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Solidworks Design Medical Devices Jobs (NOW HIRING)

Senior Staff Mechanical Engineer

Raleigh, NC · On-site

$101K - $134K/yr

... medical devices, lasers, or capital equipment.Extensive CAD design experience; SolidWorks preferred.Extensive knowledge of manufacturing technologies, including injection molding, sheet metal ...

SolidWorks Drafter

Bellevue, WA · On-site

$52 - $85/hr

Produce robust CAD models that facilitate fast-paced design evolution and derivative creation that ... Medical Devices, and Connected Technologies . We're passionate about making a positive impact by ...

Senior Staff Mechanical Engineer

Raleigh, NC · On-site

$101K - $134K/yr

... in medical devices, lasers, or capital equipment. * Extensive CAD design experience; SolidWorks preferred. * Extensive knowledge of manufacturing technologies, including injection molding, sheet ...

Senior Staff Mechanical Engineer

Raleigh, NC · On-site

$92K - $122K/yr

... in medical devices, lasers, or capital equipment. * Extensive CAD design experience; SolidWorks preferred. * Extensive knowledge of manufacturing technologies, including injection molding, sheet ...

Senior Staff Mechanical Engineer

Raleigh, NC · On-site

$92K - $122K/yr

... in medical devices, lasers, or capital equipment. * Extensive CAD design experience; SolidWorks preferred. * Extensive knowledge of manufacturing technologies, including injection molding, sheet ...

Senior Staff Mechanical Engineer

Raleigh, NC · On-site

$92K - $122K/yr

... in medical devices, lasers, or capital equipment. * Extensive CAD design experience; SolidWorks preferred. * Extensive knowledge of manufacturing technologies, including injection molding, sheet ...

Summary The Sr Design Engineer is responsible for Design medical devices to support the growth ... Preferred experience using engineering programs such as SolidWorks, Minitab, TOPS, similar.

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Solidworks Design Medical Devices information

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How much do solidworks design medical devices jobs pay per hour?

As of Sep 10, 2026, the average hourly pay for solidworks design medical devices in the United States is $29.96, according to ZipRecruiter salary data. Most workers in this role earn between $24.04 and $34.13 per hour, depending on experience, location, and employer.

What is SolidWorks design medical devices?

SolidWorks design medical devices are medical equipment and tools that are conceptualized, modeled, and engineered using SolidWorks, a 3D computer-aided design (CAD) software. Designers use SolidWorks to create precise digital prototypes of medical devices, allowing for detailed visualization, simulation, and testing before manufacturing. This process helps ensure that devices meet safety, regulatory, and functional requirements. SolidWorks is widely used in the medical device industry for its powerful modeling capabilities and support for complex geometries.

What are some common challenges faced by SolidWorks designers in the medical device industry, and how can they be addressed?

SolidWorks designers in the medical device field often deal with stringent regulatory standards and the need for extreme precision in their designs. One of the primary challenges is ensuring that all models and drawings comply with FDA and ISO regulations, which requires meticulous documentation and version control. Additionally, designers must frequently collaborate with cross-functional teams such as engineering, manufacturing, and quality assurance to iterate on designs rapidly while maintaining compliance. Staying current with SolidWorks updates and medical device innovations is crucial, as is developing strong communication skills to effectively address design feedback and regulatory requirements.

What are the key skills and qualifications needed to thrive as a SolidWorks design engineer for medical devices, and why are they important?

To excel as a SolidWorks Design Engineer in medical devices, you need expertise in mechanical design, CAD modeling, and knowledge of medical device regulations, typically supported by an engineering degree. Proficiency in SolidWorks, familiarity with PDM/PLM systems, and understanding of standards like ISO 13485 are critical. Strong problem-solving, attention to detail, and effective communication skills help you collaborate across multidisciplinary teams and ensure design accuracy. These skills are essential to create safe, high-quality products that meet regulatory requirements and improve patient outcomes.

What is the difference between Solidworks Design Medical Devices vs Medical Device Manufacturing Technician?

AspectSolidworks Design Medical DevicesMedical Device Manufacturing Technician
CredentialsCAD software proficiency, engineering backgroundTechnical training, manufacturing certifications
Work EnvironmentDesign labs, engineering officesManufacturing floors, assembly lines
Industry UsageProduct development, design validationProduction, quality control

Solidworks Design Medical Devices focuses on creating detailed 3D models and prototypes of medical devices using CAD software, primarily in design and development phases. In contrast, Medical Device Manufacturing Technicians work on assembling, testing, and ensuring the quality of devices in manufacturing settings. Both roles are essential in the medical device industry but differ in their focus, skills, and work environments.

What are popular job titles related to Solidworks Design Medical Devices jobs?

For Solidworks Design Medical Devices jobs, the most frequently searched job titles are:

Infographic showing various Solidworks Design Medical Devices job openings in the United States as of September 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $62,322 per year, or $30 per hour.

Senior Staff Mechanical Engineer

Raleigh, NC • On-site

$101K - $134K/yr

Other

Posted 14 days ago


Key responsibilities

  • Design and develop precision opto-mechanical assemblies, structural frames, thermal management systems, and industrial designs for advanced energy systems.

  • Own the overall mechanical Design Verification and Validation strategy, including system-level risk management and compliance with global standards.

  • Lead the mechanical engineering compliance strategy within the Quality Management System and coordinate cross-functional design reviews.


Job description

Position Summary:We are seeking an exceptional Senior Staff Mechanical Engineer to join our R&D Mechanical Engineering team and support development of novel medical devices and applications. Projects span a broad range of technologies including complex laser and optical delivery systems, high-power ultrasound, and radio-frequency devices. Our diverse technology portfolio, culture of innovation, and vertical integration provide a unique opportunity for an engineer with broad technical interests and expertise.This position is responsible for the design and development of precision opto-mechanical assemblies, structural frames, thermal management systems, and industrial designs for advanced energy systems. The engineer will collaborate closely with Electrical, Laser, Clinical, Manufacturing, Quality, and Regulatory teams and contribute to product development from concept through product launch.Duties & Responsibilities:Owns the overall mechanical Design Verification and Validation strategy. Leads system-level risk management files (ISO 14971) and ensures mechanical architectures comply with global standards like IEC 60601.Establish the technology roadmap for plastics and cosmetic finishing across platform projects. Direct the selection of advanced engineering resins for medical and consumer electronic applications to achieve optimal weight, cost, and reliability targets.Review and approve tooling architecture, mold-flow analyses, and production painting processes for critical components, ensuring high-yield, high-cosmetic-quality outcomes.Architect major structural platforms that integrate high-precision stamped or fabricated metal chassis with structural plastic enclosures. Define the master tolerance strategy and structural layout to survive global drop, thermal, and transit standards.Lead technical vendor selection and establish engineering standards for contract manufacturing (CM) partners. Coordinate closely with CMs to resolve complex tool transfers, production scaling bottlenecks, and structural yield challenges.Define the overall mechanical testing and validation framework for entire platforms, outlining the design of complex test fixtures, qualification procedures, and regression testing scenarios. Lead cross-functional root-cause investigations for highly complex, systemic field or production mechanical failures.Utilize extensive CAD design expertise in SolidWorks to architect complex, multi-subsystem mechanical layouts and define the top-down assembly structure for entire product platforms.Enforce SolidWorks design best practices, master modeling/skeleton techniques, and advanced GD&T application standards across the R&D engineering team.Lead the mechanical engineering compliance strategy within the Quality Management System (QMS) framework, defining policies that ensure all structural and opto-mechanical designs meet FDA Quality System Regulations and global medical safety standards (including IEC 60601).Own the system-level Risk Management strategy (ISO 14971) and govern the Design Verification and Validation (V&V) architecture for new product lines, guiding cross-functional teams to ensure robust documentation from concept through successful product launch.Highly self-directed. Operates as the technical lead for entire platforms. Handles ambiguous, high-risk technical problems with no pre-existing template or roadmap.Actively develops the engineering team’s technical capabilities, identifies skill gaps, and implements training. Influences the department's engineering culture and standard design practices.Expected to have strong communication skills and the ability to articulate highly complex technical architectures, development timelines, and project risks directly to executive leadership.Initiates and chairs major cross-functional design reviews. Coordinates with Systems, Mechanical, and Embedded Software engineers to resolve multi-disciplinary integration issues.Other duties as needed or required.Minimum Requirements & Qualifications:Bachelor’s degree in Mechanical Engineering; graduate degree preferred.10+ years of relevant mechanical design experience, preferably in medical devices, lasers, or capital equipment.Extensive CAD design experience; SolidWorks preferred.Extensive knowledge of manufacturing technologies, including injection molding, sheet metal fabrication, and high-precision machining.Experience designing and assembling miniature optical components using solder, adhesives, and advanced fastening techniques for laser applications.Experience collaborating with clinical personnel to develop medical devices that meet ergonomic and usability requirements.Experience designing, assembling, and testing rapid-turn prototypes using rapid prototyping, machining, and off-the-shelf components.Strong understanding of GD&T principles and their application to precision mechanical designs.Experience using FEA simulation tools and correlating simulation results with empirical test data.Experience designing thermal management systems, including air- and water-cooled heat exchangers and thermoelectric coolers.Experience designing actuation assemblies, such as laser beam scanning systems and translation and rotation stages.Experience designing opto-mechanical assemblies, including strain-free optical mounting techniques using adhesives.Familiarity with FDA Quality System Regulations, Design Controls, IEC 60601, and/or ISO 14971 Risk Management requirements.Working knowledge of electronics, optics, and numerical data analysis tools such as Excel, MATLAB, or equivalent.Strong communication and collaboration skills, with the ability to make sound design recommendations based on cross-functional input.Preferred Qualifications:Experience with thermal FEA tools.Experience with data acquisition systems such as LabVIEW.Experience developing laser or energy-based medical devices. #J-18808-Ljbffr