A graphical user interface for displaying the usage status of electronic cigarettes (FD23 battery level).
CN309603637SActive Publication Date: 2025-11-14广东弗我智能制造有限公司
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Patent Information
- Application Number
- CN202430568471.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Designs(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2039-09-05
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Figure 000005_ABST
Abstract
1. Name of the product in this design: Graphical User Interface for Displaying the Status of Electronic Cigarettes (FD23 Battery Level). 2. Purpose of this design: An electronic cigarette. 3. The key design feature of this product is the graphical user interface on the display screen. 4. Images or photos that best illustrate the design points: Interface change state diagram 4. 5. Purpose of the graphical user interface: The graphical user interface of this product is a graphical representation of different interface states displayed when the user operates the electronic cigarette at different power levels. It is used to display the current e-liquid level, current battery percentage, and smoking status of the electronic cigarette. 6. Human-computer interaction method of graphical user interface: The main view is the initial interface of the display screen on the electronic cigarette when it is not powered on. When the power is turned on and the power level is adjusted to "Level 1" and inhalation is performed, the interface changes as shown in Figure 1. Increasing the inhalation intensity while in Figure 1 changes the interface as shown in Figure 2. Increasing the inhalation intensity while in Figure 2 changes the interface as shown in Figure 3. Increasing the inhalation intensity while in Figure 3 changes the interface as shown in Figure 4. When the power level is adjusted to "Level 2" and inhalation is performed, the interface changes as shown in Figure 5. Increasing the inhalation intensity while in Figure 5 changes the interface as shown in Figure 6. Increasing the inhalation intensity while in Figure 6 changes the interface as shown in Figure 7. Increasing the inhalation intensity while in Figure 7 changes the interface as shown in Figure 8.
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