1

Robotics Engineer Prosthetics Jobs (NOW HIRING)

Senior Software Engineer

San Francisco, CA · On-site

$144K - $190K/yr

We sit at the intersection of AI, robotics, and healthcare, across three product lines: a ... AI-designed, robotically manufactured orthotic and prosthetic devices at scale, replacing a ...

The Role We're looking for an engineer who can own software quality end-to-end, from a user ... control, robotics, or powered consumer electronics (drones, e-bikes, powered prosthetics, etc.

Software Engineer, Test

San Francisco, CA · On-site

$160K - $210K/yr

The Role We're looking for an engineer who can own software quality end-to-end, from a user ... control, robotics, or powered consumer electronics (drones, e-bikes, powered prosthetics, etc.

... prosthetics, humanoid robotics, etc) Proficiency in 3D CAD software Proficiency in rapid ... engineering theory and statistical tools Familiarity with formal experimental design (DOE ...

Criteria Project Manager

San Francisco, CA · On-site

$150K - $220K/yr

We sit at the intersection of AI, robotics, and healthcare, operating across three product lines: a ... AI-designed, robotically manufactured orthotic and prosthetic devices at scale, replacing a ...

Persona AI founding team has a decades-long history in humanoid robotics, bionics, and product ... Assemble finger, thumb, and wrist mechanisms from engineering drawings - miniature bearings, pivot ...

Founding Head of Talent

San Francisco, CA · On-site

$200 - $250/hr

We sit at the intersection of AI, robotics, and healthcare, operating across three product lines: a ... AI-designed, robotically manufactured orthotic and prosthetic devices at scale, replacing a ...

We sit at the intersection of AI, robotics, and healthcare, operating across three product lines: a ... AI-designed, robotically manufactured orthotic and prosthetic devices at scale, replacing a ...

Sr. Key Account Manager (SUITX)

OR · On-site +1

$65K - $80K/yr

As adoption of wearable robotics accelerates, SUITX is at the forefront of transforming how ... Build strong relationships with workers, EHS, operations, engineering, and executive stakeholders.

$60 - $80/hr

As adoption of wearable robotics accelerates, SUITX is at the forefront of transforming how ... Build strong relationships with workers, EHS, operations, engineering, and executive stakeholders.

Chief of Staff to CEO

San Francisco, CA · On-site

$150K - $200K/yr

We sit at the intersection of AI, robotics, and healthcare, operating across three product lines: a ... AI-designed, robotically manufactured orthotic and prosthetic devices at scale, replacing a ...

Soft Goods Designer

San Francisco, CA · On-site

$137K/yr

... robotic device , the MO/GO , develop a platform to launch future Movewear products and transform ... You'll work hand-in-hand with our mechanical and human factors engineers to make sure fabric, fit ...

Showing results 41-60

Robotics Engineer Prosthetics information

See salary details

$29K

$105.6K

$169K

How much do robotics engineer prosthetics jobs pay per year?

As of Sep 9, 2026, the average yearly pay for robotics engineer prosthetics in the United States is $105,605.00, according to ZipRecruiter salary data. Most workers in this role earn between $83,500.00 and $127,000.00 per year, depending on experience, location, and employer.

What does a robotics engineer prosthetics do?

A Robotics Engineer specializing in prosthetics designs, develops, and tests advanced artificial limbs and devices that help people with limb loss regain mobility and function. They integrate robotics, electronics, and biomedical engineering to create prosthetics that can mimic natural movement and respond to user commands. Their work often involves close collaboration with medical professionals and patients to ensure devices are comfortable, reliable, and improve quality of life. Additionally, they may work on improving the interface between the user and the device, such as developing sensors or software for better control.

How does a robotics engineer prosthetics typically collaborate with clinicians and patients during the development process?

Robotics Engineers in prosthetics work closely with clinicians, such as prosthetists and physical therapists, to understand patient needs and medical requirements. They often participate in multidisciplinary team meetings to discuss design specifications, gather user feedback, and refine prototypes based on real-world usage. Engaging directly with patients during the fitting and testing phases helps ensure that devices are comfortable, functional, and tailored to individual users. This collaborative approach not only enhances product effectiveness but also builds valuable communication skills critical to success in the field.

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

To excel as a Robotics Engineer in Prosthetics, you need a strong background in robotics, biomechanics, mechanical/electrical engineering, and typically a relevant degree such as in biomedical or mechanical engineering. Familiarity with CAD software, microcontrollers, programming languages (such as Python or C++), and knowledge of regulatory standards for medical devices are essential. Exceptional problem-solving, teamwork, and communication skills help you collaborate with clinicians and patients to design effective prosthetic solutions. These skills are crucial for developing innovative, safe, and user-centered prosthetics that improve patients' quality of life.

What is the difference between Robotics Engineer Prosthetics vs Mechanical Engineer?

AspectRobotics Engineer ProstheticsMechanical Engineer
Required CredentialsBachelor's in Robotics, Biomedical Engineering; certifications in prostheticsBachelor's in Mechanical Engineering; Professional Engineer (PE) license often preferred
Work EnvironmentResearch labs, hospitals, biomedical companiesManufacturing plants, design firms, industrial settings
Industry UsageHealthcare, biomedical device developmentAutomotive, aerospace, manufacturing

Robotics Engineer Prosthetics focuses on designing and developing robotic prosthetic devices, often requiring biomedical knowledge. Mechanical Engineers have a broader scope, working on various mechanical systems across industries. Both roles share foundational engineering skills but differ in specialization and work environment.

Is there a high demand for robotics engineers?

Robotics engineers, including those specializing in prosthetics, are in high demand due to advancements in medical technology and increasing healthcare needs. The field requires skills in programming, mechanical design, and electronics, with job growth expected to continue as robotics become more integrated into healthcare and assistive devices.

What kind of engineers work on prosthetics?

Robotics engineers specializing in prosthetics design and development work on creating advanced artificial limbs that integrate robotics, sensors, and control systems. They often have backgrounds in mechanical, electrical, or biomedical engineering and use tools like CAD software and microcontrollers to develop functional prosthetic devices.

What are popular job titles related to Robotics Engineer Prosthetics jobs?

For Robotics Engineer Prosthetics jobs, the most frequently searched job titles are:

Infographic showing various Robotics Engineer Prosthetics job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 92% Full Time, 3% Part Time, and 4% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $105,605 per year, or $50.8 per hour.

Senior Manager of Mechanical Engineering

Austin, TX • On-site

Apptronik
Industrial Automation Equipment Manufacturing • 11 - 50 employees

Full-time

Posted 18 days ago


Key responsibilities

  • Build, lead, and scale the Locomotion and Manipulation team, overseeing mechanical architecture, structural design, and kinematics.

  • Ensure successful execution of locomotion and manipulation hardware through design reviews and technical oversight.

  • Establish and enforce Siemens NX CAD standards, drive best practices for large assembly management, and facilitate cross-functional collaboration.


Job description

The Role

Apptronik is seeking a highly technical, driven Senior Manager of Mechanical Engineering to build, lead, and scale our Locomotion and Manipulation team. In our matrixed organization, you will own the team that contributes to the mechanical architecture, structural design, and kinematics of Apollo's arms, hands, legs, and overall mobility chassis.

As a Senior Manager, your primary focus is team execution, resource allocation, and mentorship. You will establish and enforce design standards in Siemens NX, guide your team in transitioning R&D prototypes to manufacturable assemblies, and facilitate seamless cross-functional collaboration with the Actuation, Controls, and Electrical teams. You possess the deep technical intuition required to challenge your engineers, review their work, and remove bottlenecks, ensuring they perform at the absolute highest level.

Key Responsibilities
  • Team Building & Matrix Leadership: Hire, mentor, and scale a world-class team of mechanical engineers specializing in complex mechanisms, structural linkages, and kinematics. Strategically deploy your engineers across various product pods in a matrix structure, balancing program deliverables with individual career growth.
  • Technical Facilitation & Oversight: Ensure the successful execution of locomotion and manipulation hardware. Ensure your team conducts and participates in rigorous design reviews for structural chassis components, highly loaded rotational joints, and complex end-effectors.
  • Siemens NX & CAD Excellence: Establish and enforce company-wide CAD standards using Siemens NX. Drive best practices for large assembly management, top-down master modeling, and seamless PLM integration (e.g., Teamcenter) to ensure a clean, scalable digital twin across the organization.
  • Mentorship in Mass Optimization & Packaging: Coach your team to push the boundaries of SWaP-C (Size, Weight, Power, and Cost). Guide them in aggressively lightweighting limbs and optimizing internal packaging to house core actuators and complex wire routing without sacrificing structural stiffness.
  • DFM/DFA & Production Scaling: Bridge the gap between prototype innovation and mass production. Ensure your engineers are designing all linkages and structural components for manufacturability (DFM) from Phase 0, leveraging advanced casting, machining, and injection molding techniques.
  • Cross-Functional Adjudication: Act as the primary managerial stakeholder in cross-disciplinary conflicts. Facilitate smooth interface negotiations between your team, Tech Leads, and the Actuation and Electrical teams to resolve space claim, mounting, and wire routing disputes.
Qualifications
  • Experience: 8+ years of mechanical engineering experience in robotics, aerospace, automotive, or advanced electromechanical systems, with 3+ years of direct engineering management experience.
  • Matrix Experience: Proven experience operating in a matrixed organization, successfully partnering with project managers and technical architects to deploy resources and drive execution.
  • Mechanism Intuition: Deep, hands-on background in complex mechanism design, structural bearing life calculations, kinematics, and integrating high-torque actuators. You need this depth to effectively mentor and challenge your team.
  • Software Proficiency: Expert-level experience with Siemens NX. You must understand how to structure large, complex assemblies and implement top-down modeling workflows to establish standards for your team.
  • Dynamic Hardware Background: A proven track record of shipping highly dynamic, moving hardware (e.g., robotic arms, legged robots, advanced prosthetics, or active suspension systems).
  • Leadership Style: A servant-leader mentality. You focus on removing roadblocks, building team capabilities, and empowering Tech Leads and ICs to make the best technical decisions.
  • Education: BS or MS in Mechanical Engineering.