Assembly - Front View
OrthographicShows the primary profile of the joint assembly, including the motor coupling interface, linkage geometry, and overall height. Essential for understanding the mechanism's side profile and mounting orientation.
AI Drawing Analysis
The cards below explain how the generated drawing outputs and assets connect to the final technical sheets.
Shows the primary profile of the joint assembly, including the motor coupling interface, linkage geometry, and overall height. Essential for understanding the mechanism's side profile and mounting orientation.
Reveals the top-down geometry of the parallelogram linkage, the internal cavity structure, and the relationship between the motor coupling and the arm structure. Critical for understanding depth and internal layout.
Displays the circular flange face with the four-hole bolt pattern and central bore. This is the primary interface view for motor mounting and shows the exact hole positions and flange diameter.
Vertical section through the centerline reveals the internal cavity structure, wall thickness of the aluminum shafts (2mm), bore diameter of the central coupling, and the internal linkage geometry that is hidden in orthographic views.
Vertical section through the centerline reveals the internal cavity structure, wall thickness of the aluminum shafts (2mm), bore diameter of the central coupling, and the internal linkage geometry that is hidden in orthographic views.
Magnifies the four-hole bolt pattern on the flange face to clearly show hole diameters, spacing, and their precise positions relative to the central bore for accurate motor mounting.
Downloads
Each sheet available in PDF, SVG, and DXF. Click a format badge to download.
AI Transparency
These drawings were generated from the source 3D CAD geometry. The system analysed the model, selected relevant views, planned section cuts and generated drawing sheets in PDF, SVG and DXF formats.
These are 2D engineering drawings, not 3D files. Dimensions are extracted from the 3D geometry and should be verified against the source model before use in manufacturing.
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