WO2019037583A1 - 电子烟和调节电子烟功率的方法 - Google Patents

电子烟和调节电子烟功率的方法 Download PDF

Info

Publication number
WO2019037583A1
WO2019037583A1 PCT/CN2018/098449 CN2018098449W WO2019037583A1 WO 2019037583 A1 WO2019037583 A1 WO 2019037583A1 CN 2018098449 W CN2018098449 W CN 2018098449W WO 2019037583 A1 WO2019037583 A1 WO 2019037583A1
Authority
WO
WIPO (PCT)
Prior art keywords
power
indication
module
output
controller
Prior art date
Application number
PCT/CN2018/098449
Other languages
English (en)
French (fr)
Inventor
邱伟华
Original Assignee
常州聚为智能科技有限公司
卓尔悦欧洲控股有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 常州聚为智能科技有限公司, 卓尔悦欧洲控股有限公司 filed Critical 常州聚为智能科技有限公司
Priority to EP18848649.2A priority Critical patent/EP3673754B1/en
Priority to US16/641,228 priority patent/US11350674B2/en
Publication of WO2019037583A1 publication Critical patent/WO2019037583A1/zh

Links

Images

Classifications

    • 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
    • A24F40/60Devices with integrated user interfaces
    • 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
    • A24F40/90Arrangements or methods specially adapted for charging batteries thereof
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/42Methods or arrangements for servicing or maintenance of secondary cells or secondary half-cells
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M10/00Secondary cells; Manufacture thereof
    • H01M10/42Methods or arrangements for servicing or maintenance of secondary cells or secondary half-cells
    • H01M10/425Structural combination with electronic components, e.g. electronic circuits integrated to the outside of the casing
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M50/00Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
    • H01M50/20Mountings; Secondary casings or frames; Racks, modules or packs; Suspension devices; Shock absorbers; Transport or carrying devices; Holders
    • H01M50/247Mountings; Secondary casings or frames; Racks, modules or packs; Suspension devices; Shock absorbers; Transport or carrying devices; Holders specially adapted for portable devices, e.g. mobile phones, computers, hand tools or pacemakers
    • 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
    • A24F40/50Control or monitoring
    • A24F40/51Arrangement of sensors

Definitions

  • the present disclosure relates to the field of electronic cigarette technology, and more particularly to an electronic cigarette and a method of regulating the power of the electronic cigarette.
  • Electronic cigarettes are electronic products that mimic cigarettes and generally consist of atomizers and battery devices.
  • the atomizer is used as an atomization component of the electronic cigarette, and the electricity can generate smoke;
  • the battery device serves as a power supply control component of the electronic cigarette, and supplies the working voltage to the atomizer.
  • the automatic cigarette light type electronic cigarette does not have a button, which results in a single and fixed output power of such an electronic cigarette, which cannot meet the diverse needs of users.
  • the present disclosure provides an electronic cigarette and a method for adjusting the power of the electronic cigarette.
  • the technical solution is as follows:
  • an electronic cigarette including an atomizer and a battery device, the battery device including a housing and a controller and a power output module inside the housing, wherein:
  • the atomizer is detachably connected to the battery device
  • An indication module is disposed on the outer casing
  • the controller is electrically connected to the indication module and the power output module respectively;
  • the controller is configured to control the indication module to rotate and output different indication signals; when detecting that the atomizer is connected to the battery device, determine the relationship between the indicator signal and the output power according to the pre-stored indication signal And indicating a target output power corresponding to the current indication signal of the module; when the suction signal is detected, controlling the power output module to output the target output power.
  • the battery device further includes a battery
  • the battery is electrically connected to the controller, the indication module, and the power output module, respectively;
  • the controller is further configured to: detect a quantity of the battery, and determine, according to a correspondence between the pre-stored indication signal and a power interval of the battery, a first indication signal corresponding to a power range in which the current power of the battery is located And controlling the indication module to send the first indication signal.
  • the battery device further includes a battery
  • the battery is electrically connected to the controller, the indication module, and the power output module, respectively;
  • the controller is further configured to: when detecting that the atomizer is separated from the battery device, detect a current power of the battery, and determine a power interval where the current power is located according to a correspondence between the pre-stored power interval and the output power. Corresponding output power set, the power interval is determined according to the corresponding relationship between the indication signal and the output power, and the output power set corresponding to the power range in which the current power is located, and the corresponding indication signal set is determined, and the control indication module determines the The indication signal in the indication signal set is rotated output, wherein the output power set includes at least one output power, and the indication signal set includes at least one indication signal.
  • a humidity sensor for detecting smoke oil is disposed in the liquid storage chamber of the atomizer;
  • the humidity sensor is electrically connected to the controller when the atomizer is in a connected state with the battery device;
  • the humidity sensor is configured to periodically send a humidity value to the controller when the atomizer is in a connected state with the battery device;
  • the controller is further configured to: when detecting that the atomizer is separated from the battery device, determine a relationship between a humidity value received by the last cycle before the atomizer is separated from the battery device and a preset humidity threshold, And if the humidity value is greater than the preset humidity threshold, controlling the indication module to rotate and output different indication signals.
  • the controller when the controller detects the sway signal first, and then detects that the atomizer is separated from the battery device, the controller is configured to control the indicator module to rotate and output different indication signals.
  • the controller when the atomizer is in a connected state with the battery device, and the sway signal is detected, the controller is configured to determine a current output power of the power output module, according to the indication signal and the output. a second indication signal corresponding to the current output power of the power output module is determined, and the indication module is controlled to issue the second indication signal.
  • a method of adjusting power of an electronic cigarette the method being applied to an electronic cigarette, the electronic cigarette comprising an atomizer and a battery device, the battery device comprising a housing and the a controller inside the housing and a power output module, the atomizer being detachably connected to the battery device, the housing is provided with an indication module, and the controller is respectively electrically connected to the indication module and the power output module Sexual connection, the method includes:
  • the controller determines a target output power corresponding to the current indication signal of the indication module according to a correspondence relationship between the indication signal and the output power stored in advance;
  • the controller controls the power output module to output power at the target when a pumping signal is detected.
  • the battery device further includes a battery, and the battery is electrically connected to the controller, the indication module, and the power output module, respectively;
  • the method further includes:
  • the controller detects a quantity of the battery
  • the controller controls the indication module to indicate the first indication signal.
  • the battery device further includes a battery, and the battery is electrically connected to the controller, the indication module, and the power output module, respectively;
  • control indication module rotates and outputs different indication signals, including:
  • the controller detects a current amount of power of the battery when it is detected that the atomizer is separated from the battery device;
  • the controller determines an output power set corresponding to the power interval in which the current power is located, where the output power set includes at least one output power according to a correspondence between the pre-stored power interval and the output power;
  • the controller determines a corresponding indication signal set, where the indication signal set includes at least one of the indication signal set according to the corresponding relationship between the indication signal and the output power and the output power set corresponding to the current power range Indication signal
  • the controller control indication module performs a rotation output on the determined indication signal in the determined indication signal set.
  • a humidity sensor for detecting smoke oil is disposed in the liquid storage chamber of the atomizer, and the humidity sensor and the controller are electrically connected when the atomizer is in a connected state with the battery device. sexually connecting and periodically transmitting a humidity value to the controller;
  • the indicator module is controlled to rotate and output different indication signals, including:
  • the controller determines a relationship between a humidity value received by the last cycle before the atomizer is separated from the battery device and a preset humidity threshold, if the humidity If the value is greater than the preset humidity threshold, the indicator module is controlled to alternately output different indication signals.
  • the method further includes:
  • the controller determines a current output power of the power output module, and determines according to a correspondence between the indication signal and the output power. a second indication signal corresponding to a current output power of the power output module;
  • the controller controls the indication module to issue the second indication signal.
  • an apparatus for adjusting power of an electronic cigarette comprising: a memory and a processor; the memory storing at least one program instruction; the processor The method of adjusting the power of the electronic cigarette is implemented by loading and executing the at least one program instruction.
  • the atomizer when the user uses the electronic cigarette and intends to adjust the output power thereof, first, the atomizer is separated from the battery device; then, when the indication signal corresponding to a certain power is illuminated, the atomizer and the battery are The devices are connected together so that the electronic cigarette can operate at that power. Therefore, the electronic cigarette is connected and separated by the atomizer and the battery device, thereby realizing the switching of the output power, without setting a plurality of buttons, and further, the electronic cigarette can output a plurality of powers on the basis of miniaturization, so that the user The output power of the electronic cigarette can be selected independently to meet the diverse needs of users.
  • FIG. 1 is a schematic structural view of an electronic cigarette according to an embodiment
  • FIG. 3 is a flow chart showing a method of adjusting the power of an electronic cigarette according to an embodiment
  • FIG. 4 is a flow chart showing a method of adjusting the power of an electronic cigarette according to an embodiment
  • FIG. 5 is a flow chart showing a method of adjusting the power of an electronic cigarette according to an embodiment
  • FIG. 6 is a flow chart showing a method of adjusting the power of an electronic cigarette according to an embodiment
  • FIG. 7 is a schematic structural view of an atomizer according to an embodiment.
  • the electronic cigarette includes an atomizer 1 and a battery device 2.
  • the battery device 2 includes a housing and a PCB (Printed Circuit Board) printed inside the housing.
  • the circuit board) board 26 as shown in FIG. 2, the PCB board 26 further includes a controller 21 and a power output module 22, wherein: the atomizer 1 is detachably connected to the battery unit 2; as shown in FIG.
  • the indication module 23 is configured to prompt the user to perform the corresponding operation.
  • the controller 21 is electrically connected to the indication module 23 and the power output module 22 respectively.
  • the controller 21 is configured to control the indication module 23 to alternately output different indication signals.
  • the atomizer 1 is a component capable of atomizing smoke oil to form a smoke; the battery device 2 serves as a power supply control component of the electronic cigarette for supplying an operating voltage to the atomizer 1.
  • the indication module 23 disposed on the outer casing of the battery device 2 is mainly used to issue an indication signal to remind the user to perform corresponding operations.
  • the indication module 23 is electrically connected to the controller 21, and the controller 21 can control the indication module 23 to issue different indication signals.
  • the indication module 23 is an indicator light, and the controller 21 controls the light of different colors, such as The indication signals are red, green and yellow.
  • the indicator module 23 is three indicator lights, and the controller 21 controls the number of the indicator lights, such as the indicator signal is 1 light, 2 lights are on, and 3 lights are on at the same time.
  • the indication signal may indicate the output power, and may also indicate the amount of the electronic cigarette.
  • the indicator module 23 is three indicator lights, and the controller 21 controls one of the indicators to light up, such as the indication signal that the first light is on, the second light is on, and the third light is on.
  • the power output module 22 is mainly used for output power, and the magnitude of its output power is controlled by the controller 21, for example, according to actual conditions, etc., by setting the power adjustment circuit of the battery device 2, the power output module 22 can be controlled by the controller 21. Next, output power of three values, such as 50 watts, 80 watts, and 100 watts.
  • controller 21 controls the output power of the power output module 22 by the signal sent by the indication module 23.
  • the control instructing module 23 alternately outputs a different indication signal.
  • the controller 21 detects that the atomizer 1 is connected again to the battery device 2, it detects the signal indicated by the moment indicating module 23 connected to the battery device 2, and then the controller 21 based on the pre-stored indication signal and output.
  • the corresponding relationship between the powers, the control power output module 22 outputs a certain value of power. The following is a specific example to illustrate this principle:
  • the indication module 23 is an indicator light that can display three colors of green, yellow, and red light; the power output module 22 can output output powers of 50 watts, 80 watts, and 100 watts; the storage module of the controller 21 is pre-stored. There is a relationship between the display color of the indicator light and the output power as shown in Table 1.
  • the controller 21 detects that the atomizer 1 is separated from the battery device 2, and then the controller 21 controls the indicator wheel to display the lights of three colors of green, yellow and red.
  • the time interval in which the three colors of light are cyclically displayed is a preset time; when the user twists the atomizer 1 on the battery device 2 again, the controller 21 detects the moment when the atomizer 1 is connected to the battery device 2, indicating The color displayed by the lamp, such as green light, controls the power output module 22 to output an output power of 100 watts.
  • Table 1 shows the relationship between signal and output power
  • the process of adjusting the working power of the electronic cigarette by the user may be: first, the user separates the atomizer from the battery device; then, when the user lights up the corresponding signal corresponding to a certain power, the atomizer and the battery are The devices are connected together so that the electronic cigarette can operate at that power. For example, when the user intends to operate the electronic cigarette under 100 watts, the atomizer is first separated from the battery device; then, when the indicator module emits green light, the atomizer is connected to the battery device, so that the electronic cigarette is Can work at 100 watts.
  • the electronic cigarette is connected and separated by the atomizer and the battery device to realize switching of the output power without setting a button. Therefore, the electronic cigarette can output a plurality of powers on the basis of miniaturization, so that the user can select the electronic device independently. The output power of the smoke.
  • An exemplary embodiment of the present disclosure provides a method of adjusting the power of an electronic cigarette, which method can be applied to the electronic cigarette of the first embodiment. As shown in FIG. 3, the processing flow of the method may include the following steps:
  • Step 301 when it is detected that the atomizer 1 is separated from the battery device 2, the controller 21 controls the indication module 23 to alternately output different indication signals.
  • the indication module 23 can display different indication signals under the control of the controller 21, and each of the indication signals can represent a kind of information for the controller 21 and the user to recognize.
  • the atomizer 1 when the user intends to adjust the output power of the electronic cigarette, the atomizer 1 is separated from the battery device 2, and the circuit between the atomizer 1 and the battery device 2 is disconnected. After the controller 21 determines that the circuit is disconnected, the control instruction module 23 alternately displays different indication signals in a preset time interval. The control indication module 23 rotates to emit green, yellow, and red light as in the first embodiment.
  • Step 302 When it is detected that the atomizer 1 is connected to the battery device 2, the controller 21 determines the target output power corresponding to the current indication signal of the indication module 23 according to the correspondence relationship between the indication signal and the output power stored in advance.
  • the electronic cigarette can work at three different output powers, such as 100 watts, 80 watts, and 50 watts, and the maximum amount of electronic cigarettes to work at 100 watts is the largest, but the power consumption is also the largest.
  • Working at 80 watts the amount of electronic cigarettes is relatively moderate, and the power consumption is moderate.
  • the 50 watts of working electronic cigarettes have the lowest amount of fog, but the power consumption is also the smallest, which is more energy efficient.
  • the output power may be referred to as the target output power, and according to the correspondence between the indication signal and the output power, as shown in Table 1, the target is The atomizer 1 and the battery device 2 are connected together under the instruction signal corresponding to the output power.
  • the controller 21 first detects the connection between the two, and then detects the indication signal of the current indication module 23, and then between the pre-stored indication signal and the output power. In the correspondence table, the target output power corresponding to the indicated signal is found.
  • Step 303 when the pumping signal is detected, the controller 21 controls the power output module 22 to output at the target output power.
  • the battery device 2 is further provided with a power adjustment circuit.
  • the controller 21 determines the target output power
  • the controller 21 sends the corresponding target output power to the power adjustment circuit.
  • Power adjustment signal After receiving the power adjustment signal, the power adjustment circuit adjusts the circuit component parameters such that the output power of the battery device 2 is the target output power, and the electronic cigarette enters an operation mode corresponding to the target output power, and outputs the target output power.
  • the e-cigarette detecting the suction signal may be a signal for detecting the user pressing the cigarette light key, or the air flow sensor provided in the electronic cigarette may detect the airflow signal that is sucked by the user, which is not limited in this embodiment.
  • the indicating module 23 can be an indicator light, and can emit three colors of green light, yellow light, and red light under the control of the controller 21, and each light has a corresponding correspondence as shown in Table 1. Relationship, in this case, the first embodiment has been described in detail and will not be described again here.
  • the indicating module 23 may also be three indicator lights located at different positions on the outer casing of the battery device 2, as shown in FIG. 4, the position A may be the position of the first indicator light, and the position B may be The position of the second indicator light, position C may be the position of the third indicator light.
  • the power adjustment process can be as follows:
  • Table 2 shows the relationship between signal and output power
  • Indication signal position of indicator light
  • Output Power A 100W B 80W C 50W
  • the color of the three indicator lights can be the same or different, and the color is not limited.
  • controller 21 controls the power output module 22 to output a certain value by the signal sent by the instruction module 23 is the same as that of the first embodiment.
  • the indication module 23 of the above case is applied to the principle to be described in detail below:
  • the controller 21 When the controller 21 detects that the atomizer 1 is separated from the battery device 2, the indicator lights at the control indicators A, B, and C are cycled to emit light; when the controller 21 detects that the atomizer 1 is connected to the battery device 2, At the moment when the atomizer 1 is connected to the battery device 2, the position where the indicator light is bright, for example, the indicator light at A is bright, when the suction signal is detected, the controller 21 controls the power output module 22 to output at an output power of 100 watts.
  • the indication module 23 can also be composed of three indicator lights, and the indication signal can be represented by the number of the indicator lights. For example, as shown in Table 3, one indicator light corresponds to 50 watts of output power. The two indicators are simultaneously illuminated to correspond to the output power of 80 watts, and the three indicators are simultaneously illuminated to correspond to the output power of 100 watts.
  • Table 3 shows the relationship between signal and output power
  • Indication signal (number of lights on) Output Power 1 50W 2 80W 3 100W
  • the indication module 23 of this case is applied to the principle of mediation power below:
  • the control indicator lights up under various numbers, that is, one indicator is turned on, two indicators are on at the same time, and three indicators are simultaneously illuminated.
  • the controller 21 detects that the atomizer 1 is connected to the battery device 2, when the atomizer 1 is connected to the battery device 2, the number of the indicator lights is bright, for example, the two indicators are illuminated at the same time.
  • the controller 21 then controls the power output module 22 to output an output power of 80 watts.
  • controller 21 can also control the indication module 23 to simultaneously use the number of lights and the color of the lights to indicate the operating power of the electronic cigarette. For example, if the working power is 50W, one light can be illuminated, and the light color is red; when the working power is 100W, three lights can be illuminated, and the lighting color is green.
  • controller 21 can also control the indication module 23 to simultaneously use the lighting position and the lighting color to indicate the operating power of the electronic cigarette.
  • the working power 50W control C indicator light is red; the working power 100W control A indicator light is green.
  • an acceleration sensor 25 is disposed in the electronic cigarette, and the acceleration sensor 25 is configured to detect a shaking signal of the electronic cigarette, and the acceleration sensor is electrically connected to the controller 21, and the shaking signal can be sent to The controller 21, the controller 21 can perform corresponding processing based on the signal. For example, when the controller 21 detects the sway signal first and then detects that the atomizer 1 is separated from the battery device 2, the control instruction module 23 alternately outputs different indication signals.
  • the user wants to change the working power of the electronic cigarette, first, shake the electronic cigarette to shake the electronic cigarette; then, separate the atomizer from the battery device; finally, under the indication signal corresponding to the target power
  • the atomizer is connected to the battery device, and the electronic cigarette can work at the target power.
  • the user when the user uses the electronic cigarette to smoke, the user can also view the current output power of the electronic cigarette, and the corresponding processing may be: when the atomizer 1 is connected to the battery device 2, and when the shaking signal is detected, The controller 21 determines the current output power of the power output module 22, and determines a second indication signal corresponding to the current output power of the power output module 22 according to the correspondence between the indication signal and the output power in the above step 302; the controller control indication module 23 A second indication signal is issued.
  • the acceleration sensor 25 transmits the detected sway signal to the controller 21, and the controller 21 performs corresponding processing based on the sway signal.
  • the process is the reverse process of step 302.
  • the controller 21 detects the current output power of the power output module 22; then, in the correspondence table of the pre-stored indication signal and the output power, the second indication signal corresponding to the current output power is searched for.
  • the circuit adjustment signal corresponding to the second indication signal is sent to the adjustment circuit where the indication module 23 is located.
  • the adjustment circuit adjusts the circuit component parameters to cause the indication module 23 to issue a second indication signal. If the current output power is 80%, the second indication signal is a yellow indicator light. In this way, the user can conveniently view the current output power of the electronic cigarette.
  • the signal indicated by the indication module 23 can not only represent the output power of the electronic cigarette, but also represent the power of the electronic cigarette.
  • the battery device 2 further includes a battery 24, and the battery 24 and the controller 21 and the indication module 23 respectively.
  • the power output module 22 is electrically connected to provide power for the module, as shown in FIG. 5, the method may further include the following steps:
  • step 501 the controller 21 detects the amount of power of the battery 24.
  • the battery 24 is The amount of power is detected, or the amount of power of the battery 24 can be monitored in real time.
  • Step 502 The controller 21 determines a first indication signal corresponding to the power consumption interval in which the current power is located, according to the correspondence between the pre-stored indication signal and the power consumption interval.
  • the indication signal sent by the indication module 23 may be any signal that can attract the user's attention.
  • the signal of the different colors may be the signal of the different positions, or the number of the lights, or the like. .
  • the number of lights can be used as an example. That is, the indicator signal is one indicator light, two indicators are on at the same time, and the three indicators are on at the same time.
  • the power can be greater than or equal to 30%, and less than 80%, low battery range (also called third power range), such as power It can be in the range of more than 0% and less than 30%.
  • the correspondence between the indication signal and the power interval can be as shown in Table 4.
  • the controller 21 determines the current power of the battery 24, in the correspondence table between the pre-stored indication signal and the power consumption interval, as shown in Table 4, the number of the indicator light corresponding to the power interval is lit, That is, the first indication signal corresponding to the power interval in which the current power is located is determined.
  • Table 4 shows the relationship between the signal and the battery's power range
  • Indication signal (number of lights on) The battery area where the battery is charged 1 Low battery range (0%-30%) 2 Medium power range [30%-80%) 3 High power range [80%-100%]
  • the battery power can also be indicated by controlling the color of the lighting, for example, the low power interval is illuminated by a red light, the middle power interval is indicated by a yellow light, and the high power interval is used. Green light indicates.
  • step 503 the controller 21 controls the indication module 23 to indicate the first indication signal.
  • the circuit adjustment signal corresponding to the first indication signal is sent to the adjustment circuit where the indication module 23 is located.
  • the adjustment circuit adjusts the circuit component parameters to cause the indication module 23 to issue the first indication signal. For example, if the controller 21 detects that the current power is 75% and determines that the power is within the middle power range, the two indicators are controlled to be on at the same time.
  • the controller 21 controls the method for instructing the module 23 to issue the first indication signal, and can prompt the user to change the output power of the electronic cigarette in time to prevent the electronic cigarette from operating at a higher output power, thereby causing the electronic cigarette to consume too much power. Thereby, the use time of the electronic cigarette can be prolonged.
  • step 301 can be as shown in FIG. 6, and includes the following steps:
  • step 3011 when it is detected that the atomizer 1 is separated from the battery device 2, the controller 21 detects the current amount of power of the battery 24.
  • Step 3012 The controller 21 determines an output power set corresponding to the power interval in which the current power is located according to the correspondence between the previously stored power interval and the output power, where the output power set includes at least one output power.
  • the controller 21 pre-stores a correspondence relationship between the power consumption interval and the output power set, wherein, in the corresponding relationship, the amount of output power included in the output power set corresponding to the power consumption interval with the higher power amount The more, and the ith output power set corresponding to the ith power interval has at least one output power whose value is greater than the largest output in the (i-1)th output power set corresponding to the (i-1)th power interval The value of the power.
  • Table 5 when the battery 24 is in the low battery (0%-30%) state, at this time, the controller 21 controls the power output module to output only 50 watts of output power, and the output power at this time.
  • the set is ⁇ 50 watts ⁇ (may be called the first output power set); when the battery 24 is in the middle power range (30%-80%) state, at this time, the controller 21 controls the power output module to output 50.
  • Watt and 80 watts of output power at this time the output power set is ⁇ 50 watts, 80 watts ⁇ (can be called the second output power set); when the battery 24 is in the high power range (80%-100%), At this time, the controller 21 controls the power output module to output 50 watts, 80 watts, and 100 watts of output power outward, and the output power set is ⁇ 50 watts, 80 watts, 100 watts ⁇ (a third output power set) ).
  • there is one output power (100 watts) in the third output power set which is larger than the maximum output power (80 watts) in the second output power set.
  • Power range Output power set Low battery range (0%-30%) ⁇ 50W ⁇ Medium power range (30%-80%) ⁇ 50W, 80W ⁇ High power range (80%-100%) ⁇ 50W, 80W, 100W ⁇
  • Step 3013 The controller 21 determines a corresponding indication signal set according to the correspondence between the indication signal and the output power, and the output power set corresponding to the power interval in which the current power is located, where the indication signal set includes at least one indication signal. .
  • the controller 21 determines the corresponding indication signal according to the correspondence between the indication signal and the output power. For example, if the current power is 75%, the control power output module 22 outputs 50 watts and 80 watts of output power. Based on the correspondence between the indication signals and the output power in Table 1 or Table 2 or Table 3, Table 1 is taken as an example to determine The indicator module 23 can emit red and yellow indicators, indicating that the signal set is ⁇ red light, yellow light ⁇ .
  • step 3014 the controller 21 controls the indication module 23 to perform a rotation output on the determined indication signal in the determined indication signal set.
  • the control indication module 23 issues an indication signal. For example, it is determined that the indicator module 23 can emit red and yellow indicators, and the control indication module 23 alternately emits red and yellow light.
  • the user needs to replace the atomizer 1 or remove the atomizer 1 and re-inject the smoke oil.
  • the atomizer 1 is avoided. Separating from the battery device 2 and inserting it causes a change in output power.
  • the battery device 2 does not enter the output power switching state, that is, the indication module 23 does not issue an indication signal.
  • Corresponding processing in the structure of the electronic cigarette may be that, as shown in FIG.
  • the liquid storage chamber 11 of the atomizer 1 is provided with a humidity sensor 111 for detecting smoke oil, and when the atomizer 1 is connected to the battery device 2 In the state, the humidity sensor 111 is electrically connected to the controller 21.
  • the corresponding processing before step 301 may be: when the atomizer 1 and the battery device 2 are in a connected state, the humidity sensor 111 periodically transmits a humidity value to the controller 21;
  • the liquid storage chamber 11 is for holding the oil
  • the humidity sensor 111 is for detecting the humidity value in the liquid storage chamber 11.
  • the controller 21 when the user unscrews the atomizer 1 from the battery device 2, the controller 21 detects that the atomizer 1 is separated from the battery device 2. First, the controller 21 determines the atomizer 1 and the battery. The relationship between the humidity value received by the last cycle before the device 2 is separated and the preset humidity threshold. If the humidity value is greater than the preset humidity threshold, the re-control indication module 23 alternately outputs different indication signals; if the humidity value is less than or equal to the preset humidity threshold, the controller 21 does not transmit the relevant electrical signal to the indication module 23.
  • the atomizer when the user intends to adjust the output power of the electronic cigarette, first, the atomizer is separated from the battery device; then, when the indication signal corresponding to a certain power is illuminated, the atomizer is connected to the battery device. Together, in this way, the electronic cigarette can work at this power. Therefore, the electronic cigarette is connected and separated by the atomizer and the battery device, thereby realizing the switching of the output power without setting a button. Further, the electronic cigarette can output a plurality of powers on the basis of miniaturization, so that the user can autonomously Select the output power of the electronic cigarette.
  • a fourth embodiment of the present disclosure provides a computer readable storage medium having stored therein one or more instructions, wherein the one or more instructions are processed by an electronic cigarette
  • the above method of adjusting the power of the electronic cigarette is implemented when the device is executed.

Abstract

一种电子烟和调节电子烟功率的方法,电子烟包括雾化器(1)和电池装置(2),电池装置(2)包括外壳及外壳内部的控制器(21)和功率输出模块(22),其中:雾化器(1)与电池装置(2)可拆卸连接;外壳上设置指示模块(23);控制器(21)分别与指示模块(23)和功率输出模块(22)电性连接;控制器(21)控制指示模块(23)轮换输出不同的指示信号,当检测到雾化器(1)与电池装置(2)连接时,根据预先存储的指示信号与输出功率的对应关系,确定与指示模块(23)当前的指示信号对应的目标输出功率,在检测到抽吸信号时,控制功率输出模块(22)以目标输出功率输出。

Description

电子烟和调节电子烟功率的方法 技术领域
本公开是关于电子烟技术领域,尤其是关于一种电子烟和调节电子烟功率的方法。
背景技术
电子烟是一种模仿香烟的电子产品,一般由雾化器和电池装置组成。其中,雾化器作为电子烟的雾化组件,通电可以产生烟雾;电池装置作为电子烟的供电控制组件,向雾化器提供工作电压。
电池装置中通常设置有多个按键,用于调节电池装置向雾化器输送的功率,但是自动小烟型的电子烟为了追求小型化和简单化,通常不设置按键。
在实现本公开的过程中,发明人发现至少存在以下问题:
自动小烟型的电子烟不设置按键,导致这类电子烟的输出功率单一且固定,无法满足用户多样化需求。
发明内容
为了克服相关技术中存在的电子烟的工作功率单一且固定,用户无法自主选择电子烟的工作功率的问题,本公开提供了一种电子烟和调节电子烟功率的方法。所述技术方案如下:
根据本公开实施例的第一方面,提供一种电子烟,所述电子烟包括雾化器和电池装置,所述电池装置包括外壳及所述外壳内部的控制器和功率输出模块,其中:
所述雾化器与所述电池装置可拆卸连接;
所述外壳上设置有指示模块;
所述控制器分别与所述指示模块和所述功率输出模块电性连接;
所述控制器用于,控制所述指示模块轮换输出不同的指示信号;当检测到所述雾化器与所述电池装置连接时,根据预先存储的指示信号与输出功率的对 应关系,确定与所述指示模块当前的指示信号对应的目标输出功率;当检测到抽吸信号时,控制所述功率输出模块以所述目标输出功率输出。
可选的,所述电池装置还包括电池;
所述电池分别与所述控制器、所述指示模块和所述功率输出模块电性连接;
所述控制器还用于,检测所述电池的电量,根据预先存储的指示信号与所述电池的电量区间的对应关系,确定与所述电池当前的电量所在的电量区间对应的第一指示信号,控制所述指示模块发出所述第一指示信号。
可选的,所述电池装置还包括电池;
所述电池分别与所述控制器、所述指示模块和所述功率输出模块电性连接;
所述控制器还用于,当检测到雾化器与电池装置分离时,检测所述电池的当前的电量,根据预先储存的电量区间与输出功率的对应关系,确定当前的电量所在的电量区间对应的输出功率集合,电量区间根据所述指示信号与输出功率的对应关系,以及所述当前的电量所在的电量区间对应的输出功率集合,确定对应的指示信号集合,控制指示模块对确定出的指示信号集合内的指示信号进行轮换输出,其中,所述输出功率集合中至少包括一个输出功率,所述指示信号集合中至少包括一种指示信号。
可选的,所述雾化器的储液腔中设置有用于检测烟油的湿度传感器;
当所述雾化器与所述电池装置处于连接状态时,所述湿度传感器与所述控制器电性连接;
所述湿度传感器用于,当所述雾化器与所述电池装置处于连接状态时,周期性向所述控制器发送湿度值;
所述控制器还用于,当检测到雾化器与电池装置分离时,判断所述雾化器与所述电池装置分离之前的最后一个周期接收到的湿度值与预设湿度阈值的关系,如果所述湿度值大于所述预设湿度阈值,则控制所述指示模块轮换输出不同的指示信号。
可选的,当所述控制器先检测到晃动信号,后检测到雾化器与电池装置分离时,所述控制器用于,控制所述指示模块轮换输出不同的指示信号。
可选的,当所述雾化器与所述电池装置处于连接状态,且检测到晃动信号时,所述控制器用于,确定所述功率输出模块当前的输出功率,根据所述指示信号与输出功率的对应关系,确定与所述功率输出模块当前的输出功率对应的 第二指示信号,控制所述指示模块发出所述第二指示信号。
根据本公开实施例的第二方面,提供一种调节电子烟功率的方法,所述方法应用于电子烟中,所述电子烟包括雾化器和电池装置,所述电池装置包括外壳及所述外壳内部的控制器和功率输出模块,所述雾化器与所述电池装置可拆卸连接,所述外壳上设置有指示模块,所述控制器分别与所述指示模块和所述功率输出模块电性连接,所述方法包括:
当检测到雾化器与电池装置分离时,所述控制器控制所述指示模块轮换输出不同的指示信号;
当检测到所述雾化器与所述电池装置连接时,所述控制器根据预先存储的指示信号与输出功率的对应关系,确定所述指示模块当前的指示信号对应的目标输出功率;
当检测到抽吸信号时,所述控制器控制所述功率输出模块以所述目标输出功率。
可选的,所述电池装置还包括电池,所述电池分别与所述控制器、所述指示模块和所述功率输出模块电性连接;
所述方法还包括:
所述控制器检测所述电池的电量;
根据预先存储的指示信号与电量区间的对应关系,所述控制器确定与当前的电量所在的电量区间对应的第一指示信号;
所述控制器控制所述指示模块指示所述第一指示信号。
可选的,所述电池装置还包括电池,所述电池分别与所述控制器、所述指示模块和所述功率输出模块电性连接;
所述当检测到雾化器与电池装置分离时,控制指示模块轮换输出不同的指示信号,包括:
当检测到雾化器与电池装置分离时,所述控制器检测所述电池的当前电量;
根据预先储存的电量区间与输出功率的对应关系,所述控制器确定当前电量所在的电量区间对应的输出功率集合,其中,所述输出功率集合中至少包括一个输出功率;
根据所述指示信号与输出功率的对应关系,以及所述当前电量所在的电量区间对应的输出功率集合,所述控制器确定对应的指示信号集合,其中,所述 指示信号集合中至少包括一种指示信号;
所述控制器控制指示模块对确定出的指示信号集合内的指示信号进行轮换输出。
可选的,所述雾化器的储液腔中设置有用于检测烟油的湿度传感器,当所述雾化器与所述电池装置处于连接状态时,所述湿度传感器与所述控制器电性连接,并且周期性向所述控制器发送湿度值;
所述当检测到雾化器与电池装置分离时,控制所述指示模块轮换输出不同的指示信号,包括:
当检测到雾化器与电池装置分离时,所述控制器判断所述雾化器与所述电池装置分离之前的最后一个周期接收到的湿度值与预设湿度阈值的关系,如果所述湿度值大于所述预设湿度阈值,则控制所述指示模块轮换输出不同的指示信号。
可选的,所述当检测到雾化器与电池装置分离时,所述控制器控制指示模块轮换输出不同的指示信号,包括:
当先检测到晃动信号,后检测到雾化器与电池装置分离时,所述控制器控制所述指示模块轮换输出不同的指示信号。
可选的,所述方法还包括:
当所述雾化器与所述电池装置处于连接状态,且检测到晃动信号时,所述控制器确定所述功率输出模块当前的输出功率,根据所述指示信号与输出功率的对应关系,确定与所述功率输出模块当前的输出功率对应的第二指示信号;
所述控制器控制所述指示模块发出所述第二指示信号。
根据本公开实施例的第三方面,提供一种调节电子烟功率的装置,所述调节电子烟功率的装置包括:存储器和处理器;所述存储器中存储有至少一条程序指令;所述处理器,通过加载并执行所述至少一条程序指令以实现上述调节电子烟功率的方法。
根据本公开实施例的第四方面,提供一种计算机可读存储介质,所述计算机可读存储介质中存储有一个或一个以上的指令,其特征在于,所述一个或一个以上的指令被电子烟内的处理器执行时实现上述调节电子烟功率的方法。
本公开的实施例提供的技术方案可以包括以下有益效果:
本公开实施例中,用户使用上述电子烟,打算调节其输出功率时,首先,将雾化器与电池装置分开;然后,在某一功率对应的指示信号亮起时,将雾化器与电池装置连接在一起,这样,电子烟即可在该功率下工作。因此,该电子烟通过雾化器与电池装置的连接与分开,实现输出功率的切换,无需设置多个按键,进而,该电子烟在满足小型化的基础上还可以输出多种功率,使用户可以自主选择电子烟的输出功率,满足用户多样化的需求。
应当理解的是,以上的一般描述和后文的细节描述仅是示例性和解释性的,并不能限制本公开。
附图说明
此处的附图被并入说明书中并构成本说明书的一部分,示出了符合本公开的实施例,并与说明书一起用于解释本公开的原理。在附图中:
图1是根据实施例示出的一种电子烟的结构示意图;
图2是根据实施例示出的一种PCB板的结构示意图;
图3是根据实施例示出的一种调节电子烟功率的方法的流程图;
图4是根据实施例示出的一种调节电子烟功率的方法的流程图;
图5是根据实施例示出的一种调节电子烟功率的方法的流程图;
图6是根据实施例示出的一种调节电子烟功率的方法的流程图;
图7是根据实施例示出的一种雾化器的结构示意图。
附图说明
1、雾化器                 2、电池装置
11、储液腔                21、控制器
22、功率输出模块          23、指示模块
24、电池                  25、加速度传感器
26、PCB板                 111、湿度传感器
通过上述附图,已示出本公开明确的实施例,后文中将有更详细的描述。这些附图和文字描述并不是为了通过任何方式限制本公开构思的范围,而是通过参考特定实施例为本领域技术人员说明本公开的概念。
具体实施方式
这里将详细地对示例性实施例进行说明,其示例表示在附图中。下面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下示例性实施例中所描述的实施方式并不代表与本公开相一致的所有实施方式。相反,它们仅是与如所附权利要求书中所详述的、本公开的一些方面相一致的装置和方法的例子。
实施例一
本公开一示例性实施例提供了一种电子烟,如图1所示,该电子烟包括雾化器1和电池装置2,电池装置2包括外壳以及位于外壳内部的PCB(Printed Circuit Board,印刷电路板)板26,如图2所示,PCB板26又包括控制器21和功率输出模块22,其中:雾化器1与电池装置2可拆卸连接;如图1所示,外壳上设置有用于发出指示信号,以提醒用户进行相应的操作的指示模块23;控制器21分别与指示模块23和功率输出模块22电性连接;控制器21,用于控制指示模块23轮换输出不同的指示信号,当检测到雾化器1与电池装置2连接时,根据预先存储的指示信号与输出功率的对应关系,确定与指示模块23当前的指示信号对应的目标输出功率,控制功率输出模块22输出目标输出功率。
其中,雾化器1是一种能够对烟油进行雾化形成烟雾的部件;电池装置2作为电子烟的供电控制组件,用于向雾化器1提供工作电压。
在实施中,雾化器1与电池装置2可拆卸地连接,例如可以通过螺纹、卡扣或插接等方式连接,当用户抽烟时将雾化器1拧/扣在电池装置2上,这种可拆卸连接方式,当其中一个组件不能使用时,另一个组件还可以继续使用,例如,当雾化器损坏或没有烟油时,可以在电池装置2上换另一个雾化器,用户还可以继续使用。本实施例中将雾化器1与电池装置2的连接方式设置为可拆卸主要是用于调节电池装置2向雾化器1的输出功率,下文将会详细介绍。
电池装置2的外壳上设置的指示模块23主要用于发出指示信号,提醒用户进行相应的操作。具体的,指示模块23与控制器21电性连接,控制器21可以控制指示模块23发出不同的指示信号,例如,指示模块23为一个指示灯,控制器21控制其发出不同颜色的光,如指示信号为红光、绿光和黄光等。又例如,指示模块23为三个指示灯,控制器21控制指示灯亮起的数量,如指示信号为1 个灯亮、2个灯同时亮和3个灯同时亮。其中,指示信号可以表示输出功率、也可以表示电子烟的电量等。再例如,指示模块23为三个指示灯,控制器21控制指示灯中某个灯亮起,如指示信号为第一个灯亮、第二个灯亮和第三个灯亮。
功率输出模块22主要用于输出功率,其输出功率的大小受控制器21控制,例如,根据实际情况等,通过设置电池装置2的功率调节电路,可以使功率输出模块22在控制器21的控制下,输出三种值的输出功率,如50瓦特、80瓦特和100瓦特。
控制器21通过指示模块23发出的信号控制功率输出模块22输出功率的原理可以如下:
当控制器21检测到雾化器1与电池装置2分离时,控制指示模块23轮换输出不同的指示信号。当控制器21检测到雾化器1与电池装置2再次相连时,检测雾化器1与电池装置2相连的瞬间指示模块23所指示的信号,然后控制器21基于预先存储的指示信号与输出功率之间的对应关系,控制功率输出模块22输出某一值的功率。下面以具体的例子阐述该原理:
例如,指示模块23是一个指示灯,可以显示绿、黄、红三种颜色的光;功率输出模块22可以输出50瓦特、80瓦特和100瓦特的输出功率;控制器21的存储模块中预先存储有如表1所示的指示灯的显示颜色与输出功率之间的关系。当用户将雾化器1从电池装置2上拧开时,控制器21检测到雾化器1与电池装置2分离,然后控制器21控制指示灯轮换显示绿、黄、红三种颜色的光,其中,循环显示三种颜色光的时间间隔为预设时间;当用户再次将雾化器1拧在电池装置2上时,控制器21检测雾化器1与电池装置2相连的瞬间,指示灯所显示的颜色,例如是绿光,则控制器21控制功率输出模块22输出100瓦特的输出功率。
表1 指示信号与输出功率之间的关系
指示信号 输出功率
绿 100W
80W
50W
基于上述所述,用户调节电子烟的工作功率的过程可以是:首先,用户将 雾化器与电池装置分开;然后,用户在某一功率对应的指示信号亮起时,将雾化器与电池装置连接在一起,这样,电子烟即可在该功率下工作。例如,用户打算让电子烟在100瓦特下工作时,首先将雾化器与电池装置分开;然后,当指示模块发出绿光时,将雾化器与电池装置连接在一起,这样,电子烟即可在100瓦特下工作。
上述电子烟通过雾化器与电池装置的连接与分开,实现输出功率的切换,无需设置按键,因此,该电子烟在满足小型化的基础上还可以输出多种功率,使用户可以自主选择电子烟的输出功率。
实施例二
本公开一示例性实施例提供了一种调节电子烟功率的方法,该方法可以应用于实施例一所述的电子烟中。如图3所示,该方法的处理流程可以包括如下的步骤:
步骤301,当检测到雾化器1与电池装置2分离时,控制器21控制指示模块23轮换输出不同的指示信号。
其中,如实施例一所述,指示模块23在控制器21的控制下可以显示不同的指示信号,每一种指示信号可以代表一种信息,以供控制器21和用户识别。
在本实施例中,当用户打算调节电子烟的输出功率时,将雾化器1与电池装置2分离,雾化器1与电池装置2之间的电路断开。控制器21判断出电路断开的电信号之后,控制指示模块23在预设时间间隔中轮换显示不同指示信号,如实施例一所述控制指示模块23轮换发出绿光、黄光和红光。
步骤302,当检测到雾化器1与电池装置2连接时,控制器21根据预先存储的指示信号与输出功率的对应关系,确定指示模块23当前的指示信号对应的目标输出功率。
如实施例一所述,该电子烟可以在三种不同输出功率下进行工作,如100瓦特、80瓦特和50瓦特,在100瓦特下工作电子烟出雾量最大,但是耗电量也最大,在80瓦特下工作电子烟出雾量比较适中,耗电量也比较适中,在50瓦特下工作电子烟出雾量最小,但是耗电量也最小,比较省电。
在步骤301之后,用户确定好想要电子烟输出多大输出功率之后,该输出功率可以称为目标输出功率,根据指示信号与输出功率之间的对应关系,如表1 所示,则在该目标输出功率对应的指示信号下,将雾化器1与电池装置2连接在一起。用户将雾化器1与电池装置2连接在一起的瞬间,控制器21首先检测到二者的相连,再检测当前指示模块23的指示信号,然后再在预先储存的指示信号与输出功率之间的对应关系表中,查找对应该指示信号的目标输出功率。
步骤303,在检测到抽吸信号时,控制器21控制功率输出模块22以目标输出功率输出。
在本实施例中,电池装置2中还设置有功率调节电路,当控制器21确定目标输出功率之后,若电子烟检测到抽吸信号,则控制器21向功率调节电路发送对应目标输出功率的功率调节信号。功率调节电路接收到该功率调节信号之后,调节电路元件参数以使电池装置2的输出功率为目标输出功率,进而电子烟进入对应目标输出功率的工作模式,以目标输出功率进行输出。此时电子烟检测到抽吸信号可以是检测用户按压点烟键发出的信号,也可以是电子烟中设置的气流传感器检测到用户抽吸的气流信号,本实施例对此不做限定。
如实施例一所述,指示模块23可以是一个指示灯,在控制器21的控制下可以发出绿光、黄光和红光三种颜色的光,每一种光如表1所示的对应关系,该情况下,实施例一已做详细介绍此处不再赘述。
在一种实施例中,指示模块23还可以是位于电池装置2的外壳上不同位置的三个指示灯,如图4所示,位置A处可以是第一指示灯的位置,位置B可以是第二指示灯的位置,位置C可以是第三指示灯的位置,该情况下,功率调节过程可以如下:
表2 指示信号与输出功率之间的关系
指示信号(指示灯的位置) 输出功率
A 100W
B 80W
C 50W
其中,三个指示灯发出的颜色可以相同,也可以不同,该处对颜色不做限定。
控制器21通过指示模块23发出的信号控制功率输出模块22输出某一值的功率的原理同实施例一相同,下面将上述情况的指示模块23应用于该原理中进 行详细介绍:
当控制器21检测到雾化器1与电池装置2分离时,控制指示灯A、B、C处的指示灯循环进行发光;当控制器21检测到雾化器1与电池装置2相连时,检测雾化器1与电池装置2相连的瞬间,指示灯亮的位置,例如是A处指示灯亮,则当检测到抽吸信号时,控制器21控制功率输出模块22以100瓦特的输出功率输出。
以用户打算让电子烟在100瓦特下进行工作为例,调节电子烟的工作功率的过程可以是:用户首先将雾化器与电池装置分开;然后,当A位置处的指示灯亮时,将雾化器与电池装置连接在一起,这样,电子烟即可在100瓦特下工作。
在另一种实施例中,指示模块23还可以由三个指示灯组成,指示信号可以用指示灯亮起的个数来表示,例如,如表3所示,一个指示灯亮对应50瓦特的输出功率,两个指示灯同时亮对应80瓦特的输出功率,三个指示灯同时亮对应100瓦特的输出功率。
表3 指示信号与输出功率之间的关系
指示信号(指示灯亮起的个数) 输出功率
1 50W
2 80W
3 100W
其中,三个指示灯发出的颜色可以相同,也可以不同,该处对颜色不做限定。
下面将该情况的指示模块23应用于调解功率的原理中:
当控制器21检测到雾化器1与电池装置2分离时,控制指示灯在各数量下发亮,也即是控制一个指示灯亮、两个指示灯同时亮、三个指示灯同时亮这三种情况轮换发亮;当控制器21检测到雾化器1与电池装置2相连时,检测雾化器1与电池装置2相连的瞬间,指示灯亮的数量,例如是两个指示灯同时亮,则控制器21控制功率输出模块22输出80瓦特的输出功率。
以用户打算让电子烟在80瓦特下进行工作为例,调节电子烟的工作功率的过程可以是:用户首先将雾化器与电池装置分开;然后,当两个指示灯同时亮 时,将雾化器与电池装置连接在一起,这样,电子烟即可在80瓦特下工作。基于上述所述,用户调节电子烟的工作功率的过程可以是:首先,用户将雾化器与电池装置分开;然后,用户在某一功率对应的指示信号亮起时,将雾化器与电池装置连接在一起,这样,电子烟即可在该功率下工作。因此,用户可以自主选择电子烟的工作功率。
可选的,为了防止用户不小心将雾化器1与电池装置2分离,而触发控制器21控制指示模块23发出指示信号,可以对步骤301进行相应的处理:当先检测到晃动信号,后检测到雾化器1与电池装置2分离时,控制器21控制指示模块23轮换输出不同的指示信号。
此外,控制器21还可以控制指示模块23同时使用亮灯数目和亮灯颜色结合起来指示电子烟的工作功率。例如,工作功率为50W可以亮一个灯,且亮灯颜色为红色;工作功率为100W可以亮三个灯,且亮灯颜色为绿色。
另外,控制器21还可以控制指示模块23同时使用亮灯位置和亮灯颜色结合起来指示电子烟的工作功率。例如,工作功率50W控制C处的指示灯亮红色;工作功率100W控制A处的指示灯亮绿色。
在本实施例中,如图2所示,电子烟中设置有加速度传感器25,加速度传感器25用于检测电子烟的晃动信号,该加速度传感器与控制器21电性连接,可以将晃动信号发送给控制器21,控制器21可以基于该信号进行相应处理。例如,当控制器21先检测到晃动信号,后检测到雾化器1与电池装置2分离时,再控制指示模块23轮换输出不同的指示信号。
这样,当用户想要改变电子烟的工作功率时,首先,摇晃一下或几下电子烟使电子烟发生晃动;然后,将雾化器与电池装置分开;最后,在目标功率对应的指示信号下,将雾化器与电池装置相连接,电子烟即可在该目标功率下工作。
可选的,用户在使用该电子烟进行抽烟时,还可以查看电子烟当前的输出功率,相应的处理可以是:当雾化器1与电池装置2处于连接状态,且检测到晃动信号时,控制器21确定功率输出模块22当前的输出功率,根据上述步骤302中指示信号与输出功率的对应关系,确定与功率输出模块22当前的输出功率对应的第二指示信号;控制器控制指示模块23发出第二指示信号。
其中,同上述所述,加速度传感器25将检测到的晃动信号发送给控制器21, 控制器21基于该晃动信号进行相应的处理。
在本实施例中,该过程是步骤302的逆过程,当用户使用该电子烟进行抽烟时,想知道当前电子烟的输出功率,可以通过晃动一下电子烟,加速度传感器检测到晃动信号之后,将该晃动信号发送给控制器21。首先,控制器21检测功率输出模块22的当前输出功率;然后,在预先存储的指示信号与输出功率的对应关系表中,查找对应当前输出功率的第二指示信号。当控制器21确定第二指示信号之后,向指示模块23所在的调节电路发送对应第二指示信号的电路调节信号。调节电路接收到该电路调节信号之后,调节电路元件参数以使指示模块23发出第二指示信号。如当前输出功率为80%,第二指示信号为黄色指示灯。这样,可以方便用户查看电子烟的当前输出功率。
可选的,指示模块23所指示的信号不仅可以代表电子烟的输出功率,还可以代表电子烟的电量,相应的,电池装置2还包括电池24,电池24分别与控制器21、指示模块23和功率输出模块22电性连接,用于为上述模块供电,如图5所示,该方法还可以包括如下步骤:
步骤501,控制器21检测电池24的电量。
在本实施例中,在用户正常使用电子烟进行抽烟的情况下,也即是,在雾化器1与电池装置2处于连接状态下,当控制器21达到检测电量的周期时,对电池24的电量进行检测,或者可以实时对电池24的电量进行监测。
步骤502,根据预先存储的指示信号与电量区间的对应关系,控制器21确定与当前的电量所在的电量区间对应的第一指示信号。
其中,指示模块23发出的指示信号可以是任意能够引起用户注意的信号,例如,可以是上述不同颜色的信号,也可以是不同位置的亮灯的信号,也可以是亮灯的数量,等等。可以以亮灯的数量为例进行详细说明,也即是,指示信号为一个指示灯亮、两个指示灯同时亮、三个指示灯同时亮。
电池24的电量可以划分为多个电量区间,例如,划分为N个电量区间,N为大于或等于2的整数,其中,第i电量区间中最小电量的值大于第(i-1)电量区间中最大电量的值,i为大于1的整数。为方便介绍,例如,电池24的电量可以分为三个范围段,高电量区间(也可称第一电量区间),如,电量可以在大于或等于80%,且小于或等于100%的范围内、中电量区间(也可称第二电量区间),如,电量可以在大于或等于30%,且小于80%的范围内、低电量区间(也 可称第三电量区间),如,电量可以在大于0%,且小于30%的范围内。指示信号与电量区间的对应关系可以如表4所示。
在本实施例中,当控制器21确定电池24的当前电量之后,在预先存储的指示信号与电量区间的对应关系表中,如表4中查找对应该电量区间的指示灯亮起的数量,也即是确定与当前的电量所在的电量区间对应的第一指示信号。
表4 指示信号与电池的电量区间之间的关系
指示信号(指示灯亮起的个数) 电池的电量所在的电量区间
1 低电量区间(0%-30%)
2 中电量区间[30%-80%)
3 高电量区间[80%-100%]
可选地,除了通过控制亮灯数目来指示电池电量外,还可以通过控制亮灯的颜色来指示电池电量,例如低电量区间亮红色灯指示,中电量区间用黄色灯指示,高电量区间用绿色灯指示。
步骤503,控制器21控制指示模块23指示第一指示信号。
在本实施例中,当控制器21确定第一指示信号之后,向指示模块23所在的调节电路发送对应第一指示信号的电路调节信号。调节电路接收到该电路调节信号之后,调节电路元件参数以使指示模块23发出第一指示信号。例如,控制器21检测到当前电量为75%,判断出该电量处于中电量区间范围内,则控制两个指示灯同时亮。
这样,用户在使用该电子烟时,可以知道电池24所处的电量区间,当发现所在电量区间比较低时,能够及时进行充电。而且,控制器21控制指示模块23发出第一指示信号的方法,可以提醒用户及时改变电子烟的输出功率,防止电子烟在较高输出功率下工作,导致电子烟耗电过快。从而,可以延长电子烟的使用时间。
可选的,控制器21可以基于电池24的当前电量,控制不同输出功率,步骤301相应的处理可以如图6所示,包括如下步骤:
步骤3011,当检测到雾化器1与电池装置2分离时,控制器21检测电池24的当前电量。
步骤3012,根据预先储存的电量区间与输出功率的对应关系,控制器21确定当前电量所在的电量区间对应的输出功率集合,该输出功率集合中至少包括 一个输出功率。
例如,在本实施例中,控制器21中预先存储有电量区间与输出功率集合的对应关系,其中,在对应关系中,电量越高的电量区间对应的输出功率集合中所含输出功率的数量越多,且第i电量区间对应的第i输出功率集合中,至少存在一个输出功率,其值大于第(i-1)电量区间对应的第(i-1)输出功率集合中的最大的输出功率的值。如表5所示,当电池24的电量处于低电量区间(0%-30%)状态时,此时,控制器21控制功率输出模块只能向外输出50瓦特的输出功率,此时输出功率集合为{50瓦特}(可称第一输出功率集合);当电池24的电量处于中电量区间(30%-80%)状态时,此时,控制器21控制功率输出模块可以向外输出50瓦特和80瓦特的输出功率,此时输出功率集合为{50瓦特、80瓦特}(可称第二输出功率集合);当电池24的电量处于高电量区间(80%-100%)状态时,此时,控制器21控制功率输出模块可以向外输出50瓦特、80瓦特和100瓦特的输出功率,此时输出功率集合为{50瓦特、80瓦特、100瓦特}(可称第三输出功率集合)。其中,在对应关系中,可知,第三输出功率集合中的存在一个输出功率(100瓦特),大于第二输出功率集合中的最大的输出功率(80瓦特)。
表5 电量与输出功率集合之间的关系
电量区间 输出功率集合
低电量区间(0%-30%) {50W}
中电量区间(30%-80%) {50W、80W}
高电量区间(80%-100%) {50W、80W、100W}
步骤3013,根据指示信号与输出功率的对应关系,以及上述当前电量所在的电量区间对应的输出功率集合,控制器21确定对应的指示信号集合,其中,该指示信号集合中至少包括一种指示信号。
在本实施例中,控制器21根据表5中确定可以对外输出的输出功率之后,再根据指示信号与输出功率的对应关系,确定相应的指示信号。例如,当前电量为75%,则控制功率输出模块22输出50瓦特和80瓦特的输出功率,基于表1或表2或表3中指示信号与输出功率的对应关系,以表1为例,确定指示模块23可以发出红色和黄色的指示灯,则指示信号集合为{红灯、黄灯}。
步骤3014,控制器21控制指示模块23对确定出的指示信号集合内的指示信号进行轮换输出。
在本实施例中,当控制器21确定对应的指示信号之后,控制指示模块23发出指示信号。例如,确定指示模块23可以发出红色和黄色的指示灯,则控制指示模块23轮换发出红光和黄光。
这样,可以避免电子烟在电量不足时,切换为较高输出功率下进行工作,进而可以保护电池24,延长电子烟的使用寿命。
可选的,在雾化器1中烟油较少的情况下,用户需要更换雾化器1或者将雾化器1取下重新注入烟油,为了避免该种情况下用户将雾化器1和电池装置2分离并插上导致输出功率发生变化,当用户将雾化器1与电池装置2分开之后,电池装置2不进入输出功率切换状态,也即是,指示模块23不发出指示信号,在电子烟的结构方面相应的处理可以是,如图7所示,雾化器1的储液腔11中设置有用于检测烟油的湿度传感器111,当雾化器1与电池装置2处于连接状态时,湿度传感器111与控制器21电性连接。步骤301之前的相应处理可以是:当雾化器1与电池装置2处于连接状态时,湿度传感器111周期性向控制器21发送湿度值;
其中,储液腔11用于盛放烟油,湿度传感器111用于检测储液腔11中的湿度值,当雾化器1与电池装置2相连时,雾化器1与电池装置2之间的电路接通,湿度传感器111将检测到的湿度值发送给控制器21。
在本实施例中,当用户将雾化器1从电池装置2中拧开时,控制器21检测到雾化器1与电池装置2相分离,首先,控制器21判断雾化器1与电池装置2分离之前的最后一个周期接收到的湿度值与预设湿度阈值的关系。如果湿度值大于预设湿度阈值,则再控制指示模块23轮换输出不同的指示信号;如果湿度值小于或者等于预设湿度阈值,则控制器21不向指示模块23发送相关电信号。
在本实施例中,当用户打算调节电子烟的输出功率时,首先,将雾化器与电池装置分开;然后,在某一功率对应的指示信号亮起时,将雾化器与电池装置连接在一起,这样,电子烟即可在该功率下工作。因此,该电子烟通过雾化器与电池装置的连接与分开,实现输出功率的切换,无需设置按键,进而,该电子烟在满足小型化的基础上还可以输出多种功率,使用户可以自主选择电子烟的输出功率。
实施例三
本公开第三实施例提供一种调节电子烟功率的装置,所述调节电子烟功率的装置包括:存储器和处理器;所述存储器中存储有至少一条程序指令;所述处理器,通过加载并执行所述至少一条程序指令以实现上述调节电子烟功率的方法。
实施例四
本公开第四实施例提供一种计算机可读存储介质,所述计算机可读存储介质中存储有一个或一个以上的指令,其特征在于,所述一个或一个以上的指令被电子烟内的处理器执行时实现上述调节电子烟功率的方法。
本领域技术人员在考虑说明书及实践这里公开的公开后,将容易想到本公开的其它实施方案。本申请旨在涵盖本公开的任何变型、用途或者适应性变化,这些变型、用途或者适应性变化遵循本公开的一般性原理并包括本公开未公开的本技术领域中的公知常识或惯用技术手段。说明书和实施例仅被视为示例性的,本公开的真正范围和精神由下面的权利要求指出。
应当理解的是,本公开并不局限于上面已经描述并在附图中示出的精确结构,并且可以在不脱离其范围进行各种修改和改变。本公开的范围仅由所附的权利要求来限制。

Claims (14)

  1. 一种电子烟,其特征在于,所述电子烟包括雾化器和电池装置,所述电池装置包括外壳及所述外壳内部的控制器和功率输出模块,其中:
    所述雾化器与所述电池装置可拆卸连接;
    所述外壳上设置有指示模块;
    所述控制器分别与所述指示模块和所述功率输出模块电性连接;
    所述控制器用于,控制所述指示模块轮换输出不同的指示信号;当检测到所述雾化器与所述电池装置连接时,根据预先存储的指示信号与输出功率的对应关系,确定与所述指示模块当前的指示信号对应的目标输出功率;当检测到抽吸信号时,控制所述功率输出模块以所述目标输出功率输出。
  2. 根据权利要求1所述的电子烟,其特征在于,所述电池装置还包括电池;
    所述电池分别与所述控制器、所述指示模块和所述功率输出模块电性连接;
    所述控制器还用于,检测所述电池的电量,根据预先存储的指示信号与所述电池的电量区间的对应关系,确定与所述电池当前的电量所在的电量区间对应的第一指示信号,控制所述指示模块发出所述第一指示信号。
  3. 根据权利要求1所述的电子烟,其特征在于,所述电池装置还包括电池;
    所述电池分别与所述控制器、所述指示模块和所述功率输出模块电性连接;
    所述控制器还用于,当检测到雾化器与电池装置分离时,检测所述电池的当前的电量,根据预先储存的电量区间与输出功率的对应关系,确定当前的电量所在的电量区间对应的输出功率集合,根据所述指示信号与输出功率的对应关系,以及所述当前的电量所在的电量区间对应的输出功率集合,确定对应的指示信号集合,控制指示模块对确定出的指示信号集合内的指示信号进行轮换输出,其中,所述输出功率集合中至少包括一个输出功率,所述指示信号集合中至少包括一种指示信号。
  4. 根据权利要求1所述的电子烟,其特征在于,所述雾化器的储液腔中设置有用于检测烟油的湿度传感器;
    当所述雾化器与所述电池装置处于连接状态时,所述湿度传感器与所述控制器电性连接;
    所述湿度传感器用于,当所述雾化器与所述电池装置处于连接状态时,周期性向所述控制器发送湿度值;
    所述控制器还用于,当检测到所述雾化器与所述电池装置分离时,判断所述雾化器与所述电池装置分离之前的最后一个周期接收到的湿度值与预设湿度阈值的关系,如果所述湿度值大于所述预设湿度阈值,则控制所述指示模块轮换输出不同的指示信号。
  5. 根据权利要求1所述的电子烟,其特征在于,当所述控制器先检测到晃动信号,后检测到雾化器与电池装置分离时,所述控制器用于,控制所述指示模块轮换输出不同的指示信号。
  6. 根据权利要求1所述的电子烟,其特征在于,当所述雾化器与所述电池装置处于连接状态,且检测到晃动信号时,所述控制器用于,确定所述功率输出模块当前的输出功率,根据所述指示信号与输出功率的对应关系,确定与所述功率输出模块当前的输出功率对应的第二指示信号,控制所述指示模块发出所述第二指示信号。
  7. 一种调节电子烟功率的方法,其特征在于,所述方法应用于电子烟中,所述电子烟包括雾化器和电池装置,所述电池装置包括外壳及所述外壳内部的控制器和功率输出模块,所述雾化器与所述电池装置可拆卸连接,所述外壳上设置有指示模块,所述控制器分别与所述指示模块和所述功率输出模块电性连接,所述方法包括:
    当检测到雾化器与电池装置分离时,所述控制器控制所述指示模块轮换输出不同的指示信号;
    当检测到所述雾化器与所述电池装置连接时,所述控制器根据预先存储的指示信号与输出功率的对应关系,确定所述指示模块当前的指示信号对应的目标输出功率;
    当检测到抽吸信号时,所述控制器控制所述功率输出模块以所述目标输出功率输出。
  8. 根据权利要求7所述的方法,其特征在于,所述电池装置还包括电池,所述电池分别与所述控制器、所述指示模块和所述功率输出模块电性连接;
    所述方法还包括:
    所述控制器检测所述电池的电量;
    根据预先存储的指示信号与电量区间的对应关系,所述控制器确定与当前的电量所在的电量区间对应的第一指示信号;
    所述控制器控制所述指示模块指示所述第一指示信号。
  9. 根据权利要求7所述的方法,其特征在于,所述电池装置还包括电池,所述电池分别与所述控制器、所述指示模块和所述功率输出模块电性连接;
    所述当检测到雾化器与电池装置分离时,控制指示模块轮换输出不同的指示信号,包括:
    当检测到雾化器与电池装置分离时,所述控制器检测所述电池的当前电量;
    根据预先储存的电量区间与输出功率的对应关系,所述控制器确定当前电量所在的电量区间对应的输出功率集合,其中,所述输出功率集合中至少包括一个输出功率;
    根据所述指示信号与输出功率的对应关系,以及所述当前电量所在的电量区间对应的输出功率集合,所述控制器确定对应的指示信号集合,其中,所述指示信号集合中至少包括一种指示信号;
    所述控制器控制指示模块对确定出的指示信号集合内的指示信号进行轮换输出。
  10. 根据权利要求7所述的方法,其特征在于,所述雾化器的储液腔中设置有用于检测烟油的湿度传感器;当所述雾化器与所述电池装置处于连接状态时,所述湿度传感器与所述控制器电性连接,并且周期性向所述控制器发送湿度值;
    所述当检测到雾化器与电池装置分离时,控制所述指示模块轮换输出不同的指示信号,包括:
    当检测到所述雾化器与所述电池装置分离时,所述控制器判断所述雾化器与所述电池装置分离之前的最后一个周期接收到的湿度值与预设湿度阈值的关系,如果所述湿度值大于所述预设湿度阈值,则控制所述指示模块轮换输出不同的指示信号。
  11. 根据权利要求7所述的方法,其特征在于,所述当检测到雾化器与电池装置分离时,所述控制器控制指示模块轮换输出不同的指示信号,包括:
    当先检测到晃动信号,后检测到雾化器与电池装置分离时,所述控制器控制所述指示模块轮换输出不同的指示信号。
  12. 根据权利要求7所述的方法,其特征在于,所述方法还包括:
    当所述雾化器与所述电池装置处于连接状态,且检测到晃动信号时,所述控制器确定所述功率输出模块当前的输出功率,根据所述指示信号与输出功率 的对应关系,确定与所述功率输出模块当前的输出功率对应的第二指示信号;
    所述控制器控制所述指示模块发出所述第二指示信号。
  13. 一种调节电子烟功率的装置,其特征在于,所述装置包括:
    存储器和处理器;
    所述存储器中存储有至少一条程序指令;
    所述处理器,通过加载并执行所述至少一条程序指令以实现权利要求7至12中任一所述的调节电子烟功率的方法。
  14. 一种计算机可读存储介质,其特征在于,所述计算机可读存储介质中存储有一个或一个以上的指令,其特征在于,所述一个或一个以上的指令被电子烟内的处理器执行时实现权利要求7至12任一所述的调节电子烟功率的方法。
PCT/CN2018/098449 2017-08-21 2018-08-03 电子烟和调节电子烟功率的方法 WO2019037583A1 (zh)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP18848649.2A EP3673754B1 (en) 2017-08-21 2018-08-03 Electronic cigarette and method for adjusting power thereof
US16/641,228 US11350674B2 (en) 2017-08-21 2018-08-03 Electronic cigarette and method for adjusting power thereof

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201710721337.5 2017-08-21
CN201710721337.5A CN109419035B (zh) 2017-08-21 2017-08-21 电子烟和调节电子烟功率的方法

Publications (1)

Publication Number Publication Date
WO2019037583A1 true WO2019037583A1 (zh) 2019-02-28

Family

ID=65438387

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2018/098449 WO2019037583A1 (zh) 2017-08-21 2018-08-03 电子烟和调节电子烟功率的方法

Country Status (4)

Country Link
US (1) US11350674B2 (zh)
EP (1) EP3673754B1 (zh)
CN (1) CN109419035B (zh)
WO (1) WO2019037583A1 (zh)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112292046A (zh) * 2019-03-20 2021-01-29 韩国烟草人参公社 具有淹浸检测功能的气溶胶生成装置及其方法
CN112716056A (zh) * 2020-12-14 2021-04-30 深圳迪致科技术有限公司 用吸力大小控制输出功率的雾化器加热电路及控制方法
CN113017153A (zh) * 2021-03-09 2021-06-25 深圳市劳斯韦伯科技有限公司 气雾发生装置双模式切换的控制系统及其控制方法
GB2595736A (en) * 2020-06-05 2021-12-08 Nicoventures Trading Ltd Non-combustible aerosol provision device

Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105559148B (zh) * 2016-02-27 2018-08-28 卓尔悦欧洲控股有限公司 雾化器及其电子烟
CN111743209A (zh) * 2019-03-29 2020-10-09 常州市派腾电子技术服务有限公司 电子烟的控制方法和装置
CN111588097A (zh) * 2019-06-03 2020-08-28 深圳市艾维普思科技有限公司 一种电子烟的控制方法、存储介质以及电子烟
CN112998322B (zh) * 2019-12-20 2022-07-01 深圳市国科瑞芯科技有限公司 一种动态功率补偿方法及雾化式电子烟
CN111557481B (zh) * 2020-04-09 2023-11-21 中山市胜裕丰贸易有限公司 一种电子烟节能控制方法、装置及电子烟
CN111972716A (zh) * 2020-08-31 2020-11-24 深圳市斯永威科技有限公司 一种气溶胶发生器及其控制方法
CN112641131A (zh) * 2020-11-27 2021-04-13 上海烟草集团有限责任公司 一种过滤效果可控的液雾过滤烟具
WO2023004676A1 (zh) * 2021-07-29 2023-02-02 深圳麦克韦尔科技有限公司 气溶胶产生装置、控制方法、控制装置和可读存储介质

Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN203058294U (zh) * 2012-11-29 2013-07-17 杭州联声电子有限公司 电子烟
CN203058292U (zh) * 2012-10-10 2013-07-17 陈文� 一种带lcd电压及功率显示面板的电子烟
CN104049550A (zh) * 2014-06-19 2014-09-17 卓尔悦(常州)电子科技有限公司 多输出模式的电子烟的控制方法及装置
CN203872998U (zh) * 2014-03-07 2014-10-15 惠州市吉瑞科技有限公司 电子烟
CN104432537A (zh) * 2014-05-13 2015-03-25 冯林 电子烟
CN105212280A (zh) * 2015-11-04 2016-01-06 卓尔悦(常州)电子科技有限公司 电池装置、电子烟及其控制方法
CN106037007A (zh) * 2016-03-14 2016-10-26 陈楚辉 一种用于电子烟的温控组件
US20160366946A1 (en) * 2014-02-28 2016-12-22 Beyond Twenty Ltd. Electronic vaporiser system
CN106579563A (zh) * 2016-12-22 2017-04-26 常州市派腾电子技术服务有限公司 一种电子烟及其控制方法

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2014029078A1 (zh) * 2012-08-21 2014-02-27 Liu Qiuming 电子烟装置
CN205385867U (zh) * 2013-06-17 2016-07-20 吉瑞高新科技股份有限公司 电子烟
JP6543334B2 (ja) 2015-04-30 2019-07-10 日本たばこ産業株式会社 非燃焼型香味吸引器
CN105342017A (zh) * 2015-12-18 2016-02-24 颐中(青岛)实业有限公司 手自动一体式电子烟
CN106235419B (zh) * 2016-09-19 2023-10-27 深圳市康泓威科技有限公司 具有储液过渡腔的电子烟雾化器
WO2018218517A1 (zh) * 2017-05-31 2018-12-06 丁建军 一种电子烟雾化芯和雾化器

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN203058292U (zh) * 2012-10-10 2013-07-17 陈文� 一种带lcd电压及功率显示面板的电子烟
CN203058294U (zh) * 2012-11-29 2013-07-17 杭州联声电子有限公司 电子烟
US20160366946A1 (en) * 2014-02-28 2016-12-22 Beyond Twenty Ltd. Electronic vaporiser system
CN203872998U (zh) * 2014-03-07 2014-10-15 惠州市吉瑞科技有限公司 电子烟
CN104432537A (zh) * 2014-05-13 2015-03-25 冯林 电子烟
CN104049550A (zh) * 2014-06-19 2014-09-17 卓尔悦(常州)电子科技有限公司 多输出模式的电子烟的控制方法及装置
CN105212280A (zh) * 2015-11-04 2016-01-06 卓尔悦(常州)电子科技有限公司 电池装置、电子烟及其控制方法
CN106037007A (zh) * 2016-03-14 2016-10-26 陈楚辉 一种用于电子烟的温控组件
CN106579563A (zh) * 2016-12-22 2017-04-26 常州市派腾电子技术服务有限公司 一种电子烟及其控制方法

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See also references of EP3673754A4 *

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112292046A (zh) * 2019-03-20 2021-01-29 韩国烟草人参公社 具有淹浸检测功能的气溶胶生成装置及其方法
US11889870B2 (en) 2019-03-20 2024-02-06 Kt&G Corporation Aerosol generating device having flooding detecting function and method therefor
CN112292046B (zh) * 2019-03-20 2024-04-05 韩国烟草人参公社 气溶胶生成装置及其淹浸检测方法和计算机可读记录介质
GB2595736A (en) * 2020-06-05 2021-12-08 Nicoventures Trading Ltd Non-combustible aerosol provision device
CN112716056A (zh) * 2020-12-14 2021-04-30 深圳迪致科技术有限公司 用吸力大小控制输出功率的雾化器加热电路及控制方法
CN113017153A (zh) * 2021-03-09 2021-06-25 深圳市劳斯韦伯科技有限公司 气雾发生装置双模式切换的控制系统及其控制方法

Also Published As

Publication number Publication date
CN109419035B (zh) 2022-01-25
EP3673754A1 (en) 2020-07-01
US20200214358A1 (en) 2020-07-09
US11350674B2 (en) 2022-06-07
EP3673754B1 (en) 2023-05-10
EP3673754A4 (en) 2021-11-24
CN109419035A (zh) 2019-03-05

Similar Documents

Publication Publication Date Title
WO2019037583A1 (zh) 电子烟和调节电子烟功率的方法
CN205385867U (zh) 电子烟
WO2014029078A1 (zh) 电子烟装置
WO2016101248A1 (zh) 一种电子烟控制方法及电子烟
US9872519B2 (en) Battery pole, electronic cigarette using the battery pole, and method for identifying an atomizer of the electronic cigarette
TWI475926B (zh) 發光二極體系統
US10080272B2 (en) Electronic cigarette and electronic cigarette light emission control method
CN202890465U (zh) 电子烟的智能控制器
WO2011041423A2 (en) Self-contained, wearable light controller with wireless communication interface
AU2010202986A1 (en) Remote control and adjustment apparatus disposed in an energy saving lighting apparatus and a control system of the same
CN203662029U (zh) 一种电子烟
CN111588094A (zh) 电子雾化装置及其控制电路和控制方法
CN111557475A (zh) 电子雾化装置及其控制电路和控制方法
CN111743209A (zh) 电子烟的控制方法和装置
WO2019037404A1 (zh) 一种带自定义rgb调颜色功能的电子烟及其使用方法
US9844110B1 (en) Current adjustment apparatus for LED lighting fixture
TWI426820B (zh) 可調節發光亮度的照明裝置及調節方法
CN202135355U (zh) 照明控制系统
TW201616493A (zh) 動態隨機存取記憶體發光控制系統
CN207302591U (zh) 一种舞台设备信息显示系统
CN111887501A (zh) 模拟香烟燃烧效果的电子烟及其工作方法
WO2018219175A1 (zh) 电池电路、电池装置、电子烟和供电控制方法
CN109059675B (zh) 一种仿真电子鞭炮
WO2022006704A1 (zh) 模拟香烟燃烧效果的电子烟及其工作方法
WO2022241643A1 (zh) 一种电子雾化装置的驱动电路以及电子雾化装置

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 18848649

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

ENP Entry into the national phase

Ref document number: 2018848649

Country of ref document: EP

Effective date: 20200323