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Siemens offers free tutorials via the portal. The built-in "Synchronous Tutorials" inside the software walk you through fixing common import errors.
Select the four pads, use “Move Face” with 12 mm offset. Select the bore face, drag to 58 mm using live dimensions. Fillets and adjacent geometry update automatically. Done in seconds.
: This intelligent inference engine automatically maintains design intent—such as symmetry or concentricity—during edits, eliminating the need to pre-plan every relationship.
Speed and flexibility. It was excellent for editing imported data or making quick changes to complex geometry.
Live Rules essentially "teach" the geometry how to behave during an edit, providing the stability of parametric modeling without the cumbersome parent-child dependencies.
: A central UI tool used to rotate, move, and reposition geometry by dragging specific axes or planes. Live Rules
This is arguably the strongest use case for Synchronous Technology. In a traditional history-based system, an imported STEP or IGES file is a "dumb solid." It has no feature tree, no sketches, and no parameters. Editing it is notoriously difficult.
Direct modeling bypassed the recipe. It treated geometry as... well, geometry. You grabbed a face and moved it. You selected a hole and deleted it. There was no history tree to manage.
: Solid Edge allows users to mix both Synchronous and Ordered techniques within the same part or assembly, offering a "best of both worlds" approach. BroadTech Engineering Key Benefits
Furthermore, because there is no "replay" on open, the model loads and regenerates instantly. For assemblies with 10,000+ parts, this regeneration speed saves hours of "lunch break waiting for CAD."
Designers sketch loosely. Instead of worrying about fully constrained sketches (which cause strange behavior later), they draw simple profiles, extrude them, and push/pull the results until it "looks right." Only once the form is approved do they lock in dimensions. This speeds industrial design by 3x.
Synchronous Technology is a hybrid modeling approach that combines: