Head-mounted eyeshade and electronic equipment

By integrating a broadcasting device, light-emitting device, and electrodes into a head-mounted eye mask, and combining sound, light, and electricity therapy, the problem of poor single-modal treatment effects is solved, providing multimodal treatment options. It is suitable for individualized treatment of insomnia patients and is portable and multifunctional.

CN223542296UActive Publication Date: 2025-11-14SHENZHEN SHENYI TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422230499.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-11
Publication Date
2025-11-14
Estimated Expiration
2034-09-11

AI Technical Summary

Technical Problem

Existing insomnia treatment techniques are mostly single-modal and cannot be tailored to individual differences, resulting in poor treatment outcomes.

Method used

Design a head-mounted eye mask that integrates a broadcasting device, a light-emitting device, and electrodes. It combines multiple physical therapy methods (sound, light, and electricity) to provide a rapid sleep onset and insomnia treatment mode, achieving multimodal therapy.

Benefits of technology

It combines three physical therapy methods: sound, light, and electricity, adapting to the individual needs of different people, providing flexible treatment options, suitable for use in hospitals and at home, and is portable and multifunctional.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model discloses a head wearing type eyeshade and electronic equipment, the head wearing type eyeshade comprises an eyeshade main body and a contraction bandage, the eyeshade main body is connected with the contraction bandage, a first function button, a second function button, a broadcasting device, a luminescent device and an electrode are arranged in the eyeshade main body, the first function key is used for starting / closing a rapid sleep mode, the rapid sleep mode is executed by playing a first target audio through the broadcasting device, emitting red light through the luminescent device and discharging the electrode, and the second function key is used for starting / closing an insomnia treatment mode, and the insomnia treatment mode is executed by playing a second target audio and blue light. Or the insomnia treatment mode is executed by playing the second target audio and discharging the electrode. According to the head-mounted eyeshade, the integrated design of three physical therapy modes of sound, light, electricity and the like is achieved, meanwhile, one or more therapy modes are achieved in combination with software, and the head-mounted eyeshade is a wearable device and has the advantages of being wireless, portable and movable.
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Description

Technical Field

[0001] This utility model relates to the field of eye mask technology, and in particular to a headband-style eye mask and electronic device. Background Technology

[0002] Numerous studies have shown that physical therapies such as sound, light, and electricity are effective in treating insomnia, but the effects vary from person to person, and some individuals respond to one or more of these methods. "Sound" refers to white noise therapy or music therapy with specific therapeutic uses; "light" refers to light therapy of specific wavelengths; and "electricity" refers to electrical stimulation.

[0003] Current insomnia treatments are often single-modal, such as transcranial electrical stimulation, light therapy, or sound therapy. If some people only respond to a combination of these treatments, the current single-modal approach cannot provide targeted treatment for each individual's situation. Utility Model Content

[0004] Therefore, it is necessary to address the above problems by proposing a head-mounted eye mask and electronic device that combines multiple treatment methods to treat insomnia by incorporating various treatment devices.

[0005] In a first aspect, the present invention provides a headband-style goggles, the headband-style goggles including a goggles body and a retractable strap; the goggles body is connected to the retractable strap, and the goggles body is provided with a first function button, a second function button, a broadcasting device, a light-emitting device and electrodes;

[0006] The first function button is used to activate / deactivate the quick sleep mode. When the first function button is pressed, the audio playback device plays the first target audio, the light-emitting device emits red light, and the electrode discharges. When the quick sleep mode is activated, the first function button is pressed again, the audio playback device is turned off, the light-emitting device is turned off, and the electrode stops discharging.

[0007] The second function button is used to activate / deactivate the insomnia treatment mode. When the second function button is pressed, the audio playback device plays the second target audio and the light-emitting device emits blue light. When the insomnia treatment mode is activated, the second function button is pressed again, and the audio playback device and the light-emitting device are deactivated.

[0008] Alternatively, when the second function button is pressed, the broadcasting device plays the second target audio and the electrodes discharge; when the insomnia treatment mode is executed, and the second function button is pressed again, the broadcasting device turns off and the electrodes stop discharging.

[0009] The elastic band is used to control the tightness of the headband according to the wearer's head circumference.

[0010] Optionally, when the first function button is pressed, the audio playback device plays the first target audio and the light-emitting device emits red light; when the quick sleep mode is executed, when the first function button is pressed again, the audio playback device and the light-emitting device are turned off.

[0011] Optionally, when the second function button is pressed, the broadcasting device plays the second target audio and the electrode discharges. After the electrode discharges for a preset first fixed duration, it turns off, and the light-emitting device emits blue light. When the insomnia treatment mode is executed, when the second function button is pressed again, the broadcasting device turns off, the electrode stops discharging, and the light-emitting device turns off.

[0012] Alternatively, when the second function button is pressed, the broadcasting device plays the second target audio and the light-emitting device emits blue light. The light-emitting device emits blue light for a preset second fixed duration and then turns off, and the electrode discharges. When the insomnia treatment mode is executed, when the second function button is pressed again, the broadcasting device turns off, the electrode stops discharging, and the light-emitting device turns off.

[0013] Optionally, the broadcasting device is installed in the main body of the eye mask at the ear side;

[0014] The inner side of the eye mask body is provided with a first groove corresponding to the eye area. The first groove is used to place a light-emitting device, which is used to illuminate the patient's eyes by emitting light.

[0015] A second groove is provided on the inner side of the main body of the eye mask at a position corresponding to the prefrontal cortex. The second groove is used to place electrodes, which are used to perform transcranial electrical stimulation on the brain region to which the eye mask is attached by passing an electric current.

[0016] Optionally, the electrode includes a cathode and an anode, the second grooves are symmetrically distributed, and the cathode and anode are respectively disposed in the second grooves.

[0017] Optionally, the main body of the goggles is also provided with a main circuit board;

[0018] The first function button, the second function button, the audio playback device, the light-emitting device, and the electrodes are respectively connected to the main circuit board;

[0019] The first function key is used to turn the broadcasting device on or off via the main circuit board, or to turn the light-emitting device on or off via the main circuit board, or to disconnect or connect the electrode via the main circuit board.

[0020] The second function key is used to turn the broadcasting device on or off via the main circuit board, or to turn the light-emitting device on or off via the main circuit board, or to disconnect or connect the electrode via the main circuit board.

[0021] Optionally, when the first function key is pressed, the main circuit board receives the first control signal and sends a first power-on signal to the broadcasting device, sends a first light-emitting signal to the light-emitting device, and sends a first discharge signal to the electrode. The broadcasting device receives the first power-on signal and plays the first target audio, the light-emitting device receives the first light-emitting signal and emits red light, and the electrode receives the first discharge signal and discharges.

[0022] Optionally, when the second function button is pressed, the main circuit board receives the second control signal and sends a second activation signal to the broadcasting device and a second light emission signal to the light-emitting device. The broadcasting device receives the second activation signal and plays the second target audio, and the light-emitting device receives the second light emission signal and emits blue light.

[0023] Optionally, connectors are provided at the left and right ends of the main body of the goggles, and the connectors are used to connect the main body of the goggles and the retractable straps.

[0024] In a second aspect, the present invention provides an electronic device comprising a head-mounted eye mask as described in the first aspect.

[0025] The present invention provides the following advantages: A headband-style eye mask includes an eye mask body and a retractable strap. The eye mask body is connected to the retractable strap. The eye mask body is equipped with a first function button, a second function button, a broadcasting device, a light-emitting device, and electrodes. The first function button is used to activate / deactivate the rapid sleep mode, which is activated by playing a first target audio through the broadcasting device, emitting red light through the light-emitting device, and discharging electricity through the electrodes. The second function button is used to activate / deactivate the insomnia treatment mode, which is activated by playing a second target audio through the broadcasting device and emitting blue light through the light-emitting device, or by playing a second target audio through the broadcasting device and discharging electricity through the electrodes. This invention integrates sound, light, and electricity—three physical therapy methods—into a single design, and combines software to implement one or more treatment methods. The headband-style eye mask is a wearable device with the advantages of being wireless, portable, and mobile. Attached Figure Description

[0026] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0027] in:

[0028] Figure 1 This is a schematic diagram of the structure of a headband-style eye mask in an embodiment of this application;

[0029] Figure 2 This is a schematic diagram of the specific structure of a headband-style eye mask in an embodiment of this application. Detailed Implementation

[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0031] This utility model provides a headband-style eye mask, as shown in the reference. Figure 1 , Figure 1 This is a schematic diagram of a headband-style eye mask provided by this utility model, such as... Figure 1 As shown, the headband-style goggles include a goggles body 10 and a retractable strap 20; the goggles body 10 is connected to the retractable strap 20, and the goggles body 10 is equipped with function buttons, a broadcasting device, a light-emitting device and electrodes. The retractable strap is used to control the tightness of the headband-style goggles according to the wearer's head circumference. The function buttons are used to switch modes.

[0032] Reference Figure 2 , Figure 2 This is a schematic diagram of the specific structure of a headband-style eye mask provided by this utility model. The broadcasting device is used for sound therapy and is installed in the main body of the eye mask at the ear side. Figure 2 In 11 of the above, the broadcasting device can be a microphone, that is, the microphone is placed on both sides of the ear cup, near the temporal lobe of the ear or the outside of the ear canal, thus forming a bone conduction headphone or an external headphone.

[0033] The inner side of the goggle mask, corresponding to the eyes, has a recess for placing light-emitting devices on the inner side of the goggle mask corresponding to the eye area; that is, it has a first groove, such as... Figure 2 The first groove in the eye mask is used to place a light-emitting device, which illuminates the patient's eyes. This device is used for phototherapy and can be an LED light (single or array). It is primarily placed in the center of the inside of the eye mask, and does not come into contact with the eyes when the eye mask is worn. The light-emitting device can emit various colors of light.

[0034] The stimulation sites for transcranial electrical stimulation are Fp1 and Fp2, such as... Figure 2Locations 13 and 14, Fp1 and Fp2, are sites in the standard EEG acquisition lead system 10-20, corresponding to the prefrontal cortex. Typically, Fp1 is the anode and Fp2 the cathode, with adjustable current intensity up to 2 mA. Stimulation electrodes are placed at the corresponding Fp1 and Fp2 positions on the main body of the eye mask. To improve system portability, gel electrodes are usually used, positioned above the first groove on the inner side of the eye mask.

[0035] In this invention, a second groove is provided on the inner side of the eye mask body at a position corresponding to the frontal lobe. The second groove is used to place electrodes, which are used to perform transcranial electrical stimulation on the attached brain region by passing an electric current. The electrodes include a cathode and an anode. The second grooves are symmetrically distributed and correspond to Fp1 and Fp2 respectively. The cathode and anode are respectively disposed in the second groove.

[0036] The main body of the eye mask also has a power switch button. Figure 2 The main circuit board (17 locations in the middle), power switch button, function buttons, audio device, light-emitting device and electrodes are respectively connected to the main circuit board. The power switch button is used to control the head-mounted goggles to turn off or on through the main circuit board. The function buttons are used to turn the audio device on or off through the main circuit board, or to turn the light-emitting device on or off through the main circuit board, or to disconnect or connect the electrodes through the main circuit board.

[0037] The main body of the eye mask also has a USB port. Figure 2 (15 locations in the middle), the power switch and USB port are located on the right side of the main body of the eye mask. The main circuit board is placed on... Figure 2 At 16 locations, power supplies are also placed on the main circuit board. Figure 2 (18 locations in the middle), the main circuit board is connected to the power supply. The main circuit board is used to control function buttons, audio playback device, light-emitting device, and electrodes. The main circuit board is internally connected to function buttons, audio playback device, light-emitting device, electrodes, power switch and USB interface through wires.

[0038] Connectors are provided at the ends of the left and right sides of the main body of the eye mask. Figure 2 There are 19 points (in the middle) for connecting the main body of the goggles to the elastic bands. The elastic bands allow users to choose the size and tightness according to their head circumference. To ensure proper contact between the electrodes and the skin, they should not be too loose. The main body of the goggles is also designed with sensors and alarms. The sensors detect the contact between the electrodes and the skin. If the contact is poor, the alarm will provide a corresponding prompt to guide the user to wear the goggles correctly.

[0039] In one possible design, the main body 10 of the eye mask is equipped with different function buttons, which may be located on the outer end of the main body of the eye mask (e.g., Figure 1In position 21), each function button represents a different therapeutic effect. In one possible design, the function buttons include a first function button and a second function button. For example, the first function button is connected to the main circuit board. The first function button is used to turn the broadcast device on or off through the main circuit board, or to turn the light-emitting device on or off through the main circuit board, or to disconnect or connect the electrode through the main circuit board.

[0040] The first function button 1 represents the quick sleep mode. This button is used to activate / deactivate the quick sleep mode, which primarily utilizes pulsed red light for phototherapy within one hour before sleep onset. This is combined with transcranial electrical stimulation and white noise. Therefore, it can be configured so that when the first function button is pressed, the audio player plays a first target audio, the light-emitting device emits red light, and the electrodes discharge. When the quick sleep mode is activated and the first function button is pressed again, the quick sleep mode is deactivated, and the audio player, light-emitting device, and electrodes are all in a deactivated state. Specifically, when the first function button is pressed, the main circuit board receives a first control signal and sends a first activation signal to the audio player, a first light emission signal to the light-emitting device, and a first discharge signal to the electrodes. The audio player receives the first activation signal and plays the first target audio, the light-emitting device receives the first light emission signal and emits red light, and the electrodes receive the first discharge signal and discharge.

[0041] For example, the quick sleep mode uses pulsed red light combined with white noise. When the first function button is pressed, the audio player plays the first target audio, and the light-emitting device emits red light. The first target audio is a preset audio set for this quick sleep mode. When the quick sleep mode is activated, pressing the first function button again stops the quick sleep mode, and at this time, both the audio player and the light-emitting device are in the off state. Specifically, when the first function button is pressed, the main circuit board receives a third control signal and sends a third activation signal to the audio player and a third light-emitting signal to the light-emitting device. The audio player receives the third activation signal and plays the first target audio, and the light-emitting device receives the third light-emitting signal and emits red light.

[0042] It should be noted that when the quick sleep mode is activated, the audio playback device, the light-emitting device, and the electrodes will automatically turn off after a corresponding fixed duration. For example, when the quick sleep mode is activated, the light-emitting device will turn off after emitting pulsed red light for a first preset duration, the electrodes will stop discharging after a second preset duration, and the audio playback device will turn off after playing the first target audio for a third preset duration.

[0043] In this invention, each mode is accompanied by certain execution parameters, such as the volume, frequency, and duration of the audio played by the broadcasting device, the current intensity and stimulation duration of the electrode discharge, and the color and duration of the light emitted by the light-emitting device. In one possible design, the eye mask body 10 may also be equipped with parameter setting buttons.

[0044] The second function button is connected to the main circuit board. This button is used to turn the audio playback device on or off, or to turn the light-emitting device on or off, or to disconnect or connect the electrodes via the main circuit board. The second function button 2 represents the insomnia treatment mode, which primarily involves periodic treatment during the day using transcranial direct current stimulation or blue light therapy. Therefore, the second function button is used to activate / deactivate the insomnia treatment mode. In one possible implementation, the insomnia treatment mode is executed by playing audio and emitting blue light. When the second function button is pressed, the audio playback device plays the second target audio, and the light-emitting device emits blue light. When the insomnia treatment mode is being executed, pressing the second function button again stops the insomnia treatment mode, and both the audio playback device and the light-emitting device are turned off. Specifically, when the second function button is pressed, the main circuit board receives the second control signal and sends a second activation signal to the audio playback device and a second light emission signal to the light-emitting device. The audio playback device receives the second activation signal and plays the second target audio, and the light-emitting device receives the second light emission signal and emits blue light.

[0045] In one possible design, an insomnia treatment mode can be executed via transcranial direct current stimulation and sound therapy. When the second function button is pressed, the playback device plays the second target audio and the electrodes discharge. When the insomnia treatment mode is being executed, pressing the second function button again stops the insomnia treatment mode, and the playback device and electrodes are in a deactivated state. Specifically, when the second function button is pressed, the main circuit board receives a fourth control signal and sends a fourth activation signal to the playback device and a second discharge signal to the electrodes. The playback device receives the fourth activation signal and plays the second target audio, and the electrodes receive the second discharge signal and discharge.

[0046] In one possible design, an insomnia treatment mode is implemented by combining audio playback, electrode discharge, and blue light. When the second function button is pressed, the playback device plays the second target audio and the electrode discharges. The electrode discharge stops after a preset first fixed duration, and the light-emitting device emits blue light. When the insomnia treatment mode is activated, pressing the second function button again turns off the playback device, electrodes, and light-emitting device. In another possible design, when the second function button is pressed, the playback device plays the second target audio and the light-emitting device emits blue light. The light-emitting device emits blue light for a preset second fixed duration before stopping, and the light-emitting device emits blue light again. When the insomnia treatment mode is activated, pressing the second function button again turns off the playback device, electrodes, and light-emitting device.

[0047] It should be noted that, similarly, when the insomnia treatment mode is executed, the broadcasting device, light-emitting device, or electrodes will automatically turn off after a corresponding fixed duration. For example, when the insomnia treatment mode is executed, the light-emitting device will turn off after emitting blue light for a fourth preset duration, and the broadcasting device will turn off after playing the second target audio for a fifth preset duration.

[0048] In one possible design, the function buttons also include a third function button 3, a fourth function button 4, and a fifth function button 5. The third function button 3 is a standalone phototherapy mode, where users can select parameters such as the color of the phototherapy, the frequency and intensity of the pulsed light, and the duration of the phototherapy according to their preferences. The fourth function button 4 is a standalone sound therapy mode, where users can select the music to be played, the volume, the duration, etc., according to their preferences. The fifth function button 5 is a standalone transcranial electrical stimulation mode, where users can select the intensity of the current, the duration, the electrical stimulation mode, etc., according to their preferences.

[0049] In one possible design, a communication module can be installed within the main body of the goggles. This module connects to the main circuit board and can also connect to software. The user can use the software to send commands to the power supply, audio system, light-emitting devices, and electrodes via the main circuit board to control these components and ensure they perform their respective functions. The software includes digital therapy functions such as breathing exercises and meditation relaxation techniques. Digital therapy can be used alone at any feasible time or in combination with any physical therapy method.

[0050] The headband-style eye mask provided by this utility model integrates three physical therapy methods: sound, light, and electricity. It also combines software to implement one or more treatment methods. In hospitals, these three physical therapy methods are usually separate, independent, and single-function devices. Therefore, this headband-style eye mask is different from the large-scale treatment equipment in hospitals.

[0051] Secondly, due to the heterogeneity of insomnia patients, a single treatment method may not be suitable for everyone. This head-mounted eye mask can achieve multiple treatment methods, meeting the needs of as many different groups as possible. It is flexible in use, suitable for hospitals as well as at home, in the office, and other non-hospital settings. It can be used in conjunction with a doctor's app, offering a customizable mode. Doctors can set matching treatment parameters, and through the matching hospital software, doctors can send detailed treatment plans to the user's insomnia treatment mode on the user's app for long-term home treatment.

[0052] This headband-style goggles are wearable devices with the advantages of being wireless, portable, and mobile.

[0053] In this embodiment of the invention, an electronic device is also provided, which includes, as follows: Figure 1 or Figure 2 The headband-style goggles shown in the embodiment.

[0054] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0055] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of this patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this patent application should be determined by the appended claims.

Claims

1. A headband-style eye mask, characterized in that, The headband-style goggles include a goggles body and a retractable strap; the goggles body is connected to the retractable strap, and the goggles body is provided with a first function button, a second function button, a broadcasting device, a light-emitting device, and electrodes; The first function button is used to activate / deactivate the quick sleep mode. When the first function button is pressed, the audio playback device plays the first target audio, the light-emitting device emits red light, and the electrode discharges. When the quick sleep mode is activated, the first function button is pressed again, the audio playback device is turned off, the light-emitting device is turned off, and the electrode stops discharging. The second function button is used to activate / deactivate the insomnia treatment mode. When the second function button is pressed, the audio playback device plays the second target audio and the light-emitting device emits blue light. When the insomnia treatment mode is activated, the second function button is pressed again, and the audio playback device and the light-emitting device are deactivated. Alternatively, when the second function button is pressed, the broadcasting device plays the second target audio and the electrodes discharge; when the insomnia treatment mode is executed, and the second function button is pressed again, the broadcasting device turns off and the electrodes stop discharging. The elastic band is used to control the tightness of the headband according to the wearer's head circumference.

2. The headband-style goggles according to claim 1, characterized in that, When the first function button is pressed, the audio playback device plays the first target audio and the light-emitting device emits red light; when the quick sleep mode is executed, the audio playback device and the light-emitting device turn off when the first function button is pressed again.

3. The headband-style goggles according to claim 1, characterized in that, When the second function button is pressed, the audio playback device plays the second target audio and the electrode discharges. The electrode discharge is turned off after a preset first fixed duration, and the light-emitting device emits blue light. Or, when the second function button is pressed, the broadcasting device plays the second target audio and the light-emitting device emits blue light. The light-emitting device emits blue light for a preset second fixed duration and then turns off, and the electrode discharges. When the insomnia treatment mode is activated, pressing the second function button again will turn off the broadcasting device, stop the electrodes from discharging, and turn off the light-emitting device.

4. The headband-style goggles according to claim 1, characterized in that, The broadcasting device is installed in the main body of the goggles at the ear side; The inner side of the eye mask body is provided with a first groove corresponding to the eye area. The first groove is used to place a light-emitting device, which is used to illuminate the patient's eyes by emitting light. A second groove is provided on the inner side of the main body of the eye mask at a position corresponding to the prefrontal cortex. The second groove is used to place electrodes, which are used to perform transcranial electrical stimulation on the brain region to which the eye mask is attached by passing an electric current.

5. The headband-style eye mask according to claim 4, characterized in that, The electrode includes a cathode and an anode, and the second grooves are symmetrically distributed, with the cathode and anode respectively disposed in the second grooves.

6. The headband-style goggles according to claim 1, characterized in that, The main body of the goggles is also provided with a main circuit board; The first function button, the second function button, the audio playback device, the light-emitting device, and the electrodes are respectively connected to the main circuit board; The first function key is used to turn the broadcasting device on or off via the main circuit board, or to turn the light-emitting device on or off via the main circuit board, or to disconnect or connect the electrode via the main circuit board. The second function key is used to turn the broadcasting device on or off via the main circuit board, or to turn the light-emitting device on or off via the main circuit board, or to disconnect or connect the electrode via the main circuit board.

7. The headband-style eye mask according to claim 6, characterized in that, When the first function button is pressed, the main circuit board receives the first control signal and sends the first power-on signal to the broadcasting device, sends the first light-emitting signal to the light-emitting device, and sends the first discharge signal to the electrode. The broadcasting device receives the first power-on signal and plays the first target audio, the light-emitting device receives the first light-emitting signal and emits red light, and the electrode receives the first discharge signal and discharges.

8. The headband-style goggles according to claim 6, characterized in that, When the second function button is pressed, the main circuit board receives the second control signal and sends the second activation signal to the broadcasting device and the second light emission signal to the light emission device. The broadcasting device receives the second activation signal and plays the second target audio, and the light emission device receives the second light emission signal and emits blue light.

9. The headband-style eye mask according to claim 1, characterized in that, The eye mask body has connectors at its left and right ends, which are used to connect the eye mask body and the retractable straps.

10. An electronic device, characterized in that, The electronic device includes a head-mounted goggles as described in any one of claims 1 to 9.