Communication method of electronic atomization device and functional component of electronic atomization device

By using the communication control module on the main control module and power supply module of the electronic atomization device to cause voltage fluctuations, the problems of complex communication structure and large space occupation in the prior art are solved, and a simpler design and better contact effect are achieved.

CN120052622APending Publication Date: 2025-05-30SHENZHEN GEEKVAPE TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510252221.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

The communication structure of existing electronic atomization devices is complex and occupy a large space, resulting in complex connections and high welding difficulties.

Method used

Using the functional components of the main control module and the power supply module, voltage fluctuations are caused on the contacts of the main control module and the power supply module respectively through the first communication control module and the power supply module to realize the transmission and collection of data information.

Benefits of technology

It reduces the connection contact points between the main control module and the power supply module, reduces the design difficulty, and effectively solves the problems of complex communication structure and large space occupation.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120052622A_ABST
    Figure CN120052622A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of electronic communication, in particular to a communication method of an electronic atomization device and a functional assembly of the electronic atomization device. The functional assembly comprises a main control module and a power supply module, in the power supply process of the power supply unit, when the main control module sends data information to the power supply module, a first communication control module of the main control module is used for causing fluctuation to the voltage of a first contact and / or the voltage of a second contact of the main control module according to the data information, and the power supply unit supplies power to the main control module. Transmitting the data information; and the second communication control module acquires a voltage fluctuation signal of a third contact and / or a voltage fluctuation signal of a fourth contact of the power supply module and then processes the voltage fluctuation signal to obtain the data information, so that corresponding power supply operation is performed according to the data information. By the adoption of the scheme, connection contacts between the main control module and the power supply module are reduced, the design difficulty is reduced, and the problems that an existing electronic atomization device is complex in communication structure and large in occupied space are effectively solved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the field of electronic communication technologies, and particularly relates to a communication method and a functional component of an electronic atomization device. Background Art

[0002] Currently, the power supply unit and the heating unit in existing electronic atomization devices are two independent modules (A and B). As Figure 1 shown, these two modules can work independently. When these two modules are assembled together, module A supplies power and communicates with module B through a pogopin. Between these two modules, both communication and power-on need to be achieved. That is to say, the interconnected signals in the conventional design are power supply signals (VCC, GND) and communication signals (RX, TX). Thus, at least 4 pogopins are required to achieve the connection. In the case of limited space, with more pogopins, on the one hand, more space is occupied, increasing the soldering difficulty of the pogopins; on the other hand, a greater force is required to press the two modules together to ensure good contact of the pogopins. Summary of the Invention

[0003] A communication method and a functional component of an electronic atomization device provided by the present invention effectively solve the problems that the communication structure of the existing electronic atomization device is complex and occupies a large amount of space.

[0004] According to a first aspect, in an embodiment, a functional component of an electronic atomization device is provided, including a main control module and a power supply module; the main control module has a first contact and a second contact, the power supply module has a third contact and a fourth contact, and the first contact and the second contact of the main control module are electrically connected to the third contact and the fourth contact of the power supply module respectively;

[0005] The main control module includes a first communication control module;

[0006] The power supply module includes a power supply unit and a second communication control module, and the power supply unit and the second communication control module are electrically connected;

[0007] During the process of the power supply unit supplying power to the main control module, when the main control module sends data information to the power supply module, the first communication control module is used to cause fluctuations in the voltage of the first contact and / or the second contact of the main control module according to the data information to transmit the data information; the second communication control module is used to collect the voltage fluctuation signals of the third contact and / or the fourth contact of the power supply module, and obtain the data information after processing the voltage fluctuation signals.

[0008] In an implementable embodiment, the data information sent by the main control module to the power supply module includes a voltage control instruction; after obtaining the voltage control instruction, the second communication control module controls the power supply voltage of the power supply unit according to the voltage control instruction.

[0009] In an implementable embodiment, during the process of the power supply unit supplying power to the main control module, when the power supply module sends data information to the main control module, the second communication control module is used to cause fluctuations in the voltage of the third contact and / or the fourth contact of the power supply module according to the data information to transmit the data information; the first communication control module is used to collect the voltage fluctuation signals of the first contact and / or the second contact of the main control module, and obtain the data information after processing the voltage fluctuation signals;

[0010] The main control module further includes an application unit, and the application unit is used to perform corresponding work using the electric energy provided by the power supply unit.

[0011] In an implementable embodiment, the first communication control module includes a first signal receiving and processing unit, a first control unit, and a first sending and driving unit;

[0012] The first signal receiving and processing unit is used to collect the voltage fluctuation signals of the first contact and / or the second contact of the main control module when receiving data, and output them to the first control unit;

[0013] The first control unit is used to analyze the processed voltage fluctuation signals to obtain the data information when receiving data; and send the data information to the first sending and driving unit when sending data;

[0014] The first sending and driving unit is used to cause fluctuations in the voltage of the first contact and / or the second contact of the main control module according to the data information sent by the first control unit, wherein the time interval of the voltage fluctuation is synchronized with the signal of the data information.

[0015] In an implementable embodiment, the second communication control module includes a second signal receiving and processing unit, a second control unit, and a second sending and driving unit;

[0016] The second signal receiving and processing unit is used to collect the voltage fluctuation signals of the third contact and / or the fourth contact of the power supply module when receiving data, and output them to the second control unit;

[0017] The second control unit is configured to, when receiving data, analyze the processed voltage fluctuation signal to obtain the data information; and when sending data, send the data information to the second transmission driving unit.

[0018] The second transmission driving unit is configured to, according to the data information sent by the second control unit, cause a fluctuation in the voltage of the third contact and / or the voltage of the fourth contact of the power supply module, wherein the time interval of the voltage fluctuation is synchronized with the signal of the data information.

[0019] In an implementable embodiment, the first communication control module further includes a first signal reference unit, and the first signal reference unit is configured to provide a first reference signal to the first control unit.

[0020] The second communication control module further includes a second signal reference unit, and the second signal reference unit is configured to provide a second reference signal to the second control unit.

[0021] According to a second aspect, an embodiment provides an electronic atomization device including the functional components as described above.

[0022] According to a third aspect, an embodiment provides a communication method for an electronic atomization device, which uses the functional components as described above, and the communication method includes:

[0023] During the process of the power supply unit supplying power to the main control module, when the main control module sends data information to the power supply module, the first communication control module causes a fluctuation in the voltage of the first contact and / or the voltage of the second contact of the main control module according to the data information to transmit the data information.

[0024] The second communication control module collects the voltage fluctuation signal of the third contact and / or the voltage fluctuation signal of the fourth contact of the power supply module, and processes the voltage fluctuation signal to obtain the data information.

[0025] In an implementable embodiment, the method further includes:

[0026] During the process of the power supply unit supplying power to the main control module, when the power supply module sends data information to the main control module, the second communication control module is configured to cause a fluctuation in the voltage of the third contact and / or the voltage of the fourth contact of the power supply module according to the data information to transmit the data information.

[0027] The first communication control module is configured to collect the voltage fluctuation signal of the first contact and / or the voltage fluctuation signal of the second contact of the main control module, and process the voltage fluctuation signal to obtain the data information.

[0028] According to a fourth aspect, in one embodiment, a computer program product is provided, including a computer program and / or instructions, which, when executed by a processor, implement the communication method as described above.

[0029] A functional component of an electronic atomization device according to the above embodiment includes a main control module and a power supply module. During the process of the power supply unit supplying power to the main control module, the main control module will send some data information to the power supply module according to actual needs, so that the power supply module can perform corresponding power supply operations according to this data information. Specifically, when the main control module sends data information to the power supply module, the first communication control module of the main control module is used to cause fluctuations in the voltage of the first contact and / or the voltage of the second contact of the main control module according to this data information to transmit this data information; the second communication control module obtains the above data information by collecting the voltage fluctuation signals of the third contact and / or the voltage fluctuation signals of the fourth contact of the power supply module, and then processes this voltage fluctuation signal, so as to perform corresponding power supply operations according to this data information. By adopting the above solution of the application, not only the connection contacts between the main control module and the power supply module are reduced, the design difficulty is reduced, but also the problem that the communication structure of the current electronic atomization device is complex and occupies a large space is effectively solved. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 It is a schematic diagram of the electrical connection of two functional modules by four thimbles in an existing electronic atomization device;

[0031] Figure 2 It is a block diagram of the structure of the functional component of the electronic atomization device provided in this embodiment;

[0032] Figure 3 It is a schematic diagram of the data information flow of the main control module in the functional component provided in this embodiment;

[0033] Figure 4 It is a schematic diagram of the data information flow of the power supply module in the functional component provided in this embodiment;

[0034] Figure 5 It is the flow of a communication method of an electronic atomization device provided in this embodiment Figure 1 ;

[0035] Figure 6 It is the flow of a communication method of an electronic atomization device provided in this embodiment Figure 2 。

[0036] Reference numerals: 100, main control module; 10, first communication control module; 11, first control unit; 12, first transmission driving unit; 13, first signal receiving and processing unit; 14, application unit; 15, first signal reference unit; 16, first contact; 17, second contact; 200, power supply module; 20, second communication control module; 21, second control unit; 22, second transmission driving unit; 23, second signal receiving and processing unit; 24, second signal reference unit; 25, third contact; 26, fourth contact; 27, power supply unit. Detailed implementation manners

[0037] The present invention will be further described in detail below in conjunction with the accompanying drawings through specific implementation manners. Similar elements in different implementation manners are labeled with related similar reference numerals. In the following implementation manners, many detailed descriptions are provided to enable a better understanding of the present application. However, those skilled in the art can easily recognize that some of the features can be omitted in different situations, or can be replaced by other elements, materials, or methods. In some cases, some operations related to the present application are not shown or described in the specification, in order to avoid the core part of the present application being overwhelmed by excessive descriptions. For those skilled in the art, it is not necessary to describe these related operations in detail, and they can fully understand the related operations based on the descriptions in the specification and the general technical knowledge in the art.

[0038] In addition, the features, operations, or characteristics described in the specification can be combined in any appropriate manner to form various implementation manners. At the same time, the steps or actions in the method description can also be reordered or adjusted in an obvious manner by those skilled in the art. Therefore, the various sequences in the specification and the drawings are only for clearly describing a certain embodiment, and do not mean that they are necessary sequences, unless it is stated that a certain sequence must be followed.

[0039] The serial numbers assigned to the components herein, such as "first", "second", etc., are only used to distinguish the described objects, and do not have any sequential or technical meanings. The "connection" and "coupling" mentioned in the present application, unless otherwise specified, both include direct and indirect connection (coupling).

[0040] Refer to Figure 2, an electronic atomization device provided in this embodiment may include functional components. The functional components include a main control module 100 and a power supply module 200; the main control module 100 has a first contact 16 and a second contact 17, and the power supply module 200 has a third contact 25 and a fourth contact 26. The first contact 16 and the second contact 17 of the main control module 100 are respectively electrically connected to the third contact 25 and the fourth contact 26 of the power supply module 200; the main control module 100 includes a first communication control module 10; the power supply module 200 includes a power supply unit 27 and a second communication control module 20, and the power supply unit 27 and the second communication control module 20 are electrically connected; during the process of the power supply unit 27 supplying power to the main control module 100, when the main control module 100 sends data information to the power supply module 200, the first communication control module 10 is used to cause fluctuations in the voltage of the first contact 16 and / or the voltage of the second contact 17 of the main control module 100 according to the data information to transmit the data information; the second communication control module 20 is used to collect the voltage fluctuation signal of the third contact 25 and / or the voltage fluctuation signal of the fourth contact 26 of the power supply module 200, and obtain the data information after processing the voltage fluctuation signal.

[0041] In this embodiment, the main control module 100 in the functional components may be a control heating part, and the power supply module 200 may be a battery power supply part or an external power supply part. Among them, the control heating part and the battery power supply part may be detachably connected or integrally connected. This embodiment does not make too many requirements here.

[0042] In actual applications, for the device to operate normally, it is necessary to provide electrical energy to the main control module 100 through the power supply module 200 so that the main control module 100 controls each application unit 14 to perform corresponding operations. In the existing solutions, to achieve power supply from the power supply module 200 to the main control module 100 and communication between the main control module 100 and the power supply module 200, two separate power lines are required, and communication and power supply are carried out independently, which makes the connection between modules complex, occupies more space, and cannot ensure good contact between modules. Therefore, this application proposes to implement communication and power supply simultaneously on one power line, which not only saves space but also ensures good contact between modules. Specifically, a first contact 16 and a second contact 17 are provided at the port of the main control module 100, and a third contact 25 and a fourth contact 26 are provided at the port of the power supply module 200. Among them, the first contact 16 can be used as the positive power supply, then the second contact 17 is used as the negative power supply, or the first contact 16 can be used as the negative power supply, then the second contact 17 is used as the positive power supply; similarly, the third contact 25 can be used as the positive power supply, then the fourth contact 26 is used as the negative power supply, or the third contact 25 can be used as the negative power supply, then the fourth contact 26 is used as the positive power supply.

[0043] As Figure 3 shown, during the process of the power supply unit 27 supplying power to the main control module 100, the main control module 100 will send corresponding data information to the power supply module 200 according to the voltage intensity required for controlling different application units 14. Specifically, the data information is transmitted to the first contact 16 or the second contact 17 through the first communication control module 10. At the same time, the first communication control module 10 causes a voltage fluctuation of the data information at the first contact 16 or the second contact 17. When a voltage fluctuation is caused at the first contact 16 (i.e., the voltage of the positive power supply fluctuates), the third contact 25 corresponding to the first contact 16 receives the voltage fluctuation signal and transmits the voltage fluctuation signal to the second communication control module 20 for processing to obtain the data information. When a voltage fluctuation is caused at the second contact 17 (i.e., the voltage of the negative power supply fluctuates), the fourth contact 26 corresponding to the second contact 17 receives the voltage fluctuation signal and transmits the voltage fluctuation signal to the second communication control module 20 for processing to obtain the data information. When voltage fluctuations are caused at the first contact 16 and the second contact 17 simultaneously, the third contact 25 corresponding to the first contact 16 and the fourth contact 26 corresponding to the second contact 17 respectively receive the voltage fluctuation signal and transmit the voltage fluctuation signal to the second communication control module 20 for processing to obtain the data information. It should be noted that when voltage fluctuations are caused at the first contact 16 and the second contact 17 simultaneously, the differential circuit principle can be used to realize the processing of the signal.

[0044] Furthermore, the data information sent by the main control module 100 to the power supply module 200 includes a voltage control instruction; after obtaining the voltage control instruction, the second communication control module 20 controls the power supply voltage of the power supply unit 27 according to the voltage control instruction.

[0045] Specifically, during the power supply process, the main control module 100 sends a voltage control instruction to the power supply module 200. For example, an instruction message of "5V voltage is required" is sent. The first communication control module 10 loads the instruction message onto the positive power supply, thereby causing a voltage fluctuation on the positive power supply. And the time interval of the voltage fluctuation is synchronized with the signal of the data information to ensure that the instruction information obtained by the second communication control module is "5V voltage is required". When the second communication control module 20 obtains the voltage control instruction, it controls the power supply unit 27 to output 5V voltage according to the voltage control instruction.

[0046] Furthermore, during the process of the power supply unit 27 supplying power to the main control module 100, as Figure 4As shown, when the power supply module 200 sends data information to the main control module 100, the second communication control module 20 is used to cause fluctuations in the voltage of the third contact 25 and / or the fourth contact 26 of the power supply module 200 according to the data information to transmit the data information; the first communication control module 10 is used to collect the voltage fluctuation signals of the first contact 16 and / or the second contact 17 of the main control module 100, and obtain the data information after processing the voltage fluctuation signals.

[0047] In practical applications, during the process of the power supply unit 27 supplying power to the main control module 100, the power supply module 200 can also send data information to the main control module 100 so that the main control module 100 can obtain the data information of the power supply module 200 in a timely manner. For example, the power supply module 200 can send command information to the main control module 100 to obtain information such as the resistance value of the heating element, temperature, heating element TCR module model, production date, etc. of the active module 100; it can also send command information such as heating start and stop; it can also send heating curves, etc. After receiving the command information sent by the power supply module, the active module 100 returns corresponding parameters or performs corresponding heating operations according to the command requirements. When the power supply module 200 sends data information to the main control module 100, the data information is transmitted to the third contact 25 or the fourth contact 26 through the second communication control module 20. At the same time, the second communication control module 20 causes a voltage fluctuation of the data information at the third contact 25 or the fourth contact 26. When a voltage fluctuation is caused to the third contact 25 (i.e., the voltage of the positive power supply fluctuates), the first contact 16 corresponding to the third contact 25 receives the voltage fluctuation signal, and transmits the voltage fluctuation signal to the first communication control module 10 for processing to obtain the data information. When a voltage fluctuation is caused to the fourth contact 26 (i.e., the voltage of the negative power supply fluctuates), the second contact 17 corresponding to the fourth contact 26 receives the voltage fluctuation signal, and transmits the voltage fluctuation signal to the first communication control module 10 for processing to obtain the data information. When voltage fluctuations are caused to the third contact 25 and the fourth contact 26 at the same time, the first contact 16 corresponding to the third contact 25 and the second contact 17 corresponding to the fourth contact 26 respectively receive the voltage fluctuation signal, and transmit the voltage fluctuation signal to the first communication control module 10 for processing to obtain the data information. It should be noted that when voltage fluctuations are caused to the third contact 25 and the fourth contact 26 at the same time, the differential circuit principle can be used to realize the processing of the signal.

[0048] In addition, the main control module 100 further includes application units 14, such as a power management unit, an indication unit, a heating unit, etc. Since the operating voltages of these application units 14 are different, while the power supply unit 27 supplies power, it will also send the specific information of the provided voltage, such as the voltage amplitude, to the main control module 100. Therefore, after the first communication control module 10 obtains the specific voltage information, it will correspondingly control different application units 14 according to the obtained information, so that the application units 14 can use the electric energy provided by the power supply unit 27 to perform corresponding operations. Taking the heating unit as an example, the first communication control module 10 controls and adjusts the heating curve of the heating unit according to the provided power supply voltage amplitude. For example, if the heating element structure is a two-stage heating circuit, it can control which stage to start heating first according to the voltage amplitude.

[0049] Furthermore, the first communication control module 10 includes a first signal receiving and processing unit 13, a first control unit 11, and a first sending and driving unit 12; the first signal receiving and processing unit 13 is used to collect the voltage fluctuation signals of the first contact 16 and / or the second contact 17 of the main control module 100 when receiving data, and output them to the first control unit 11; the first control unit 11 is used to analyze the processed voltage fluctuation signals to obtain the data information when receiving data; the first control unit 11 is also used to send the data information to the first sending and driving unit 12 when sending data; the first sending and driving unit 12 is used to cause fluctuations in the voltage of the first contact 16 and / or the second contact 17 of the main control module 100 according to the data information sent by the first control unit 11, where the time interval of the voltage fluctuation is synchronized with the signal of the data information.

[0050] Specifically, in practical applications, as Figure 4 shown, when the power supply module 200 sends data information to the main control module 100, the main control module 100 receives the voltage fluctuation signals of the first contact 16 or the second contact 17 through the first signal receiving and processing unit 13 in the first communication control module 10, amplifies and filters the received voltage fluctuation signals, and then sends them to the first control unit 11. The first control unit 11 analyzes the data information to obtain the data information sent by the power supply module 200. As Figure 3 shown, when the main control module 100 sends data information to the power supply module 200, the first control unit 11 generates the data information and sends it to the first sending and driving unit 12. The first sending and driving unit 12 loads the data information onto the positive line according to the data information, so as to cause voltage fluctuations in the first contact 16 or the second contact 17 of the main control module 100, and sends the voltage fluctuations to the power supply module 200, so that the power supply module 200 receives the voltage fluctuation signals.

[0051] Among them, the first control unit 11 can be an MCU, CPU, single-chip microcomputer, FPGA, etc., as long as it has the ability to perform data operation and processing. The first transmission driving unit 12 can include a load, and the voltage is made to fluctuate following the data information by changing the characteristics of the load (such as impedance, etc.).

[0052] Furthermore, the second communication control module 20 includes a second signal receiving and processing unit 23, a second control unit 21, and a second transmission driving unit 22; the second signal receiving and processing unit 23 is used to collect the voltage fluctuation signal of the third contact 25 and / or the voltage fluctuation signal of the fourth contact 26 of the power supply module 200 when receiving data, and output it to the second control unit 21; the second control unit 21 is used to analyze the processed voltage fluctuation signal to obtain the data information when receiving data; the second control unit 21 is also used to send the data information to the second transmission driving unit 22 when sending data; the second transmission driving unit 22 is used to cause fluctuations in the voltage of the third contact 25 and / or the voltage of the fourth contact 26 of the power supply module 200 according to the data information sent by the second control unit 21, where the time interval of the voltage fluctuation is synchronized with the signal of the data information.

[0053] Specifically, in actual applications, such as Figure 3 shown, when the main control module 100 sends data information to the power supply module 200, the power supply module 200 receives the voltage fluctuation signal of the third contact 25 or the fourth contact 26 through the second signal receiving and processing unit 23 in the second communication control module 20, and after amplifying and filtering the received voltage fluctuation signal, it sends it to the second control unit 21, and the second control unit 21 analyzes the data information to obtain the data information sent by the power supply module 200. As Figure 4 shown, when the power supply module 200 sends data information to the main control module 100, the second control unit 21 generates data information and sends it to the second transmission driving unit 22, and the second transmission driving unit 22 loads it onto the positive line according to the data information, so as to cause voltage fluctuations in the third contact 25 or the fourth contact 26 of the power supply module 200, and sends the voltage fluctuation to the main control module 100, so that the main control module 100 receives the voltage fluctuation signal.

[0054] Similarly, the second control unit 21 can be an MCU, CPU, single-chip microcomputer, FPGA, etc., as long as it has the ability to perform data operation and processing. The second transmission driving unit 22 can include a load, and the voltage is made to fluctuate following the data information by changing the characteristics of the load (such as impedance, etc.).

[0055] Further, the first communication control module 10 further includes a first signal reference unit 15, and the first signal reference unit 15 is used to provide a first reference signal to the first control unit 11. The first reference signal may be the ideal voltage of the power supply unit 27, that is, the standard value of its output voltage or the ideal value of the voltage when the transmission driving unit does not load data information. In this way, the first control unit 11 can easily analyze the data information by comparing the voltage fluctuation signal with the first reference signal.

[0056] The second communication control module 20 further includes a second signal reference unit 24, and the second signal reference unit 24 is used to provide a second reference signal to the second control unit 21. Similarly, the second reference signal may be the ideal voltage of the power supply unit 27, that is, the standard value of its output voltage or the ideal value of the voltage when the transmission driving unit does not load data information. In this way, the second control unit 21 can easily analyze the data information by comparing the voltage fluctuation signal with the second reference signal.

[0057] In the solution of the present application, if the power supply unit 27 is a battery, as the battery voltage changes, the amplitude of the received data signal may change. At this time, it is necessary to monitor the power supply voltage when there is no signal, and the reference signal provided by the signal reference unit is used to compare with the fluctuating data signal to determine whether the data signal is valid.

[0058] As Figure 5 shown, a communication method of an electronic atomization device provided in this embodiment uses the above functional components. When the control main body is the main control module 100, the communication method includes:

[0059] Step 100: During the process of the power supply unit 27 supplying power to the main control module 100, when the main control module 100 sends data information to the power supply module 200, the first communication control module 10 causes fluctuations in the voltage of the first contact 16 and / or the second contact 17 of the main control module 100 according to the data information to transmit the data information.

[0060] Step 200: The second communication control module 20 collects the voltage fluctuation signals of the third contact 25 and / or the fourth contact 26 of the power supply module 200, and processes the voltage fluctuation signals to obtain the data information.

[0061] Specifically, during the process of the power supply unit 27 supplying power to the main control module 100, the first communication control module 10 transmits data information to the first contact 16 or the second contact 17. At the same time, the first communication control module 10 causes voltage fluctuations of the data information at the first contact 16 or the second contact 17. When voltage fluctuations are caused at the first contact 16 (i.e., the voltage of the power supply positive electrode fluctuates), the third contact 25 corresponding to the first contact 16 receives the voltage fluctuation signal and transmits the voltage fluctuation signal to the second communication control module 20 for processing to obtain the data information. When voltage fluctuations are caused at the second contact 17 (i.e., the voltage of the power supply negative electrode fluctuates), the fourth contact 26 corresponding to the second contact 17 receives the voltage fluctuation signal and transmits the voltage fluctuation signal to the second communication control module 20 for processing to obtain the data information. When voltage fluctuations are caused at the first contact 16 and the second contact 17 simultaneously, the third contact 25 corresponding to the first contact 16 and the fourth contact 26 corresponding to the second contact 17 respectively receive the voltage fluctuation signal and transmit the voltage fluctuation signal to the second communication control module 20 for processing to obtain the data information.

[0062] Furthermore, as Figure 6 shown, the communication method further includes the following steps:

[0063] Step 300: During the process of the power supply unit 27 supplying power to the main control module 100, when the power supply module 200 sends data information to the main control module 100, the second communication control module 20 is used to cause voltage fluctuations of the voltage of the third contact 25 and / or the fourth contact 26 of the power supply module 200 according to the data information to transmit the data information.

[0064] Step 400: The first communication control module 10 is used to collect the voltage fluctuation signal of the first contact 16 and / or the voltage fluctuation signal of the second contact 17 of the main control module 100, and process the voltage fluctuation signal to obtain the data information.

[0065] Specifically, when the power supply module 200 sends data information to the main control module 100, the second communication control module 20 transmits the data information to the third contact 25 or the fourth contact 26. At the same time, the second communication control module 20 causes a voltage fluctuation of the data information at the third contact 25 or the fourth contact 26. When a voltage fluctuation is caused at the third contact 25 (i.e., the voltage of the power supply positive electrode fluctuates), the first contact 16 corresponding to the third contact 25 receives the voltage fluctuation signal and transmits the voltage fluctuation signal to the first communication control module 10 for processing to obtain the data information. When a voltage fluctuation is caused at the fourth contact 26 (i.e., the voltage of the power supply negative electrode fluctuates), the second contact 17 corresponding to the fourth contact 26 receives the voltage fluctuation signal and transmits the voltage fluctuation signal to the first communication control module 10 for processing to obtain the data information. When voltage fluctuations are caused at the third contact 25 and the fourth contact 26 simultaneously, the first contact 16 corresponding to the third contact 25 and the second contact 17 corresponding to the fourth contact 26 respectively receive the voltage fluctuation signal and transmit the voltage fluctuation signal to the first communication control module 10 for processing to obtain the data information.

[0066] A computer program product provided in this embodiment includes a computer program and / or instructions. When the computer program and / or instructions are executed by a processor, the communication method described above is implemented. In view of the fact that the communication method of the above-mentioned electronic atomization device has been described in detail in the above embodiments, this embodiment will not be elaborated here too much.

[0067] Those skilled in the art can understand that all or part of the functions of the above-mentioned various methods can be implemented in a hardware manner or in a computer program manner. When all or part of the functions in the above-mentioned embodiments are implemented in a computer program manner, the program can be stored in a computer-readable storage medium. The storage medium can include: read-only memory, random access memory, magnetic disk, optical disk, hard disk, etc. The above functions are implemented by a computer executing the program. For example, the program is stored in the memory of the device. When the program in the memory is executed by the processor, all or part of the above functions can be realized. In addition, when all or part of the functions in the above-mentioned embodiments are implemented in a computer program manner, the program can also be stored in a storage medium such as a server, another computer, magnetic disk, optical disk, flash drive or mobile hard disk, downloaded or copied and saved to the memory of the local device, or the system of the local device is updated. When the program in the memory is executed by the processor, all or part of the functions in the above-mentioned embodiments can be realized.

[0068] The above uses specific examples to illustrate the present invention, which is only used to help understand the present invention and is not intended to limit the present invention. For those skilled in the art to which the present invention pertains, based on the idea of the present invention, several simple deductions, deformations or substitutions can also be made.

Claims

1. A functional component of an electronic atomization device, characterized in that: It comprises a main control module and a power supply module; the main control module has a first contact and a second contact, the power supply module has a third contact and a fourth contact, and the first contact and the second contact of the main control module are electrically connected to the third contact and the fourth contact of the power supply module respectively; The main control module includes a first communication control module; The power supply module includes a power supply unit and a second communication control module, and the power supply unit and the second communication control module are electrically connected; During the process of the power supply unit supplying power to the main control module, when the main control module sends data information to the power supply module, the first communication control module is used to cause fluctuations in the voltage of the first contact and / or the voltage of the second contact of the main control module according to the data information to transmit the data information; the second communication control module is used to collect the voltage fluctuation signal of the third contact and / or the voltage fluctuation signal of the fourth contact of the power supply module, and obtain the data information after processing the voltage fluctuation signal.

2. The functional component according to claim 1, characterized in that The data information sent by the main control module to the power supply module includes a voltage control instruction; after obtaining the voltage control instruction, the second communication control module controls the power supply voltage of the power supply unit according to the voltage control instruction.

3. The functional component according to claim 1 or 2, characterized in that: In the process of the power supply unit supplying power to the main control module, when the power supply module sends data information to the main control module, the second communication control module is used to cause fluctuations in the voltage of the third contact and / or the voltage of the fourth contact of the power supply module according to the data information, so as to transmit the data information; the first communication control module is used to collect the voltage fluctuation signal of the first contact and / or the voltage fluctuation signal of the second contact of the main control module, and obtain the data information after processing the voltage fluctuation signal; The main control module also includes an application unit, which is used to perform corresponding work using the electric energy provided by the power supply unit.

4. The functional component according to claim 3, characterized in that The first communication control module includes a first signal receiving processing unit, a first control unit and a first sending driving unit; The first signal receiving and processing unit is used to collect the voltage fluctuation signal of the first contact and / or the voltage fluctuation signal of the second contact of the main control module when receiving data, and output it to the first control unit; The first control unit is used to parse the processed voltage fluctuation signal to obtain the data information when receiving data; and to send the data information to the first sending driving unit when sending data; The first transmission driving unit is used to cause fluctuations in the voltage of the first contact and / or the voltage of the second contact of the main control module according to the data information sent by the first control unit, wherein the time interval of the voltage fluctuation is synchronized with the signal of the data information.

5. The functional component according to claim 4, characterized in that The second communication control module includes a second signal receiving processing unit, a second control unit and a second sending driving unit; The second signal receiving and processing unit is used to collect the voltage fluctuation signal of the third contact and / or the voltage fluctuation signal of the fourth contact of the power supply module when receiving data, and output it to the second control unit; The second control unit is used to parse the processed voltage fluctuation signal to obtain the data information when receiving data; and send the data information to the second sending driving unit when sending data; The second transmission driving unit is used to cause fluctuations in the voltage of the third contact and / or the voltage of the fourth contact of the power supply module according to the data information sent by the second control unit, wherein the time interval of the voltage fluctuation is synchronized with the signal of the data information.

6. The functional component according to claim 5, characterized in that The first communication control module further includes a first signal reference unit, the first signal reference unit being configured to provide a first reference reference signal to the first control unit; The second communication control module further includes a second signal reference unit, and the second signal reference unit is used to provide a second reference signal to the second control unit.

7. An electronic atomization device, characterized in that: The method comprises the functional components as claimed in any one of claims 1 to 6.

8. A communication method for an electronic atomization device, characterized in that: Using the functional component described in any one of claims 1 to 6, the communication method comprises: In the process of the power supply unit supplying power to the main control module, when the main control module sends data information to the power supply module, the first communication control module causes fluctuations in the voltage of the first contact and / or the voltage of the second contact of the main control module according to the data information, so as to transmit the data information; The second communication control module collects the voltage fluctuation signal of the third contact and / or the voltage fluctuation signal of the fourth contact of the power supply module, and obtains the data information after processing the voltage fluctuation signal.

9. The communication method according to claim 8, characterized in that: Also includes: In the process that the power supply unit supplies power to the main control module, when the power supply module sends data information to the main control module, the second communication control module is used to cause fluctuations in the voltage of the third contact and / or the voltage of the fourth contact of the power supply module according to the data information, so as to transmit the data information; The first communication control module is used to collect the voltage fluctuation signal of the first contact and / or the voltage fluctuation signal of the second contact of the main control module, and obtain the data information after processing the voltage fluctuation signal.

10. A computer program product comprising a computer program and / or instructions, characterized in that: When the computer program and / or the instructions are executed by a processor, the communication method according to claim 8 or 9 is implemented.