CN107397255B - Atomizer and atomizer information transmission method of electronic cigarette - Google Patents

Atomizer and atomizer information transmission method of electronic cigarette Download PDF

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Publication number
CN107397255B
CN107397255B CN201610335306.1A CN201610335306A CN107397255B CN 107397255 B CN107397255 B CN 107397255B CN 201610335306 A CN201610335306 A CN 201610335306A CN 107397255 B CN107397255 B CN 107397255B
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atomizer
storage unit
controller
component
oil guide
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CN107397255A (en
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张慧
李祥林
陈超
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Shanghai Tobacco Group Co Ltd
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Shanghai Tobacco Group Co Ltd
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Abstract

The invention provides an atomizer and an atomizer information transmission method of an electronic cigarette, wherein the atomizer comprises a shell, two ends of the shell are respectively provided with a suction nozzle and an interface, and an oil storage component, an atomization component, a support piece and a storage unit are arranged in the shell; the support piece is connected with the atomizing component; the oil storage part is coated on the support piece and is contacted with the atomizing part; the support separates the oil storage part from the storage unit; the interface is provided with a power supply part electrically connected with the atomizing component and an information transmission part electrically connected with the storage unit. The invention enables the atomizer to store atomizer information; the support piece separates the oil storage component from the storage unit, so that tobacco tar in the oil storage component is effectively prevented from flowing onto the storage unit, and the use safety of the storage unit is ensured; the controller can receive the atomizer information from the storage unit, and can modify the atomizer information in the storage unit.

Description

Atomizer and atomizer information transmission method of electronic cigarette
Technical Field
The invention relates to the field of electronic cigarettes, in particular to an atomizer and an atomizer information transmission method of the electronic cigarettes.
Background
With the growing interest in health, people are aware that traditional cigarettes have a certain harm to health, and therefore, products called "electronic cigarettes" are produced, and electronic cigarettes are used as substitutes for traditional cigarettes. The electronic cigarette products in the current market are devices for atomizing tobacco tar through a power supply driving atomizer to form simulated cigarette smoke. Compared with the traditional cigarettes, the electronic cigarette meets the physiological needs of users and avoids harmful substances such as tar, carbon monoxide and the like brought by the traditional cigarettes.
The Chinese patent of the invention, an atomized electronic cigarette, with the application number of 200720148285.9, comprises a battery assembly, an atomization assembly, a cigarette bottle assembly, a hollow integrally-formed shell and an air hole penetrating through the shell. The electronic cigarette has simple functions, can only meet the suction requirement of users, has no other functions and has poor user experience.
The Chinese patent application No. 201120266630.5 discloses an electronic cigarette, which is provided with an LED indicator lamp for indicating the use of the electronic cigarette, a data and a chart for storing and generating the use of the electronic cigarette and a storage device for indicating the electric quantity of a battery of the electronic cigarette, and can monitor the water mist inhalation quantity of a user of the electronic cigarette. The electronic cigarette has certain progress in function, and the user experience is improved. However, in this patent, the storage device is disposed in the control unit, not in the atomizer, and the storage device disposed in the control unit cannot store some data related to the atomizer, so that the user's needs cannot be fully satisfied due to different performances of different atomizers.
Disclosure of Invention
In view of the above-mentioned drawbacks of the prior art, an object of the present invention is to provide an atomizer and an atomizer information transmission method of an electronic cigarette, which are used for solving the above-mentioned problems in the prior art.
In order to solve the technical problems, the invention provides an atomizer, which comprises a shell, wherein two ends of the shell are respectively provided with a suction nozzle and an interface, an oil storage component and an atomization component are arranged in the shell, and a support piece and a storage unit are also arranged in the shell; the support piece is connected with the atomizing component; the oil storage component is coated on the supporting piece, and the oil storage component is in contact with the atomizing component; the support member separates the oil storage member from the storage unit; the interface is provided with a power supply part electrically connected with the atomizing component and an information transmission part electrically connected with the storage unit.
Because the storage unit is arranged in the atomizers, each atomizer can store respective atomizer information, the atomizers are connected with the matched control component through the interfaces, and the atomizer information stored in the storage unit can be transmitted to the control component through the information transmission part; separate the oil storage part with the storage unit through support piece, can prevent that the tobacco tar in the oil storage part from flowing to the storage unit, damage the storage unit, guaranteed the safe handling of storage unit.
Preferably, the atomization component comprises an oil guide piece and a heating piece, the oil guide piece comprises an oil guide body, two ends of the oil guide body extend out of a first oil guide rod and a second oil guide rod respectively, and the first oil guide rod and the second oil guide rod are inserted into the oil storage component; the heating piece is arranged on the oil guide body and is connected with the power supply part on the interface. The first oil guide rod and the second oil guide rod conduct tobacco tar in the oil storage component to the oil guide body, electric energy transmitted by the power supply part enables the heating element to emit heat, and the heat of the heating element enables the tobacco tar on the oil guide body to emit to form smoke for a user to suck.
Further, an accommodating chamber is formed at one end of the support member, which is close to the suction nozzle, and the storage unit is inserted into the accommodating chamber. The structure enables the storage unit to be positioned inside the support, and effectively separates the storage unit from the oil storage component coated outside the support.
Still further, the first oil guide rod and the second oil guide rod of the oil guide member are sleeved outside one end, close to the suction nozzle, of the support member, and the storage unit is connected with the oil guide body. The first oil guide rod and the second oil guide rod are sleeved outside the support piece, so that the oil guide piece is stably connected with the support piece; the storage unit is connected with the oil guide body, so that the storage unit can be firmly connected with the oil guide piece.
Further, the support piece comprises a baffle part, the baffle part separates the inside of the shell, the two sides of the baffle part are respectively provided with the storage unit and the oil storage part, one side of the baffle part, which is provided with the support body, is connected with the oil guide body, and the oil storage part is coated on the support body. The baffle part divides the inside of the shell into two independent chambers, the storage unit and the oil storage part can be respectively positioned in the two independent chambers, tobacco tar of the oil storage part can not flow onto the storage unit, and after the oil storage part is heated by the oil guide body, the tobacco tar can not enter the chamber where the storage unit is positioned, so that adverse effect of an atomization process on the storage unit is reduced.
The invention also relates to an atomizer information transmission method of the electronic cigarette, the electronic cigarette comprises a control component, and an interface of the atomizer is connected with the control component; the control part includes: a controller, a power supply and a switch element electrically connected with the controller; the controller performs data transmission with the storage unit through an information transmission part of the interface, and the power supply is electrically connected with a power supply part of the interface; and the storage unit stores atomizer information, wherein the atomizer information comprises an atomizer identification code, suction residual information and tobacco tar information. The controller can receive the atomizer information from the storage unit and can modify the atomizer information in the storage unit; the controller controls the power supply and the switch piece, and the power supply supplies power to the heating piece through the power supply part.
Preferably, the controller is further electrically connected with a matching prompt component, and the controller identifies the atomizer identification code transmitted by the storage unit, so as to control the matching prompt component to display the matching condition of the atomizer and the control component. When the atomizer identification code of the received storage unit is not identified by the controller, the atomizer is not matched with the control part, and a matching prompting part prompts a non-matching prompting signal; when the atomizer identification code of the received storage unit passes through the identification of the atomizer identification code, the atomizer is matched with the control part, and the matching prompting part does not prompt.
Preferably, the switch piece is a pneumatic switch, the suction remaining information is a suction remaining port number, and the controller modifies and reads the suction remaining port number according to the starting times of the pneumatic switch. When the user sucks once, the pneumatic switch is started once, the atomization component performs atomization operation once, the controller modifies the residual suction port number according to the starting times of the pneumatic switch, and then the data of the modified residual suction port number is read.
Preferably, the switch member is a manual switch, the suction remaining information is a suction remaining time, and the controller modifies and reads the suction remaining time according to an on time of the manual switch. The manual switch is turned on, the controller controls the power supply to supply power to the heating element, the controller modifies the residual pumping time according to the time when the user presses the manual switch, and then the modified residual pumping time is read.
Preferably, the controller is further electrically connected to a data receiving unit, and the atomizer information received in the controller is transmitted to the data receiving unit. The controller can retransmit the received nebulizer information to a data receiving component that can display or count the nebulizer information.
Preferably, the storage unit is integrated with a temperature detection module electrically connected with the controller, and the controller receives the temperature measured by the temperature detection module, so as to control the power supply. The temperature can continuously rise in the atomization process of the atomizer, and when the temperature value of the shell or the circuit board measured by the temperature detection module is received by the controller and reaches a preset limit value, the controller controls the power supply to stop supplying power to the heating element, so that the heating element stops heating.
Preferably, the tobacco tar information includes nicotine concentration and tobacco tar taste.
The storage unit is arranged in the atomizer, so that the atomizer can store information of the atomizer; the support piece separates the oil storage component from the storage unit, so that tobacco tar in the oil storage component is effectively prevented from flowing onto the storage unit, and the use safety of the storage unit is ensured; the atomizer is connected with the control part, and the controller can receive the information of the atomizer from the storage unit so as to transmit the information of the atomizer to other data receiving parts; the controller can also modify the atomizer information in the storage unit so as to control the heating element of the atomizer according to the residual atomization amount; compared with the existing atomizer, the electronic cigarette adopting the atomizer can realize more functions.
Drawings
Fig. 1 is a schematic view showing the internal structure of the atomizer of example 1.
Fig. 2 shows a schematic structural diagram of the atomizer of example 1 at the interface.
Fig. 3 is a schematic view showing a structure in which a storage unit of the atomizer of embodiment 1 is inserted into a support.
Fig. 4 shows a schematic structural view of the accommodating chamber of the support member of the atomizer of embodiment 1.
Fig. 5 is a schematic structural diagram of an electronic cigarette in embodiment 1.
Fig. 6 is a schematic view showing the internal structure of the atomizer of example 2.
Fig. 7 shows a flowchart of the operation of the electronic cigarette of embodiment 1 under the control of the controller.
Description of the reference numerals
100. Shell body
200. Suction nozzle
201. Air outlet
300. Interface
301. Air inlet
310. Power supply unit
311. Positive electrode
312. Negative electrode
320. Information transmission unit
400. Oil storage component
500. Atomizing component
510. Oil guide
511. Oil guiding body
512. First oil guide rod
513. Second oil guide rod
20. Air flow channel
520. Heating element
600. Support member
601. Axial through hole
610. Accommodating chamber
611. An opening
612. Groove
620. Baffle part
630. Support body
700. Memory cell
710. Circuit board
720. Memory chip
801. Control housing
810. Controller for controlling a power supply
820. Power supply
830. Switch piece
840. Matching prompt component
850. Data receiving unit
860. Temperature detection module
870. Atomization prompt component
Detailed Description
Further advantages and effects of the present invention will become apparent to those skilled in the art from the disclosure of the present invention, which is described by the following specific examples.
Please refer to the accompanying drawings. It should be understood that the structures, proportions, sizes, etc. shown in the drawings are for illustration purposes only and should not be construed as limiting the invention to the extent that it can be practiced, since modifications, changes in the proportions, or otherwise, used in the practice of the invention, are not intended to be critical to the essential characteristics of the invention, but are intended to fall within the spirit and scope of the invention. Also, the terms such as "upper," "lower," "left," "right," "middle," and "a" and the like recited in the present specification are merely for descriptive purposes and are not intended to limit the scope of the invention, but are intended to provide relative positional changes or modifications without materially altering the technical context in which the invention may be practiced.
Example 1
As shown in fig. 1 to 4, the atomizer of the present embodiment includes a housing 100, both ends of the housing 100 are respectively provided with a suction nozzle 200 and an interface 300, an oil storage part 400 and an atomizing part 500 are provided inside the housing 100, and a support 600 and a storage unit 700 are also provided inside the housing 100; the support 600 is connected with the atomizing member 500; the oil storage part 400 is coated on the supporter 600, and the oil storage part 400 is in contact with the atomizing part 500; the supporter 600 separates the oil storage part 400 from the storage unit 700; the interface 300 is provided with a power supply unit 310 electrically connected to the atomizing member 500 and an information transmission unit 320 electrically connected to the storage unit 700.
A storage unit 700 is provided in each atomizer, each atomizer being capable of storing respective atomizer information including an atomizer identification code, suction remaining information, and tobacco tar information including a nicotine concentration and a tobacco tar taste; the nebulizer is connected with the matched control part through the interface 300, and the nebulizer information stored in the storage unit 700 can be transmitted to the control part through the information transmission part 320; separating the oil storage part 400 from the storage unit 700 through the support 600 can prevent the tobacco tar in the oil storage part 400 from flowing to the storage unit 700, damage the storage unit 700, and ensure safe use of the storage unit 700.
In this embodiment, the suction nozzle 200 is provided with the air outlet 201, the interface 300 is provided with the air inlet 301, and when a user sucks on the suction nozzle 200, air enters from the air inlet 301, and then carries the smoke volatilized by the atomizing component 500, and enters into the mouth of the user from the air outlet 201. The memory unit 700 includes a circuit board 710 and a memory chip 720 disposed on the circuit board 710, and the information transmission part 320 is electrically connected to the circuit board 710. The memory chip 720 stores therein nebulizer information, which is transmitted to the control part through the information transmission part 320. The information transmission part 320 is a data transmission electrode, the power supply part 310 includes a positive electrode 311 and a negative electrode 312, and the power supply part 310 supplies power to the atomizing member 500.
The atomizing member 500 includes an oil guide 510 and a heating member 520, the oil guide 510 includes an oil guide body 511, two ends of the oil guide body 511 extend out of a first oil guide rod 512 and a second oil guide rod 513 respectively, the first oil guide rod 512 and the second oil guide rod 513 are arranged in parallel, and the first oil guide rod 512 and the second oil guide rod 513 are both inserted into the oil storage member 400; the heating element 520 is disposed on the oil guiding body 511, and the heating element 520 is connected to the power supply portion 310 on the interface 300. The first oil guide rod 512 and the second oil guide rod 513 conduct the tobacco tar in the oil storage component 400 to the oil guide body 511, the electric energy transmitted by the power supply part 310 enables the heating part 520 to emit heat, and the heat of the heating part 520 enables the tobacco tar on the oil guide body 511 to emit to form smoke for the user to suck.
The support 600 is provided at one end near the suction nozzle 200 with a receiving chamber 610, an opening 611 of the receiving chamber 610 communicates with the outside of the support 600, and the storage unit 700 is inserted into the receiving chamber 610 from the opening 611. This structure allows the storage unit 700 to be located inside the support 600, effectively separating the storage unit 700 from the oil storage member 400 coated outside the support 600.
In this embodiment, two opposite grooves 612 are further formed on the inner wall of the accommodating chamber 610, and the circuit board 710 is inserted into the grooves 612, so that the position of the circuit board 710 in the accommodating chamber 610 is fixed. The support 600 is cylindrical, the support 600 and the interface 300 are integrally formed, and the support 600 is further provided with an axial through hole 601; the axial through hole 601 is coaxial with the air inlet 301, forming the air flow passage 20; the thickness of the circuit board 710 is smaller than the diameter of the axial through hole 601, and air flows to the outside of the supporter 600 through the air flow path 20 and the circuit board 710.
In order to stably connect the oil guide 510 with the supporter 600, the first and second oil guide rods 512 and 513 of the oil guide 510 are sleeved outside one end of the supporter 600 near the suction nozzle 200; to enable the circuit board 710 to be firmly connected with the oil guide 510, one end of the circuit board 710 is connected with the oil guide body 511.
As shown in fig. 5 and 7, in the atomizer information transmission method of the electronic cigarette of the present embodiment, the electronic cigarette includes a control unit, the control unit is disposed in a control housing 801, and an interface 300 of the atomizer is connected with the control unit; the control part includes: a controller 810, a power supply 820 electrically connected to the controller 810, and a switching element 830; the controller 810 performs data transmission with the storage unit 700 through the information transmission part 320 of the interface 300, and the power supply 820 is electrically connected with the power supply part 310 of the interface 300; the storage unit 700 stores therein nebulizer information including a nebulizer identification code, suction remaining information, and tobacco tar information. The controller 810 can receive nebulizer information from the storage unit 700, and the controller 810 can also modify the nebulizer information in the storage unit 700; the controller 810 controls the power supply 820 and the switching member 830, and the power supply 820 supplies power to the heat generating member 520 through the power supply part 310.
The controller 810 is further electrically connected to a matching prompt unit 840, and the controller 810 recognizes the atomizer identification code transmitted by the storage unit 700, so as to control the matching prompt unit 840 to display the matching condition of the atomizer and the control unit.
The atomizer identification code is an encrypted data string and is used for identifying the atomizer by the control component, when the atomizer passes the identification, the atomizer is matched with the control component, and the controller 810 of the control component supplies power to the heating element 520 through the positive electrode 311 and the negative electrode 312 to heat so as to promote the atomization of the tobacco tar in the oil storage component 400; when the control part does not recognize the atomizer, the atomizer is not matched with the control part, and the control part controls the matching prompting part 840 to send a prompting signal to prompt a user to replace the atomizer; the control part has the identification function of the atomizer, so that the electronic cigarette product has a certain anti-counterfeiting function. When the atomizer identification code of the received storage unit passes through the identification of the atomizer identification code, the atomizer is matched with the control part, and the matching prompting part does not prompt.
When the switching part 830 is a pneumatic switch, the suction remaining information is the suction remaining number of ports, and the controller 810 modifies and reads the suction remaining number of ports according to the number of times the pneumatic switch is actuated. When the user sucks the cigarette once, the pneumatic switch is started once, a signal for starting the pneumatic switch is transmitted to the controller 810, the controller 810 controls the heating piece 520 to heat, and the heat of the heating piece 520 atomizes the tobacco tar on the oil guide piece 510; after each atomization is finished, the controller 810 can modify and read the number of the remaining suction ports in the storage unit 700 through the data transmission electrode, and when the controller 810 judges that the number of the remaining suction ports is lower than the preset lowest number of the remaining suction ports in the controller 810, the controller 810 controls the atomization prompting component 870 arranged on the control component to be opened so as to prompt a user to replace the atomizer or add tobacco tar.
When the switching part 830 is a manual switch, the pumping remaining information is pumping remaining time, and the controller 810 modifies and reads the pumping remaining time according to the on time of the manual switch. The manual switch is turned on, and the controller 810 controls the power supply 820 to supply power to the heating element 520, and the heat of the heating element 520 atomizes the tobacco tar on the oil guide 510; after each atomization is finished, the controller 810 modifies and reads the remaining time of the suction in the storage unit 700 through the data transmission electrode, and when the controller 810 judges that the remaining time of the suction is lower than the preset minimum remaining time in the controller 810, the controller 810 controls the atomization prompting component 870 arranged on the control component to be opened so as to prompt a user to replace the atomizer or add tobacco tar.
The controller 810 is also electrically connected to a data receiving unit 850, and nebulizer information received in the controller 810 is transmitted to the data receiving unit 850. The controller 810 can retransmit the received nebulizer information to the data receiving component 850, and the data receiving component 850 can display or count the nebulizer information. The control part reads the information of the atomizer in the storage unit 700 and stores the information in the control part, the control part can transmit the information of the atomizer to the data receiving part 850 of the user in a wireless transmission or wired transmission mode, the data receiving part 850 can be an intelligent terminal, and statistics on relevant data of the information of the atomizer, such as the number of remaining mouths for suction, the remaining time for suction, the concentration of nicotine, the taste of tobacco tar and the like, can be performed through software in the intelligent terminal. The statistics of the intelligent terminal on the data enables the electronic cigarette to be more intelligent in use.
The memory chip 720 of the memory unit 700 is integrated with a temperature detection module 860 electrically connected to the controller 810, the temperature detection module 860 detects the temperature inside the housing 100 or the circuit board 710, and the controller 810 receives the temperature measured by the temperature detection module 860, thereby controlling the power supply 820. The temperature will continuously rise during the atomization process of the atomizer, and when the temperature value of the circuit board 710 or the inside of the housing 100 measured by the temperature detection module 860 received by the controller 810 reaches a preset limit value, the controller 810 controls the power supply 820 to stop supplying power to the heating element 520, so that the heating element 520 stops heating, and the effect of controlling the temperature is achieved. The temperature detection module 860 enables the electronic cigarette to be safer and have a guaranteed taste.
The storage unit 700 is arranged in the atomizer, so that the atomizer can store information of the atomizer; the support 600 separates the oil storage part 400 from the storage unit 700, effectively preventing the tobacco tar in the oil storage part 400 from flowing onto the storage unit 700, and guaranteeing the safety of the storage unit 700; the nebulizer is connected to the control part, and the controller 810 can receive nebulizer information from the storage unit 700 to transmit the nebulizer information to the other data receiving part 850; the controller 810 can also modify the atomizer information in the storage unit 700 to control the heat generating member 520 of the atomizer according to the amount of atomization remaining; compared with the existing atomizer, the electronic cigarette adopting the atomizer can realize more functions.
Example 2
As shown in fig. 6, this embodiment differs from embodiment 1 in that: the supporting member 600 includes a blocking portion 620, the blocking portion 620 separates the inside of the housing 100, two sides of the blocking portion 620 are respectively provided with the storage unit 700 and the oil storage component 400, one side of the blocking portion 620 provided with the oil storage component 400 is provided with a supporting body 630, the supporting body 630 is connected with the oil guiding body 511, and the oil storage component 400 is coated on the supporting body 630.
The baffle 620 divides the interior of the housing 100 into two independent chambers, the storage unit 700 and the oil storage part 400 can be respectively located in the two independent chambers, the tobacco tar of the oil storage part 400 cannot flow onto the storage unit 700, and after the oil guide body 511 heats the oil storage part 400, the smoke cannot enter the chamber where the storage unit 700 is located, so that adverse effects on the storage unit 700 in the atomization process are reduced.
In conclusion, the invention effectively overcomes various defects in the prior art and has high industrial utilization value.
The above embodiments are merely illustrative of the principles of the present invention and its effectiveness, and are not intended to limit the invention. Modifications and variations may be made to the above-described embodiments by those skilled in the art without departing from the spirit and scope of the invention. Accordingly, it is intended that all equivalent modifications and variations of the invention be covered by the claims, which are within the ordinary skill of the art, be within the spirit and scope of the present disclosure.

Claims (17)

1. An atomizer comprises a shell (100), wherein two ends of the shell (100) are respectively provided with a suction nozzle (200) and an interface (300),
the inside of casing (100) is equipped with oil storage part (400) and atomizing part (500), its characterized in that:
a supporting piece (600) and a storage unit (700) are further arranged in the shell (100);
the support (600) is connected to the atomizing member (500); the oil storage component (400) is coated on the supporting piece (600), and the oil storage component (400) is contacted with the atomizing component (500); -the support (600) separates the oil storage part (400) from the storage unit (700);
the interface (300) is provided with a power supply part (310) electrically connected with the atomizing component (500) and an information transmission part (320) electrically connected with the storage unit (700);
the atomization component (500) comprises an oil guide piece (510) and a heating piece (520), the oil guide piece (510) comprises an oil guide body (511), a first oil guide rod (512) and a second oil guide rod (513) extend out of two ends of the oil guide body (511), and the first oil guide rod (512) and the second oil guide rod (513) are inserted into the oil storage component (400); the heating element (520) is arranged on the oil guide body (511), and the heating element (520) is connected with the power supply part (310) on the interface (300);
support piece (600) is including separating fender portion (620), separate fender portion (620) will the inside of casing (100) is separated, separate the both sides of fender portion (620) set up respectively storage unit (700) with oil storage part (400), separate the setting of fender portion (620) one side of oil storage part (400) is equipped with supporting body (630), supporting body (630) with oil guide body (511) are connected, just oil storage part (400) cladding in on supporting body (630).
2. An atomizer information transmission method of an electronic cigarette, wherein the electronic cigarette comprises a control part and is characterized in that:
the interface (300) of the nebulizer of claim 1 being connected to the control component;
the control part includes: a controller (810), and a power supply (820) and a switching member (830) electrically connected to the controller (810);
the controller (810) performs data transmission with the storage unit (700) through the information transmission part (320) of the interface (300), and the power supply (820) is electrically connected with the power supply part (310) of the interface (300);
the storage unit (700) stores therein nebulizer information including a nebulizer identification code, suction remaining information, and tobacco tar information.
3. The atomizer information transmission method of the electronic cigarette according to claim 2, wherein: the controller (810) is further electrically connected with a matching prompt component (840), and the controller (810) recognizes the atomizer identification code transmitted by the storage unit (700) so as to control the matching prompt component (840) to display the matching condition of the atomizer and the control component.
4. The atomizer information transmission method of the electronic cigarette according to claim 2, wherein: the switch (830) is a pneumatic switch, the suction remaining information is a suction remaining port number, and the controller (810) modifies and reads the suction remaining port number according to the number of times of starting the pneumatic switch.
5. The atomizer information transmission method of the electronic cigarette according to claim 2, wherein: the switch (830) is a manual switch, the suction remaining information is a suction remaining time, and the controller (810) modifies and reads the suction remaining time according to an on time of the manual switch.
6. The atomizer information transmission method of the electronic cigarette according to claim 2, wherein: the controller (810) is also electrically connected with a data receiving component (850), and atomizer information received in the controller (810) is transmitted to the data receiving component (850).
7. The atomizer information transmission method of the electronic cigarette according to claim 2, wherein: the storage unit (700) is integrated with a temperature detection module (860) electrically connected with the controller (810), and the controller (810) receives the temperature measured by the temperature detection module (860) so as to control the power supply (820).
8. The atomizer information transmission method of the electronic cigarette according to claim 2, wherein: the tobacco tar information includes nicotine concentration and tobacco tar taste.
9. An atomizer information transmission method of an electronic cigarette, wherein the electronic cigarette comprises a control part and is characterized in that:
an interface (300) of the atomizer is connected with the control part;
the atomizer comprises a shell (100), two ends of the shell (100) are respectively provided with a suction nozzle (200) and an interface (300),
the inside of casing (100) is equipped with oil storage part (400) and atomizing part (500), its characterized in that:
a supporting piece (600) and a storage unit (700) are further arranged in the shell (100);
the support (600) is connected to the atomizing member (500); the oil storage component (400) is coated on the supporting piece (600), and the oil storage component (400) is contacted with the atomizing component (500); -the support (600) separates the oil storage part (400) from the storage unit (700);
the interface (300) is provided with a power supply part (310) electrically connected with the atomizing component (500) and an information transmission part (320) electrically connected with the storage unit (700);
the control part includes: a controller (810), and a power supply (820) and a switching member (830) electrically connected to the controller (810);
the controller (810) performs data transmission with the storage unit (700) through the information transmission part (320) of the interface (300), and the power supply (820) is electrically connected with the power supply part (310) of the interface (300);
-storing nebulizer information in the storage unit (700), the nebulizer information comprising a nebulizer identification code, suction remaining information and tobacco tar information;
the switch (830) is a pneumatic switch, the suction remaining information is a suction remaining port number, and the controller (810) modifies and reads the suction remaining port number according to the number of times of starting the pneumatic switch.
10. The atomizer information transmission method of an electronic cigarette according to claim 9, wherein:
the atomization component (500) comprises an oil guide piece (510) and a heating piece (520), the oil guide piece (510) comprises an oil guide body (511), a first oil guide rod (512) and a second oil guide rod (513) extend out of two ends of the oil guide body (511), and the first oil guide rod (512) and the second oil guide rod (513) are inserted into the oil storage component (400); the heating element (520) is arranged on the oil guide body (511), and the heating element (520) is connected with the power supply part (310) on the interface (300).
11. The atomizer information transmission method of an electronic cigarette according to claim 9, wherein:
an end of the support (600) near the suction nozzle (200) is provided with a containing chamber (610), and the storage unit (700) is inserted into the containing chamber (610).
12. The atomizer information transmission method of an electronic cigarette according to claim 10, wherein:
the first oil guide rod (512) and the second oil guide rod (513) of the oil guide member (510) are sleeved outside one end, close to the suction nozzle (200), of the support member (600), and the storage unit (700) is connected with the oil guide body (511).
13. The atomizer information transmission method of an electronic cigarette according to claim 9, wherein:
the controller (810) is further electrically connected with a matching prompt component (840), and the controller (810) recognizes the atomizer identification code transmitted by the storage unit (700) so as to control the matching prompt component (840) to display the matching condition of the atomizer and the control component.
14. The atomizer information transmission method of an electronic cigarette according to claim 9, wherein:
the switch (830) is a manual switch, the suction remaining information is a suction remaining time, and the controller (810) modifies and reads the suction remaining time according to an on time of the manual switch.
15. The atomizer information transmission method of an electronic cigarette according to claim 9, wherein:
the controller (810) is also electrically connected with a data receiving component (850), and atomizer information received in the controller (810) is transmitted to the data receiving component (850).
16. The atomizer information transmission method of an electronic cigarette according to claim 9, wherein:
the storage unit (700) is integrated with a temperature detection module (860) electrically connected with the controller (810), and the controller (810) receives the temperature measured by the temperature detection module (860) so as to control the power supply (820).
17. The atomizer information transmission method of an electronic cigarette according to claim 9, wherein: the tobacco tar information includes nicotine concentration and tobacco tar taste.
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