A graphical user interface for displaying the status and operating the energy storage system of electronic devices.

CN309936728SActive Publication Date: 2026-04-21SHENZHEN POWEROAK NEWENER CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Designs(China)
Current Assignee / Owner
SHENZHEN POWEROAK NEWENER CO LTD
Filing Date
2025-01-20
Publication Date
2026-04-21

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Abstract

1. Name of the product in this design: Graphical user interface for displaying and operating the status of an energy storage system for electronic devices. 2. Purpose of this design: To display information. 3. The key design features of this product are its graphical user interface content. 4. The picture or photo that best illustrates the key design points: Design 1 front view. 5. Design 1 is designated as the basic design. 6. Purpose of the graphical user interface: This product design is used to display and operate the status of the energy storage system. 7. Other situations requiring explanation are illustrated in the diagram: The main view of Design 1 is the initial interface that displays all states simultaneously during the initialization of the energy storage system. The icons on the upper left side, from left to right, show the energy storage system's Hercules mode, fast charging mode, silent mode, output memory, energy saving status (ECO), and the child lock switch being in the on state. The icons on the upper right side, from left to right, indicate that the energy storage system's SIM card is connected, WiFi is connected, Bluetooth is connected, and the fan is on. The left side of the middle section displays the DC input (DC INPUT) and DC output (DC OUTPUT) of the energy storage system. The red dots next to the text indicate the corresponding DC input / output fault alarms, and the blue dots indicate that the DC output is in the on state. The middle section displays, from top to bottom, the AC input limit warning for the energy storage system, power information, and the remaining charging and discharging time of the energy storage system. The right side of the middle section displays the AC input (AC INPUT) and AC output (AC OUTPUT) of the energy storage system. The red dots next to the text indicate the corresponding AC input / output fault alarms, and the blue dots indicate that the AC output is in the on state. The icons on the lower left side display the default alarms, overcurrent alarms, overload alarms, and high / low temperature alarms of the energy storage system in sequence. The inverter output voltage of the device is displayed in the lower center. The lower right side displays, from left to right, the number of battery packs in the energy storage system, whether it is in parallel operation, in photovoltaic power generation, and in grid connection. The main views of designs 1-10 are the same below. In Design 1, when the main view of the energy storage system is in a state of simultaneous charging and discharging, the interface of the energy storage system changes from the main view of Design 1 to the interface change state diagram of Design 1; in Design 2, when the main view of the energy storage system is in a fast charging state, the interface of the energy storage system changes from the main view of Design 2 to the interface change state diagram of Design 2; in Design 3, when the main view of the energy storage system is in a slow charging state, the interface of the energy storage system changes from the main view of Design 3 to the interface change state diagram of Design 3; in Design 4, when the main view of the energy storage system is in a fault state, the interface of the energy storage system changes from the main view of Design 4 to the interface change state diagram of Design 4; in Design 5, when the main view of the energy storage system is in an overcurrent state, the interface of the energy storage system changes from the main view of Design 5 to the interface change state diagram of Design 5; In Design 6, when the main view of the energy storage system in Design 6 is in an overload state, the interface of the energy storage system changes from the main view of Design 6 to the interface change state diagram of Design 6; in Design 7, when the main view of the energy storage system in Design 7 is in a high-temperature state, the interface of the energy storage system changes from the main view of Design 7 to the interface change state diagram of Design 7; in Design 8, when the main view of the energy storage system in Design 8 is in a low-temperature state, the interface of the energy storage system changes from the main view of Design 8 to the interface change state diagram of Design 8; in Design 9, when the main view of the energy storage system in Design 9 is in a parallel operation state, the interface of the energy storage system changes from the main view of Design 9 to the interface change state diagram of Design 9; in Design 10, when the main view of the energy storage system in Design 10 is in an AC input limiting state, the interface of the energy storage system changes from the main view of Design 10 to the interface change state diagram of Design 10. 8. Other situations requiring explanation: Other views of the display screen panel of electronic devices are all conventional designs, so other views are omitted. The reference diagram for the main view usage status corresponds to any of the main views in designs 1-10.
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