3D CAD Modeling
Detailed parts, assemblies, and complex mechanical models developed around your engineering requirements.
View SpecificationsFrom concept and 3D CAD modeling to manufacturing drawings and engineering documentation, ABS Design provides flexible engineering design support for businesses worldwide.
ABS Design supports businesses and engineering teams with CAD modeling, mechanical design, engineering drawings, design modifications, and documentation. From a single component to an ongoing design requirement, our work is built around the project's technical requirements and deliverables.
Rigorous adherence to ISO and ASME drafting norms with strict GD&T implementation.
Agile iterations allowing engineering teams to hit production release milestones seamlessly.
Practical engineering support from concept development to manufacturing documentation.
Detailed parts, assemblies, and complex mechanical models developed around your engineering requirements.
View SpecificationsProduction-oriented drawings with dimensions, tolerances, notes, sections, and required engineering details.
View SpecificationsSupport product development from early concepts and design modifications through detailed engineering design.
View SpecificationsConvert existing components, drawings, sketches, or legacy CAD data into structured engineering models.
View SpecificationsDesign with practical considerations for machining, sheet metal, plastics, fabrication, and assembly.
View SpecificationsBOMs, drawing packages, revisions, and project-specific technical documentation.
View SpecificationsFrom individual components to complete assemblies, we create structured CAD models based on engineering requirements, reference data, and project specifications.
Engineering design is more than creating a 3D model. Our approach considers function, interfaces, manufacturability, assembly, and documentation.
We work with commonly used CAD platforms and engineering file formats based on project requirements.
Flexible engineering design support for products, machinery, components, and equipment across a range of industrial applications.
End-effectors, pick-and-place linkages, custom conveyor brackets, and robotic tooling.
Gearboxes, drive shafts, heavy frames, structural weldments, and bearing housings.
Chassis brackets, suspension links, cooling shrouds, and powertrain mounts.
Diagnostic hardware enclosures, ergonomic handles, surgical instrument components.
Ultra-clean vacuum chambers, wafer handling arms, precision stage mounts.
Jigs, fixtures, testing rigs, stamping die sets, and assembly nest plates.
Custom sheet metal boxes, structural skids, bracketry, and consumer mechanisms.
CAD parts precisely reflect manufacturing reality without cosmetic shortcuts.
Direct engineering-to-engineering dialogue eliminating project friction.
NDAs executed before exchanging proprietary CAD or fabrication prints.
Design decisions consider function, dimensions, interfaces, manufacturability, and documentation.
Models and drawings are developed with practical shop-floor manufacturing requirements in mind.
Support can range from a single component revision to larger end-to-end design packages.
Requirements, revisions, questions, and deliverables are kept transparent throughout the project lifecycle.
Customer engineering information, models, and prints are handled with strict security protocols.
A clear engineering workflow helps reduce unnecessary revisions and keeps projects moving forward efficiently.
Demonstrated engineering rigor across precision components, complex assemblies, and production drawing packages.
Multi-axis hydraulic assembly featuring high-pressure ports and dynamic seals.
Explore Case DetailsPrecision machined fluid manifold designed for cyclic hydraulic pressures.
Explore Case DetailsProduction-ready enclosure incorporating press-fit fasteners and flat DXFs.
Explore Case DetailsComprehensive shop blueprints with geometric tolerances and surface roughness calls.
Explore Case DetailsEngineering revision of heavy machinery castings to improve fatigue life and reduce post-machining setups.
Explore Case DetailsBridging the gap between incomplete inputs and production-ready manufacturing packages.
Whether you need a dedicated engineering partner for a one-off package or continuous design augmentation.
For specific engineering projects requiring additional design resources with fixed deliverables and scopes.
For engineering teams that need additional CAD/design capacity during peak demand or sprint deadlines.
For regular modeling, drawing maintenance, continuous design revisions, and archival documentation.
We work primarily in Solid Edge, SolidWorks, and Creo, and can deliver models in native or neutral formats such as STEP, IGES, and Parasolid depending on your requirements.
Yes. We regularly convert hand sketches, legacy paper or PDF drawings, and physical measurements into structured, production-ready 3D CAD models.
Share your available reference material — sketches, drawings, CAD files, or specifications — along with your intended manufacturing method and any critical tolerances, and we'll confirm scope before starting.
Yes. Drawings and tolerancing follow ASME Y14.5 and ISO 1101 conventions, with dimensioning practices aligned to your target manufacturing process.
Every project maintains a clear revision log. Engineering change requests are tracked against the original release so prior versions remain traceable throughout the project lifecycle.
Non-disclosure agreements are executed before any proprietary CAD, drawings, or fabrication prints are exchanged, and customer data is handled under strict internal security protocols.
Yes — our ongoing engineering retainer model is built for continuous drafting, drawing maintenance, and archival documentation needs beyond a single project.
Turnaround depends on scope and complexity. Standard requirements intake typically responds within 24–48 hours, with project timelines confirmed once scope is reviewed.
Technical references and best practices on CAD modeling, tolerancing, and manufacturing.
An overview of Geometric Dimensioning & Tolerancing and why datums matter for production precision.
Read Briefing →Choosing the right neutral CAD format for solid topology preservation versus surface geometry transfer.
Read Briefing →Essential specifications and parameters required before kicking off an engineering modeling sprint.
Read Briefing →Why shop floors still mandate dimensioned 2D blueprints despite complete 3D digital model definitions.
Read Briefing →Practical rules for sheet metal radii, CNC cutter access, and injection molding draft angles.
Read Briefing →Worst-case versus statistical RSS analysis for calculating mechanical assembly clearance margins.
Read Briefing →Reach out with your CAD models, technical drawings, or initial component concepts. Our engineering team is ready to evaluate tolerances and assist your fabrication lifecycle.