Self-propelled devices for creating map graphical user interfaces for electronic devices
CN310125560SActive Publication Date: 2026-07-31JIANGSU DONGCHENG M&E TOOLS CO LTD
View PDF 0 Cites 0 Cited by
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Designs(China)
- Current Assignee / Owner
- JIANGSU DONGCHENG M&E TOOLS CO LTD
- Filing Date
- 2025-11-20
- Publication Date
- 2026-07-31
Smart Images

Figure 000009_ABST
Abstract
1. Name of the product in this design: A self-propelled device for creating a map graphical user interface for electronic devices. 2. Application of this design: This design is intended for use in an electronic device. 3. The key design feature of this product is its graphical user interface. 4. The image or photo that best illustrates the design points: Design 1 Interface Change State Diagram 8. 5. For standard design purposes, the rear view, left view, right view, top view, and bottom view of designs 1-9 are omitted. 6. Design 1 is designated as the basic design. 7. Purpose of the graphical user interface: Used for creating a graphical user interface for maps on self-propelled devices. Design 1's main view is the main interface for creating a map for the self-propelled device. When the user clicks the "Create Map" button, the interface changes as shown in Figure 1. In Figure 1, clicking the "Remote Mapping" button results in Figure 2. Clicking "OK" in Figure 2 leads to Figure 3. Clicking "Start Mapping" in Figure 3 results in Figure 4. Clicking "Start" in Figure 4 results in Figure 5. After the self-propelled device exits the charging station, Figure 6 is displayed. After the user remotely controls the self-propelled device to the starting point and clicks the "Set Starting Point" button, Figure 7 is displayed. In Figure 7, the user remotely controls the self-propelled device to walk along the boundary, presenting the Design 1 interface change state diagram 8; in the Design 1 interface change state diagram 8, the user remotely controls the self-propelled device to walk along the boundary, and the Design 1 interface change state diagram 8 displays the walking trajectory of the self-propelled device. When it walks to the starting point, the Design 1 interface change state diagram 9 is presented; in the Design 1 interface change state diagram 9, the user clicks the "OK" button, presenting the Design 1 interface change state diagram 10; in the Design 1 interface change state diagram 10, the user clicks the "Complete" button, presenting the Design 1 interface change state diagram 11; in the Design 1 interface change state diagram 11, the user clicks the "Save" button, presenting the Design 1 interface change state diagram 12; in the Design 1 interface change state diagram 12, the user clicks the "Confirm" button, presenting the Design 1 interface change state diagram 13; in the Design 1 interface change state diagram 13, after the map is generated, the Design 1 interface change state diagram 14 is presented. Design 2's main view shows the map creation interface for the self-propelled device. When the user clicks the "Create Map" button, Design 2's interface changes as shown in Figure 1. In Figure 1, the user clicks the "Remote Mapping" button, resulting in Figure 2. In Figure 2, the user clicks the "OK" button, resulting in Figure 3. In Figure 3, the user clicks the "Start Mapping" button, resulting in Figure 4. Finally, the user clicks the "Start" button. The interface changes as shown in Figure 5 of Design 2; after the self-propelled device exits the charging pile, Figure 6 of Design 2 is displayed; after the user remotely controls the self-propelled device to the starting point and clicks the "Set Starting Point" button, Figure 7 of Design 2 is displayed; after the user remotely controls the self-propelled device to walk along the boundary, Figure 8 of Design 2 is displayed; and after the user clicks the "Erase" button in the upper right corner, Figure 9 of Design 2 is displayed. In Design 2 Interface Change State Diagram 9, when the user clicks the "Start Erasure" button, Design 2 Interface Change State Diagram 10 is displayed. In Design 2 Interface Change State Diagram 10, the self-propelled device retreats along the generated map boundary. When the user clicks the "End Erasure" button, Design 2 Interface Change State Diagram 11 is displayed. In Design 2 Interface Change State Diagram 11, the user remotely controls the self-propelled device to move along the boundary, and Design 2 Interface Change State Diagram 11 displays the self-propelled device's movement trajectory. When it reaches the starting point, Design 2 Interface Change State Diagram 12 is displayed. In step 12, the user clicks the "OK" button, resulting in the design 2 interface change state diagram 13; in design 2 interface change state diagram 13, the user clicks the "Complete" button, resulting in the design 2 interface change state diagram 14; in design 2 interface change state diagram 14, the user clicks the "Save" button, resulting in the design 2 interface change state diagram 15; in design 2 interface change state diagram 15, the user clicks the "Confirm" button, resulting in the design 2 interface change state diagram 16; in design 2 interface change state diagram 16, after the map is generated, the design 2 interface change state diagram 17 is displayed. Design 3's main view is the main interface for creating a map for the self-propelled device. When the user clicks the "Create Map" button, Design 3's interface changes as shown in Figure 1. In Figure 1, clicking the "AI Mapping" button results in Figure 2. Clicking "OK" in Figure 2 leads to Figure 3. Clicking "Start Mapping" in Figure 3 leads to Figure 4. Clicking "OK" in Figure 4 leads to Figure 5. After the self-propelled device exits the charging station, Figure 6 is displayed. In Figure 6, the user remotely moves the self-propelled device to the edge of the work area. Once the device detects that mapping can begin at the current location, Figure 7 is displayed. When the user clicks the "Start" button, the Design 3 interface transition state diagram 8 is displayed. In Design 3 interface transition state diagram 8, the self-propelled device performs AI automatic mapping. The self-propelled device automatically moves along the edge of the work area from the starting point, and the walking trajectory of the self-propelled device is displayed on Design 3 interface transition state diagram 8. When the self-propelled device returns to the starting point, Design 3 interface transition state diagram 9 is displayed. In Design 3 interface transition state diagram 9, the user clicks the "OK" button, and Design 3 interface transition state diagram 10 is displayed. In Design 3 interface transition state diagram 10, the user clicks the "Complete" button, and Design 3 interface transition state diagram 11 is displayed. In Design 3 interface transition state diagram 11, the user clicks the "Save" button, and Design 3 interface transition state diagram 12 is displayed. In Design 3 interface transition state diagram 12, the user clicks the "Confirm" button, and Design 3 interface transition state diagram 13 is displayed. In Design 3 interface transition state diagram 13, after the map is generated, Design 3 interface transition state diagram 14 is displayed. Design 4's main view shows the main interface for creating a map for the self-propelled device. When the user clicks the "Create Map" button, Design 4's interface changes as shown in Figure 1. In Figure 1, clicking the "AI Mapping" button results in Figure 2. Clicking the "OK" button in Figure 2 leads to Figure 3. Clicking the "Start Mapping" button in Figure 3 results in Figure 4. Finally, clicking the "OK" button again completes the design. Figure 5; In Design 4 Interface Change State Figure 5, after the self-propelled device exits the charging pile, Design 4 Interface Change State Figure 6 is displayed; In Design 4 Interface Change State Figure 6, the user remotely controls the self-propelled device to the edge of the work area. When the self-propelled device detects that the current position is ready to start mapping, Design 4 Interface Change State Figure 7 is displayed; In Design 4 Interface Change State Figure 7, the user clicks the "Continue Remote Control" button, and Design 4 Interface Change State Figure 8 is displayed; In Design 4 Interface Change State Figure 8, when the user remotely controls the self-propelled device to a position where AI mapping is not possible, Design 4 Interface Change State Figure 9 is displayed. In Design 4 Interface Change State Diagram 9, when the user remotely controls the self-propelled device to a position where AI mapping can begin, Design 4 Interface Change State Diagram 10 is displayed. In Design 4 Interface Change State Diagram 10, after the user clicks the "Start AI Mapping" button, Design 4 Interface Change State Diagram 11 is displayed. In Design 4 Interface Change State Diagram 11, the self-propelled device performs automatic AI mapping. The self-propelled device automatically moves from the starting point along the edge of the work area, and its movement trajectory is displayed on Design 4 Interface Change State Diagram 11. When the self-propelled device returns to the starting point, Design 4 Interface Change State Diagram 1 is displayed. 2; In Design 4 Interface Change State Diagram 12, the user clicks the "OK" button, presenting Design 4 Interface Change State Diagram 13; In Design 4 Interface Change State Diagram 13, the user clicks the "Finish" button, presenting Design 4 Interface Change State Diagram 14; In Design 4 Interface Change State Diagram 14, the user clicks the "Save" button, presenting Design 4 Interface Change State Diagram 15; In Design 4 Interface Change State Diagram 15, the user clicks the "Confirm" button, presenting Design 4 Interface Change State Diagram 16; In Design 4 Interface Change State Diagram 16, after the map is generated, Design 4 Interface Change State Diagram 17 is presented. Design 5's main view is the main interface for creating a map for the self-propelled device. When the user clicks the "Create Map" button, Design 5's interface changes as shown in Figure 1. In Figure 1, clicking the "AI Mapping" button results in Figure 2. In Figure 2, clicking the "OK" button leads to Figure 3. In Figure 3, clicking the "Start Mapping" button results in Figure 4. Finally, clicking the "OK" button again... The current design is shown in Interface Change State Diagram 5. In Interface Change State Diagram 5, after the self-propelled device exits the charging pile, Interface Change State Diagram 6 is displayed. In Interface Change State Diagram 6, the user remotely controls the self-propelled device to the edge of the work area. When the self-propelled device detects that the current location is ready to begin mapping, Interface Change State Diagram 7 is displayed. In Interface Change State Diagram 7, the user clicks the "Start" button, and Interface Change State Diagram 8 is displayed. In Interface Change State Diagram 8, the self-propelled device performs AI-based automatic mapping, starting from the starting point. The device automatically moves along the edge of the work area, and its movement trajectory is displayed on Interface Change Figure 8. When the user clicks the "Pause" button, Interface Change Figure 9 is displayed. In Interface Change Figure 9, the user clicks the "Remote Control" button, and Interface Change Figure 10 is displayed. In Interface Change Figure 10, the user remotely controls the self-propelled device to move along the boundary, and Interface Change Figure 10 displays the device's movement trajectory. When it reaches the starting point, Interface Change Figure 11 is displayed. In state diagram 11, the user clicks the "OK" button, resulting in state diagram 12 of the Design 5 interface; in state diagram 12, the user clicks the "Complete" button, resulting in state diagram 13 of the Design 5 interface; in state diagram 13, the user clicks the "Save" button, resulting in state diagram 14 of the Design 5 interface; in state diagram 14, the user clicks the "Confirm" button, resulting in state diagram 15 of the Design 5 interface; in state diagram 15, after the map is generated, state diagram 16 of the Design 5 interface is displayed. Design 6's main view shows the main interface for creating a map for the self-propelled device. When the user clicks the "Create Map" button, Design 6's interface changes as shown in Figure 1. In Figure 1, clicking the "AI Mapping" button results in Figure 2. Clicking "OK" in Figure 2 leads to Figure 3. Clicking "Start Mapping" in Figure 3 results in Figure 4. Clicking "OK" in Figure 4 leads to Figure 5. Finally, in Figure 5, the self-propelled device exits the charging station. The design interface changes as shown in Figure 6. In Figure 6, the user remotely controls the self-propelled device to the edge of the work area. When the device detects that mapping can begin at the current location, Figure 7 is displayed. In Figure 7, the user clicks the "Start" button, resulting in Figure 8. In Figure 8, the self-propelled device performs AI-based automatic mapping, moving automatically from the starting point along the edge of the work area. The device's trajectory is displayed on Figure 8. The user clicks the "Pause" button, resulting in Figure 9. In state diagram 9, when the user clicks the "Erase" button in the upper right corner, state diagram 10 of the Design 6 interface changes is displayed; in state diagram 10 of the Design 6 interface changes, when the user clicks the "Start Erase" button, state diagram 11 of the Design 6 interface changes is displayed; in state diagram 11 of the Design 6 interface changes, the self-propelled device retreats along the generated map boundary; when the user clicks the "End Erase" button, state diagram 12 of the Design 6 interface changes is displayed; in state diagram 12 of the Design 6 interface changes, when the user clicks the "Remote Control" button, state diagram 13 of the Design 6 interface changes is displayed; in state diagram 13 of the Design 6 interface changes, the user remotely controls the self-propelled device to move along the boundary, and state diagram 13 of the Design 6 interface displays the self-propelled device's movement. The device's movement trajectory, upon reaching the starting point, displays the design interface change state diagram 14; in the design interface change state diagram 14, if the user clicks the "OK" button, the design interface change state diagram 15 is displayed; in the design interface change state diagram 15, if the user clicks the "Complete" button, the design interface change state diagram 16 is displayed; in the design interface change state diagram 16, if the user clicks the "Save" button, the design interface change state diagram 17 is displayed; in the design interface change state diagram 17, if the user clicks the "Confirm" button, the design interface change state diagram 18 is displayed; in the design interface change state diagram 18, after the map is generated, the design interface change state diagram 19 is displayed. Design 7's main view is the main interface for creating a map for the self-propelled device. When the user clicks the "Create Map" button, Design 7's interface changes as shown in Figure 1. In Figure 1, clicking the "AI Mapping" button results in Figure 2. In Figure 2, clicking the "OK" button leads to Figure 3. In Figure 3, clicking the "Start Mapping" button results in Figure 4. Finally, clicking the "OK" button again... The current interface transition state diagram is shown in Figure 5. In Figure 5, after the self-propelled device exits the charging pile, Figure 6 is displayed. In Figure 6, the user remotely controls the self-propelled device to the edge of the work area. When the self-propelled device detects that the current location is ready to begin mapping, Figure 7 is displayed. In Figure 7, the user clicks the "Start" button, and Figure 8 is displayed. In Figure 8, the self-propelled device performs AI-based automatic mapping. The device automatically moves along the edge of the work area, and its movement trajectory is displayed on the interface change diagram 8 (Design 7). When the device cannot recognize the boundary, interface change diagram 9 (Design 7) is displayed. In interface change diagram 9, the user clicks the "OK" button, and interface change diagram 10 (Design 7) is displayed. In interface change diagram 10, the user remotely controls the device to move along the boundary, and interface change diagram 10 displays the device's movement trajectory. When it reaches the starting point, interface change diagram 11 (Design 7) is displayed. In state diagram 11, the user clicks the "OK" button, resulting in state diagram 12 of the Design 7 interface; in state diagram 12, the user clicks the "Complete" button, resulting in state diagram 13 of the Design 7 interface; in state diagram 13, the user clicks the "Save" button, resulting in state diagram 14 of the Design 7 interface; in state diagram 14, the user clicks the "Confirm" button, resulting in state diagram 15 of the Design 7 interface; in state diagram 15, after the map is generated, state diagram 16 of the Design 7 interface is displayed. Design 8's main view shows the main interface for creating a map for the self-propelled device. When the user clicks the "Create Map" button, Design 8's interface changes as shown in Figure 1. In Figure 1, clicking the "AI Mapping" button results in Figure 2. In Figure 2, clicking the "OK" button results in Figure 3. In Figure 3, clicking the "Start Mapping" button results in Figure 4. In Figure 4, clicking the "OK" button results in Figure 5. In Figure 5, the self-propelled device... After the self-propelled device exits the charging station, the interface changes as shown in Figure 6 of Design 8. In Figure 6, the user remotely controls the self-propelled device to the edge of the work area. Once the device detects that mapping can begin at the current location, Figure 7 of Design 8 is displayed. In Figure 7, the user clicks the "Start" button, and Figure 8 of Design 8 is displayed. In Figure 8, the self-propelled device performs AI-based automatic mapping, automatically moving along the edge of the work area from its starting point. The device's trajectory is displayed on Figure 8. If the self-propelled device cannot recognize the boundary... The design interface changes as shown in Figure 9. In Figure 9, the user clicks the "OK" button, resulting in Figure 10. In Figure 10, the user remotely controls the self-propelled device to continue mapping, and Figure 10 also displays the device's trajectory. When the device detects its current location and can continue AI mapping, Figure 11 is displayed. In Figure 11, the user clicks "Continue AI," resulting in Figure 12. In Figure 12, the self-propelled device performs automatic AI mapping. When the device returns... Upon reaching the starting point, the interface changes as shown in Figure 13 of Design 8. In Figure 13, if the user clicks the "OK" button, Figure 14 of Design 8 is displayed. In Figure 14, if the user clicks the "Complete" button, Figure 15 of Design 8 is displayed. In Figure 15, if the user clicks the "Save" button, Figure 16 of Design 8 is displayed. In Figure 16, if the user clicks the "Confirm" button, Figure 17 of Design 8 is displayed. In Figure 17, once the map is generated, Figure 18 of Design 8 is displayed. Design 9's main view is the main interface for creating a map for the self-propelled device. When the user clicks the "Create Map" button, Design 9's interface changes as shown in Figure 1. In Figure 1, clicking the "AI Mapping" button results in Figure 2. Clicking "OK" in Figure 2 leads to Figure 3. Clicking "Start Mapping" in Figure 3 results in Figure 4. Clicking "OK" in Figure 4 leads to Figure 5. In Design 9 Interface Change State Diagram 5, after the self-propelled device exits the charging pile, Design 9 Interface Change State Diagram 6 is displayed. In Design 9 Interface Change State Diagram 6, the user remotely controls the self-propelled device to the edge of the work area. When the self-propelled device detects that the current position is ready to start mapping, Design 9 Interface Change State Diagram 7 is displayed. In Design 9 Interface Change State Diagram 7, the user clicks the "Start" button, and Design 9 Interface Change State Diagram 8 is displayed. In Design 9 Interface Change State Diagram 8, the self-propelled device performs AI automatic mapping. The self-propelled device automatically walks along the edge of the work area from the starting point, and Design 9 Interface Change State Diagram 8 displays... The self-propelled device's walking trajectory is shown in Design 9 interface state diagram 9 when the user clicks the "Pause" button. In Design 9 interface state diagram 9, the user clicks the "Remote Control" button, resulting in Design 9 interface state diagram 10. In Design 9 interface state diagram 10, the user remotely controls the self-propelled device to continue mapping, and Design 9 interface state diagram 10 displays the self-propelled device's walking trajectory. When the user clicks the "Continue AI" button, Design 9 interface state diagram 11 is shown. In Design 9 interface state diagram 11, the self-propelled device performs AI automatic mapping. When the self-propelled device returns to the starting point, Design 9 interface is displayed again. Change state diagram 12; In Design 9 interface change state diagram 12, the user clicks the "OK" button, and Design 9 interface change state diagram 13 is presented; In Design 9 interface change state diagram 13, the user clicks the "Finish" button, and Design 9 interface change state diagram 14 is presented; In Design 9 interface change state diagram 14, the user clicks the "Save" button, and Design 9 interface change state diagram 15 is presented; In Design 9 interface change state diagram 15, the user clicks the "Confirm" button, and Design 9 interface change state diagram 16 is presented; In Design 9 interface change state diagram 16, after the map is generated, Design 9 interface change state diagram 17 is presented.
Need to check novelty before this filing date? Find Prior Art