About
Industry-leading BIM authoring platform enabling architects, engineers, and construction professionals to design, visualize, and coordinate building projects in a centralized 3D model. Supports parametric design, integrated documentation, and multi-discipline collaboration.
How teams use it
By audience
- Architecture
- Authors the architectural BIM model with parametric walls, floors, roofs, doors, and windows that update automatically across plans, sections, and elevations.
- Produces coordinated construction documentation directly from the model, so any model change propagates to every drawing sheet and keeps views in sync.
- Builds and manages loadable families and types to standardize doors, windows, casework, and furnishings across projects.
- Generates room/area schedules, door and window schedules, and material takeoffs that read live data straight from model elements.
- Develops design intent in 3D and runs interference/visual checks against structural and MEP models linked into the host file.
- Structural Engineering
- Models the analytical and physical structure—columns, beams, braces, slabs, foundations, and rebar—using structural framing families and parametric constraints.
- Links the architectural model and uses copy/monitor to track grids, levels, and elements, flagging when the architect's model moves out of alignment.
- Exchanges the structural model with analysis tools (e.g., Robot Structural Analysis) for sizing and code checks, then brings results back into the BIM model.
- Produces structural drawing sets, framing plans, sections, and rebar/quantity schedules driven directly by the model.
- Detects clashes between structural framing and architectural/MEP elements before documentation is finalized.
- MEP Engineering
- Models mechanical, electrical, and plumbing systems—ducts, pipes, conduit, cable tray, and equipment—with connectivity and system definitions.
- Runs built-in engineering calculations such as duct/pipe sizing, pressure loss, and electrical loads using the system data in the model.
- Links and coordinates against architectural and structural models to route services through available space and avoid clashes with beams and structure.
- Generates MEP schedules, panel schedules, and equipment/fixture takeoffs from model element data.
- Produces coordinated MEP construction documents and connects to Navisworks for whole-building clash detection.
By phase
- Concept & Planning
- Builds early massing and conceptual forms to study building footprint, floor area, and program before detailed modeling begins.
- Uses area and room schedules to validate program requirements and space allocation against the brief.
- Generates quick plans, sections, and 3D views to communicate design options to stakeholders.
- Establishes the project's grids, levels, and shared coordinates that anchor all downstream multi-discipline modeling.
- Design
- Serves as the primary BIM authoring tool where architectural, structural, and MEP models are developed in parallel and linked together.
- Drives multi-discipline coordination via linked models, copy/monitor, and interference checks to resolve conflicts during design.
- Develops parametric detail with families and type catalogs, refining elements as the design matures.
- Keeps plans, sections, elevations, and schedules continuously synchronized with the evolving model.
- Exchanges data with analysis and rendering tools to test structural, energy, and visual performance.
- Pre-Construction
- Produces the coordinated construction documentation set—drawings, sheets, and schedules—issued for permit and tender.
- Generates quantity and material takeoffs from model schedules to support estimating and bidding.
- Exports the model to Navisworks and BIM 360/ACC for federated clash detection and constructability review across disciplines.
- Refines families and details to a level of development suitable for fabrication and construction handoff.
- Construction
- Acts as the source of record for shop-drawing-level detail and as-designed geometry that field teams reference.
- Supplies the model to coordination and field tools (Navisworks, BIM 360/ACC) so RFIs and changes can be checked against design intent.
- Issues revisions and updated documentation from the model as design changes occur during construction.
- Feeds model-based quantities and fabrication-level families to detailing and prefabrication workflows.
Integrations (20)
| Direction | Integrates with | Connection | Details |
|---|---|---|---|
| Both | NativeRevit Cloud Worksharing / Desktop Connector | ||
| Both | NativeCollaborate for Revit (BIM 360) | ||
| Both | NativeDWG link / export | ||
| Outbound | NativeACC native integration | ||
| Both | NativeTrimble Connect for Revit Add-In | ||
| Outbound | NativeBluebeam plug-in for Revit | ||
| Both | NativeForma Connected Client / Forma Connector | ||
| Outbound | NativeArcGIS Pro BIM Cloud Connection / ArcGIS GeoBIM (Revit) | ||
| Both | NativeRevizto for Revit add-in | ||
| Outbound | NativeProcore BIM Plugin for Revit | ||
| Inbound | Native | ||
| Both | NativeRevit DWG/AutoCAD Architecture export | ||
| Both | NativeForma Connected Client - Revit | ||
| Both | NativeAutodesk Forma Add-In for Revit | ||
| Both | NativeRevit Importer / SketchUp-to-Revit exporter | ||
| Both | NativeEndra Revit add-in (Autodesk App Store) | ||
| Both | NativeRevit plugin | ||
| Both | NativeNewforma Konekt Revit add-in (BCF coordination) | ||
| Inbound | NativeCupix Reality Importer (Revit Plug-in) | ||
| Both | NativeStructured AI Revit add-in |
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