Brain wave induction instrument
By combining optical and drug-induced EEG induction devices, and utilizing LED light flashing and drug odor, the problem of existing optical induction devices being unable to be used in open environments has been solved. This achieves the effect of maintaining the optimal brainwave state during learning, thereby improving learning efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHONGSHAN JUNGUO ELECTRICAL APPLIANCES CO LTD
- Filing Date
- 2025-05-13
- Publication Date
- 2026-05-05
AI Technical Summary
Existing EEG induction devices mainly rely on sound and light stimulation, which cannot be used in open environments and cannot be effectively applied to students' learning process, nor can they keep students in the optimal brainwave state during learning.
Using a combination of optical and pharmacological induction, the brain is induced into different brainwave states, including alpha, theta, and delta waves, through LED light flashing and drug odor stimulation, providing sedation, relaxation, and hypnosis effects.
It achieves a calming, relaxing, and hypnotic effect on the brain in an open environment, helping students maintain optimal brainwave states during the learning process and improving learning outcomes.
Smart Images

Figure CN224193905U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to an electroencephalogram (EEG) inducer. Background Technology
[0002] Modern medical research on the auditory drive of brain waves shows that when the brain is stimulated by sound vibrations, such as rhythmic ticking, tones, or noise, and EEG is used to monitor the brain, the results show that the brain does indeed respond to rhythmic auditory stimulation by increasing brain activity at the same frequency as the sound.
[0003] Researchers have discovered that when our brains enter an alpha state, our bodies produce beneficial substances, blood pressure normalizes, pulse stabilizes, tense organs relax, and our bodies regain vitality. This is also considered an optimal state for learning. Scientists believe that "using the principles and methods of physics to study and solve biological problems is a major characteristic of life sciences." Therefore, many people are now using the principles of sound, light, brainwaves, and frequency resonance in physics to try to study and solve problems related to the human brain or psychology, such as how to eliminate brain fatigue, how to improve attention, or how to enhance memory efficiency. Among these methods, using sound and light to induce brainwave synchronization is particularly popular.
[0004] While the method of using sound and light to induce EEG synchronization can produce some effect, it is only suitable for rest and relaxation, and cannot be truly applied to the student learning process. The fundamental reason is that because light stimulation is used to enhance the induction effect, the user can only use it with their eyes closed. Secondly, the sound stimulation used in this method is usually a combination of binaural beat signals and audio signals, primarily utilizing periodic beat signals to produce a stimulating effect. Therefore, this method is not suitable for educational applications.
[0005] If students can be kept in the optimal brainwave state, namely the alpha brainwave state, during the learning process, they can improve their learning effectiveness while in a relaxed state.
[0006] Modern medical research has proven that various bioelectrical activities exist in the human central nervous system. When given external stimuli, bioelectrical changes related to those stimuli can be generated. When the human ear hears short sound stimuli, it can also induce brain waves in the listener. The brain waves generated are called auditory evoked potentials. This method has been applied in medical hearing tests. This method usually uses short single tones or pure tones and has been widely used to test the hearing status of subjects.
[0007] Traditional EEG induction devices rely heavily on sound and light induction, but lack drug induction. Therefore, overcoming these shortcomings has become an important issue that urgently needs to be addressed by those skilled in the art. Utility Model Content
[0008] This invention overcomes the shortcomings of the above-mentioned technologies and provides a brainwave induction device. This brainwave induction device has the dual functions of optical induction and drug induction, which has a calming / relaxing / hypnotic effect on the brain and is beneficial to maintaining physical health.
[0009] To achieve the above objectives, the present invention adopts the following technical solution:
[0010] An electroencephalogram (EEG) inducer includes: a housing, a control motherboard disposed within the housing, a rechargeable battery electrically connected to the control motherboard, and an EEG inducer control unit electrically connected to the control motherboard. The EEG inducer control unit is configured with an EEG inducer control mode, and the EEG inducer control mode is preset with EEG inducer control commands. A drug inducer control unit electrically connected to the control motherboard is also included. A first EEG inducer light and a second EEG inducer light are electrically connected to the EEG inducer control unit. The first EEG inducer light and the second EEG inducer light receive the EEG inducer control commands and flash different colors of light according to the EEG inducer control commands.
[0011] Preferably, the EEG-induced control unit described above includes: an input module, a control chip, a red light control module, a green light control module, a blue light control module, a first output interface, and a second output interface; the input module communicates with the control chip to send input commands to the control chip; the control chip communicates with the red light control module, the green light control module, and the blue light control module respectively to parse commands and control the red light control module, the green light control module, and the blue light control module to be turned on or off respectively; the red light control module, the green light control module, and the blue light control module are respectively connected to the first output interface and the second output interface, and respectively generate the EEG-induced control command and send it to the first output interface and the second output interface; the first output interface is connected to the first EEG-induced light, and the second output interface is connected to the second EEG-induced light.
[0012] Preferably, the EEG-induced control mode described above includes a mild to moderate alpha wave mode; in the mild to moderate alpha wave mode, the red LEDs in the first and second EEG-induced lights flash at a frequency of 7-10 Hz.
[0013] Preferably, the EEG-induced control mode described above includes a medium-depth alpha wave mode; in the medium-depth alpha wave mode, the red LEDs in the first and second EEG-induced lights flash at a frequency of 10-13 Hz.
[0014] Preferably, the EEG-induced control mode described above includes a mild to moderate theta wave mode; in the mild to moderate theta wave mode, the green LEDs in the first and second EEG-induced lights flash at a frequency of 3-5 Hz.
[0015] Preferably, the EEG-induced control mode described above includes a medium-depth theta wave mode; in the medium-depth theta wave mode, the green LEDs in the first and second EEG-induced lights flash at a frequency of 5-7 Hz.
[0016] Preferably, the EEG-induced control mode described above includes a mild to moderate delta wave mode; in the mild to moderate delta wave mode, the blue LEDs in the first and second EEG-induced lights flash at a frequency of 0.5-2Hz.
[0017] Preferably, the EEG-induced control mode described above includes a medium-depth delta wave mode; in the medium-depth delta wave mode, the blue LEDs in the first and second EEG-induced lights flash at a frequency of 2-3 Hz.
[0018] Preferably, the drug induction control unit as described above includes a drug box containing a drug, which may be jujube seed, lily, lavender, jasmine, snake plant, or ivy.
[0019] Compared with the prior art, the beneficial effects of this utility model are:
[0020] 1. This utility model provides a brainwave induction device, which has the dual functions of optical induction and drug induction, and has a calming / relaxing / hypnotic effect on the brain, which is beneficial to maintaining physical health.
[0021] 2. This utility model provides a brainwave induction device. Users can wear the induction device on their head, keep the room dark, turn on the induction device, and the induction device will emit induction scattered light to induce the brain to enter a sleep state. It comes with a drug capsule that has a relaxing / relieving effect on the nerves. After opening the package, the capsule is installed on the induction device, and the smell of the drug can also enter the human body through breathing. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the structure of this utility model.
[0023] Figure 2 This is a circuit diagram of the brainwave induction control unit of this utility model. Detailed Implementation
[0024] The following examples provide a more detailed description of the features of this utility model and other related features, in order to facilitate understanding by those skilled in the art.
[0025] In this embodiment, it should be understood that the terms "middle", "upper", "lower", "top", "right side", "left end", "above", "back", "center", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.
[0026] like Figures 1 to 2 As shown, a brainwave induction device includes: a housing 1, a control motherboard 2 housed within the housing 1, a rechargeable battery 3 electrically connected to the control motherboard 2, and a brainwave induction control unit 4 electrically connected to the control motherboard 2. The brainwave induction control unit 4 is configured with a brainwave induction control mode, and the brainwave induction control mode is preset with brainwave induction control commands. A drug induction control unit 5 is electrically connected to the control motherboard 2, and a first brainwave induction lamp 6 and a second brainwave induction lamp 7 are electrically connected to the brainwave induction control unit 4. The first brainwave induction lamp 6 and the second brainwave induction lamp 7 receive the brainwave induction control commands and flash different colors of light according to the commands. This invention provides a brainwave induction device that has both optical and drug induction functions, exerting a calming / relaxing / hypnotic effect on the brain, which is beneficial for maintaining physical health.
[0027] like Figure 1 , Figure 2As shown, in this embodiment, the EEG-induced control unit 4 includes: an input module 41, a control chip 42, a red light control module 43, a green light control module 44, a blue light control module 45, a first output interface 46, and a second output interface 47. The input module 41 communicates with the control chip 42 to send input commands to the control chip 42. The control chip 42 communicates with the red light control module 43, the green light control module 44, and the blue light control module 45 respectively to parse commands and control the red light control module 43, the green light control module 44, and the blue light control module 45 to be turned on or off respectively. The red light control module 43, the green light control module 44, and the blue light control module 45 are connected to the first output interface 46 and the second output interface 47 respectively, and generate the EEG-induced control commands and send them to the first output interface 46 and the second output interface 47 respectively. The first output interface 46 is connected to the first EEG-induced light 6, and the second output interface 47 is connected to the second EEG-induced light 7. This invention provides a brainwave induction device. Users can wear the device on their head, keep the room dark, turn on the device, and the device will emit inductive scattered light to induce the brain into a sleep state. It comes with a drug capsule that has a relaxing / relieving effect on the nerves. After opening the capsule, the capsule is installed on the device, and the smell of the drug can also enter the body through respiration.
[0028] like Figure 1 , Figure 2 As shown, in this embodiment, the brainwave induction control mode includes a mild to moderate alpha wave mode. In this mode, the red LEDs in the first and second brainwave induction lights 6 and 7 flash at a frequency of 7-10 Hz. Brainwaves at 7-10 Hz are considered mild to moderate alpha waves. In this mode, the flashing red LEDs and the playing music corresponding to the mild to moderate alpha wave mode can include classical music and sounds combining natural sounds, inducing mild to moderate alpha waves in the brain and stimulating attention and creativity.
[0029] like Figure 1 , Figure 2 As shown, in this embodiment, the EEG-induced control mode includes a medium-depth alpha wave mode. In this medium-depth alpha wave mode, the red LEDs in the first EEG-induced light 6 and the second EEG-induced light 7 flash at a frequency of 10-13 Hz. Medium-depth alpha waves occur between 10 and 13 Hz. In this mode, the red LEDs flash, and the music played corresponds to the medium-depth alpha wave mode, primarily soft electronic music, inducing medium-depth alpha waves in the brain and causing the brain to enter a state of deep thought.
[0030] like Figure 1 , Figure 2 As shown, in this embodiment, the brainwave induction control mode includes a mild to moderate theta wave mode. In this mode, the green LEDs in the first brainwave induction lamp 6 and the second brainwave induction lamp 7 flash at a frequency of 3-5 Hz. Brainwaves at 3-5 Hz are considered mild to moderate theta waves. In this mode, the green LEDs flash, and the music played corresponds to the mild to moderate theta wave mode, giving the person strong insight and keen intuition.
[0031] like Figure 1 , Figure 2 As shown, in this embodiment, the EEG-induced control mode includes a medium-depth theta wave mode. In this medium-depth theta wave mode, the green LEDs in the first EEG-induced light 6 and the second EEG-induced light 7 flash at a frequency of 5-7 Hz. The frequency range of 5-7 Hz corresponds to medium-depth theta waves. In this mode, the flashing green LEDs are accompanied by music corresponding to the medium-depth theta wave mode, which can stimulate creativity and imagination.
[0032] like Figure 1 , Figure 2 As shown, in this embodiment, the EEG-induced control mode includes a mild to moderate delta wave mode. In this mode, the blue LEDs in the first EEG-induced lamp 6 and the second EEG-induced lamp 7 flash at a frequency of 0.5-2 Hz. EEG waves between 0.5 and 2 Hz represent mild to moderate delta waves. In this mode, the blue LEDs flash, and the music played corresponds to the mild to moderate delta wave mode, which can relieve stress.
[0033] like Figure 1 , Figure 2 As shown, in this embodiment, the EEG-induced control mode includes a medium-depth delta wave mode. In this medium-depth delta wave mode, the blue LEDs in the first EEG-induced light 6 and the second EEG-induced light 7 flash at a frequency of 2-3 Hz. The frequency range of 2-3 Hz corresponds to medium-depth delta waves. In this mode, the flashing blue LEDs play music corresponding to the medium-depth delta wave mode, which can promote sleep and restore physical strength.
[0034] like Figure 1 , Figure 2 As shown, in this embodiment, the drug induction control unit 5 includes a drug box 51 and a drug 52 placed inside the drug box 51. The drug 52 is jujube seed, lily, lavender, jasmine, snake plant, or ivy. For example, jujube seed capsules.
[0035] Composition: 15g of Ziziphus jujuba seed, 3g of licorice root, 6g of anemarrhena rhizome, 10g of poria cocos, and 6g of chuanxiong rhizome.
[0036] Usage: When using, the user punctures the jujube seed capsule with their hand or a sharp object. The liquid inside the capsule slowly flows out and evaporates, releasing a fragrance.
[0037] Efficacy: Nourishes blood and calms the mind, clears heat and relieves irritability.
[0038] The above are only typical embodiments of this utility model. In addition, this utility model may have many other specific implementation methods. All technical solutions formed by equivalent substitution or equivalent transformation fall within the scope of protection claimed by this utility model.
Claims
1. A brainwave induction device, characterized in that, include: The housing (1) contains a control motherboard (2), a rechargeable battery (3) electrically connected to the control motherboard (2), and an EEG induction control unit (4) electrically connected to the control motherboard (2). The EEG induction control unit (4) is configured with an EEG induction control mode, and the EEG induction control mode is preset with EEG induction control commands. The housing (1) contains a drug induction control unit (5) electrically connected to the control motherboard (2), and a first EEG induction lamp (6) and a second EEG induction lamp (7) electrically connected to the EEG induction control unit (4). The first EEG induction lamp (6) and the second EEG induction lamp (7) receive the EEG induction control commands and flash different colors of light according to the EEG induction control commands.
2. The EEG induction device according to claim 1, characterized in that: The EEG-induced control unit (4) includes: an input module (41), a control chip (42), a red light control module (43), a green light control module (44), a blue light control module (45), a first output interface (46), and a second output interface (47); the input module (41) communicates with the control chip (42) to send input instructions to the control chip (42); the control chip (42) communicates with the red light control module (43), the green light control module (44), and the blue light control module (45) respectively to parse instructions and control the red light control module (43) and the blue light control module (45) respectively. Block (43), the green light control module (44), and the blue light control module (45) are turned on or off; the red light control module (43), the green light control module (44), and the blue light control module (45) are respectively connected to the first output interface (46) and the second output interface (47), and respectively generate the EEG induction control command and send it to the first output interface (46) and the second output interface (47); the first output interface (46) is connected to the first EEG induction lamp (6), and the second output interface (47) is connected to the second EEG induction lamp (7).
3. The EEG induction device according to claim 2, characterized in that: The brainwave induction control mode includes a mild to moderate alpha wave mode; in the mild to moderate alpha wave mode, the red LEDs in the first brainwave induction lamp (6) and the second brainwave induction lamp (7) flash at a frequency of 7-10Hz.
4. The brainwave induction device according to claim 2, characterized in that: The brainwave induction control mode includes a medium-depth alpha wave mode; in the medium-depth alpha wave mode, the red LEDs in the first brainwave induction lamp (6) and the second brainwave induction lamp (7) flash at a frequency of 10-13Hz.
5. The EEG induction device according to claim 2, characterized in that: The brainwave induction control mode includes a mild to moderate theta wave mode; in the mild to moderate theta wave mode, the green LED lights in the first brainwave induction lamp (6) and the second brainwave induction lamp (7) flash at a frequency of 3-5 Hz.
6. The EEG induction device according to claim 2, characterized in that: The brainwave induction control mode includes a medium-depth theta wave mode; in the medium-depth theta wave mode, the green LED lights in the first brainwave induction lamp (6) and the second brainwave induction lamp (7) flash at a frequency of 5-7Hz.
7. The EEG induction device according to claim 2, characterized in that: The brainwave induction control mode includes a mild to moderate delta wave mode; in the mild to moderate delta wave mode, the blue LEDs in the first brainwave induction lamp (6) and the second brainwave induction lamp (7) flash at a frequency of 0.5-2Hz.
8. The EEG induction device according to claim 2, characterized in that: The brainwave induction control mode includes a medium-depth delta wave mode; in the medium-depth delta wave mode, the blue LEDs in the first brainwave induction lamp (6) and the second brainwave induction lamp (7) flash at a frequency of 2-3 Hz.
9. The EEG induction device according to claim 1, characterized in that: The drug induction control unit (5) includes a drug box (51) and a drug (52) placed in the drug box (51). The drug (52) is jujube seed, lily, lavender, jasmine, snake plant, or ivy.