The present disclosure relates to an electronic cigarette, and more particularly to a controlling apparatus with reminding function, and a control method, for use with an electronic cigarette.
Electronic cigarette usage has become widespread. The electronic cigarette includes an atomizing head. A battery supplies power to the atomizing head, and a heating element heats the liquid tobacco attached to a liquid guiding element to generate smoke, thus a user acquires a smoking experience.
However, the condition of the atomizing head can deteriorate over time and electronic cigarette usage, through malfunction or simple extended usage of the electronic cigarette. A defective atomizer will result in smells of burnt tobacco and metal. Thus, if the atomizing head is not in optimal condition, but the user is unaware of this and continues to use the electronic cigarette and thus the atomizing head, the burnt smell of the liquid guiding element and the metallic smell of the heating element will be mixed in the smoke, resulting in a poor electronic smoking experience.
Many aspects of the disclosure can be better understood with reference to the following drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the disclosure. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the several views.
In order to make the above-mentioned objects, features, and advantages of the present application more obvious, a description of specific embodiments of the present application will be described with reference to the accompanying drawings. The present application can be implemented in many ways different from those described herein, and those skilled in the art can make similar improvements without violating the contents of the present application. Therefore, the present application is not to be considered as limiting the scope of the embodiments to those described herein.
Several definitions that apply throughout this disclosure will now be presented.
Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one skilled in the art. The terms used in a specification of the present application herein are only for describing specific embodiments, and are not intended to limit the present application.
Referring to
In the illustrated embodiment, the loss calculation formula, the preset threshold value of the total loss DN, and the loss data of the atomizing head 17 are stored in the storage 13. In actual application, the loss calculation formula, the preset threshold value of the total loss DN, and the loss data of the atomizing head 17 can be stored in other device or a cloud. Additionally, different elements can be stored in different devices.
Additionally, the illustrated embodiment is an example of the corresponding relational data of ηN and N. In actual application, ηN can be a preset value. When the ηN is the preset value, the timer 12 doesn't need to record the number of operations N. The loss calculation formula is taken as an example in the illustrated embodiment, in actual application, other formulas can be used. For example, dN=ηN×aN×tN+b, b is a constant.
The value aN of the loss factor, the number of operations N and the operation duration tN of the atomizing head 17 can be detected in real time. According to the loss calculation formula and the loss data of the atomizing head 17, the operation loss dN of the Nth time and the total loss DN of N times of the atomizing head 17 are calculated. When the total loss DN is greater than or equal to the preset threshold value, an alarm signal reminding a user to change the atomizing head 17 is transmitted. Therefore, users can change the atomizing head 17 in a timely fashion. The user experience can thus be improved.
The loss factor is a factor affecting the atomizing head 17 during operation. The factor affected may include at least one of: the operating voltage of the atomizing head 17, the operating power of the atomizing head 17, the operating temperature of the atomizing head 17, the operating humidity of the atomizing head 17, and the pH value of the liquid tobacco.
In an alternative embodiment (not shown in drawings), the storage 13 of the controlling apparatus 1 is arranged in the atomizing head 17. The first detecting device 11, the timer 12, the processor 13, and the alarming device 15 of the controlling apparatus 1 are arranged in a battery assembly 16. The atomizing head 17 further includes a liquid guiding element 171 and a heating element 172. Since the storage 13 is arranged in the atomizing head 17, the battery assembly 16 can be fitted with at least one type of atomizing head 17, the storage 13 can be update when a replacement of the atomizing head 17 is fitted.
In an alternative embodiment (not shown in drawings), the first detecting device 11, the timer 12, the storage 13, the processor 14 and the alarming device 15 of the controlling apparatus 1 are arranged in the battery assembly 16. An atomizing head 17 includes a liquid guiding element 171 and a heating element 172. Since the storage 13 is arranged in the battery assembly 16, the storage 13 is not update when a replacement of the atomizing head 17 is fitted. The controlling apparatus 1 does not have a function of identifying different types of the atomizing head 17, the storage 13 stores only the loss calculation formula and the preset threshold value of total loss DN for the type of atomizing head 17 being used, and the battery assembly 16 can only work with one type of the atomizing head 17. When a new atomizing head 17, whose type is different from the prior type of atomizing head 17, is fitted to the battery assembly, the loss data of the previous atomizing head 17 stored in the storage 13 is deleted.
Referring to
The present disclosure provides an electronic cigarette 2 with reminding function. The electronic cigarette includes a battery assembly 16, an atomizing head 17, and the controlling apparatus 1 above mentioned.
The present disclosure provides a control method of the electronic cigarette with reminding function. The control method includes following steps, any of which may be omitted or have its order changed.
The first detecting device 11 detects the value aN of a loss factor for each operation of the atomizing head 17. N is defined as the total number of each operation of the atomizing head 17, and N≥1. The loss factor may be at least one of the operating voltage, power, temperature, or humidity of the atomizing head 17, and the pH value of the liquid tobacco.
The timer 12 records the individual number of operations N of the atomizing head 17, and an operation duration tN of the Nth operation.
The processor 14 acquires aN from the first detecting device 11 and acquires the N and tN from the timer 12. The processor also acquires the pre-stored loss calculation formula dN=ηN×aN×tN of the Nth operation, the relational data of ηN and N, the total loss calculation formula DN=DN-1+dN of the atomizing head 17, and the loss data from the storage 13, to calculate the total loss DN of the atomizing head 17 after the electronic cigarette operating for N times. ηN is defined as the correction factor, and D0=0.
The processor 14 pre-stores dN and DN in the storage 13, and compares the total loss DN with the preset threshold value. If the total loss DN is greater than or equal to the preset threshold value, the processor 14 instructs the alarming device 15 to transmit an alarm signal.
In other embodiments, the loss calculation formula, the preset value of the total loss DN, and the loss data of the atomizing head 17 can be stored in other external devices instead of the storage 13. When the loss calculation formula, the preset value of the total loss DN, and the loss data of the atomizing head 17 are needed to use, they can be acquired from the other external devices. Additionally, the loss calculation formula in the illustrated embodiment is an example. In actual application, the loss calculation formula can be changed.
The value aN of loss factor, the N number of times of operation, and the operation duration tN of the atomizing head 17 are detected in real-time. Using the loss calculation formula and the loss data of the atomizing head 17, the operation loss dN of the Nth operation and the total loss DN for N times of the atomizing head 17 are calculated. When the total loss DN is greater than or equal to the preset threshold value, an alarm signal indicating a need to change in atomizing head 17 is transmitted. Therefore, users can swap an old atomizing head 17 out in place of a new one. Therefore, improving the user experience.
Referring to
In step 501, the processor 14 compares whether a total loss DN−1 of the atomizing head 17 is greater than or equal to the preset threshold value. If the total loss DN−1 is greater than or equal to the preset maximum threshold value, the processor 14 causes the atomizing head to stop working, and cause an alarm signal to be transmitted to user. If the total loss DN−1 is less than the preset threshold value, the atomizing head 17 starts the Nth operation, in step 502. Then, continuing to step 503, the first detecting device 11 detects the value aN of a loss factor when the atomizing head 17 operates for the Nth time, and a timer 12 records an operation times associated with the number of operations N of the atomizing head 17 and an operation duration tN of the Nth time. In step 504, according to formulas and values of aN, tN, N, described above, and the loss data, the processor 14 calculates a operation loss dN at the Nth time of operation and a total loss DN after N operations. The values of dN and DN are stored in the storage 13. In step 505, the processor 14 compares whether the total loss DN is greater than or equal to the preset threshold value. If the total loss DN is greater than or equal to the preset threshold value, the atomizing head 17 is caused to stop working, and at step 508, an alarm signal is transmitted to user. If the total loss DN is less than the preset threshold value, transmission of an alarm signal to user as step 506 is not required.
When a new atomizing head 17 is used, the N=1 and DN−1 and DN are each equal to 0.
Referring to
In step 601, it is determined whether the atomizing head 17 needs to be replaced with a new one. If the atomizing head 17 needs to be changed, the processor 14 clears the loss data of the previous atomizing head 17, which is stored in the storage 13, as step 608. The loss data may include at least the number of operations and accumulated loss. Then, the method continues to step 602. If the atomizing head 17 does not need to be replaced, the method continues to step 602 directly. In step 602, the processor 14 compares the total loss DN−1 of the atomizing head 17 with the preset threshold value. If the total loss DN−1 is greater than or equal to the preset threshold value, the method continues to step 609. In step 609, the atomizing head 17 is caused to stop working, and an alarm signal indicating a need to change the atomizing head 17 is transmitted. If the total loss DN−1 is less than the preset threshold value, the method continues to step 603. In step 603, the atomizing head 17 is caused to start operating for the Nth time. Then, the method continues to step 604. In step 604, the first detecting device 11 detects the value aN of a loss factor when the atomizing head operates for the Nth time, and the timer 12 records the operation times for the number of operations N of the atomizing head 17 and operation duration tN of the Nth operation. In step 605, according to the formulas above and the values of aN, tN, N, and the loss data, the processor 14 calculates an operating loss dN for the Nth operation and a total loss DN after N operations. In addition, the values of dN and DN are stored in the storage 13. In Step 606, the processor 14 compares whether the total loss DN is greater than or equal to the preset threshold value. If the total loss DN is greater than or equal to the preset threshold value, the atomizing head 17 is caused to stop working and an alarm signal is caused to transmit to user, as step 610. If the total loss DN is less than the preset threshold value, no alarm signal is transmitted, as step 607.
When a new atomizing head 17 is used, N=1, and DN−1 and DN are equal to 0.
In the step 601, the user can determine for himself whether the atomizing head 17 needs to be changed, and the user can input accordingly to the electronic cigarette 2.
Referring to
In step 701, the user decides whether the atomizing head 17 needs to be changed. If the atomizing head 17 needs to be changed, the processor 14 clears the loss data for the atomizing head being replaced so there is no loss data for the new atomizing head 17 in the storage 13 as step 708. The loss data includes number of operations and accumulated loss. In another embodiment, if the loss data is not stored in the storage 13, an clear instruction can be sent to other devices configured to store the loss data, and the other devices clears the stored loss data after receiving the clear instruction. Then, the method continues to step 709. In step 709, the second detecting device 18 detects the identifying information associated with a new atomizing head 17 to detect the type of the new atomizing head 17. In step 710, according to the type of the new atomizing head 17, the processor 14 acquires the corresponding loss calculation formula and the preset threshold value from the storage 13. Then, the method continues to step 702. If the atomizing head 17 does not need to be changed, the method continues to step 702 directly.
In step 702, the processor 14 compares the total loss DN−1 of the atomizing head 17 with the preset threshold value. If the total loss DN−1 is greater than or equal to the preset threshold value, the method continues to step 711. In step 711, the atomizing head 17 is caused to stop working, and an alarm signal is caused to transmit to the user. If the total loss DN−1 is less than the preset threshold value, the method continues to step 703. In step 703, the atomizing head 17 is caused to start the Nth operation. Then, the method continues to step 704. In step 704, the first detecting device 11 detects the value aN of a loss factor when the atomizing head operates for the Nth time, and the timer 12 records the operation times for the number of operations N of the atomizing head 17 and the operation duration tN of the Nth operation. In step 705, according to the formulas above and the values of aN, tN, N, and the loss data, the processor 14 calculates an operating loss dN for the Nth operation and total loss DN after N operations. In addition, the values of dN and DN are stored in the storage 13. In step 706, the processor 14 compares whether the total loss DN is greater than or equal to the preset threshold value. If the total loss DN is greater than or equal to the preset threshold value, the method continues to step 712. In step 712, the atomizing head 17 is caused to stop working, and an alarm signal indicating a need to change the atomizing head 17 is transmitted to user. If the total loss DN is less than the preset threshold value, no alarm signal is transmitted, as step 707.
When a new atomizing head 17 is used, the N=1, DN−1 and DN are equal to 0.
In step 701, the user can determine for himself whether the atomizing head 17 needs to be changed to a new one, and the user can input accordingly to the electronic cigarette 2.
The various exemplary logical blocks, modules, circuits, and algorithm steps described in above embodiments can be implemented as an electronic hardware, or a computer software, or a combination of both. In order to clearly explain the interchangeability of the hardware and software, the function of the exemplary logical blocks, devices, circuits, and algorithm steps are described in general operation. The function is implemented as software or hardware depending on specific application and design constraints imposed on the entire system. Skilled persons in this field cam implement the function in a variety of ways for each specific application, but the way of implementation should not be interpreted as an exclusion of the scope of the present disclosure.
The present disclosure further provides an electronic cigarette with reminding function. The electronic cigarette includes a storage and a processor. At least one program instruction is stored in the storage. The at least one program instruction is executed in the processor to implement the control method described above. Preferably, the processor stores other parameters needed for executing the program. For example, the loss calculation formula and the loss data described above can be stored in the processor.
The present disclosure further provides a computer storage media. The computer storage media includes at least one program instruction. The at least one program instruction is executed in the processor to implement the control method described above.
Even though information and advantages of the present embodiments have been set forth in the foregoing description, together with details of the structures and functions of the present embodiments, the disclosure is illustrative only; changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the present embodiments to the full extent indicated by the plain meaning of the terms in which the appended claims are expressed.
Number | Date | Country | Kind |
---|---|---|---|
201510903001.1 | Dec 2015 | CN | national |
Number | Name | Date | Kind |
---|---|---|---|
5878752 | Adams | Mar 1999 | A |
20100163063 | Fernando | Jul 2010 | A1 |
20130104916 | Bellinger | May 2013 | A1 |
20130340775 | Juster | Dec 2013 | A1 |
20140174458 | Katz | Jun 2014 | A1 |
20140230835 | Saliman | Aug 2014 | A1 |
20140278250 | Smith et al. | Sep 2014 | A1 |
20140345633 | Talon | Nov 2014 | A1 |
Number | Date | Country |
---|---|---|
103734915 | Apr 2014 | CN |
104106842 | Oct 2014 | CN |
204670381 | Sep 2015 | CN |
105394817 | Mar 2016 | CN |
2014169437 | Oct 2014 | WO |
Number | Date | Country | |
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20180279689 A1 | Oct 2018 | US |
Number | Date | Country | |
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Parent | PCT/CN2016/108645 | Dec 2016 | US |
Child | 16000904 | US |