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Products
Architectural
Structural
One AEC
Pricing Options Starting at ₱2,200/monthly Starting at ₱4,300/monthly Starting at ₱5,900/monthly
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Deployment and installation
Teamwork & Collaboration (LAN/WAN)
Network deployment
Standalone Installation
Key features of ideCAD
Structural Steel Detailing
Reinforced Concrete Detailing
3D Analysis and Design Visualization
Structural Steel Design
Reinforced Concrete Design
Structural Analysis
Analytically Driven Modeling
Steel Connection Modeling
Reinforced Concrete Modeling
Structural Steel Modeling
Architectural Visualization
Personalization and Customization
Worksharing
Interoperability
Parametric Components
Integrated Architectural Modeling
Railing, Baluster and Handrail
Pools
Jambs
Sweeps
3D Text
3D Geometric Objects
Domes, vaults
Libraries and furnishings
Roofs
Stairs and ramps
Site modeling
Rooms and areas
Exterior Veneer
Ceilings, floors, zones
Curtain walls
Loadable family components (Doors, windows.)
Walls
Integrated Structural Modeling
Automatic interaction of steel connections
Steel Joists
Retaining Wall
Grade Beams
Scaffoldings
Well foundations
Piles
Industrial Buildings
Steel Connection Modeling
Cranes and Crane Beams
Sheetings
Steel Purlins
Steel Braces
Sag Rod
Space Trusses
Trusses
Strip and single footings
Raft Foundations
Flat Slabs
Composite Beams
Waffle Slabs
Slabs
Structural Walls
Column Drop Panel
Shearwalls
Secondary Steel Beam
Steel Beams
Concrete Beams
Steel Columns
Concrete Columns
Integrated Structural Features with Architecture
Integrated Steel Connection Design
Integrated Steel Design
Integrated RC Design
Integrated Structural Analysis
Supported Internationals Design Codes & Standards
EC 3 Structural Steel Design
AISI S100-12 Cold formed Steel Design for Purlins
AISC 341-16 Seismic Provisions
AISC 360-16 Connection Design
AISC 360-16 Structural Steel Design
ACI 318-19 Concrete Design
ASCE 7-16 Strength-Based Design
ASCE 7-16 Seismic Design
UBC 97
IBC
SNI 1726:2019
DPT 1302-61
NSCP 2015
BCP SP 2007
TSC 2016 (Steel Connection Design)
TSC 2016 (Steel Design)
TSC 2018 (TBDY 2018)
TSC 2007 (TBDY 2007)
TS500-2000
TS498
EN 1991-1-4
Automated Seismic Design Requirements
Seismic Design for Steel Connections
Ordinary steel elements
Special steel elements
Ordinary reinforced concrete elements
Special reinforced concrete elements
Seismic analysis for nonstructural components
Modal response spectrum analysis
Strength-Based Design
Seismic separation joints
P-delta effects
Story drift determination
Earthquake ground motions and design response spectrum
Seismic Design of steel structures
Seismic Design of reinforced concrete structures
Retrofitting capabilities
Automated structural irregularity Check
Enhanced diaphragm choices
Automated seismic load calculations
International seismic standards
Architectural and Structural Modeling for Industrial Buildings
Purlin, Tie, and Sheeting
Column bases
Connections
Plan bracing
Vertical bracing
Crane actions
Cellular beam portal frame
Curved rafter portal frame
Propped portal frame
Mono-pitch portal frame
Crane portal frame with column brackets
Portal frame with internal mezzanine floor
Lattice structures
Multi bay frame
Two bay portal frame
Advanced Structural Modeling
Soil and hydrostatic loads on shear walls
Point slab load and linear slab loads
Steel connection modeling in fast mode
Clash checks for steel structures
Multiple editing on connections
Fast modeling with rich macros
Integration of stairs into the structure
Pile modeling with raft foundations
User Defined Loading
User-defined external load in user-defined Triangle, Smooth Trapezoidal, Axial etc. shapes
Rotate structure with one command
Geometry Controls
Adding short shearwall to the shearwall group
Shearwall group definition
Defining shearwall group
Merging different models into one single model
Modelling Column Jacketts for retrofit purposes
Modelling retrofit walls
Modelling basement walls
Slab drops with rectangular, circular or irregular shapes
Slab Openings with irregular shapes
Flexible modelling with dynamic input system
Setting anchor points for column and beam sections
Inserting multiple infill walls by two points
Inserting partial infill walls
Creating multiple openings in infill walls
Creating multiple openings in shearwalls
Modelling of corewalls with any Irregular shapes
Easy to use steel profile selection and extensive database
Convert free frame members to Trusses
Create Custom Trusses with Truss Editor (or import Trusses from DXF files)
Purlin Insertion between truss and beam members
Free modeling with Steel Frame Members
Integrated RC, Steel and Composite modeling in one central 3D model
Intuitive and interactive modeling with physical objects
Reinforcement, Rebar modeling
Structural Steel Connections
Eaves Haunch
Stiffened End Plate connection
Quad Stiffener plate
End Plate Truss Connection for Box/Tube
Crane Connection
Seating Truss Connection
End Plate Truss Connection
Column-Beam Stiffened End Plate Connection
Box/Tube Cap Plate
Welded Connection
Round Plate Tube Base Plate
Tube Base Plate
Rigid on Both Axis Base Plate
Rigid on Strong Axis Base Plate
Simple Base Plate
Column-Column Connection (Built Up Column)
Girt Connection
Purlin Connection
Apex Type Connection
Truss
Box/Tube Seating
Double Plate Seating
Single Plate Seating
Seating Weld
Column-Column End Plate Splice
Continuous Beam
Box/Tube Splice
Box/Tube End Plate
Stay connection (Secondary beam)
stay connection
Wind
Spacer Plate
Notched Seating
Stub
Seating Support
Welded Box/Tube
Multi Stiffener Plate (Horizontal)
Multi Stiffener Plate
Eaves Haunch
Stiffened Shear Plate
Flange Plate
Haunch
Base connection
Brace Corner
Brace Center
Joining Plates Splice
Splice Connection
Welded Flange Plate
Welded Web
Bolted Flange Plate
8 Bolts Stiffened End Plate
4 Bolts Stiffened End Plate
4 Bolts Unstiffened End Plate
T Plate
Single Angle
End Plate Shear
Unstiffened Seated
Single Plate
Double Angle
Presentation and Visualization
Export analysis-design results and reports to Excel
Visualization of deficiencies in 3D perspective
Visualization of Design Results in 3D perspective
3D visualization of data entries
Visualization of Analysis Results
Lights
Animations
Cameras
Rendering
Photorealistic Materials
Occlusion Culling
Orthographic and perspective views, walk-throughs
Realistic view styles
Displaced elements
Shadows and Ambient Shadows
Sketch mode
Documentation
Layout Design
Visual aided account printouts describing cause and effect relationship
Documentation integrated with the program interface (from the structure tree)
Automatic table of contents, smart notifications
Integration of externally created documents with the built-in reports
Ordered set of reports for different project submissions
Fully integrated engineering calculation reports.
Dimensioning, tagging, Annotation, and Text
Revision tracking
2D detail lines, 2D detail components
Collaboration with Other Architectural and Structural Software
Export to CSICOL
Export to 3DS
Export to Sap2000 .s2k
Export to Tekla .dmp
IFC
Convert all engineering reports to PDF formats
Publish all detail drawings to well-known DXF and DWG formats
Export 3D steel models to industry leading platforms
Share analysis model with general analysis and design software
Import 2D or 3D DXF Files and convert 2D and 3D CAD entities to intelligent structural members
Coordinate with other disciplines using IFC files (Import and Export)
Collaboration and integration tools for industry Other BIM Platforms
ideCAD Wrep
Collaborate with Building Information Models
Multidisciplinary Building Information Modeling
Interface
Strcuture Tree
Command customizations
Command Line
Apply and monitor CAD standards
Create and edit 3D models with solids, surfaces, and mesh objects
Create and edit 2D geometry
Customize the ribbon menu and tool palettes
3D modeling and visualization
2D drafting, drawings, and documentation
Interface customizations
Classic Menu
Ribbon Menu
Integrated 2D CAD Editor, annotation, and documentation
Pattern Path
Raster Image
Ellipse and Elliptical Shapes
Arc
Circle
Freehand
Curve
Line
Text
Hatch
Layer Management
Command line
Tool palettes
Ribbon tabs
Smart dimensioning
DWG and image references
Layouts
Revision clouds
Automated Analytical Modeling
Automatically detected openings
Two-stage or Single-stage analysis options for Structures with basement
Multi-stage analysis of structural systems with slab without beam (Flat slab analysis)
Seismic Analysis Wizard
Automatic cropping of column outlines from FE mesh
Diaphragm controlling options for different storeys
Advanced options for rigid and semi-rigid diaphragms
Integrated floor meshing in structural analysis
Mid-pier modelling option for shearwalls
Shell element modelling for shearwalls with adaptive meshing ability
FE Frame elements with automatic rigid zones and end releases
Fully automated state-of-the-art 3D Finite Element Model
State-Of-The-Art Structural Analysis Methods
Linear Response History Analysis
Structural analysis with static or dynamic eccentricity methods
Vault analysis
Ground motion scaling
Dome analysis and drawings
Euler Buckling Analysis
P-Delta analysis for second-order effects
Seismic isolators
Soil structure interaction
Construction stage analysis
Automatic calculation of wind loads
Gradient and equal temperature difference analysis
Automatic calculation of vertical earthquake effects
Automatic two-stage analysis with basements
Cracked and uncracked section properties in the same analysis
Different direction of seismic loadings
Eigenvalue and ritz vektor analysis
Modal Response Spectrum Analysis (RSA) for seismic design
Equivalent Lateral Load analysis for seismic design
3D Nonlinear analysis under vertical and lateral loads
3D linear elastic analysis under vertical and lateral loads
Design of Floor Systems and Load Decomposition
In-plane tensile pressure and shear stress check
3D analysis of in-plane and out-of-plane effects with shell finite elements
Punching Shear Check
Deflection Check
FEM Based Slab Design
Fully automated state-of-the-art 3D Finite Element Model
Automatic Finite Element Slab Load Decomposition
Finite Element analysis and design of slabs under gravity loading
Design of slabs with analytical methods
Reinforced Concrete Design
Axial load and biaxial bending interaction design for beams
Friction shear design for columns and shear walls
Retaining wall and well foundation design
Raft and piled raft foundation
Strip footing Design
Isolated footings design
Punching shear design
Flat slab design
Reinforced conrete ribbed slab design
Reinforced conrete waffle slab design
Automated steel bar layout and selection
Seismic design check of reinforced concrete structural elements
Ability to watch reinforcement placement in 3D with real view
Moment-curvature analysis
Capacity diagrams
Control of deformations and internal forces for new structures
Balanced reinforcement ratio control
Design and detailing of pools
Design and detailing of stairs
Design and detailing of corbels
Design and detailing of dowels for retrofit walls
Auto-containment of rectangular walls and irregular shaped core-shearwalls
Auto-containment of rectangular, circular and irregular shaped columns
Grouping of RC beams for design
Design of RC slabs
Slab reinforcement design with shell elements
Shearwall reinforcement design with shell element
Automatic punching shear check
Design of reinforced concrete structural members
Fully Automated Reinforced Concrete Detailing
Comprehensive Engineering Library
Deformation and internal force control for new buildings
Design and Detailing of Pools
Automated Seismic & Ductile Detailing
Automated RC Detail Drawings, Sheet Management & Manual Drafting
2D Component design and 2D detailing library
Manual drafting with intelligent rebars and detailing items
Dynamic quatity tables and automatic change management
Automatic sheet and drawing management
Fully automatic detailed drawings
Automatic preview of RC details
Steel Design
Reinforcement Detailing
Cold formed steel design for steel purlins
Castellated Steel beam design
Crane beam design
Automatic design in accordance with plastic design rules in simple shear and moment connections specified in TBDY 2018 Annex 9B
Design of steel joints in accordance with AISC
Composite beam design in floor with trapezoidal sheet and solid sheet
FE Analysis and Design of Steel Facade Scaffolds
Automatic design of steel connections
Automatic Vertical Deflection Check for Steel Members
Steel design in accordance with AISC (LRFD, ASD), EC3
Design of steel purlins, girts and braces
Design of steel columns and beams
Fully Automated Steel Detailing
User-defined annotations
Point detail drawings
General construction drawings with single parts and assembly
General contruction drawings
Assembly Drawings with Single Parts
Assembly Drawings
3D isometric view drawings
Single Part Drawings
Truss drawings
Advanced drawing settings
Roof plan drawings
Axis and view drawings
Application plan drawings
Column anchorage drawings
Ability to obtain drawings of only selected elements
Automatic sheet optimization
Automatic generation of general construction drawings
Automatic creation of composite nail layout and sections
Fully automatic assembly and part drawings
Comprehensive part and assembly numbering options
Powerful clash checks and model auditing for fabrication
General arrangement drawings for steel structures
Design check reports for steel connections
Automated insertion of handrails
Fast insertion of stair treads
Insertion of checker plates and grid systems
Creation of connections manually with powerful modelling tools
Automatic, accurate and constructable connections by IntelliConnect
Automatic connection design and detailing
Foundations Analysis and Design
Punching shear check
Soil-Strcuture interaction
Changing column-foundation connection size in raft foundation superstructure interaction
Optional using pseudo coupled winkler springs for raft foundations
Creating piles under raft foundations
Automated Pile Cap Design
Merging different models for shared foundation design
Seismic analysis and design of piles
Pile Working Load Assessment
Automatic analysis and design of retaining walls
Grouping of columns for shared foundation design
FE analysis and design of raft foundations
FE analysis of foundation systems
Automatic design of pad bases and strip footings
Performance-Based Design
Confined and unconfined nonlinear concrete material model
Soil-Strcuture interaction for pushover analysis
Automatic calculation of performance point
Derivation of nonlinear force-deformation relations using Fiber model
Automatic performance design for concrete model and reinforcement arrangement
Calculation and Assessment of nonlinear deformation and internal forces
Linear performance analysis
Single-Mode Pushover Analysis
Multi mode pushover analysis
Plastic hinge model in reinforced concrete columns and beams
Moment curvature analysis under axial force and biaxial bending
Nonlinear reinforcement material model
Performance based design for different ground motion level
Incremental Response Spectrum Analysis
Pushover Analysis
Distributed Plasticity Modeling of Reinforced Concrete Shear walls
Concrete Fiber Models for Shear Walls and Columns
Concrete Material Models with Performance Levels (Confined and Unconfined)
Complete Automation of Performance-Based Design
Structural Retrofitting of Existing Buildings
Retrofit structure detailing
Fiber-Reinforced polymers
New shear walls in existing RC buildings
Column jacketing design
Nonlinear analysis
Risk Assessment of existing buildings
Linear performance analysis and assessment of existing buildings
All Performance-Based Design Features
Ability to examine building damage information on 3D model
Control of reinforcements and internal forces for existing buildings
Training and Support
Online training videos
Dedicated support portal with Extensive knowledge base, documentation and community
Technical support directly from professional structural engineers
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