Disinfection method of wireless earphone, electronic device and readable storage medium

By setting disinfection trigger conditions and calculating backup disinfection time in the wireless earphone case, the problem of bacterial growth caused by failure to trigger disinfection after use of wireless earphones is solved, achieving a more precise and adaptive disinfection effect and protecting user health.

CN116320881BActive Publication Date: 2025-12-23JIANGXI RUISHENG ELECTRONIC CO LTD
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Patent Information

Application Number
CN202310280058.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-20
Publication Date
2025-12-23
Estimated Expiration
2043-03-20

AI Technical Summary

Technical Problem

The current wireless earphones, without being disinfected after use and stored in the earphone case for a long time, have a problem of bacterial growth, which affects the health of users.

Method used

By setting disinfection trigger conditions in the earphone case, it can determine whether the wireless earphones meet the backup disinfection conditions, calculate the backup disinfection duration based on the status and usage of the earphone case, and automatically start the disinfection function.

Benefits of technology

It effectively prevents bacterial growth inside the earphone case, protects the user's ear health, and improves the accuracy and adaptability of disinfection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a disinfection and sterilization method of a wireless earphone, and comprises the following steps: when the wireless earphone is placed in an earphone box, a disinfection and sterilization trigger state of the earphone box is acquired; if the earphone box does not trigger disinfection and sterilization, it is determined whether the wireless earphone meets a standby disinfection and sterilization condition; if the wireless earphone meets the standby disinfection and sterilization condition, a disinfection and sterilization duration is acquired. The application further discloses an electronic device and a readable storage medium. The application sets a trigger condition for starting standby disinfection and sterilization of the earphone box. After the wireless earphone is put into the earphone box, if the earphone is stored in the earphone box for a long time and disinfection and sterilization is not triggered, the earphone box can determine whether to start standby disinfection and sterilization of the wireless earphone in the earphone box according to the state of the earphone box, so that the phenomenon that bacteria breed in the earphone box due to long-time storage of the wireless earphone in the earphone box can be avoided, and the health of the user's ear can be ensured.
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Description

TECHNICAL FIELD

[0001] The embodiment of the application relates to the technical field of wireless earphones, in particular to a disinfection method of a wireless earphone, an electronic device and a readable storage medium. BACKGROUND

[0002] TWS (True Wireless Stereo, that is, true wireless stereo) earphones are developed based on Bluetooth chip technology, which connects a main earphone to an audio terminal such as a mobile phone, and then quickly connects a secondary earphone to the main earphone through a wireless way to realize true wireless separation of left and right channels. Since there is no need for wired connection, the TWS earphone is free from the shackles of traditional wired earphones, realizes a double-ear stereo effect, and is upgraded and optimized in sound quality, noise reduction, communication, transmission and battery life compared with traditional Bluetooth earphones.

[0003] With the increasing popularity of TWS earphones, users have higher and higher requirements for TWS earphones, and the concern of users for the hygiene of earphones is also increasing. After the user wears the TWS earphone, a closed space is formed between the TWS earphone and the ear canal of the user, and the air circulation in the closed space is poor, which can cause the inside of the ear to become hot and a large number of bacteria to breed and adhere to the TWS earphone. The longer the earphone is worn, the more bacteria will adhere to the earphone. Similarly, the earphone box has a closed space, and after the earphone is placed in the earphone box after being worn, more bacteria will breed in the earphone and the earphone box, which will affect the health of the user's ear. Therefore, cleaning of the earphone after use is particularly important.

[0004] To solve the problem of bacterial breeding on the earphone, some existing TWS earphone boxes are additionally provided with an ultraviolet disinfection function, and an ultraviolet lamp is used to disinfect the bacteria adhering to the TWS earphone. In the existing disinfection method, the time length of the earphone being separated from the earphone box is usually used as a reference to determine whether to start ultraviolet disinfection. However, in the actual use of the earphone, there is a situation that the earphone is not triggered for disinfection after use and is stored in the earphone box for a long time, which can cause a large number of bacteria to breed on the earphone placed in the earphone box and affect the health of the user's ear. SUMMARY

[0005] In view of the problems in the prior art, the application provides a disinfection method of a wireless earphone, an electronic device and a readable storage medium, which can solve the problem of bacterial breeding caused by the earphone being not triggered for disinfection after use and being stored in the earphone box for a long time.

[0006] In order to achieve the above purpose, the application adopts the following technical scheme:

[0007] A disinfection method of a wireless earphone, comprising:

[0008] obtaining a disinfection trigger state of the earphone box when the wireless earphone is placed in the earphone box;

[0009] if the earphone box does not trigger disinfection, determining whether the wireless earphone meets a standby disinfection condition;

[0010] if the wireless earphone meets the standby disinfection condition, obtaining a disinfection duration.

[0011] As one of the embodiments, the step of determining whether the wireless earphone meets the standby disinfection condition comprises:

[0012] obtaining an untriggered disinfection duration of the wireless earphone from the first wearing after the last disinfection to the current time;

[0013] if the untriggered disinfection duration is greater than or equal to a preset first duration, the wireless earphone meets the standby disinfection condition.

[0014] As one of the embodiments, the step of determining whether the wireless earphone meets the standby disinfection condition comprises:

[0015] obtaining a charging interface state of the earphone box;

[0016] if the charging interface state is high, the wireless earphone meets the standby disinfection condition.

[0017] As one of the embodiments, the step of determining whether the wireless earphone meets the standby disinfection condition comprises:

[0018] obtaining an untriggered disinfection duration of the wireless earphone from the first wearing after the last disinfection to the current time;

[0019] obtaining a charging interface state of the earphone box;

[0020] if any of the charging interface state being high and the untriggered disinfection duration being greater than or equal to a preset first duration is met, the wireless earphone meets the standby disinfection condition.

[0021] As one of the embodiments, the step of obtaining the disinfection duration comprises:

[0022] obtaining a total wearing duration of the wireless earphone after the last disinfection;

[0023] obtaining a first ratio of the total wearing duration and a preset first determination duration;

[0024] obtaining a first standby disinfection duration according to the first ratio.

[0025] As one of the implementations, the step of obtaining the first backup sterilization duration according to the first ratio is preceded by:

[0026] obtaining a charging interface state of the earphone box;

[0027] obtaining an untriggered sterilization duration of the wireless earphone from the first wearing after the last sterilization to the current time;

[0028] if the charging interface state is high, obtaining a sterilization duration according to the total wearing duration and the untriggered sterilization duration;

[0029] if the charging interface state is low, obtaining a first backup sterilization duration according to the first ratio.

[0030] As one of the implementations, the step of obtaining the sterilization duration according to the total wearing duration and the untriggered sterilization duration includes:

[0031] obtaining a corrected wearing duration according to the total wearing duration and the untriggered sterilization duration;

[0032] determining whether the corrected wearing duration is less than a preset first determination duration;

[0033] if not, obtaining a second backup sterilization duration according to the corrected wearing duration;

[0034] if yes, obtaining a first backup sterilization duration according to the first ratio.

[0035] As one of the implementations, the step of determining that the corrected wearing duration is less than a preset first determination duration is preceded by:

[0036] determining whether the untriggered sterilization duration is less than a preset first duration;

[0037] if yes, not starting backup sterilization;

[0038] if not, obtaining a first backup sterilization duration according to the first ratio.

[0039] As one of the implementations, the step of determining that the charging interface state is low is preceded by:

[0040] obtaining a remaining power of the earphone box;

[0041] determining whether the remaining power of the earphone box is less than a preset starting power;

[0042] if yes, not starting backup sterilization;

[0043] If not, a first backup sterilization duration is obtained according to the first ratio.

[0044] As one of the embodiments, the step of obtaining the first backup sterilization duration according to the first ratio comprises:

[0045] presetting a plurality of duration values of the first backup sterilization duration;

[0046] presetting a plurality of continuous first ratio intervals corresponding to the number of the duration values of the first backup sterilization duration;

[0047] determining the first ratio interval into which the first ratio falls;

[0048] obtaining the duration value of the first backup sterilization duration corresponding to the first ratio interval into which the first ratio falls, to obtain the first backup sterilization duration.

[0049] As one of the embodiments, the step of obtaining the modified wearing duration comprises:

[0050] obtaining a second ratio of the non-triggered sterilization duration to a preset first duration;

[0051] obtaining a corresponding correction coefficient according to the second ratio;

[0052] calculating the product of the total wearing duration and the correction coefficient to obtain the modified wearing duration.

[0053] As one of the embodiments, the step of obtaining the corresponding correction coefficient according to the second ratio comprises:

[0054] presetting a plurality of correction coefficients;

[0055] presetting a plurality of continuous second ratio intervals corresponding to the number of the correction coefficients;

[0056] determining the second ratio interval into which the second ratio falls;

[0057] obtaining the corresponding correction coefficient according to the second ratio interval into which the second ratio falls.

[0058] As one of the embodiments, the step of obtaining the second backup sterilization duration according to the modified wearing duration comprises:

[0059] presetting a plurality of duration values of the second backup sterilization duration;

[0060] presetting a plurality of continuous duration intervals corresponding to the number of the duration values of the second backup sterilization duration;

[0061] determining the duration interval into which the modified wearing duration falls;

[0062] Obtain a time length value of a second standby sterilization time length falling in the time length interval, to obtain the second standby sterilization time length.

[0063] Another object of the present application is to provide a computer readable storage medium storing a plurality of instructions adapted to be loaded by a processor and to execute the steps of the sterilization method of the wireless earphone.

[0064] Still another object of the present application is to provide an electronic device comprising a memory, a processor, and a sterilization program instruction of the wireless earphone stored in the memory and executable on the processor, the sterilization program instruction of the wireless earphone, when executed by the processor, implementing the sterilization method of the wireless earphone.

[0065] The present application sets the trigger condition of starting the standby sterilization of the earphone box, after the wireless earphone is put into the box, if the earphone is stored in the earphone box for a long time and the sterilization is not triggered, the earphone box will determine whether to start the standby sterilization of the wireless earphone in it according to its own state, which can avoid the phenomenon of bacterial growth in the earphone box caused by long-term storage of the wireless earphone in the earphone box, and can protect the health of the user's ear. BRIEF DESCRIPTION OF DRAWINGS

[0066] Figure 1 It is a sterilization method of a wireless earphone of embodiment 1 of the present application;

[0067] Figure 2A It is a standby sterilization time length acquisition method of an earphone box of embodiment 1 of the present application;

[0068] Figure 2B It shows a non-triggered sterilization time length acquisition method of embodiment 1 of the present application;

[0069] Figure 3 It is a standby sterilization time length acquisition method of an earphone box of embodiment 1 of the present application;

[0070] Figures 4 to 7 It shows several different standby sterilization time length acquisition methods of an earphone box of embodiment 2 of the present application;

[0071] Figure 8 It shows a standby sterilization time length acquisition method of an earphone box of embodiment 3 of the present application;

[0072] Figure 9 It shows a comprehensive time length acquisition method of embodiment 4 of the present application;

[0073] Figure 10 It shows a wireless earphone current wearing time length acquisition method of embodiment 4 of the present application;

[0074] Figure 11A Fig. 4 shows a schematic diagram of a method for acquiring the non-triggered sterilization duration according to an embodiment of the present application;

[0075] Figure 11B Fig. 5 shows another schematic diagram of a method for acquiring the non-triggered sterilization duration according to an embodiment of the present application;

[0076] Figure 12 Fig. 6 shows another schematic diagram of a method for acquiring the duration of the current wearing of the wireless earphone according to an embodiment of the present application;

[0077] Figure 13 Fig. 7 shows a schematic diagram of a method for acquiring the corrected wearing duration corresponding to the previous wearing duration according to an embodiment of the present application;

[0078] The implementation, functional features and advantages of the present application will be further described with reference to the accompanying drawings. DETAILED DESCRIPTION

[0079] In the present application, the terms “provided with”, “connected with” and “connected” should be understood in a broad sense. For example, it can be fixed connection, detachable connection, or integral structure; it can be mechanical connection, or electrical connection; it can be direct connection, or indirect connection through an intermediate medium, or internal communication between two devices, elements or components. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0080] The terms “first” and “second” are only for descriptive purpose, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with “first” and “second” can explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of “plurality” is at least two, such as two, three, etc., unless otherwise specifically limited.

[0081] In addition, in addition to being used to represent the orientation or positional relationship, the above-mentioned terms can also be used to represent other meanings, for example, the term “upper” can also be used to represent a certain dependent relationship or connection relationship in some cases. For those skilled in the art, the specific meaning of these terms in the present application can be understood according to the specific circumstances.

[0082] In order to make the purpose, technical solutions and advantages of the present application more clear, the present application will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application, and are not used to limit the present application.

[0083] The wireless earphone and the charging box matched with the wireless earphone provided by the embodiment of the present application have the functions of charging and bacteria killing, for example, the ultraviolet lamp and other disinfection devices can be arranged in the charging box, and after the wireless earphone is placed in the charging box, the disinfection device can be started according to the needs, so as to disinfect and sterilize the earphone worn by the user.

[0084] It can be understood that the wireless earphone of the present application includes but is not limited to TWS earphone, Bluetooth earphone and other wireless earphones that can be conveniently stored in the charging box.

[0085] Example 1

[0086] In order to conveniently control the killing of the wireless earphone, the embodiment of the present application provides a killing method of the wireless earphone, as shown in Figure 1 , the killing method of the wireless earphone includes the determination of the killing trigger state, the standby killing determination after the killing is not triggered and the acquisition of the standby killing time length, and specifically can include:

[0087] S10, determining whether the wireless earphone is placed in the earphone box;

[0088] S11, when the wireless earphone is placed in the earphone box, acquiring the killing trigger state of the earphone box;

[0089] S12, if the killing of the earphone box is not triggered, determining whether the wireless earphone meets the standby killing condition;

[0090] S13, if the wireless earphone meets the standby killing condition, acquiring the killing time length to perform standby killing.

[0091] Since the earphone box and the ear canal with the wireless earphone inserted therein can form a closed space with poor air flow for bacteria breeding, the wireless earphone will breed bacteria in the ear canal, and the wireless earphone that does not trigger the killing after being worn will also breed bacteria in the earphone box. When the wireless earphone is in the earphone box and the killing is not triggered, the embodiment further determines whether the wireless earphone meets the standby killing condition, which can solve the problem that the wireless earphone is stored in the earphone box for a long time due to not meeting the killing condition in the prior art, and avoids the problem of user's ear health caused by long-term breeding of bacteria in the earphone box.

[0092] In the embodiment, in order to conveniently detect the putting-in and taking-out actions of the wireless earphone, a putting-in detection sensor can be arranged in the earphone box. When the wireless earphone is detected to be put into or taken out of the earphone box, the level signal of the putting-in detection sensor changes, thereby sending a corresponding putting-in signal or taking-out signal. Alternatively, contacts can be arranged on the wireless earphone and the earphone box respectively. When the wireless earphone is put into the earphone box, the contacts on the wireless earphone and the contacts on the earphone box form a loop, thereby generating a putting-in signal. When the wireless earphone is taken out of the earphone box, the contacts on the wireless earphone and the contacts on the earphone box are disconnected, thereby generating a taking-out signal. In this way, the putting-in and taking-out of the wireless earphone can also be determined.

[0093] Correspondingly, in step S10, whether the wireless earphone is placed in the earphone box can be determined by the putting-in detection sensor on the earphone box or the conduction state of the contacts on the earphone and the earphone box. When the putting-in detection sensor is arranged on the earphone box, if the putting-in detection sensor sends a putting-in signal, it indicates that the wireless earphone is in the earphone box. Conversely, if the putting-in detection sensor sends a taking-out signal, it indicates that the wireless earphone is not in the earphone box. When the contacts are arranged on the earphone and the earphone box respectively, if the contacts on the earphone and the earphone box are in a conduction state, it indicates that the wireless earphone is in the earphone box. Conversely, if the contacts on the earphone and the earphone box are in a disconnected state, it indicates that the wireless earphone is not in the earphone box.

[0094] For example, in step S11, the sterilization trigger state of the earphone box can be determined by the determination module in the earphone box. When the determination module determines that sterilization cannot be triggered, the earphone box does not perform sterilization, and then it is determined whether the wireless earphone meets the standby sterilization condition. Conversely, the earphone box can perform sterilization on the wireless earphone therein.

[0095] As shown in FIG. 1, Figure 2A In one embodiment, in step S12, the process of determining whether the wireless earphone meets the standby sterilization condition includes:

[0096] S121, obtaining an untriggered sterilization duration, that is, a duration from the first wearing after the last sterilization to the current time when the wireless earphone is not triggered to sterilize;

[0097] S122, determining whether the untriggered sterilization duration is greater than or equal to a preset first duration;

[0098] If yes, the wireless earphone meets the standby sterilization condition, and then step S13 of obtaining the sterilization duration of standby sterilization can be performed.

[0099] If no, the wireless earphone does not meet the standby sterilization condition, and step S13 is not performed, but step S121 of obtaining the untriggered sterilization duration is continuously performed.

[0100] That is, in this embodiment, if the earphone box does not trigger disinfection, it is further determined whether the disinfection trigger time length meets the standby disinfection condition. From the time when the wireless earphone is put into the earphone box after being worn for the first time but cannot trigger disinfection, the time length is started to be counted, and after the determination module determines that disinfection cannot be triggered in step S11, if the time length between the time when the disinfection trigger time length is started to be counted and the current time reaches the preset first time length, it can be considered that the pollution degree of the wireless earphone at the current time meets the standby disinfection condition, and the next step S13 can be performed to obtain the disinfection time length of standby disinfection, that is, the first standby disinfection time length.

[0101] In one embodiment, as Figure 2B The step S121 of obtaining the disinfection trigger time length specifically includes:

[0102] S1211, obtaining a first time when the wireless earphone is worn for the first time after the last disinfection and cannot trigger disinfection as the first time; the first time is the time when the wireless earphone is put into the earphone box after being worn for the first time after the last disinfection, and the determination module determines that disinfection cannot be triggered;

[0103] S1212, obtaining a current time; the current time is the time when the wireless earphone is stored in the earphone box after being worn for the first time, and the current time is the time when it is currently determined whether the wireless earphone meets the standby disinfection condition;

[0104] S1213, calculating the time length between the current time and the first time to obtain the disinfection trigger time length.

[0105] It can be understood that if the detection sensor on the wireless earphone detects that the earphone is not in the ear after the wireless earphone is disinfected for the last time, it means that the earphone is not contaminated, and the disinfection trigger time length is 0, that is, the disinfection trigger time length refers to the time length from the first time when the earphone cannot trigger disinfection after being used in the ear after the last disinfection to the current time. The disinfection trigger time length obtained by calculating the time length between the current time and the first time can more accurately obtain the time length of the earphone after being contaminated after being used in the ear after the last disinfection without disinfection, and improve the accuracy of determining whether the wireless earphone meets the standby disinfection condition in the subsequent step S122 according to the disinfection trigger time length.

[0106] The disinfection trigger time length can also be obtained by means of a timing module or a timing program. Specifically, after the last disinfection, if the wireless earphone cannot trigger disinfection after being worn for the first time, the timing module or the timing program starts to count, and after the earphone-in-box signal is obtained, if it is determined that standby disinfection cannot be triggered, the counting continues; if standby disinfection is triggered, the accumulated disinfection trigger time length is cleared. The earphone-in-box signal can be obtained by the earphone-in-box detection sensor in the earphone box or the conduction state of the contacts on the earphone and the earphone box.

[0107] As Figure 3In an embodiment, if the wireless earphone meets the standby disinfection condition, the step S13 of obtaining the disinfection duration includes:

[0108] S131, obtaining the total wearing duration of the wireless earphone after the last disinfection;

[0109] S132, obtaining a first ratio of the total wearing duration to a preset first determination duration;

[0110] S133, obtaining the first standby disinfection duration according to the first ratio.

[0111] The preset first determination duration can be a preset duration for measuring the use degree of the wireless earphone. The determination module can determine whether the contamination degree of the wireless earphone meets the condition of triggering the disinfection of the earphone case according to whether the calculated earphone use duration reaches the preset first determination duration. The longer the total wearing duration, the more bacteria on the wireless earphone and the earphone case, and the longer the disinfection duration required for the wireless earphone. In the steps S131-S133, by comparing the total wearing duration with the preset first determination duration, the greater the ratio, the more serious the contamination degree of the wireless earphone. According to the first ratio of the two, the closeness of the two is measured, and the first standby disinfection duration for achieving the ideal disinfection effect is calculated. The calculation of the standby disinfection duration is more accurate and reasonable.

[0112] In an embodiment, the wearing duration of the wireless earphone can be obtained by a detection sensor arranged on the earphone, preferably an in-ear detection sensor. The in-ear detection sensor can be an optical sensor or a capacitive sensor. For example, the optical sensor can form a level signal by detecting the reflection signal of the human body, so as to determine whether the earphone is in the ear; the capacitive sensor can sense the capacitance value of the human body, so as to determine whether the earphone is in the ear. When the user wears the wireless earphone, the in-ear detection sensor detects that the earphone has been inserted into the ear canal of the user and sends an in-ear signal. After the earphone case receives the in-ear signal, the counting of the wearing duration starts, and the time is the in-ear time. The counting action can be realized by a program or hardware on the earphone case or the earphone or independent of the earphone case and the earphone. When the user takes off the wireless earphone from the ear, the in-ear detection sensor detects that the earphone is separated from the ear canal of the user and sends an out-ear signal. After the earphone case receives the out-ear signal, the counting of the wearing duration stops, and the time is the out-ear time. In this way, the wearing duration of the earphone can be obtained according to the signals corresponding to the in-ear time and the out-ear time.

[0113] It can be understood that in actual use, there can be a situation that the user takes off the wireless earphone and does not put it into the earphone box, and then wears it again, so that the wearing time length of the wireless earphone from being separated from the earphone box to being put into the earphone box can be a continuous time length, or a sum of several continuous time lengths. By calculating and accumulating the time length between each ear-in time and the ear-out time corresponding to each ear-in time, the wearing time length of the earphone each time can be accurately obtained. Of course, the wearing time length each time can also be obtained by means of a timing module or a timing program. Specifically, when the ear-in signal is detected, the timing module or the timing program starts, and when the ear-out signal is detected, the timing module or the timing program stops, and then the wearing time length each time is obtained.

[0114] When the user wears the wireless earphone, the user will put the wireless earphone back into the earphone box. When the wireless earphone is put into the earphone box, the determination module in the earphone box determines whether the wireless earphone meets the condition of triggering sterilization. Before the determination module determines whether to trigger sterilization, the previous wearing time length needs to be obtained from the preset accumulation module in the earphone box. The previous wearing time length is the wearing time length accumulated when the earphone does not meet the condition of triggering sterilization from the previous sterilization to the current wearing. After the determination module determines not to trigger sterilization, the current wearing time length is counted into the accumulation module, that is, after the determination module determines not to trigger sterilization, the current wearing time length is accumulated to the previous wearing time length, and the previous wearing time length is the total wearing time length.

[0115] Exemplarily, according to the first ratio, the step S133 of obtaining the first standby sterilization time length can specifically include:

[0116] presetting a plurality of time length values of the first standby sterilization time length;

[0117] presetting a plurality of continuous first ratio intervals corresponding to the number of the time length values of the first standby sterilization time length;

[0118] determining the first ratio interval into which the first ratio falls;

[0119] obtaining the time length value of the first standby sterilization time length corresponding to the first ratio interval into which the first ratio falls, to obtain the first standby sterilization time length.

[0120] By presetting a plurality of time length values of the first standby sterilization time length, the possible range of the first ratio is divided into a plurality of first ratio intervals corresponding to the number of the preset time length values of the first standby sterilization time length. When the first ratio is calculated, according to the first ratio interval into which the first ratio falls, the time length value of the first standby sterilization time length corresponding to each first ratio interval can be obtained.

[0121] The embodiment further calculates the standby sterilization duration corresponding to different total wearing durations by obtaining the total wearing duration of the wireless earphone after the last sterilization when the wireless earphone is in the earphone box and the sterilization is not triggered, and the standby sterilization duration is longer when the total wearing duration is longer, so that different standby sterilization durations can be provided for the wireless earphone according to different pollution levels of the wireless earphone, the health of the user's ear is ensured, and the power of the earphone box is saved.

[0122] Example 2

[0123] On the basis of the embodiment 1, the embodiment further considers the influence of the state of the earphone box on the determination of the sterilization duration, and the state of the earphone box is further combined in the calculation of the sterilization duration.

[0124] The embodiment provides a different trigger condition of the standby sterilization, and the determination of whether the wireless earphone meets the standby sterilization condition includes not only the sterilization duration but also the state of the earphone box. In the step S12, the process of determining whether the wireless earphone meets the standby sterilization condition further includes: obtaining the state of the earphone box before the step S122; and determining whether the wireless earphone meets the standby sterilization condition according to the state of the earphone box.

[0125] The state of the earphone box can include the charging interface state of the earphone box, and the charging interface state of the earphone box includes a high level and a low level. The high level represents that the earphone box has been connected to an external power supply, so that the earphone box is in a charging state, and the low level represents that the earphone box has not been connected to the external power supply.

[0126] That is, the embodiment considers the state of the earphone box when calculating the duration of the standby sterilization, so that the wireless earphone can be sterilized under the premise that the earphone box normally uses the charging function. When the charging interface state is high, it means that the earphone box has been connected to an external power supply, and the charging interface state is the supply voltage. In this state, the sterilization function of the earphone box can be powered by the external power supply, so that the power of the battery box itself does not need to be considered, and the next step S13 can be performed to obtain the sterilization duration of the standby sterilization. When the charging interface state is low, it means that the earphone box has not been connected to the external power supply, and the supply voltage is 0. Whether to start the standby sterilization and calculate the duration of the standby sterilization is determined according to the actual situation.

[0127] For example, Figure 4 In the embodiment, the standby sterilization condition includes the charging interface state of the earphone box, and the steps S12 and S13 of determining whether the wireless earphone meets the standby sterilization condition and obtaining the standby sterilization duration can specifically include:

[0128] S1201, obtaining the charging interface state of the earphone box;

[0129] S1301, if the charging interface state is high, obtaining the total wearing duration, and obtaining the sterilization duration according to the total wearing duration and the non-triggered sterilization duration;

[0130] S1302, if the charging interface state is low, obtaining the first standby sterilization duration according to the first ratio.

[0131] In step S1302, the step of obtaining the first standby sterilization duration according to the first ratio can be the same as in Embodiment 1, that is, if the charging interface state is low, first perform steps S121-S122 described above to determine whether the wireless earphone meets the standby sterilization condition according to the non-triggered sterilization duration, if the non-triggered sterilization duration is greater than or equal to the preset first duration, then perform S131-S133, thereby obtaining the first standby sterilization duration according to the first ratio to start standby sterilization; otherwise, step S13 is not performed, but the non-triggered sterilization duration is continued to be obtained.

[0132] In this embodiment, when the wireless earphone is in the earphone box and the sterilization is not triggered, first determine the way to obtain the sterilization duration according to the charging interface state of the earphone box, then when the earphone box is in the charging state, obtain the sterilization duration according to the total wearing duration and the non-triggered sterilization duration; when the earphone box is not charging, only when the non-triggered sterilization duration is greater than or equal to the preset first duration, the first standby sterilization duration is obtained, otherwise, standby sterilization is not started, and there is no need to calculate the duration of standby sterilization.

[0133] In the use of the wireless earphone, there may be multiple short-time wearing and then putting into the earphone box without triggering sterilization, or long-time wearing and then putting into the earphone box for storage without further use, etc. When the wireless earphone is put into the earphone box after use and cannot trigger sterilization, bacteria will multiply a lot in the earphone box, and before the trigger condition of the preset duration is met, the bacteria in the earphone box will be more with the increase of the non-triggered sterilization duration. Therefore, before the sterilization is not triggered, the non-triggered sterilization duration and the total wearing duration will both affect the amount of bacteria breeding in the wireless earphone and the earphone box. The longer the total wearing duration and the non-triggered sterilization duration, the more bacteria will be in the wireless earphone and the earphone box.

[0134] Considering this factor, the non-triggered sterilization duration is used to correct the total wearing duration in this embodiment, and finally the corrected wearing duration is obtained, which can be used as a judgment basis for the degree of bacteria breeding on the wireless earphone. The longer the corrected wearing duration, the more serious the degree of bacteria breeding, and when the corrected wearing duration is greater than or equal to the preset first judgment duration, standby sterilization can be started. Figure 5 As shown in one embodiment, the step S1301 of obtaining the sterilization duration according to the total wearing duration and the non-triggered sterilization duration can include:

[0135] S13011, obtaining a modified wearing time length according to the total wearing time length and the non-triggered disinfection time length;

[0136] S13012, determining whether the modified wearing time length is less than a preset first determination time length;

[0137] S13013, if not, obtaining a second backup disinfection time length according to the modified wearing time length, and then the second backup disinfection time length can be used as the time length of backup disinfection;

[0138] S13014, if yes, performing step S133, obtaining a first backup disinfection time length according to the first ratio, and then the first backup disinfection time length can be used as the time length of backup disinfection.

[0139] Further, the backup disinfection condition includes the non-triggered disinfection time length, and after the step of determining that the modified wearing time length is less than the preset first determination time length in the step S13014, the step can include:

[0140] Step S122: determining whether the non-triggered disinfection time length is greater than or equal to a preset first time length;

[0141] If yes, performing step S133: obtaining a first backup disinfection time length according to the first ratio;

[0142] If not, the backup disinfection is not started.

[0143] That is, after the step of determining that the modified wearing time length is less than the preset first determination time length in the step S13012, it can not be directly determined that the wireless earphone does not meet the backup disinfection condition and the backup disinfection is not started, but whether to obtain the first backup disinfection time length is determined by further determining whether the non-triggered disinfection time length is greater than or equal to the preset first time length, and then disinfection is performed with the first backup disinfection time length. Since different backup disinfection time lengths are obtained according to different conditions in the embodiment, the differentiated disinfection needs of different scenes can be well met, and the calculation accuracy of the disinfection time length is improved.

[0144] Exemplarily, in step S13011, the process of obtaining the modified wearing time length according to the total wearing time length and the non-triggered disinfection time length includes:

[0145] Obtaining a second ratio of the non-triggered disinfection time length to the preset first time length;

[0146] Obtaining a corresponding correction coefficient according to the second ratio;

[0147] Calculating the product of the total wearing time length and the correction coefficient to obtain the modified wearing time length.

[0148] In step S13011, by comparing the non-triggered disinfection duration with the preset first duration, a second ratio is obtained, the larger the second ratio is, the closer the non-triggered duration is to the preset first duration, and then a corresponding coefficient is obtained according to the second ratio, and the coefficient is used as a correction coefficient. In this way, the situation that the wireless earphone cannot be disinfected when placed in the earphone box before triggering disinfection can be compensated in a correction manner, so that the finally obtained standby disinfection duration is more suitable for actual needs.

[0149] Optionally, the step of obtaining the corresponding correction coefficient according to the second ratio can specifically include:

[0150] presetting a plurality of correction coefficients;

[0151] presetting a plurality of continuous second ratio intervals corresponding to the number of correction coefficients;

[0152] determining the second ratio interval in which the second ratio falls;

[0153] obtaining the corresponding correction coefficient according to the falling second ratio interval.

[0154] For example, if there are 4 correction coefficients, the possible range of the second ratio is divided into 4 second ratio intervals, and when the calculated second ratio falls between the lower limit value and the upper limit value of a certain second ratio interval, the correction coefficient corresponding to the second ratio interval is obtained. For example, the preset correction coefficient is selected from the interval [1, 2], and the corrected wearing duration after the total wearing duration is corrected will be increased or remain unchanged to a certain extent.

[0155] Similarly, in step S13013, the process of obtaining the second standby disinfection duration according to the corrected wearing duration can specifically include:

[0156] presetting a plurality of second standby disinfection duration values;

[0157] presetting a plurality of continuous duration intervals corresponding to the number of second standby disinfection duration values;

[0158] determining the duration interval in which the corrected wearing duration falls;

[0159] obtaining the second standby disinfection duration value of the falling duration interval to obtain the second standby disinfection duration.

[0160] The above embodiments introduce a case where the charging interface state of the earphone box and the non-triggered sterilization duration are simultaneously used as necessary conditions for determining whether the wireless earphone meets the standby sterilization condition. It can be understood that, in other embodiments, the state of the earphone box can be used instead of the non-triggered sterilization duration on the basis of Embodiment 1, and the state of the earphone box is used as the only basis for determining whether the wireless earphone meets the standby sterilization condition. Alternatively, the charging interface state of the earphone box and the non-triggered sterilization duration are used as parallel standby sterilization determination conditions. As long as the state of the earphone box or the non-triggered sterilization duration meets the requirement, it is considered that the wireless earphone meets the standby sterilization condition, and step S13 can be performed.

[0161] For example, in another embodiment, the present application provides a different trigger condition for standby sterilization. In step S12, the condition for determining whether the wireless earphone meets the standby sterilization condition is not the non-triggered sterilization duration, but the charging interface state of the earphone box. Accordingly, as shown in FIG. 12, the process of determining whether the wireless earphone meets the standby sterilization condition in step S12 includes: Figure 6

[0162] S1201, obtaining the charging interface state of the earphone box;

[0163] S1202, if the charging interface state is high, it is considered that the wireless earphone meets the standby sterilization condition, and the subsequent step S13 can be performed.

[0164] In this embodiment, once it is detected that the earphone box is powered by an external power supply, the standby sterilization duration is obtained. Exemplarily, the standby sterilization duration can be obtained according to step S1301.

[0165] For another example, in another embodiment, the state of the earphone box and the non-triggered sterilization duration are simultaneously used as the basis for determining whether the wireless earphone meets the standby sterilization condition. As long as one of the state of the earphone box and the non-triggered sterilization duration meets the requirement, it is considered that the wireless earphone meets the standby sterilization condition. Accordingly, as shown in FIG. 13, the process of determining whether the wireless earphone meets the standby sterilization condition in step S12 includes: Figure 7

[0166] S121, obtaining the non-triggered sterilization duration;

[0167] S1201, obtaining the charging interface state of the earphone box;

[0168] S123, if any one of the charging interface state being high and the non-triggered sterilization duration being greater than or equal to the preset first duration is met, it is considered that the wireless earphone meets the standby sterilization condition, and the next step S13 can be performed to obtain the sterilization duration for standby sterilization.

[0169] ​​Since the embodiment takes the state of the earphone box and the non-triggered sterilization duration as parallel judgment basis of whether the wireless earphone meets the standby sterilization condition, it can determine whether to start standby sterilization and calculate the sterilization duration according to the actual situation, which is more in line with the actual demand compared with the standby sterilization process of embodiment 1.

[0170] Example 3

[0171] In view of the fact that in actual use, the remaining power of the earphone box may not be enough to complete standby sterilization, or after completing standby sterilization, it may not meet the charging demand of the user. On the basis of embodiment 2, the state of the earphone box of the embodiment further includes the remaining power of the earphone box in addition to the charging interface state of the earphone box.

[0172] As Figure 8 , the factors affecting the standby sterilization duration include the charging interface state of the earphone box, the charging interface state of the earphone box, the non-triggered sterilization duration, and the corrected wearing duration. After the step of determining that the charging interface state is low, the step of obtaining the standby sterilization duration can further include:

[0173] S141, obtaining the remaining power of the earphone box;

[0174] S142, determining whether the remaining power of the earphone box is less than the preset starting power;

[0175] If yes, standby sterilization is not started;

[0176] If no, step S133 is executed: obtaining the first standby sterilization duration according to the first ratio.

[0177] Through the above setting, when the remaining power of the earphone box is less than the preset starting power, standby sterilization is not started, which can ensure the normal starting function of the earphone box.

[0178] It can be understood that the above steps S141 and S142 can be further included in each of the above embodiments in embodiments 1 and 2. For example, in the embodiment without considering the charging interface state of the earphone box, as shown in the case of Figure 2A , Figure 3 , the above step S142 can be executed before step S131 in Figure 3 , and can be executed before step S121 of obtaining the non-triggered sterilization duration in Figure 2A . If the determination result of step S142 is yes, standby sterilization is not started; if the determination result is no, the normal Figure 2A , Figure 3The first step and the step of obtaining the first standby sterilization duration thereafter; for example, in the embodiment in which the standby sterilization condition includes the charging interface state of the earphone box, the step S142 can be performed preferentially after the step of determining that the charging interface state is low, and if the remaining power is less than the preset starting power, the standby sterilization is not started, otherwise, the subsequent steps can be normally executed.

[0179] Example 4

[0180] The method for obtaining the duration of the standby sterilization in the above embodiment is more accurate in calculating the duration of the standby sterilization, and can better balance the sterilization effect and power consumption, because the duration of long-time storage of the wireless earphone in the earphone box is considered.

[0181] Before the steps S12-S13, the step S11 needs to obtain the sterilization trigger state of the earphone box, and the sterilization trigger state of the earphone box can be determined by a determination module in the earphone box. For example, if the comprehensive duration reaches a preset first determination duration, the determination module determines that the contamination degree of the wireless earphone meets the condition of triggering the sterilization of the earphone box; otherwise, the determination module determines that the wireless earphone cannot trigger the sterilization. For example, Figure 9 Fig. 1 shows a schematic diagram of a method for obtaining a comprehensive duration according to an embodiment of the present application, wherein the method for obtaining the comprehensive duration mainly includes:

[0182] S01, obtaining a wearing duration of the wireless earphone this time;

[0183] S02, obtaining a previous wearing duration, which is the wearing duration accumulated by the wireless earphone from the previous sterilization to the current wearing;

[0184] S03, obtaining an untriggered sterilization duration, which is the duration from the first wearing after the previous sterilization to the current time without triggering the sterilization;

[0185] S04, compensating the previous wearing duration according to the untriggered sterilization duration to obtain a corrected wearing duration;

[0186] S05, obtaining a comprehensive duration according to the wearing duration this time and the corrected wearing duration.

[0187] It can be understood that the steps S01 and S02 can be performed simultaneously or sequentially, and the order thereof is not limited in the present embodiment.

[0188] The embodiment compensates for the previous wearing time length by the non-triggered sterilization time length, obtains a modified wearing time length, and then obtains a comprehensive time length by combining the modified wearing time length and the current wearing time length. The comprehensive time length can be used as a basis for measuring the earphone use time length to determine whether to sterilize the earphone. Since the embodiment considers the real wearing time length of the wireless earphone in the ear and the influence of the earphone box on the bacterial growth of the earphone, a more accurate earphone use time length can be obtained, the accuracy of the earphone sterilization determination is improved, the waste of the earphone box power is avoided, the use time length of the earphone box is prolonged, and the sterilization effect is ensured.

[0189] In one embodiment, as Figure 10 The step S01 of obtaining the current wearing time length of the wireless earphone specifically includes:

[0190] S011, obtaining and recording the in-ear time of all in-ear signals and the out-of-ear time of all out-of-ear signals emitted by the wireless earphone during the process of the wireless earphone being separated from the earphone box;

[0191] S012, calculating and accumulating the time length between each in-ear time and the out-of-ear time corresponding to each in-ear time to obtain the current wearing time length.

[0192] It can be understood that the current wearing time length of the earphone can be accurately obtained by calculating and accumulating the time length between each in-ear time and the out-of-ear time corresponding to each in-ear time. Of course, the current wearing time length can also be obtained by means of a timing module or a timing program. Specifically, when the in-ear signal is detected, the timing module or the timing program starts, and when the out-of-ear signal is detected, the timing module or the timing program stops, thereby obtaining the current wearing time length.

[0193] In one embodiment, as Figure 11A The step S03 of obtaining the non-triggered sterilization time length specifically includes:

[0194] S031, obtaining a first time when the wireless earphone is first worn after the previous sterilization and before the sterilization is triggered;

[0195] S032, obtaining an earphone box entering time when the wireless earphone is put into the earphone box after the current wearing;

[0196] S033, calculating the time length between the earphone box entering time and the first time to obtain the non-triggered sterilization time length.

[0197] After obtaining the current wearing time length, the previous wearing time length, and the non-triggered sterilization time length, the subsequent steps S04 and S05 can be performed to calculate the comprehensive time length, and the comprehensive time length is used as a standard for measuring the earphone use time length to determine whether to trigger sterilization.

[0198] In some use scenarios, after the user puts the wireless earphone into the earphone box, the user may take out the wireless earphone again within a short period of time (for example, 5s). If the wearing duration is counted again within the short period of time, the disinfection duration is not triggered, and the comprehensive duration is calculated, unnecessary operation and statistics will be increased, and the power consumption will also be increased to a certain extent.

[0199] Based on the above considerations, as Figure 11B In one embodiment, the case where the wireless earphone is put into the earphone box and then taken out within a short period of time is regarded as not being put into the earphone box, and the wearing duration and the disinfection duration not triggered in this period are normally counted. Therefore, before the step S033 of calculating the duration between the earphone-in-box time and the first time, the process of obtaining the disinfection duration not triggered can further include:

[0200] S0321, start counting when the earphone-in-box signal is detected;

[0201] S0322, before the counting duration reaches the preset first threshold, if the earphone-out-box signal is detected, the earphone-in-box signal in step S0321 is ignored, the next earphone-in-box time of the wireless earphone is obtained, and the counting is restarted until the counting duration reaches the preset first threshold;

[0202] S0323, when the counting duration reaches the preset first threshold, if the earphone-out-box signal is not detected, the duration between the earphone-in-box time and the first time is calculated, and the counting duration is accumulated to the disinfection duration not triggered.

[0203] Similarly, in one embodiment, as Figure 12 The step S01 of obtaining the wearing duration of the wireless earphone can further include:

[0204] S0111, start counting when the earphone-in-box signal is detected;

[0205] S0112, before the counting duration reaches the preset first threshold, if the earphone-out-box signal is detected, the earphone-in-box signal in step S0111 is ignored, the wearing duration is continuously accumulated, the next earphone-in-box time of the wireless earphone is obtained, and the counting is restarted until the counting duration reaches the preset first threshold;

[0206] S0113, when the counting duration reaches the preset first threshold, if the earphone-out-box signal is not detected, the wearing duration counting is ended.

[0207] The longer the pre-wearing time length and the non-triggered sterilization time length are, the more bacteria the wireless earphone and the earphone box will have before triggering sterilization. After obtaining the pre-wearing time length and the non-triggered sterilization time length through steps S02 and S03 respectively, the embodiment further compensates the pre-wearing time length by the non-triggered sterilization time length to obtain the corrected wearing time length in step S04. The corrected wearing time length can better reflect the bacterial breeding factors of the wireless earphone in the earphone box during the non-triggered sterilization period.

[0208] As Figure 13 , one of the ways to obtain the corrected wearing time length corresponding to the pre-wearing time length when performing step S11 is shown. In this embodiment, the pre-wearing time length is compensated according to the non-triggered sterilization time length to obtain the corrected wearing time length. The step S04 of obtaining the corrected wearing time length according to the non-triggered sterilization time length includes:

[0209] S041, obtaining a correction coefficient according to the non-triggered sterilization time length;

[0210] S042, obtaining the corrected wearing time length according to the pre-wearing time length and the correction coefficient. The corrected wearing time length can be the product of the pre-wearing time length and the correction coefficient.

[0211] In step S04, the way to obtain the corrected wearing time length corresponding to the pre-wearing time length can be basically similar to the aforementioned step S13011. By comparing the non-triggered sterilization time length with the preset first time length, a ratio is obtained. The larger the ratio is, the closer the non-triggered sterilization time length is to the preset first time length. Then, according to the ratio, a corresponding coefficient is obtained, which is used as the correction coefficient.

[0212] In one embodiment, the comprehensive time length is the sum of the current wearing time length and the corrected wearing time length. In this way, the comprehensive time length obtained by adding the current wearing time length and the corrected wearing time length can be used to measure the earphone use time length, which is used as the basis for judging whether to trigger sterilization.

[0213] In one embodiment, the wireless earphone includes a first earphone and a second earphone (e.g., left and right earphones), and during the acquisition of the earphone use time length, the integrated time length of the first earphone and the second earphone can be calculated respectively when the disinfection of the wireless earphone, and the integrated time length of each earphone is used as a standard for measuring the actual use time length, and it is determined whether to trigger the disinfection of the corresponding first earphone and second earphone according to whether the integrated time length of the first earphone and the second earphone reaches the corresponding preset first judgment time length. Similarly, when the wireless earphone is disinfected, it can be determined whether the first earphone and the second earphone meet the standby disinfection condition respectively, and it is determined whether to start the standby disinfection of the corresponding earphone and calculate the standby disinfection time length according to the determination result of whether the first earphone and the second earphone meet the standby disinfection condition. By respectively determining the standby disinfection condition of the single earphone and calculating the standby disinfection time length of each earphone, the unnecessary consumption of the earphone box power can be reduced to a certain extent.

[0214] Another embodiment of the present application provides a computer readable storage medium, which stores a plurality of instructions adapted to be loaded by a processor and execute the steps of the disinfection method of the wireless earphone.

[0215] Another embodiment of the present application provides an electronic device, which includes a memory (not shown), a processor (not shown), and a disinfection program instruction of the wireless earphone stored in the memory and executable on the processor, and the disinfection program instruction of the wireless earphone is executed by the processor to implement the disinfection method of the wireless earphone.

[0216] In some embodiments, the processor can be a central processing unit (CPU), a controller, a microcontroller, a microprocessor, or other data processing chip. The processor is usually used to control the overall operation of the electronic device. In the present embodiment, the processor is used to run the program code stored in the readable storage medium or process data.

[0217] From the above description of the embodiments, those skilled in the art can clearly understand that the above-mentioned embodiment method can be realized by means of software and the necessary general hardware platform, of course, it can also be realized by hardware, but in many cases the former is a better embodiment. Based on such understanding, the technical solutions of the present application can be embodied in the form of a software product, which is stored in a readable storage medium (such as ROM / RAM, magnetic disk, optical disk), and includes a plurality of instructions for making a terminal (which can be a mobile phone, computer, server, air conditioner, or network device, etc.) execute the method described in each embodiment of the present application.

[0218] The above description is only a specific implementation of the present application. It should be pointed out that, for those skilled in the art, without departing from the principles of the present application, a number of improvements and refinements can be made, which should also be considered as the protection scope of the present application.

Claims

1. A disinfection and sterilization method of a wireless earphone, characterized in that, The method comprises the following steps: obtaining a disinfection trigger state of an earphone box when a wireless earphone is placed in the earphone box; if the earphone box does not trigger disinfection, determining whether the wireless earphone meets a standby disinfection condition; if the wireless earphone meets the standby disinfection condition, obtaining a disinfection duration; the step of determining whether the wireless earphone meets the standby disinfection condition comprises: obtaining an untriggered disinfection duration of the wireless earphone from the first wearing after the last disinfection to the current time without triggering disinfection; obtaining a charging interface state of the earphone box; if any of the charging interface state being high and the untriggered disinfection duration being greater than or equal to a preset first duration is met, the wireless earphone meets the standby disinfection condition; the step of obtaining the disinfection duration comprises: obtaining a total wearing duration of the wireless earphone after the last disinfection; obtaining a first ratio of the total wearing duration to a preset first determination duration; obtaining a first standby disinfection duration according to the first ratio; wherein the first determination duration is a preset duration for measuring the use degree of the wireless earphone.

2. The disinfecting and killing method of wireless earphones according to claim 1, characterized in that, The step of obtaining the first standby disinfection duration according to the first ratio further comprises: obtaining a charging interface state of the earphone box; obtaining an untriggered disinfection duration of the wireless earphone from the first wearing after the last disinfection to the current time without triggering disinfection; if the charging interface state is high, obtaining the disinfection duration according to the total wearing duration and the untriggered disinfection duration; if the charging interface state is low, obtaining the first standby disinfection duration according to the first ratio.

3. The disinfecting and killing method of wireless earphones according to claim 2, characterized in that, The step of obtaining the disinfection duration according to the total wearing duration and the untriggered disinfection duration comprises: obtaining a corrected wearing duration according to the total wearing duration and the untriggered disinfection duration; determining whether the corrected wearing duration is less than a preset first determination duration; if not, obtaining a second standby disinfection duration according to the corrected wearing duration; if yes, obtaining the first standby disinfection duration according to the first ratio.

4. The disinfecting and killing method of wireless earphones according to claim 3, characterized in that, After the step of determining that the corrected wearing duration is less than the preset first determination duration, the method further comprises: determining whether the untriggered disinfection duration is less than a preset first duration; if yes, not starting standby disinfection; if not, obtaining the first standby disinfection duration according to the first ratio.

5. The disinfecting and killing method of wireless earphones according to claim 2, characterized in that, After the step of determining that the charging interface state is low, the method further comprises: obtaining a remaining power of the earphone box; determining whether the remaining power of the earphone box is less than a preset starting power; if yes, not starting standby disinfection; if not, obtaining the first standby disinfection duration according to the first ratio.

6. The disinfecting and killing method of wireless earphones according to claim 1, characterized in that, The step of obtaining the first standby disinfection duration according to the first ratio comprises: presetting a plurality of time length values of the first standby disinfection duration; presetting a plurality of continuous first ratio intervals corresponding to the time length values of the first standby disinfection duration; determining the first ratio interval into which the first ratio falls; obtaining the time length value of the first standby disinfection duration corresponding to the first ratio interval into which the first ratio falls, to obtain the first standby disinfection duration.

7. The disinfecting and killing method of wireless earphones according to claim 3, characterized in that, The step of obtaining the corrected wearing duration comprises: obtain a second ratio of the non-triggered sterilization duration and a preset first duration; obtain a corresponding correction coefficient according to the second ratio; obtain a corrected wearing duration by multiplying the total wearing duration and the correction coefficient.

8. The disinfecting and killing method of wireless earphones according to claim 7, characterized in that, The step of obtaining a corresponding correction coefficient according to the second ratio comprises: presetting a plurality of correction coefficients; presetting a plurality of continuous second ratio intervals corresponding to the number of correction coefficients; determining the second ratio interval into which the second ratio falls; obtaining a corresponding correction coefficient according to the second ratio interval into which the second ratio falls.

9. The disinfecting and killing method of wireless earphones according to claim 3, characterized in that, The step of obtaining a second standby sterilization duration according to the corrected wearing duration comprises: presetting a plurality of duration values of the second standby sterilization duration; presetting a plurality of continuous duration intervals corresponding to the number of duration values of the second standby sterilization duration; determining the duration interval into which the corrected wearing duration falls; obtaining the duration value of the second standby sterilization duration in the duration interval into which the corrected wearing duration falls, to obtain the second standby sterilization duration.

10. A computer-readable storage medium, characterized in that, A plurality of instructions are stored, which are suitable for being loaded and executed by a processor to perform the sterilization method of the wireless earphone according to any one of claims 1 to 9.

11. An electronic device, comprising: A wireless earphone sterilization program instruction is stored in a memory and can be run on a processor, and the wireless earphone sterilization program instruction is executed by the processor to implement the wireless earphone sterilization method according to any one of claims 1 to 9.

Citation Information

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