A dynamic graphical user interface for an electronic device for detecting exhaled nitric oxide

CN309275177SActive Publication Date: 2025-05-06SHENZHEN MEIHAO CHUANGYI MEDICAL TECH CO LTD
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Patent Information

Application Number
CN202430327174.3
Authority / Receiving Office
CN · China
Patent Type
Designs(China)
Current Assignee / Owner
Filing Date
2024-05-30
Publication Date
2025-05-06
Estimated Expiration
2039-05-30

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Abstract

1. Name of the product of this design: The main body of a dynamic graphical user interface for exhaled nitric oxide detection in an electronic device. 2. Purpose of the product of this design: an electronic device. 3. The key design point of this appearance design product lies in the graphical user interface. 4. The picture or photo that best illustrates the key points of the design: Main view of Design 1. 5. Designate Design 1 as the base design. 6. Purpose of the graphical user interface: to display the breathing status of the subject in real time during the exhalation measurement of the subject for exhaled nitric oxide detection. 7. Human-computer interaction mode of the graphical user interface: Design 1 The main view is the first graphical user interface of the breath nitric oxide detector measurement interface when the subject performs breath measurement. Among them, the hang glider in the upper right corner of the main view of Design 1 is a movable display control, and its running trajectory in the graphical user interface corresponds to the breathing process of the subject. Design 1 main view to Design 1 change state diagram 2 corresponds to the first stage of the inhalation process when the user performs exhalation measurement. During this process, the hang glider display control continues to fall vertically to the bottom of the measurement interface along with the subject's inhalation action; Design 1 change state diagram 3 to Design 1 change state diagram 6 corresponds to the second stage of the exhalation process when the user performs exhalation measurement. During this process, the hang glider display control fluctuates up and down from the bottom of the measurement interface and moves rightward to the right static display control, and when the hang glider display control touches the upper and lower lines in the test interface, the hang glider display control displays an abnormal state (Design 1 change state diagram 4). The main view of Design 2 is the second graphical user interface of the breath nitric oxide detector measurement interface when the subject performs breath measurement. Among them, the hot air balloon in the upper right corner of the main view of Design 2 is a movable display control, and its running trajectory in the graphical user interface corresponds to the subject's breathing process. Design 2 main view to Design 2 change state diagram 2 corresponds to the first stage of the inhalation process when the user performs exhalation measurement. During this process, the hot air balloon display control continues to fall vertically to the bottom of the measurement interface along with the subject's inhalation action; Design 2 change state diagram 3 to Design 2 change state diagram 6 correspond to the second stage of the exhalation process when the user performs exhalation measurement. During this process, the hot air balloon display control fluctuates up and down from the bottom of the measurement interface and moves to the right to the static display control on the right, and when the hot air balloon display control touches the upper and lower lines in the test interface, the hot air balloon display control displays an abnormal state (Design 2 change state diagram 5). 8. Other situations that need explanation: This design is a partial design. The part covered by solid lines is the protected part, and the patterns and characters in the part covered by dotted lines are not protected parts.
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