Graphical user interface for a test handler control monitoring system for electronic devices

CN310141832SActive Publication Date: 2026-08-11HANGZHOU CHANGCHUAN TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Designs(China)
Current Assignee / Owner
Filing Date
2025-09-22
Publication Date
2026-08-11

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Abstract

1. Name of the product in this design: Graphical User Interface of Test Machine Control and Monitoring System for Electronic Equipment. 2. Purpose of this design: An electronic device. 3. The key design features of this product are: the content of the graphical user interface in the electronic device. 4. The picture or photo that best illustrates the key design points: Design 1 Change State Diagram 1. 5. As is customary, the top view, bottom view, left view, right view, and rear view of each design are omitted. 6. Design 1 is designated as the basic design. 7. Purpose of the graphical user interface: It is used to transform the operating parameters of physical equipment into an immersive interactive experience, helping operators achieve the following in complex testing environments: global monitoring of cross-cavity operating status, rapid location and intelligent handling of abnormal events, accurate backtracking analysis of operating history, and significant improvement in human-machine collaboration efficiency. While maintaining the professionalism of industrial equipment interfaces, the traditional monitoring interface is upgraded from a "data display" to a "decision support" tool through dynamic visualization and intelligent interactive design, which meets the intelligent needs of modern intelligent manufacturing for human-machine interfaces. 8. Human-computer interaction method of graphical user interface: The main view of Design 1 is the power-on interface. Clicking the "Power On" button in the main view of Design 1 will enter the change state diagram 1 of Design 1, and the cavity will complete the power-on action; clicking the "Close" button in the change state diagram 1 of Design 1 will enter the change state diagram 2 of Design 1, and prompt that the machine is running and cannot be closed. Design 2's main view is the power-on interface. Clicking the "Power On" button in Design 1's main view will take you to Design 2's change state diagram 1, where the cavity has completed the power-on action. Clicking the "Power Off" button in Design 2's main view will take you to Design 2's change state diagram 2, where the cavity has completed the power-off action, and the relevant controls will be grayed out. The main view of Design 3 is the power-on interface. Clicking the "Power On" button in the main view of Design 3 will enter the Design 3 change state diagram 1, and the cavity will complete the power-on action. When alarms such as smoke, temperature, or leakage occur, the system will enter the Design 3 change state diagram 2, and the corresponding controls in the status monitoring will be highlighted to indicate that an abnormality has occurred. Design 4's main view is the boot interface. When the fan speed is abnormal, the Design 4 status change diagram will be entered, an alarm will be generated, detailed information will be displayed, and the fan in the corresponding position on the interface will be displayed in red. The main view of Design 5 is the power-on interface. Clicking the "Power On" button in the main view of Design 5 will take you to Design 5 Change State Diagram 1, where the cavity has completed the power-on action. The lifting and flipping platform area can simulate the movement scene of the flipping machine. When the flipping machine rises, you can see the simulation effect of the machine intuitively through the lifting and flipping platform. This will take you to Design 5 Change State Diagram 2, where the lifting process is displayed. When the flipping machine flips, you can take you to Design 5 Change State Diagram 3 to view the flipping effect. The main view of Design 6 is the power-on interface. The automatic door area can simulate the movement scene of the automatic door of the device. Clicking the "Open Door" button will take you to the Design 6 Change State Diagram 1; clicking the "Close Door" button in the Design 6 Change State Diagram 1 will take you to the Design 6 Change State Diagram 2. Design 7's main view is the power-on interface, displaying the chiller's status. If the chiller malfunctions and generates a normal alarm, the system will enter the Design 7 status change diagram, which will not affect normal testing. The main view of Design 8 is the power-on interface, which displays the status of the chiller. If the chiller malfunctions and generates a shutdown alarm, the system will enter the Design 8 Change State Diagram 1, interrupting the test process. Clicking the "Power On" button in Design 8 Change State Diagram 1 will enter Design 8 Change State Diagram 2, where a message will indicate that the power-on operation is not allowed.
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