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Remote Biomedical Design Engineer Jobs in Atlanta, GA

Substation Design Engineer

Peachtree Corners, GA ยท Remote

$100K - $128K/yr

Substation Design Engineer Location: Atlanta, Georgia Type: Direct Hire Compensation: Contractor ... Remote consideration may be available for highly qualified candidates depending on experience and ...

Substation Design Engineer

Peachtree Corners, GA ยท Remote

$100K - $128K/yr

Substation Design Engineer Location: Atlanta, Georgia Type: Direct Hire Compensation: Contractor ... Remote consideration may be available for highly qualified candidates depending on experience and ...

Biomedical Engineering Tutor

Duluth, GA ยท Remote

$18 - $40/hr

Ability to explain signal processing for biosignals, finite element analysis, drug delivery systems, and medical device design principles while preparing students for biomedical engineering ...

Ability to explain signal processing for biosignals, finite element analysis, drug delivery systems, and medical device design principles while preparing students for biomedical engineering ...

Biomedical Engineering Tutor

Roswell, GA ยท Remote

$18 - $40/hr

Ability to explain signal processing for biosignals, finite element analysis, drug delivery systems, and medical device design principles while preparing students for biomedical engineering ...

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Showing results 1-20

Remote Biomedical Design Engineer information

See Atlanta, GA salary details

$39.4K

$91.2K

$134.6K

How much do remote biomedical design engineer jobs pay per year?

As of Aug 1, 2026, the average yearly pay for remote biomedical design engineer in Atlanta, GA is $91,172.00, according to ZipRecruiter salary data. Most workers in this role earn between $71,600.00 and $111,600.00 per year, depending on experience, location, and employer.

What is the difference between Remote Biomedical Design Engineer vs Remote Medical Device Engineer?

AspectRemote Biomedical Design EngineerRemote Medical Device Engineer
Required CredentialsBachelor's or Master's in Biomedical Engineering, certifications varyBachelor's or Master's in Biomedical, Electrical, or Mechanical Engineering, certifications may include FDA compliance
Work EnvironmentDesign labs, R&D departments, remote collaborationDesign and testing environments, regulatory agencies, remote teams
Employer & Industry UsageMedical device companies, biotech firms, healthcare startupsMedical device manufacturers, healthcare technology firms, regulatory bodies

Both roles focus on medical device development but differ slightly in scope. Remote Biomedical Design Engineers primarily focus on designing and developing new biomedical devices, while Remote Medical Device Engineers often handle testing, regulatory compliance, and technical troubleshooting. Understanding these distinctions helps job seekers target the right roles in the healthcare technology industry.

What are the most commonly searched types of Biomedical Design Engineer jobs in Atlanta, GA? The most popular types of Biomedical Design Engineer jobs in Atlanta, GA are:

Mechanical Design Engineer

Quantum World Technologies Inc

Atlanta, GA โ€ข Remote

$77K - $105K/yr

Full-time

Re-posted 27 days ago


Job description

Job Title: Mechanical Design Engineer

Location: Houston, TX & Atlanta, GA (Remote)

Hire Type: Full-time

Job Summary:

  • 5 to 10 years of experience in design of component/assembly for aero derivative engines ideally in the power generation or power services industries
  • Recreate digital representations of aeroderivative engine components utilizing available scans, existing hardware, and/or detailed 2-D drawings.
  • Develop solid NX 3-D models and corresponding component manufacturing drawings for each replicated part.
  • Must have experience in design of Power turbine components, Nozzles, Turbine blades, Shrouds, Disks, and case of power turbine.
  • Apply industry-standard tolerancing practices, leveraging both contractor’s in-house expertise and customer’s guidelines.
  • Provide support for supplier development activities related to specified aeroderivative components.
  • Adhere to the modeling and drawing architecture established by the company Product Definition Engineering (PDE) team throughout all activities.
  • Provide engineering analysis in support of hardware departure records for aeroderivative engine components.
  • Develop baseline stress models for rotating equipment—including disks, spools, and shafts— by leveraging aircraft engine component design and analysis expertise. These models will support the evaluation of component failure/distress investigations as well as making improvements to new make and developing repair modifications.
  • Create standard work processes, including design guides and aeroderivative-specific design methodologies, aligned with aircraft engine industry best practices for stress analysis and lifting of rotating equipment components.
  • Support supplier development activities and qualifications for designated aeroderivative components for industrialization of repair hardware and new make spares.
  • Conduct internal reviews and provide recommendations by leveraging contractors’ in-house expertise in accordance with established aeroderivative processes and best practices. This encompasses the final release of component/assembly definitions, and any critical decisions or trade-offs related to modifications and improvements.

Requirement and Skills:

  • CAD: NX 2206, AutoCAD
  • Enovia, Teamcenter
  • Ansys, Abacus, Hypermesh
  • MS office: MS Excel , Word , PowerPoint , Microsoft Project
  • Project Management foundation, Project Management,
  • Documentation

Desire Characteristics:

  • Experienced with Excel, Outlook, Word, and PowerPoint
  • Experience working in an independent and highly matrixed environment, coordinating across multiple sites, functions, and time zones, with simultaneous projects. Takes initiative and quickly raises issues for help
  • Strong bias for action; mechanically minded; high energy. Demonstrated high organizational skills, enjoys structured, transactional, process-oriented work
  • Strong team player, excellent interpersonal skills; verbal, written communication skills, and presentation skills knowing when to use more technical detail and when to summarize; ability to work with fellow engineers as well as leaders at customer
  • Solid analytical competencies, ability to troubleshoot quickly and on-the-fly, especially at customer locations

Education:

  • Masters or Bachelor of Mechanical Engineering