When the user needs to use the massage technique corresponding to the target massage technique data, the processor can first obtain the target massage technique data stored in the storage unit and the mapping relationship between the massage technique data and the massage technique parameters from the storage unit. Then, according to the mapping relationship between the massage technique data and the massage technique parameters, the processor can determine the target massage technique parameters corresponding to the target massage technique data. Then the processor can send the target massage technique parameters to the pulse output unit.
[0050] The target massage technique data is data encoded or processed according to the target massage technique parameters. Since the encoding or processing of the target massage technique data is not performed by the electrical stimulation massage device, the electrical stimulation massage device cannot determine the corresponding encoding method or processing method, and thus cannot determine the target massage technique parameters corresponding to the target massage technique data according to the corresponding encoding method or processing method. Therefore, in order to ensure that the electrical stimulation massage device can process the target massage technique data to obtain the correct target massage technique parameters, the mapping relationship between the massage technique data and the massage technique parameters can be stored in the electrical stimulation massage device in advance.
[0051] Exemplarily, the target massage technique data can be binary data encoded by the target massage technique parameters, octal data encoded by the target massage technique parameters, or hexadecimal data encoded by the target massage technique parameters.
[0052] After the pulse output unit receives the target massage technique parameters, it can output electrical pulses according to the target massage technique parameters.
[0053] In one case, the pulse output unit can include M electrode patches. The electrode patches can directly or indirectly contact the user's skin. The pulse output unit can output electrical pulses to the user through the electrode patches to massage the user. M is an even number greater than 0.
[0054] It should be understood that determining the target massage technique parameters corresponding to the target massage technique data can be understood as determining the values of the target massage technique parameters corresponding to the target massage technique data. Outputting electrical pulses according to the target massage technique parameters can be understood as outputting electrical pulses according to the values of the target massage technique parameters.
[0055] It can be seen that the electrical stimulation massage device can receive a new massage technique file, thereby parsing to obtain new massage technique parameters and outputting a new massage technique, rather than only the massage techniques in the electrical stimulation massage device, which can improve the richness of the massage techniques in the electrical stimulation massage device. In addition, since the electrical stimulation massage device stores the mapping relationship between the massage technique data and the massage technique parameters, the correctness of the new massage technique output by the electrical stimulation massage device can be ensured. Further, since the electrical stimulation massage device can obtain a new massage technique, the user does not need to frequently replace the electrical stimulation massage device because of the need to use a new massage technique, thereby improving the user experience.
[0056] In some embodiments, the target massage technique data may include multiple groups of data, and the target massage technique parameters may include multiple parameters. These multiple groups of data correspond one-to-one with these multiple parameters, and these multiple groups of data can be arranged in a preset order.
[0057] Each group of data in the multiple groups of data included in the target massage technique data may include one or more data. This one or more data is encoded or processed by a corresponding parameter. The number of bits (bytes) included in each group of data in these multiple groups of data may be the same or different. In the case where the number of bits included in each group of data in these multiple groups of data is the same, the electrical stimulation massage device can determine the multiple groups of data in the target massage technique data according to the number of bits, which can improve the data processing efficiency.
[0058] When determining the massage technique data according to the massage technique parameters, the arrangement order of these multiple parameters is fixed and unchanged. That is, the values of the massage technique parameters can change, but the arrangement order of the massage technique parameters will not change. This arrangement order can be a preset order. Therefore, the multiple groups of data corresponding to these multiple parameters in the determined massage technique parameters can also be arranged in a preset order. The electrical stimulation massage device can store the preset order. When determining the target massage technique parameters corresponding to the target massage technique data, it can first determine the multiple groups of data included in the target massage technique data, and then, according to the preset order and the one-to-one correspondence between these multiple groups of data and these multiple parameters, determine each group of parameters corresponding to each parameter among these multiple parameters, and further determine the value of each parameter according to each group of parameters corresponding to each parameter. It can be seen that since the multiple groups of data are arranged in a preset order, the processing time for determining the multiple parameters corresponding to the multiple groups of data can be reduced, thereby improving the data processing efficiency. In addition, since these multiple groups of data correspond one-to-one with these multiple parameters, it can be ensured that each group of data can determine the value of a corresponding parameter, and the situation of determining the value of this parameter as the value of that parameter can be avoided, thereby ensuring the accuracy of the determined parameter values.
[0059] It can be seen that since multiple sets of data in the target massage technique data are arranged in a preset order and the multiple sets of data correspond to multiple parameters one by one, the electrical stimulation massage device can parse the multiple sets of data in the preset order to obtain multiple parameters, which can ensure the accuracy of the parsed massage technique parameters, thereby improving the accuracy of the obtained massage technique.
[0060] Exemplarily, when the number of bits included in each set of data in the multiple sets of data is the same, the mapping relationship between the massage technique data and the massage technique parameters can be as shown in Table 1:
[0061] Group information 1、…、n n + 1, …, 2n 2n + 1, …, 3n … Parameter information Parameter 1 Parameter 2 Parameter 3 …
[0062] Table 1 Mapping Relationship between Massage Technique Data and Massage Technique Parameters
[0063] As shown in Table 1, each set of data in the multiple sets of data may include n-bit data. The data from the 1st bit to the nth bit in the massage technique data corresponds to parameter 1, the data from the (n + 1)th bit to the 2nth bit in the massage technique data corresponds to parameter 2, and so on. n is an integer greater than or equal to 1.
[0064] Exemplarily, when the number of bits included in each set of data in the multiple sets of data is different, the mapping relationship between the massage technique data and the massage technique parameters can be as shown in Table 2:
[0065]
[0066]
[0067] Table 2 Mapping Relationship between Massage Technique Data and Massage Technique Parameters
[0068] As shown in Table 2, the first set of data in the multiple sets of data may include a-bit data, the second set of data may include (b - a)-bit data, the third set of data may include (c - b)-bit data,.... The data from the 1st bit to the a-th bit in the massage technique data corresponds to parameter 1, the data from the (a + 1)th bit to the b-th bit in the massage technique data corresponds to parameter 2, the data from the (b + 1)th bit to the c-th bit in the massage technique data corresponds to parameter 2,.... a is an integer greater than or equal to 1, b is an integer greater than a, and c is an integer greater than b.
[0069] It should be understood that the 1st bit can be the lowest bit in the massage technique data or the highest bit in the massage technique data.
[0070] Among them, the parameter information can be the name of the parameter, the identifier of the parameter, or other information that can uniquely identify the parameter.
[0071] Exemplarily, the massage technique data can be X1 X 2 …X m where m is an integer greater than 1. It can be seen that the massage technique data includes m bits of data, and these m bits of data are X in order from the highest bit to the lowest bit 1 、X 2 、…、X m ,X i can be a binary number, an octal number, a hexadecimal number, or a number in other bases. i = 1, 2, …, m.
[0072] It should be understood that the above is an exemplary description of the mapping relationship between the massage technique data and the massage technique parameters, and does not constitute a limitation thereto.
[0073] In some embodiments, the above-mentioned multiple parameters may include one or more first parameters, and these one or more first parameters are parameters for defining the modulation envelope.
[0074] An electrical pulse signal may include one or more envelopes. An envelope may include one or more pulse signals. These one or more first parameters are parameters for defining the modulation envelope, that is, parameters for determining the envelope.
[0075] The electro-stimulating massage device may be a low-frequency device or an intermediate-frequency device. When the electro-stimulating massage device is a low-frequency device, the electrical pulse signal output by the electro-stimulating massage device is a low-frequency electrical pulse signal. Exemplarily, in medicine, an electrical pulse signal with a frequency below 1000 Hz is called a low-frequency electrical pulse signal, and the method of using a low-frequency electrical pulse signal to treat diseases is called low-frequency electrotherapy. When the electro-stimulating massage device is an intermediate-frequency device, the electrical pulse signal output by the electro-stimulating massage device is an intermediate-frequency electrical pulse signal. Exemplarily, in medicine, an electrical pulse signal with a frequency between 1000 Hz and 100000 Hz is called an intermediate-frequency electrical pulse signal, and the method of using an intermediate-frequency electrical pulse signal to treat diseases is called intermediate-frequency electrotherapy.
[0076] When the electro-stimulating massage device is a low-frequency device, these one or more first parameters may include one or more of the envelope type, boost time, and operation time. The envelope type is the voltage change type of the envelope. The envelope type of the low-frequency electrical pulse signal may be a sine wave, a triangular wave, a sawtooth wave, constant voltage, rise and hold, etc. The boost time (i.e., rise time) of the envelope is the time for the voltage of the envelope to rise from a low voltage to the highest voltage. The operation time of the envelope is the duration of the voltage output of the envelope. Exemplarily, please refer to Figure 3 , Figure 3 is a schematic diagram of a low-frequency electrical pulse signal disclosed in an embodiment of the present application. As Figure 3As shown, the type of the envelope of the low-frequency electrical pulse signal is rising and holding. The boost time of the envelope is the time required for the voltage of the envelope to rise from a low voltage to the highest voltage, and the running time of the envelope is the duration during which the voltage output of the envelope is not a low voltage.
[0077] In the case where the electrostimulation massage device is an intermediate-frequency device, one or more of these first parameters may include one or more of the type, frequency, and number of executions of the envelope. The frequency of the envelope is the number of times the envelope completes a periodic change per unit time. The number of executions of the envelope is the number of times the envelope is continuously executed.
[0078] Exemplarily, please refer to Figure 4 , Figure 4 is a schematic diagram of an intermediate-frequency electrical pulse signal disclosed in an embodiment of the present application. As Figure 4 shown, the type of the envelope of the intermediate-frequency pulse signal is a triangular wave. The intermediate-frequency electrical pulse signal includes two envelopes, and the frequencies of these two envelopes are different. Correspondingly, the periods T of these two envelopes are different. The number of executions of the first envelope is 9, and the number of executions of the second envelope is 10.
[0079] Exemplarily, please refer to Figure 5 , Figure 5 is a schematic diagram of an envelope of an intermediate-frequency electrical pulse signal disclosed in an embodiment of the present application. As Figure 5 shown, the types of the envelopes of the intermediate-frequency electrical pulse signal are more than those of the low-frequency electrical pulse signal. This is because the intermediate frequency is directly adjusted by operation and has a more diverse shape, while the low frequency is controlled by a boost circuit, so it is necessary to control the boost time and speed.
[0080] It should be understood that the above is an exemplary description of the type of the envelope of the intermediate-frequency electrical pulse signal and does not limit the type of the envelope of the intermediate-frequency electrical pulse signal.
[0081] In some embodiments, the above-mentioned multiple parameters may include one or more second parameters, and one or more of these second parameters may include one or more of pulse amplitude, pulse width, and pulse frequency.
[0082] In the case where the electrostimulation massage device is a low-frequency device, one or more of these second parameters may include pulse width and / or pulse frequency. The pulse frequency is the frequency of the pulse, which is the number of times the pulse completes a periodic change per unit time. The pulse frequency is set by the user. Exemplarily, when the user sets the frequency of the pulse to 90, the frequency of the pulse is 90 Hz. In one case, the pulse width may be the width of the pulse. In another case, the pulse width may be pulse width information. The pulse width information may include information on pulse width variation. Exemplarily, the pulse width information may include a minimum pulse width of 5 us, a maximum pulse width of 25 us, a minimum pulse width maintained for 80 pulses, and the pulse width increasing by 1 us every 15 pulses after 80 pulses.
[0083] When the electro - stimulation massage device is a low - frequency device, these one or more second parameters may further include waveform morphology and / or pulse dead - zone carrier information. The waveform morphology is the form of pulse output. The waveform morphology can be single - side output, alternating output, etc. Exemplarily, please refer to Figure 6 , Figure 6 which is a schematic diagram of an alternating - output waveform disclosed in an embodiment of the present application. The pulse dead - zone carrier information may include the number of dead zones and the number of carriers. The number of dead zones is the quantity of dead zones. A dead zone is the region between a positive pulse and the next adjacent negative pulse. The number of carriers is the quantity of carriers. A carrier is a pulse in one period, which may include positive pulses and negative pulses. Exemplarily, please refer to Figure 7 , Figure 7 which is a schematic diagram of a dead zone disclosed in an embodiment of the present application. Exemplarily, please refer to Figure 8 , Figure 8 which is a schematic diagram of another low - frequency electrical pulse signal disclosed in an embodiment of the present application. As Figure 8 shown, the number of dead zones of this low - frequency electrical pulse signal is 5, and the number of carriers is 5.
[0084] When the electro - stimulation massage device is a low - frequency device, the above - mentioned multiple parameters may include a third parameter, and the third parameter may include idle time. The idle time is the time idle between adjacent massage techniques. Exemplarily, please refer to Figure 9 , Figure 9 which is a schematic diagram of another low - frequency electrical pulse signal disclosed in an embodiment of the present application. As Figure 9 shown, the idle time is the time idle between the envelopes corresponding to adjacent massage techniques.
[0085] When the pulse output unit includes M electrode pads, the third parameter may further include a channel group. The channel group is the electrode pads selected by the user for outputting electrical pulses among the M electrode pads. Exemplarily, assuming M is 4, and the 4 electrode pads are A, B, C, and D respectively. If the selected channel group by the user is the AB channel, the pulse output unit can output electrical pulses by controlling electrode pads A and B.
[0086] When the electro - stimulation massage device is an intermediate - frequency device, these one or more second parameters may include pulse width and / or pulse frequency. The pulse frequency is the frequency of the pulse, which is the number of times the pulse completes periodic changes per unit time. The pulse frequency is set by the user. Exemplarily, when the user sets the frequency of the pulse to 1000, the frequency of the pulse is 1000 Hz. The pulse width is the width of the pulse. Exemplarily, please refer to Figure 10 , Figure 10 which is a schematic diagram of the pulse width of an intermediate - frequency electrical pulse signal disclosed in an embodiment of the present application.
[0087] When the electro - stimulation massage device is an intermediate - frequency device, the above - mentioned multiple parameters may further include a third parameter, and the third parameter may include the number of executions per segment. The number of executions per segment is the number of repetitions of a single - segment technique when the target massage technique parameter includes multiple massage techniques, and a single - segment technique may include multiple massage techniques.
[0088] When the pulse output unit includes M electrode pads, the third parameter may further include a channel group. For a detailed description, reference may be made to the relevant description above.
[0089] Exemplarily, when the electro - stimulation massage device is a low - frequency device, the arrangement order of the multiple parameters may be in sequence: channel group, waveform morphology, pulse frequency, pulse width, pulse dead - zone carrier information, type of envelope, rise time of envelope, running time of envelope, and idle time.
[0090] Exemplarily, when the electro - stimulation massage device is an intermediate - frequency device and there is only one massage technique, the arrangement order of the multiple parameters may be in sequence: channel group, pulse width, pulse frequency, type of envelope, frequency of envelope, and number of executions of envelope. When the electro - stimulation massage device is an intermediate - frequency device and there are N massage techniques, the arrangement order of the multiple parameters may be in sequence: channel group, pulse width, pulse frequency, type of envelope 1, frequency of envelope 1, number of executions of envelope 1, …, type of envelope N, frequency of envelope N, number of executions of envelope N, and number of executions per segment. N is an integer greater than 1.
[0091] In some embodiments, the server stores a target massage technique file.
[0092] Since the target massage technique file is stored in the server, all electro - stimulation massage devices can obtain new massage techniques, which can improve the update efficiency and utilization rate of massage techniques. In addition, since the server stores various massage technique files, when a certain massage technique in the electro - stimulation massage device is not used for a long time or in the short term, the user can delete the corresponding massage technique data in the electro - stimulation massage device. When needed later, the user can obtain it again from the server through the first terminal device, which can avoid the situation of unnecessary storage and thus save the storage resources of the electro - stimulation massage device.
[0093] In one case, the server can actively send the target massage technique file to the electro - stimulation massage device. After the server detects the establishment of a communication connection with the electro - stimulation massage device, it can send the target massage technique file to the electro - stimulation massage device. In another case, the server can send the target massage technique file to the electro - stimulation massage device based on the request of the electro - stimulation massage device.
[0094] In some embodiments, the target massage technique file is generated by the terminal device.
[0095] The terminal device can generate a target massage technique file, and then send the target massage technique file to the server for storage.
[0096] The terminal device can be a terminal device dedicated to generating massage technique files. The terminal device can also be any terminal device capable of installing a client. In this case, a client dedicated to generating massage technique files is installed on the terminal device. The terminal device can display a setting interface for setting massage techniques. The setting interface includes the above-mentioned multiple parameters. The user can input the values of the above-mentioned multiple parameters in the technique setting interface by operating the terminal device, and then can generate a target massage technique file corresponding to the values of the above-mentioned multiple parameters based on the user's operation.
[0097] Exemplarily, please refer to Figure 11 , Figure 11 which is a schematic diagram of a setting interface disclosed in an embodiment of the present application. As Figure 11 shown, the setting interface is a low-frequency technique setting interface, and the interface can include multiple parameters of low-frequency electrical pulse signals, technique names, and technique identities (IDs). Exemplarily, please refer to Figure 12 , Figure 12 which is a schematic diagram of another setting interface disclosed in an embodiment of the present application. As Figure 12 shown, the setting interface is a medium-frequency technique setting interface.
[0098] It should be understood that the above is an exemplary description of the low-frequency technique setting interface and the medium-frequency technique setting interface, and is not intended to limit them.
[0099] It can be seen that the massage technique file can be generated as needed, which can improve the flexibility of massage technique generation and update. In addition, since the setting interface is developed and generated by R & D personnel, when the user needs to generate a massage technique file, the user only needs to input the required parameter values in the technique setting interface and then directly generate the massage technique file through simple operations, without the user having to understand the internal logic code, which can reduce the requirements for technique generation personnel, thereby improving the generation efficiency and universality of the massage technique file.
[0100] In some embodiments, the target massage technique file can be edited by the terminal device to modify the target massage technique data.
[0101] Users can not only edit and generate a target massage technique file on the terminal device, but also modify the generated target massage technique file through the massage technique setting interface, so as to modify the target massage technique data. It can be seen that the massage technique file is not fixed and can be adjusted according to needs, which can improve the flexibility of massage technique update. In addition, it is possible to avoid generating a new massage technique file when the massage technique data changes, which can reduce the number of massage technique files and thus save storage resources.
[0102] Based on Figure 1 the system architecture shown, please refer to Figure 13 , Figure 13 which is a schematic structural diagram of an electrostimulation massage system disclosed in an embodiment of the present application. As Figure 13 shown, the electrostimulation massage system may include a server and an electrostimulation massage device.
[0103] The server stores a target massage technique file and can send the target massage technique file to the electrostimulation massage device. After receiving the target massage technique file from the server, the electrostimulation massage device can parse the target massage technique data from the target massage technique file, that is, it can parse the target massage technique file to obtain the target massage technique data, and then store the target massage technique data. Furthermore, according to the mapping relationship between the stored massage technique data and the massage technique parameters, it can determine the target massage technique parameters corresponding to the target massage technique data and output electrical pulses according to the target massage technique parameters. Among them, for the processing process after the electrostimulation massage device receives the target massage technique data, reference can be made to the relevant descriptions above.
[0104] It can be seen that the server can send the newly stored massage technique file to the electrostimulation massage device, and the electrostimulation massage device can parse to obtain new massage technique parameters and output new massage techniques, which can ensure that the electrostimulation massage device can obtain the massage techniques in the server center and improve the richness of the massage techniques in the electrostimulation massage device.
[0105] In some embodiments, after establishing a communication connection with the electrostimulation massage device, the server can actively send the target massage technique file to the electrostimulation massage device. The target massage technique file can be the latest massage technique file stored by the server, and the server can recommend the latest massage techniques to the electrostimulation massage device. The target massage technique file can also be the massage technique file stored after the first time. The first time is the time when the last communication between the server and the electrostimulation massage device was interrupted. It can be seen that the server can recommend all the massage technique files stored after the last communication with the electrostimulation massage device to the electrostimulation massage device, so that the electrostimulation massage device can determine which massage technique files have been newly added by the server.
[0106] In some embodiments, after the electrostimulation massage device establishes a communication connection with the server, it may first send a retrieval request for obtaining a target massage technique file to the server. After receiving the retrieval request from the electrostimulation massage device, the server can send the target massage technique file to the electrostimulation massage device according to the retrieval request.
[0107] It can be seen that the server will only send the stored massage technique file to the electrostimulation massage device after receiving the retrieval request from the electrostimulation massage device, which can avoid sending the massage technique file to the electrostimulation massage device when the electrostimulation massage device does not need it, reduce unnecessary operations, and thus save communication resources, processing resources, and power consumption.
[0108] In some embodiments, the electrostimulation massage device may include a user interaction interface, and the electrostimulation massage device can send a retrieval request to the server according to a user operation received through the user interaction interface.
[0109] In the case where the user needs to download the target massage technique file from the server, if the user knows the information of the target massage technique file, the user can input the information of the target massage technique file on the user interaction interface and input a retrieval instruction for obtaining the target massage technique file to the electrostimulation massage device by operating the user interaction interface. After detecting the input retrieval instruction by the electrostimulation massage device, it can send a retrieval request to the server according to the retrieval instruction.
[0110] If the user does not know the information of the target massage technique file, the user can first input a first retrieval instruction for obtaining the technique information of the massage technique file in the server through the user interaction interface. After detecting the first retrieval instruction by the electrostimulation massage device, it can send a first retrieval request for obtaining the technique information of the massage technique file to the server. After receiving the first retrieval request from the electrostimulation massage device, the server can send the technique information of all or part of the stored massage technique files to the electrostimulation massage device. After receiving multiple pieces of technique information from the server, the electrostimulation massage device can display the multiple pieces of technique information. According to the multiple pieces of technique information, the user can select one or more required pieces of technique information from the multiple pieces of technique information through the user interaction interface. In the case where the electrostimulation massage device detects a selection operation of the target technique information from the multiple pieces of technique information, it can send a second retrieval request for the target massage technique file corresponding to the target technique information to the server. The second retrieval request includes the target technique information. After receiving the second retrieval request, the server can first obtain the stored target massage technique file according to the target technique information, and then send the target massage technique file to the electrostimulation massage device.
[0111] It can be seen that regardless of whether the user knows the information of the massage technique file, as long as the user has a need, the electrostimulation massage device can obtain the massage technique file from the server according to the user's operation, which can improve the user experience.
[0112] In some embodiments, the electrostimulation massage device may include a user interface. The electrostimulation massage device may also respond to an operation input by the user through the user interface to open the massage technique in the electrostimulation massage device, display the technique information of the massage technique stored in the electrostimulation massage device, and may respond to the user's selection operation on the target technique information in the displayed technique information, and determine the target massage technique data according to the target technique information.
[0113] The user can select the required massage technique from the massage techniques stored in the electrostimulation massage device through the user interface. The user can first perform an operation through the user interface to open the massage technique in the electrostimulation massage device. After the electrostimulation massage device detects this operation through the user interface, it can respond to this operation and display the technique information of the massage technique stored in the electrostimulation massage device. The user can select the technique information of the required massage technique from these technique information. When the electrostimulation massage device detects the user's selection operation on the target technique information in the technique information, it can respond to this selection operation and determine the target massage technique data according to the target technique information. It can be seen that the user can select the massage technique required for massage on the electrostimulation massage device according to the massage need, which can improve the user experience.
[0114] The technique information can be the technique name (i.e., the name of the technique), or the technique ID (i.e., the ID of the technique), or other information that can uniquely identify the technique.
[0115] In some embodiments, the electrostimulation massage system may further include a terminal device. The terminal device may include a setting interface. The terminal device may respond to the setting operation of the user through the setting interface and generate a target massage technique file.
[0116] The terminal device can be a terminal device dedicated to generating massage technique files. The terminal device can also be any terminal device capable of installing a client. At this time, a client dedicated to generating massage technique files is installed on the terminal device. The terminal device can display a setting interface for setting massage techniques. The user can make settings on the setting interface. The terminal device can respond to the setting operation of the user through the setting interface and generate a target massage technique file.
[0117] It can be seen that the user can set and generate a massage technique file according to the setting interface on the terminal device, which can improve the flexibility of massage technique generation and update, and improve the user experience.
[0118] In some embodiments, the terminal device may also send a target massage technique file to the server.
[0119] After the terminal device generates the target massage technique file, it may send the target massage technique file to the server, and the server stores the target massage technique file, which can save the storage resources of the terminal device. In addition, storing the massage technique file by the server enables all electrostimulation massage devices to obtain new massage techniques, which can improve the update efficiency and usage rate of massage techniques.
[0120] In some embodiments, the target massage technique data may include multiple sets of data, and the target massage technique parameters may include multiple parameters. These multiple sets of data correspond to these multiple parameters one by one, and these multiple sets of data are arranged in a preset order.
[0121] In some embodiments, these multiple parameters may include one or more first parameters, and these one or more first parameters are parameters for defining the modulation envelope.
[0122] In some embodiments, these multiple parameters may further include one or more second parameters, and these one or more second parameters may include one or more of pulse amplitude, pulse width, and pulse frequency.
[0123] Among them, for the detailed description of the above content, reference may be made to Figure 2 the corresponding relevant description, which will not be elaborated here.
[0124] It should be understood that the same or corresponding information in the above different embodiments may be referred to each other.
[0125] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application and are not intended to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. An electro - stimulation massage device, characterized in that, it includes a communication unit, a storage unit, a processor and a pulse output unit; the communication unit receives a target massage technique file from a server; the processor analyzes the target massage technique file to obtain target massage technique data; the memory stores the target massage technique data; the processor determines target massage technique parameters corresponding to the target massage technique data according to the mapping relationship between the massage technique data stored in the memory and the massage technique parameters; the pulse output unit outputs an electric pulse according to the target massage technique parameters.
2. The electro - stimulation massage device according to claim 1, characterized in that, the target massage technique data includes multiple groups of data, the target massage technique parameters include multiple parameters, the multiple groups of data correspond to the multiple parameters one by one, and the multiple groups of data are arranged in a preset order.
3. The electro - stimulation massage device according to claim 2, characterized in that, the multiple parameters include one or more first parameters, and the one or more first parameters are parameters for defining a modulation envelope.
4. The electro - stimulation massage device according to claim 2, characterized in that, the multiple parameters include one or more second parameters, and the one or more second parameters include one or more of pulse amplitude, pulse width and pulse frequency.
5. The electro - stimulation massage device according to any one of claims 1 - 4, characterized in that, the server stores the target massage technique file.
6. The electro - stimulation massage device according to claim 5, characterized in that, the target massage technique file is generated by a terminal device.
7. The electro - stimulation massage device according to claim 6, characterized in that, the target massage technique file can be edited by the terminal device so as to modify the target massage technique data.
8. An electro - stimulation massage system, characterized in that, it includes a server and an electro - stimulation massage device, wherein: the server is configured to send a target massage technique file to the electro - stimulation massage device; the electro - stimulation massage device is configured to analyze the target massage technique file to obtain target massage technique data, store the target massage technique data, determine target massage technique parameters corresponding to the target massage technique data according to the mapping relationship between the stored massage technique data and the massage technique parameters, and output an electric pulse according to the target massage technique parameters.
9. The electro - stimulation massage system according to claim 8, characterized in that, the electro - stimulation massage device is further configured to send an acquisition request for acquiring the target massage technique file to the server.
10. The electro - stimulation massage system according to claim 9, characterized in that, the electro - stimulation massage device includes a user - interaction interface; the electro - stimulation massage device is specifically configured to send the acquisition request to the server according to a user operation received through the user - interaction interface.
11. The electro - stimulation massage system according to claim 8, characterized in that, the electro - stimulation massage device includes a user - interaction interface; The electric stimulation massage device is further configured to respond to an operation input by a user through the user interface to turn on a massage technique in the electric stimulation massage device, display technique information of the massage techniques stored in the electric stimulation massage device, respond to a selection operation of target technique information in the technique information by the user, and determine target massage technique data according to the target technique information.
12. The electric stimulation massage system according to claim 8, wherein, the electric stimulation massage system further includes a terminal device, and the terminal device includes a setting interface; the terminal device is configured to generate the target massage technique file in response to a setting operation by the user through the setting interface.
13. The electric stimulation massage system according to claim 12, wherein, the terminal device is further configured to send the target massage technique file to the server.
14. The electric stimulation massage system according to any one of claims 8-13, wherein, the target massage technique data includes multiple groups of data, the target massage technique parameters include multiple parameters, the multiple groups of data correspond to the multiple parameters one by one, and the multiple groups of data are arranged in a preset order.
15. The electric stimulation massage system according to claim 14, wherein, the multiple parameters include one or more first parameters, and the one or more first parameters are parameters for defining a modulation envelope.
16. The electric stimulation massage system according to claim 14, wherein, the multiple parameters include one or more second parameters, and the one or more second parameters include one or more of pulse amplitude, pulse width, and pulse frequency.