Temperature control verification method of aerosol generating device, visualization system, storage medium and program product

By introducing a temperature control verification visualization system into the aerosol generation device, the problem of deviation of temperature control verification results in the prior art is solved, and a more efficient and accurate verification process is achieved, reducing production costs and delays.

CN120188936APending Publication Date: 2025-06-24SHENZHEN GEEKVAPE TECH CO LTD
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Patent Information

Application Number
CN202510517621.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-23
Publication Date
2025-06-24

AI Technical Summary

Technical Problem

The temperature control verification method of the existing aerosol generation device cannot determine whether the temperature control curve to be measured is consistent with the standard temperature control curve through the interactive interface, resulting in a large deviation of the calibration results, which requires a lot of manpower and material resources to be re-checked, reworked or scrapped.

Method used

Provide a temperature control verification method for aerosol generation device. Through the temperature control verification visualization system, the temperature control verification interface is displayed on the display screen, including start control, model selection control and standard import control, call relevant function commands to communicate with the aerosol generation device to be tested, receive and verify the temperature control file information, display the verification results and standard temperature control file information.

Benefits of technology

By introducing a temperature control verification interface of human-computer interaction, we can intuitively position deviations, reduce the misjudgment rate caused by human reasons, improve the efficiency and accuracy of verification, reduce the production cost of products, and shorten the production cycle.

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Abstract

The invention relates to the technical field of atomization equipment, and provides a temperature control verification method of an aerosol generation device, a visualization system, a storage medium and a program product, the method comprises the steps of displaying a temperature control verification interface in response to a temperature control verification preparation instruction, calling a first function command associated with temperature control verification in response to an operation for starting a control on the interface, and displaying the first function command in response to the operation for starting the control on the interface. The method comprises the steps of receiving a first function command sent by an aerosol generating device to be tested, sending the first function command to the aerosol generating device to be tested which is currently connected, receiving temperature control file information to be verified returned by the aerosol generating device to be tested in response to the received first function command, and finally verifying the temperature control file information to be verified according to pre-stored standard temperature control file information to obtain a corresponding temperature control verification result. And the temperature control verification result and the standard temperature control file information are displayed on the display screen. By introducing the man-machine interaction temperature control verification interface, the temperature control verification of the aerosol generating device is upgraded from black box operation to transparency and interaction, and the verification efficiency and accuracy are improved.
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Description

Technical Field

[0001] The present application relates to the technical field of atomization devices, and specifically relates to a temperature control verification method, a visualization system, a storage medium, and a program product for an aerosol generating device. Background Art

[0002] An aerosol generating device is an electronic product that mimics traditional cigarettes, which includes a controller, a heating element, an atomizer, and a register. A preset temperature control curve is stored in the register. The controller reads the preset temperature control curve by calling, and then controls the heating element to heat according to the preset temperature control curve, so that the aerosol generation matrix in the atomizer generates aerosol after being heated. Some aerosol generating devices store at least one preset temperature control curve to switch different temperature control curves in different scenarios, control the heating of the heating element, and provide different experience feelings for users.

[0003] In order to ensure that the aerosol generating device products produced in the same batch have consistent temperature control performance, thereby improving the overall quality of the products, it is necessary to verify the temperature control curve stored therein before the aerosol generating device leaves the factory. The existing verification method is to determine whether each temperature control curve stored in the aerosol generating device is correct by a host computer / device storing a verification program. Specifically, a fixed string instruction is sent to the aerosol generating device to be tested, and the corresponding function is called to read its corresponding return value, and the temperature control curve is judged to be correct or not through the return value.

[0004] However, the host computer has no interaction interface, there is a risk of incorrect import of the standard curve or selection of a temperature control curve to be measured that does not correspond to the standard curve. When the imported standard temperature control curve is incorrect, all the instruments to be detected will fail the verification due to this "standard" error, which will cause a large number of products to be misjudged as unqualified products. At this time, it is necessary to spend manpower to check the problems; for the products that fail the verification, they need to be re-verified, reworked or scrapped. The rework process may involve steps such as disassembly, re-verification and assembly, which consume a lot of manpower and material resources, increase the production cost and delay the production cycle. Summary of the Invention

[0005] The purpose of the embodiments of the present application is to provide a temperature control verification method, a visualization system, a storage medium, and a program product for an aerosol generating device, so as to solve the technical problem that the existing verification method cannot determine whether the temperature control curve to be measured is consistent with the standard temperature control curve through an interaction interface, resulting in a large number of deviations in the verification results, and a large amount of manpower and material resources are required for re-verification, rework or scrapping.

[0006] In a first aspect, an embodiment of the present application provides a temperature control verification method for an aerosol generating device, which is applied to a temperature control verification visualization system of the aerosol generating device. The temperature control verification visualization system has a display screen; the temperature control verification visualization system can be communicatively connected to the aerosol generating device to be verified. The temperature control verification method includes:

[0007] In response to a temperature control verification preparation instruction, a temperature control verification interface is displayed on the display screen; the temperature control verification interface includes at least a start control.

[0008] In response to an operation on the start control, a first function command associated with temperature control verification is called and sent to the aerosol generating device to be tested that is currently connected.

[0009] The temperature control file information to be verified, which is returned by the aerosol generating device to be tested that is currently connected in response to the received first function command, is received.

[0010] According to the pre-stored standard temperature control file information, the temperature control file information to be verified is verified to obtain a corresponding temperature control verification result, and the temperature control verification result and the standard temperature control file information are displayed on the display screen.

[0011] In some embodiments, the temperature control file information to be verified includes at least the parameter values of at least one temperature control curve pre-stored in the aerosol generating device to be tested.

[0012] The pre-stored standard temperature control file information includes at least the parameter values of the standard temperature control curve corresponding one-to-one to the temperature control curve pre-stored in the aerosol generating device to be tested.

[0013] In some embodiments, the temperature control verification interface further includes a model selection control and / or a standard import control.

[0014] The temperature control verification method further includes:

[0015] In response to an operation on the model selection control, the model of the aerosol generating device to be tested is determined.

[0016] According to the model of the aerosol generating device to be tested, the standard temperature control file information corresponding to the model of the aerosol generating device to be tested is determined from the pre-stored multiple standard temperature control file information; or, in response to an operation on the standard import control, the standard temperature control file information corresponding to the model of the aerosol generating device to be tested is imported.

[0017] In some embodiments, the standard import control includes at least one import sub-control.

[0018] In response to an operation on the standard import control, import standard temperature control file information corresponding to the model of the aerosol generating device to be tested, including:

[0019] Obtain the number of temperature control curves in the temperature control file information to be verified;

[0020] In response to an operation on at least one of the import sub-controls, import standard temperature control curves that correspond one-to-one to the temperature control curves in the temperature control file information to be verified.

[0021] In some embodiments, after importing the standard temperature control file information corresponding to the model of the aerosol generating device to be tested, it further includes:

[0022] Obtain a first flag indicating the completion of import;

[0023] When the first flag is set, hide the standard import control on the temperature control verification interface.

[0024] In some embodiments, the receiving of the temperature control file information to be verified that is returned by the currently connected aerosol generating device to be tested in response to a received first function command includes:

[0025] Obtain a second function command that is returned by the currently connected aerosol generating device to be tested in response to a received first function command;

[0026] Determine whether the interaction with the currently connected aerosol generating device to be tested is successful according to the second function command;

[0027] After determining that the interaction with the currently connected aerosol generating device to be tested is successful, receive the temperature control file information to be verified that is returned by the currently connected aerosol generating device to be tested.

[0028] In some embodiments, the first function command and the second function command are function strings, and the first function command and the second function command are the same.

[0029] In some embodiments, a temperature control verification selection control is further included on the temperature control verification interface;

[0030] Verifying the temperature control file information to be verified with the pre-stored standard temperature control file information includes:

[0031] In response to an operation on the temperature control verification selection control, display a drop-down box; the drop-down box contains selection items that correspond one-to-one to at least one temperature control curve in the temperature control file information to be verified;

[0032] In response to an operation on the selection item, determine the temperature control curve to be verified that is currently required;

[0033] Call the standard temperature control curve corresponding to the temperature control curve to be verified that needs to be verified currently for verification;

[0034] Or,

[0035] In response to an operation on the temperature control verification selection control, display a drop-down box; the drop-down box includes selection items that are in one-to-one correspondence with at least one temperature control curve in the standard temperature control file information;

[0036] In response to an operation on the selection item, determine the standard temperature control curve that needs to be verified currently;

[0037] Call the temperature control curve to be verified corresponding to the standard temperature control curve that needs to be verified currently for verification.

[0038] In some embodiments, the temperature control verification interface further includes a first result display area, a second result display area, a third result display area, and a standard parameter display area;

[0039] The displaying the temperature control verification result and the standard temperature control file information on the display screen includes:

[0040] When the temperature control curve in the temperature control file information to be verified is consistent with its corresponding standard temperature control curve, display "verification passed" in the first result display area, and display the number information of the temperature control curve that passes the verification in the temperature control file information to be verified in the second result display area;

[0041] When the temperature control curve in the temperature control file information to be verified is inconsistent with its corresponding standard temperature control curve, display "verification failed" in the first result display area, display the number information of the temperature control curve that fails the verification in the temperature control file information to be verified in the second result display area, and display the error information of the temperature control curve that fails the verification in the temperature control file information to be verified in the third result display area;

[0042] Display the parameter value of the currently verified selected standard temperature control curve in the standard temperature control file information in the standard parameter display area.

[0043] In some embodiments, the temperature control verification interface further includes a verification parameter display area;

[0044] The verification parameter display area is used to display the parameter values of the temperature control curves that pass the verification in the temperature control file information to be verified.

[0045] In some embodiments, there is also an all-verification control on the temperature control verification interface;

[0046] The temperature control verification method further includes:

[0047] In response to an operation on the overall verification control, a third function command is called; the third function command is used to perform an overall verification on the currently connected aerosol generating device to be tested;

[0048] Among them, the verification items of the overall verification include at least one of the model, version number, heating element TCR value, heating element resistance value, whether to enter aging, aging parameters, aging times, infrared value without inserting the atomizer, infrared value with inserting the atomizer, and infrared difference before and after inserting the atomizer of the aerosol generating device.

[0049] In some embodiments, the temperature control verification interface further includes a device parameter display area;

[0050] The device parameter display area is used to display the parameter values and / or parameter ranges of at least one verification item included in the overall verification.

[0051] In a second aspect, an embodiment of the present application further provides a temperature control verification visualization system for an aerosol generating device, including:

[0052] A communication interface for communicating with the aerosol generating device to be verified;

[0053] A display for displaying the temperature control verification interface;

[0054] A memory for storing standard temperature control file information;

[0055] A processor for:

[0056] In response to a temperature control verification preparation instruction, display a temperature control verification interface on the screen of the display; the temperature control verification interface at least includes a model selection control and a start control;

[0057] In response to an operation on the model selection control, determine the model of the aerosol generating device to be tested;

[0058] In response to an operation on the start control, call a first function command associated with the temperature control verification and send it to the currently connected aerosol generating device to be tested;

[0059] Receive the temperature control file information to be verified returned by the currently connected aerosol generating device in response to the received first function command;

[0060] According to the pre-stored standard temperature control file information, verify the temperature control file information to be verified, obtain the corresponding temperature control verification result, and display the temperature control verification result and the standard temperature control file information on the screen of the display.

[0061] In a third aspect, an embodiment of the present application provides a computer-readable storage medium, characterized in that computer-executable instructions are stored in the computer-readable storage medium, and when the computer-executable instructions are executed by a processor, they are used to implement the steps of the temperature control verification method of the aerosol generating device as described in any embodiment of the first aspect.

[0062] In a fourth aspect, an embodiment of the present application provides a computer program product, characterized in that the program product is stored in a storage medium, and the program product is executed by at least one processor to implement the steps of the temperature control verification method of the aerosol generating device as described in any embodiment of the first aspect.

[0063] The temperature control verification method and visualization system of the aerosol generating device provided by the embodiments of the present application. The method includes, in response to a temperature control verification preparation instruction, displaying a temperature control verification interface on the display screen of the system, in response to an operation on the start control on the temperature control verification interface, calling a first function command associated with the temperature control verification, and sending it to the aerosol generating device to be tested currently connected, receiving the temperature control file information to be verified returned by the aerosol generating device to be tested currently connected in response to the received first function command, and finally, according to the pre-stored standard temperature control file information, verifying the temperature control file information to be verified, obtaining the corresponding temperature control verification result, and displaying the temperature control verification result and the standard temperature control file information on the display screen. By introducing a human-computer interaction temperature control verification interface, the present application upgrades the temperature control verification of the aerosol generating device from "black box operation" to an "transparent and interactive" intelligent process, which can intuitively locate deviations, reduce the misjudgment rate caused by human factors, improve the efficiency and accuracy of verification at the same time, reduce the production cost of products, and shorten the production cycle of products.

[0064] In addition, the present application also provides a computer-readable storage medium and a computer program product, which have the same beneficial effects as the temperature control verification method of the aerosol generating device described above. BRIEF DESCRIPTION OF THE DRAWINGS

[0065] The drawings herein are incorporated into the specification and form a part of the specification, showing embodiments consistent with the present application, and are used together with the specification to explain the principles of the present application.

[0066] Figure 1 It is a schematic structural diagram of a temperature control verification visualization system of an aerosol generating device provided by an embodiment of the present application.

[0067] Figure 2 It is a flowchart of a temperature control verification method of an aerosol generating device provided by an embodiment of the present application.

[0068] Figure 3 It is a flowchart of a temperature control verification method of an aerosol generating device provided by another embodiment of the present application.

[0069] Figure 4 Flow chart of importing standard temperature control file information provided by an embodiment of the present application

[0070] Figure 5 Flow chart of importing standard temperature control file information provided by another embodiment of the present application.

[0071] Figure 6 Flow chart of the temperature control verification method for the aerosol generating device provided by another embodiment of the present application.

[0072] Figure 7 Flow chart of the temperature control verification method for the aerosol generating device provided by another embodiment of the present application.

[0073] Figure 8 Flow chart of the temperature control verification method for the aerosol generating device provided by another embodiment of the present application.

[0074] Figure 9 Schematic diagram of the temperature control verification interface provided by an embodiment of the present application; wherein, (a) to (c) are the temperature control verification interfaces in three cases.

[0075] Through the above-mentioned drawings, specific embodiments of the present application have been shown, and there will be more detailed descriptions hereinafter. These drawings and textual descriptions are not intended to limit the scope of the concept of the present application in any way, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. Detailed Description of the Invention

[0076] The present application will be further described in detail below in conjunction with the drawings through specific embodiments. Similar elements in different embodiments are labeled with related similar element numbers. In the following embodiments, 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 the 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, which is to avoid the core part of the present application being overwhelmed by 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 the general technical knowledge in the art.

[0077] In addition, the features, operations or characteristics described in the specification can be combined in any appropriate manner to form various implementations. At the same time, the steps or actions in the method description can also be interchanged or adjusted in a manner that is obvious to those skilled in the art. Therefore, the various sequences in the specification and the drawings are only for the purpose of clearly describing a certain embodiment and are not meant to be a required sequence, unless otherwise specified that a certain sequence must be followed.

[0078] The terms "first", "second", etc. in the specification and claims of the present application are used to distinguish similar objects, and are not used to describe a specific order or sequence. It should be understood that the data used in this way can be interchangeable under appropriate circumstances, so that the embodiments of the present application can be implemented in an order other than those illustrated or described here, and the objects distinguished by "first", "second", etc. are generally a class, and the number of objects is not limited. For example, the first object can be one or more. In addition, "and / or" in the specification and claims represents at least one of the connected objects, and the character " / " generally indicates that the objects associated before and after are in an "or" relationship. The "connection" and "connection" mentioned in the present application, unless otherwise specified, include direct and indirect connections (connections).

[0079] Common aerosol generating devices include heat-not-burn type and e-liquid atomization type, and their structures are mainly divided into two parts: atomization chamber and battery rod. The atomization chamber is the core place for atomization into aerosol, which includes a shell, and components such as a mouthpiece, atomizer and controller contained in a receiving cavity formed by the shell. At the same time, the receiving cavity also has an airway for airflow. The controller is connected to the atomizer by signal. When the aerosol generating device is in working state, the controller can control at least one heating element in the atomizer to heat according to a preset temperature control curve (including a temperature heating curve or an output power curve). The atomization matrix in the atomizer is atomized after being heated to form an aerosol that is output to the user through the airway.

[0080] In response to the more personalized needs of different users, there is at least one pre-stored temperature control curve in the aerosol generating device, corresponding to different tastes, so that users can choose when using it. Temperature control technology can adjust the heating temperature at different stages of suction, such as setting high and low temperatures in the front, middle and back sections of suction. Furthermore, more suitable temperature values ​​can be set according to the number and position of heating elements in the aerosol generating device to match the volatilization process of the atomized matrix in the atomizer. Fine temperature control can optimize the taste level and smoke performance, and ensure a consistent suction experience. At the same time, precise temperature control can also avoid overheating to produce harmful substances and improve equipment safety.

[0081] In practice, a series of calibrations need to be performed on an aerosol generating device before leaving the factory, including the parameters of the heating element, the accuracy of the sensor, and the pre-stored temperature control curve, etc., to ensure the consistency of the aerosol generating device products leaving the factory. There are at least two types of existing calibration methods. One is to use a calibrated thermometer as a reference standard, set the upper and lower temperature limits, record the actual temperature, and compare the difference between the two to determine whether it meets the technical parameter requirements. If not, the technical personnel of the production factory need to be invited for maintenance. The other is to use a third-party calibration device (such as a host computer / device storing a calibration program). A standard temperature control curve is pre-stored in the third-party calibration device, and it is compared with each temperature control curve stored in the aerosol generating device to obtain the calibration result.

[0082] It can be seen that in the above methods during the calibration process, because there is no interactive device, the calibration process cannot be intuitively seen, nor can it be ensured whether the thermometer or standard used as the calibration standard is correct, there are certain risks. Therefore, this application intends to propose a visualization interface-based method that can intuitively see the calibration process, reduce the problem of a large amount of manpower and material resources wasted due to incorrect selection of the "standard temperature control curve" and failure to pass the calibration, increase production costs and delay the production cycle.

[0083] The following will use specific embodiments to elaborate in detail on the technical solution of this application and how the technical solution of this application solves the above technical problems. These several specific embodiments below can be combined with each other, and the same or similar concepts or processes may not be repeated in some embodiments. The embodiments of this application will be described below in conjunction with the accompanying drawings.

[0084] Figure 1 It is a schematic structural diagram of a temperature control calibration visualization system for an aerosol generating device provided by an embodiment of this application. As Figure 1 shown, the temperature control calibration visualization system 100 for the aerosol generating device provided by this embodiment at least includes a communication interface 110, a memory 120, a processor 130, and a display 140.

[0085] In this embodiment, the communication interface 110 is used to communicate with the aerosol generating device to be calibrated. The memory 120 is at least used to store the standard temperature control file information for calibrating the aerosol generating device and the program or instructions for the temperature control calibration method of the aerosol generating device. The processor 130 is used to execute the steps of the pre-stored temperature control calibration method of the aerosol generating device to obtain the temperature control calibration result of the aerosol generating device to be calibrated. The display 140 is used to display a temperature control calibration interface, and the display content on the temperature control calibration interface at least includes the temperature control calibration result of the aerosol generating device to be calibrated and the standard temperature control file information.

[0086] In some embodiments, the communication interface 110 can be a physical interface, a wireless communication interface, or a special interface.

[0087] Common physical interfaces include Type-C interface, MicroUSB interface and POGO PIN spring pogo pin interface. The Type-C interface has the characteristics of supporting plugging in both directions, high data transfer rate and high charging power, and is the communication interface of current electronic devices. The MicroUSB interface is the interface of traditional electronic devices and is still used in some products due to its mature technology and low cost. The POGO PIN spring pogo pin interface is a new type of communication interface that supports magnetic adsorption function, has the characteristics of small size, large current and strong contacts, and is also applicable to some new aerosol generating devices.

[0088] Common wireless communication interfaces adopt wireless communication technologies such as Bluetooth, 2.4G or WIFI technology, and support products with wireless modules built in the aerosol generating device to connect with the temperature control verification visualization system by adopting wireless communication technology to achieve interaction, including but not limited to data transmission and authentication.

[0089] The special interface can be a magnetic adsorption interface connected by a data cable adsorbed by a magnet, or a multi-protocol compatible interface.

[0090] In some embodiments, the memory 120 can be implemented in the form of a read-only memory (ROM), a static storage device, a dynamic storage device, or a random access memory (RAM), etc.

[0091] In some embodiments, the processor 130 can be implemented in ways such as a general-purpose CPU (Central Processing Unit), a microprocessor, an application-specific integrated circuit (ASIC), or one or more integrated circuits, etc., and is used to execute relevant programs.

[0092] In this embodiment, the communication interface 110, the display 140, the memory 120 and the processor 130 achieve communication connections with each other inside the device through a bus.

[0093] For the temperature control verification visualization system of the aerosol generating device provided in this embodiment, it can be a physical visualization system and also has other hardware modules to implement other verification items or functions; it can also be a host computer system, and the memory 120 and the processor 130 are integrated in the host computer system to achieve temperature control verification of the aerosol generating device.

[0094] It should be noted that since the main improvement point of this embodiment is directed to the steps of the temperature control verification method executed by the processor 130, the processor 130 in this embodiment can be used in any device for verifying an aerosol generating device, and the specific structure of the temperature control verification visualization system of the aerosol generating device in this embodiment is not limited and will not be elaborated in this text.

[0095] The following elaborates on the specific process of the temperature control verification method of the aerosol generating device executed by the processor 130.

[0096] Figure 2 The flowchart of the temperature control verification method of the aerosol generating device provided by an embodiment of the present application. The temperature control verification method of the aerosol generating device provided by this embodiment is applied to the temperature control verification visualization system of the aerosol generating device, and this at least has a display screen and a connection interface capable of communicating with the aerosol generating device to be verified, and verifies the temperature control file information of the aerosol generating device to be verified when the connection is successful. As Figure 2 shown, the temperature control verification method of the aerosol generating device provided by this embodiment specifically includes the following steps:

[0097] Step S201, in response to a temperature control verification preparation instruction, display a temperature control verification interface on the display screen; wherein, the temperature control verification interface at least includes a start control.

[0098] After the temperature control verification visualization system of the aerosol generating device is successfully connected to the aerosol generating device to be verified, the temperature control verification of the aerosol generating device to be verified can be started. For the temperature control verification visualization system, it can, according to the temperature control verification preparation instruction input by the operator, do the preparatory work before verification, including displaying a temperature control verification interface on the display screen, that is, the processor 130 of the temperature control verification visualization system will, in response to the temperature control verification preparation instruction input by the operator, control the display 140 of the temperature control verification visualization system to display the temperature control verification interface corresponding to the temperature verification, providing an interactive interface for the operator to prepare to execute the subsequent verification program steps.

[0099] The display position and appearance of the start control can be set according to actual needs and will not be specifically limited here.

[0100] Step S202, in response to an operation on the start control, call the first function command associated with the temperature control verification and send it to the currently connected aerosol generating device to be tested.

[0101] For the temperature control verification visualization system in this embodiment, it has a display 140. Through the display screen of the display 140, a temperature control verification interface can be displayed. There is at least one start control on this verification interface for verifying with the operator. The operator operates on this start control to determine to execute the subsequent program. The operation on the start control can be a click operation or a long-press operation. The processor 130 responds to the operation on the start control, calls the first function command associated with temperature control verification, and sends it to the aerosol generating device under test currently connected.

[0102] Step S203: Receive the temperature control file information to be verified returned by the aerosol generating device under test currently connected in response to the received first function command.

[0103] For the aerosol generating device under test currently connected, after receiving the first function command transmitted by the processor 130 of the temperature control verification visualization system, that is, the communication interaction between the two is successful. At this time, the aerosol generating device will respond to the received first function command and return the temperature control file information that needs to be verified, that is, the information that needs to be compared with the standard temperature control file information pre-stored in the system memory 120.

[0104] Step S204: Verify the temperature control file information to be verified according to the pre-stored standard temperature control file information, obtain the corresponding temperature control verification result, and display the temperature control verification result and the standard temperature control file information on the display screen.

[0105] After receiving the temperature control file information to be verified returned by the aerosol generating device under test currently connected, perform the comparison and verification process, that is, verify the temperature control file information to be verified according to the standard temperature control file information pre-stored in the memory 120, and finally obtain the corresponding verification result. At this time, the processor 130 will control to display the temperature control verification result on the display screen, enabling the operator to more intuitively understand the verification result.

[0106] At the same time, the pre-stored standard temperature control file information is also displayed on the display interface. Therefore, the operator can see the comparison standard parameters before and during the verification of the temperature control file information of the aerosol generating device, can more intuitively see the standard file information, and can effectively reduce the large number of products being misjudged as unqualified products due to incorrect "standard" selection. Even if there is a misjudgment of products due to "standard" selection, the problem can be discovered and corrected in time, without consuming a large amount of manpower to check and find the problem. The number of products that need to be re-verified due to verification failure will also be significantly reduced, significantly improving the accuracy and efficiency of verification.

[0107] For the implementation process of verifying the temperature control file information to be verified according to the pre-stored standard temperature control file information, the processor 130 will execute a preset specific verification program and complete the verification process according to the algorithm corresponding to the verification program, which is not limited in this embodiment.

[0108] In some embodiments, the temperature control file information to be verified transmitted back by the aerosol generating device to be tested includes at least the parameter value of at least one temperature control curve pre-stored in the aerosol generating device to be tested. Correspondingly, the pre-stored standard temperature control file information includes at least the parameter value of the standard temperature control curve that corresponds one-to-one to the temperature control curve pre-stored in the aerosol generating device to be tested.

[0109] It is understandable that for aerosol devices with more personalized options, multiple temperature control curves are pre-stored therein, which can be temperature control curves with high and low fluctuations set in the front, middle and back sections of the inhalation process, or temperature control curves with high and low fluctuations set according to the position of the heating element in the atomizer of the aerosol device.

[0110] In some embodiments, the temperature control curve may be a temperature control curve based on time-temperature changes, a temperature control curve based on the number of puffs-temperature changes, or a temperature control curve based on heating power-temperature changes.

[0111] The above describes specific embodiments of the present application. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recorded in the claims can be performed in an order different from that in the embodiments and still achieve the desired results. In addition, the processes depicted in the accompanying drawings do not necessarily require the specific order or continuous order shown to achieve the desired results. In some embodiments, multitasking and parallel processing are also possible or may be advantageous.

[0112] To summarize, the temperature control calibration method for an aerosol generating device provided in the present embodiment includes displaying a temperature control calibration interface on a display screen in response to a temperature control calibration preparation instruction, calling a first function command associated with the temperature control calibration in response to an operation of starting a control on the temperature control calibration interface, and sending the command to the currently connected aerosol generating device to be tested, receiving the temperature control file information to be calibrated which is returned by the currently connected aerosol generating device to be tested in response to the received first function command, and finally calibrating the temperature control file information to be calibrated according to pre-stored standard temperature control file information to obtain a corresponding temperature control calibration result, and displaying the temperature control calibration result and the standard temperature control file information on the display screen.

[0113] By introducing a temperature control verification interface for human-computer interaction, the temperature control verification of the aerosol generating device is upgraded from "black box operation" to an intelligent process of "transparent and interactive", which can intuitively locate deviations, reduce the misjudgment rate caused by human factors, improve the efficiency and accuracy of verification, reduce the production cost of products, and shorten the production cycle of products.

[0114] Figure 3 It is a flowchart of the temperature control verification method for the aerosol generating device provided in another embodiment of the present application. As Figure 3 shown, the temperature control verification method for the aerosol generating device provided in this embodiment specifically includes the following steps:

[0115] Step S301, in response to a temperature control verification preparation instruction, display a temperature control verification interface on the display screen; wherein, the temperature control verification interface at least includes a start control, a model selection control, and a standard import control.

[0116] The initial step is the same as that of the above embodiment. According to the temperature control verification preparation instruction input by the operator, the preliminary preparation work for verification is done, including displaying the temperature control verification interface on the display screen. That is, the processor 130 of the temperature control verification visualization system will, in response to the temperature control verification preparation instruction input by the operator, control the display 140 of the temperature control verification visualization system to display the temperature control verification interface corresponding to the temperature verification, providing an interactive interface for the operator to prepare for the subsequent verification program steps.

[0117] In this embodiment, in addition to the start control, the temperature control verification interface further includes a model selection control and a standard import control. The model selection control can select the model of the aerosol generating device that the temperature control verification visualization system of the aerosol generating device can verify. In other words, for a system that can verify multiple types of aerosol normal devices, it is necessary to determine the model of the currently connected aerosol generating device to be tested before verification. The standard import control is used for the operator to import standard temperature control file information.

[0118] Step S302, in response to an operation on the model selection control, determine the model of the aerosol generating device to be tested.

[0119] In some embodiments, after the operator operates the model selection control, a drop-down window will be displayed. The drop-down window has selection items corresponding to the models of the aerosol generating devices that the temperature control verification visualization system of the aerosol generating device can verify. According to the operator's selection, the model of the aerosol generating device to be tested can be determined to prepare for subsequent determination of standard temperature control file information.

[0120] Step S303: Determine the standard temperature control file information corresponding to the model of the aerosol generating device to be tested from multiple pre-stored standard temperature control file information; or, in response to an operation on the standard import control, import the standard temperature control file information corresponding to the model of the aerosol generating device to be tested.

[0121] This embodiment provides two ways to determine the standard temperature control file information after determining the model of the aerosol generating device to be tested in response to an operation on the model selection control. The first is to determine the standard temperature control file information corresponding to the model of the aerosol generating device to be tested by selecting from the pre-stored standard temperature control file information according to the model of the aerosol generating device to be tested. The second is to further import the standard temperature control file information corresponding to the model of the aerosol generating device to be tested in response to an operation by the operator on the standard import control.

[0122] That is to say, the standard temperature control file information can be pre-stored in the memory 120 of the temperature control verification visualization system and is applicable to relatively conventional or high-volume product models, which is more convenient to read when performing temperature control verification on them. The standard temperature control file information can also be imported through the import control and is applicable to new products or product models with special temperature control requirements.

[0123] In some embodiments, the import path can be from other storage devices connected locally or from an online storage space, such as cloud space.

[0124] In some embodiments, the standard import control includes at least one import sub-control.

[0125] Figure 4 It is a flowchart for importing standard temperature control file information provided by an embodiment of the present application. As Figure 4 shown, in the above embodiment, in step S303, in response to an operation on the standard import control, importing the standard temperature control file information corresponding to the model of the aerosol generating device to be tested specifically includes the following steps:

[0126] Step S3031: Obtain the number of temperature control curves in the temperature control file information to be verified;

[0127] Step S3032: In response to an operation on at least one import sub-control, import the standard temperature control curves corresponding one by one to the temperature control curves in the temperature control file information to be verified.

[0128] When importing the standard temperature control file information corresponding to the model of the aerosol generating device to be tested, the operation of the import sub-control under the standard import control can be further performed, which is equivalent to having at least one import port. The operator can determine the number of standard temperature control curves to be imported according to the situation of the temperature control file information stored in the model of the aerosol generating device to be tested, that is, according to the number of temperature control curves to be verified stored in the model of the aerosol generating device to be tested, and further operate on at least one import sub-control to import one by one the standard temperature control curves corresponding to the temperature control curves corresponding to the temperature control file information of the aerosol generating device to be tested. That is to say, one or more standard temperature control curves can be imported by operating on the import sub-control.

[0129] In some embodiments, in the program or instruction of the temperature control verification visualization system of the aerosol generating device, the processor 130 is further provided with a first flag for indicating the completion of import.

[0130] Figure 5 The flowchart of importing the standard temperature control file information provided by another embodiment of the present application is as follows Figure 5 As shown, in the above embodiment, in step S303, in response to the operation on the standard import control, importing the standard temperature control file information corresponding to the model of the aerosol generating device to be tested specifically includes the following steps:

[0131] Step S3031: Obtain the number of temperature control curves in the temperature control file information to be verified;

[0132] Step S3032: In response to the operation on at least one import sub-control, import the standard temperature control curves corresponding one by one to the temperature control curves in the temperature control file information to be verified.

[0133] Step S3033: Obtain the first flag for indicating the completion of import.

[0134] Step S3034: When the first flag is set, hide the standard import control on the temperature control verification interface.

[0135] As described in the above embodiments, after completing the import of the standard temperature control curve corresponding to at least one temperature control curve corresponding to the temperature control file information of the aerosol generating device to be measured in response to the operation of the import sub-control under the standard import control, the processor 130 will obtain a first flag indicating the completion of the import, determine whether the first flag is set. When it is determined that the first flag is set, it is considered that the import of the standard temperature control file information (standard temperature control curve) has been completed. At this time, the standard import control on the temperature control verification interface will be hidden, and it will no longer be allowed to change and import new standard temperature control file information (standard temperature control curve), which can also ensure the accuracy of the verification standard. On the contrary, when it is determined that the first flag is not set, it is considered that the import of the standard temperature control file information (standard temperature control curve) has not been completed, and the standard import control on the temperature control verification interface will not be hidden, waiting for the operator's next operation. The next operation can be to continue importing the standard temperature control file information (standard temperature control curve), or to give an instruction to complete the import, that is, an instruction that can set the first flag. This embodiment does not make specific limitations on this instruction.

[0136] Step S304: In response to the operation on the start control, call the first function command associated with the temperature control verification and send it to the aerosol generating device to be measured currently connected.

[0137] Step S305: Receive the temperature control file information to be verified returned by the aerosol generating device to be measured currently connected in response to the received first function command.

[0138] Step S306: According to the determined standard temperature control file information, verify the temperature control file information to be verified, obtain the corresponding temperature control verification result, and display the temperature control verification result and the standard temperature control file information on the display screen.

[0139] It should be noted that the specific implementation methods or processes of steps S304 - S306 are similar to or the same as those of steps S202 - S204 in the foregoing embodiments, and have the same technical effects. To avoid repetition, they will not be elaborated here. At the same time, for the implementation of steps S302 and S303 in this embodiment, the above embodiments do not limit their sequence relationship with other steps, as long as the standard temperature control file information corresponding to the temperature control file information to be verified can be determined before step S306 is implemented.

[0140] Figure 6 It is a flowchart of the temperature control verification method for the aerosol generating device provided by another embodiment of the present application. As Figure 6As shown, based on any of the above embodiments, for step S203 (step S305) in the temperature control verification method of the aerosol generating device provided in this embodiment, receiving the temperature control file information to be verified returned by the currently connected aerosol generating device to be tested in response to the received first function command specifically includes the following steps:

[0141] Step S601: Obtain a second function command returned by the currently connected aerosol generating device to be tested in response to the received first function command.

[0142] Step S602: Determine whether the interaction with the currently connected aerosol generating device to be tested is successful according to the second function command.

[0143] In some embodiments, the first function command and the second function command are function strings, and the first function command and the second function command are the same.

[0144] Step S603: After determining that the interaction with the currently connected aerosol generating device to be tested is successful, receive the temperature control file information to be verified returned by the currently connected aerosol generating device to be tested.

[0145] In this embodiment, after the processor 130 responds to the operation of the start control and calls the first function command associated with the temperature control verification and sends it to the currently connected aerosol generating device to be tested, before receiving the temperature control file information to be verified returned by the currently connected aerosol generating device to be tested in response to the received first function command, it is necessary to determine the connection status between the temperature control verification visualization system and the aerosol generating device to be tested. Therefore, after sending the first function command, first obtain the second function command returned by the currently connected aerosol generating device to be tested in response to the received first function command, determine whether the interaction with the currently connected aerosol generating device to be tested is successful according to the second function command, and at the same time, it can also ensure that this temperature control verification visualization system can perform temperature control verification on the currently connected aerosol generating device to be tested. After determining that the interaction with the currently connected aerosol generating device to be tested is successful, receive the temperature control file information to be verified returned by the currently connected aerosol generating device to be tested, ensuring the accuracy of the interaction transmission.

[0146] In some embodiments, as described in any of the above embodiments, the processor 130 of the temperature control verification visualization system will, in response to the temperature control verification preparation instruction input by the operator, control the display 140 of the temperature control verification visualization system to display a temperature control verification interface corresponding to the temperature verification. In addition to the start control, the model selection control, and the standard import control, the temperature control verification interface also includes a temperature control verification selection control, and the temperature control verification selection control is used to select the temperature control curve that needs to be calibrated at the current moment.

[0147] In some embodiments, the object selected by the temperature control verification selection control may be the temperature control curve to be verified that needs to be verified currently, or the standard temperature control curve that needs to be verified currently.

[0148] Figure 7 The flowchart of the temperature control verification method of the aerosol generating device provided by another embodiment of the present application is as follows. As Figure 7 shown, based on any of the above embodiments, for the temperature control verification method of the aerosol generating device provided in this embodiment, in step S204 (step S306), according to the pre-stored standard temperature control file information, the temperature control file information to be verified is verified, which specifically includes the following steps:

[0149] Step S701: In response to an operation on the temperature control verification selection control, a drop-down box is displayed; the drop-down box includes one-to-one selection items corresponding to at least one temperature control curve in the temperature control file information to be verified, or includes selection items corresponding one-to-one to at least one temperature control curve in the standard temperature control file information.

[0150] Step S702: In response to an operation on the selection item, determine the temperature control curve to be verified that needs to be verified currently, or the standard temperature control curve that needs to be verified currently.

[0151] Step S703: Call the standard temperature control curve corresponding to the temperature control curve to be verified that needs to be verified currently for verification, or call the temperature control curve to be verified corresponding to the standard temperature control curve that needs to be verified currently for verification.

[0152] In this embodiment, when verifying the temperature control file information to be verified according to the pre-stored standard temperature control file information, first, the processor 130 responds to the operation of the operator on the temperature control verification selection control. At this time, a drop-down box under the temperature control verification selection control is displayed. The drop-down box includes one-to-one selection items corresponding to at least one temperature control curve in the temperature control file information to be verified. Another situation is that the drop-down box includes selection items corresponding one-to-one to at least one temperature control curve in the standard temperature control file information, so that the operator can determine the temperature control curve that needs to be verified currently. The processor 130 responds to the operation on the selection item and determines the temperature control curve to be verified that needs to be verified currently, or the standard temperature control curve that needs to be verified currently; after determining the temperature control curve that needs to be verified currently, further call the standard temperature control curve corresponding to the temperature control curve to be verified that needs to be verified currently for verification, or call the temperature control curve to be verified corresponding to the standard temperature control curve that needs to be verified currently for verification. In other words, it is to call the temperature control curve to be verified that needs to be verified currently and its corresponding standard temperature control curve to ensure that the object to be verified is consistent with the corresponding standard and guarantee the accuracy of the verification.

[0153] In some embodiments, as described in any of the above embodiments, the processor 130 of the temperature control verification visualization system will, in response to the temperature control verification preparation instruction input by the operator, control the display 140 of the temperature control verification visualization system to display a temperature control verification interface corresponding to the temperature verification. In addition to the start control, model selection control, standard import control, and temperature control verification selection control, the temperature control verification interface further includes an all-verification control, which is used to perform one-key verification of other important parameters of the aerosol device to be verified.

[0154] Figure 8 The flowchart of the temperature control verification method for the aerosol generating device provided by another embodiment of the present application. As Figure 8 shown, the temperature control verification method for the aerosol generating device provided in this embodiment, based on any of the above embodiments, includes the following steps:

[0155] Step S801: In response to the temperature control verification preparation instruction, display a temperature control verification interface on the display screen.

[0156] Step S802: In response to the operation on the start control, call the first function command associated with the temperature control verification and send it to the aerosol generating device to be tested currently connected.

[0157] Step S803: Receive the temperature control file information to be verified returned by the aerosol generating device to be tested currently connected in response to the received first function command.

[0158] Step S804: According to the pre-stored standard temperature control file information, verify the temperature control file information to be verified, obtain the corresponding temperature control verification result, and display the temperature control verification result and the standard temperature control file information on the display screen.

[0159] Step S805: In response to the operation on the all-verification control, call the third function command; wherein, the third function command is used to perform all-verification on the aerosol generating device to be tested currently connected.

[0160] Among them, the verification items for all-verification include at least one of the model, version number, TCR value of the heating element, resistance value of the heating element, whether to enter aging, aging parameters, aging times, infrared value without the atomizer inserted, infrared value with the atomizer inserted, and infrared difference before and after inserting the atomizer of the aerosol generating device.

[0161] In this embodiment, after the aerosol generating device to be verified completes the verification steps according to any of the above embodiments, the processor 130 will also respond to the operation of the operator on all verification controls, and call the third function command to perform a comprehensive verification of other parameter items on the currently connected aerosol generating device to be tested. The verification items for the comprehensive verification include at least one of the model, version number, TCR value of the heating element, resistance value of the heating element, whether to enter aging, aging parameters, aging times, infrared value without the atomizer inserted, infrared value with the atomizer inserted, and infrared difference before and after inserting the atomizer of the aerosol generating device.

[0162] Among them, the model and version number of the aerosol generating device relate to the hardware parameters of the product, the heating element parameters such as the TCR value and resistance value of the heating element, the aging parameters such as whether to enter aging, aging parameters, and aging times, and the infrared parameters such as the infrared value without the atomizer inserted, the infrared value with the atomizer inserted, and the infrared difference before and after inserting the atomizer, which are related to the performance stability, consistency, and compliance of the product.

[0163] That is to say, based on the temperature control verification of the aerosol generating device, the temperature control verification visualization system of the aerosol generating device can also implement the verification function for other important parameters of the aerosol generating device, further ensuring the safety, stability, consistency, and compliance of the produced aerosol generating devices, and also being able to establish a technical barrier in the fierce market competition and reduce the long-term operation risk.

[0164] It should be noted that the implementation processes of steps S801 - S804 in this embodiment include the implementation methods of any of the above embodiments and can achieve the same technical effects. To avoid repetition, they will not be elaborated here. At the same time, for the comprehensive verification process of the aerosol generating device to be verified in step S805, it can be after the temperature control verification of the aerosol generating device or before the temperature control verification of the aerosol generating device. This embodiment is only one implementation manner, and the specific implementation manner is not limited.

[0165] Figure 9 This is a schematic diagram of the temperature control verification interface provided by an embodiment of the present application. As Figure 9 (a) shows, on the temperature control verification interface, there are standard import controls (showing 2 import sub-controls) at the upper part of the page, and a drop-down box of the temperature control verification selection control on the right side of the page, and other controls are not shown.

[0166] As Figure 9 (b) and Figure 9 (c) show, in addition to the various function controls described in any of the above embodiments, the temperature control verification interface also includes at least one of the first result display area, the second result display area, the third result display area, the standard parameter display area, and the verification parameter display area.

[0167] In the above embodiments, after verifying the temperature control file information to be verified according to the pre-stored standard temperature control file information and obtaining the corresponding temperature control verification result, when displaying the temperature control verification result and the standard temperature control file information on the display screen, it includes:

[0168] When the temperature control curve in the temperature control file information to be verified is consistent with its corresponding standard temperature control curve, the first result display area displays "verification passed", and the second result display area displays the number information of the temperature control curve that has passed the verification in the temperature control file information to be verified. The temperature control verification interface at this time is as Figure 9 (b) shown. At the same time, it can be seen that it is in the verification state at this time, and the standard import control is hidden.

[0169] When the temperature control curve in the temperature control file information to be verified is inconsistent with its corresponding standard temperature control curve, the first result display area displays "verification failed", the second result display area displays the number information of the temperature control curve that has passed the verification in the temperature control file information to be verified, and the third result display area displays the error information of the temperature control curve that has failed the verification in the temperature control file information to be verified. The temperature control verification interface at this time is as Figure 9 (c) shown.

[0170] That is to say, in the process of comparison and verification, if the temperature control curve to be verified is consistent with its corresponding standard temperature control curve, that is, the verification result is qualified, the result of "verification passed" is displayed in the first result display area, and at the same time, the number information of the temperature control curve to be verified is displayed in the second result display area; if the temperature control curve to be verified is inconsistent with its corresponding standard temperature control curve, that is, the verification result is unqualified, the result of "verification failed" is displayed in the first result display area, the number information of the temperature control curve to be verified that has not passed the verification is displayed in the second result display area, and at the same time, the number information of the temperature control curve to be verified that has not passed the verification is displayed in the third result display area.

[0171] In some embodiments, when the first result display area displays the result of "verification passed", the first result display area uses a green background color, and when the first result display area displays the result of "verification failed", the first result display area uses a red background color, which is convenient for the operator to more clearly distinguish the verification result.

[0172] In some embodiments, during the verification process, it further includes displaying the parameter values of the currently verified selected standard temperature control curve in the standard parameter display area.

[0173] In some embodiments, during the verification process, it further includes displaying the parameter values of the temperature control curve that has passed the verification in the temperature control file information to be verified in the verification parameter display area. Further, it is convenient for the operator to more intuitively see the verification process and the changes in the specific parameter values.

[0174] In summary, the temperature control verification method for the aerosol generating device provided by any of the above embodiments, and the temperature control verification visualization system capable of executing this temperature control verification method, both achieve the upgrade of the temperature control verification of the aerosol generating device from "black box operation" to an "intelligent process of transparency and interactivity" by introducing a temperature control verification interface with human-computer interaction. It can intuitively locate deviations, reduce the misjudgment rate caused by human factors, improve the efficiency and accuracy of verification, reduce the production cost of products, and shorten the production cycle of products.

[0175] The embodiment of the present application also provides a readable storage medium, on which a program or instruction is stored. When the program or instruction is executed by a processor, it can implement each process of any embodiment of the above temperature control verification method for the aerosol generating device, and can achieve the same technical effect. To avoid repetition, it will not be elaborated here.

[0176] Among them, the processor can be a central processing unit (CPU for short), or an application specific integrated circuit (ASIC for short), or one or more integrated circuits configured to implement the embodiments of the present application. The readable storage medium includes computer-readable storage media, such as computer read-only memory ROM, random access memory RAM, magnetic disks or optical discs, etc.

[0177] The embodiment of the present application also provides a chip, which includes a processor and a communication interface. Among them, the communication interface is coupled to the processor, and the processor is used to run a program or instruction to implement each process of any embodiment of the above temperature control verification method for the aerosol generating device, and can achieve the same technical effect. To avoid repetition, it will not be elaborated here.

[0178] It can be understood that the chip mentioned in the embodiment of the present application can also be called a system-on-chip, system chip, chip system or system-on-chip, etc.

[0179] The embodiment of the present application also provides a computer program product, which includes computer program code stored in a storage medium. When the computer program code runs on at least one processor, it can implement each process of any embodiment of the above temperature control verification method for the aerosol generating device, and can achieve the same technical effect. To avoid repetition, it will not be elaborated here.

[0180] Those skilled in the art can understand that all or part of the functions of the various methods in the above embodiments 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, and the storage medium can include: read-only memory, random access memory, magnetic disk, optical disk, hard disk, etc. The above functions can be realized by a computer executing the program. For example, when the program is stored in the memory of the device, and the program in the memory is executed by the processor, the above all or part of the functions can be realized. 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, and saved to the memory of the local device by downloading or copying, or the system of the local device is updated in version. When the program in the memory is executed by the processor, all or part of the functions in the above embodiments can be realized.

[0181] The embodiments of the present application have been described above in conjunction with the accompanying drawings. However, the present application is not limited to the above specific embodiments. The above specific embodiments are merely illustrative and not restrictive. Those of ordinary skill in the art, under the inspiration of the present application, without departing from the purpose of the present application and the scope protected by the claims, can make several simple deductions, deformations or substitutions according to the idea of the present application, and all of them belong to the protection scope of the present application.

Claims

1. A temperature control calibration method for an aerosol generating device, applied to a temperature control calibration visualization system for an aerosol generating device, wherein the temperature control calibration visualization system has a display screen; the temperature control calibration visualization system can be communicatively connected with the aerosol generating device to be calibrated; characterized in that: The temperature control verification method comprises: In response to the temperature control verification preparation instruction, a temperature control verification interface is displayed on the display screen; the temperature control verification interface at least includes a start control; In response to the operation of the start control, a first function command associated with the temperature control verification is called and sent to the currently connected aerosol generating device to be tested; receiving the temperature control file information to be verified which is returned by the currently connected aerosol generating device to be tested in response to the received first function command; The temperature control file information to be verified is verified according to the pre-stored standard temperature control file information to obtain a corresponding temperature control verification result, and the temperature control verification result and the standard temperature control file information are displayed on the display screen.

2. The temperature control calibration method of an aerosol generating device according to claim 1, characterized in that: The temperature control file information to be verified includes parameter values ​​of at least one temperature control curve pre-stored in the aerosol generating device to be tested; The pre-stored standard temperature control file information includes parameter values ​​of a standard temperature control curve that corresponds one-to-one to the temperature control curve pre-stored in the aerosol generating device to be tested.

3. The temperature control calibration method of an aerosol generating device according to claim 1, characterized in that: The temperature control verification interface also includes a model selection control and / or a standard import control; The temperature control verification method also includes: In response to operation of the model selection control, determining the model of the aerosol generating device to be tested; According to the model of the aerosol generating device to be tested, the standard temperature control file information corresponding to the model of the aerosol generating device to be tested is determined from a plurality of pre-stored standard temperature control file information; or, in response to the operation of the standard import control, the standard temperature control file information corresponding to the model of the aerosol generating device to be tested is imported.

4. The temperature control calibration method of an aerosol generating device according to claim 3, characterized in that: The standard import control includes at least one import sub-control; The step of importing standard temperature control file information corresponding to the model of the aerosol generating device to be tested in response to the operation of the standard import control comprises: Obtain the number of temperature control curves in the temperature control file information to be verified; In response to an operation on at least one of the import sub-controls, a standard temperature control curve corresponding one-to-one to the temperature control curve in the temperature control file information to be verified is imported.

5. The temperature control calibration method of an aerosol generating device according to claim 3, characterized in that: After importing the standard temperature control file information corresponding to the model of the aerosol generating device to be tested, the method further includes: Obtaining a first flag for indicating that the import is complete; When the first flag is set, the standard import control on the temperature control verification interface is hidden.

6. The temperature control calibration method of an aerosol generating device according to claim 1, characterized in that: The receiving the temperature control file information to be verified which is returned by the currently connected aerosol generating device to be tested in response to the received first function command, comprises: Obtaining a second function command returned by the currently connected aerosol generating device to be tested in response to the received first function command; Determining, according to the second function command, whether the interaction with the currently connected aerosol generating device to be tested is successful; After determining that the currently connected aerosol generating device to be tested has successfully interacted, the temperature control file information to be verified transmitted back by the currently connected aerosol generating device to be tested is received.

7. The temperature control calibration method of an aerosol generating device according to claim 6, characterized in that: The first function command and the second function command are function character strings, and the first function command and the second function command are the same.

8. The temperature control calibration method of an aerosol generating device according to claim 2, characterized in that: The temperature control verification interface also includes a temperature control verification selection control; The pre-stored standard temperature control file information verifies the temperature control file information to be verified, including: In response to the operation of the temperature control verification selection control, a drop-down box is displayed; the drop-down box contains selection items corresponding to at least one temperature control curve in the temperature control file information to be verified; In response to the operation of the selection item, determining the temperature control curve to be verified that currently needs to be verified; Calling a standard temperature control curve corresponding to the temperature control curve to be calibrated that currently needs to be calibrated for calibration; or, In response to the operation of the temperature control verification selection control, a drop-down box is displayed; the drop-down box contains selection items corresponding to at least one temperature control curve in the standard temperature control file information; In response to the operation of the selection item, determining the standard temperature control curve that currently needs to be calibrated; The temperature control curve to be calibrated corresponding to the standard temperature control curve currently in need of calibration is called for calibration.

9. The temperature control calibration method of an aerosol generating device according to claim 2, characterized in that: The temperature control verification interface also includes a first result display area, a second result display area, a third result display area and a standard parameter display area; The displaying of the temperature control verification result and the standard temperature control file information on the display screen includes: When the temperature control curve in the temperature control file information to be verified is consistent with its corresponding standard temperature control curve, the first result display area displays "verification passed", and the second result display area displays the number information of the temperature control curve that has passed the verification in the temperature control file information to be verified; When the temperature control curve in the temperature control file information to be verified is inconsistent with its corresponding standard temperature control curve, the first result display area displays "verification failed", the second result display area displays the number information of the temperature control curve that failed the verification in the temperature control file information to be verified, and the third result display area displays the error information of the temperature control curve that failed the verification in the temperature control file information to be verified; The parameter values ​​of the standard temperature control curve currently selected for verification in the standard temperature control file information are displayed in the standard parameter display area.

10. The temperature control calibration method of an aerosol generating device according to claim 9, characterized in that: The temperature control verification interface also includes a verification parameter display area; The verification parameter display area is used to display the parameter values ​​of the temperature control curve that has passed the verification in the temperature control file information to be verified.

11. The temperature control calibration method of an aerosol generating device according to any one of claims 1 to 10, characterized in that: The temperature control verification interface also includes a general verification control; The temperature control verification method also includes: In response to the operation of the overall verification control, a third function command is called; the third function command is used to perform overall verification on the currently connected aerosol generating device to be tested; Among them, the verification items of the overall verification include at least one of the model of the aerosol generating device, version number, heating element TCR value, heating element resistance, whether to enter aging, aging parameters, aging times, infrared value without inserting the atomizer, infrared value with inserting the atomizer, and infrared difference before and after inserting the atomizer.

12. The temperature control calibration method of an aerosol generating device according to claim 11, characterized in that: The temperature control verification interface also includes a device parameter display area; The device parameter display area is used to display the parameter value and / or parameter range of at least one check item included in the overall check.

13. A temperature control calibration visualization system for an aerosol generating device, characterized in that: include: A communication interface, used for communicating with the aerosol generating device to be calibrated; Display, used to display the temperature control calibration interface; A memory device for storing standard temperature control file information; Processor for: In response to the temperature control verification preparation instruction, displaying a temperature control verification interface on the screen of the display; The temperature control verification interface includes at least a model selection control and a start control; In response to operation of the model selection control, determining the model of the aerosol generating device to be tested; In response to the operation of the start control, a first function command associated with the temperature control verification is called and sent to the currently connected aerosol generating device to be tested; receiving the temperature control file information to be verified which is returned by the currently connected aerosol generating device to be tested in response to the received first function command; The temperature control file information to be verified is verified according to the pre-stored standard temperature control file information to obtain a corresponding temperature control verification result, and the temperature control verification result and the standard temperature control file information are displayed on the screen of the display.

14. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores computer-executable instructions, which, when executed by a processor, are used to implement the steps of the temperature control calibration method for an aerosol generating device according to any one of claims 1 to 12.

15. A computer program product, characterized in that The program product is stored in a storage medium, and the program product is executed by at least one processor to implement the steps of the temperature control calibration method of an aerosol generating device according to any one of claims 1 to 12.