HNB atomizer, control method of HNB atomizer and related device of HNB atomizer
By adding storage components and logic units to the HNB atomizer, the problem of simple functions of the HNB atomizer is solved, and convenient and secure data reading functions are realized to meet the diverse needs of users.
Patent Information
- Application Number
- CN202510253948.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2025-05-30
AI Technical Summary
Current HNB atomizers have simple functions and cannot achieve more functions, especially in the lack of convenient and secure solutions in data reading.
The HNB atomizer adds storage components, including a card slot and a driving unit, allowing the memory card to be inserted, and the logic unit determines whether the external device can power and whether the child lock function is enabled, and determines the reading mode of the memory card.
By expanding the functions of the HNB atomizer, convenient data reading and secure data interaction are achieved, meeting different user needs and ensuring that external devices safely read data from the memory card.
Smart Images

Figure CN120052601A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of electronic devices, and particularly relates to an HNB atomizer, a control method for the HNB atomizer, and related devices thereof. Background Art
[0002] An HNB (Heat Not Burning) atomizer achieves an atomization effect through a mechanism of high-temperature heating rather than combustion heating. Compared with traditional atomizers, the HNB atomizer has a better harm reduction effect. Therefore, the HNB atomizer is widely welcomed by users. However, the current HNB atomizer has simple functions and only provides basic heating and atomization functions, and cannot implement more functions. Summary of the Invention
[0003] The present application provides an HNB atomizer, a control method for the HNB atomizer, and related devices thereof, which can perform safe and convenient data reading functions. The technical solutions are as follows:
[0004] On the one hand, an HNB atomizer is provided, and the HNB atomizer includes:
[0005] An HNB atomization main body, which includes an atomization substance storage element and a heating element; the heating element is used to heat the atomization substance when the HNB atomizer performs the atomization function to atomize the atomization substance;
[0006] A first interface, which can be used to connect to an external device through a data cable;
[0007] A battery assembly, which includes a battery unit and a charging circuit. The battery unit is used to supply power to the HNB atomizer. The charging circuit is connected to the battery unit, and when the charging circuit is turned on, the battery unit can be charged through the first interface;
[0008] An operation component for a user to operate to control the HNB atomizer;
[0009] A logic unit for determining whether the external device can supply power to the HNB atomizer when the first interface is connected to the external device; the logic unit is also used to control the HNB atomizer to turn on the child lock function when the user turns on the child lock through the operation component;
[0010] A storage component, which includes a card slot and a driving unit. The card slot is located on the outer wall of the HNB atomizer and is used to insert a memory card; the driving unit is located inside the HNB atomizer and is used to drive the memory card when the memory card is inserted into the card slot;
[0011] The logic unit is further configured to, when the first interface is connected to the external device and the memory card is inserted into the card slot, determine the reading mode of the memory card based on whether the external device can supply power to the HNB atomizer and whether the HNB atomizer enables the child lock function, where the reading mode includes an allowed reading mode and a prohibited reading mode; wherein, in the allowed reading mode, the external device can read the data in the memory card, and in the prohibited reading mode, the external device cannot read the data in the memory card.
[0012] Optionally, the logic unit determines the reading mode of the memory card based on whether the external device can supply power to the HNB atomizer and whether the HNB atomizer enables the child lock function, including:
[0013] When the external device can supply power to the HNB atomizer, control the charging circuit to conduct and control the heating element to prohibit heating; obtain the status of the child lock function; if the child lock function is in the off state, detect whether the memory card is still inserted into the card slot; if the memory card is still inserted into the card slot, determine the reading mode of the memory card as the allowed reading mode so that the external device can read the data in the memory card;
[0014] When the external device cannot supply power to the HNB atomizer, determine the reading mode of the memory card as the prohibited reading mode.
[0015] Optionally, when the child lock function is in the on state, the logic unit is further configured to:
[0016] Respond to an unlocking signal to control the child lock function to turn off, where the unlocking signal is used to instruct the user to turn off the child lock through the operating component;
[0017] Detect whether the memory card is still inserted into the card slot;
[0018] If the memory card is still inserted into the card slot, determine the reading mode of the memory card as the allowed reading mode.
[0019] Optionally, the logic unit is further configured to:
[0020] Respond to a connection disconnection signal to control the charging circuit to disconnect, where the connection disconnection signal is used to indicate that the connection between the first interface and the external device is disconnected;
[0021] Record the duration of the connection disconnection signal;
[0022] When the duration is greater than or equal to the time threshold, control the HNB atomizer to enter the sleep mode.
[0023] Optionally, the HNB atomizer further includes:
[0024] A chute located on the outer wall of the HNB atomizer;
[0025] A second interface, the second interface includes a sliding button, the sliding button is slidably limited in the chute, when the sliding button is toggled, the second interface can move along the length direction of the chute, so that the second interface can expand and contract as the sliding button is toggled; the second interface is used to connect to an external device.
[0026] Optionally, when the plug-in port is connected to the external device and the first interface is not connected to the external device, the logic unit is further configured to:
[0027] Determine whether the external device can supply power to the HNB atomizer;
[0028] When the external device can supply power to the HNB atomizer, control the charging circuit to conduct.
[0029] On the other hand, a control method for an HNB atomizer is provided. The HNB atomizer includes a first interface and a storage component, and the storage component includes a card slot for inserting a memory card; the method includes:
[0030] Determine whether the first interface is connected to an external device and whether a memory card is inserted into the card slot;
[0031] When the first interface is connected to the external device and the memory card is inserted into the card slot, based on whether the external device can supply power to the HNB atomizer and whether the HNB atomizer enables the child lock function, determine the reading mode of the memory card, the reading mode includes an allowed reading mode and a prohibited reading mode; wherein, in the allowed reading mode, the external device can read the data in the memory card, and in the prohibited reading mode, the external device cannot read the data in the memory card.
[0032] On the other hand, a control device for an HNB atomizer is provided. The device includes:
[0033] A judgment module, configured to judge whether the first interface in the HNB atomizer is connected to an external device and whether a memory card is inserted into the card slot of the HNB atomizer;
[0034] A determination module, configured to determine a reading mode of the memory card based on whether the external device can supply power to the HNB atomizer and whether the HNB atomizer enables the child lock function when the first interface is connected to the external device and the memory card is inserted into the card slot, where the reading mode includes an allowed reading mode and a prohibited reading mode; wherein, in the allowed reading mode, the external device can read data in the memory card, and in the prohibited reading mode, the external device cannot read data in the memory card.
[0035] On the other hand, a computer-readable storage medium is provided, in which a computer program is stored, and the computer program can be executed by a processor to implement the steps of the control method of the HNB atomizer described above.
[0036] On the other hand, a computer program product including instructions is provided, and when the instructions run on a computer, the computer is made to execute the steps of the control method of the HNB atomizer described above.
[0037] The technical solution provided by this application can at least bring the following beneficial effects:
[0038] By adding a storage component to the HNB atomizer in this application, and a memory card can be inserted into the card slot in the storage component, not only can data be stored, but also data interaction with an external device can be performed. Thus, by expanding the functions of the HNB atomizer, different usage requirements of users for the HNB atomizer can be met, bringing more convenience to users; moreover, the working mode of the memory card in the card slot can be determined according to whether the external device can supply power to the HNB atomizer and whether the child lock function of the HNB atomizer is enabled, which can ensure that the external device safely reads data in the memory card. Description of the Drawings
[0039] Figure 1 It is a schematic structural diagram of an HNB atomizer provided by an embodiment of this application;
[0040] Figure 2 It is a schematic structural diagram of another HNB atomizer provided by an embodiment of this application;
[0041] Figure 3 It is a schematic diagram of a state where a second interface is retracted provided by an embodiment of this application;
[0042] Figure 4 It is a flowchart of a control method of an HNB atomizer provided by an embodiment of this application;
[0043] Figure 5 It is a schematic structural diagram of a control device of an HNB atomizer provided by an embodiment of this application. Detailed Implementation Modes
[0044] The present invention will be further described in detail below in conjunction with the accompanying drawings through specific implementation modes. Similar elements in different implementation modes are labeled with related similar element numbers. In the following implementation modes, many detailed descriptions are provided to enable a better understanding of the present application. However, those skilled in the art can easily recognize that some of these features can be omitted in different situations, or can be replaced by other elements, materials, or methods. In some cases, some operations related to the present application are not shown or described in the specification to avoid overwhelming the core part of the present application with excessive descriptions. For those skilled in the art, it is not necessary to describe these related operations in detail, and they can fully understand the related operations based on the descriptions in the specification and general technical knowledge in the art.
[0045] In addition, the features, operations, or characteristics described in the specification can be combined in any appropriate manner to form various implementation modes. At the same time, the steps or actions in the method description can also be reordered or adjusted in an obvious manner for those skilled in the art. Therefore, the various sequences in the specification and drawings are only for clearly describing a certain embodiment and do not mean a necessary sequence, unless it is stated that a certain sequence must be followed.
[0046] The serial numbers assigned to the components herein, such as "first", "second", etc., are only used to distinguish the described objects and do not have any sequential or technical meaning. The terms "connected" and "coupled" used in the present application, unless otherwise specified, both include direct and indirect connections (couplings).
[0047] Please refer to Figure 1 , Figure 1It is a schematic structural diagram of an HNB atomizer provided by an embodiment of the present application. The HNB atomizer includes an HNB atomization main body 1, and the HNB atomization main body 1 includes an atomization substance storage element 11 and a heating element 12; the heating element 12 is used to heat the atomization substance when the HNB atomizer performs the atomization function, so as to atomize the atomization substance. A first interface 2, and the first interface 2 can be used to connect an external device through a data cable. A battery assembly 3, the battery assembly 3 includes a battery unit 31 and a charging circuit 32, the battery unit 31 is used to supply power to the HNB atomizer, the charging circuit 32 is connected to the battery unit 31, and when the charging circuit 32 is turned on, the battery unit 31 can be charged through the first interface 2. An operation component 4, which is used for a user to operate to control the HNB atomizer. A logic unit 5, which is used to judge whether the external device can supply power to the HNB atomizer when the first interface 2 is connected to the external device; the logic unit 5 is also used to control the HNB atomizer to turn on the child lock function when the user turns on the child lock through the operation component 4. A storage component 6, the storage component 6 includes a card slot 61 and a driving unit 62, the card slot 61 is located on the outer wall of the HNB atomizer, and the card slot 61 is used to insert a memory card; the driving unit 62 is located inside the HNB atomizer, and the driving unit 62 is used to drive the memory card when the memory card is inserted into the card slot. The logic unit 5 is also used to determine the reading mode of the memory card based on whether the external device can supply power to the HNB atomizer and whether the HNB atomizer has turned on the child lock function when the first interface 2 is connected to the external device and the memory card is inserted into the card slot 61. The reading mode includes an allowed reading mode and a prohibited reading mode; wherein, in the allowed reading mode, the external device can read the data in the memory card, and in the prohibited reading mode, the external device cannot read the data in the memory card.
[0048] Since the HNB atomizer is a heat-not-burn appliance, the HNB atomizer will not burn, but will heat the atomization substance in the atomization substance storage element 11 through the heating element 12 to atomize the atomization substance, and then make the HNB atomizer perform the atomization work.
[0049] The HNB atomizer further includes a first interface 2, which can connect one end of a data cable, and the other end of the cable can be connected to an external device such as a computer. Thus, the first interface 2 is connected to the external device, and then the HNB atomizer is connected to the external device.
[0050] Based on the above description, the HNB atomizer can be connected to an external device through the first interface 2. The HNB atomizer further includes a battery assembly 3, and the battery unit 31 therein is used to supply power to the HNB atomizer. However, when the battery unit 31 runs out of power, the HNB atomizer cannot work. Therefore, the battery assembly 3 may further include a charging circuit 32, and the charging circuit 32 is connected to the battery unit 31. Thus, when the first interface 2 is connected to an external device and the external device meets the conditions, the charging circuit will be turned on, thereby charging the battery unit 31.
[0051] In some embodiments, the HNB atomizer may further include an operation component 4. Thus, the user can control the HNB atomizer through the operation component 4. For example, the operation component 4 may be located outside the HNB atomizer and is a protruding button. The user can control the HNB atomizer by pressing the button. For example, the user can press the button to turn on the child lock, and when the user presses the button to turn on the child lock, the user can also press the button to turn off the child lock; alternatively, the operation component may also be a touch button located outside the HNB atomizer. Thus, the user can control the HNB atomizer by touching the button.
[0052] Based on the above description, the first interface is used to connect to an external device through data, and when the charging circuit 32 is turned on, the battery unit 31 can be charged through the first interface 2. Thus, when the first interface is connected to an external device, the logic unit 5 needs to determine whether the external device can charge the battery unit 31 and whether it can supply power to the HNB atomizer. When the external device can supply power to the HNB atomizer, the logic unit 5 can control the charging circuit 32 to be turned on to charge the battery unit 31; when the external device cannot supply power to the HNB atomizer, the logic unit 5 controls the charging circuit 32 to be disconnected, so that the battery unit 31 cannot be charged.
[0053] In some embodiments, the logic unit 5 can determine whether the external device can supply power to the HNB atomizer by whether it receives a high-level signal. For example, if the logic unit 5 receives a 5V high-level signal, it means that the external device can supply power to the HNB atomizer; if the logic unit 5 does not receive a high-level signal, it means that the external device cannot supply power to the HNB atomizer.
[0054] It should be noted that the above is described by taking the logic unit determining whether the external device can supply power to the HNB atomizer according to whether it receives a high-level signal. Alternatively, in applications, the logic unit can also determine whether the external device can supply power to the HNB atomizer in other ways. The embodiments of the present application do not limit this.
[0055] To avoid accidentally touching the HNB atomizer when the user is not using it, which may pose a safety hazard, or to prevent children from accidentally touching the HNB atomizer and causing harm to them, the logic unit 5 can also control the HNB atomizer to enable the child lock function when the user activates the child lock through the operating component 4.
[0056] To expand the functions of the HNB atomizer and bring more convenience to the user when using the HNB atomizer, the HNB atomizer may further include a storage component 6. A memory card can be inserted into the card slot 61 in the storage component 6. For example, an SD card (Secure Digital Card) can be inserted. The memory card can be used to store relevant data of the HNB atomizer and can also store the required data of the user, such as work files. The storage component 6 also includes a drive unit 62. Thus, the memory card inserted in the card slot can be driven, enabling the HNB atomizer to perform corresponding operations through the memory card.
[0057] In some embodiments, to enable the storage component to work properly and avoid potential safety hazards during its operation that may threaten personal safety, when the first plug interface 2 is connected to an external device and a memory card is inserted into the card slot 61, the logic unit 5 needs to determine the read mode of the memory card based on whether the external device can supply power to the HNB atomizer and whether the HNB atomizer has enabled the child lock function.
[0058] In some embodiments, the process for the logic unit 5 to determine the read mode of the memory card can be as follows: When the external device can supply power to the HNB atomizer, control the charging circuit to conduct and control the heating element to stop heating; obtain the status of the child lock function; if the child lock function is in the off state, detect whether a memory card is still inserted in the card slot; if a memory card is still inserted in the card slot, determine the read mode of the memory card as the allow - read mode so that the external device can read the data in the memory card. When the external device cannot supply power to the HNB atomizer, determine the read mode of the memory card as the prohibit - read mode.
[0059] Based on the above description, when the logical unit 5 is connected to an external device through the first interface 2, it can determine whether the external device can supply power to the HNB atomizer. If the logical unit 5 determines that the external device can supply power to the HNB atomizer, the logical unit 5 can control the charging circuit 32 to conduct, so as to charge the battery unit 31, so as to avoid the interruption of the work task due to the exhaustion of the power of the HNB atomizer during the operation of the storage component 6, resulting in the loss or damage of files; if the logical unit 5 determines that the external device cannot supply power to the HB atomizer, the logical unit 5 needs to determine the reading mode of the memory card as the prohibited reading mode to prevent the memory card from being damaged, and the logical unit 5 does not need to control the charging circuit 32 to conduct.
[0060] In addition, when the storage component 6 is performing related work, such as when the data in the memory card is read by an external device, if the heating element 12 is in the heating state, it may cause damage to the memory card itself due to excessive temperature, and even cause damage to the external device. Therefore, after determining that the external device can supply power to the HNB atomizer, the logical unit 5 is also used to control the heating element 12 to stop heating. That is to say, if the heating element 12 is currently in the heating state, the logical unit 5 needs to control the heating element 12 to stop heating. If the heating element 12 is not currently in the heating state, in order to avoid the heating element 12 heating during the operation of the storage component 6, the logical unit 5 also needs to control the heating element 12 to stop heating.
[0061] Based on the above description, when the user turns on the child lock through the operating component 4, the logical unit 5 can control the HNB atomizer to turn on the child lock function. Thus, the logical unit 5 can directly determine whether the child lock function of the HNB atomizer is turned on.
[0062] When the child lock function is turned off, it means that the storage component 6 in the current HNB atomizer can work normally. Moreover, in order to avoid the situation that after the first interface is connected to an external device through a data cable, the external device cannot obtain the relevant data in the memory card due to the memory card in the card slot 61 being removed, the logical unit 5 also needs to detect whether the memory card is still inserted in the card slot.
[0063] In some embodiments, the logical unit 5 can determine whether a memory card is inserted in the card slot 61 based on the interaction between the HNB atomizer and the pins in the card slot 61. As an example, assume that the HNB atomizer can interact with the pins in the card slot 61 to synchronize the relevant data in the memory card to the HNB atomizer, indicating that the memory card is still inserted in the card slot 61; assume that the HNB atomizer cannot interact with the pins in the card slot 61, indicating that there is no memory card in the card slot 61.
[0064] It should be noted that the above description determines whether a memory card is inserted into the card slot by the interaction between the logic unit and the pins in the card slot through the HNB atomizer. Alternatively, in an application, the logic unit can also determine whether a memory card is inserted into the card slot by other means. The embodiments of the present application do not limit this.
[0065] Continuing the above description, when a memory card is still inserted into the card slot 61, it means that the current external device can read the stored data in the memory card through the HNB atomizer. Therefore, the logic unit 5 can determine the reading mode of the memory card as the allow - reading mode. When there is no memory card in the card slot 61, it means that the external device cannot read the relevant data, and a memory card needs to be inserted into the card slot 61.
[0066] In some embodiments, when the child - lock function of the HNB atomizer is in the on state, the logic unit 5 can also respond to an unlocking signal to control the child - lock function to turn off. The unlocking signal is used to instruct the user to turn off the child - lock through an operating component. Then, it detects whether a memory card is still inserted into the card slot; if a memory card is still inserted into the card slot, it determines the reading mode of the memory card as the allow - reading mode.
[0067] That is to say, when the logic unit 5 determines that the child - lock function of the HNB atomizer is on, in order to enable the external device to read the data in the memory card, when the user manually turns off the child - lock, the logic unit 5 can also respond to the unlocking signal to control the child - lock function to turn off.
[0068] Based on the above description, it can be known that the logic unit 5 can control the HNB atomizer to turn on the child - lock function when the user turns on the child - lock through the operating component 4. Thus, after the child - lock function is turned on, when the user can also turn off the child - lock through the operating component 4, the logic unit 5 can also respond to the unlocking signal to control the child - lock function to turn off.
[0069] Since in order to prevent the data stored in the memory card from being leaked, the user can also encrypt the memory card or the HNB atomizer through the child - lock. Therefore, after the user turns on the child - lock through the operating component 4 and the logic unit 5 also controls the atomization device to turn on the child - lock function, the user needs to make a corresponding unlocking gesture to trigger the unlocking signal, and then the logic unit 5 responds to the unlocking signal to control the child - lock function to turn off. For example, the unlocking gesture can be to hold the HNB atomizer and rotate it clockwise three times. Thus, when the child - lock function of the HNB atomizer is on, if the user holds the HNB atomizer and rotates it clockwise three times, an unlocking signal will be triggered inside the HNB atomizer, and the logic unit 5 will also respond to the unlocking signal to control the child - lock function of the HNB atomizer to turn off.
[0070] In some embodiments, after the logic unit 5 activates the child lock function, the user only needs to make a corresponding unlocking gesture to trigger the unlocking signal. That is to say, when the user makes a corresponding unlocking gesture, the logic unit 5 will respond to the unlocking signal and control the child lock function to turn off.
[0071] It should be noted that the above description is based on the assumption that the user can turn off the child lock through the unlocking gesture. Alternatively, in an application, the user can also turn off the child lock by entering a password. The embodiments of the present application do not make any limitations in this regard.
[0072] Continuing the above description, after the child lock function is turned off, the logic unit 5 still needs to detect whether there is still a memory card inserted in the card slot 61 for subsequent steps. When there is still a memory card inserted in the card slot 61, it means that the current external device can read the stored data in the memory card through the HNB atomizer. Therefore, the logic unit 5 can determine the reading mode of the memory card as the allow - reading mode. When there is no memory card in the card slot 61, it means that the external device cannot read the relevant data, and the memory card needs to be inserted into the card slot 61.
[0073] In some embodiments, the logic unit 5 can also respond to the connection - disconnection signal to control the charging circuit 32 to disconnect. The connection - disconnection signal is used to indicate that the connection between the first plug interface 2 and the external device is disconnected, and record the duration of the connection - disconnection signal. When the duration is greater than or equal to the time threshold, control the HNB atomizer to enter the sleep mode.
[0074] After the first plug interface 2 is disconnected from the external device, it means that the current HNB atomizer can no longer be charged. Therefore, when the first plug interface 2 is disconnected from the external device, the logic unit 5 can respond to the connection - disconnection signal to control the charging circuit 32 to disconnect, end the charging of the battery unit 31, and thus end the charging of the HNB atomizer.
[0075] In order to determine whether the external device still has a data - reading requirement for the memory card after the first plug interface 2 is disconnected from the external device and save the power of the HNB atomizer, the logic unit 5 can also record the duration of the connection - disconnection signal and determine whether to control the HNB atomizer to enter the sleep mode according to the magnitude relationship between the duration and the time threshold.
[0076] That is to say, if the duration is greater than or equal to the time threshold, it indicates that the external device currently has no data reading requirement for the memory card. Therefore, the logic unit 5 can control the HNB atomizer to enter the sleep mode, thereby saving the power of the HNB atomizer. If the duration is less than the time threshold, it indicates that the external device currently still has a data reading requirement for the memory card in the HNB. Therefore, the logic unit 5 does not need to control the HNB atomizer to enter the sleep mode.
[0077] In some embodiments, please refer to Figure 2 and Figure 3 , the HNB atomizer further includes: a chute 7 located on the outer wall of the HNB atomizer; a second insertion port 8, the second insertion port 8 includes a sliding button 81 and a plug-in port 82. The sliding button 81 is slidably limited in the chute 7. When the sliding button 81 is toggled, the second insertion port 82 can move along the length direction of the chute 7, so that the plug-in port 82 can be telescoped as the sliding button is toggled; the plug-in port 8 is used to connect to an external device.
[0078] To avoid the situation where the HNB atomizer runs out of power and cannot be charged because the user forgets to bring the data cable, the HNB can also include a chute 7 and a second insertion port 8. Thus, when the user needs to charge the HNB atomizer, as Figure 2 shown, the second insertion port 8 can be extended by toggling the sliding button 81, so that the second insertion port 8 is connected to an external device to charge the HNB atomizer; after charging is completed, as Figure 3 shown, the sliding button 81 can also be toggled back to retract the second insertion port 8.
[0079] It should be noted that the above description is based on the second insertion port in the HNB atomizer that can be extended and retracted by the sliding button. Alternatively, in applications, the second insertion port can be directly connected to an external device without being extended, or the second insertion port can be folded on the outer wall of the HNB atomizer when not in use and needs to be manually opened by the user when in use. That is to say, the embodiments of the present application do not limit the position and retention method of the second insertion port on the HNB atomizer.
[0080] In some embodiments, when the second insertion port 8 is connected to an external device and the first insertion port 2 is not connected to an external device, the logic unit 5 can also determine whether the external device can supply power to the HNB atomizer; when the external device can supply power to the HNB atomizer, control the charging circuit 32 to conduct.
[0081] Based on the above description, when the user does not carry a data cable, that is, when the first interface 2 cannot be connected to an external device, the second interface 8 can be connected to the external device. Therefore, in order to charge the HNB atomizer, the logic unit 5 can also determine whether the external device can supply power to the HNB atomizer when the second interface 8 is connected to the external device. That is to say, if the external device can supply power to the HNB atomizer, the charging circuit 32 is controlled to conduct to charge the battery unit 31; if the external device cannot supply power to the HNB atomizer, there is no need to control the charging circuit 32 to conduct.
[0082] In some embodiments, the memory card can also allow an external device to read the data stored therein through the second interface 8.
[0083] In some embodiments, such as Figure 2 and Figure 3 as shown, the HNB atomizer may further include a mouthpiece 9. Moreover, in order to enable the user to conveniently use the atomization function of the HNB atomizer and the function of the second interface 8, the mouthpiece 9 can be located on the outer side of the HNB atomizer on a different side from the second interface 8. Thus, when the user uses the atomization function of the HNB atomizer, the second interface 8 will not interfere with the user, and when the user uses the data reading function of the HNB atomization device, the mouthpiece 9 will not affect the connection between the second interface 8 and the external device.
[0084] In addition, in some embodiments, the second interface 8 may further include a storage module for storing data.
[0085] In the embodiments of the present application, by adding a storage component in the HNB atomizer, and a memory card can be inserted into the card slot in the storage component, not only can data be stored, but also data interaction with an external device can be performed. Thus, by expanding the functions of the HNB atomizer, different usage requirements of the user for the HNB atomizer can be met, bringing more convenience to the user; moreover, the logic unit will determine the working mode of the memory card in the card slot according to whether the external device can supply power to the HNB atomizer and whether the child lock function of the HNB atomizer is turned on. That is to say, the logic unit will determine the working mode of the memory card inserted in the card slot as the allowable reading mode only when the external device can supply power to the HNB atomizer, the heating element is prohibited from heating, and the child lock function of the HNB atomizer is turned off, which can ensure that the external device safely reads the data in the memory card. In addition, the HNB atomizer can also encrypt the memory card or the HNB atomizer through the child lock, thereby preventing the data stored in the memory card from being leaked.
[0086] Next, a detailed explanation of the control method of the HNB atomizer provided by the embodiments of the present application will be given.
[0087] Figure 4 It is a flowchart of a control method for an HNB atomizer provided by an embodiment of the present application. The HNB atomizer includes a first interface and a storage component. The storage component includes a card slot for inserting a memory card. The method includes the following steps:
[0088] Step 401: Determine whether the first interface is connected to an external device and whether a memory card is inserted into the card slot.
[0089] Step 402: When the first interface is connected to an external device and a memory card is inserted into the card slot, determine the reading mode of the memory card based on whether the external device can supply power to the HNB atomizer and whether the HNB atomizer has enabled the child lock function. The reading mode includes an allowed reading mode and a prohibited reading mode. In the allowed reading mode, the external device can read the data in the memory card. In the prohibited reading mode, the external device cannot read the data in the memory card.
[0090] By adding a storage component to the HNB atomizer in the embodiment of the present application, and a memory card can be inserted into the card slot in the storage component, not only can data be stored, but also data interaction with an external device can be performed. Thus, by expanding the functions of the HNB atomizer, different usage requirements of users for the HNB atomizer can be met, bringing more convenience to users. Moreover, the working mode of the memory card in the card slot can be determined according to whether the external device can supply power to the HNB atomizer and whether the child lock function of the HNB atomizer is enabled, which can ensure that the external device safely reads the data in the memory card.
[0091] It should be noted that the control method for the HNB atomizer provided in the above embodiment belongs to the same concept as the HNB atomizer embodiment above. The specific implementation process can be seen in the HNB atomizer embodiment and will not be elaborated here.
[0092] Figure 5 It is a schematic structural diagram of a control device for an HNB atomizer provided by an embodiment of the present application. Refer to Figure 5 , the control device includes a judgment module 501 and a determination module 502.
[0093] The judgment module 501 is used to judge whether the first interface in the HNB atomizer is connected to an external device and whether a memory card is inserted into the card slot of the HNB atomizer;
[0094] A determination module 502 is configured to determine a reading mode of the memory card based on whether the external device can supply power to the HNB atomizer and whether the HNB atomizer enables the child lock function when the first interface is connected to the external device and the memory card is inserted into the card slot. The reading mode includes an allowed reading mode and a prohibited reading mode. In the allowed reading mode, the external device can read the data in the memory card. In the prohibited reading mode, the external device cannot read the data in the memory card.
[0095] In the embodiment of the present application, by adding a storage component to the HNB atomizer and inserting a memory card into the card slot of the storage component, not only can data be stored, but also data interaction with an external device can be performed. Thus, by expanding the functions of the HNB atomizer, different usage requirements of users for the HNB atomizer can be met, bringing more convenience to users. Moreover, the working mode of the memory card in the card slot can be determined according to whether the external device can supply power to the HNB atomizer and whether the child lock function of the HNB atomizer is enabled, ensuring that the external device can safely read the data in the memory card.
[0096] It should be noted that when the control device provided in the above embodiment controls the HNB atomizer, only the division of the above function modules is used for illustration. In practical applications, the above functions can be allocated to different function modules according to needs, that is, the internal structure of the control device is divided into different function modules to complete all or part of the functions described above. In addition, the control device of the HNB atomizer provided in the above embodiment and the embodiment of the HNB atomizer belong to the same concept. The specific implementation process is detailed in the embodiment of the HNB atomizer and will not be repeated here.
[0097] Those skilled in the art can understand that all or part of the functions of the above methods can be implemented in a hardware manner or in a computer program manner. When all or part of the functions in the above embodiments are implemented in a computer program manner, the program can be stored in a computer-readable storage medium. The storage medium may include: read-only memory, random access memory, magnetic disk, optical disk, hard disk, etc. The above functions are implemented by a computer executing the program. For example, the program is stored in the memory of the device, and when the processor executes the program in the memory, the above all or part of the functions can be implemented. In addition, when all or part of the functions in the above embodiments are implemented in a computer program manner, the program can also be stored in a storage medium such as a server, another computer, magnetic disk, optical disk, flash drive or mobile hard disk, downloaded or copied and saved to the memory of the local device, or the system of the local device is updated. When the processor executes the program in the memory, the above all or part of the functions in the above embodiments can be implemented.
[0098] The above uses specific examples to elaborate on the present invention, which is only for helping to understand the present invention and is not intended to limit the present invention. For those skilled in the art of the present invention, according to the idea of the present invention, several simple deductions, deformations or substitutions can also be made.
Claims
1. A HNB atomizer, characterized in that: The HNB atomizer comprises: An HNB atomizer body, the HNB atomizer body comprising an atomized material storage element and a heating element; the heating element is used to heat the atomized material when the HNB atomizer performs an atomization function, so as to atomize the atomized material; A first plug interface, which can be used to connect an external device through a data cable; A battery assembly, the battery assembly comprising a battery unit and a charging circuit, the battery unit being used to power the HNB atomizer, the charging circuit being connected to the battery unit, and the battery unit being able to be charged through the first plug interface when the charging circuit is turned on; An operating component, used for a user to operate to control the HNB atomizer; A logic unit, configured to determine whether the external device can supply power to the HNB atomizer when the first plug interface is connected to the external device; the logic unit is also configured to control the HNB atomizer to enable a child lock function when the user turns on the child lock through the operating component; A storage component, the storage component comprising a card slot and a drive unit, the card slot is located on the outer wall of the HNB atomizer, and the card slot is used to insert a memory card; the drive unit is located on the inner side of the HNB atomizer, and the drive unit is used to drive the memory card when the memory card is inserted into the card slot; The logic unit is also used to determine the reading mode of the memory card when the first plug interface is connected to the external device and the memory card is inserted into the card slot, based on whether the external device can power the HNB atomizer and whether the child lock function of the HNB atomizer is turned on, and the reading mode includes an allowed reading mode and a prohibited reading mode; wherein, in the allowed reading mode, the external device can read the data in the memory card, and in the prohibited reading mode, the external device cannot read the data in the memory card.
2. The HNB atomizer according to claim 1, characterized in that: The logic unit determines the reading mode of the memory card based on whether the external device can supply power to the HNB atomizer and whether the child lock function of the HNB atomizer is turned on, including: When the external device is able to power the HNB atomizer, the charging circuit is controlled to be turned on, and the heating element is controlled to be prohibited from heating; the state of the child lock function is obtained; if the child lock function is in the off state, whether the memory card is still inserted in the card slot is detected; if the memory card is still inserted in the card slot, the reading mode of the memory card is determined to be the read-allowed mode, so that the external device can read the data in the memory card; In the case that the external device cannot supply power to the HNB atomizer, the reading mode of the memory card is determined to be the read-prohibited mode.
3. The HNB atomizer according to claim 2, characterized in that: When the child lock function is in the on state, the logic unit is further used for: In response to an unlocking signal, controlling the child lock function to be turned off, the unlocking signal being used to instruct the user to turn off the child lock through the operating component; Detecting whether the memory card is still inserted in the card slot; If the memory card is still inserted in the card slot, the reading mode of the memory card is determined to be the reading permission mode.
4. The HNB atomizer according to any one of claims 1 to 3, characterized in that: The logic unit is also used for: In response to a disconnection signal, controlling the charging circuit to disconnect, the disconnection signal being used to indicate that the first plug interface is disconnected from the external device; Recording the duration of the disconnection signal; When the duration is greater than or equal to the time threshold, the HNB atomizer is controlled to enter a sleep mode.
5. The HNB atomizer according to claim 1, characterized in that: The HNB atomizer further comprises: A chute, the chute being located on an outer side wall of the HNB atomizer; The second plug interface includes a sliding button, and the sliding button can be slidably limited in the sliding groove. When the sliding button is pushed, the second plug interface can move along the length direction of the sliding groove, so that the second plug interface can be extended and retracted as the sliding button is pushed; the second plug interface is used to connect an external device.
6. The HNB atomizer according to claim 5, characterized in that: When the plug port is connected to the external device and the first plug interface is not connected to the external device, the logic unit is further used for: Determining whether the external device can supply power to the HNB atomizer; When the external device is capable of supplying power to the HNB atomizer, the charging circuit is controlled to be turned on.
7. A method for controlling a HNB atomizer, characterized in that: The HNB atomizer comprises a first plug interface and a storage component, the storage component comprises a card slot, and the card slot is used to insert a memory card; the method comprises: Determining whether the first plug interface is connected to an external device and whether a memory card is inserted into the card slot; When the first plug interface is connected to the external device and the memory card is inserted into the card slot, a reading mode of the memory card is determined based on whether the external device can power the HNB atomizer and whether the child lock function of the HNB atomizer is turned on. The reading mode includes a read-allowed mode and a read-prohibited mode; wherein, in the read-allowed mode, the external device can read data in the memory card, and in the read-prohibited mode, the external device cannot read data in the memory card.
8. A control device for a HNB atomizer, characterized in that: The device comprises: A determination module, used to determine whether the first plug-in interface in the HNB atomizer is connected to an external device and whether a memory card is inserted in the card slot of the HNB atomizer; A determination module is used to determine the reading mode of the memory card based on whether the external device can power the HNB atomizer and whether the child lock function of the HNB atomizer is turned on when the first plug interface is connected to the external device and the memory card is inserted in the card slot, wherein the reading mode includes a read-allowed mode and a read-prohibited mode; wherein in the read-allowed mode, the external device can read the data in the memory card, and in the read-prohibited mode, the external device cannot read the data in the memory card.
9. A computer-readable storage medium, characterized in that: The medium stores a computer program, which can be executed by a processor to implement the method according to claim 7.
10. A computer program product comprising a computer program and / or instructions, characterized in that: When the computer program and / or the instructions are executed by a processor, the method according to claim 7 is implemented.