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Dfma Jobs in Tennessee (NOW HIRING)

Sr. Mechanical Engineer

Nashville, TN

$100K - $133K/yr

Apply DFMA, DFSS, and tolerance analysis to create manufacturing-ready designs.Create and release Bills of Materials and ensure PDM compliance (Vault preferred).Conduct design reviews, develop test ...

Sr. Mechanical Engineer

Nashville, TN

$100K - $133K/yr

Apply DFMA, DFSS, and tolerance analysis to create manufacturing-ready designs.Create and release Bills of Materials and ensure PDM compliance (Vault preferred).Conduct design reviews, develop test ...

Manufacturing Engineer

Franklin, TN · On-site

$72K - $92K/yr

Knowledge of Design for Manufacturing and Assembly (DFMA). * Effective communication and collaboration across cross-functional teams. * Ability to manage multiple priorities in a fast-paced ...

SR MECHANICAL ENGINEER

Columbia, TN · On-site

$89K - $118K/yr

Apply Design for Manufacturing (DFM), Design for Six Sigma (DFSS), and Design for Manufacturing Assembly (DFMA). Design components to be manufactured via machining, sheet metal bending/rolling ...

SR MECHANICAL ENGINEER

Columbia, TN · On-site

$89K - $118K/yr

... DFMA). · Design components to be manufactured via machining, sheet metal bending/rolling, welding, CNC machining and other related processes using Autodesk Inventor CAD models and drawings. · ...

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Dfma information

See Tennessee salary details

$8

$26

$62

How much do dfma jobs pay per hour?

As of Aug 22, 2026, the average hourly pay for dfma in Tennessee is $26.59, according to ZipRecruiter salary data. Most workers in this role earn between $15.29 and $31.06 per hour, depending on experience, location, and employer.

What is DFMA?

DFMA stands for Design for Manufacturability and Assembly. It is a set of engineering principles and methodologies aimed at designing products in such a way that they are easier, more cost-effective, and more efficient to manufacture and assemble. By considering manufacturing and assembly issues early in the design process, companies can reduce production costs, improve quality, and speed up time to market. DFMA helps identify potential problems before they occur in production, enabling better collaboration between design and manufacturing teams.

What are the key skills and qualifications needed to thrive as a DFMA engineer, and why are they important?

To thrive as a DFMA Engineer, you need a solid background in mechanical engineering or a related field, along with expertise in manufacturing processes and product design principles. Proficiency in CAD software, DFMA analysis tools like Boothroyd Dewhurst, and knowledge of industry standards are commonly required. Strong problem-solving skills, effective communication, and a collaborative mindset help you work across design and production teams. These skills and qualities ensure products are designed efficiently for cost-effective, high-quality manufacturing and assembly.

What are some common challenges faced by DFMA engineers when collaborating with cross-functional teams?

DFMA (Design for Manufacturability and Assembly) engineers often work closely with design, production, and quality teams to optimize product designs for efficient manufacturing and assembly. A common challenge is balancing innovative design ideas with practical manufacturing constraints, which requires effective communication and compromise. DFMA engineers may also encounter resistance to design changes from other departments or need to address cost concerns while maintaining product quality. Strong collaboration skills and a solutions-oriented mindset are key to overcoming these challenges and ensuring project success.

What is the difference between Dfma vs Manufacturing Engineer?

AspectDfmaManufacturing Engineer
CredentialsTypically requires engineering degree, knowledge of design and manufacturing processesRequires engineering degree, expertise in production, process optimization
Work EnvironmentDesign-focused, collaborative with design and manufacturing teamsProduction floor, process improvement, project management
Industry UsageUsed in product design, development, and manufacturing planningInvolved in manufacturing process setup, troubleshooting, and efficiency

While Dfma (Design for Manufacturing and Assembly) focuses on designing products for ease of manufacturing, Manufacturing Engineers implement and optimize manufacturing processes. Both roles require engineering knowledge and collaborate closely, but Dfma emphasizes design considerations, whereas Manufacturing Engineers focus on production execution and process improvements.

What are popular job titles related to Dfma jobs in Tennessee?

For Dfma jobs in Tennessee, the most frequently searched job titles are:

What cities in Tennessee are hiring for Dfma jobs?

Cities in Tennessee with the most Dfma job openings:

Infographic showing various Dfma job openings in Tennessee as of August 2026, with employment types broken down into 100% Full Time. Highlights an 90% In-person, 5% Hybrid, and 5% Remote job distribution, with an average salary of $55,303 per year, or $26.6 per hour.

Mechanical Design Engineer

Launch Tennessee

Nashville, TN • On-site

$70 - $110/hr

Other

Medical, Retirement, PTO

Posted 4 days ago


Job description

Role Overview

We are seeking a hands-on and detail-oriented mechanical engineer to contribute to the design, prototyping, verification, and pilot fabrication of systems and subsystems for a robotic rehabilitation medical device currently transitioning from active R&D into pilot production and commercialization. This role works closely with controls, electrical, and production teams to deliver hardware that meets clinical, safety, and manufacturing requirements. The ideal candidate has a strong foundation in mechanism design and parametric CAD, experience building and testing hardware beyond just designing it, and the ability to manage subsystem documentation and engineering deliverables in a structured development environment.

Key Responsibilities
  • Develop and iterate mechanical concepts, mechanisms, and subsystems across product generations.
  • Create CAD models, manufacturing drawings, and engineering documentation for prototype and pilot components.
  • Build and evaluate prototypes at the subsystem and system levels; execute mechanical verification test protocols and document results.
  • Prepare and maintain pilot fabrication documentation: assembly instructions, BOMs, and process documentation.
  • Support user testing and pilot study activities, including test article preparation and follow-up design analysis.
  • Implement design improvements based on user, clinician, and internal feedback across prototype and pilot phases.
  • Contribute to design-for-manufacturing and assembly (DFM/DFMA) optimization during commercialization preparation.
  • Maintain assigned subsystem documentation and collaborate with controls and electrical engineering on system-level integration.
  • Support pilot device installations and clinical training sessions; occasional travel required (<10%).
Candidate Profile
  • Self-starter: tackles complex problems without hand-holding.
  • Comfortable with complexity: large, messy projects don’t rattle you.
  • High drive: moves fast and shows real progress every week.
  • Team player: shares knowledge, listens, and helps others win.
  • Quality-focused: won’t call it done until the work is rock-solid.
  • Learns on the fly: masters new tools, standards, and protocols quickly.
  • Mission-minded: motivated by restoring mobility for patients.
Basic Qualifications
  • Bachelor’s degree in Mechanical Engineering or a closely related field.
  • Demonstrated proficiency in a parametric 3D CAD tool (Onshape preferred; SolidWorks, CATIA, or similar acceptable).
  • Experience with mechanism design and analysis (linkages, actuated systems, or similar).
  • Hands-on prototyping and hardware build experience; comfortable building and testing, not only designing.
  • 0-2 years of professional experience in a mechanical engineering role; recent graduates with strong internship or project portfolios encouraged to apply.
  • Authorization to work in the USA (we do not sponsor H1B).
  • Fluent in English.
Preferred Qualifications
  • Familiarity with DFM/DFMA principles and manufacturing constraint awareness.
  • Experience creating engineering documentation (detailed drawings, BOMs, assembly instructions).
  • Exposure to a regulated development environment (medical device, aerospace, or similar).
  • Experience with Onshape specifically.
About Healing Innovations

Healing Innovations is a Nashville-based medical-technology company building robotic neuro-rehabilitation systems that help people recover mobility after neurological injury. Our flagship Rise&Walk InClinic, a first-of-its-kind 3-in-1 robotic rehabilitation station, is used daily by some of the nation’s largest rehabilitation hospital systems. A home-use device, Rise&Walk InHome, is NIH-funded and moving toward first-in-home trials. We’re growing quickly and expanding our team to bring this technology to more patients nationwide.

Compensation & Benefits
  • Competitive salary commensurate with experience (discussed during the interview process)
  • Stock options
  • Health insurance, PTO, and paid holidays
  • 401(k) with company match
Why Join Healing Innovations

This position offers a significant opportunity to contribute directly to the growth of an innovative, rapidly expanding healthcare technology company. The ideal candidate will thrive in a challenging yet rewarding environment, where professional achievements are recognized and career growth is actively supported.

Healing Innovations is an Equal Opportunity Employer.

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