Display method and display system for use progress of heat-not-burn appliance
By using the indicator device and the real-time data acquisition system in the heating non-burning appliance, and judging and updating the suction progress prompt information, the problem of low accuracy in the use of progress monitoring in the prior art is solved, and more accurate and user-friendly progress monitoring is achieved.
Patent Information
- Application Number
- CN202510206758.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2025-05-27
AI Technical Summary
The existing heating non-burning equipment has low accuracy when monitoring the progress of use, especially for users with different suction rates, and the judgment results are inaccurate.
The initial suction progress prompt information is displayed by the instruction device, and the real-time heating time of the heating non-burning instrument and the real-time occurrence of the atomization action are obtained after the preheating is completed. Determine whether the real-time heating time and the number of real-time occurrences meet the preset update conditions, and which condition meets the update suction progress prompt information first.
It improves users' effective monitoring of the use progress of heating non-burning equipment, reduces costs, and improves users' user experience.
Smart Images

Figure CN120036537A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of electronic atomization, and particularly to a method and a display system for displaying the usage progress of a heat-not-burn appliance. Background Art
[0002] Currently, most of the existing heat-not-burn appliances use LED lights or digital tubes to display the usage progress. Usually, multiple LED lights or a circle of digital tubes are used to display the remaining puff count or puff progress, and the puff count or puff progress is judged by time display or puff number display.
[0003] When judging the usage progress by time display, for users with a fast puffing frequency, before reaching the display time, the aerosol generation matrix in the appliance has been exhausted, resulting in inaccurate judgment results; when judging the usage progress by the puff number display, for users with a slow puffing frequency, when the time for the displayed puff number has been reached but no puffing has been performed, the aerosol generation matrix in the appliance has been heating all the time, and when the user puffs again, the aerosol generation matrix has also been exhausted, also resulting in inaccurate judgment results. Summary of the Invention
[0004] A method and a display system for displaying the usage progress of a heat-not-burn appliance provided by the present invention effectively solve the problem of low accuracy in monitoring the usage progress of existing heat-not-burn appliances.
[0005] According to a first aspect, in one embodiment, a method for displaying the usage progress of a heat-not-burn appliance is provided, including:
[0006] An indicating device displays initial puff progress prompt information, where the initial puff progress prompt information is used to prompt that the current puff progress is 0, and / or to prompt that the current remaining heating duration is the maximum allowable heating duration, and to prompt that the current remaining occurrence times of the atomization action is the maximum allowable occurrence times;
[0007] After preheating is completed, the real-time heating duration of the heat-not-burn appliance and / or the real-time occurrence times of the atomization action are obtained;
[0008] It is judged whether the real-time heating duration meets a preset first puff progress update condition and / or whether the real-time occurrence times meets a preset second puff progress update condition;
[0009] When the real-time heating duration satisfies the suction progress update condition earlier than the real-time occurrence times, the indicating device updates the suction progress prompt information according to the current real-time heating duration; when the real-time occurrence times satisfy the suction progress update condition earlier than the real-time heating duration, the indicating device updates the suction progress prompt information according to the current real-time occurrence times; the suction progress prompt information is used to prompt the current suction progress and / or remaining information;
[0010] The remaining information is one of the remaining heating duration and the remaining occurrence times, or the remaining information is the one that reflects a faster suction progress among the remaining heating duration and the remaining occurrence times.
[0011] In an implementable embodiment, the first suction progress update condition includes: the real-time heating duration reaches an integer multiple of the preset duration, and the real-time suction progress calculated according to the real-time heating duration is faster than the suction progress of the currently displayed suction progress prompt information; the second suction progress update condition includes: an atomization action occurs, and the real-time suction progress calculated according to the real-time occurrence times is faster than the suction progress of the currently displayed suction progress prompt information.
[0012] In an implementable embodiment, determining whether the real-time heating duration satisfies the preset first suction progress update condition and / or determining whether the real-time occurrence times satisfy the preset second suction progress update condition includes:
[0013] Determine whether the real-time heating duration reaches an integer multiple of the preset duration. If so, calculate the real-time suction progress according to the real-time heating duration; if not, determine that the real-time heating duration does not satisfy the preset first suction progress update condition;
[0014] Determine whether the real-time suction progress is faster than the suction progress of the currently displayed suction progress prompt information. If so, determine that the real-time heating duration satisfies the preset first suction progress update condition; if not, determine that the real-time heating duration does not satisfy the preset first suction progress update condition;
[0015] Determine whether an atomization action occurs currently. If so, calculate the real-time suction progress according to the real-time occurrence times; if not, determine that the real-time occurrence times do not satisfy the preset second suction progress update condition;
[0016] Determine whether the real-time suction progress is faster than the suction progress of the currently displayed suction progress prompt information. If so, determine that the real-time occurrence times satisfy the preset second suction progress update condition; if not, determine that the real-time occurrence times do not satisfy the preset second suction progress update condition.
[0017] In an implementable embodiment, first determine whether the real-time heating duration reaches an integer multiple of a preset duration. When the real-time heating duration does not reach an integer multiple of the preset duration, then determine whether an atomization action occurs currently; or,
[0018] First determine whether an atomization action occurs currently. When no atomization action occurs currently, then determine whether the real-time heating duration reaches an integer multiple of the preset duration.
[0019] In an implementable embodiment, the indicating device includes a strip-shaped indicator light. The indicating device displaying an initial suction progress prompt includes: the strip-shaped indicator light being fully lit; the indicating device updating the suction progress prompt information includes: turning off a part of the strip-shaped indicator light, and the turned-off part is used to prompt the current suction progress, while the part that still remains lit is used to prompt the one of the remaining heating duration and the remaining occurrence times that reflects the faster suction progress; or,
[0020] The indicating device includes a display screen. The indicating device displaying an initial suction progress prompt includes: the display screen displaying a complete icon; the indicating device updating the suction progress prompt information includes: a section of the icon displayed on the display screen becoming dim, and the dimmed section is used to prompt the current suction progress, while the undimmed section is used to prompt the one of the remaining heating duration and the remaining occurrence times that reflects the faster suction progress; or,
[0021] The indicating device includes a display screen. The indicating device displaying an initial suction progress prompt includes: the display screen displaying a numerical value; the indicating device updating the suction progress prompt information includes: the display screen controlling the numerical value to become smaller, and the smaller numerical value is used to prompt the one of the remaining heating duration and the remaining occurrence times that reflects the faster suction progress.
[0022] In an implementable embodiment, the indicating device includes a strip-shaped indicator light, and the strip-shaped indicator light includes multiple lamp beads arranged in a strip shape; the preset duration is obtained by dividing the maximum allowable heating duration by the number of the lamp beads; the prompting device updating the suction progress prompt information includes: turning off one lamp bead.
[0023] According to a second aspect, an embodiment provides a display system for the usage progress of a heat-not-burn appliance, including:
[0024] A display module, configured to display initial suction progress prompt information, where the initial suction progress prompt information is used to prompt that the current suction progress is 0, and / or, to prompt that the current remaining heating duration is the maximum allowable heating duration and the current remaining occurrence times of the atomization action is the maximum allowable occurrence times;
[0025] An acquisition module, configured to acquire the real-time heating duration of the heat-not-burn appliance and / or the real-time occurrence times of atomization actions after preheating ends;
[0026] A judgment module, configured to judge whether the real-time heating duration meets a preset first suction progress update condition and / or judge whether the real-time occurrence times meet a preset second suction progress update condition;
[0027] A control and processing module, configured to control the display module to update the suction progress prompt information according to the current real-time heating duration when the real-time heating duration meets the suction progress update condition earlier than the real-time occurrence times; and control the display module to update the suction progress prompt information according to the current real-time occurrence times when the real-time occurrence times meet the suction progress update condition earlier than the real-time heating duration; the suction progress prompt information is used to prompt the current suction progress and / or remaining information;
[0028] The remaining information is one of the remaining heating duration and the remaining occurrence times, or the remaining information is the one that reflects a faster suction progress among the remaining heating duration and the remaining occurrence times.
[0029] According to a third aspect, in an embodiment, a display device for the usage progress of a heat-not-burn appliance is provided, including: an indicating device and a control processor;
[0030] The indicating device displays initial suction progress prompt information, and the initial suction progress prompt information is used to prompt that the current suction progress is 0, and / or prompt that the current remaining heating duration is the maximum allowable heating duration, and prompt that the current remaining occurrence times of atomization actions is the maximum allowable occurrence times;
[0031] The control processor is configured to:
[0032] After preheating ends, acquire the real-time heating duration of the heat-not-burn appliance and / or the real-time occurrence times of atomization actions;
[0033] Judge whether the real-time heating duration meets a preset first suction progress update condition and / or judge whether the real-time occurrence times meet a preset second suction progress update condition;
[0034] When the real-time heating duration meets the suction progress update condition earlier than the real-time occurrence times, control the indicating device to update the suction progress prompt information according to the current real-time heating duration; when the real-time occurrence times meet the suction progress update condition earlier than the real-time heating duration, control the indicating device to update the suction progress prompt information according to the current real-time occurrence times; the suction progress prompt information is used to prompt the current suction progress and / or remaining information;
[0035] The remaining information is one of the remaining heating duration and the remaining occurrence times, or the remaining information is the one that reflects a faster suction progress among the remaining heating duration and the remaining occurrence times.
[0036] In an implementable embodiment, the indicating device includes a bar-shaped indicator light. The initial suction progress prompt displayed by the indicating device includes: the bar-shaped indicator light is fully lit; the update of the suction progress prompt information by the indicating device includes: a part of the bar-shaped indicator light is turned off, and the turned-off part is used to prompt the current suction progress, and the part that still remains lit is used to prompt the one that reflects a faster suction progress among the remaining heating duration and the remaining occurrence times; or,
[0037] The indicating device includes a display screen. The initial suction progress prompt displayed by the indicating device includes: the display screen displays a complete icon; the update of the suction progress prompt information by the indicating device includes: a section of the icon displayed on the display screen becomes dim, and the dimmed section is used to prompt the current suction progress, and the non-dimmed section is used to prompt the one that reflects a faster suction progress among the remaining heating duration and the remaining occurrence times; or,
[0038] The indicating device includes a display screen. The initial suction progress prompt displayed by the indicating device includes: the display screen displays a numerical value; the update of the suction progress prompt information by the indicating device includes: the display screen controls the numerical value to become smaller, and the smaller numerical value is used to prompt the one that reflects a faster suction progress among the remaining heating duration and the remaining occurrence times.
[0039] According to a fourth aspect, in an embodiment, a computer-readable storage medium is provided. A computer program is stored on the medium, and the computer program can be executed by a processor to implement the method as described above.
[0040] According to a fifth aspect, in an embodiment, a computer program product is provided, including a computer program and / or instructions. When the computer program and / or instructions are executed by a processor, the method as described above is implemented.
[0041] A display method / display system for the usage progress of a heat-not-burn appliance according to the above embodiments displays prompt information of the suction progress through an indicating device. After preheating is completed, the real-time heating duration of the heat-not-burn appliance and the real-time occurrence times of atomization actions are respectively obtained, and it is determined whether the real-time heating duration and the real-time occurrence times respectively meet the preset first suction progress update condition and the second suction progress update condition. When the real-time heating duration first meets the suction progress update condition, the indicating device updates the suction progress prompt information according to the current real-time heating duration; when the real-time occurrence times first meet the suction progress update condition, the indicating device updates the suction progress prompt information according to the current real-time occurrence times; wherein, the suction progress prompt information is used to prompt the current suction progress, and to prompt the remaining heating duration and the one of the remaining occurrence times that reflects a faster suction progress. By adopting the above solution of the present application, the effective monitoring of the usage progress of the heat-not-burn appliance by the user can be improved, and at the same time, the cost can be reduced and the user experience can be enhanced. BRIEF DESCRIPTION OF THE DRAWINGS
[0042] Figure 1 It is a flowchart of the display method for the usage progress of the heat-not-burn appliance in this embodiment;
[0043] Figure 2 It is a structural block diagram of the display system for the usage progress of the heat-not-burn appliance in this embodiment;
[0044] Figure 3 It is a structural schematic diagram of the bar-shaped indicator light provided in this embodiment.
[0045] Reference numerals: 10, display module; 20, acquisition module; 30, judgment module; 40, control and processing module; 50, bar-shaped indicator light. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0046] The present invention will be further described in detail below in conjunction with the accompanying drawings through specific embodiments. Similar elements in different embodiments are labeled with related similar element numbers. In the following embodiments, many details are described 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, and 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 description. 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 description in the specification and the general technical knowledge in the art.
[0047] In addition, the features, operations, or characteristics described in the specification can be combined in any suitable manner to form various embodiments. At the same time, the steps or actions in the method description can also be reordered or adjusted in a manner obvious to 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.
[0048] 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. And the "connection" and "coupling" mentioned in this application, unless otherwise specified, both include direct and indirect connection (coupling).
[0049] Currently, when existing electronic atomization products display the usage progress, it is more common to use multiple LED lights or digital tubes for display. However, generally, multiple LED lights or digital tubes can only show either the remaining number of puffs or the remaining puffing time. And if both need to be displayed, two circles of digital tubes are required, which not only increases the cost but also affects the user experience and easily makes the user unclear about the display definition. In view of this, this application proposes a display method and a display system for the usage progress of a heat-not-burn appliance.
[0050] As Figure 1 shown, a display method for the usage progress of a heat-not-burn appliance provided in this embodiment includes the following steps:
[0051] Step 100: Display an initial puff progress prompt message through the indicating device in the display module. The initial puff progress prompt message is used to prompt that the current puff progress is 0, and / or to prompt that the current remaining heating duration is the maximum allowable heating duration, and to prompt that the current remaining occurrence times of the atomization action is the maximum allowable occurrence times.
[0052] That is to say, when the user turns on the heat-not-burn appliance, the appliance is first preheated. When the preheating reaches the set temperature, it enters the heating stage. At this time, the indicating device in the display module shows the initial state. For example, when the indicating device is an LED light or a digital tube, the initial state is that the LED light or the digital tube is fully lit. In other words, the full lighting of the LED light or the digital tube represents that the current puff progress is 0. At this time, the state indicates that the current heating duration is the maximum allowable heating duration. At the same time, this state also indicates that the current remaining occurrence times of the atomization action is the maximum allowable occurrence times.
[0053] Step 200: After the preheating ends, obtain the real-time heating duration of the heat-not-burn appliance and / or the real-time occurrence times of the atomization action through the obtaining module.
[0054] Since the indicating device only shows the remaining suction progress, the present application characterizes the suction progress by the real-time heating time and the real-time occurrence times of the atomization action. Therefore, after the preheating is completed, the heat-not-burn appliance will give a prompt (such as vibration) to remind the user that they can start suction. In the stage where suction is possible, the real-time heating duration of the heat-not-burn appliance and the real-time occurrence times of the atomization action are respectively obtained.
[0055] Step 300: The judgment module judges whether the real-time heating duration meets the preset first suction progress update condition and / or judges whether the real-time occurrence times meet the preset second suction progress update condition.
[0056] After the real-time heating duration of the heat-not-burn appliance and the real-time occurrence times of the atomization action are respectively obtained, it is judged whether the real-time heating duration meets the preset first suction progress update condition. At the same time, it is also judged whether the real-time occurrence times meet the preset second suction progress update condition.
[0057] In the case where both the real-time heating duration and the real-time occurrence times of the atomization action decrease, it is necessary to judge which one decreases faster. Then the indicating device uses the one that decreases faster as the display basis. In this way, the situation of a sudden drop in the suction progress can be avoided.
[0058] Step 400: When the real-time heating duration meets the suction progress update condition earlier than the real-time occurrence times, the control and processing module controls the indicating device to update the suction progress prompt information according to the current real-time heating duration; when the real-time occurrence times meet the suction progress update condition earlier than the real-time heating duration, the control and processing module controls the indicating device to update the suction progress prompt information according to the current real-time occurrence times; the suction progress prompt information is used to prompt the current suction progress and / or the remaining information; the remaining information is one of the remaining heating duration and the remaining occurrence times, or the remaining information is the one that reflects the faster suction progress among the remaining heating duration and the remaining occurrence times.
[0059] Specifically, when the real-time heating duration meets the suction progress update condition first, the indicating device updates the suction progress prompt information according to the current real-time heating duration; when the real-time occurrence times meet the suction progress update condition first, the indicating device updates the suction progress prompt information according to the current real-time occurrence times. For example, Figure 3The bar-shaped indicator light 50 shown is composed of a total of 12 LED digital tubes arranged in a circle to display the suction progress. When all 12 lights are on, it represents the initial suction progress prompt information. At this time, the remaining heating duration is the maximum allowable heating duration of 240S, and the remaining number of atomization actions at this time is the maximum allowable number of occurrences of 12 times. If the total number of atomization actions is set to 12 times, then theoretically, one light will go out every 20S or every time an atomization action occurs. If 4 atomization actions have occurred and the heating time is 60S, then for the lights corresponding to the atomization times, 8 lights should remain on, and for the lights corresponding to the heating time, 9 lights should remain on. Then, according to the principle that the one that first meets the suction progress update condition takes precedence, the suction progress prompt information at this time should be that 8 lights remain on; if no atomization action occurs until the heating time reaches 100S at this time, then the suction progress prompt information at this time should be that 7 lights remain on. And so on, each time giving precedence to the one with a faster suction progress. By adopting the solution of this embodiment, while improving the effective monitoring of the use progress of the heat-not-burn appliance by the user, it can also reduce costs and improve the user experience.
[0060] In practical applications, the first suction progress update condition includes: the real-time heating duration reaches an integer multiple of the preset duration, and the real-time suction progress calculated based on the real-time heating duration is faster than the suction progress of the current displayed suction progress prompt information. Among them, the calculation method of the preset duration is the maximum allowable heating duration divided by the number of lamp beads.
[0061] Taking the above Figure 3 bar-shaped indicator light 50 as an example for illustration, if the heating time is 100 seconds and the number of atomization actions at this time is 3 times. Then, first, 100 seconds is 5 times the preset time of 20 seconds. Second, after heating for 100 seconds, 7 lights remain on, while currently 8 lights remain on. It can be seen that the real-time suction progress calculated based on the heating duration (5 lights are extinguished) is faster than the suction progress of the current displayed suction progress prompt information (4 lights are extinguished). Therefore, at this time, one light should be extinguished according to the first suction progress update condition, that is, the current bar-shaped indicator light 50 becomes 7 lights remaining on.
[0062] The second suction progress update condition includes: an atomization action occurs, and the real-time suction progress calculated based on the real-time occurrence times is faster than the suction progress of the current displayed suction progress prompt information.
[0063] Similarly, taking the above Figure 3Taking the bar-shaped indicator light 50 as an example, if the atomization action has occurred 4 times, then at this time, 8 lights should remain lit, but actually 9 lights are still shown to be lit. It can be seen that the real-time suction progress calculated based on the real-time occurrence times (4 lights are extinguished) is faster than the suction progress of the current displayed suction progress prompt information (3 lights are extinguished). Therefore, at this time, one light should be extinguished according to the second suction progress update condition, that is, the current bar-shaped indicator light 50 becomes 8 lights remaining lit.
[0064] Furthermore, determining whether the real-time heating duration meets the preset first suction progress update condition and / or determining whether the real-time occurrence times meet the preset second suction progress update condition specifically includes:
[0065] Determining whether the real-time heating duration reaches an integer multiple of the preset duration. If so, calculate the real-time suction progress based on the real-time heating duration; if not, determine that the real-time heating duration does not meet the preset first suction progress update condition;
[0066] Determining whether the real-time suction progress is faster than the suction progress of the current displayed suction progress prompt information. If so, determine that the real-time heating duration meets the preset first suction progress update condition; if not, determine that the real-time heating duration does not meet the preset first suction progress update condition;
[0067] Determining whether the atomization action occurs currently. If so, calculate the real-time suction progress based on the real-time occurrence times; if not, determine that the real-time occurrence times do not meet the preset second suction progress update condition;
[0068] Determining whether the real-time suction progress is faster than the suction progress of the current displayed suction progress prompt information. If so, determine that the real-time occurrence times meet the preset second suction progress update condition; if not, determine that the real-time occurrence times do not meet the preset second suction progress update condition.
[0069] Specifically, in actual applications, the judgment of the real-time heating duration and the real-time occurrence times of the atomization action does not have a sequential order. It can be determined whether the real-time heating duration reaches an integer multiple of the preset duration. If so, calculate the real-time suction progress based on the real-time heating duration; if not, determine that the real-time heating duration does not meet the preset first suction progress update condition. And, determine whether the real-time suction progress is faster than the suction progress of the current displayed suction progress prompt information, that is, determine whether the number of lamp beads to be extinguished is greater than the number of lamp beads actually extinguished currently. If so, determine that the real-time heating duration meets the preset first suction progress update condition; if not, determine that the real-time heating duration does not meet the preset first suction progress update condition.
[0070] Meanwhile, it can be determined whether atomization occurs currently. If so, the real-time suction progress is calculated based on the real-time occurrence times; if not, it is determined that the real-time occurrence times do not meet the preset second suction progress update condition. Also, it is determined whether the real-time suction progress is faster than the suction progress of the currently displayed suction progress prompt information, that is, it is determined whether the number of light beads to be extinguished is greater than the number of light beads actually extinguished currently. If so, it is determined that the real-time occurrence times meet the preset second suction progress update condition; if not, it is determined that the real-time occurrence times do not meet the preset second suction progress update condition.
[0071] In practical applications, it can also be first determined whether the real-time heating duration reaches an integer multiple of the preset duration. When the real-time heating duration does not reach an integer multiple of the preset duration, it is then determined whether atomization occurs currently; or, it can also be first determined whether atomization occurs currently. When atomization does not occur currently, it is then determined whether the real-time heating duration reaches an integer multiple of the preset duration. That is to say, the judgment of the real-time heating duration and the real-time occurrence times of atomization is not in a fixed order.
[0072] In some embodiments, the indicating device includes a strip-shaped indicator light 50. The indicating device displaying the initial suction progress prompt includes: the strip-shaped indicator light 50 is fully lit; the indicating device updating the suction progress prompt information includes: a part of the strip-shaped indicator light 50 is turned off, and the turned-off part is used to prompt the current suction progress, and the part that still remains lit is used to prompt the remaining heating duration and the one of the remaining occurrence times that reflects the faster suction progress. When the indicating device includes the strip-shaped indicator light 50, the strip-shaped indicator light 50 includes multiple light beads arranged in a strip shape, as Figure 3 shown; the preset duration is obtained by dividing the maximum allowable heating duration by the number of light beads. At this time, the prompting device updating the suction progress prompt information specifically includes: turning off one light bead. That is to say, when the suction progress prompt information is updated, one light bead is turned off. When the suction progress prompt information is updated again next time, another light bead is turned off, and so on until all the light beads are extinguished.
[0073] Alternatively, the indicating device includes a display screen. The indicating device displaying the initial suction progress prompt includes: the display screen displays a complete icon; the indicating device updating the suction progress prompt information includes: a section of the icon displayed on the display screen becomes dim, and the dim section is used to prompt the current suction progress, and the non-dim section is used to prompt the remaining heating duration and the one of the remaining occurrence times that reflects the faster suction progress.
[0074] Alternatively, the indicating device includes a display screen. The indicating device displaying the initial suction progress prompt includes: the display screen displays a numerical value; the indicating device updating the suction progress prompt information includes: the display screen controls the numerical value to become smaller, and the smaller numerical value is used to prompt the remaining heating duration and the one of the remaining occurrence times that reflects the faster suction progress.
[0075] As Figure 2 shown, a display system for the usage progress of a heat-not-burn appliance provided in this embodiment includes a display module 10, an acquisition module 20, a judgment module 30, and a control and processing module. Among them, the display module 10 is used to display an initial suction progress prompt message, and the initial suction progress prompt message is used to prompt that the current suction progress is 0, and / or prompt that the current remaining heating duration is the maximum allowable heating duration, and prompt that the current remaining occurrence times of the atomization action is the maximum allowable occurrence times; the acquisition module 20 is used to acquire the real-time heating duration of the heat-not-burn appliance and / or the real-time occurrence times of the atomization action after the preheating is completed; the judgment module 30 is used to judge whether the real-time heating duration meets a preset first suction progress update condition and / or judge whether the real-time occurrence times meets a preset second suction progress update condition; the control and processing module is used to control the display module 10 to update the suction progress prompt message according to the current real-time heating duration when the real-time heating duration meets the suction progress update condition earlier than the real-time occurrence times; when the real-time occurrence times meets the suction progress update condition earlier than the real-time heating duration, control the display module 10 to update the suction progress prompt message according to the current real-time occurrence times; the suction progress prompt message is used to prompt the current suction progress, and / or remaining information; wherein, the remaining information is one of the remaining heating duration and the remaining occurrence times, or the remaining information is the one that reflects a faster suction progress among the remaining heating duration and the remaining occurrence times.
[0076] Specifically, in the display system for the usage progress of a heat-not-burn appliance in this embodiment, since the related functions and functions of the display module 10, the acquisition module 20, the judgment module 30, and the control and processing module have been described in detail in the above embodiment, this embodiment will not elaborate too much here. By adopting the display system of this embodiment, not only the effective monitoring of the usage progress of the heat-not-burn appliance by the user is improved, but also the cost can be reduced and the user experience can be improved.
[0077] A display device for the usage progress of a heat-not-burn appliance provided in this embodiment includes an indicating device and a control processor. Among them, the indicating device displays an initial suction progress prompt message, and the initial suction progress prompt message is used to prompt that the current suction progress is 0, and / or prompt that the current remaining heating duration is the maximum allowable heating duration, and prompt that the current remaining occurrence times of the atomization action is the maximum allowable occurrence times.
[0078] The control processor is configured to: after the preheating is completed, obtain the real-time heating duration of the heat-not-burn appliance and / or the real-time occurrence times of the atomization action; determine whether the real-time heating duration meets a preset first puff progress update condition and / or determine whether the real-time occurrence times meet a preset second puff progress update condition; when the real-time heating duration meets the puff progress update condition earlier than the real-time occurrence times, control the indicating device to update the puff progress prompt information according to the current real-time heating duration; when the real-time occurrence times meet the puff progress update condition earlier than the real-time heating duration, control the indicating device to update the puff progress prompt information according to the current real-time occurrence times; the puff progress prompt information is used to prompt the current puff progress and / or remaining information; the remaining information is one of the remaining heating duration and the remaining occurrence times, or the remaining information is the one that reflects a faster puff progress among the remaining heating duration and the remaining occurrence times.
[0079] Specifically, for a display device of the usage progress of a heat-not-burn appliance in this embodiment, after the preheating is completed, the control processor determines the real-time heating duration of the heat-not-burn appliance and the real-time occurrence times of the atomization action. By determining which of the real-time heating duration and the real-time occurrence times of the atomization action reaches the puff progress update condition first, the indicating device is controlled to display according to the one that reflects a faster puff progress. In view of the fact that the functions and roles of the indicating device and the control processor have been described in detail in the above embodiments, this embodiment will not be elaborated too much here.
[0080] Specifically, when the indicating device of this embodiment includes a strip-shaped indicator light 50, the initial puff progress prompt displayed by the indicating device includes: the strip-shaped indicator light 50 is fully lit; the update of the puff progress prompt information by the indicating device includes: a part of the strip-shaped indicator light 50 is turned off, and the turned-off part is used to prompt the current puff progress, while the part that still remains lit is used to prompt the one that reflects a faster puff progress among the remaining heating duration and the remaining occurrence times.
[0081] When the indicating device includes a display screen, the initial puff progress prompt displayed by the indicating device includes: the display screen displays a complete icon; the update of the puff progress prompt information by the indicating device includes: a section of the icon displayed on the display screen becomes dim, and the dimmed section is used to prompt the current puff progress, while the non-dimmed section is used to prompt the one that reflects a faster puff progress among the remaining heating duration and the remaining occurrence times.
[0082] When the indicating device includes a display screen, the initial puff progress prompt displayed by the indicating device includes: the display screen displays a numerical value; the update of the puff progress prompt information by the indicating device includes: the display screen controls the numerical value to become smaller, and the smaller numerical value is used to prompt the one that reflects a faster puff progress among the remaining heating duration and the remaining occurrence times.
[0083] A computer-readable storage medium provided in this embodiment stores a computer program on the medium, and the computer program can be executed by a processor to implement the above method. In view of the fact that the above embodiment has elaborated in detail a method for displaying the usage progress of a heat-not-burn appliance, this embodiment will not be elaborated too much here.
[0084] A computer program product provided in this embodiment includes a computer program and / or instructions, and when the computer program and / or instructions are executed by a processor, the above method is implemented. In view of the fact that the above embodiment has elaborated in detail a method for displaying the usage progress of a heat-not-burn appliance, this embodiment will not be elaborated too much here.
[0085] 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, and 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, and is 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 processor executes the program in the memory, all or part of the functions in the above embodiments can be implemented.
[0086] The above uses specific examples to elaborate on the present invention, which is only used to help understand the present invention and is not intended to limit the present invention. For those skilled in the art of the present invention, based on the idea of the present invention, several simple deductions, deformations or substitutions can also be made.
Claims
1. A method for displaying the use progress of a heating-not-burning appliance, characterized in that: include: The indicating device displays initial puff progress prompt information, wherein the initial puff progress prompt information is used to prompt that the current puff progress is 0, and / or prompt that the current remaining heating time is the maximum allowed heating time, and prompt that the current remaining number of occurrences of the atomization action is the maximum allowed number of occurrences; After preheating is completed, obtaining the real-time heating duration of the heat-without-combustion device and / or the real-time occurrence number of atomization actions; Determining whether the real-time heating duration satisfies a preset first puffing progress update condition and / or determining whether the real-time occurrence number satisfies a preset second puffing progress update condition; When the real-time heating duration satisfies the puffing progress update condition before the real-time occurrence number, the indicating device updates the puffing progress prompt information according to the current real-time heating duration; when the real-time occurrence number satisfies the puffing progress update condition before the real-time heating duration, the indicating device updates the puffing progress prompt information according to the current real-time occurrence number; the puffing progress prompt information is used to prompt the current puffing progress and / or remaining information; The remaining information indicates one of the remaining heating time and the remaining number of occurrences, or the remaining information indicates the one of the remaining heating time and the remaining number of occurrences which reflects a faster puffing progress.
2. The display method according to claim 1, characterized in that: The first puff progress update condition includes: the real-time heating duration reaches an integer multiple of a preset duration, and the real-time puff progress calculated based on the real-time heating duration is faster than the puff progress of the currently displayed puff progress prompt information; the second puff progress update condition includes: atomization action occurs, and the real-time puff progress calculated based on the real-time occurrence number is faster than the puff progress of the currently displayed puff progress prompt information.
3. The display method according to claim 2, characterized in that: The determining whether the real-time heating duration satisfies a preset first puffing progress update condition and / or determining whether the real-time occurrence number satisfies a preset second puffing progress update condition includes: Determine whether the real-time heating duration reaches an integer multiple of a preset duration, and if so, calculate the real-time puffing progress according to the real-time heating duration; if not, determine that the real-time heating duration does not meet the preset first puffing progress update condition; Determine whether the real-time puffing progress is faster than the puffing progress of the currently displayed puffing progress prompt information, and if so, determine that the real-time heating duration meets the preset first puffing progress update condition; if not, determine that the real-time heating duration does not meet the preset first puffing progress update condition; Determine whether atomization action is currently occurring, and if so, calculate the real-time puff progress according to the real-time occurrence number; if not, determine that the real-time occurrence number does not meet the preset second puff progress update condition; Determine whether the real-time puffing progress is faster than the puffing progress of the currently displayed puffing progress prompt information, and if so, determine that the real-time number of occurrences meets a preset second puffing progress update condition; otherwise, determine that the real-time number of occurrences does not meet the preset second puffing progress update condition.
4. The display method according to claim 3, characterized in that: First, determine whether the real-time heating time reaches an integer multiple of the preset time, and if the real-time heating time does not reach an integer multiple of the preset time, then determine whether atomization action is currently occurring; or, First, it is determined whether atomization action is currently occurring. If atomization action is not currently occurring, it is then determined whether the real-time heating duration reaches an integral multiple of a preset duration.
5. The display method according to claim 2, characterized in that: The indicating device includes a bar indicator light, and the indicating device displays an initial puff progress prompt including: the bar indicator light is fully lit; the indicating device updates the puff progress prompt information including: the bar indicator light is partially turned off, the turned off part is used to prompt the current puff progress, and the part that remains lit is used to prompt the remaining heating time and the remaining number of occurrences, whichever reflects the faster puff progress; or The indicating device includes a display screen, and the indicating device displays an initial puffing progress prompt including: the display screen displays a complete icon; the indicating device updates the puffing progress prompt information including: a segment of the icon displayed on the display screen becomes dark, the darkened segment is used to prompt the current puffing progress, and the non-darkened segment is used to prompt the remaining heating time and the remaining number of occurrences, whichever reflects the faster puffing progress; or, The indicating device includes a display screen, and the indicating device displays an initial puffing progress prompt, including: the display screen displays a numerical value; the indicating device updates the puffing progress prompt information, including: the display screen controls the numerical value to become smaller, and the smaller numerical value is used to prompt the remaining heating time and the remaining number of occurrences, whichever reflects the faster puffing progress.
6. The display method according to claim 5, characterized in that: The indicating device includes a bar indicator light, and the bar indicator light includes a plurality of lamp beads arranged in a bar shape; the preset duration is obtained by dividing the maximum allowable heating duration by the number of the lamp beads; the prompting device updates the suction progress prompt information, including: Turn off a lamp bead.
7. A system for displaying the use progress of a heating-not-burning appliance, characterized in that: include: A display module, used to display initial puff progress prompt information, wherein the initial puff progress prompt information is used to prompt that the current puff progress is 0, and / or prompt that the current remaining heating time is the maximum allowed heating time, and prompt that the current remaining number of occurrences of the atomization action is the maximum allowed number of occurrences; An acquisition module, used for acquiring the real-time heating duration and / or the real-time occurrence number of atomization actions of the heat-without-combustion device after preheating is completed; A judgment module, used to judge whether the real-time heating duration satisfies a preset first puffing progress update condition and / or whether the real-time occurrence number satisfies a preset second puffing progress update condition; The control processing module is used to control the display module to update the puffing progress prompt information according to the current real-time heating duration when the real-time heating duration satisfies the puffing progress update condition before the real-time occurrence number; when the real-time occurrence number satisfies the puffing progress update condition before the real-time heating duration, control the display module to update the puffing progress prompt information according to the current real-time occurrence number; the puffing progress prompt information is used to prompt the current puffing progress and / or remaining information; The remaining information indicates one of the remaining heating time and the remaining number of occurrences, or the remaining information indicates the one of the remaining heating time and the remaining number of occurrences which reflects a faster puffing progress.
8. A device for displaying the use progress of a heating-not-burning appliance, characterized in that: including an indicating device and a control processor; The indicating device displays initial puffing progress prompt information, wherein the initial puffing progress prompt information is used to prompt that the current puffing progress is 0, and / or prompt that the current remaining heating time is the maximum allowed heating time, and prompt that the current remaining number of occurrences of the atomization action is the maximum allowed number of occurrences; The control processor is used to: After the preheating is completed, obtaining the real-time heating duration of the heating without burning device and / or the real-time occurrence number of atomization actions; Determining whether the real-time heating duration satisfies a preset first puffing progress update condition and / or determining whether the real-time occurrence number satisfies a preset second puffing progress update condition; When the real-time heating duration satisfies the puffing progress update condition before the real-time occurrence number, the indicating device is controlled to update the puffing progress prompt information according to the current real-time heating duration; when the real-time occurrence number satisfies the puffing progress update condition before the real-time heating duration, the indicating device is controlled to update the puffing progress prompt information according to the current real-time occurrence number; the puffing progress prompt information is used to prompt the current puffing progress and / or remaining information; The remaining information indicates one of the remaining heating time and the remaining number of occurrences, or the remaining information indicates the one of the remaining heating time and the remaining number of occurrences which reflects a faster puffing progress.
9. The display device according to claim 8, wherein: The indicating device includes a bar indicator light, and the indicating device displays an initial puff progress prompt including: the bar indicator light is fully lit; the indicating device updates the puff progress prompt information including: the bar indicator light is partially turned off, the turned off part is used to prompt the current puff progress, and the part that remains lit is used to prompt the remaining heating time and the remaining number of occurrences, whichever reflects the faster puff progress; or The indicating device includes a display screen, and the indicating device displays an initial puffing progress prompt including: the display screen displays a complete icon; the indicating device updates the puffing progress prompt information including: a segment of the icon displayed on the display screen becomes dark, the darkened segment is used to prompt the current puffing progress, and the non-darkened segment is used to prompt the remaining heating time and the remaining number of occurrences, whichever reflects the faster puffing progress; or, The indicating device includes a display screen, and the indicating device displays an initial puffing progress prompt, including: the display screen displays a numerical value; the indicating device updates the puffing progress prompt information, including: the display screen controls the numerical value to become smaller, and the smaller numerical value is used to prompt the remaining heating time and the remaining number of occurrences, whichever reflects the faster puffing progress.
10. A computer-readable storage medium, characterized in that: A computer program is stored on the medium, and the computer program can be executed by a processor to implement the method according to any one of claims 1 to 6.
11. 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 any one of claims 1 to 6 is implemented.