WO2017096988A1 - 一种电子烟电池、电子烟及其控制方法 - Google Patents

一种电子烟电池、电子烟及其控制方法 Download PDF

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Publication number
WO2017096988A1
WO2017096988A1 PCT/CN2016/098439 CN2016098439W WO2017096988A1 WO 2017096988 A1 WO2017096988 A1 WO 2017096988A1 CN 2016098439 W CN2016098439 W CN 2016098439W WO 2017096988 A1 WO2017096988 A1 WO 2017096988A1
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WIPO (PCT)
Prior art keywords
resistance value
preset
value
sensor information
information
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PCT/CN2016/098439
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English (en)
French (fr)
Inventor
邱伟华
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常州聚为智能科技有限公司
卓尔悦欧洲控股有限公司
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Publication of WO2017096988A1 publication Critical patent/WO2017096988A1/zh
Priority to US16/003,118 priority Critical patent/US10932499B2/en

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    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/50Control or monitoring
    • A24F40/53Monitoring, e.g. fault detection
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/50Control or monitoring
    • A24F40/51Arrangement of sensors
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/10Devices using liquid inhalable precursors
    • AHUMAN NECESSITIES
    • A24TOBACCO; CIGARS; CIGARETTES; SIMULATED SMOKING DEVICES; SMOKERS' REQUISITES
    • A24FSMOKERS' REQUISITES; MATCH BOXES; SIMULATED SMOKING DEVICES
    • A24F40/00Electrically operated smoking devices; Component parts thereof; Manufacture thereof; Maintenance or testing thereof; Charging means specially adapted therefor
    • A24F40/40Constructional details, e.g. connection of cartridges and battery parts
    • A24F40/49Child proofing

Definitions

  • the present invention relates to the field of electronic cigarette technology, and more particularly to an electronic cigarette battery, an electronic cigarette, and a control method thereof.
  • e-cigarette has become a relatively mature alternative to smoking on the market. It supplies power to the heating element through the battery, so that the heating element heats the smoke liquid under electric driving to generate smoke, thereby enabling the user to obtain a smoking experience.
  • the existing electronic cigarettes generally perform on/off, work mode switching, output voltage/power adjustment, and operating temperature adjustment through mechanical buttons disposed at the battery end, and the mechanical buttons are prone to annoying "click" sounds during use. Moreover, after long-term use, the keys are prone to failure.
  • the mechanical buttons of the existing electronic cigarettes have a single function, and multiple mechanical buttons are required to cooperate to realize various functions. The existing electronic cigarettes have the above disadvantages, which makes the user experience poor.
  • the object of the present invention is to provide an electronic cigarette battery, an electronic cigarette and a control method thereof, which can realize various functions, and solve the problem of sound and button failure caused by using a mechanical button, thereby improving the user experience.
  • the solution adopted by the present invention is:
  • An electronic cigarette battery comprising:
  • a pressure sensing module configured to convert pressure information of the received user into sensor information
  • an information detecting module configured to detect the sensor information
  • an information storage module configured to store a preset value of the sensor information
  • a control module The sensor information and the sensor information The preset values are compared, and the working state of the atomizer is controlled according to the comparison result.
  • the sensor information is at least one of a sense resistance value of the sensor, a duration of pressure applied by the user, and a number of times the user applies pressure.
  • the sensor information is a sensing resistance value of the sensor
  • the information storage module stores a preset value of the at least one sensor information
  • the preset value of the at least one sensor information is a preset resistance value
  • the sensor information is a sensing resistance value of the sensor and a duration of a pressure applied by the user
  • the information storage module stores a preset value of the at least one set of sensor information, and the preset value of the at least one set of sensor information The preset resistance value and the preset duration.
  • the information storage module pre-stores a preset value of the sensor information, the preset value of the sensor information is a first preset resistance value, and the control module compares the sensing resistance value with the first Comparing the preset resistance value, when the sensing resistance value is ⁇ the first preset resistance value, controlling the atomizer to enter the first working state; when the sensing resistance value is ⁇ the first preset resistance value, controlling The atomizer enters the second working state.
  • the information storage module pre-stores a preset value of four sensor information, where the preset value of the sensor information is a second preset resistance value, a third preset resistance value, and a fourth preset.
  • the resistance value and the fifth predetermined resistance value, the second predetermined resistance value ⁇ the third predetermined resistance value ⁇ the fourth predetermined resistance value ⁇ the fifth predetermined resistance value, the control module will The sense resistor value is compared with the second preset resistor value, the third preset resistor value, the fourth preset resistor value, and the fifth preset resistor value, respectively, when the second preset resistor value ⁇ the When the sensing resistance value ⁇ the third preset resistance value, the atomizer is controlled to enter the third working state; when the fourth predetermined resistance value ⁇ the sensing resistance value ⁇ the fifth predetermined resistance value, the atomization is controlled The device enters the fourth working state; otherwise, the current working state of the atomizer is maintained.
  • the information storage module pre-stores preset values of two sensor information, and the preset value of the sensor information is a sixth preset resistance value and a seventh preset resistance value, and the sixth preset The resistance value ⁇ the seventh preset resistance value, the control module compares the sensing resistance value with the sixth predetermined resistance value and the seventh predetermined resistance value respectively, when 0 ⁇ the sensing resistance value ⁇
  • the atomizer is controlled to enter the fifth working state; when the sixth preset resistance value ⁇ the sensing resistance value ⁇ the seventh preset resistance value, the atomizer is controlled to enter the sixth Working state; when the sensing resistance value > the seventh predetermined resistance value, controlling the atomizer to enter the seventh work status.
  • the information storage module pre-stores a preset value of a set of sensor information, where the preset value of the set of sensor information is a first preset resistance value and a preset duration, and the control module Comparing the sensing resistance value with a first preset resistance value, comparing a duration of the user-applied pressure with the preset duration, when the sensing resistance value is ⁇ a first predetermined resistance value, and the user applies
  • the duration of the pressure is ⁇ the preset duration
  • the atomizer is controlled to enter the second working state; otherwise, the atomizer is controlled to enter the first working state.
  • the pressure sensing module comprises at least one pressure sensor.
  • the electronic cigarette battery further includes: an information processing module for amplifying the sensor information and converting into machine readable information; the control module, configured to: the amplified and converted sensor The information is compared with a preset value of the sensor information, and the working state of the atomizer is controlled according to the comparison result.
  • an information processing module for amplifying the sensor information and converting into machine readable information
  • the control module configured to: the amplified and converted sensor The information is compared with a preset value of the sensor information, and the working state of the atomizer is controlled according to the comparison result.
  • the atomizer by comparing the sensor information with a preset value of the sensor information, and controlling the working state of the atomizer according to the comparison result, starting, stopping, switching the working mode, adjusting the output voltage, and adjusting One, two or more combinations of output power, alarm, and regulated operating temperature.
  • An electronic cigarette includes an atomizer, and the electronic cigarette further includes any of the above-mentioned electronic cigarette batteries.
  • a method for controlling an electronic cigarette includes a pressure sensing module, an information detecting module, an information storage module, and a control module, the control method comprising the steps of: the pressure sensing module receives the pressure information of the user, and converts the same The sensor information is detected by the information detecting module, and is fed back to the control module; and the control module reads the preset value of the sensor information from the information storage module, and compares the sensor information with the preset value of the sensor information. According to the comparison result, the working state of the atomizer is controlled.
  • the sensor information is at least one of a sense resistance value of the sensor, a duration of pressure applied by the user, and a number of times the user applies pressure.
  • the sensor information is a sensing resistance value of the sensor
  • the information storage module stores a preset value of the at least one sensor information
  • the preset value of the at least one sensor information is a preset resistance value
  • the sensor information is a sensing resistance value of the sensor and a duration of pressure applied by the user
  • the information storage module stores a preset value of the at least one set of sensor information.
  • the preset value of the at least one set of sensor information is a preset resistance value and a preset duration.
  • the information storage module pre-stores a preset value of the sensor information, the preset value of the sensor information is a first preset resistance value, and the control module compares the sensing resistance value with the first Comparing the preset resistance values, when the sensing resistance value ⁇ the first preset resistance value, controlling the atomizer to enter the first working state; when the sensing resistance value is ⁇ the second preset resistance value, controlling The atomizer enters the second working state.
  • the information storage module pre-stores a preset value of four sensor information, where the preset value of the sensor information is a second preset resistance value, a third preset resistance value, and a fourth preset.
  • the resistance value and the fifth predetermined resistance value, the second predetermined resistance value ⁇ the third predetermined resistance value ⁇ the fourth predetermined resistance value ⁇ the fifth predetermined resistance value, the control module will The sense resistor value is compared with the second preset resistor value, the third preset resistor value, the fourth preset resistor value, and the fifth preset resistor value, respectively, when the second preset resistor value ⁇ the When the sensing resistance value ⁇ the third preset resistance value, the atomizer is controlled to enter the third working state; when the fourth predetermined resistance value ⁇ the sensing resistance value ⁇ the fifth predetermined resistance value, the atomization is controlled The device enters a fourth working state; when the sensing resistance value is ⁇ the second predetermined resistance value or the third predetermined resistance value ⁇ the sensing resistance value ⁇ the
  • the information storage module pre-stores preset values of two sensor information, and the preset value of the sensor information is a sixth preset resistance value and a seventh preset resistance value, and the sixth preset The resistance value ⁇ the seventh preset resistance value, the control module compares the sensing resistance value with the sixth predetermined resistance value and the seventh predetermined resistance value respectively, when 0 ⁇ the sensing resistance value ⁇
  • the atomizer is controlled to enter the fifth working state; when the sixth preset resistance value ⁇ the sensing resistance value ⁇ the seventh preset resistance value, the atomizer is controlled to enter the sixth The working state; when the sensing resistance value > the seventh predetermined resistance value, the atomizer is controlled to enter the seventh working state.
  • the information storage module stores a preset value of a set of sensor information, where the preset value of the set of sensor information is a first preset resistance value and a preset duration, and the control module The sensing resistance value is compared with a first preset resistance value, and when the sensing resistance value is ⁇ the first predetermined resistance value, the control module compares the duration of the user-applied pressure with the preset duration When the sensing resistance value is ⁇ first predetermined resistance value, the control The module controls the atomizer to enter the first working state.
  • the step of comparing, by the control module, the duration of the pressure applied by the user with the preset duration further comprises: when the duration of the pressure applied by the user is ⁇ the preset duration, The control module controls the atomizer to enter a second working state; when the duration of the user applying pressure ⁇ the predetermined duration, the control module controls the atomizer to enter the first working state.
  • the electronic cigarette further comprises an information processing module, the information processing module amplifies the sensor information and converts into machine readable information, and the control module compares the amplified and converted sensor information with The preset values of the sensor information are compared, and the working state of the atomizer is controlled according to the comparison result.
  • the information processing module amplifies the sensor information and converts into machine readable information
  • the control module compares the amplified and converted sensor information with The preset values of the sensor information are compared, and the working state of the atomizer is controlled according to the comparison result.
  • the atomizer by comparing the sensor information with a preset value of the sensor information, and controlling the working state of the atomizer according to the comparison result, starting, stopping, switching the working mode, adjusting the output voltage, and adjusting One, two or more combinations of output power, alarm, and regulated operating temperature.
  • An electronic cigarette includes an electronic cigarette battery and an atomizer, and the electronic cigarette is used to perform any of the above control methods.
  • the pressure information of the received user is converted into sensor information by the pressure sensing module, and after detecting the sensor information, the information detecting module delivers the sensor information to the control module, and the control module reads the sensor information from the information storage module. Set the value, then compare it with the sensor information sent from the information detection module, and control the working state of the atomizer according to the comparison result, for example, control the atomizer to start working or stop working or other working state. Therefore, with the solution of the present invention, various functions can be realized, and the problem of sound and key failure caused by using a mechanical button is solved, and the user experience is improved.
  • FIG. 1 is a schematic structural view of an electronic cigarette proposed by the present invention
  • FIG. 2 is a schematic view showing another structure of the electronic cigarette proposed by the present invention.
  • FIG. 3 is a flow chart showing a control method of the electronic cigarette proposed by the present invention.
  • FIG. 5 is another flow chart showing a control method of the electronic cigarette proposed by the present invention.
  • Fig. 6 is another flow chart showing the control method of the electronic cigarette proposed by the present invention.
  • an electronic cigarette battery 1 includes a pressure sensing module 11 , an information detecting module 12 , an information storage module 13 , a control module 14 , and a battery module 15 .
  • the pressure sensing module 11 includes at least one pressure sensor 111 for converting pressure information of the received user into sensor information, an information detecting module 12 for detecting the sensor information, and an information storage module 13 for storing The preset value of the sensor information; the preset value of the sensor information may be preset before the electronic cigarette is operated, or may be set according to actual needs after the electronic cigarette is operated; the control module 14 is configured to use the sensor information and the The preset values of the sensor information are compared, and the working state of the atomizer 17 is controlled according to the comparison result; the battery module 15 is used to supply power to each module.
  • the working state of the atomizer 17 controlled by comparing the sensor information with the preset value of the sensor information and starting according to the comparison result is starting work, stopping work, switching the working mode, adjusting the output voltage, and adjusting At least one of two types or two or more of output power, alarm, and regulated operating temperature.
  • the electronic cigarette battery 1 further includes an information processing module 18.
  • the information processing module 18 is configured to amplify the sensor information and convert the information into machine readable information
  • the control module 14 is configured to: the amplified and converted sensor information and the sensor information
  • the preset values are compared, and the operating state of the atomizer 17 is controlled based on the comparison result. This allows the weak sensing information of the pressure sensing module 11 to be used to control the operating state of the atomizer 17.
  • the electronic cigarette battery 1 further includes a display module 16.
  • the display module 16 is configured to display an operating state, an operating parameter, and the like of the atomizer 17.
  • An electronic cigarette 2 includes the above-mentioned electronic cigarette battery 1 and an atomizer 17 electrically connected to the electronic cigarette battery 1, and the atomizer 17 is used for atomizing the aerosol-forming substrate to form an aerosol for the user to smoke.
  • the pressure information of the received user is converted into sensor information by the pressure sensing module 11.
  • the information detecting module 12 passes the sensor information to the control module 14, and the control module 14 is from the information storage module 13.
  • Read presets for sensor information The value is then compared with the sensor information transmitted from the information detecting module 12, and the operating state of the atomizer 17 is controlled based on the comparison result, for example, controlling the atomizer 17 to start or stop working or other operating state. Therefore, with the solution of the present invention, various functions can be realized, and the problem of sound and key failure caused by using a mechanical button is solved, and the user experience is improved.
  • the invention also discloses a control method of the above electronic cigarette 2, comprising the steps of: the pressure sensing module 11 receives the pressure information of the user and converts it into sensor information; the information detecting module 12 detects the sensor information and feeds back the information to the sensor The control module 14; and the control module 14 reads the preset value of the sensor information from the information storage module 13, compares the sensor information with a preset value of the sensor information, and controls the working state of the atomizer 17 according to the comparison result. .
  • the sensor information is at least one of a sense resistance value of the sensor, a duration of pressure applied by the user, and a number of times the user applies pressure.
  • the sensor information is a sensing resistance value of the sensor; a preset value of the sensor information is pre-stored in the information storage module 13; the preset value of the sensor information is a first preset resistance.
  • the information detecting module 12 detects the sensing resistance value of the pressure sensing module 11; the control module 14 compares the sensing resistance value with a first preset resistance value, when the sensing resistance value is ⁇ first preset resistance value
  • the control module 14 controls the atomizer 17 to enter the first working state; when the sensing resistance value ⁇ the first predetermined resistance value, the atomizer 17 is controlled to enter the second working state.
  • control method is used to control the on/off of the atomizer 17, the first preset resistance value is R s , and the first working state is that the atomizer 17 stops working, the first The second working state is that the atomizer 17 starts to work.
  • the control method of the electronic cigarette is as follows:
  • step 201 after the user applies a certain pressure to the pressure sensing module 11, the pressure sensing module 11 generates sensing information according to the pressure information, and the sensing information includes the sensing resistance value R.
  • step 202 the information detecting module 12 detects the pressure transmission.
  • the sensing information of the sensing module 11 is performed in step 203 when the sensing resistance value R is detected; in step 203, the information processing module 18 amplifies the detected signal of the sensing resistance value R and converts it into a machine readable language.
  • the induction resistance value R that can be recognized by the control module 14 is obtained, wherein the process of amplifying the signal and converting the signal is an existing method, and therefore is not further described herein; then, step 204 is performed, in step 204, the control module 14 receives the information from the information.
  • the storage module 13 obtains a preset resistance value R s and compares R s with the sense resistor value R.
  • step 205 is performed, and the control module 14 controls the atomizer 17 to stop working.
  • step 206 In order to shut down the atomizer 17, when R ⁇ R s , step 206 is performed, and the control module 14 controls the atomizer 17 to start working, which can also be understood as turning the atomizer 17 on.
  • this embodiment can also be performed after the processing of the information processing module 18 is omitted.
  • the control module 14 compares the preset resistance value R s with the sensing resistance value R, and then controls the flow of the working state of the atomizer 17 according to the comparison result.
  • the specific application of the above FIG. 3 is not This constitutes a limitation of the invention.
  • the sensor information is a sensing resistance value of the sensor; a preset value of four sensor information is pre-stored in the information storage module 13; the preset value of the sensor information is a second pre- a resistor value, a third preset resistor value, a fourth preset resistor value, and a fifth preset resistor value, and a second preset resistor value ⁇ a third preset resistor value ⁇ fourth preset
  • the information detecting module 12 detects the sensing resistance value of the pressure sensing module 11; the control module 14 compares the sensing resistance value with the second preset resistance value, and the third preset
  • the resistance value, the fourth predetermined resistance value, and the fifth predetermined resistance value are respectively compared, and when the second predetermined resistance value ⁇ the sensing resistance value ⁇ the third predetermined resistance value, the atomizer is controlled 17 enters a third working state; when the fourth preset resistance value ⁇ the sensing resistance value ⁇ the fifth predetermined resistance value, the
  • the control method is used to control the switching of the operating mode of the atomizer 17 after the atomizer 17 is operated.
  • the third operational state represents an operational mode of the nebulizer 17, the fourth operational state representing another operational mode of the nebulizer 17, the current operational state representing the current operational mode of the nebulizer 17.
  • the working mode is one of a constant temperature mode, a constant voltage mode, a constant power mode, a temperature control mode, a pressure control mode, and a control power mode.
  • the second preset resistance value is R 2
  • the third preset resistance value is R 3
  • the fourth preset resistance value is R 4
  • the fifth predetermined resistance value is R 5 , R 2 ⁇ R 3 ⁇ R 4 ⁇ R 5
  • the third working state is a pressure control mode
  • the fourth working state is a temperature control mode
  • step 401 after the user applies a certain pressure to the pressure sensing module 11, the pressure sensing module 11 generates sensing information according to the pressure information, and the sensing information includes the sensing resistance value R.
  • the information detecting module 12 detects the pressure transmission. Sensing information of the sensing module 11, when detecting the sensing resistance value R, performing step 403; in step 403, the information processing module 18 amplifies the detected signal of the sensing resistance value R and converts it into a machine readable language.
  • step 404 is performed, in which the control module 14 receives the information from the information.
  • the storage module 13 obtains preset resistance values R 2 , R 3 , R 4 , and R 5 ; and compares R 2 , R 3 , R 4 , and R 5 with the sense resistance value R, respectively, when R 2 ⁇ R ⁇
  • step 405 the control module 14 controls the atomizer 17 to switch to the pressure control mode
  • step 406 the control module 14 controls the atomizer 17 to switch to the temperature control mode
  • R ⁇ R 2 R 3 ⁇ R ⁇ R 4 or R> R 5 the control module 14 controls the atomizer 17 maintains the current mode of operation, as shown in step 407.
  • control module 14 compares the preset resistance values R 2 , R 3 , R 4 , and R 5 with the sense resistor value R, and then controls the flow of the atomizer 17 according to the comparison result.
  • FIG. 4 The specific application of FIG. 4 above does not constitute a limitation of the present invention.
  • the sensor information is a sensing resistance value and a duration of pressure applied by the user;
  • the information storage module 13 pre-stores a preset value of a set of sensor information;
  • the preset value is the first preset resistance value and the preset duration.
  • the information detecting module 12 detects the sensing resistance value of the pressure sensing module 11 and the duration of the pressure applied by the user;
  • the control module 14 compares the sensing resistance value with the first preset resistance value to apply pressure to the user.
  • the duration is compared with the preset duration, and when the sensing resistance value is ⁇ the first predetermined resistance value, and the duration of the user-applied pressure ⁇ the preset duration, the atomizer 17 is controlled to enter the second working state.
  • the atomizer 17 is controlled to enter the first working state.
  • the control method is used to control the on/off of the atomizer 17, the first preset resistance value is R s , the preset duration is t s , and the first working state The operation of the atomizer 17 is stopped, and the second working state is that the atomizer 17 starts to work.
  • the control method is shown in Figure 5:
  • step 501 when the user applies a certain pressure to the pressure sensing module 11 and continues for a period of time under the pressure, the pressure sensing module 11 generates sensing information according to the pressure information, the sensing information includes the sensing resistance value R and the user applies The duration of the pressure t; in step 502, the information detecting module 12 detects the sensing information of the pressure sensing module 11, and when the sensing resistance value R and the duration t of the user applied pressure are detected, step 503 is performed; in step 503, The information processing module 18 amplifies the detected signal of the sense resistor value R and converts the sense resistor value R and the duration t of the user applied pressure into a machine readable language to obtain the sense resistor value R and the user that the control module 14 can recognize.
  • step 504 in which the control module 14 obtains the pre-fetch from the information storage module 13.
  • step 505 The control module 14 controls the atomizer 17 is stopped, when R ⁇ R s, to step 506: the duration of the control module 14 acquires the preset duration from the information storage module 13 t s, t s of the preset and The duration t of the user's applied pressure is compared; if t ⁇ t s , then step 505 is performed, the control module 14 controls the atomizer 17 to stop working; if t ⁇ t s , then proceeds to step 507 : the control module 14 controls the atomizer 17 started working.
  • the above control method makes it necessary for the atomizer 17 to start working simultaneously to satisfy two conditions, and the control method and the electronic cigarette performing the control method have a child protection function in consideration of the intellectual limitation of the child.
  • this embodiment can also be performed after the processing of the information processing module 18 is omitted.
  • the control module 14 compares the preset resistance value R s with the sensing resistance value R, compares the preset duration t s with the duration t of the user applied pressure, and then controls the atomizer according to the comparison result.
  • the flow of the working state of 17 can be configured as needed, and the specific application of FIG. 5 above does not constitute a limitation of the present invention.
  • the sensor information is a sensing resistance value of the sensor; a preset value of two sensor information is pre-stored in the information storage module 13; the preset value of the sensor information is a sixth pre-predetermined value.
  • the resistance value and the seventh preset resistance value, and the sixth preset resistance value ⁇ the seventh preset resistance value.
  • the information detecting module 12 detects the sensing resistance value of the pressure sensing module 11; the control module 14 compares the sensing resistance value with the sixth predetermined resistance value and the seventh predetermined resistance value, respectively, when 0 ⁇
  • the sensing resistance value is ⁇ the sixth preset resistance value
  • the atomizer 17 is controlled to enter the fifth working state; when the sixth predetermined resistance value ⁇ the sensing resistance value ⁇ the seventh predetermined resistance value, the fog is controlled
  • the chemist 17 enters a sixth working state; when the sensing resistance value > the seventh predetermined resistance value, the atomizer 17 is controlled to enter a seventh working state.
  • the control method is used to control the operating parameters of the atomizer 17 after the operation mode of the atomizer 17 is switched.
  • the fifth operational state represents an operational parameter of the atomizer 17, the sixth operational state representing another operational parameter of the nebulizer 17, the seventh operational state indicating that the parameter setting is out of range, and an alarm is issued.
  • the working parameter corresponds to the working mode.
  • the operating parameter of the atomizer 17 is the operating temperature of the atomizer 17.
  • the atomizer 17 has been switched to the control power mode, the sixth preset resistance value is R L , and the seventh predetermined resistance value is R H , R L ⁇ R H , the fifth working state is to reduce power output, the sixth working state is to improve power output, and the seventh working state is an alarm, and the control method is as shown in FIG. 6 :
  • step 601 after the user applies a certain pressure to the pressure sensing module 11, the pressure sensing module 11 generates sensing information according to the pressure information, and the sensing information includes the sensing resistance value R.
  • the information detecting module 12 detects the pressure transmission.
  • the sensing information of the sensing module 11 is, when the sensing resistance value R is detected, performing step 603; in step 603, the information processing module 18 amplifies the detected signal of the sensing resistance value R and converts it into a machine readable language.
  • step 604 the control module 14 receives the information from the information
  • the storage module 13 obtains the preset resistance values R L and R H ; and compares the preset resistance values R L and R H with the sensing resistance value R respectively.
  • step 605 the control module 14 controls the battery module 15 to reduce the power output of the atomizer 17; when R L ⁇ R ⁇ R H , step 606 is performed, and the control module 14 controls the battery module 15 to increase the power output of the atomizer 17. If R>R H , then step 607 is performed, and the control module 14 controls the display module 16 to issue an alarm signal.
  • control module 14 compares the preset resistance values R L , R H with the sense resistance value R, and then controls the flow of the operation state of the atomizer 17 according to the comparison result, which can be configured as needed, specifically the above FIG. 6
  • the application does not constitute a limitation of the invention.
  • the present invention also provides an electronic cigarette 2 comprising an electronic cigarette battery 1 and an atomizer 17, wherein the electronic cigarette 2 is used to perform any of the above-described control methods of FIGS. 3 to 6.
  • the pressure information of the received user is converted into sensor information by the pressure sensing module 11, and after detecting the sensor information, the information detecting module 12 passes the sensor information to the control module 14, and the control module 14
  • the information storage module 13 reads the preset value of the sensor information, compares it with the sensor information transmitted from the information detecting module 12, and finally controls the working state of the atomizer 17 according to the comparison result, for example, controlling the atomizer 17 open Start working or stop working or other working conditions. Therefore, with the solution of the present invention, various functions can be realized, and the problem of sound and key failure caused by using a mechanical button is solved, and the user experience is improved.

Abstract

一种电子烟电池(1),包括:压力传感模块(11),用于将接收的用户的压力信息转换成传感器信息;信息检测模块(12),用于检测传感器信息;信息存储模块(13),用于存储传感器信息的预设值;以及控制模块(14),用于将传感器信息与传感器信息的预设值进行比较,并根据比较结果来控制雾化器(17)的工作状态。也提供一种包括该电子烟电池(1)的电子烟(2),还提供一种电子烟(2)的控制方法、及一种用于执行该控制方法的电子烟(2)。

Description

一种电子烟电池、电子烟及其控制方法
本申请要求于2015年12月9日提交中国专利局、申请号为201510903949.7、发明名称为“一种电子烟电池、电子烟及其控制方法”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及电子烟技术领域,更为具体地,涉及一种电子烟电池、电子烟及其控制方法。
背景技术
目前,电子烟已经成为市场上一种比较成熟的吸烟替代品,其通过电池对发热元件进行供电,使发热元件在电驱动下加热烟液产生烟雾,从而使用户获得吸烟体验。
然而,现有的电子烟一般通过设置在电池端的机械按键进行开/关机、工作模式切换、输出电压/功率调节以及工作温度调节,机械按键在使用中,容易发出恼人的“咔嗒”声,并且,长期使用后,按键易失灵。此外,现有的电子烟的机械按键实现的功能单一,需多个机械按键相互配合才能实现多种功能。现有的电子烟有以上不足,使得用户体验不佳。
发明内容
本发明的目的:提供一种电子烟电池、电子烟及其控制方法,可以实现多种功能,并且解决使用机械按键时带来的声响和按键失灵的问题,提高用户的体验。
为解决达到上述目的,本发明采用的方案是:
一种电子烟电池,包括:
压力传感模块,用于将接收的用户的压力信息转换成传感器信息;信息检测模块,用于检测所述传感器信息;信息存储模块,用于存储传感器信息的预设值;以及控制模块,用于将所述传感器信息与所述传感器信息 的预设值进行比较,并根据比较结果来控制雾化器的工作状态。
优选地,所述传感器信息是传感器的感应电阻值、用户施加压力的持续时间以及用户施加压力的次数中的至少一个。
优选地,所述传感器信息是传感器的感应电阻值,所述信息存储模块中存储有至少一个传感器信息的预设值,所述至少一个传感器信息的预设值为预设的电阻值。
优选地,所述传感器信息是传感器的感应电阻值以及用户施加压力的持续时间,所述信息存储模块中存储有至少一组传感器信息的预设值,所述至少一组传感器信息的预设值为预设的电阻值和预设的持续时间。
优选地,所述信息存储模块中预先存储有一个传感器信息的预设值,所述传感器信息的预设值是第一预设的电阻值,所述控制模块将所述感应电阻值与第一预设的电阻值比较,当所述感应电阻值<第一预设的电阻值时,控制雾化器进入第一工作状态;当所述感应电阻值≥第一预设的电阻值时,控制雾化器进入第二工作状态。
优选地,所述信息存储模块中预先存储有四个传感器信息的预设值,所述传感器信息的预设值是第二预设的电阻值、第三预设的电阻值、第四预设的电阻值及第五预设的电阻值,第二预设的电阻值<第三预设的电阻值<第四预设的电阻值<第五预设的电阻值,所述控制模块将所述感应电阻值与第二预设的电阻值、第三预设的电阻值、第四预设的电阻值及第五预设的电阻值分别比较,当第二预设的电阻值≤所述感应电阻值≤第三预设的电阻值时,控制雾化器进入第三工作状态;当第四预设的电阻值≤所述感应电阻值≤第五预设的电阻值时,控制雾化器进入第四工作状态;否则保持雾化器的当前工作状态。
优选地,所述信息存储模块中预先存储有两个传感器信息的预设值,所述传感器信息的预设值是第六预设的电阻值和第七预设的电阻值,第六预设的电阻值<第七预设的电阻值,所述控制模块将所述感应电阻值与第六预设的电阻值和第七预设的电阻值分别比较,当0<所述感应电阻值≤第六预设的电阻值时,控制雾化器进入第五工作状态;当第六预设的电阻值<所述感应电阻值≤第七预设的电阻值时,控制雾化器进入第六工作状态;当所述感应电阻值>第七预设的电阻值时,控制雾化器进入第七工作 状态。
优选地,所述信息存储模块中预先存储有一组传感器信息的预设值,所述一组传感器信息的预设值为第一预设的电阻值和预设的持续时间,所述控制模块将所述感应电阻值与第一预设的电阻值比较,将用户施加压力的持续时间与所述预设的持续时间比较,当所述感应电阻值≥第一预设的电阻值,且用户施加压力的持续时间≥所述预设的持续时间时,控制雾化器进入第二工作状态;否则,控制雾化器进入第一工作状态。
优选地,所述压力传感模块包括至少一个压力传感器。
优选地,所述电子烟电池还包括:信息处理模块,用于对所述传感器信息进行放大,并转换成机器可读信息;所述控制模块,用于将所述经放大和转换后的传感器信息与所述传感器信息的预设值进行比较,并根据比较结果来控制雾化器的工作状态。
优选地,通过将所述传感器信息与所述传感器信息的预设值进行比较,并根据比较结果来控制的雾化器的工作状态为开始工作、停止工作、切换工作模式、调节输出电压、调节输出功率、报警以及调节工作温度中的一种、两种或两种以上的结合。
一种电子烟,包括雾化器,所述电子烟还包括上述任一电子烟电池。
一种电子烟的控制方法,所述电子烟包括压力传感模块、信息检测模块、信息存储模块以及控制模块,所述控制方法包括步骤:压力传感模块接收用户的压力信息,并将其转换成传感器信息;信息检测模块检测传感器信息,并将其反馈给控制模块;以及控制模块从信息存储模块中读取传感器信息的预设值,将所述传感器信息与传感器信息的预设值进行比较,根据比较结果来控制雾化器的工作状态。
优选地,所述传感器信息是传感器的感应电阻值、用户施加压力的持续时间以及用户施加压力的次数中的至少一个。
优选地,所述传感器信息是传感器的感应电阻值,所述信息存储模块中存储有至少一个传感器信息的预设值,所述至少一个传感器信息的预设值为预设的电阻值。
优选地,所述传感器信息是传感器的感应电阻值以及用户施加压力的持续时间,所述信息存储模块中存储有至少一组传感器信息的预设值,所 述至少一组传感器信息的预设值为预设的电阻值和预设的持续时间。
优选地,所述信息存储模块中预先存储有一个传感器信息的预设值,所述传感器信息的预设值是第一预设的电阻值,所述控制模块将所述感应电阻值与第一预设的电阻值比较,当所述感应电阻值<第一预设的电阻值时,控制雾化器进入第一工作状态;当所述感应电阻值≥第二预设的电阻值时,控制雾化器进入第二工作状态。
优选地,所述信息存储模块中预先存储有四个传感器信息的预设值,所述传感器信息的预设值是第二预设的电阻值、第三预设的电阻值、第四预设的电阻值及第五预设的电阻值,第二预设的电阻值<第三预设的电阻值<第四预设的电阻值<第五预设的电阻值,所述控制模块将所述感应电阻值与第二预设的电阻值、第三预设的电阻值、第四预设的电阻值及第五预设的电阻值分别比较,当第二预设的电阻值≤所述感应电阻值≤第三预设的电阻值时,控制雾化器进入第三工作状态;当第四预设的电阻值≤所述感应电阻值≤第五预设的电阻值时,控制雾化器进入第四工作状态;当所述感应电阻值<第二预设的电阻值或第三预设的电阻值<所述感应电阻值<第四预设的电阻值或所述感应电阻值>第五预设的电阻值时,保持雾化器的当前工作状态。
优选地,所述信息存储模块中预先存储有两个传感器信息的预设值,所述传感器信息的预设值是第六预设的电阻值和第七预设的电阻值,第六预设的电阻值<第七预设的电阻值,所述控制模块将所述感应电阻值与第六预设的电阻值和第七预设的电阻值分别比较,当0<所述感应电阻值≤第六预设的电阻值时,控制雾化器进入第五工作状态;当第六预设的电阻值<所述感应电阻值≤第七预设的电阻值时,控制雾化器进入第六工作状态;当所述感应电阻值>第七预设的电阻值时,控制雾化器进入第七工作状态。
优选地,所述信息存储模块中存储有一组传感器信息的预设值,所述一组传感器信息的预设值为第一预设的电阻值和预设的持续时间,所述控制模块将所述感应电阻值与第一预设的电阻值比较,当所述感应电阻值≥第一预设的电阻值时,所述控制模块将用户施加压力的持续时间与所述预设的持续时间比较;当所述感应电阻值<第一预设的电阻值时,所述控制 模块控制雾化器进入第一工作状态。
优选地,所述的所述控制模块将用户施加压力的持续时间与所述预设的持续时间比较的步骤还包括:当所述用户施加压力的持续时间≥所述预设的持续时间时,所述控制模块控制雾化器进入第二工作状态;当所述用户施加压力的持续时间<所述预设的持续时间时,所述控制模块控制雾化器进入第一工作状态。
优选地,所述电子烟还包括信息处理模块,所述信息处理模块对所述传感器信息进行放大,并转换成机器可读信息,所述控制模块将所述经放大和转换后的传感器信息与所述传感器信息的预设值进行比较,并根据比较结果来控制雾化器的工作状态。
优选地,通过将所述传感器信息与所述传感器信息的预设值进行比较,并根据比较结果来控制的雾化器的工作状态为开始工作、停止工作、切换工作模式、调节输出电压、调节输出功率、报警以及调节工作温度中的一种、两种或两种以上的结合。
一种电子烟,包括电子烟电池及雾化器,所述电子烟用于执行上述任一控制方法。
利用上述方案,通过压力传感模块将接收的用户的压力信息转换成传感器信息,信息检测模块检测到传感器信息后,将传感器信息交给控制模块,控制模块从信息存储模块读取传感器信息的预设值,然后将其与信息检测模块传来的传感器信息进行比较,根据比较结果来控制雾化器的工作状态,例如,控制雾化器开始工作或停止工作或者其他工作状态。因此,通过本发明方案,可以实现多种功能,并且解决使用机械按键时带来的声响和按键失灵的问题,提高用户的体验。
为了实现上述以及相关目的,本发明的一个或多个方面包括后面将详细说明并在权利要求中特别指出的特征。下面的说明以及附图详细说明了本发明的某些示例性方面。然而,这些方面指示的仅仅是可使用本发明的原理的各种方式中的一些方式。此外,本发明旨在包括所有这些方面以及它们的等同物。
附图说明
根据下述参照附图进行的详细描述,本发明的上述和其他目的、特征和优点将变得更加显而易见。在附图中:
图1示出了本发明提出的电子烟的结构示意图;
图2示出了本发明提出的电子烟的另一结构示意图;
图3示出了本发明提出的电子烟的控制方法的一个流程图;
图4示出了本发明提出的电子烟的控制方法的另一个流程图;
图5示出了本发明提出的电子烟的控制方法的另一个流程图;
图6示出了本发明提出的电子烟的控制方法的另一个流程图。
在所有附图中相同的标号指示相似或相应的特征或功能。
零部件-标号对应表如下:
零部件 标号
压力传感模块 11
信息检测模块 12
信息存储模块 13
控制模块 14
电池模块 15
显示模块 16
雾化器 17
信息处理模块 18
电子烟 2
电子烟电池 1
压力传感器 111
具体实施方式
下面描述本公开的各个方面。应该明白的是,本文的教导可以以多种多样形式具体体现,并且在本文中公开的任何具体结构、功能或两者仅仅是代表性的。基于本文的教导,本领域技术人员应该明白的是,本文所公开的一个方面可以独立于任何其它方面实现,并且这些方面中的两个或多个方面可以按照各种方式组合。例如,可以使用本文所阐述的任何数目的方面,实现装置或实践方法。另外,可以使用其它结构、功能、或除了本文所阐述的一个或多个方面之外或不是本文所阐述的一个或多个方面的 结构和功能,实现这种装置或实践这种方法。此外,本文所描述的任何方面可以包括权利要求的至少一个元素。
下面将参照附图描述本发明的各个实施例。
首先请参考图1,一种电子烟电池1,包括:压力传感模块11、信息检测模块12、信息存储模块13、控制模块14以及电池模块15。其中,压力传感模块11,包括至少一个压力传感器111,用于将接收的用户的压力信息转换成传感器信息;信息检测模块12,用于检测所述传感器信息;信息存储模块13,用于存储传感器信息的预设值;传感器信息的预设值可以在电子烟运行前预先设置,也可以在电子烟运行后,根据实际需要进行设置;控制模块14,用于将所述传感器信息与所述传感器信息的预设值进行比较,并根据比较结果来控制雾化器17的工作状态;电池模块15,用于给各模块供电。
其中,通过将所述传感器信息与所述传感器信息的预设值进行比较,并根据比较结果来控制的雾化器17的工作状态为开始工作、停止工作、切换工作模式、调节输出电压、调节输出功率、报警以及调节工作温度中的至少一种、两种或两种以上的结合。
请进一步参考图2,所述电子烟电池1还包括信息处理模块18。所述信息处理模块18,用于对所述传感器信息进行放大,并转换成机器可读信息;所述控制模块14,用于将所述经放大和转换后的传感器信息与所述传感器信息的预设值进行比较,并根据比较结果来控制雾化器17的工作状态。这样可以使得压力传感模块11微弱的感应信息也能被用于控制雾化器17的工作状态。
进一步地,所述电子烟电池1还包括显示模块16。所述显示模块16,用于显示雾化器17的工作状态、工作参数等。
一种电子烟2,包括上述电子烟电池1以及与电子烟电池1电性连接的雾化器17,所述雾化器17用于雾化气溶胶形成基质形成气溶胶供用户吸食。
利用上述方案,通过压力传感模块11将接收的用户的压力信息转换成传感器信息,信息检测模块12检测到传感器信息后,将传感器信息交给控制模块14,控制模块14从信息存储模块13中读取传感器信息的预设 值,然后将其与信息检测模块12传来的传感器信息进行比较,根据比较结果来控制雾化器17的工作状态,例如,控制雾化器17开始工作或停止工作或者其他工作状态。因此,通过本发明方案,可以实现多种功能,并且解决使用机械按键时带来的声响和按键失灵的问题,提高用户的体验。
本发明还公开了一种上述电子烟2的控制方法,包括步骤:压力传感模块11接收用户的压力信息,并将其转换成传感器信息;信息检测模块12检测传感器信息,并将其反馈给控制模块14;以及控制模块14从信息存储模块13中读取传感器信息的预设值,将所述传感器信息与传感器信息的预设值进行比较,根据比较结果来控制雾化器17的工作状态。
其中,所述传感器信息是传感器的感应电阻值、用户施加压力的持续时间以及用户施加压力的次数中的至少一个。
在一个优选的实施例中,所述传感器信息为传感器的感应电阻值;在信息存储模块13中预先存储有一个传感器信息的预设值;所述传感器信息的预设值为第一预设的电阻值。信息检测模块12检测压力传感模块11的感应电阻值;所述控制模块14将所述感应电阻值与第一预设的电阻值比较,当所述感应电阻值<第一预设的电阻值时,控制模块14控制雾化器17进入第一工作状态;当所述感应电阻值≥第一预设的电阻值时,控制雾化器17进入第二工作状态。本实施例中,该控制方法用于控制雾化器17的开/关机,所述第一预设的电阻值为Rs,所述第一工作状态为雾化器17停止工作,所述第二工作状态为雾化器17开始工作。如图3所示,本实施例中,电子烟的控制方法如下:
步骤201中,当用户对压力传感模块11施加一定压力后,压力传感模块11将根据压力信息产生感应信息,该感应信息包括感应电阻值R;步骤202中,信息检测模块12检测压力传感模块11的感应信息,当检测到感应电阻值R时,进行步骤203;在步骤203中,信息处理模块18将检测到的感应电阻值R的信号进行放大并将其转换成机器可读语言,得到控制模块14可以识别的感应电阻值R,其中,放大信号及转换信号的过程是现有的方法,因此本文不作进一步的阐述;然后进行步骤204,在步骤204中,控制模块14从信息存储模块13中获取预设的电阻值Rs,并将Rs与感应电阻值R进行比较,当R<Rs时,进行步骤205,控制模块14控制雾化 器17停止工作,也可理解为让雾化器17关机,当R≥Rs时,进行步骤206,控制模块14控制雾化器17开始工作,也可理解为让雾化器17开机。
可以理解的是,在省略信息处理模块18的处理后,本具体实施例也可进行。另外,控制模块14将预设的电阻值Rs与感应电阻值R进行比较,然后根据比较结果来控制雾化器17的工作状态的流程可以根据需要进行配置,上述图3的具体应用并不构成对本发明的限制。
在另一个优选的实施例中,所述传感器信息为传感器的感应电阻值;在信息存储模块13中预先存储有四个传感器信息的预设值;所述传感器信息的预设值为第二预设的电阻值、第三预设的电阻值、第四预设的电阻值及第五预设的电阻值,第二预设的电阻值<第三预设的电阻值<第四预设的电阻值<第五预设的电阻值,信息检测模块12检测压力传感模块11的感应电阻值;所述控制模块14将所述感应电阻值与第二预设的电阻值、第三预设的电阻值、第四预设的电阻值及第五预设的电阻值分别比较,当第二预设的电阻值≤所述感应电阻值≤第三预设的电阻值时,控制雾化器17进入第三工作状态;当第四预设的电阻值≤所述感应电阻值≤第五预设的电阻值时,控制雾化器17进入第四工作状态;否则保持雾化器17的当前工作状态。本实施例中,该控制方法用于在雾化器17工作后,控制雾化器17的工作模式的切换。所述第三工作状态表示雾化器17的一种工作模式,所述第四工作状态表示雾化器17的另一种工作模式,所述当前工作状态表示雾化器17的当前工作模式。所述工作模式是恒温模式、恒压模式、恒功率模式、控温模式、控压模式、控功率模式中的一种。作为一个具体的应用,本实施例中,所述第二预设的电阻值为R2,所述第三预设的电阻值为R3,所述第四预设的电阻值为R4,所述第五预设的电阻值为R5,R2<R3<R4<R5,所述第三工作状态为控压模式,所述第四工作状态为控温模式,所述控制方法如图4所示:
步骤401中,当用户对压力传感模块11施加一定压力后,压力传感模块11将根据压力信息产生感应信息,该感应信息包括感应电阻值R;步骤402中,信息检测模块12检测压力传感模块11的感应信息,当检测到感应电阻值R时,进行步骤403;在步骤403中,信息处理模块18将检测到的感应电阻值R的信号进行放大并将其转换成机器可读语言,得到控制 模块14可以识别的感应电阻值R,其中,放大信号及转换信号的过程是现有的方法,因此本文不作进一步的阐述;然后进行步骤404,在步骤404中,控制模块14从信息存储模块13中获取预设的电阻值R2、R3、R4、R5;并将R2、R3、R4、R5分别与感应电阻值R进行比较,当R2≤R≤R3时,进行步骤405,控制模块14控制雾化器17切换至控压模式,当R4≤R≤R5时,进行步骤406,控制模块14控制雾化器17切换至控温模式;若R<R2或R3<R<R4或R>R5时,则控制模块14控制雾化器17保持当前工作模式,如步骤407所示。
可以理解的是,在省略信息处理模块18的处理后,本具体实施例也可进行。另外,控制模块14将预设的电阻值R2、R3、R4、R5与感应电阻值R进行比较,然后根据比较结果来控制雾化器17的工作状态的流程可以根据需要进行配置,上述图4的具体应用并不构成对本发明的限制。
在另一个优选的实施例中,所述传感器信息为感应电阻值以及用户施加压力的持续时间;所述信息存储模块13中预先存储有一组传感器信息的预设值;所述一组传感器信息的预设值为第一预设的电阻值和预设的持续时间。所述信息检测模块12检测压力传感模块11的感应电阻值以及用户施加压力的持续时间;所述控制模块14将所述感应电阻值与第一预设的电阻值比较,将用户施加压力的持续时间与预设的持续时间比较,当所述感应电阻值≥第一预设的电阻值,且用户施加压力的持续时间≥预设的持续时间时,控制雾化器17进入第二工作状态;否则,控制雾化器17进入第一工作状态。本实施例中,该控制方法用于控制雾化器17的开/关机,所述第一预设的电阻值为Rs,所述预设的持续时间为ts,所述第一工作状态为雾化器17停止工作,所述第二工作状态为雾化器17开始工作。所述控制方法如图5所示:
步骤501中,当用户对压力传感模块11施加一定压力,并在该压力下持续一段时间后,压力传感模块11将根据压力信息产生感应信息,该感应信息包括感应电阻值R和用户施加压力的持续时间t;步骤502中,信息检测模块12检测压力传感模块11的感应信息,当检测到感应电阻值R和用户施加压力的持续时间t时,进行步骤503;在步骤503中,信息处理模块18将检测到的感应电阻值R的信号进行放大并将感应电阻值R 和用户施加压力的持续时间t转换成机器可读语言,得到控制模块14可以识别的感应电阻值R和用户施加压力的持续时间t,其中,放大信号及转换信号的过程是现有的方法,因此本文不作进一步的阐述;然后进行步骤504,在步骤504中,控制模块14从信息存储模块13中获取预设的电阻值Rs,并将预设的电阻值Rs与感应电阻值R进行比较,当R<Rs时,进行步骤505,控制模块14控制雾化器17停止工作,当R≥Rs时,进行步骤506:控制模块14从信息存储模块13中获取预设的持续时间ts,并将预设的持续时间ts与用户施加压力的持续时间t进行比较;若t<ts,则进行步骤505,控制模块14控制雾化器17停止工作;若t≥ts,则进行步骤507:控制模块14控制雾化器17开始工作。
上述控制方法使得雾化器17开始工作需要同时满足两个条件,考虑到儿童的智力限制,因此,该控制方法以及执行该控制方法的电子烟具有儿童防护功能。
可以理解的是,在省略信息处理模块18的处理后,本具体实施例也可进行。另外,控制模块14将预设的电阻值Rs与感应电阻值R进行比较,并将预设的持续时间ts与用户施加压力的持续时间t进行比较,然后根据比较结果来控制雾化器17的工作状态的流程可以根据需要进行配置,上述图5的具体应用并不构成对本发明的限制。
在另一个优选的实施例中,所述传感器信息为传感器的感应电阻值;在信息存储模块13中预先存储有两个传感器信息的预设值;所述传感器信息的预设值为第六预设的电阻值和第七预设的电阻值,第六预设的电阻值<第七预设的电阻值。信息检测模块12检测压力传感模块11的感应电阻值;所述控制模块14将所述感应电阻值与第六预设的电阻值和第七预设的电阻值分别比较,当0<所述感应电阻值≤第六预设的电阻值时,控制雾化器17进入第五工作状态;当第六预设的电阻值<所述感应电阻值≤第七预设的电阻值时,控制雾化器17进入第六工作状态;当所述感应电阻值>第七预设的电阻值时,控制雾化器17进入第七工作状态。本实施例中,该控制方法用于在雾化器17工作模式切换后,控制雾化器17的工作参数。所述第五工作状态表示雾化器17的一种工作参数,所述第六工作状态表示雾化器17的另一种工作参数,所述第七工作状态表示参数 设置超范围,发出警报。所述工作参数与工作模式相对应,如,切换至控温模式后,雾化器17的工作参数为雾化器17的工作温度。作为一个具体的应用,本实施例中,雾化器17已切换至控功率模式,所述第六预设的电阻值为RL,所述第七预设的电阻值为RH,RL<RH,所述第五工作状态为降低功率输出,所述第六工作状态为提高功率输出,所述第七工作状态为警报,所述控制方法如图6所示:
步骤601中,当用户对压力传感模块11施加一定压力后,压力传感模块11将根据压力信息产生感应信息,该感应信息包括感应电阻值R;步骤602中,信息检测模块12检测压力传感模块11的感应信息,当检测到感应电阻值R时,进行步骤603;在步骤603中,信息处理模块18将检测到的感应电阻值R的信号进行放大并将其转换成机器可读语言,得到控制模块14可以识别的感应电阻值R,其中,放大信号及转换信号的过程是现有的方法,因此本文不作进一步的阐述;然后进行步骤604;在步骤604中,控制模块14从信息存储模块13中获取预设的电阻值RL、RH;并将预设的电阻值RL、RH分别与感应电阻值R进行比较,当0<R≤RL时,进行步骤605,控制模块14控制电池模块15对雾化器17降低功率输出;当RL<R≤RH时,进行步骤606,控制模块14控制电池模块15对雾化器17提高功率输出;若R>RH时,则进行步骤607,控制模块14控制显示模块16发出报警信号。
可以理解的是,在省略信息处理模块18的处理后,本具体实施例也可进行。另外,控制模块14将预设的电阻值RL、RH与感应电阻值R进行比较,然后根据比较结果来控制雾化器17的工作状态的流程可以根据需要进行配置,上述图6的具体应用并不构成对本发明的限制。
本发明还提供一种电子烟2,包括电子烟电池1和雾化器17,其中,所述电子烟2用于执行上述图3至图6的任一控制方法。
综上所述,利用上述方案,通过压力传感模块11将接收的用户的压力信息转换成传感器信息,信息检测模块12检测到传感器信息后,将传感器信息交给控制模块14,控制模块14从信息存储模块13中读取传感器信息的预设值,然后将其与信息检测模块12传来的传感器信息进行比较,最后根据比较结果来控制雾化器17的工作状态,例如,控制雾化器17开 始工作或停止工作或者其他工作状态。因此,通过本发明方案,可以实现多种功能,并且解决使用机械按键时带来的声响和按键失灵的问题,提高用户的体验。
本领域技术人员还将明白的是,结合这里的公开所描述的各种示例性逻辑块、模块、电路和算法步骤可以被实现为电子硬件、计算机软件或两者的组合。为了清楚地说明硬件和软件的这种可互换性,已经就各种示意性组件、方块、模块、电路和步骤的功能对其进行了一般性的描述。这种功能是被实现为软件还是被实现为硬件取决于具体应用以及施加给整个系统的设计约束。本领域技术人员可以针对每种具体应用以各种方式来实现所述的功能,但是这种实现决定不应被解释为导致脱离本发明的范围。
尽管前面公开的内容示出了本发明的示例性实施例,但是应当注意,在不背离权利要求限定的本发明的范围的前提下,可以进行多种改变和修改。根据这里描述的发明实施例的方法权利要求的功能、步骤和/或动作不需以任何特定顺序执行。此外,尽管本发明的元素可以以个体形式描述或要求,但是也可以设想多个,除非明确限制为单数。
虽然如上参照图描述了根据本发明的各个实施例进行了描述,但是本领域技术人员应当理解,对上述本发明所提出的各个实施例,还可以在不脱离本发明内容的基础上做出各种改进。因此,本发明的保护范围应当由所附的权利要求书的内容确定。

Claims (24)

  1. 一种电子烟电池,其特征在于,包括:
    压力传感模块,用于将接收的用户的压力信息转换成传感器信息;
    信息检测模块,用于检测所述传感器信息;
    信息存储模块,用于存储传感器信息的预设值;以及
    控制模块,用于将所述传感器信息与所述传感器信息的预设值进行比较,并根据比较结果来控制雾化器的工作状态。
  2. 根据权利要求1所述的电子烟电池,其特征在于,所述传感器信息是传感器的感应电阻值、用户施加压力的持续时间以及用户施加压力的次数中的至少一个。
  3. 根据权利要求2所述的电子烟电池,其特征在于,所述传感器信息是传感器的感应电阻值,所述信息存储模块中存储有至少一个传感器信息的预设值,所述至少一个传感器信息的预设值为预设的电阻值。
  4. 根据权利要求2所述的电子烟电池,其特征在于,所述传感器信息是传感器的感应电阻值以及用户施加压力的持续时间,所述信息存储模块中存储有至少一组传感器信息的预设值,所述至少一组传感器信息的预设值为预设的电阻值和预设的持续时间。
  5. 根据权利要求3所述的电子烟电池,其特征在于,所述信息存储模块中预先存储有一个传感器信息的预设值,所述传感器信息的预设值是第一预设的电阻值,所述控制模块将所述感应电阻值与第一预设的电阻值比较,当所述感应电阻值<第一预设的电阻值时,控制雾化器进入第一工作状态;当所述感应电阻值≥第一预设的电阻值时,控制雾化器进入第二工作状态。
  6. 根据权利要求3所述的电子烟电池,其特征在于,所述信息存储模块中预先存储有四个传感器信息的预设值,所述传感器信息的预设值是第二预设的电阻值、第三预设的电阻值、第四预设的电阻值及第五预设的电阻值,第二预设的电阻值<第三预设的电阻值<第四预设的电阻值<第五预设的电阻值,所述控制模块将所述感应电阻值与第二预设的电阻值、第三预设的电阻值、第四预设的电阻值及第五预设的电阻值分别比较,当第二预设的电阻值≤所述感应电阻值≤第三预设的电阻值时,控制雾化器 进入第三工作状态;当第四预设的电阻值≤所述感应电阻值≤第五预设的电阻值时,控制雾化器进入第四工作状态;否则保持雾化器的当前工作状态。
  7. 根据权利要求3所述的电子烟电池,其特征在于,所述信息存储模块中预先存储有两个传感器信息的预设值,所述传感器信息的预设值是第六预设的电阻值和第七预设的电阻值,第六预设的电阻值<第七预设的电阻值,所述控制模块将所述感应电阻值与第六预设的电阻值和第七预设的电阻值分别比较,当0<所述感应电阻值≤第六预设的电阻值时,控制雾化器进入第五工作状态;当第六预设的电阻值<所述感应电阻值≤第七预设的电阻值时,控制雾化器进入第六工作状态;当所述感应电阻值>第七预设的电阻值时,控制雾化器进入第七工作状态。
  8. 根据权利要求4所述的电子烟电池,其特征在于,所述信息存储模块中预先存储有一组传感器信息的预设值,所述一组传感器信息的预设值为第一预设的电阻值和预设的持续时间,所述控制模块将所述感应电阻值与第一预设的电阻值比较,将用户施加压力的持续时间与所述预设的持续时间比较,当所述感应电阻值≥第一预设的电阻值,且用户施加压力的持续时间≥所述预设的持续时间时,控制雾化器进入第二工作状态;否则,控制雾化器进入第一工作状态。
  9. 根据权利要求1所述的电子烟电池,其特征在于,所述压力传感模块包括至少一个压力传感器。
  10. 根据权利要求1所述的电子烟电池,其特征在于,所述电子烟电池还包括:
    信息处理模块,用于对所述传感器信息进行放大,并转换成机器可读信息;
    所述控制模块,用于将所述经放大和转换后的传感器信息与所述传感器信息的预设值进行比较,并根据比较结果来控制雾化器的工作状态。
  11. 根据权利要求1至10任一项所述的电子烟电池,其特征在于,通过将所述传感器信息与所述传感器信息的预设值进行比较,并根据比较结果来控制的雾化器的工作状态为开始工作、停止工作、切换工作模式、调节输出电压、调节输出功率、报警以及调节工作温度中的一种、两种或 两种以上的结合。
  12. 一种电子烟,包括雾化器,其特征在于,所述电子烟还包括如权利要求1至11任一项所述的电子烟电池。
  13. 一种电子烟的控制方法,所述电子烟包括压力传感模块、信息检测模块、信息存储模块以及控制模块,其特征在于,所述控制方法包括步骤:
    压力传感模块接收用户的压力信息,并将其转换成传感器信息;
    信息检测模块检测传感器信息,并将其反馈给控制模块;以及
    控制模块从信息存储模块中读取传感器信息的预设值,将所述传感器信息与传感器信息的预设值进行比较,根据比较结果来控制雾化器的工作状态。
  14. 根据权利要求13所述的控制方法,其特征在于,所述传感器信息是传感器的感应电阻值、用户施加压力的持续时间以及用户施加压力的次数中的至少一个。
  15. 根据权利要求14所述的控制方法,其特征在于,所述传感器信息是传感器的感应电阻值,所述信息存储模块中存储有至少一个传感器信息的预设值,所述至少一个传感器信息的预设值为预设的电阻值。
  16. 根据权利要求14所述的控制方法,其特征在于,所述传感器信息是传感器的感应电阻值以及用户施加压力的持续时间,所述信息存储模块中存储有至少一组传感器信息的预设值,所述至少一组传感器信息的预设值为预设的电阻值和预设的持续时间。
  17. 根据权利要求15所述的控制方法,其特征在于,所述信息存储模块中预先存储有一个传感器信息的预设值,所述传感器信息的预设值是第一预设的电阻值,所述控制模块将所述感应电阻值与第一预设的电阻值比较,
    当所述感应电阻值<第一预设的电阻值时,控制雾化器进入第一工作状态;
    当所述感应电阻值≥第二预设的电阻值时,控制雾化器进入第二工作状态。
  18. 根据权利要求15所述的控制方法,其特征在于,所述信息存储 模块中预先存储有四个传感器信息的预设值,所述传感器信息的预设值是第二预设的电阻值、第三预设的电阻值、第四预设的电阻值及第五预设的电阻值,第二预设的电阻值<第三预设的电阻值<第四预设的电阻值<第五预设的电阻值,所述控制模块将所述感应电阻值与第二预设的电阻值、第三预设的电阻值、第四预设的电阻值及第五预设的电阻值分别比较,
    当第二预设的电阻值≤所述感应电阻值≤第三预设的电阻值时,控制雾化器进入第三工作状态;
    当第四预设的电阻值≤所述感应电阻值≤第五预设的电阻值时,控制雾化器进入第四工作状态;
    当所述感应电阻值<第二预设的电阻值或第三预设的电阻值<所述感应电阻值<第四预设的电阻值或所述感应电阻值>第五预设的电阻值时,保持雾化器的当前工作状态。
  19. 根据权利要求15所述的控制方法,其特征在于,所述信息存储模块中预先存储有两个传感器信息的预设值,所述传感器信息的预设值是第六预设的电阻值和第七预设的电阻值,第六预设的电阻值<第七预设的电阻值,所述控制模块将所述感应电阻值与第六预设的电阻值和第七预设的电阻值分别比较,
    当0<所述感应电阻值≤第六预设的电阻值时,控制雾化器进入第五工作状态;
    当第六预设的电阻值<所述感应电阻值≤第七预设的电阻值时,控制雾化器进入第六工作状态;
    当所述感应电阻值>第七预设的电阻值时,控制雾化器进入第七工作状态。
  20. 根据权利要求16所述的控制方法,其特征在于,所述信息存储模块中存储有一组传感器信息的预设值,所述一组传感器信息的预设值为第一预设的电阻值和预设的持续时间,所述控制模块将所述感应电阻值与第一预设的电阻值比较,
    当所述感应电阻值≥第一预设的电阻值时,所述控制模块将用户施加压力的持续时间与所述预设的持续时间比较;
    当所述感应电阻值<第一预设的电阻值时,所述控制模块控制雾化器 进入第一工作状态。
  21. 根据权利要求20所述的控制方法,其特征在于,所述的所述控制模块将用户施加压力的持续时间与所述预设的持续时间比较的步骤还包括:
    当所述用户施加压力的持续时间≥所述预设的持续时间时,所述控制模块控制雾化器进入第二工作状态;
    当所述用户施加压力的持续时间<所述预设的持续时间时,所述控制模块控制雾化器进入第一工作状态。
  22. 根据权利要求13所述的控制方法,其特征在于,所述电子烟还包括信息处理模块,所述信息处理模块对所述传感器信息进行放大,并转换成机器可读信息,所述控制模块将所述经放大和转换后的传感器信息与所述传感器信息的预设值进行比较,并根据比较结果来控制雾化器的工作状态。
  23. 根据权利要求13至22任一项所述的控制方法,其特征在于,通过将所述传感器信息与所述传感器信息的预设值进行比较,并根据比较结果来控制的雾化器的工作状态为开始工作、停止工作、切换工作模式、调节输出电压、调节输出功率、报警以及调节工作温度中的一种、两种或两种以上的结合。
  24. 一种电子烟,包括电子烟电池及雾化器,其特征在于,所述电子烟用于执行如权利要求13至23任一项所述的控制方法。
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