Electronic device with graphical user interface for refrigerator program control
CN309976477SActive Publication Date: 2026-05-12TCL HOME APPLIANCES (HEFEI) CO LTD
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Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Designs(China)
- Current Assignee / Owner
- TCL HOME APPLIANCES (HEFEI) CO LTD
- Filing Date
- 2025-04-07
- Publication Date
- 2026-05-12
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Figure 000002_ABST
Abstract
1. Name of the product in this design: Electronic device with a graphical user interface for refrigerator program control. 2. Application of this design: This design is intended for use in an electronic device. 3. The key design features of this product are its graphical user interface content. 4. The image or photo that best illustrates the design points: Design 1 Interface Change State Diagram 1. 5. The electronic device described in this design is a conventional design, and the rear view, left view, right view, top view, and bottom view of Design 1 to Design 4 are omitted. 6. Design 1 is designated as the basic design. 7. Purpose of the graphical user interface: This product design allows users to control the refrigerator's program, display the refrigerator's cooling mode and temperature for storing or refrigerating items through interactive operation. 8. Human-computer interaction methods of graphical user interface: User interaction operations include voice interaction commands, clicking text or icon buttons representing various programs on the interface, and operating via wired or wireless remote control. It should be noted that the numbers in the interface are for reference only (for example, the temperature numbers in the interface are variable and can be displayed according to the actual application scenario; the time numbers of the child lock can be adjusted according to actual needs) and are not intended to limit this design patent application. Design 1's main view shows the graphical user interface (GUI) of the electronic device when the power button is off (refrigerator program off state). When the user turns on the power button, the GUI of Design 1 changes to the GUI of Design 1's main view (Figure 1), which displays all the refrigerator's program control icons lit up. After a certain period of time, the GUI of Design 1's interface changes to the GUI of Design 1's interface (Figure 2), which shows the refrigerator's default molecular preservation mode as chilled, its function mode as quick-cooling mode, and also displays the default temperature of the refrigerator compartment. When the user clicks the "Temperature Zone" button in the GUI of Design 1's interface (Figure 2), switching the refrigerator compartment to the freezer compartment, the GUI of Design 1's interface (Figure 2) changes to the GUI of Design 2's interface (Figure 3). Design 2's main view shows the graphical user interface (GUI) of the electronic device when the power button is off (refrigerator programs are off). When the user turns the power button on, the GUI changes to the GUI shown in Design 2's interface state diagram 1, which displays all the refrigerator's program control icons illuminated. After a certain period of time, the GUI changes to the GUI shown in Design 2's interface state diagram 2, where the refrigerator's molecular preservation mode is set to chilling, its function is quick-cooling, and the default temperature of the refrigerator compartment is displayed. By clicking the "Function Mode" button in the GUI of Design 2's interface state diagram 2, the user switches from quick-cooling to deep-cooling mode, and the GUI changes to the GUI shown in Design 2's interface state diagram 3. Design 3's main view shows the graphical user interface (GUI) of the electronic device when the power button is off (refrigerator program off state). When the user turns on the power button, the GUI of Design 3's main view changes to the GUI of Design 3's interface change state diagram 1, which displays all the program control icons of the refrigerator lit up. After the user waits for a certain period of time in the GUI of Design 3's interface change state diagram 1, the GUI of Design 3's interface change state diagram 1 changes to the GUI of Design 3's interface change state diagram 2. This GUI shows that the refrigerator's molecular preservation mode is set to chilling mode by default, the refrigerator's function is quick cooling, and it also displays the default temperature of the refrigerator compartment. When the user clicks the "Ice Making Mode" button in the GUI of Design 3's interface change state diagram 2, the ice making mode is adjusted to quick ice mode, and the GUI of Design 3's interface change state diagram 2 changes to the GUI of Design 2's interface change state diagram 3. Design 4's main view shows the graphical user interface (GUI) of the electronic device when the power button is off (refrigerator program off state). When the user turns on the power button, the GUI of Design 4's main view changes to the GUI of Design 4's interface change state diagram 1, which displays all the program control icons of the refrigerator lit up. After waiting for a certain period of time in the GUI of Design 4's interface change state diagram 1, the GUI of Design 4's interface change state diagram 1 changes to the GUI of Design 4's interface change state diagram 2. This GUI shows that the refrigerator's molecular preservation mode is set to ice-cold mode by default, the refrigerator's function is quick-cooling, and it also displays the default temperature of the refrigerator compartment. When the user clicks the "Molecular Preservation" button in the GUI of Design 4's interface change state diagram 2, the ice-cold mode is switched to fruit and vegetable mode, and the GUI of Design 4's interface change state diagram 2 changes to the GUI of Design 2's interface change state diagram 3.
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