Drive Team Excellence with Autodesk BIM Corporate Training

Autodesk  Building Information Modeling is software used for digital processes in the Architecture, Engineering, and Construction (AEC) industries. BIM helps teams to optimize construction processes and deliver higher-quality building projects. Employees need this training to generate accurate construction documentation, analyze building performance, and optimize project workflows.

Edstellar's virtual/onsite Autodesk BIM training course provides customization options and employs cutting-edge methodologies for better results. Our trainers are recognized for their expertise in Autodesk BIM instructor-led training course and have vast experience in solving the complexities of Building Information Modeling, project management, and design optimization.

Get Customized Expert-led Training for Your Teams
Customized Training Delivery
Scale Your Training: Small to Large Teams
In-person Onsite, Live Virtual or Hybrid Training Modes
Plan from 2000+ Industry-ready Training Programs
Experience Hands-On Learning from Industry Experts
Delivery Capability Across 100+ Countries & 10+ Languages
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Skills Your Employees Will Gain

These are the core, hands-on capabilities your team builds during the program.

  • Information Management
    Information Management is the process of collecting, storing, and utilizing data effectively. This skill is important for roles like data analysts and IT managers, ensuring informed decision-making and operational efficiency.
  • Collaborative Project Management
    Collaborative Project Management is the ability to work effectively with diverse teams to achieve project goals. This skill is important for roles like project managers and team leaders, as it fosters communication, enhances problem-solving, and drives successful outcomes.
  • Multidisciplinary Coordination
    Multidisciplinary Coordination is the ability to collaborate across diverse fields to achieve common goals. this skill is important for project managers and team leaders, ensuring effective communication and synergy among varied expertise, leading to innovative solutions and successful outcomes.
  • Sustainable Design Integration
    Sustainable Design Integration involves incorporating eco-friendly practices into design processes. This skill is important for architects and product designers to create environmentally responsible solutions.
  • Facility Management Integration
    Facility Management Integration is the coordination of various facility services to optimize efficiency and effectiveness. This skill is important for facility managers to ensure seamless operations, enhance safety, and improve occupant satisfaction.
  • Construction Sequencing (4D BIM)
    Construction Sequencing (4D BIM) integrates time with 3D models, enhancing project visualization and planning. This skill is important for project managers and architects to optimize schedules, reduce costs, and improve collaboration.

What Your Team Will Achieve After This Training

  • Apply BIM principles to develop collaborative project workflows
  • Generate accurate 3D models for architectural visualization
  • Analyze project data for informed decision-making
  • Analyze MEP system requirements and utilize families to model equipment, ductwork, piping, and fixtures with appropriate connection points
  • Create structural families and integrate them with project information for accurate modeling and structural analysis 
  • Generate schedules and material takeoff reports
  • Develop custom system families and parametric frameworks

Topics & Program Outline

The curriculum is organized into focused modules built by industry experts and delivered virtually or on-premise. Interactive sessions reflect the evolving demands of the workplace, keeping the learning both relevant and practical.

  1. Preparing project templates
    • Project information and defaults
    • Sheet layouts and organization
    • Loading project templates
  2. Customizing annotation styles
    • Line styles, arrows, and text formatting
    • Dimension styles and controls
    • Symbol libraries and callout tags
  3. Creating title blocks
    • Project title, information, and logo
    • Revision control and sheet numbering
  4. View templates
    • Creating and modifying views
    • Standard views 
    • Custom views and detail callouts
  5. Settings for mechanical and electrical projects
    • Specific annotation styles and tags
    • System abbreviation and representation
  6. Settings for structural projects
    • Material properties and notations
    • Load calculations and display
    • Reinforcement detailing and schedules
  1. Creating schedules
    • Selecting elements and data for schedules
    • Customizing schedule formatting and content
    • Filtering and grouping schedule entries
  2. Modifying schedules
    • Adding and removing columns
    • Sorting and filtering data
  3. Graphical column schedules
    • Using graphical elements in schedules 
    • Customizing the visual representation of data
    • Linking schedules to graphical elements
  4. Advanced schedule options
    • Conditional formatting based on values
    • Exporting schedules to external formats
  1. Creating wall, roof, and floor types
    • Defining wall, roof, and floor structure
    • Applying materials and textures
  2. Vertically compound walls
    • Combining multiple wall types in a single element
    • Controlling layer composition and thickness
  3. Stacked and embedded walls
    • Nesting wall types for complex geometries
    • Controlling stacking order and offsets
    • Creating interlocking or intersecting walls
  4. MEP system families
    • Mechanical, electrical, and plumbing systems
    • Creating families for ducts, pipes, conduits
  1. Introduction to creating families
    • Understanding family components and parameters
    • Family categories and classifications
    • Benefits of using families
  2. Creating the parametric framework
    • Defining reference planes and lines
    • Using dimensions and relationships
    • Controlling geometry with formulas
  3. Creating family elements
    • Placing walls, floors, ceilings
    • Loading voids and openings
  4. Additional tools for families
    • Voids, cuts, and workplaces
    • In-place families vs loadable families
    • Formulas and conditional statements
  5. Creating family types
    • Defining variations within a family
    • Using type parameters for flexibility
  6. Visibility display settings
    • Controlling element visibility based on parameters
    • Creating phase visibility for construction sequencing
    • Using visibility settings for different views

 

  1. Creating in-place families
    • Families specific to a particular project location
    • Limited reusability compared to loadable families
    • Editing existing elements and converting them to families
  2. Creating profiles
    • Custom shapes for walls, ceilings
    • Using lines, arcs, and sweeps to define profiles
  3. Creating annotation families
    • Families for symbols, tags, and labels
    • Using text parameters and formatting
    • Loading annotation families into projects
  4. Working with shared parameters
    • Creating project-wide parameters for families
    • Using shared parameters for data consistency
    • Scheduling elements based on shared parameters
  1. Creating custom doors and windows
    • Defining door and window sizes and configurations
    • Using nested families for complex components
    • Applying materials and glazing options
  2. Creating angled cornices and coping
    • Families for roof edges and trims
    • Using sweeps and blends for custom profiles
  3. Creating custom railings
    • Families for railings, balusters, and handrails
    • Parametric control over railing length, style, and profile
  4. Families for railings, balusters, and panels
    • Creating separate families for railing components
    • Nesting families for assemblies
    • Controlling spacing and connections
  1. Introduction to MEP families
    • Families for mechanical, electrical, and plumbing systems
    • Focus on functionality and connection points
  2. HVAC equipment families
    • Air handling units, chillers, boilers
    • Parametric controls for equipment size and capacity
    • Representation of connections
    • Including performance data and schedules
  3. Ductwork families
    • Families for rectangular, round, and flexible ducts
    • Parametric controls for size and fitting options
  4. Creating pipe fitting families
    • Families for elbows, tees, couplings
    • Parametric controls for pipe diameter and connection types
    • Automatic generation of mitered bends
  5. Plumbing fixture families
    • Families for sinks, toilets, bathtubs
    • Defining water supply and drainage connections
    • Parametric controls for fixture size and style
    • Including fixture data for calculations
  6. Electrical fixture families
    • Families for lights, switches, outlets
    • Defining electrical connection points and ratings
    • Parametric controls for fixture type and size
  7. Lighting fixture families
    • Further details on specific lighting families
    • Distribution of light output and lumens
    • Symbol representation and visibility settings
  8. Fire protection families
    • Families for sprinklers, fire dampers, fire alarms
    • Parametric controls for component size and spacing

 

  1. Introduction to structural families
    • Focus on structural elements and their behavior
    • Importance of accurate modeling and calculations
  2. Structural column families
    • Defining column shapes
    • Parametric controls for column size and material
  3. Structural beam families
    • Defining beam shapes
    • Parametric controls for beam size and material
    • Including connection details and loads
  4. Structural foundation families
    • Families for footings, slabs, and foundations
    • Defining material properties and thicknesses
    • Integration with soil analysis data
  5. Structural connection families
    • Parametric controls for joint geometry and reinforcement
    • Representation of different connection types
  6. Reinforcement families
    • Families for rebar
    • Defining bar size, spacing, and bending details

Who Should Attend?

This program suits professionals at many levels across the organization, including:

  • BIM Coordinators
  • Architects
  • Structural Engineers
  • Draftsmen
  • Construction Engineers
  • CAD Technicians
  • Mechanical Engineers
  • Electrical Engineers
  • Civil Engineers
  • Interior Designers
  • Urban Planners
  • Managers

What are the Prerequisites?

Employees with a basic understanding of  architecture, engineering, or construction principles and familiarity with Autodesk software suite can take up the Autodesk BIM training course.

Request a Quote for your Corporate Training Requirements

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Delivering Training for Organizations across 100 Countries and 10+ Languages

Choose the Format That Fits Your Team

We design training your teams actually engage with, and deliver it the way that suits you best. Through a vetted global trainer network, Edstellar runs sessions in 10+ languages with consistent quality anywhere.

Virtual Autodesk BIM Training

Virtual / online: expert-led live sessions delivered anywhere, with consistency and easy scheduling.

We deliver anywhere worldwide
Standardized content for consistent outcomes
Join from own workspace, no travel
We scale to large groups across sites
Interactive tools keep remote learners engaged
On-site Autodesk BIM Training

On-site (in-house): immersive, instructor-led learning at your office.

Our trainers run face-to-face at your office
We tailor setup/content to your workplace and tools
Group exercises drive collaboration
Live demos +  hands-on practice
Direct trainer access to clarify doubts
Off-site Autodesk BIM Training

Off-site: focused, instructor-led group learning away from everyday workplace distractions.

We host your teams at a venue of your preferred choice
Built-in group activities for bonding
Full uninterrupted schedule for focus/retention
Boosts morale and signals commitment

Get a Proposal Shaped to Your Needs

Need pricing for onsite, offsite, or virtual delivery? Get a proposal tailored to your team's needs.

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        What Sets Edstellar Apart

        Experienced Trainers

        Our trainers are drawn from a vetted global network and bring years of industry expertise, keeping every session practical and impactful.

        Proven Quality

        With a strong global track record, Edstellar is known for quality and engaging delivery.

        Industry-Relevant Curriculum

        Our programs are built by experts to match the demands of today's industry.

        Fully Customizable

        Every program can be tailored to your organization's goals.

        Comprehensive Support

        We provide pre- and post-session support for a complete learning experience.

        Global Multi-Location & Multilingual Training Delivery

        We deliver in multiple languages to support diverse global teams.

        Hear from Organizations We've Trained

        "The Autodesk BIM training provided me with comprehensive capabilities that elevated my expertise. As a Senior Software Engineer, I needed to understand industry best practices deeply, and this course delivered practical simulations gave me hands-on experience with industry best practices. The knowledge gained has been immediately applicable to mission-critical projects and initiatives. Highly recommend for anyone serious about this field.”

        Richie Crawford

        Senior Software Engineer,

        Enterprise Software Development Firm

        "This Autodesk BIM course was precisely what I needed to design robust strategic implementation architectures. The hands-on approach to hands-on exercises and seamless integration with expert-led workshops was projects using advanced techniques from this training. Our project success rate and profitability increased dramatically within the quarter. The comprehensive curriculum has elevated my solution delivery capabilities significantly.”

        Michal Kowalski

        Senior Software Engineer,

        Technology Consulting Services Company

        "The Autodesk BIM training gave our team advanced strategic frameworks expertise that revolutionized our strategic implementation approach. As a Senior Software Engineer, understanding real-world case studies and practical simulations across our entire portfolio. Our department achieved a remarkable 50% improvement in operational efficiency metrics. This training has become foundational to our team's strategic capabilities and continued growth.”

        Raj Patel

        Senior Software Engineer,

        IT Services and Solutions Provider

        “Edstellar’s IT & Technical training programs have been instrumental in strengthening our engineering teams and building future-ready capabilities. The hands-on approach, practical cloud scenarios, and expert guidance helped our teams improve technical depth, problem-solving skills, and execution across multiple projects. We’re excited to extend more of these impactful programs to other business units.”

        Aditi Rao

        L&D Head,

        A Global Technology Company

        Recognition That Motivates Your Team

        Upon successful completion of the training course offered by Edstellar, employees receive a course completion certificate, symbolizing their dedication to ongoing learning and professional development.

        This certificate validates the employee's acquired skills and is a powerful motivator, inspiring them to enhance their expertise further and contribute effectively to organizational success.

        Recognition That Motivates Your Team
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