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Computer Aided Design Design Engineer Jobs in Andover, MA

Sr. CAD Designer

Woburn, MA · On-site

$29.50 - $40.75/hr

- Sr CAD Designer Job Summary: Hands-on designer responsible for creating electro-mechanical ... The person would work with the engineering team debugging build issues with the product and ...

Sr. CAD Designer

Woburn, MA · On-site

$29.50 - $40.75/hr

- Sr CAD Designer Job Summary: Hands-on designer responsible for creating electro-mechanical ... The person would work with the engineering team debugging build issues with the product and ...

Sr. CAD Designer

Woburn, MA · On-site

$28.75 - $39.75/hr

- Sr CAD Designer Job Summary: Hands-on designer responsible for creating electro-mechanical ... The person would work with the engineering team debugging build issues with the product and ...

Sr. CAD Designer

Woburn, MA · On-site

$29.50 - $40.75/hr

- Sr CAD Designer Job Summary: Hands-on designer responsible for creating electro-mechanical ... The person would work with the engineering team debugging build issues with the product and ...

Sr. CAD Designer

Woburn, MA · On-site

$85 - $110/hr

- Sr CAD DesignerJob Summary: Hands-on designer responsible for creating electro-mechanical systems ... The person would work with the engineering team debugging build issues with the product and ...

Showing results 41-60

Computer Aided Design Design Engineer information

See Andover, MA salary details

$18

$51

$74

How much do computer aided design design engineer jobs pay per hour?

As of Sep 6, 2026, the average hourly pay for computer aided design design engineer in Andover, MA is $51.34, according to ZipRecruiter salary data. Most workers in this role earn between $39.66 and $62.60 per hour, depending on experience, location, and employer.

What is a computer aided design (CAD) design engineer?

A Computer Aided Design (CAD) Design Engineer is a professional who uses specialized software to create detailed technical drawings and 3D models for products, parts, or structures. These engineers collaborate with other engineering teams to turn conceptual ideas into precise digital designs, which are then used for manufacturing or construction. Their work ensures that designs meet the required specifications, safety standards, and functional needs. CAD Design Engineers are crucial in industries like automotive, aerospace, architecture, and manufacturing.

How does a computer aided design (CAD) design engineer typically collaborate with other departments during a project?

As a CAD Design Engineer, collaboration with other departments—such as manufacturing, quality assurance, and project management—is an integral part of the job. You’ll frequently participate in cross-functional meetings to ensure that your designs align with manufacturability, cost targets, and regulatory standards. Effective communication is essential, as you’ll often need to translate complex technical drawings into actionable insights for team members with diverse backgrounds. This interdepartmental teamwork not only helps streamline the design-to-production process but also provides valuable learning opportunities for professional growth.

What are the key skills and qualifications needed to thrive as a computer aided design (CAD) design engineer, and why are they important?

To thrive as a Computer Aided Design (CAD) Design Engineer, you need strong technical drawing skills, a solid understanding of engineering principles, and typically a degree in mechanical, civil, or related engineering fields. Expertise in CAD software such as AutoCAD, SolidWorks, or CATIA, along with familiarity with relevant industry standards and certifications, is crucial. Attention to detail, problem-solving abilities, and effective communication help ensure design accuracy and successful collaboration with cross-functional teams. These skills are vital for delivering precise, manufacturable designs that meet project requirements and support efficient product development.

What is the difference between Computer Aided Design Design Engineer vs Mechanical Design Engineer?

AspectComputer Aided Design Design EngineerMechanical Design Engineer
CredentialsTypically requires a degree in engineering or design, proficiency in CAD softwareRequires engineering degree, often with specialization in mechanical systems
Work EnvironmentDesign studios, engineering firms, manufacturing companiesManufacturing plants, R&D labs, engineering departments
Industry UsageUsed across various industries including automotive, aerospace, product designPrimarily in mechanical systems, machinery, and equipment design

The Computer Aided Design Design Engineer focuses on creating detailed digital models using CAD software, often working closely with product development teams. Mechanical Design Engineers also use CAD but typically have a broader role in designing mechanical systems and components. While both roles require similar technical skills and work environments, their focus areas differ, with CAD Design Engineers emphasizing digital modeling and Mechanical Design Engineers concentrating on mechanical functionality and system integration.

What cities near Andover, MA are hiring for Computer Aided Design Design Engineer jobs?

Cities near Andover, MA with the most Computer Aided Design Design Engineer job openings:

Infographic showing various Computer Aided Design Design Engineer job openings in Andover, MA as of August 2026, with employment types broken down into 85% Full Time, 9% Part Time, and 6% Contract. Highlights an 86% Physical, 4% Hybrid, and 10% Remote job distribution, with an average salary of $106,791 per year, or $51.3 per hour.

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This job post has expired 1 day ago. Applications are no longer accepted.


Job description

Role: Equipment Design Engineer

Location: Danvers, MA -Onsite

Duration: 6 Months

Visa: Any Visa (H1B permitted with wage level 2 or above)

Job Summary

  • BS degree in relevant discipline (mechanical or electrical engineering or applied physics) with 8-10 year of experience in product design (concept generation, detailed design), fixture development and testing.
  • Knowledge on mechanical engineering drawing principles.
  • Good exposure in Medical Device product development process.

Preferred Qualifications

  • Support in design, development, improvement of Test fixtures to meet the requirements for new and existing products Manufacturing and Testing.
  • Support Test method validations in qualifying the Equipment / Tooling / Fixtures.
  • Support CAD activities, CR Review of 3D CAD models and 2D drawings for CR release.
  • Participate in generating innovative concepts and system layouts in 3D CAD for Test Fixture and Automation tools.
  • Support in Mockup and prototyping of new products for proof-of-concept evaluation.
  • Collaborate with supplier for development of Tools and fixtures to improve product robustness and manufacturability.
  • Support in Fixture rework, Assembly, Test Setup, and preliminary testing activities.
  • Co-ordinate with Vendors for Quote, PO, Fixture fabrication, Inspection and follow up.
  • Ensure project status, schedule progress and key project metrics to senior management.
  • Responsible for or more of the following:
  • In a supervisory capacity, plans, develops, coordinates, and directs a large important engineering project or several small projects with many complex features.
  • As an individual researcher, carries out complex or novel assignments requiring the development of new or improved techniques or procedures.
  • Work is expected to result in the development of new or improved techniques or procedures.
  • Work is expected to result in the development of new or refined equipment, materials, processes, products, and/or methods.

Required Knowledge, Skills

  • English communication skills, written and oral. 
  • Must be proficient in reading Drawings and CAD
  • Must be able to demonstrate a proven track record of leading design work and proving feasibility for manufacturing transfer of design. 
  • Medical device design experience is a plus or similar work within a regulated industry. 
  • Must demonstrate a knowledge base of various manufacturing methods used in the industry.