Atomization device suction control method and atomization device based on wireless pairing technology

Through wireless pairing technology and the MAC address comparison and PIN code verification of the BLE module, the problem of missed atomization device for minors is solved, and the safety and power consumption balance is achieved to prevent children from being missed.

CN114557489BActive Publication Date: 2025-07-25SHENZHEN REKER TECH CO LTD
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Patent Information

Application Number
CN202210185091.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-02-28
Publication Date
2025-07-25
Estimated Expiration
2042-02-28

AI Technical Summary

Technical Problem

How to prevent minors from accidentally absorbing atomization device, especially considering the health threat to minors due to the atomization device containing harmful substances such as nicotine.

Method used

Wireless pairing technology is adopted to detect whether the atomization device stores the pairing record of the wireless terminal device, analyze the MAC address and compare it, and only allow suction when scanning a legal wireless terminal device, and combine the BLE module and PIN code verification function to prevent children from being suctioned.

Benefits of technology

Effectively prevent children from sucking mists and atomization devices, reduce the power consumption of the wireless pairing module, avoid the increase in battery capacity, and improve the real-time safety and control.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a method for controlling the suction of an atomizing device based on wireless pairing technology and an atomizing device, including: detecting whether the atomizing device stores a pairing record of a wireless terminal device, if so, turning on the host mode, obtaining the wireless pairing information sent by the wireless terminal device, and parsing out the MAC address from the wireless pairing information; comparing the parsed MAC address with the MAC address in the pairing record stored in the atomizing device, if the MAC address in the pairing record stored in the atomizing device is scanned, the atomizing device is in an allowed suction state; otherwise, the atomizing device is in a prohibited suction state. In the present invention, the MAC address of the user's wireless terminal device is recorded in a wireless pairing manner, and suction can be started only when the user's wireless terminal device is scanned by the atomizing device; thus, the suction function of the atomizing device is restricted, and children can be effectively prevented from accidentally inhaling.
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Description

Technical Field

[0001] The invention belongs to the technical field of atomizing devices, and relates to a suction control method of an atomizing device based on wireless pairing technology and an atomizing device. Background Art

[0002] The atomizer device is a new type of electronic product (also known as an e-cigarette) that has a cooler appearance, lighting effects and richer flavors than cigarettes. More and more young people, especially minors, are starting to use atomizer devices out of curiosity. Although atomizer devices are different from traditional cigarettes, they still contain harmful substances such as nicotine, which poses a serious threat to the health of minors. How to prevent minors from using atomizer devices is a major problem facing the entire society. Summary of the invention

[0003] In view of this, an object of the present invention is to provide a suction control method of an atomizer device and an atomizer device based on wireless pairing technology, which can prevent children from accidentally inhaling the atomizer device.

[0004] In order to achieve the above object, the present invention provides the following technical solutions:

[0005] A method for controlling suction of an atomizer device based on wireless pairing technology comprises the following steps:

[0006] S1, detecting whether the atomization device stores a pairing record of the first wireless terminal device;

[0007] S2. If the pairing record of the first wireless terminal device is stored, the wireless pairing module of the atomization device is turned on in host mode to obtain the wireless pairing information sent by the wireless terminal device, and parse the MAC address from the wireless pairing information;

[0008] S3, comparing the parsed MAC address with the MAC address in the pairing record stored in the atomization device;

[0009] S4. If the MAC address in the pairing record stored in the atomizer device is scanned, the atomizer device is placed in a state allowing inhalation;

[0010] S5. If the MAC address in the pairing record stored in the atomizer device is not scanned, the atomizer device is placed in a prohibited suction state.

[0011] Furthermore, after the step S1, the following steps are also included:

[0012] S11. If the atomization device does not store the pairing record of the first wireless terminal device, enable the wireless pairing module of the atomization device to start the broadcast mode, thereby obtaining the wireless pairing information sent by the first wireless terminal device and performing pairing;

[0013] S12. If the wireless pairing module obtains the wireless pairing information sent by the first wireless terminal device and the pairing is successful, the atomizing device stores the pairing record of this pairing and proceeds to step S2.

[0014] Further, in step S12, it specifically includes the following sub-steps:

[0015] S121. Obtain the wireless pairing information sent by the first wireless terminal device, where the wireless pairing information carries a pre-determined key;

[0016] S122. Compare the key from the first wireless terminal device with the pre-determined key;

[0017] S123. If the keys are the same, it is regarded as a successful pairing, store the pairing record of this time, and proceed to step S2.

[0018] Further, in step S11, it also includes the following sub-steps:

[0019] S111. If the atomizing device does not store the pairing record of the first wireless terminal device, issue an audible, visual, and / or vibration pairing warning;

[0020] S112. Enable the wireless pairing module of the atomizing device to enter the broadcast mode, and then obtain the wireless pairing information sent by the first wireless terminal device and perform pairing;

[0021] In step S123, it specifically includes:

[0022] If the keys are the same, it is regarded as a successful pairing, turn off the pairing indication, store the pairing record of this time, and proceed to step S2.

[0023] Further, in step S5, it specifically includes the following sub-steps:

[0024] S51. If the MAC address in the pairing record stored by the atomizing device is not scanned, ask whether to add a new second wireless terminal device;

[0025] S52. If it is selected to add a new second wireless terminal device, transfer to step S11;

[0026] S53. If a new second wireless terminal device is not added, the atomizing device is in a state of prohibiting suction.

[0027] Further, in step S2, it specifically includes the following steps:

[0028] S21. When the pairing record of the first wireless terminal device is stored, detect whether the user has a suction action;

[0029] S22. If it is detected that the user has a sucking action, enable the host mode of the wireless pairing module of the atomization device to obtain the wireless pairing information sent by the wireless terminal device, and parse the MAC address from the wireless pairing information.

[0030] Further, after the step S4, the following steps are also executed:

[0031] S45. Monitor the sucking action in real time, and determine whether the current smoking process ends according to a preset rule;

[0032] S46. If it is determined that the current smoking process ends, the atomization device enters the standby state.

[0033] Further, in the step S4, the following sub-steps are specifically included:

[0034] S41. If the MAC address in the pairing record stored in the atomization device is scanned, obtain the pre-determined key input from the first wireless terminal device;

[0035] S42. Compare the key from the first wireless terminal device with the pre-determined key;

[0036] S43. If they are consistent, enable the atomization device to be in an allowable sucking state, otherwise, enter the step S5.

[0037] Further, the wireless pairing module is a BLE module, the BLE module has a fixed PIN code, and the atomization device hides the fixed PIN code of the BLE module;

[0038] In the step S12, the following sub-steps are specifically further included:

[0039] S121'. Obtain the wireless pairing information sent from the first wireless terminal device, where the wireless pairing information carries the PIN code input by the user on the first wireless terminal device;

[0040] S122'. Compare the PIN code from the first wireless terminal device with the hidden PIN code;

[0041] S123'. If the PIN codes are consistent, it is regarded as successful pairing, store the current pairing record, and enter the step S2;

[0042] In the step S4, the following sub-steps are specifically further included:

[0043] S41'. If the MAC address in the pairing record stored in the atomization device is scanned, obtain the PIN code input from the first wireless terminal device;

[0044] S42’: Compare the PIN code from the first wireless terminal device with the hidden PIN code;

[0045] S43’: If they are the same, put the atomizing device in the allowed suction state; otherwise, proceed to step S5.

[0046] An atomizing device, comprising:

[0047] The atomizing device body;

[0048] A wireless pairing module, configured to turn on the broadcast mode to obtain the matching wireless pairing information and perform pairing, and also configured to turn on the host mode to obtain the matching wireless pairing information and parse the MAC address in the wireless pairing information; and

[0049] A suction control module, configured to make the wireless pairing module turn on the broadcast mode when the atomizing device does not store a pairing record, obtain the matching wireless pairing information and perform pairing, and also configured to make the wireless pairing module turn on the host mode when the atomizing device stores a pairing record, and put the atomizing device in the allowed suction state when the MAC address in the pairing record of the atomizing device is scanned.

[0050] In the present invention, the MAC address of the user's wireless terminal device is recorded in a wireless pairing manner, and suction can only be started when the user's wireless terminal device is scanned by the atomizing device; thereby restricting the suction function of the atomizing device, which can effectively prevent children from accidentally inhaling; by enabling the key verification function in the wireless pairing module of the atomizing device, children can be further prevented from accidentally inhaling. In addition, the wireless pairing module uses a BLE module, and the BLE module usually works in the host mode, only scanning the wireless terminal device without pairing, and the power consumption during operation is very low, without the need to increase the battery capacity of the atomizing device. BRIEF DESCRIPTION OF THE DRAWINGS

[0051] In order to make the objectives, technical solutions and advantages of the present invention clearer, the present invention will be described in preferred detail below with reference to the accompanying drawings, where:

[0052] Figure 1 It is a flowchart of a preferred embodiment of the suction control method for an atomizing device based on wireless pairing technology of the present invention.

[0053] Figure 2 It is a schematic structural diagram of a preferred embodiment of the atomizing device of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0054] The following illustrates the implementation manners of the present invention through specific specific examples. The diagrams provided in the following examples only illustrate the basic concept of the present invention schematically. Without conflict, the following examples and the features in the examples can be combined with each other.

[0055] As Figure 1 shown, a preferred embodiment of the atomizing device suction control method based on wireless pairing technology of the present invention includes the following steps:

[0056] S1. Detect whether the atomizing device stores a pairing record of a first wireless terminal device, where the pairing record includes the address information (e.g., MAC address) of the paired first wireless terminal device; if the atomizing device stores a pairing record of the first wireless terminal device, then execute step S2, and scan the first wireless terminal device through the wireless pairing module of the atomizing device (i.e., detect whether there is a paired first wireless terminal device around). If the atomizing device does not store a pairing record of the first wireless terminal device, then execute step S11, and first generate a pairing record by pairing as the basis for scanning.

[0057] The wireless pairing module is preferably a low-power BLE (Bluetooth Low Energy) module. Of course, other wireless communication modules with address information such as WIFI module, radio frequency module, and non-BLE Bluetooth module can also be used. In this embodiment, the case where the wireless pairing module uses a BLE module is taken as an example for illustration. Since BLE modules are widely used in devices such as mobile phones, smart watches, and bracelets, the atomizing device does not need to be equipped with a first wireless terminal device separately, and users can directly use the above devices as the first wireless terminal device to control the suction of the atomizing device.

[0058] S11. If the atomizing device does not store the pairing record of the first wireless terminal device, then make the BLE module of the atomizing device enter the broadcast mode, and then obtain the wireless pairing information (i.e., BLE information) sent by the first wireless terminal device and perform pairing. For example, the user can turn on the BLE function of the mobile phone to pair with the atomizing device. If the pairing is successful, then execute step S12 to store the pairing record. If the connection times out and the pairing is not successful, then execute step S5 to prohibit suction. In order to send a warning message to remind the user when the atomizing device does not store the pairing record of the first wireless terminal device, this step may specifically include the following sub-steps:

[0059] S111. If the atomizing device does not store the pairing record of the first wireless terminal device, emit a sound, light, and / or vibration pairing warning.

[0060] S112. Make the wireless pairing module of the atomizing device enter the broadcast mode, and then obtain the wireless pairing information sent by the first wireless terminal device and perform pairing.

[0061] Through the warning message, the user can clearly know whether the atomizing device has a pairing record, avoiding the user blindly performing irrelevant operations when there is no pairing record.

[0062] S12. If the wireless pairing module obtains the wireless pairing information sent by the first wireless terminal device and the pairing is successful, the atomizing device stores the pairing record of this pairing and proceeds to step S2. For example, when the atomizing device is successfully paired with a mobile phone, a pairing record will be generated to record the name and MAC address information of the mobile phone.

[0063] Since more and more children now have their own electronic products, and some electronic products also come with wireless pairing modules (such as BLE modules), to prevent children from pairing their electronic products with the atomizing device; therefore, in some embodiments, a pre-determined key can be built into the wireless pairing module of the atomizing device, and step S12 can include the following sub-steps:

[0064] S121. Obtain the wireless pairing information sent by the first wireless terminal device, where the wireless pairing information carries a pre-determined key.

[0065] S122. Compare the key from the first wireless terminal device with the key built into the wireless pairing module.

[0066] S123. If the keys are the same, it is regarded as a successful pairing, store the pairing record of this time, and proceed to step S2.

[0067] Since wireless pairing modules such as BLE modules have their own PIN code verification functions, therefore, for wireless pairing modules with PIN code verification functions, the PIN code verification function of the wireless pairing module of the atomizing device can also be enabled. For example, when the wireless pairing module is a BLE module, during the pairing process between the atomizing device and the first wireless terminal device, it is necessary to enter the PIN code of the BLE module of the atomizing device on the first wireless terminal device to complete the pairing successfully. Moreover, the PIN code of the atomizing device is fixed and only recorded in the product manual, not displayed on the atomizing device. Therefore, even if a child gets the atomizing device, they don't know the PIN code and thus cannot successfully pair it with their own electronic device, which can better prevent children from accidentally inhaling the atomizing device. At this time, step S12 can include the following sub-steps:

[0068] S121'. Obtain the BLE information sent by the first wireless terminal device, where the BLE information carries the PIN code entered by the user.

[0069] S122'. Compare the PIN code from the first wireless terminal device with the hidden PIN code.

[0070] S123'. If the PIN codes are the same, it is regarded as a successful pairing, store the pairing record of this time, and proceed to step S2.

[0071] S2. If the atomizing device stores the pairing record of the first wireless terminal device, enable the wireless pairing module of the atomizing device to enter the host mode, obtain the wireless pairing information sent by the first wireless terminal device, and parse the MAC address from the wireless pairing information. When multiple wireless pairing information is detected, the MAC addresses in all the wireless pairing information will be parsed respectively.

[0072] To avoid increasing the power consumption due to the wireless pairing module of the atomizing device being in the working state for a long time, when the atomizing device stores the pairing record of the first wireless terminal device, first detect whether the user has a sucking action. After detecting that the user has a sucking action, then enable the wireless pairing module of the atomizing device to enter the host mode. Before detecting the sucking action, the wireless pairing module of the atomizing device can be kept in the standby mode to reduce the power consumption. For example: The S2 step may specifically include the following steps:

[0073] S21. If the pairing record of the first wireless terminal device is stored, detect whether the user has a sucking action.

[0074] S22. If it is detected that the user has a sucking action, enable the wireless pairing module of the atomizing device to enter the host mode to obtain the wireless pairing information sent by the wireless terminal device, and parse the MAC address from the wireless pairing information.

[0075] Of course, it is also possible to set the wireless pairing module of the atomizing device to regularly enter the host mode for scanning (for example, scan once every hour), and no longer perform a separate scan during sucking, which can also achieve the effect of power saving, but the real-time control will be reduced.

[0076] S3. Compare the parsed MAC address with the MAC address in the pairing record stored in the atomizing device. If the MAC address in the pairing record stored in the atomizing device is scanned, execute step S4; (If a certain parsed MAC address is the same as the MAC address in the pairing record, it is considered that the MAC address in the pairing record is scanned); If the MAC address in the pairing record stored in the atomizing device is not scanned, execute step S5.

[0077] S4. If the MAC address in the pairing record stored in the atomizing device is scanned, make the atomizing device in the allowed sucking state (i.e., the loaded state), and the user can normally suck the atomizing device. When a pre-determined key is built into the wireless pairing module of the atomizing device, to better avoid accidental inhalation by children, this step may specifically further include the following sub-steps:

[0078] S41. If the MAC address in the pairing record stored in the atomizing device is scanned, obtain the pre-determined key input from the first wireless terminal device.

[0079] S42. Compare the key from the first wireless terminal device with the key built in the wireless pairing module.

[0080] S43. If they are the same, put the atomizing device in the allow - suction state; otherwise, proceed to step S5.

[0081] When the wireless pairing module is a BLE module and the PIN code built in the BLE module is used as the key, step S4 may specifically include the following sub - steps:

[0082] S41’. If the MAC address in the pairing record stored in the atomizing device is scanned, obtain the PIN code input from the first wireless terminal device.

[0083] S42’. Compare the PIN code from the first wireless terminal device with the hidden PIN code.

[0084] S43’. If they are the same, put the atomizing device in the allow - suction state; otherwise, proceed to step S5.

[0085] To prevent the atomizing device from being in the allow - suction state for a long time, after step S4, the following steps are also executed:

[0086] S45. Monitor the suction action in real - time and determine whether the current smoking process ends according to a preset rule. A time threshold for detecting the suction action can be set in advance, and the time threshold can be set to 1 - 5 minutes; for example, when the time threshold is set to 3 minutes, if no suction action occurs again within 3 minutes after a suction, it is determined that the suction action ends.

[0087] S46. If it is determined that the current smoking process ends, the atomizing device enters the standby state and returns to execute step S21 to continue detecting whether there is a suction action.

[0088] S5. If the MAC address in the pairing record stored in the atomizing device is not scanned, put the atomizing device in the prohibit - suction state. Normally, after the atomizing device is powered on, it remains in the sleep state until the microphone (the sensor in the atomizing device that detects human smoking) detects a suction action, and then it is awakened and enters the allow - suction working state; therefore, this step actually makes the atomizing device continue to remain in the sleep state even when a suction action is detected when the MAC address in the stored pairing record is not scanned, thus preventing children from accidentally inhaling.

[0089] To prevent the user from forgetting to connect and pair with the atomizing device after replacing the first wireless terminal device, step S5 may specifically include the following sub - steps:

[0090] S51. If the MAC address in the pairing record stored in the atomizing device is not scanned, ask whether to add a new second wireless terminal device.

[0091] S52. If it is selected to add a new second wireless terminal device, then go to step S11; enable the wireless pairing module of the atomizing device to enter the broadcast mode to add a new second wireless terminal device.

[0092] S53. If a new second wireless terminal device is not added, then put the atomizing device in a state of prohibiting suction.

[0093] In the case where the atomizing device already stores a pairing record, if the paired first wireless terminal device is not carried, steps S51 to S53 can be executed to continue adding the pairing record of the new wireless terminal device, so as to facilitate controlling the atomizing device with the new wireless terminal device; if the paired first wireless terminal device is carried, but still wants to add a new wireless terminal device, the function of the wireless pairing module of the paired first wireless terminal device can be turned off in advance (for example, turn off the BLE function of the mobile phone), so that the scanning can time out, execute this step to continue adding the wireless terminal device, and then the atomizing device can be controlled by multiple wireless terminal devices.

[0094] In this embodiment, by recording the MAC address of the user's wireless terminal device, the suction can be started only when the user's wireless terminal device is scanned by the atomizing device; thus, the suction function of the atomizing device is restricted, and children can be effectively prevented from accidentally inhaling. By enabling the PIN code verification function in the wireless pairing module of the atomizing device and not displaying its PIN code on the atomizing device, children can be further prevented from accidentally inhaling. In addition, the wireless pairing module uses a BLE module, and the BLE module usually works in the host mode, only scans the wireless terminal device without pairing, and the power consumption during operation is very low, without the need to increase the battery capacity of the atomizing device.

[0095] The present invention also discloses an atomizing device, as Figure 2 shown, a preferred embodiment of the atomizing device of the present invention includes an atomizing device main body, and a wireless pairing module and a suction control module provided in the atomizing device main body. Among them, the atomizing device main body includes components such as a battery, an atomizer, and a cartridge, and its specific structure is the prior art. For example, the atomizing device main body can be the structure of any existing atomizing device, which will not be elaborated here.

[0096] The wireless pairing module is used to turn on the broadcast mode to obtain and pair the matching wireless pairing information, and turn on the host mode to obtain the matching wireless pairing information and parse the MAC address in the wireless pairing information. Wireless communication modules with address information such as WIFI modules, radio frequency modules, and Bluetooth modules can be used. To avoid excessive power consumption of the atomizing device battery, in this embodiment, the wireless pairing module is preferably a low-power BLE module.

[0097] The suction control module is used to make the wireless pairing module turn on the broadcast mode when the atomizing device does not store pairing records, obtain the matching wireless pairing information and pair; and make the wireless pairing module turn on the host mode when the atomizing device stores pairing records, and make the atomizing device in the allowed suction state when the MAC address in the pairing record of the atomizing device is scanned. The working principle of the suction control module can adopt the control method of any embodiment of the above-mentioned atomizing device suction control method based on wireless pairing technology.

[0098] As Figure 1 shown, in this embodiment, the working process of the atomizing device is as follows:

[0099] When the atomizing device is used for the first time, since its BLE module has no pairing record, it will automatically enter the broadcast mode, and the pairing indicator light of the BLE module of the atomizing device will also flash for reminder. At this time, the user can turn on the BLE function of wireless terminal devices such as mobile phones to pair with the atomizing device. When the PIN code verification function of the BLE module of the atomizing device is turned on, the PIN code of the BLE module of the atomizing device needs to be input on the wireless terminal device, and then the BLE module of the atomizing device will verify whether the PIN code input on the wireless terminal device is consistent with its PIN code. If they are consistent, the pairing is successful; otherwise, the pairing is unsuccessful, and the atomizing device will be in the prohibited suction state when the pairing is unsuccessful.

[0100] If the mobile phone is successfully paired with the atomizing device, a pairing record will be stored in the BLE module of the atomizing device, and the pairing indicator light of the BLE module of the atomizing device will stop flashing. After that, the atomizing device exits the pairing state and detects whether there is a sucking action through the microphone. When a sucking action is detected, the BLE module of the atomizing device turns on the host mode to scan, obtains the surrounding BLE information, parses the MAC address from the BLE information, and compares the parsed MAC address with the MAC address in the pairing record stored in the atomizing device. If the MAC address in the pairing record stored in the atomizing device is scanned, the atomizing device is in an allowed sucking state, and the user can suck the atomizing device. If the MAC address in the pairing record stored in the atomizing device is not scanned, the atomizing device will ask whether to add a wireless terminal device. If the option to add a wireless terminal device is selected, the BLE module of the atomizing device enters the broadcast mode to pair with the surrounding wireless terminal devices, and the pairing process is the same as when first used. If the pairing is successful, the atomizing device exits the pairing state and detects whether there is a sucking action through the microphone; if the pairing fails or the option to add a wireless terminal device is not selected, the atomizing device is in a prohibited sucking state. With the atomizing device of this embodiment, sucking can only be started when the user's wireless terminal device is scanned by the atomizing device, which can effectively prevent children from accidentally sucking; using the BLE module as the wireless pairing module, it has low power consumption and does not require increasing the battery capacity of the atomizing device.

[0101] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the present technical solution, and they should all be covered by the scope of the claims of the present invention.

Claims

1. A suction control method for an atomization device based on wireless pairing technology, characterized in that, It includes the following steps: S1. Detect whether the atomization device stores a pairing record of the first wireless terminal device; S2. If the pairing record of the first wireless terminal device is stored, enable the host mode of the wireless pairing module of the atomization device to obtain the wireless pairing information sent by the wireless terminal device, and parse the MAC address from the wireless pairing information; This step includes the following sub-steps: S21. When the pairing record of the first wireless terminal device is stored, detect whether the user has a sucking action; S22. If it is detected that the user has a sucking action, enable the host mode of the wireless pairing module of the atomization device to obtain the wireless pairing information sent by the wireless terminal device, and parse the MAC address from the wireless pairing information; S3. Compare the parsed MAC address with the MAC address in the pairing record stored in the atomization device; S4. If the MAC address in the pairing record stored in the atomization device is scanned, make the atomization device in an allowed sucking state; S5. If the MAC address in the pairing record stored in the atomization device is not scanned, make the atomization device in a prohibited sucking state.

2. The atomizing device suction control method based on wireless pairing technology according to claim 1, characterized in that After the S1 step, the following steps are further included: S11. If the atomization device does not store the pairing record of the first wireless terminal device, enable the broadcast mode of the wireless pairing module of the atomization device, and then obtain the wireless pairing information sent by the first wireless terminal device and perform pairing; S12. If the wireless pairing module obtains the wireless pairing information sent by the first wireless terminal device and the pairing is successful, make the atomization device store the pairing record of this pairing and enter the S2 step.

3. The atomization device suction control method based on wireless pairing technology according to claim 2, wherein In the S12 step, the following specific sub-steps are included: S121. Obtain the wireless pairing information sent by the first wireless terminal device, where the wireless pairing information carries a pre-determined key; S122. Compare the key from the first wireless terminal device with the pre-determined key; S123. If the keys are consistent, it is regarded as a successful pairing, store the pairing record of this time, and enter the S2 step.

4. The atomizing device suction control method based on wireless pairing technology according to claim 3, wherein, In the S11 step, the following sub-steps are further included: S111. If the atomization device does not store the pairing record of the first wireless terminal device, issue an audible, visual and / or vibration pairing warning; S112. Enable the broadcast mode of the wireless pairing module of the atomization device, and then obtain the wireless pairing information sent by the first wireless terminal device and perform pairing; In the S123 step, it specifically includes: If the keys are consistent, it is regarded as a successful pairing, turn off the pairing indication, store the pairing record of this time, and enter the S2 step.

5. The atomization device suction control method based on wireless pairing technology according to claim 2, characterized in that, In the S5 step, the following specific sub-steps are included: S51. If the MAC address in the pairing record stored in the atomization device is not scanned, ask whether to add a new second wireless terminal device; S52. If it is selected to add a new second wireless terminal device, transfer to the S11 step; S53. If a new second wireless terminal device is not added, make the atomization device in a prohibited sucking state.

6. The atomization device suction control method based on wireless pairing technology according to any one of claims 1 to 5, characterized in that, After the S4 step, the following steps are also executed: S45. Monitor the suction action in real time and determine whether the current smoking process ends according to a preset rule; S46. If it is determined that the current smoking process ends, the atomization device enters the standby state.

7. The atomizing device suction control method based on wireless pairing technology according to claim 1, characterized in that, In the S4 step, it specifically includes the following sub-steps: S41. If the MAC address in the pairing record stored in the atomization device is scanned, obtain the pre-determined key input from the first wireless terminal device; S42. Compare the key from the first wireless terminal device with the pre-determined key; S43. If they are consistent, put the atomization device in the allowed suction state; otherwise, enter the S5 step.

8. The atomizing device suction control method based on wireless pairing technology according to any one of claims 2 to 5, characterized in that The wireless pairing module is a BLE module, and the BLE module has a fixed PIN code. The atomization device hides the fixed PIN code of the BLE module; In the S12 step, it specifically further includes the following sub-steps: S121'. Obtain the wireless pairing information sent from the first wireless terminal device, where the wireless pairing information carries the PIN code input by the user on the first wireless terminal device; S122'. Compare the PIN code from the first wireless terminal device with the hidden PIN code; S123'. If the PIN codes are consistent, it is regarded as successful pairing, store the current pairing record, and enter the S2 step; In the S4 step, it specifically further includes the following sub-steps: S41'. If the MAC address in the pairing record stored in the atomization device is scanned, obtain the PIN code input from the first wireless terminal device; S42'. Compare the PIN code from the first wireless terminal device with the hidden PIN code; S43'. If they are consistent, put the atomization device in the allowed suction state; otherwise, enter the S5 step.

9. An atomizing device, characterized in that, Adopt the atomization device suction control method based on wireless pairing technology according to any one of claims 1 to 8, including: The atomization device main body; A wireless pairing module, used to turn on the broadcast mode to obtain the matching wireless pairing information and perform pairing, and also used to turn on the host mode to obtain the matching wireless pairing information and parse the MAC address in the wireless pairing information when the suction control module detects that the user has a suction action; and A suction control module, used to make the wireless pairing module turn on the broadcast mode when the atomization device does not store a pairing record, obtain the matching wireless pairing information and perform pairing, and also used to make the wireless pairing module turn on the host mode when the atomization device stores a pairing record, and put the atomization device in the allowed suction state when the MAC address in the pairing record of the atomization device is scanned.

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