Insomnia therapeutic instrument control system
By designing an insomnia treatment instrument control system, combining adjustable micro current and music playback, the problem of single functions of existing treatment instruments is solved, and flexible and personalized insomnia treatment is achieved, and it is easy to carry.
Patent Information
- Application Number
- CN202421458630.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-25
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-06-25
AI Technical Summary
The existing transcranial microcurrent therapy device has a single function and cannot effectively treat insomnia and anxiety. There are side effects of traditional drug treatment.
A control system for insomnia therapy instruments is designed, including human-computer interaction module, control module, micro current output module, music playback module, ear clip connection module and communication module. It is connected to the ear clip electrode through a micro current output module that can adjust the intensity and pulse width of the micro current, and is combined with the music playback module for treatment, supporting personalized treatment plans and data recording.
It improves the flexibility and personalized treatment effect of insomnia therapy device, reduces the system size, is easy to carry, and provides personalized treatment plans and data recording functions.
Smart Images

Figure CN223170176U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of medical equipment, in particular to a control system for an insomnia treatment instrument. Background Art
[0002] The number of patients with insomnia, anxiety and depression is increasing day by day. Traditional drug treatment cannot completely eliminate insomnia and anxiety symptoms, and there are also great side effects. Therefore, it is necessary to cooperate with an instrument to treat insomnia. Currently, the instruments for treating insomnia include transcranial microcurrent therapy instruments. The transcranial microcurrent therapy instrument is composed of a constant current generator and two ear clip electrodes connected. The two ear clip electrodes are clipped on the left and right earlobes, and the ear clip electrodes transmit microcurrent to the central nervous system of the brain, promoting the restoration of normal brain waves in the brain, improving the release of various neurotransmitters in the brain, and inhibiting the release of stress hormones. However, currently, the instruments for treating depression and insomnia have a single function and cannot effectively treat insomnia. Content of the Utility Model
[0003] The purpose of the utility model is to provide a control system for an insomnia treatment instrument, which can solve one or more of the above-mentioned existing technical problems.
[0004] According to one aspect of the utility model, a control system for an insomnia treatment instrument is provided, including a human-machine interaction module, a control module, a microcurrent output module, a music playing module, an ear clip connection module and a communication module. The output end of the human-machine interaction module is connected to the input end of the control module. The human-machine interaction module is used to receive data or instructions input by the user and send them to the control module. The output end of the control module is respectively connected to the input ends of the microcurrent output module and the music playing module. The control module is used to send instructions to the microcurrent output module and the music playing module according to the data or instructions input by the user. The microcurrent output module includes a current control sub-module and a waveform control sub-module. The input ends of the current control sub-module and the waveform control sub-module are respectively connected to the control module. The output end of the microcurrent output module is connected to the ear clip connection module. The ear clip connection module is used to be connected to the ear clip electrode and send the microcurrent output by the microcurrent output module to the ear clip electrode. The output end of the music playing module is connected to the communication module. The communication module is used to communicate with the earphone.
[0005] In some embodiments, the human-machine interaction module is a touch screen.
[0006] In some embodiments, the control module is a control chip of model BK32886.
[0007] In some embodiments, the current control sub-module includes a sliding rheostat, and the sliding rheostat controls the intensity of the microcurrent according to the instructions of the control module.
[0008] In some embodiments, the waveform control sub-module includes a timer, and the timer controls the pulse width of the micro-current according to the instructions of the control module.
[0009] In some embodiments, the communication module includes a first communication module. The first communication module is used to communicate with the earphone in a wired or wireless manner, and the first communication module is a Bluetooth communication module.
[0010] In some embodiments, the communication module includes a second communication module. The second communication module is a Bluetooth module or a USB transmission module, and the second communication module is used to enable the control module to communicate with a mobile device or a PC.
[0011] In some embodiments, the communication module includes a third communication module. The third communication module is a wireless communication module, and the third communication module is used to enable the control module to communicate with a cloud storage device.
[0012] In some embodiments, a treatment report generation module is further included. The input end of the treatment report generation module is connected to the control module. The treatment report generation module is used to collect the usage data of the user each time, integrate and generate a treatment report.
[0013] In some embodiments, a power supply module is further included. The power supply module is respectively connected to the human-computer interaction module, the control module, the micro-current output module and the music playing module.
[0014] The insomnia treatment device control system provided by the present utility model outputs an adjustable micro-current through the micro-current output module, and is connected to the ear clip electrode through the ear clip connection module to transmit the micro-current to the central nervous system of the brain for the treatment of insomnia. The micro-current output module controls the intensity and pulse width of the micro-current, so that the generated micro-current can be adjusted by the user within a controllable range, greatly improving the flexibility of the insomnia treatment device and meeting the personalized needs of users; the music playing module can play music to further promote the treatment of insomnia; the control system has a simple structure, effectively reduces the volume of the system, and makes the insomnia treatment device easy to carry.
[0015] In addition, in the technical solution of the present utility model, unless otherwise specifically stated, the technical solution can be implemented by adopting conventional means in the art. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following drawings are some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained according to these drawings without creative efforts.
[0017] Figure 1Schematic diagram of the control system of the insomnia treatment apparatus provided by an embodiment of the present utility model. Detailed implementation manners
[0018] To make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Apparently, the described embodiments are some but not all of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0019] Embodiment:
[0020] In this embodiment, referring to the accompanying drawings of the specification Figure 1 , a control system of an insomnia treatment apparatus is provided, which includes a human-machine interaction module 1, a control module 2, a micro-current output module 3, a music playing module 4, an ear clip connection module 5 and a communication module 6.
[0021] Among them, the output end of the human-machine interaction module 1 is connected to the input end of the control module 2, the input ends of the micro-current output module 3 and the music playing module 4 are connected to the output end of the control module 2, the input end of the ear clip connection module 5 is connected to the output end of the micro-current output module 3, and the communication module 6 is connected to the output end of the music playing module 4.
[0022] The human-machine interaction module 1 is used to receive data or instructions input by the user and send them to the control module 2. In an optional embodiment, the human-machine interaction module 1 can be a touch screen, which can not only realize the function of user input, but also display data or operation pages to the user. The human-machine interaction module 1 can also be a combination of a touch screen and buttons or knobs. At least one button or knob can be provided. Thus, the button or knob can also realize the function of user input.
[0023] In an optional embodiment, the human-machine interaction module 1 can also be a combination of at least one of a display screen and buttons or knobs. At this time, the display screen displays data or operation pages to the user, and the buttons and knobs realize the function of user input.
[0024] The human-machine interaction module 1 can also display operation pages such as screen brightness adjustment and sound volume adjustment to the user.
[0025] The control module 2 can be a control chip of model BK32886. Microcurrent treatment programs and music treatment programs, the intensity and pulse width corresponding to each microcurrent treatment program, and the music files corresponding to each music treatment program can be pre-stored in the control module 2. When the user selects the corresponding microcurrent treatment program or music treatment program in the human-computer interaction module 1, the control module 2 sends corresponding instructions to the microcurrent output module 3 and the music playback module 4 according to the user's current selection, so that the microcurrent output module 3 generates a microcurrent with the corresponding intensity and pulse width, and the music playback module 4 plays the corresponding music file.
[0026] In an alternative embodiment, the human-computer interaction module 1 can provide an operation interface for the user to customize the microcurrent pulse width and intensity, where the extreme values of the microcurrent pulse width and intensity are preset in advance to prevent the user from setting unreasonable microcurrent pulse width and intensity. When the control module 2 receives the microcurrent pulse width and intensity set by the user, it sends corresponding instructions to the microcurrent output module 3, so that the microcurrent output module 3 generates a microcurrent with the corresponding intensity and pulse width to achieve insomnia treatment.
[0027] In an alternative embodiment, the human-computer interaction module 1 can provide an operation interface for the treatment duration. At this time, the control module 2 includes a timing sub-module. When the control module 2 receives the treatment duration input by the user, the timing sub-module starts timing. When the timing time is equal to the treatment duration input by the user, the control module 2 sends corresponding instructions to the microcurrent output module 3 and the music playback module 4 to stop the generation of the microcurrent and the playback of the music. At this time, the human-computer interaction module 1 can display the remaining treatment duration to the user.
[0028] In an alternative embodiment, the microcurrent output module 3 includes a current control sub-module 31 and a waveform control sub-module 32. The input ends of the current control sub-module 31 and the waveform control sub-module 32 are respectively connected to the control module 2. The output end of the microcurrent output module 3 is connected to the earclip connection module 5, and the earclip connection module 5 is used to connect to the earclip electrode to send the microcurrent output by the microcurrent output module 3 to the earclip electrode.
[0029] Specifically, the current control sub-module 31 includes a sliding rheostat, and the sliding rheostat controls the intensity of the microcurrent according to the instruction related to the microcurrent intensity from the control module 2. The waveform control sub-module 32 includes a timer, and the timer controls the combination of two PWM waveforms with different frequencies according to the instruction related to the microcurrent pulse width from the control module 2. Finally, the current control sub-module 31 generates a microcurrent that meets the intensity and pulse width output by the control module 2 and sends it to the earclip connection module 5. The earclip connection module 5 can be connected to the earclip electrode through a connecting wire to transfer the microcurrent to the earclip.
[0030] In an alternative embodiment, the communication module 6 is used to communicate with the earphone for music playback. Specifically, the communication module 6 may include a first communication module 61, which is used to communicate with the earphone. When the earphone is a Bluetooth earphone, the first communication module is a Bluetooth communication module. When the earphone is a wired earphone, the first communication module may include a 3.5 mm circular interface, a Type-C interface or a Lightning interface.
[0031] In an alternative embodiment, the communication module 6 further includes a second communication module 62, which is a Bluetooth module or a USB transmission module. The second communication module 62 is used to enable the control module 2 to communicate with a mobile device or a PC.
[0032] In an alternative embodiment, the communication module 6 further includes a third communication module 63, which is a wireless communication module. The third communication module 63 is used to enable the control module 2 to communicate with a cloud storage device.
[0033] In an alternative embodiment, a treatment report generation module is further included. The input end of the treatment report generation module is connected to the control module 2. The treatment report generation module is used to collect the usage data of the user each time, integrate and generate a treatment report. The generated treatment report can be displayed to the user through the human-computer interaction module 1, or uploaded to a mobile device or a PC through the second communication module, or uploaded to a cloud storage device through the third communication module 63 for storage. Thus, the user can have a more intuitive and accurate understanding of the specific situation of the treatment, and at the same time, it is convenient for the storage and access of the treatment report.
[0034] In an alternative embodiment, a power module is further included. The power module is respectively connected to the human-computer interaction module 1, the control module 2, the micro-current output module 3 and the music playback module 4.
[0035] In an alternative embodiment, a speaker or a loudspeaker may further be included. The speaker or the loudspeaker may be connected to the music playback module 4 to realize the external playback of music, avoiding discomfort caused by the long-term wearing of the earphone in the ear and affecting the effect of the insomnia treatment instrument.
[0036] The insomnia treatment instrument control system provided by the present utility model outputs an adjustable micro-current through the micro-current output module, and is connected to the earclip electrode through the earclip connection module to transmit the micro-current to the central nervous system of the brain for the treatment of insomnia. The micro-current output module controls the intensity and pulse width of the micro-current, so that the generated micro-current can be custom-adjusted within a controllable range, greatly improving the flexibility of the insomnia treatment instrument and meeting the personalized needs of users; the music playback module can play music to further promote the treatment of insomnia; the control system has a simple structure, effectively reduces the system volume, and makes the insomnia treatment instrument easy to carry.
[0037] The above are only the optional embodiments of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present utility model, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present utility model.
Claims
1. Insomnia treatment device control system, characterized in that, It includes human-computer interaction module, control module, micro-current output module, music playback module, ear clip connection module and communication module. The output end of the human-computer interaction module is connected to the input end of the control module, and the human-computer interaction module is used to receive data or instructions input by the user and send them to the control module; The output end of the control module is connected to the input end of the micro-current output module and the music playing module respectively, and the control module is used to send instructions to the micro-current output module and the music playing module according to the data or instructions input by the user; The microcurrent output module includes a current control submodule and a waveform control submodule, the input ends of the current control submodule and the waveform control submodule are respectively connected to the control module, and the output end of the microcurrent output module is connected to the ear clip connection module, and the ear clip connection module is used to connect to the ear clip electrode to send the microcurrent output by the microcurrent output module to the ear clip electrode; The output end of the music playing module is connected to the communication module, and the communication module is used for communication connection with the earphone.
2. The insomnia treatment instrument control system according to claim 1, wherein The human-computer interaction module is a touch screen.
3. The insomnia treatment instrument control system according to claim 1, wherein The control module is a control chip of model BK32886.
4. The insomnia treatment device control system according to claim 1, characterized in that, The current control submodule includes a sliding resistor, which controls the intensity of the microcurrent according to the instruction of the control module.
5. The insomnia treatment apparatus control system according to claim 1, characterized in that The waveform control submodule includes a timer, and the timer controls the pulse width of the microcurrent according to the instruction of the control module.
6. The insomnia treatment instrument control system according to claim 1, characterized in that, The communication module includes a first communication module, which is used for communication connection with the headset, and the first communication module is a Bluetooth communication module.
7. The insomnia treatment apparatus control system according to claim 1, wherein The communication module includes a second communication module, which is a Bluetooth module or a USB transmission module. The second communication module is used to enable the control module to communicate with the mobile device or the PC.
8. The insomnia treatment apparatus control system according to claim 1, characterized in that, The communication module includes a third communication module, which is a wireless communication module. The third communication module is used to enable the control module to communicate with the cloud storage device.
9. The insomnia treatment apparatus control system according to claim 7 or 8, characterized in that, It also includes a treatment report generation module, the input end of which is connected to the control module. The treatment report generation module is used to collect the user's usage data each time, integrate and generate a treatment report.
10. The insomnia treatment device control system according to claim 1, wherein It also includes a power supply module, which is respectively connected to the human-computer interaction module, the control module, the micro-current output module and the music playing module.