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Prosthetics Engineering Jobs in Texas (NOW HIRING)

... Engineering, or related field Experience: 2+ years experience developing control algorithms for: * wearable robotics * legged robots * powered prosthetics * exoskeletons * humanoid locomotion ...

Therapy Aide -Full Time

Cedar Park, TX · On-site

$16.18 - $21.77/hr

... for programming, light clerical tasks, and other duties as assigned. Job duties also include ... prosthetic devices and equipment. * Transports patients to/from therapy as needed. * Assists ...

Occupational Therapy Assistant

San Angelo, TX · On-site

$25.50 - $34.25/hr

... the OT programming remains within the patient's capabilities as previously indicated and ... Instructs patients on proper use of prosthetic applications and devices. * Communicates ...

Showing results 41-60

Prosthetics Engineering information

What is prosthetics engineering?

Prosthetics engineering is a specialized field that focuses on the design, development, and manufacturing of artificial limbs and devices to replace or support the function of missing body parts. Prosthetics engineers work closely with medical professionals and patients to create custom solutions that restore mobility, comfort, and functionality. They use advanced materials, computer-aided design, and innovative technologies to improve the quality and performance of prosthetic devices, enhancing the lives of individuals with limb loss or limb differences.

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

To thrive as a Prosthetics Engineer, you need a strong background in biomedical engineering, materials science, and anatomy, typically supported by a relevant engineering degree. Familiarity with CAD software, 3D printing technologies, and regulatory standards like ISO 13485 is essential. Strong problem-solving skills, creativity, and effective communication with patients and healthcare professionals set outstanding candidates apart. These abilities ensure the development of functional, safe, and patient-centered prosthetic devices that significantly improve users' quality of life.

What is the difference between Prosthetics Engineering vs Orthotics Engineering?

AspectProsthetics EngineeringOrthotics Engineering
CredentialsBiomedical engineering degree, certification in prostheticsBiomedical engineering degree, certification in orthotics
Work EnvironmentHospitals, clinics, prosthetic labsHospitals, clinics, orthotic labs
Industry UsageDesigning artificial limbs for amputeesCreating supportive devices for musculoskeletal issues
Common Search IntentProsthetics design, limb replacementOrthotic devices, braces, supports

Prosthetics Engineering focuses on designing and developing artificial limbs for amputees, while Orthotics Engineering specializes in creating supportive devices like braces and orthoses for various musculoskeletal conditions. Both roles require similar credentials and often work in similar environments, but their specific applications differ.

What are some challenges prosthetics engineers typically face when working with patients and clinicians?

Prosthetics Engineers often encounter the challenge of customizing devices to fit the unique anatomy and lifestyle needs of each patient, which requires close collaboration with clinicians and end-users. Balancing the latest technological advancements with practical functionality and patient comfort can also be demanding. Additionally, engineers must stay updated on evolving materials and regulatory standards, all while working within time and budget constraints. Strong communication and problem-solving skills are essential to ensure successful outcomes.
What cities in Texas are hiring for Prosthetics Engineering jobs? Cities in Texas with the most Prosthetics Engineering job openings:
Infographic showing various Prosthetics Engineering job openings in Texas as of August 2026, with employment types broken down into 88% Full Time, 7% Part Time, 4% Contract, and 1% Nights. Highlights an 88% Physical, 3% Hybrid, and 9% Remote job distribution.

Full-time

Medical, Dental, Vision, Retirement, PTO

Re-posted 2 days ago


Job description

About Shift Robotics

We're making the world a more walkable place. Through intuitive personal mobility, we make walking faster, more efficient, and more accessible to empower people to choose walking over sitting in traffic. By giving people the ability to Moonwalk, we believe the path forward to a better future is easily reached on your own two feet.

Our flagship product, Moonwalkers, are the world's fastest robotic shoes, augmenting natural walking with intelligent locomotion assistance. By giving people the ability to Moonwalk, we believe the path toward a more human-scale future can be reached on your own two feet.

We are building the next generation of Moonwalkers and are looking for engineers who thrive in fast-paced environments where hardware, software, and human motion intersect.

We are covered in Wired, CNET, Gizomodo, PCMag and many other tech press.

Role Overview

The Gait Control Engineer will lead the development of locomotion control algorithms for Shift's robotic footwear platform. This role focuses on designing, implementing, and deploying robust control and estimation algorithms that enable safe, intuitive, and responsive human-machine interaction.

You will work closely with mechanical, electrical, and firmware teams to develop algorithms that run reliably on embedded systems while handling real-world variability in human gait and terrain.

This role requires strong intuition for human locomotion, control systems, and embedded algorithm implementation.

Responsibilities:

Locomotion Control Development

  • Design and implement gait control algorithms for wearable robotic systems.
  • Develop control strategies for walking assistance across different user speeds, terrain conditions, and gait phases.
  • Implement and validate locomotion controllers on embedded hardware.

State Estimation & Sensor Fusion

  • Develop real-time estimation algorithms using IMU, force sensors, encoders, and other onboard sensors.
  • Implement sensor fusion pipelines for gait phase detection, motion estimation, and intent recognition.
  • Ensure algorithms remain robust under noisy real-world conditions.

Algorithm Prototyping & Validation

  • Prototype algorithms in Python or MATLAB before deploying to embedded systems.
  • Evaluate control strategies using simulation tools (e.g., MuJoCo, Simulink, or custom simulation environments).
  • Design experiments and analyze data from real hardware testing.

Embedded Implementation

  • Translate algorithms into efficient C/C++ implementations for real-time embedded systems.
  • Optimize algorithms for low-latency execution on resource-constrained processors.
  • Work with firmware engineers to integrate control algorithms into production software.

System Integration

  • Collaborate with mechanical and electrical engineers on actuator selection, sensor placement, and system architecture.
  • Ensure control algorithms meet performance, safety, and reliability requirements.
  • Identify system limitations and propose improvements in hardware or software.

Requirements

Education:
  • MS or PhD in Robotics, Mechanical Engineering, Electrical Engineering, or related field
Experience:

2+ years experience developing control algorithms for:

  • wearable robotics
  • legged robots
  • powered prosthetics
  • exoskeletons
  • humanoid locomotion
Technical Skills:
  • Strong understanding of:
  • Control systems
  • Multibody dynamics
  • Human locomotion
  • State estimation
  • Sensor fusion
Experience with:
  • Real-time control implementation in C/C++
  • Algorithm prototyping using Python or MATLAB
  • Embedded systems development
  • Processing IMU and force sensor data
  • Debugging real-time robotic systems
Preferred Qualifications:

Experience with one or more of the following:

  • Gait phase detection and intent recognition
  • Model-based control (e.g., MPC, optimal control)
  • Extended Kalman Filters or nonlinear state estimation
  • RTOS-based embedded systems
  • ARM Cortex microcontrollers
  • Real-time signal processing
  • Simulation tools such as MuJoCo, Simulink, or OpenSim
  • Experience working on production robotics systems or shipping hardware products is highly valued.

Benefits

  • Competitive salary and equity participation
  • 401(k) retirement plan
  • Medical, dental, and vision insurance
  • Flexible vacation policy
  • Paid holidays
  • A collaborative, fast-moving engineering environment
  • Opportunity to shape the future of personal mobility