Graphical user interface for step tread design analysis for electronic devices

CN309876844SActive Publication Date: 2026-03-27SUZHOU XINDELI MECHANICAL & ELECTRICAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Designs(China)
Current Assignee / Owner
Filing Date
2024-11-21
Publication Date
2026-03-27

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Abstract

1. The name of the present design product: graphical user interface for step tread design analysis of escalator. 2. The use of the present design product: for displaying graphical user interface and human-computer interaction. 3. The design points of the present design product: in graphical user interface. 4. The picture or photo that best shows the design points: front view. 5. The design points of the present design product are in graphical user interface, other views are omitted. 6. The use of the graphical user interface: for analyzing the meshing clearance of adjacent step tread of escalator. 7. The change state description of the graphical user interface: front view, select the "Method 2: Batch Calculation" option in the front view, then click the "Confirm" button under "Method 2: Batch Calculation", then select the "0.2mm" option or "0.8mm" option or "1.6mm" option or "3.2mm" option under "Curve Point Precision", then click the "Calculate Coordinates" button under "Curve Point Precision", switch to interface change state figure 1. Interface change state figure 1, select the "Method 1: Calculate Arc Curve Equation According to Sample Point Coordinate Value" option in interface change state figure 1, switch to interface change state figure 2. Interface change state figure 2, select the "Manual Input Sample Point Position" option under "Sample Point Method" in "Method 1: Calculate Arc Curve Equation According to Sample Point Coordinate Value" in interface change state figure 2, then select the "Adjust X Distance" option and / or "Adjust Y Distance" option, then input the corresponding numbers in the input boxes under "Sample Point Number, Coordinates" in "Method 1: Calculate Arc Curve Equation According to Sample Point Coordinate Value", finally click the "Calculate Curve" button in "Method 1: Calculate Arc Curve Equation According to Sample Point Coordinate Value", switch to interface change state figure 3. Interface change state figure 3, click the "Clearance Analysis" tab at the top of interface change state figure 3, switch to interface change state figure 4. Interface change state figure 4, select the "Batch Calculation" option in "Calculate Step Tread Clearance" in interface change state figure 4, then click the "Clearance Calculation" button under "Batch Calculation", switch to interface change state figure 5. The interface change state diagram 5, check the "effect evaluation" under the "horizontal statistics" option, "vertical statistics" option, "mark data less than ____ mm as orange" option and "mark data greater than ____ mm as purple" option in the interface change diagram 5, and then fill in the minimum gap value in the space of the "mark data less than ____ mm as orange" option, and fill in the maximum gap value in the space of the "mark data greater than XX mm as purple" option, and then click the "analysis rating" button under "effect evaluation" to switch to the interface change state diagram 6. The interface change state diagram 6, click the "preferred design" tab at the top of the interface change state diagram 6 to switch to the interface change state diagram 7. The interface change state diagram 7, check the "batch preferred design curve" option in the interface change state diagram 7, and then input the corresponding number in the "X coordinate point distance ____ mm" input box under "value precision", and then click the "interval setting" button and the "gap summary" button in turn to switch to the interface change state diagram 8. The interface change state diagram 8, check the "data analysis" under the "mark data with minimum gap (Min) greater than XX mm as cyan" option, "mark data with maximum gap (Max) less than XX mm as orange" option and "mark data meeting the above two conditions as green" option in the interface change state diagram 8, and then fill in the minimum gap value in the "mark data with minimum gap (Min) greater than XX mm as cyan" option, and fill in the maximum gap value in the "mark data with maximum gap (Max) less than XX mm as orange" option, and then click the "preferred data" button under "data analysis" to switch to the interface change state diagram 9. The interface change state diagram 9, check the "verify preferred parameters" under the "cutting kickboard arc design parameters" option in the interface change state diagram 9, and then click the "verify parameters" button to switch to the interface change state diagram 10.
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