
CypeCAD Structural Software Course
Master Cypecad from the ground up and take full control of structural design workflows. This course covers everything from modeling columns and slabs to running seismic analysis and producing permit-ready documentation. Whether you're advancing your engineering career or expanding your technical toolkit, you'll finish with real, job-ready Cypecad skills.
What you will learn:
This course takes you through every stage of structural design using Cypecad, starting with software navigation and project setup. You will model columns, beams, foundations, and floor systems, then apply all major load types including wind and seismic forces. The course covers automated reinforced concrete design for beams, columns, and slabs, with full code compliance checks. You will run structural analysis, interpret force diagrams and deflection results, and diagnose model errors efficiently. By the end, you will generate professional drawing sets, bar bending schedules, quantity takeoffs, and calculation reports ready for construction and permitting.
How you study in practice CypeCAD Structural Software Course
How you practise CypeCAD Structural Software Course
For companies looking to train their team
With Dedika for Business, the course includes exercises and examples tailored to your own business and the way your company needs.
Course Content
8 Chapters • 38 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsIntroduction to Cypecad and Structural Design
Introduction to Cypecad and Structural Design
Lesson 1 • Project Setup and Configuration
Teaches how to create a new project, set units, and configure global parameters. Correct setup prevents errors in later analysis stages.
Lesson 2 • Interface Layout and Navigation
Introduces the main workspace, toolbars, menus, and viewport controls. Proficiency here is prerequisite for all modeling tasks.
Lesson 3 • Overview of Cypecad Software
Covers Cypecad's purpose, capabilities, and position in structural engineering workflows. Establishes context for all subsequent software operations.
Lesson 4 • Fundamental Structural Concepts in Cypecad
Reviews essential structural engineering concepts as implemented in Cypecad. Connects theoretical knowledge to software-specific terminology.
Chapter 2HideHide detailsSee detailsDefining Materials and Cross-Sections
Defining Materials and Cross-Sections
Lesson 1 • Material Library Management
Explains how to access, create, and edit materials in the Cypecad library. Accurate material data directly affects analysis reliability.
Lesson 2 • Steel Section Definition
Teaches selection and customization of standard and non-standard steel profiles. Connects section choice to structural efficiency and code compliance.
Lesson 3 • Concrete Section Definition
Covers rectangular, T-shaped, and custom concrete cross-sections. Proper section definition ensures accurate moment of inertia and capacity calculations.
Lesson 4 • Reinforcement Parameters and Defaults
Sets global and element-level reinforcement parameters including cover, bar spacing, and minimum ratios. These defaults govern automated rebar design outputs.
Chapter 3HideHide detailsSee detailsModeling Columns and Foundations
Modeling Columns and Foundations
Lesson 1 • Column Fixity and Boundary Conditions
Defines base fixity, intermediate restraints, and effective length factors for columns. Correct boundary conditions are essential for accurate buckling analysis.
Lesson 2 • Column Placement and Properties
Covers inserting columns by coordinate, grid, or import, and assigning section and material properties. Column geometry directly controls frame behavior.
Lesson 3 • Pile Caps and Raft Foundations
Extends foundation modeling to pile caps and mat slabs for high-load or poor-soil conditions. Students configure pile layouts and raft mesh parameters.
Lesson 4 • Foundation Reinforcement Design
Automates and manually adjusts rebar in footings and pile caps. Reinforcement outputs are verified against punching shear and bending demand.
Lesson 5 • Isolated and Combined Footings
Teaches creation and sizing of isolated pad footings and combined footings under multiple columns. Foundation geometry feeds soil pressure and punching checks.
Chapter 4HideHide detailsSee detailsModeling Beams and Floor Systems
Modeling Beams and Floor Systems
Lesson 1 • Beam Insertion and Geometry
Covers drawing beams between nodes, setting offsets, and defining cantilevers. Beam geometry determines load transfer paths to columns.
Lesson 2 • Joist and Ribbed Slab Systems
Teaches configuration of one-way joist floors and ribbed slabs including void formers. These systems reduce self-weight while maintaining structural depth.
Lesson 3 • Multi-Story Floor Replication
Copies and adapts floor layouts across multiple stories efficiently. Story replication accelerates modeling while preserving structural continuity.
Lesson 4 • Openings, Stairs, and Voids
Inserts floor openings, stair wells, and ramps into the floor model. Openings alter load redistribution and must be correctly bounded.
Lesson 5 • Two-Way Solid Slabs
Models flat slabs and two-way panels with edge beams and drop panels. Correct panel definition enables accurate two-way bending and deflection analysis.
Chapter 5HideHide detailsSee detailsLoad Definition and Application
Load Definition and Application
Lesson 1 • Permanent and Variable Loads
Covers self-weight automation and manual input of dead and live loads on beams and slabs. Accurate load magnitudes are the foundation of reliable analysis.
Lesson 2 • Load Combinations and Envelopes
Builds ultimate and serviceability load combinations using code-based factors. Envelopes capture worst-case demand for design across all elements.
Lesson 3 • Special and Accidental Loads
Applies thermal, settlement, and accidental load cases to the model. These loads address exceptional conditions that govern specific design checks.
Lesson 4 • Wind Load Definition
Teaches manual and automated wind pressure input using exposure and terrain parameters. Wind loads are distributed to diaphragms and lateral frames.
Lesson 5 • Seismic Load Configuration
Configures equivalent static and response spectrum seismic loads within Cypecad. Seismic parameters govern lateral force distribution across the structure.
Chapter 6HideHide detailsSee detailsStructural Analysis and Result Interpretation
Structural Analysis and Result Interpretation
Lesson 1 • Viewing Internal Force Diagrams
Displays bending moment, shear force, and axial force diagrams for beams and columns. Force diagrams are the primary basis for element design.
Lesson 2 • Support Reactions and Foundation Loads
Reads column base reactions and transfers them to foundation design. Reaction accuracy depends on correct boundary condition and load input.
Lesson 3 • Running the Structural Analysis
Covers pre-analysis checks, solver settings, and launching the calculation engine. Correct solver configuration prevents convergence errors and invalid results.
Lesson 4 • Diagnosing and Correcting Model Errors
Identifies common analysis errors such as instabilities, disconnected nodes, and overloaded elements. Systematic diagnosis reduces iteration time significantly.
Lesson 5 • Displacement and Deflection Results
Extracts nodal displacements and member deflections for serviceability checks. Deflection limits govern slab thickness and beam depth decisions.
Chapter 7HideHide detailsSee detailsReinforced Concrete Element Design
Reinforced Concrete Element Design
Lesson 1 • Beam Flexural and Shear Design
Automates longitudinal and transverse reinforcement design for beams under combined bending and shear. Results are reviewed and adjusted to meet detailing requirements.
Lesson 2 • Column Interaction and Biaxial Design
Designs columns under combined axial load and biaxial bending using interaction diagrams. Slenderness effects are incorporated for tall or slender columns.
Lesson 3 • Slab Reinforcement Design
Produces top and bottom reinforcement maps for solid and ribbed slabs. Punching shear at column heads is checked and reinforced as needed.
Lesson 4 • Reinforcement Schedule Generation
Exports bar bending schedules and quantity takeoffs directly from the design model. Schedules link design intent to fabrication and procurement.
Lesson 5 • Detailing Rules and Code Compliance
Applies anchorage, lap splice, and curtailment rules to all designed elements. Compliance with detailing provisions prevents brittle failure modes.
Chapter 8HideHide detailsSee detailsDocumentation, Drawings, and Project Delivery
Documentation, Drawings, and Project Delivery
Lesson 1 • Structural Drawing Production
Generates plan, elevation, and section drawings with annotations directly from the model. Drawing quality and completeness determine construction accuracy.
Lesson 2 • File Export and Interoperability
Exports models and drawings to DXF, IFC, and other exchange formats for collaboration. Interoperability ensures Cypecad data integrates with broader project workflows.
Lesson 3 • Quantity Takeoff and Cost Estimation
Extracts material quantities for concrete, steel, and reinforcement from the model. Quantities feed cost estimation and procurement planning.
Lesson 4 • Calculation Report Generation
Produces structured calculation reports covering loads, analysis, and design for each element. Reports serve as the primary technical record for review and approval.
Lesson 5 • Detailing and Annotation Tools
Adds dimensions, rebar callouts, notes, and symbols to drawings within Cypecad. Clear annotation reduces field interpretation errors.
Your valid completion certificate
This course is for you:
Civil engineering graduate: ready to apply academic knowledge in professional software tools.
Structural drafter: seeking to move beyond CAD into full analysis and design workflows.
Construction project manager: wanting to read and verify structural models with confidence.
Architecture professional: needing to coordinate meaningfully with structural engineering teams.
Early-career structural engineer: building a software skill set to compete in the job market.
Freelance technical consultant: expanding capabilities to offer structural design as a service.
What our students say
Your classes are perfect. I purchased the one-year package and finally have the opportunity to follow various topics of interest without needing to switch platforms... I thank you for everything you do, I've already recommended you to other people...

I like how the lessons are straight to the point and how I can change chapters and skip content I don't need.

I like the content and the presentation style and video transcription, which speeds up the process!

The platform is fast, simple to use. The diversity of content and complementary videos really help with learning.

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