Electronic-cigarette tobacco tar atomizing method and electronic-cigarette control circuit
A technology for electronic cigarettes and control circuits, applied in the field of electronic cigarettes, can solve problems such as troublesome and poor user experience, and achieve the effects of convenient smoking, simple process and improved user experience.
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Embodiment 1
[0063] Embodiment 1. This embodiment provides a method for vaporizing e-liquid in electronic cigarettes, which is used to enable e-cigarettes to atomize e-liquids of different flavors, so that users can enjoy cigarettes. The following combination figure 1 The method for vaporizing e-liquid in the electronic cigarette of Example 1 is described in detail as shown:
[0064] 101. The smoking switch module generates a trigger signal according to the user's operation;
[0065] Wherein, the smoking switch module is used for generating a trigger signal according to user's operation.
[0066] Specifically, please refer to the eighth embodiment for the specific structure of the smoking switch module, which will not be repeated in this embodiment.
[0067] 102. The microcontroller module receives the trigger signal;
[0068] 103. The microcontroller module controls one of the multiple atomization control switches to be turned on according to the trigger signal;
[0069] That is, in th...
Embodiment 2
[0076] Embodiment two, this embodiment combines figure 2 Explain how the microcontroller module controls multiple heating wires to circulate atomized e-liquid in sequence according to the trigger signal:
[0077] 201. The smoking switch module generates a trigger signal according to the user's operation;
[0078] Wherein, the smoking switch module can be:
[0079] an air flow sensing switch for generating the trigger signal according to the user's smoking action;
[0080] or,
[0081] A key switch for receiving a user's pressing operation to generate the trigger signal.
[0082] In this embodiment, the smoking switch module is taken as an airflow sensing switch as an example for illustration.
[0083] 202. The microcontroller module receives the trigger signal;
[0084] Wherein, step 202 in this embodiment and figure 1 The process of step 102 shown is the same, and will not be repeated here.
[0085] 203. Every time the microcontroller module detects that the trigger s...
Embodiment 3
[0122] Embodiment three, this embodiment combines Figure 4 Explain how the microcontroller module controls multiple heating wires to randomly atomize e-liquid according to the trigger signal:
[0123] 401. The smoking switch module generates a trigger signal according to the user's operation;
[0124] 402. The microcontroller module receives the trigger signal;
[0125] Wherein, steps 401 to 402 in this embodiment are the same as steps 201 to 202 shown in Embodiment 2, and will not be repeated here.
[0126] 403. Every time the microcontroller module detects that the trigger signal is triggered once, the microcontroller module controls the plurality of fogs electrically connected to the microcontroller module according to the detected trigger signal. one of the atomization control switches is turned on once, and a plurality of the atomization control switches are randomly turned on according to the trigger signal;
[0127] That is, in this embodiment, each time the microco...
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