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  1. Programs
  2. SOLIDWORKS Design Professional (CSWP)

SOLIDWORKS Design Professional (CSWP)

SOLIDWORKS

Certification

Become a contributor for free to openly demonstrate student outcomes, industry alignment & eligibility criteria.

Each CSWP has proven their ability to design and analyze parametric parts and moveable assemblies using a variety of complex features in SOLIDWORKS software.

Format

Hybrid

Eligibility Calculator

Which aid programs apply to this program?

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Program Pathways

Credentials this program stacks toward

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Program Details

Detailed information about this program

No detailed information available.

Requirements

What you need to earn this credential

No requirements listed.

Financial Aid

Eligible funding programs

No funding information available.

Scholarships

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Locations

Where this program is offered

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Related Programs

Programs related to this one

No related programs.

Skills & Competencies

Skills developed through this program

  • Create a Part from a Drawing
  • Use Linked Dimensions and Equations to Aid in Modeling
  • Use Equations to Relate Dimensions
  • Update Parameters and Dimension Sizes
  • Knowledge Of Mass Property Analysis
  • Modify Geometry on Initial Part to Create a More Complex Part
Career Pathways

Occupations this program prepares you for

  • Mechanical Drafters17-3013.00
  • Mechanical Engineering Technologists and Technicians17-3027.00
  • Mechanical Engineers17-2141.00
  • Commercial and Industrial Designers27-1021.00
What You'll Learn

Key competencies developed through this program

Auto-populated·from NSX Competency Framework

Mastery: developing (Level 2)(based on Certification)

  • Detailed design drawings — produce complete mechanical equipment drawings and specifications with reduced oversight using CAD software.
  • Three-dimensional models — develop accurate 3D part and assembly models in CAD software for routine mechanical components.
  • Schematic and angle views — independently lay out functional relationship diagrams depicting component assemblies in standard manufacturing contexts.
  • Design modifications — revise existing drawings to correct documented operating deficiencies based on engineering feedback and change orders.
  • Specification analysis — review engineering sketches, ideas, and related data to identify design factors affecting component geometry and fit.
  • Mathematical computation — apply trigonometric and algebraic formulas to calculate part dimensions and tolerances using computer-assisted equipment.
  • Scale blueprints — draft specialty items such as machine guards or fixture components at full or reduced scale from engineering concepts.
  • Materials requirements data — cross-reference material dimensions and part numbers against MRP or ERP software records to confirm accuracy.
  • Graphics and rendering software — produce clear presentation-quality images of mechanical assemblies for internal design reviews.
  • Interpersonal coordination — communicate drawing status updates and clarifying questions to engineers and production staff during project meetings.

Some details on this page are auto-populated from public workforce data sources: O*NET (opens in new tab), BLS (opens in new tab), College Scorecard (opens in new tab), DOL Training Provider Results (opens in new tab), NSX (opens in new tab). Provided in partnership with LER.me Career Intelligence.

Student Outcomes

Performance metrics for this program

Completion Rate
Not reported
Placement Rate
Not reported