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Phd Robotics Jobs in Colorado (NOW HIRING)

... robotic-assisted surgery (Hugoโ„ข), digital technologies, and core surgical innovations ... Advanced degree such as MPH, MHA, MBA, MS, or PhD, or post-graduate training in health policy ...

... robotics, robotic-assisted surgery (Hugo), digital technologies, and core surgical innovations ... Advanced degree such as MPH, MHA, MBA, MS, or PhD, or post-graduate training in health policy ...

... robotics, robotic-assisted surgery (Hugo), digital technologies, and core surgical innovations ... Advanced degree such as MPH, MHA, MBA, MS, or PhD, or post-graduate training in health policy ...

... robotics, robotic-assisted surgery (Hugo), digital technologies, and core surgical innovations ... Advanced degree such as MPH, MHA, MBA, MS, or PhD, or post-graduate training in health policy ...

Showing results 41-60

Phd Robotics information

See Colorado salary details

$88.3K

$100.9K

$122.5K

How much do phd robotics jobs pay per year?

As of Aug 17, 2026, the average yearly pay for phd robotics in Colorado is $100,945.00, according to ZipRecruiter salary data. Most workers in this role earn between $94,600.00 and $107,300.00 per year, depending on experience, location, and employer.

What is the difference between Phd Robotics vs Robotics Engineer?

AspectPhd RoboticsRobotics Engineer
Required CredentialsPhD in Robotics, Computer Science, or related fieldBachelor's or Master's in Robotics, Mechanical, Electrical Engineering
Work EnvironmentResearch labs, academia, advanced R&D projectsIndustry settings, manufacturing, product development
Employer & Industry UsageUniversities, research institutions, high-tech companiesTech companies, manufacturing firms, startups
Common Search & ComparisonAcademic research, specialized rolesPractical application, product design

While a Phd Robotics focuses on advanced research, theoretical development, and academic contributions, a Robotics Engineer applies practical skills to design, develop, and implement robotic systems in industry settings. Both roles require a background in robotics, but their career paths and work environments differ significantly.

Can I do a PhD in robotics?

A PhD in robotics is a research-focused doctoral degree that typically requires a master's degree in engineering, computer science, or a related field. It involves advanced coursework, original research, and skills in areas like programming, control systems, and machine learning, often taking 3-5 years to complete.

How much does a PhD in robotics make?

A PhD in robotics typically earns between $80,000 and $130,000 annually, depending on experience, industry, and location. Robotics researchers and engineers with a doctorate often work in advanced research, development, or academia, where higher salaries are common for specialized skills in automation, machine learning, and control systems.

What is the highest paid job in robotics?

The highest paid jobs in robotics are often senior roles such as robotics engineering managers, research directors, or chief robotics officers, typically earning six-figure salaries. These positions require advanced technical skills, leadership experience, and often a PhD in robotics or related fields, along with expertise in AI, machine learning, and automation systems.

What cities in Colorado are hiring for Phd Robotics jobs?

Cities in Colorado with the most Phd Robotics job openings:

Infographic showing various Phd Robotics job openings in Colorado as of August 2026, with employment types broken down into 92% Full Time, and 8% Part Time. Highlights an 92% In-person, and 8% Hybrid job distribution, with an average salary of $100,945 per year, or $48.5 per hour.

Senior GNC Engineer - Navigation & Estimation

Approach Venture LLC

Denver, CO โ€ข On-site

$120K - $160K/yr

Full-time

Medical, Dental, Vision, Life, PTO

Posted 26 days ago


Job description

Senior GNC Engineer - Develop Autonomous Navigation & Sensor Fusion for Next-Generation Spacecraft
Denver, Colorado | On-site
Opportunity Summary
Join a venture-backed aerospace company developing advanced spacecraft platforms designed to enable the next generation of autonomous in-space operations. As the company progresses from prototype development toward flight-qualified systems, this role will lead the design and implementation of the navigation algorithms that allow spacecraft to accurately determine their position, orientation, and motion while operating in dynamic orbital environments. As a Senior GNC Engineer, you will own the development of flight-critical navigation and state estimation software supporting autonomous rendezvous, proximity operations, docking, and long-term orbital navigation. Working alongside controls, perception, avionics, embedded software, and systems engineering teams, you'll transform complex sensor data into reliable vehicle state information while helping define the navigation architecture for future spacecraft. This is a highly technical role with significant ownership, offering the opportunity to influence both flight software and overall vehicle performance from concept through on-orbit operations.
About Us
We are an early-stage aerospace company building advanced spacecraft technologies for future commercial and government space missions. Our multidisciplinary engineering team develops tightly integrated hardware, software, and autonomous systems that solve complex challenges in spacecraft mobility, guidance, and in-space operations. Engineers work across disciplines, take ownership of critical systems, and play a direct role in moving products from early design through flight.
Job Duties
  • Lead the development of spacecraft navigation and state estimation algorithms for autonomous flight operations.
  • Design, implement, tune, and validate Extended Kalman Filters, Unscented Kalman Filters, and other probabilistic estimation techniques.
  • Develop relative navigation algorithms supporting rendezvous, docking, proximity operations, and formation flight.
  • Design onboard sensor fusion architectures integrating multiple navigation sensors into robust state estimates.
  • Develop measurement models and estimation techniques for optical, inertial, and ranging sensors.
  • Define navigation system accuracy requirements and allocate error budgets across sensing and estimation systems.
  • Develop orbit determination, orbital propagation, and absolute navigation algorithms supporting spacecraft operations.
  • Analyze navigation performance using simulation, hardware testing, and flight data.
  • Support hardware-in-the-loop and software-in-the-loop testing campaigns.
  • Develop analysis tools, visualization utilities, and validation software using C++ and Python.
  • Investigate navigation anomalies and improve estimator robustness throughout system development and flight operations.
  • Collaborate closely with controls, perception, avionics, embedded software, and systems engineering teams to integrate navigation capabilities into the overall flight system.
  • Participate in design reviews, technical trade studies, and system architecture decisions.

Qualifications
  • Bachelor's degree in Aerospace Engineering, Mechanical Engineering, Electrical Engineering, Physics, Applied Mathematics, Computer Science, or a related technical discipline.
  • 5+ years of professional experience developing guidance, navigation, or state estimation systems.
  • Strong software development experience using modern C++ and Python.
  • Experience designing and implementing Kalman Filters or similar sequential estimation techniques.
  • Experience developing sensor fusion algorithms for autonomous systems.
  • Strong understanding of orbital mechanics, rigid-body dynamics, coordinate transformations, and feedback control systems.
  • Experience developing algorithms that have been validated through simulation, hardware testing, or operational deployment.
  • Familiarity with software development best practices, version control, and collaborative engineering workflows.

Preferred Experience
  • Master's or PhD in Aerospace Engineering, Robotics, Computer Science, Physics, Applied Mathematics, or a related discipline.
  • Experience with spacecraft rendezvous, proximity operations, docking, or formation flying.
  • Computer vision, optical navigation, or image-based state estimation.
  • Orbit determination and high-fidelity orbital propagation.
  • Sensor modeling, calibration, and measurement processing.
  • IMUs, cameras, LiDAR, radar, magnetometers, star trackers, or other navigation sensors.
  • Statistical analysis, covariance analysis, estimator tuning, and navigation performance validation.
  • Embedded flight software development.
  • Autonomous robotics, UAVs, spacecraft, or other mission-critical autonomous systems.
  • Experience supporting flight operations or post-launch system performance analysis.

Why Join Us
  • Own the navigation architecture for a next-generation spacecraft platform.
  • Develop flight-critical autonomy from concept through operational deployment.
  • Work alongside a highly collaborative multidisciplinary engineering team.
  • Significant technical ownership with direct influence on product direction.
  • Competitive salary and meaningful early-stage equity opportunity.
  • Comprehensive medical, dental, and vision coverage.
  • Life and disability insurance.
  • Paid parental leave.
  • Three weeks of paid vacation plus company holidays.

Compensation Details
$120,000 - $160,000
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