AP210: Electrical/Electronics PCA Design Information Physical Component Placement Bare Board Geometry Layout items Layers non-planar, conductive & non-conductive.

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Presentation transcript:

AP210: Electrical/Electronics PCA Design Information Physical Component Placement Bare Board Geometry Layout items Layers non-planar, conductive & non-conductive Material product Geometry Geometrically Bounded 2-D Shape Wireframe with Topology Advanced BREP Solids Constructive Solid Geometry Part Functionality Termination Shape 2D, 3D Single Level Decomposition Material Product Characteristics Configuration Mgmt Identification Authority Effectivity Control Requirement Traceability Analytical Model Document References Product Structure/ Connectivity Functional Packaged Technology Fabrication Design Rules Product Design Rules Requirements Design Allocation Constraints Interface

AP 212: Electrotechnical Design and Installation Electrotechnical Equipment in Industry Electrotechnical Plant Plant, e.g., Automobile Unit, e.g., Engine Control System Subunit, e.g., Ignition System Electrotechnical Systems Buildings Plants Transportation Systems Equipment Coverage Power-transmission Power-distribution Power-generation Electric Machinery Electric Light and Heat Control Systems Data Supporting Terminals and Interfaces Functional Decomposition of Product 3D Cabling and Harnesses Cable Tracks and Mounting Instructions

Process Plans AP 213: Numerical Control (NC) Process Plans for Machined Parts Administration Information Responsible Organisations Contracts Approvals Revisions Specifications Geometric Shapes Advanced BREP Solids Facetted BREP Solids Manifold Surfaces with Topology Wireframe with Topology Surfaces and Wireframe without Topology Manufacturing Resources Machines Materials Fixtures Tools Workcell/Workstations NC Program Reference Design Data Drawings & Illustrations Tolerances Surface Finish Manufacturing Activities Material Removal Setup\Teardown Part Handling Validation Sequencing Instructions Rates & Times

Geometry Solids Data Surface Data Wireframe Measured Data Analysis Simulation Technology Data Material Data Form Features Tolerance Data Surface Conditions Manufacturing NC-Data Process Plans Specification/Configuration Product Structure Data Management Data Presentation Drawing Visualization AP 214: Core Data for Automotive Mechanical Design Processes ProSTEP

AP 215: Ship Arrangement General Subdivision of a Ship into Spatially Bounded Regions Zone Boundries Controlling Access Design Authority Cargo Stowage Machinery Compartments Crew Occupancy Space Adjacency Common Purpose Spaces Data Supported Volumetric Capacities of Cargo Compartments Spatial Boundries based on Moulded Form Regions, Geometric Surfaces or Bounding Boxes Calculation of Effect on Structural Systems based on Magnitude and Location of Cargo Loads

AP 216: Ship Moulded Forms Surface, wireframe and offset point representations Design, Production and Operations lifecycles General characteristics Main dimensions Hullform geometry Major internal surfaces Hydrostatics Intact Stability tables

AP217: Ship Piping

AP 218: Ship Structures General Characteristics Configuration Management Class Approval Approval Relationship Change Administration Promotion Status Weight Description Structural Parts Feature Plate Edge Content Opening Profile Profile Endcut Production Engineering Data Production Design Data Geometric Representations Wireframe Complex Wireframe Surfaces Solids Hull Cross Section CargoProduct Structure Generic Product Strucure Assembly Space System Technical Description

AP 215: Ship Arrangement Open Deck Gun Turret/ Closed Zone Ready Rooms Controlled Access Second Deck General Subdivision of a Ship into Spatially Bounded Regions Zone Boundries Controlling Access Design Authority Cargo Stowage Machinery Compartments Crew Occupancy Space Adjacency Common Purpose Spaces Data Supported Volumetric Capacities of Cargo Compartments Spatial Boundries based on Moulded Form Regions, Geometric Surfaces or Bounding Boxes Calculation of Effect on Structural Systems based on Magnitude and Location of Cargo Loads