CN110464053B - Electronic cigarette control method and device and electronic cigarette - Google Patents

Electronic cigarette control method and device and electronic cigarette Download PDF

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Publication number
CN110464053B
CN110464053B CN201910756384.2A CN201910756384A CN110464053B CN 110464053 B CN110464053 B CN 110464053B CN 201910756384 A CN201910756384 A CN 201910756384A CN 110464053 B CN110464053 B CN 110464053B
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plugging
atomizer
power
action
host
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CN110464053A (en
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贺子龙
张东风
李建文
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Dongguan Mysmok Electronic Technology Co ltd
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Dongguan Mysmok Electronic Technology Co ltd
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    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers
    • G05B19/042Programme control other than numerical control, i.e. in sequence controllers or logic controllers using digital processors
    • G05B19/0423Input/output

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  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Automation & Control Theory (AREA)
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Abstract

The invention discloses an electronic cigarette control method, wherein the electronic cigarette comprises an atomizer and a host, the atomizer is installed on the host in a pluggable manner, and the electronic cigarette control method comprises the following steps: detecting the plugging state between the atomizer and the host to generate a plugging signal of the plugging action of the atomizer, obtaining the plugging times of the atomizer according to the plugging signal, and taking or converting the plugging times as a preset operation command. According to the invention, the plugging and unplugging actions between the atomizer and the host are detected, and the plugging and unplugging times are used as the operation command of the electronic cigarette, so that the electronic cigarette executes the corresponding actions according to the operation command, the control is simple, the press key is not required, and the misoperation is not easy. The invention also discloses a corresponding control device and an electronic cigarette.

Description

Electronic cigarette control method and device and electronic cigarette
Technical Field
The invention relates to the technical field of electronic cigarettes, in particular to a control method and device for an electronic cigarette with an atomizer and the electronic cigarette.
Background
In the CN201710708937.8 patent, a preset action event is detected by an acceleration sensor, and a shaking motion of the electronic cigarette is used as an operation command to control the electronic cigarette to execute a corresponding action.
Therefore, there is a need for an electronic cigarette control method that can solve the above problems.
Disclosure of Invention
The invention aims to provide an electronic cigarette control method, an electronic cigarette and a computer readable storage medium, which are simple to control and are not easy to operate mistakenly.
Another object of the present invention is to provide an electronic cigarette inserting and pulling control device and an electronic cigarette, which are simple to control and not easy to operate by mistake.
In order to achieve the purpose, the invention discloses an electronic cigarette control method, wherein the electronic cigarette comprises an atomizer and a host, the atomizer is installed on the host in a pluggable manner, and the electronic cigarette control method comprises the following steps: detecting the plugging state between the atomizer and the host to generate a plugging signal of the plugging action of the atomizer, taking a continuous plugging action and a continuous plugging action of the atomizer relative to the host as a plugging action, wherein the time interval between the continuous plugging action and the continuous plugging action is less than a preset interval time, and obtaining the plugging times of the atomizer according to the plugging signal; the preset form is internally provided with a comparison table of the plugging times and the operation commands, the plugging times are converted into corresponding power adjustment commands through the comparison table, and different plugging times correspond to different power adjustment commands of different power sizes.
Compared with the prior art, the invention has the advantages that the plugging and unplugging actions between the atomizer and the host are detected, and the plugging and unplugging times are used as the operation command of the electronic cigarette, so that the electronic cigarette executes the corresponding action according to the operation command, the control is simple, the press key is not required, and the misoperation is not easy.
Preferably, the step of obtaining the plugging times of the atomizer according to the plugging signal includes: obtaining the plugging times of the atomizer within preset time according to the plugging signal: when one plugging action is obtained, timing is started, and it is judged that several plugging actions are obtained within the preset time; or, obtaining the plugging times of plugging actions with plugging time intervals smaller than the preset interval time according to the plugging signals: obtaining the plugging times of plugging actions with plugging time intervals smaller than a preset interval time according to the plugging signals: when one plugging action is obtained, timing is started, whether a second plugging action is received within a preset interval time is judged, if yes, counting is carried out, and if not, plugging action detection is restarted.
Preferably, the specific step of generating the plugging signal of the plugging action of the atomizer includes: the power output end of the host is controlled to output high level, the voltage of the power output end of the host is collected through a collecting circuit, and the plugging state of the atomizer is judged by comparing the voltage of the power output end so as to generate a plugging signal.
Preferably, the electronic cigarette control method further comprises the steps of: and adjusting the output power of the power output end of the host according to the power adjustment command.
The invention also discloses an electronic cigarette, which comprises an atomizer and a host, wherein the atomizer is installed on the host in a pluggable manner, and is electrically connected with the power output end of the host when being inserted on the host.
The invention also discloses a computer readable storage medium comprising a computer program for use in conjunction with a computer having a memory, the computer program being executable by a processor to perform the electronic cigarette control method as described above.
The invention also discloses an electronic cigarette plugging and unplugging control device, which comprises an atomizer and a host, wherein the atomizer is installed on the host in a pluggable manner, the electronic cigarette plugging and unplugging control device comprises a control unit, the control unit detects the plugging and unplugging state between the atomizer and the host to generate a plugging and unplugging signal of the plugging and unplugging action of the atomizer, one continuous plugging and unplugging action and one continuous plugging and unplugging action of the atomizer relative to the host are taken as one plugging and unplugging action, the time interval between the one continuous plugging and unplugging action and the plugging action is less than a preset interval time, the plugging and unplugging times of the atomizer are obtained according to the plugging and unplugging signal, the plugging and unplugging times are converted into corresponding power adjustment commands, and different plugging and unplugging times correspond to different power adjustment commands.
Compared with the prior art, the invention has the advantages that the plugging and unplugging actions between the atomizer and the host are detected, and the plugging and unplugging times are used as the operation command of the electronic cigarette, so that the electronic cigarette executes the corresponding action according to the operation command, the control is simple, the press key is not required, and the misoperation is not easy.
Preferably, the control unit obtains the plugging and unplugging times of the atomizer within a preset time according to the plugging and unplugging signal: when one plugging action is obtained, timing is started, and it is judged that several plugging actions are obtained within the preset time; or obtaining the plugging times of plugging actions with plugging time intervals smaller than preset interval time according to the plugging signals: when one plugging action is obtained, timing is started, whether a second plugging action is received within a preset interval time is judged, if yes, counting is carried out, and if not, plugging action detection is restarted.
Preferably, the electronic cigarette plug control device further includes an acquisition circuit, a power adjustment circuit and a smoking trigger switch electrically connected to the control unit, respectively, the smoking trigger switch detects a smoking action and generates a trigger signal, the acquisition circuit acquires a voltage at a power output end of the host, the power adjustment circuit is connected between a power supply and the power output end of the host and adjusts an output power of the power output end, and the control unit controls the power adjustment circuit to be closed at a certain frequency when the trigger signal is not received, so that the power output end outputs a high level and determines a plug-pull state of the atomizer according to the voltage at the power output end to generate a plug-pull signal; and the control unit controls the power adjusting circuit to work according to the power adjusting command when receiving the trigger signal, so that the power output end of the host outputs output power corresponding to the plugging times to the atomizer.
Preferably, the control unit is connected to an acquisition circuit, the acquisition circuit acquires the voltage of the power output end of the host, and the control unit determines the plugging state of the atomizer according to the voltage of the power output end to generate a plugging signal.
Preferably, the electronic cigarette plugging and unplugging control device further comprises a power adjusting circuit, the power adjusting circuit is connected between the power supply and the power output end of the host and adjusts the output power of the power output end, the operation command is a power adjusting command, and the control unit controls the power adjusting circuit to work according to the power adjusting command, so that the power output end of the host outputs the output power corresponding to the plugging and unplugging times to the atomizer.
Specifically, the control unit converts the power adjustment command into a corresponding power control signal and transmits the corresponding power control signal to the power adjustment circuit to control the power adjustment circuit to operate.
The invention also discloses an electronic cigarette, which comprises an atomizer and a host, wherein the atomizer is installed on the host in a pluggable manner, and is electrically connected with the power output end of the host when inserted on the host, a power supply and a main processing module are installed in the host, the power supply supplies power to the main processing module, and the main processing module is the electronic cigarette plug control device.
Drawings
Figure 1 is a flow chart of the electronic cigarette control method of the present invention.
Fig. 2 and 3 are schematic diagrams of the atomizer of the electronic cigarette of the present invention being plugged into and unplugged from the main unit.
Figure 4 is a circuit control diagram of an e-cigarette in a first embodiment of the invention.
Figure 5 is a control diagram of part of the electronic circuit of the electronic cigarette in a second embodiment of the invention.
Detailed Description
In order to explain the technical contents, structural features, objects and effects of the present invention in detail, the following description is made in conjunction with the embodiments and the accompanying drawings.
Referring to fig. 1, the present invention discloses an electronic cigarette control method 200, and referring to fig. 2 and fig. 3, the electronic cigarette 100 includes an atomizer 11 and a host 12, the atomizer 11 is installed on the host 12 in a pluggable manner, and the electronic cigarette control method 200 includes: (21) detecting a plugging state between the atomizer and the host to generate a plugging signal of the plugging action of the atomizer, (22) obtaining plugging times of the atomizer according to the plugging signal, and taking or converting the plugging times into a preset operation command, in this embodiment, converting the plugging times into a preset power adjustment command.
The preset list is internally provided with a comparison table of the plugging times and the operation commands, and the plugging times are converted into the corresponding operation commands through the comparison table. Of course, the number of times of plugging and unplugging can be directly used as an operation command, and the electronic cigarette directly executes corresponding actions according to the number of times of plugging and unplugging.
The electronic cigarette control method 200 further comprises a step (23) of adjusting the output power of the power output terminal of the main machine according to the power adjustment command. Specifically, the electronic cigarette control method 200 also detects the smoking status of the electronic cigarette, and performs step (23) at the time of smoking. Of course, the number of times of insertion and extraction may be used as or converted into another control command, and at this time, in step (23), the electronic cigarette performs a corresponding action according to the operation command.
In this embodiment, in step (23), the power adjustment circuit is controlled to operate according to the power adjustment command: when the plugging times are once, the output power is adjusted to be the first power, when the plugging times are twice, the output power is adjusted to be the second power, when the plugging times are three, the output power is adjusted to be the third power, when the plugging times are four times or more, the invalid action is determined, the first power is larger than the second power and larger than the third power, or the first power is smaller than the second power and smaller than the third power, and the setting can be carried out according to the requirements. The relationship between the specific plugging times and the output power or other control commands is set by a technician as required.
In order to prevent the misoperation, in another preferred embodiment, one plugging and unplugging frequency is set as an ignore command, that is, if the plugging and unplugging frequency is only one time and does not correspond to any operation command, the plugging and unplugging frequency is only two times or more corresponding to the operation command. For example, the operation command is a power adjustment command, in step (23), the power adjustment circuit is controlled to operate according to the power adjustment command, when the plugging and unplugging are performed twice, the output power is adjusted to be the first power, when the plugging and unplugging are performed three times, the output power is adjusted to be the second power, when the plugging and unplugging are performed four times, the output power is adjusted to be the third power, the plugging and unplugging are performed five times or more, the invalid action is determined, the first power is greater than the second power and greater than the third power, or the first power is smaller than the second power and smaller than the third power, and the setting can be performed as required.
And taking a continuous pulling-out action and a continuous inserting-in action of the atomizer relative to the host machine as a pulling-in action, wherein the time interval between the continuous pulling-out action and the continuous inserting-in action is less than a preset interval time.
Wherein the step (22) specifically comprises: and obtaining the plugging times of the atomizer within a preset time according to the plugging signal, namely starting timing when one plugging action is obtained, judging that the plugging actions are obtained for several times within the preset time, and performing corresponding control according to the plugging times obtained within the preset time. Of course, the further steps may also be replaced by: and (3) obtaining the plugging times of plugging actions with plugging time intervals smaller than the preset interval time according to the plugging signals, namely starting timing when one plugging action is obtained, judging whether a second plugging action is received within the preset interval time, counting if yes, and returning to the step (21) if not.
The step (21) of generating the insertion and extraction signal of the insertion and extraction motion of the atomizer specifically includes: the voltage of the power output end of the host is acquired through an acquisition circuit, and the plugging state of the atomizer is judged by comparing the voltage of the power output end so as to generate a plugging signal. Specifically, in step (21): in this embodiment, the operation command is a power adjustment command, so in step (21), the smoking state of the electronic cigarette is also detected, and when no smoking occurs, the power output terminal is controlled to output a high level in a preset period, and the voltage of the power output terminal of the host is collected by the collecting circuit.
Of course, the plugging/unplugging state of the nebulizer may also be determined in other manners to generate the plugging/unplugging signal, for example, a contact switch is disposed on a plugging/unplugging contact portion between the nebulizer 11 and the host 12, the contact switch is triggered by receiving the plugging/unplugging of the nebulizer 11 relative to the host 12 to generate the proximity signal, and the plugging/unplugging state of the nebulizer is determined according to the proximity signal. Of course, the electromagnetic induction portion and the electromagnet may be disposed at the opposite position of the atomizer 11 and the main machine 12, and the inserting and pulling state between the atomizer 11 and the main machine 12 may be determined according to the magnitude and distribution of the magnetic field induced by the electromagnetic induction portion.
Wherein, the voltage of the power output end is compared, when the voltage of the power output end is at a high level (the voltage of the power output end is more than or equal to a preset voltage value), the atomizer is judged to be in a pull-out state relative to the host, when the voltage of the power output end is at a low level (the voltage of the power output end is less than a preset voltage value), the atomizer is judged to be in an insertion state relative to the host, then judging that one pulling-out action is executed when a pulse signal of low level-high level is generated, judging that one insertion action is executed when a high-low level pulse signal is generated, continuously executing one pulling action and considering that the insertion action is recorded as executing one pulling action, generating one pulling signal, namely, when a continuous pulling-out action and a continuous inserting action are detected, a plugging-in action is judged to be executed.
In another embodiment, only the insertion motion may be detected, and the plugging motion is determined by the number of times of the insertion motion, that is, a detected insertion motion is recorded as a single plugging motion, and at this time, in order to prevent an erroneous operation, the first insertion motion may be ignored, or a single plugging motion is set as a null command.
Referring to fig. 2 to 3, the present invention discloses an electronic cigarette 100, including an atomizer 11 and a host 12, wherein the atomizer 11 is removably installed on the host 12, and the atomizer 11 is electrically connected to a power output terminal of the host 12 when being inserted into the host 12, and one or more processors, memories, and one or more programs are installed in the host 12, and the programs are called by the processors to execute the electronic cigarette control method 200.
Referring to fig. 2 to 4, the present invention discloses an electronic cigarette 100, including an atomizer 11 and a host 12, wherein the atomizer 11 is installed on the host 12 in a pluggable manner, and when the atomizer 11 is inserted into the host 12, conductive terminals b and d of the atomizer 11 are electrically connected to power output terminals a and c of the host 12, a power supply 121 and a main processing module are installed in the host 11, the power supply 121 supplies power to the main processing module, the main processing module includes a control unit 122, the control unit 122 detects a plugging state between the atomizer 11 and the host 12 to generate a plugging signal of the plugging action of the atomizer, obtains the plugging times of the atomizer 11 according to the plugging signal, and converts the plugging times into a preset operation command.
The preset form is internally provided with a comparison table of the plugging times and the operation commands, and the control unit 122 converts the plugging times into the corresponding operation commands through the comparison table. Of course, the control unit 122 may directly use the plugging times as the operation command, and the electronic cigarette directly executes the corresponding action according to the plugging times.
The atomizer 11 is used as a one-time plugging and unplugging action relative to the main machine 12, and a time interval between the two consecutive plugging and unplugging actions is less than a preset interval time.
The control unit 122 obtains the plugging times of the atomizer within a preset time according to the plugging signal. Of course, the control unit 122 may also obtain the plugging times of the plugging actions with the plugging time interval smaller than the preset interval time according to the plugging signal.
The control unit 122 obtains the plugging times of the atomizer 11 within a preset time according to the plugging signal, that is, when a plugging action is obtained, the control unit 122 starts to time, and determines that several plugging actions are obtained within the preset time, and performs corresponding control according to the plugging times obtained within the preset time. Certainly, in another embodiment, the control unit 122 obtains the plugging times of the plugging actions with the plugging time interval smaller than the preset interval time according to the plugging signal, that is, when one plugging action is obtained, the control unit 122 starts to time, and determines whether a second plugging action is received within the preset interval time, if so, the count is performed, and if not, the plugging action detection is restarted.
Referring to fig. 4, the main processing module further includes an acquisition circuit 123, the acquisition circuit 123 acquires a voltage of the power output end a of the host 12, and the control unit 122 determines the plugging state of the atomizer 11 according to the voltage of the power output end a to generate a plugging signal.
Specifically, after the atomizer 11 is inserted into the host 12, the voltage of the power output end a is pulled down, so the control unit 122 controls the power output end a to output a high level, obtains and compares the voltage of the power output end a, determines that the atomizer 11 is in a pull-out state relative to the host when the voltage of the power output end a is at the high level (the voltage of the power output end is greater than or equal to a preset voltage value), determines that the atomizer 11 is in a plug-in state relative to the host 12 when the voltage of the power output end a is at the low level (the voltage of the power output end a is less than the preset voltage value), then determines that a pull-out action is performed when a pulse signal of low level-high level occurs, determines that a plug-in action is performed when a pulse signal of high level-low level occurs, determines that a plug-in action is performed continuously, and considers that a plug-in action is performed as a plug-in action, that is, a single plugging signal is generated, and the control unit 122 determines that a single plugging operation is performed when a single continuous plugging operation and a single continuous plugging operation are detected.
Of course, in another embodiment, the control unit 122 may only detect the insertion motion, and determine the plugging motion by the number of times of the insertion motion, that is, the control unit 122 detects one insertion motion and marks as one plugging motion, and at this time, in order to prevent an incorrect operation, the control unit 122 may ignore the first insertion motion, or set one plugging motion as a null command. Of course, one insertion motion may be regarded as one insertion motion and used as one operation command, for example, a power adjustment command as a default output power.
Of course, the inserting and pulling state of the atomizer may be determined in other manners to generate the inserting and pulling signal, for example, a contact switch is disposed on an inserting and pulling contact portion between the atomizer 11 and the host 12, the contact switch is triggered by receiving the inserting and pulling of the atomizer 11 relative to the host 12 to generate the proximity signal, and the inserting and pulling state of the atomizer is determined according to the proximity signal. Of course, the electromagnetic induction portion and the electromagnet may be disposed at the opposite position of the atomizer 11 and the main machine 12, and the inserting and pulling state between the atomizer 11 and the main machine 12 may be determined according to the magnitude and distribution of the magnetic field induced by the electromagnetic induction portion.
Referring to fig. 4, the main processing module further includes a power adjusting circuit 124, the power adjusting circuit 124 is connected between the power supply 121 and the power output end a of the host 12 and adjusts the output power of the power output end a, the operation command is a power adjusting command, and the control unit 122 controls the power adjusting circuit to operate according to the power adjusting command, so that the power output end of the host outputs the output power corresponding to the plugging times to the atomizer.
Specifically, the control unit 122 converts the power adjustment command into a corresponding power control signal and transmits the corresponding power control signal to the power adjustment circuit 124 to control the power adjustment circuit 124 to operate. In this embodiment, the power adjusting circuit 124 includes a power switch, and the power control signal is a pulse signal with a corresponding frequency.
Referring to fig. 4, the main processing module further includes a smoking trigger switch 126, which detects whether a user smokes, and if so, generates a trigger signal, and the control unit 122 starts to operate according to the trigger signal. The puff trigger switch 126 is an airflow switch or an air pressure switch disposed in the airflow path of the host.
Referring to fig. 4, the main processing module further includes a display module 125, and the control unit 122 controls the display module 125 to display the operation state.
In this embodiment, the control unit 122 controls the power adjustment circuit to operate according to the power adjustment command, the output power is adjusted to the first power when the plugging frequency is one, the output power is adjusted to the second power when the plugging frequency is two, the output power is adjusted to the third power when the plugging frequency is three, and the first power is greater than the second power and greater than the third power or the first power is less than the second power and less than the third power when the plugging frequency is four times or more, and is determined as an invalid action. The relationship between the specific number of times of plugging and unplugging and the output power or other control commands is set by a technician according to the needs.
In order to prevent the misoperation, in another preferred embodiment, one plugging and unplugging frequency is set as an ignore command, that is, if the plugging and unplugging frequency is only one time and does not correspond to any operation command, the plugging and unplugging frequency is only two times or more corresponding to the operation command. For example, the operation command is a power adjustment command, the control unit 122 controls the power adjustment circuit to operate according to the power adjustment command, adjusts the output power to the first power when plugging and unplugging are performed twice, adjusts the output power to the second power when plugging and unplugging are performed three times, adjusts the output power to the third power when plugging and unplugging are performed four times, and determines that the operation is invalid when plugging and unplugging are performed five or more times, wherein the first power is greater than the second power and greater than the third power, or the first power is smaller than the second power and smaller than the third power, and can be set as needed.
In operation, the electronic cigarette 100 is turned on, and when smoking begins, the smoking trigger switch 126 detects a smoking action and generates a trigger signal, and the control unit 122 controls the power adjustment circuit 124 to be turned on so that the power output terminals a and c output corresponding output power. When the electronic cigarette 100 is turned on and no cigarette is smoked, the control unit 122 controls the power adjustment circuit 124 to be turned on at a certain period so that the power output end a outputs a high level, receives the acquisition voltage acquired by the acquisition circuit 123, judges the plugging and unplugging state of the atomizer 11 relative to the host 12 according to the acquisition voltage, detects the plugging and unplugging times of the atomizer 11, adjusts the corresponding output power according to the plugging and unplugging times so as to output the output power corresponding to the plugging and unplugging times during smoking, and returns to continue monitoring if an operation command corresponding to the plugging and unplugging times is not received at the moment.
Referring to fig. 5, in a second embodiment of the present invention, based on the first embodiment, the main processing module further includes an auxiliary detection unit 127, where the auxiliary detection unit 127 includes a switch circuit connected in series between the power supply 121 and the power output end a, and the control unit 122 transmits a detection signal to a control end of the switch circuit to control the switch circuit to close, so that the power output end a is connected to the power supply. When the electronic cigarette 100 is opened and no smoking is performed, the main processing module transmits a detection signal to the control end of the switch circuit to control the switch circuit to be closed in a certain period, so that the acquisition circuit 123 acquires acquisition voltage capable of detecting the plugging state, and when the electronic cigarette 100 is opened and smoking is performed, the main processing module controls the switch circuit to be disconnected. Unlike the first embodiment, in this embodiment, when the cigarette is turned on and does not smoke, the control unit 122 controls the power adjusting circuit 124 to be turned off.
Referring to fig. 5, in the present embodiment, the auxiliary detecting unit 127 further includes a first voltage dividing circuit composed of a first resistor R1 and a second resistor R2, the first voltage dividing circuit is connected in series between the detecting signal e and the power supply 121, an output terminal of the first voltage dividing circuit is connected to a control terminal of the switching circuit, and the switching circuit includes a detecting switch Q2 and a third resistor R3 connected in series between the power supply 121 and the power output terminal a.
The power adjusting circuit 124 includes a fourth resistor R4, a fifth resistor R5, and a power switch Q1, the fourth resistor R4 and the fifth resistor R5 are connected in series to form a second voltage dividing circuit, the second voltage dividing circuit is connected in series between the detection signal e and the power supply 121, and an output end of the second voltage dividing circuit is connected to a control end of the power switch Q1.
The sampling circuit 123 includes a voltage sampling circuit composed of a sixth resistor R6 and a seventh resistor R7 connected in series between the power output terminals a, c, and an output point for outputting the sampled voltage is formed between the sixth resistor R6 and the seventh resistor R7 to be connected to the control unit 122.
The above disclosure is only for the preferred embodiment of the present invention, and it should be understood that the present invention is not limited thereto, and the invention is not limited to the above disclosure.

Claims (7)

1. The utility model provides an electron cigarette control method, the electron cigarette includes atomizer and host computer, the atomizer can install on the host computer by plug-in, its characterized in that: the method comprises the following steps: detect atomizer with plug state between the host computer is in order to generate the plug signal of atomizer plug action, will the atomizer for a continuous plug action and the insertion action of host computer are as a plug action, and the time interval between a continuous plug action and the insertion action is less than a preset interval time, according to the plug number of times of atomizer is obtained to the plug signal, specifically includes:
obtaining the plugging times of the atomizer within a preset time according to the plugging signal: when one plugging action is obtained, timing is started, and it is judged that several plugging actions are obtained within the preset time;
or, obtaining the plugging times of plugging actions with plugging time intervals smaller than a preset interval time according to the plugging signals: when one plugging action is obtained, timing is started, whether a second plugging action is received within a preset interval time is judged, if yes, counting is carried out, and if not, plugging action detection is restarted;
the preset form is internally provided with a comparison table of the plugging times and the operation commands, the plugging times are converted into corresponding power adjustment commands through the comparison table, and different plugging times correspond to different power adjustment commands of different power sizes.
2. The electronic cigarette control method of claim 1, wherein: the specific steps of generating the plugging signal of the plugging action of the atomizer comprise: the power output end of the host is controlled to output high level, the voltage of the power output end of the host is collected through a collecting circuit, and the plugging state of the atomizer is judged by comparing the voltage of the power output end so as to generate a plugging signal.
3. The electronic cigarette control method of claim 1, wherein: further comprising the steps of: and adjusting the output power of the power output end of the host according to the power adjustment command.
4. An electronic cigarette comprising a nebulizer and a host, wherein the nebulizer is removably mounted on the host, and the nebulizer is electrically connected to a power output terminal of the host when mounted on the host, wherein the host has one or more processors, a memory, and one or more programs installed therein, and the programs are invoked by the processors to perform the electronic cigarette control method according to any one of claims 1 to 3.
5. The utility model provides an electron cigarette plug controlling means, the electron cigarette includes atomizer and host computer, the atomizer can install in plug on the host computer, its characterized in that: electronic cigarette plug controlling means includes the control unit, the control unit detects the atomizer with plug state between the host computer is in order to generate the plug signal of atomizer plug action, will the atomizer for continuous one of host computer is extracted the action and is inserted the action as a plug action, and continuous one is extracted the action and is inserted the time interval between the action and be less than a preset interval time, the control unit basis the plug number of times of atomizer is obtained to the plug signal, specifically includes:
the control unit obtains the plugging times of the atomizer within a preset time according to the plugging signal: when one plugging action is obtained, timing is started, and it is judged that several plugging actions are obtained within the preset time;
or, the control unit obtains the plugging times of the plugging action with the plugging time interval smaller than a preset interval time according to the plugging signal: when one plugging action is obtained, timing is started, whether a second plugging action is received within a preset interval time is judged, if yes, counting is carried out, and if not, plugging action detection is restarted;
the control unit also converts the plugging times into corresponding power adjustment commands, and the different plugging times correspond to different power adjustment commands of different power sizes.
6. The electronic cigarette insertion and extraction control device of claim 5, wherein: the control unit controls the power adjusting circuit to be closed in a certain period to enable the power output end to output a high level when the control unit does not receive the trigger signal, and judges the plugging state of the atomizer according to the voltage of the power output end to generate a plugging signal; and the control unit controls the power adjusting circuit to work according to the power adjusting command when receiving the trigger signal, so that the power output end of the host outputs output power corresponding to the plugging times to the atomizer.
7. An electronic cigarette, comprising an atomizer and a host, wherein the atomizer is installed on the host in a pluggable manner, and when the atomizer is installed on the host in an plugged manner, the atomizer is electrically connected with a power output end of the host, a power supply and a main processing module are installed in the host, the power supply supplies power to the main processing module, and the main processing module is the electronic cigarette plugging control device according to any one of claims 5 to 6.
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CN111280487A (en) * 2020-02-25 2020-06-16 深圳麦克韦尔科技有限公司 Electronic atomization device and atomizer control device
CN214759134U (en) * 2020-11-30 2021-11-19 深圳雾芯科技有限公司 Electronic atomization device, electronic atomization device main body and atomized material storage device
CN112998328A (en) * 2021-03-27 2021-06-22 深圳新琦隆科技有限公司 Control method and device of atomization equipment and computer equipment
CN113576035A (en) * 2021-07-13 2021-11-02 深圳市赛尔美电子科技有限公司 Electronic atomization equipment and preheating method thereof
CN116548679A (en) * 2022-01-27 2023-08-08 深圳雾芯科技有限公司 Starting method of electronic atomization device and electronic atomization device

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