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Prosthetic Design Research Jobs (NOW HIRING)

... through research and education. HSS P&O supports that mission by designing and fitting devices ... Members of the HSS P&O team will be designing the future of prosthetic and orthotic care treating ...

... design an intervention to alleviate limitations and enhance function that ensures successful ... research evidence-based studies promotion of public awareness of the orthotic and/or prosthetic ...

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Prosthetic Design Research information

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$37K

$106K

$142.5K

How much do prosthetic design research jobs pay per year?

As of Sep 9, 2026, the average yearly pay for prosthetic design research in the United States is $106,012.00, according to ZipRecruiter salary data. Most workers in this role earn between $104,000.00 and $104,000.00 per year, depending on experience, location, and employer.

What is prosthetic design research?

Prosthetic design research is the scientific study and development of artificial limbs and body parts, focusing on improving their functionality, comfort, and integration with the human body. Researchers in this field work on advancing materials, biomechanics, and technologies such as sensors and robotics to create prosthetics that better mimic natural movement and meet individual user needs. The goal is to enhance the quality of life for people with limb loss or limb differences by providing them with more effective and personalized prosthetic solutions.

What are the key skills and qualifications needed to thrive in prosthetic design research?

To excel in Prosthetic Design Research, you need a solid background in biomedical engineering, materials science, and biomechanics, often supported by an advanced degree in a related field. Proficiency with CAD software, 3D printing technologies, and familiarity with regulatory standards such as ISO or FDA guidelines is typically required. Strong problem-solving, creativity, and interdisciplinary teamwork skills help drive innovation and ensure user-focused solutions. These competencies are crucial for developing safe, functional, and cutting-edge prosthetic devices that effectively improve patients' quality of life.

What are some common challenges faced by professionals in prosthetic design research, and how can they be addressed?

Professionals in prosthetic design research often encounter challenges such as integrating advanced technology with user comfort, ensuring devices are both functional and affordable, and meeting the diverse needs of patients. Collaboration with clinicians, engineers, and end users is essential to gather feedback and iterate designs effectively. Staying current with material science innovations and regulatory standards also plays a key role in overcoming these challenges and delivering impactful solutions.

What is the difference between Prosthetic Design Research vs Prosthetic Development Specialist?

AspectProsthetic Design ResearchProsthetic Development Specialist
CredentialsDegree in biomedical engineering, prosthetics, or related fieldSimilar credentials, often with additional focus on manufacturing or clinical application
Work EnvironmentResearch labs, universities, R&D departmentsManufacturing facilities, clinical settings, product development teams
Industry UsageFocus on innovation, new materials, and design conceptsFocus on bringing designs to production, testing, and clinical implementation

Prosthetic Design Research primarily involves exploring new ideas, materials, and concepts to improve prosthetic devices. In contrast, a Prosthetic Development Specialist focuses on transforming these designs into functional products ready for clinical use. Both roles require similar educational backgrounds but differ in their focus within the prosthetics industry.

What are popular job titles related to Prosthetic Design Research jobs?

For Prosthetic Design Research jobs, the most frequently searched job titles are:

Infographic showing various Prosthetic Design Research job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 89% Full Time, 7% Part Time, and 3% Contract. Highlights an 81% Physical, 4% Hybrid, and 15% Remote job distribution, with an average salary of $106,012 per year, or $51 per hour.

Mechanical Design Engineer - Humanoid Robotics

Palo Alto, CA • On-site

$89K - $121K/yr

Other

Medical, Dental, Vision

Posted 22 days ago


Job description

Mechanical Design Engineer – Humanoid Robotics

At Proception, we are engineering the next generation of highly dexterous humanoid manipulators. Our mission is to bring machines closer to human capability by merging innovative mechanical design, sensor integration, and intelligent control. We're looking for a full-time Mechanical Design Engineer to lead structural and actuation design for our humanoid upper body and hand systems. You'll work at the frontier of mechanical performance, electromechanical integration, and rapid prototyping to enable breakthrough physical intelligence.

Requirements
  • 01 1+ years of experience designing mission-critical mechanical systems for robotics, aerospace, or automation
  • 02 Mastery of CAD (SolidWorks, Fusion), FEA, and precision design
  • 03 Experience prototyping with your own hands—machining, printing, assembling, debugging
  • 05 Fluent in tolerance stack-ups, material properties, thermal constraints, and load paths
  • 06 Designed for real-world wear, slop, EMI, torque ripple, and backlash
  • 07 Experience with humanoids, exoskeletons, prosthetics, soft robots, or tendon drives
  • 08 Startup reflexes: you bias toward execution, learn fast, and document like it matters
  • 09 (+) Experience with humanoids, exoskeletons, prosthetics, soft robots, or tendon drives
  • 10 (+) Experience with testing and validation of mechanical systems
Responsibilities
  • 01 Architect and design high-DOF robotic arms and hands for dynamic manipulation
  • 02 Build geartrains, compliant mechanisms, and tendon systems that outperform current state-of-the-art
  • 03 Drive simulation, analysis, prototyping, and testing in a no-silos, build-it-yourself workflow
  • 04 Iterate hardware based on test data, field failure, or system noise—fast
  • 05 Collaborate tightly with controls, perception, and firmware teams to deliver integrated, elegant robots
  • 06 Write clear, transferable documentation for scaling what works—and killing what doesn't
  • 07 Design and test mechanical systems for humanoids, exoskeletons, prosthetics, soft robots, or tendon drives
  • 08 Validate mechanical systems through testing and analysis
  • 09 Iterate on mechanical designs based on test data and feedback
Benefits
  • 01 Competitive salary and meaningful equity
  • 02 Comprehensive health, dental, and vision coverage
  • 03 Work with world-class researchers and engineers in AI and robotics
  • 04 High-ownership role with opportunity to lead mechanical design efforts
  • 05 Help define and build next-generation embodied intelligence systems
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