Intelligent timer control method and intelligent timer

Through the intelligent timer, the identification information of the trigger component is detected, the timing data is entered into different working modes and the timing data is recorded, which solves the problem of single functions of traditional timer, realizes data analysis and anti-addiction functions, and improves the user experience and concentration.

CN120355386APending Publication Date: 2025-07-22SHENZHEN MAKER WORKS TECH CO LTD
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Patent Information

Application Number
CN202410089071.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-01-22
Publication Date
2025-07-22

AI Technical Summary

Technical Problem

The functions of traditional timers are too simple to meet the needs of the digital age of information, cannot record and count process data, and the time management application of smartphones is easy to distract users.

Method used

Design an intelligent timer to control the timer to enter different working modes by detecting the identification information of the trigger component, and stop timing when the trigger state changes, output the timer time duration, support data matching, comparison and analysis, and has multiple working modes and anti-addiction functions.

Benefits of technology

It realizes the multifunctionalization of smart timers, improves practicality and user experience, can record and analyze time usage, prevent users from being interfered by mobile phones, and enhances concentration.

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Abstract

The invention discloses an intelligent timer control method and an intelligent timer. The intelligent timer control method comprises the following steps: detecting a trigger state of a timer body; when it is detected that the timer body is triggered by the trigger assembly, identification information of the trigger assembly is obtained, and the timer body is controlled to enter a corresponding working mode according to the obtained identification information and starts timing; when it is detected that the timer body is changed from the triggered state to the non-triggered state, the timer body is controlled to stop timing, and the corresponding timing duration is output. The problem that a traditional timer is low in practicability can be solved.
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Description

Technical Field

[0001] The present invention relates to the technical field of intelligent devices, and particularly to an intelligent timer control method and an intelligent timer. Background Art

[0002] In the era of explosive Internet information, a large amount of irrelevant information consumes most of people's time, making it difficult for us to maintain concentration, which greatly reduces our learning and working efficiency. Therefore, timer products and scientific time management methods are widely used in daily life to help people manage time more effectively. Although ordinary timers and time management applications can help people perform accurate timing and provide schedule and plan reminders, these solutions still have some limitations.

[0003] Traditional timers, whether electronic or mechanical, have overly simple functions and cannot meet the needs of the information digital age. They can perform single-time timing, but cannot record and statistically analyze process data. For example, if users want to see how much total time they have spent on learning, or which time period they are more focused, or need some motivation to better maintain concentration, traditional timers cannot provide such functions. Summary of the Invention

[0004] The main object of the present invention is to propose an intelligent timer control method, aiming to solve the problem of low practicality of traditional timers.

[0005] To achieve the above object, the intelligent timer control method proposed by the present invention is applied to an intelligent timer. The intelligent timer includes a timer body and a plurality of trigger components. The intelligent timer control method includes:

[0006] Detect the trigger state of the timer body;

[0007] When it is detected that the timer body is triggered by a trigger component, obtain the identification information of the trigger component, and control the timer body to enter the corresponding working mode and start timing according to the obtained identification information;

[0008] When it is detected that the timer body changes from the trigger state to the non-trigger state, control the timer body to stop timing and output the corresponding timing duration.

[0009] Optionally, after the step of outputting the corresponding timing duration, the following steps are further included:

[0010] Obtain the current time;

[0011] Match the obtained identification information, timing duration and current time into a set of data and output it.

[0012] Optionally, the intelligent timer control method further includes:

[0013] Receive a comparison signal, obtain multiple groups of data, compare the timing durations in the multiple groups of data containing corresponding identification information according to the comparison signal, and output a corresponding comparison result graph.

[0014] Optionally, the step of comparing the timing durations in the multiple groups of data containing corresponding identification information according to the comparison signal and outputting a corresponding comparison result graph includes:

[0015] Determine the corresponding identification information according to the comparison signal, and call multiple groups of data containing the same identification information;

[0016] Match the time parameters in each group of data with multiple time intervals to determine the time interval to which each group of data belongs;

[0017] Compare the timing durations in multiple groups of data belonging to the same time interval in sequence, generate a corresponding comparison result graph and output it.

[0018] Optionally, the multiple time intervals include multiple first time intervals and / or multiple second time intervals;

[0019] Among them,

[0020] The multiple first time intervals are different days;

[0021] The multiple second time intervals are different time periods in the same day.

[0022] Optionally, the intelligent timer control method further includes:

[0023] Receive an analysis signal, analyze multiple groups of data containing corresponding identification information according to the analysis signal, and output a corresponding analysis sorting table.

[0024] Optionally, the step of analyzing multiple groups of data containing corresponding identification information according to the analysis signal and outputting a corresponding analysis sorting table includes:

[0025] Determine the corresponding identification information according to the analysis signal, and call multiple groups of data containing the same identification information;

[0026] Compare the timing durations in multiple groups of data in sequence, and sort the timing durations in multiple groups of data in ascending order;

[0027] Match the time parameters in each group of data with multiple time intervals to determine the time interval to which each group of data belongs;

[0028] According to the sorting of the timing durations, sort the time intervals to which each group of data belongs and output a corresponding analysis sorting table.

[0029] Optionally, the working modes at least include a focus mode and a non - focus mode.

[0030] Optionally, a plurality of the trigger components include a first trigger component;

[0031] The step of, when detecting that the timer body is triggered by a trigger component, obtaining the identification information of the trigger component and controlling the timer body to enter the corresponding working mode and start timing is specifically as follows:

[0032] When detecting that the timer body is triggered by a trigger component, obtain the identification information of the trigger component;

[0033] When determining that the trigger component is the first trigger component according to the obtained identification information, control the timer body to enter the focus mode and start timing.

[0034] Optionally, in the focus mode, the intelligent timer control method further includes:

[0035] Detect the position state of the timer body;

[0036] When detecting that the position state of the timer body deviates from the preset state, control the timer body to stop timing and output an alarm signal;

[0037] When detecting that the position state of the timer body resumes the preset state, control the timer body to continue timing and stop outputting the alarm signal.

[0038] The present invention also provides an intelligent timer, which is characterized by including:

[0039] A timer body;

[0040] A plurality of trigger components, and the plurality of trigger components are separately arranged from the timer body;

[0041] A controller, which is arranged in the timer body, and a timer control program is stored in the controller. When the timer control program is executed by the controller, the intelligent timer control method as described above is implemented.

[0042] In the technical solution of the present invention, by detecting the trigger state of the timer body, when detecting that the timer body is triggered by a trigger component, obtaining the identification information of the trigger component, controlling the timer body to enter the corresponding working mode and start timing according to the obtained identification information, and when detecting that the timer body changes from the trigger state to the non - trigger state, controlling the timer body to stop timing and outputting the corresponding timing duration, so as to realize the intelligent timing function. The present invention can identify different trigger components, thereby entering different working modes to meet different application requirements of users, improving the practicability and product intelligence level of the intelligent timer, and improving the user experience. Description of the Drawings

[0043] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on the structures shown in these drawings.

[0044] Figure 1 It is a schematic flowchart of an embodiment of the intelligent timer control method of the present invention;

[0045] Figure 2 It is a detailed flowchart of an embodiment of the intelligent timer control method of the present invention;

[0046] Figure 3 It is a detailed flowchart of another embodiment of the intelligent timer control method of the present invention;

[0047] Figure 4 It is a detailed flowchart of yet another embodiment of the intelligent timer control method of the present invention;

[0048] Figure 5 It is a detailed flowchart of still another embodiment of the intelligent timer control method of the present invention;

[0049] Figure 6 It is a detailed flowchart of another embodiment of the intelligent timer control method of the present invention;

[0050] Figure 7 It is a detailed flowchart of yet another embodiment of the intelligent timer control method of the present invention;

[0051] Figure 8 It is a detailed flowchart of still another embodiment of the intelligent timer control method of the present invention.

[0052] The realization of the object of the present invention, its functional features and advantages will be further described in conjunction with the embodiments with reference to the drawings. Detailed Embodiments

[0053] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the scope of protection of the present invention.

[0054] It should be noted that if there are directional indications (such as up, down, left, right, front, back...) involved in the embodiments of the present invention, then such directional indications are only used to explain the relative positional relationship, movement conditions, etc. between components in a certain specific posture (as shown in the attached drawings). If this specific posture changes, then the directional indications will also change accordingly.

[0055] In addition, if there are descriptions such as "first", "second", etc. involved in the embodiments of the present invention, then such descriptions of "first", "second", etc. are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly specifying the quantity of the indicated technical features. Thus, the features defined with "first", "second" may explicitly or implicitly include at least one such feature. In addition, the technical solutions between various embodiments can be combined with each other, but it must be based on the fact that those of ordinary skill in the art can implement it. When the combination of technical solutions results in contradictions or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0056] Currently, traditional timers, whether electronic or mechanical, have overly simple functions and cannot meet the needs of the information digital age. They can perform single-time timing, but cannot record and statistically analyze process data. For example, if users want to see how much total time they have spent on learning, or which time period they are more focused, or need some motivation to better maintain focus, traditional timers cannot provide such functions.

[0057] With the popularization of smart phones, many time management applications have emerged, which can achieve functions that traditional timers cannot provide. However, because smart phone functions are too complex, it is difficult for users to stay focused. When using the time management function on the phone, they are often disturbed by other applications or information, which greatly weakens the effect of the time management function. In addition, many applications, especially game and video applications, are designed according to people's preferences and weaknesses to make users more likely to be addicted to them. Therefore, although smart phones provide a better user experience, it is difficult to add an anti-addiction function to them.

[0058] To solve the above problems, the present invention proposes an intelligent timer control method, which is applied to an intelligent timer. The intelligent timer includes a timer body and a plurality of trigger components. Referring to Figure 1 , in one embodiment, the intelligent timer control method includes:

[0059] Step S100, detecting the trigger state of the timer body;

[0060] When it is detected that the timer body is triggered by a trigger component, obtain the identification information of the trigger component, and control the timer body to enter the corresponding working mode and start timing according to the obtained identification information;

[0061] When it is detected that the timer body changes from the triggered state to the non-triggered state, control the timer body to stop timing and output the corresponding timing duration.

[0062] In this embodiment, a processor for controlling the operation of the timer body can be provided, such as an MCU, a DSP (Digital Signal Process, digital signal processing chip), an FPGA (Field Programmable Gate Array, programmable logic gate array chip), etc., for controlling the operation of the timer body and for obtaining the identification information of the triggering component, etc. The identification information can be used to identify different triggering components through numbers, letters, symbols, etc. The triggering component can be selected as an NFC electronic tag or a magnet, etc. Correspondingly, an RFID reader or a Hall sensor, etc. can be correspondingly provided in the timer body for sensing the triggering component, that is, being triggered by the triggering component, so that the timer body starts to work. For example, if the triggering component is an NFC electronic tag, an RFID reader is correspondingly provided in the timer body. When the timer body approaches or contacts the triggering component, the RFID reader can read the information stored in the NFC electronic tag and send it to the processor inside the timer body, that is, the timer body is triggered by the triggering component.

[0063] It can be understood that the identification information of multiple triggering components can be set to be different from each other. For example, when the triggering component is an NFC electronic tag, different numbered signals can be stored in the NFC electronic tag to distinguish multiple triggering components. Moreover, each triggering component corresponds to a working mode of the timer. The timer body can determine the triggered triggering component by obtaining the identification information stored in the NFC electronic tag and thus enter the corresponding working mode.

[0064] If the identification information of multiple trigger components is different from each other, it can be used to represent different usage scenarios. For example, the identification information of multiple trigger components is 1, 2, 3, and 4 respectively, representing the schedule of learning, exercise, entertainment, and anti-entertainment. The user can place different trigger components in the corresponding scenarios. The No. 1 trigger component can be set on the desk, the No. 2 trigger component can be pasted on the treadmill, and the No. 3 trigger component can be set on the computer desk. When the user wants to carry out the learning schedule, the user can place the timer body on the No. 1 trigger component on the desk. The processor in the timer body can obtain the identification information of the trigger component as 1 through modules such as the set RFID reader or Hall sensor, and then control the timer body to enter the learning working mode and start timing. When the user wants to end the learning, the user can take the timer body away from the No. 1 trigger component on the desk, that is, the timer body changes from the triggered state to the non-triggered state. At this time, the timer body stops timing and outputs the timing duration. It can be understood that the timer body can display the timing duration through the display component, or send it to the mobile terminal or cloud server through the communication module, so that the user can freely view the learning duration. In addition, the timer body has multiple working modes. In this embodiment, it at least includes a learning mode, an exercise mode, and an entertainment mode. The multiple working modes can correspond to multiple trigger components, and the multiple working modes can be set according to actual application requirements. For example, in the exercise mode, the timer body can also implement functions such as playing music and emitting light through the set function module to create an exercise atmosphere and improve the user experience.

[0065] In the case where NFC is applied to the device APP, when the user clicks the start button on the device APP, the device APP will automatically turn on NFC. When it receives the event of identifying the NFC tag, it will automatically start the focus task. After starting, when it receives the event of NFC disconnection, it will end the focus process and turn off NFC.

[0066] In the technical solution of the present invention, by detecting the trigger state of the timer body, when it is detected that the timer body is triggered by the trigger component, the identification information of the trigger component is obtained, and according to the obtained identification information, the timer body is controlled to enter the corresponding working mode and start timing. And when it is detected that the timer body changes from the triggered state to the non-triggered state, the timer body is controlled to stop timing and output the corresponding timing duration to realize the intelligent timing function. The present invention can identify different trigger components and thus enter different working modes to meet different application requirements of users, improve the practicability and product intelligence of the intelligent timer, and improve the user experience.

[0067] Refer to Figure 2 , in one embodiment, after the step of outputting the corresponding timing duration, it further includes:

[0068] Step S200: Obtain the current time parameter;

[0069] Step S300: Match the obtained identification information, timing duration, and time parameter into a set of data, and upload it to the cloud server.

[0070] In this embodiment, obtaining the current time parameter means obtaining the current time. Then, match the obtained time parameter with the identification information and timing duration obtained in the previous steps into a set of data and upload it to the cloud server. For example, the timer body is triggered by the No. 1 trigger component and changes from the triggered state to the non-triggered state after a period of time. The timer body stops working and outputs the timing duration, which is 30 minutes. At this time, the timer body obtains the current time parameter, which is 10 am. Then, the timer body uploads No. 1, 30 minutes, and 10 am as a set of data to the cloud server to achieve automatic recording and saving of the duration for subsequent users to view the data or facilitate the analysis by calling the recorded data. It can be understood that the timer body can also process or organize these three data and then upload the processed information data to the cloud server. For example, the timer body can organize the information of "studying for half an hour from 9:30 to 10 am" based on No. 1, 30 minutes, and 10 am and upload it to the cloud server, making the recorded data more comprehensive and intuitive and improving the user experience. In addition, the user can view the uploaded data through the mobile APP or other terminal devices. Or, the user can also directly operate the timer body, control the timer to call and display the uploaded data through input components such as buttons or touchscreens, enabling the user to directly view the recorded data and improving the practicality of the intelligent timer.

[0071] Refer to Figure 3 , in an embodiment, the intelligent timer control method further includes:

[0072] Step S400: When receiving a comparison signal, call the timing durations in multiple sets of data containing the corresponding identification information according to the comparison signal for comparison, and output the corresponding comparison result graph.

[0073] In this embodiment, when a comparison signal is received, it is also possible to, based on the received comparison signal, call multiple sets of data containing corresponding identification information from the stored data for comparison and output corresponding comparison result graphs. It can be understood that the user can send a corresponding comparison signal to the timer body through input components such as buttons or touchscreens, or can also send a corresponding comparison signal to the timer body through terminal devices such as mobile phones. For example, when the user sends a learning comparison signal to the timer body through input components such as buttons or touchscreens, the timer body calls multiple sets of data containing identification information representing learning and compares the multiple sets of data, thereby completing the data comparison for the learning schedule activity. Specifically, the timing durations in the multiple sets of data can be compared to obtain a comparison result graph, so as to obtain data such as the longest timing duration and the shortest timing duration, enabling the user to understand when the learning duration is long, that is, the learning concentration is high. The comparison result graph can be displayed in the form of a line graph, a bar graph, a pie chart, etc. or other similar forms that can display the comparison effect of two sets of data.

[0074] Referring to Figure 4 , in one embodiment, the steps of comparing the timing durations in multiple sets of data containing corresponding identification information according to the comparison signal and outputting corresponding comparison result graphs include:

[0075] Step S410: Determine the corresponding identification information according to the comparison signal and call multiple sets of data containing the same identification information;

[0076] Step S420: Match the time parameters in each set of data with multiple time intervals to determine the time interval to which each set of data belongs;

[0077] Step S430: Compare the timing durations in multiple sets of data belonging to the same time interval in sequence, generate a corresponding comparison result graph and output it.

[0078] In this embodiment, it is possible to determine the data sets to be compared according to the received comparison signal. For example, when the user sends a learning comparison signal to the timer body through input components such as buttons or touchscreens, the timer body calls multiple sets of data containing identification information representing learning and compares the multiple sets of data, thereby completing the data comparison for the learning schedule activity.

[0079] After calling multiple sets of data containing the same identification information, first match the time parameters in each set of data with multiple time intervals to determine the time interval to which each set of data belongs. For example, a day can be divided into 12 time intervals, each time interval being two hours. Then, the corresponding time interval can be determined according to the time parameter in each set of data. For example, the data set with a time parameter of 10 o'clock belongs to the time interval from 8 o'clock to 10 o'clock, and the data set with a time parameter of 11 o'clock belongs to the time interval from 10 o'clock to 12 o'clock.

[0080] After determining the time interval to which each set of data belongs, the timing durations in the data sets belonging to the same time interval can be compared, and then the corresponding comparison result graph can be generated and output to a display component or a terminal device for display for the user to view. For example, the timing durations in multiple sets of data belonging to the time interval from 10 o'clock to 12 o'clock can be compared in sequence, that is, the timing durations in the same time period on different days are compared, so as to generate a line graph of the durations in the same time period on multiple days, enabling the user to understand the changes in the schedule durations in the same time period on different dates.

[0081] Optionally, the multiple time intervals include multiple first time intervals and / or multiple second time intervals;

[0082] Among them,

[0083] The multiple first time intervals are different days;

[0084] The multiple second time intervals are different time periods in the same day.

[0085] It can be understood that the time intervals can be set according to actual application requirements. In this embodiment, the multiple time intervals include multiple first time intervals and / or multiple second time intervals. Among them, the first time intervals are different days, that is, each day is a time interval, and the data sets on the same day belong to the same first time interval. The second time intervals are different time periods in the same day, that is, each time period is a time interval, and the data sets on different days but in the same time period belong to the same second time interval.

[0086] In a specific embodiment, the multiple time intervals include multiple first time intervals. For example, they are five time intervals which are September 1st, September 2nd, September 3rd, September 4th, and September 5th respectively. The identification information being No. 1 characterizes the learning schedule. When the user sends a learning comparison signal to the timer body, the timer body then calls multiple groups of data containing the No. 1 identification information, and based on the time parameters in the data groups, determines which of the above five time intervals each data group belongs to. Then, it compares the timing durations in the data groups belonging to the same time interval, thereby generating a corresponding comparison result graph and outputting it to the display component or the terminal device for display for the user to view. For example, if there are 5 groups of data belonging to the time interval of September 1st, then the timing durations of these 5 groups of data are compared in sequence, and a corresponding line graph is output, enabling the user to learn about the changes in the learning duration each time on September 1st through the line graph. Thus, the user can know when the learning duration is long within a day, that is, when the concentration is high.

[0087] In another specific embodiment, the multiple time intervals include multiple second time intervals. For example, they are four time intervals which are from 8:00 to 12:00, from 12:00 to 16:00, from 16:00 to 20:00, and from 20:00 to 24:00 respectively. The identification information being No. 1 characterizes the learning schedule. When the user sends a learning comparison signal to the timer body, the timer body then calls multiple groups of data containing the No. 1 identification information, and based on the time parameters in the data groups, determines which of the above four time intervals each data group belongs to. Then, it compares the timing durations in the data groups belonging to the same time interval, thereby generating a corresponding comparison result graph and outputting it to the display component or the terminal device for display for the user to view. For example, if there are seven groups of data belonging to the time interval from 8:00 to 12:00, which are data groups of the same time period for seven days, then the timing durations of these seven groups of data are compared in sequence, and a corresponding line graph is output, enabling the user to learn about the changes in the learning duration each time during the same time period for seven days through the line graph. Thus, the user can know which day has a long learning duration within a week, that is, when the concentration is high.

[0088] In the technical solution of the present invention, by dividing multiple groups of stored data into time intervals and comparing the data belonging to the same time interval, a corresponding duration line graph is generated and output, enabling the user to understand the duration changes of the same activity schedule, so that the user can master the time periods with high concentration and arrange the schedule more reasonably.

[0089] Referring to Figure 5 , in an embodiment, the intelligent timer control method further includes:

[0090] Step S500: When receiving an analysis signal, call multiple sets of data containing corresponding identification information according to the analysis signal for analysis, and output a corresponding analysis sorting table.

[0091] In this embodiment, when receiving an analysis signal, it is also possible to call multiple sets of data containing corresponding identification information from the stored data according to the received analysis signal for analysis, and output a corresponding analysis sorting table. It can be understood that the user can send a corresponding analysis signal to the timer body through input components such as buttons or touchscreens, or can also send a corresponding analysis signal to the timer body through a terminal device such as a mobile phone. For example, when the user sends a learning analysis signal to the timer body through input components such as buttons or touchscreens, the timer body calls multiple sets of data containing identification information representing learning, and analyzes the multiple sets of data, thereby completing the data analysis of the learning schedule activity. Specifically, the timing durations in the multiple sets of data can be compared to obtain an analysis sorting table such as the longest timing duration and the shortest timing duration, so that the user can know when the learning time is long, that is, the learning concentration is high.

[0092] Refer to Figure 6 , in one embodiment, the step of calling multiple sets of data containing corresponding identification information according to the analysis signal for analysis, and outputting a corresponding analysis sorting table includes:

[0093] Step S510: Determine the corresponding identification information according to the analysis signal, and call multiple sets of data containing the same identification information;

[0094] Step S520: Compare the timing durations in the multiple sets of data in sequence, and sort the timing durations in the multiple sets of data in ascending order;

[0095] Step S530: Match the time parameters in each set of data with multiple time intervals to determine the time interval to which each set of data belongs;

[0096] Step S540: Sort the time intervals to which each set of data belongs according to the sorting of the timing durations, and output a corresponding analysis sorting table.

[0097] In this embodiment, it is possible to determine the data group to be analyzed according to the received analysis signal. For example, when the user sends a learning analysis signal to the timer body through input components such as buttons or touchscreens, the timer body calls multiple sets of data containing identification information representing analysis, and analyzes the multiple sets of data, thereby completing the data analysis of the learning schedule activity.

[0098] After calling multiple sets of data containing the same identification information, first compare the timing durations in the multiple sets of data in sequence, sort the timing durations in the multiple sets of data in ascending order, then match the time parameters in each set of data with multiple time intervals to determine the time interval to which each set of data belongs, and finally, according to the arrangement order of the timing durations, sort the time intervals to which each set of data belongs and output them.

[0099] The following is a specific embodiment for illustration. The identification information of No. 1 represents the learning schedule, the identification information of No. 2 represents the exercise schedule, and the identification information of No. 3 represents the entertainment schedule. One day is divided into 12 time intervals, each time interval being two hours. When the user sends a learning analysis signal to the timer body, the timer body calls multiple sets of data containing the identification information of No. 1, sorts the timing durations in the multiple sets of data in ascending order, for example, in the arrangement order of 1h40min, 1h30min, 1h, 40min, 30min, 20min in sequence, then determines the time interval to which each set of data belongs, and according to the arrangement order of the timing durations, sorts the time intervals to which each set of data belongs and outputs them. For example, the above duration arrangement order corresponds to the time interval order of 10:00 - 12:00, 14:00 - 16:00, 18:00 - 20:00, 8:00 - 10:00, 12:00 - 14:00, 20:00 - 22:00, and outputs the corresponding analysis sorting table, enabling the user to intuitively understand which time has the longest learning duration and which time interval has the shortest learning duration, so that the user can learn from it which time period has a high learning concentration, enabling the user to master the time periods with high concentration of oneself to arrange the schedule more reasonably.

[0100] Refer to Figure 7 In one embodiment, the multiple trigger components include a first trigger component;

[0101] The steps of obtaining the identification information of the trigger component when detecting that the timer body is triggered by the trigger component and controlling the timer body to enter the corresponding working mode and start timing according to the obtained identification information are specifically as follows:

[0102] Step S110: When detecting that the timer body is triggered by the trigger component, obtain the identification information of the trigger component;

[0103] Step S120: When determining that the trigger component is the first trigger component according to the obtained identification information, control the timer body to enter the focus mode and start timing.

[0104] It can be understood that the identification information of multiple trigger components can be set to be different from each other. For example, when the trigger component is an NFC electronic tag, different numbered signals can be stored in the NFC electronic tag to distinguish multiple trigger components. Moreover, each trigger component corresponds to a working mode of the timer. The timer body can determine the triggered trigger component by obtaining the identification information stored in the NFC electronic tag, and thus enter the corresponding working mode.

[0105] If the identification information of multiple trigger components is different from each other, it can be used to represent different usage scenarios. For example, the identification information of multiple trigger components is 1, 2, and 3 respectively, representing the schedule of learning, exercise, and entertainment. The user can place different trigger components in the corresponding scenarios. The No. 1 trigger component can be set on the desk, the No. 2 trigger component can be pasted on the treadmill, and the No. 3 trigger component can be set on the computer desk. When the user wants to carry out the learning schedule, the user can place the timer body on the No. 1 trigger component on the desk. The processor in the timer body can obtain the identification information of this trigger component as 1 through modules such as the set RFID reader or Hall sensor, and then control the timer body to enter the learning working mode and start timing. When the user wants to end the learning, the user can take the trigger component away from the No. 1 trigger component on the desk, that is, the timer body changes from the triggered state to the non-triggered state. At this time, the timer body stops timing and outputs the timing duration.

[0106] Optionally, referring to Figure 8 , in the focused mode, the smart timer control method further includes:

[0107] Step S121, detecting the position state of the timer body;

[0108] When it is detected that the position state of the timer body deviates from the preset state, control the timer body to stop timing and output an alarm signal;

[0109] When it is detected that the position state of the timer body returns to the preset state, control the timer body to continue timing and stop outputting the alarm signal.

[0110] It can be understood that due to the existence of smartphones, it is difficult for users to maintain focus, especially for game and video applications, which are designed according to people's preferences and weaknesses to make users more likely to be addicted. Therefore, in order to prevent users from being affected by mobile phones, in a specific embodiment, a first trigger component is set. The first trigger component represents the anti-entertainment mode. The user can place the first trigger component on the back of the mobile phone. When the user wants to carry out focused activities such as learning or reading, the user can cover the mobile phone and place the timer body on the first trigger component, so that the timer body is triggered by the first trigger component and enters the focused mode.

[0111] In one embodiment, the working modes at least include a focus mode and a non - focus mode. In this embodiment, the focus mode can be an anti - entertainment mode, such as a study mode and a sports mode. In the study mode, the user needs to concentrate attention, energy and thinking to improve the learning effect; while the non - focus mode can be an entertainment mode, and the entertainment mode can be playing games or other entertainment activities. At this time, the user's purpose is to entertain and relax and does not need to concentrate. In the focus mode, while the timer body is timing, it can detect the position state of the timer body. When it detects that the position state of the timer body deviates from the preset state, that is, the timer body moves, which means that the user has moved or picked up the mobile phone. At this time, the timer body is controlled to stop timing and an alarm signal is output to prompt the user not to play with the mobile phone until the user replaces the mobile phone cover and places the timer body on the first trigger component again, and then the timing continues, so as to achieve the purpose of reminding the user not to play with the mobile phone and thus improve the user's concentration. Among them, a gyroscope or a level tester can be set in the timer body to detect the position state of the timer.

[0112] The present invention also provides an intelligent timer, including:

[0113] A timer body;

[0114] A plurality of trigger components, which are separately arranged from the timer body;

[0115] A controller, which is arranged in the timer body. A timer control program is stored in the controller. When the timer control program is executed by the controller, the intelligent timer control method as described above is realized.

[0116] For the specific implementation of the intelligent timer control method, please refer to the above - mentioned embodiments. Since this intelligent timer adopts all the technical solutions of the above - mentioned embodiments, it has at least all the beneficial effects brought by the technical solutions of the above - mentioned embodiments, which will not be elaborated here one by one.

[0117] The trigger component can be selected as an NFC electronic tag or a magnet, etc. Correspondingly, an RFID reader or a Hall sensor, etc. can be correspondingly set in the timer body to sense the trigger component, that is, to be triggered by the trigger component, so that the timer body starts to work. For example, if the trigger component is an NFC electronic tag, an RFID reader is correspondingly set in the timer body. When the timer body approaches or contacts the trigger component, the RFID reader can read the information stored in the NFC electronic tag and send it to the processor inside the timer body, that is, the timer body is triggered by the trigger component. By installing the trigger component on different scenes or items, the intelligent timer can detect the presence of the trigger component, enter the corresponding working mode and have corresponding interactions.

[0118] It can be understood that the intelligent timer can also set different functional modules according to actual application requirements to achieve corresponding functions. Some of the achievable functions are exemplified below.

[0119] Corresponding wireless transmission modules can be set on the intelligent timer, such as WIFI module, Bluetooth module, 5G communication module and other wireless transmission modules, so that the data generated by users during use can be uploaded to the server or other terminals to generate scientific data charts, improve readability, and make it more convenient for users to analyze and improve.

[0120] Input components such as knobs, buttons, sensors or touchscreens can be set on the intelligent timer for users to control the intelligent timer.

[0121] Functional components such as audio players, LED lights, and displays can be set on the intelligent timer, so that the intelligent timer can output corresponding sounds, lights, images or other dynamic prompts in different working modes to create a corresponding atmosphere and improve the user experience. It can be understood that a corresponding incentive system can also be set based on this to encourage users to stay focused, complete plans and remember important information, etc. For example, when the user studies for a fixed duration, the intelligent timer can be made to emit pleasant sounds and light effects. A corresponding points and achievement system can also be set. When the user studies for a fixed duration, the user can be rewarded with corresponding virtual achievements, virtual items and virtual points to improve the user's sense of achievement and stickiness.

[0122] Attitude or motion sensors such as gyroscopes can also be set on the intelligent timer, or a pickup and voice control module can be set, so that the intelligent timer can detect the actions and sounds of users, realize voice control or gesture control, and generate corresponding interactions, making the use of the intelligent timer more convenient and intelligent.

[0123] The above are only the preferred embodiments of the present invention, and do not limit the patent scope of the present invention accordingly. Any equivalent structural transformation made under the inventive concept of the present invention by using the content of the specification and drawings of the present invention, or any direct / indirect application in other related technical fields is included in the patent protection scope of the present invention.

Claims

1. A method for controlling an intelligent timer, which is applied to an intelligent timer. The intelligent timer includes a timer body and a plurality of trigger components, and is characterized in that, The described intelligent timer control method includes: Detect the trigger state of the timer body; When it is detected that the timer body is triggered by a trigger component, obtain the identification information of the trigger component, and control the timer body to enter the corresponding working mode and start timing according to the obtained identification information; When it is detected that the timer body changes from the triggered state to the non-triggered state, control the timer body to stop timing and output the corresponding timing duration.

2. The intelligent timer control method according to claim 1, characterized in that, After the step of outputting the corresponding timing duration, it further includes: Obtain the current time; Match the obtained identification information, timing duration, and current time into a set of data and output it.

3. The intelligent timer control method according to claim 2, wherein, The described intelligent timer control method further includes: Receive a comparison signal, obtain multiple sets of data, compare the timing durations in the multiple sets of data containing the corresponding identification information according to the comparison signal, and output the corresponding comparison result graph.

4. The intelligent timer control method according to claim 3, wherein The step of comparing the timing durations in the multiple sets of data containing the corresponding identification information according to the comparison signal and outputting the corresponding comparison result graph includes: Determine the corresponding identification information according to the comparison signal and call multiple sets of data containing the same identification information; Match the time parameters in each set of data with multiple time intervals to determine the time interval to which each set of data belongs; Compare the timing durations in multiple sets of data belonging to the same time interval in sequence, generate the corresponding comparison result graph and output it.

5. The intelligent timer control method according to claim 4, wherein, The multiple time intervals include multiple first time intervals and / or multiple second time intervals; wherein, The multiple first time intervals are different days; The multiple second time intervals are different time periods within the same day.

6. The intelligent timer control method according to claim 2, wherein The described intelligent timer control method further includes: Receive an analysis signal, analyze multiple sets of data containing the corresponding identification information according to the analysis signal, and output the corresponding analysis sorting table.

7. The intelligent timer control method according to claim 6, characterized in that, The step of analyzing multiple sets of data containing the corresponding identification information according to the analysis signal and outputting the corresponding analysis sorting table includes: Determine the corresponding identification information according to the analysis signal and call multiple sets of data containing the same identification information; Compare the timing durations in multiple sets of data in sequence and sort the timing durations in multiple sets of data in ascending order; Match the time parameters in each set of data with multiple time intervals to determine the time interval to which each set of data belongs; According to the sorting of the timing durations, sort the time intervals to which each set of data belongs and output the corresponding analysis sorting table.

8. The intelligent timer control method according to claim 1, wherein The working mode includes at least a focus mode and a non-focus mode.

9. The intelligent timer control method according to claim 8, characterized in that, The multiple trigger components include a first trigger component; The step of, when it is detected that the timer body is triggered by a trigger component, obtaining the identification information of the trigger component and controlling the timer body to enter the corresponding working mode and start timing is specifically: When it is detected that the timer body is triggered by a trigger component, obtain the identification information of the trigger component; When it is determined that the trigger component is the first trigger component according to the obtained identification information, control the timer body to enter the focus mode and start timing.

10. The intelligent timer control method according to claim 9, characterized in that, In the focus mode, the described intelligent timer control method further includes: Detect the position state of the timer body; When it is detected that the position state of the timer body deviates from the preset state, control the timer body to stop timing and output an alarm signal; When it is detected that the position state of the timer body returns to the preset state, control the timer body to continue timing and stop outputting the alarm signal.

11. An intelligent timer, characterized in that, It includes: The timer body; A plurality of trigger components, and the plurality of trigger components are separately arranged from the timer body; A controller, which is arranged in the timer body, and a timer control program is stored in the controller. When the timer control program is executed by the controller, the intelligent timer control method described in any one of claims 1-10 is realized.