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Manager Robotic Simulation Engineer Jobs in Phoenix, AZ

... managing resources to drive successful outcomes. * In-depth understanding of commercial robotic ... Familiar to the robotic simulation and training system such as ROS2, Nvidia Omniverse and ISSAC Sim ...

... managing resources to drive successful outcomes. * In-depth understanding of commercial robotic ... Familiar to the robotic simulation and training system such as ROS2, Nvidia Omniverse and ISSAC Sim ...

Strong project management skills to coordinate multiple automation projects and vendor integrations ... Experience with robotic simulation tools (RoboGuide, RobotStudio, etc.) * Experience integrating ...

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Manager Robotic Simulation Engineer information

See Phoenix, AZ salary details

$28.8K

$104.9K

$167.8K

How much do manager robotic simulation engineer jobs pay per year?

As of Jul 28, 2026, the average yearly pay for manager robotic simulation engineer in Phoenix, AZ is $104,856.00, according to ZipRecruiter salary data. Most workers in this role earn between $82,900.00 and $126,100.00 per year, depending on experience, location, and employer.

What is the difference between Manager Robotic Simulation Engineer vs Robotic Simulation Engineer?

AspectManager Robotic Simulation EngineerRobotic Simulation Engineer
ResponsibilitiesOversees simulation projects, manages teams, strategic planningDevelops and tests robotic simulation models, executes simulations
Required SkillsLeadership, project management, advanced simulation knowledgeTechnical simulation skills, programming, robotics knowledge
CertificationsRelevant certifications in robotics, project managementRobotics, simulation software certifications
Work EnvironmentTeam management, coordination with multiple departmentsHands-on simulation development, testing

The Manager Robotic Simulation Engineer focuses on leading teams and managing simulation projects, while the Robotic Simulation Engineer primarily develops and executes simulation models. Both roles require technical expertise, but the manager role emphasizes leadership and strategic planning.

What are the most commonly searched types of Robotic Simulation Engineer jobs in Phoenix, AZ? The most popular types of Robotic Simulation Engineer jobs in Phoenix, AZ are:
What are popular job titles related to Manager Robotic Simulation Engineer jobs in Phoenix, AZ? For Manager Robotic Simulation Engineer jobs in Phoenix, AZ, the most frequently searched job titles are:
Infographic showing various Manager Robotic Simulation Engineer job openings in Phoenix, AZ as of July 2026, with employment types broken down into 92% Full Time, 5% Part Time, and 3% Contract. Highlights an 88% Physical, 4% Hybrid, and 8% Remote job distribution, with an average salary of $104,856 per year, or $50.4 per hour.

Development Engineer-Simulation Expert

rogersco

Chandler, AZ

Other

Posted 2 days ago


Job description

Summary:

This role is responsible for driving the thermal design and optimization of highperformance computing (HPC) systems using advanced Multiphysics simulations and CADbased design support. The role focuses on thermal and CFD modeling to evaluate new concepts, materials, cooling architectures, and CAD models for highpowerdensity applications. By translating simulation insights into robust design recommendations, this position helps enable nextgeneration HPC solutions. is responsible for assisting in the development of new products and manufacturing processes. Establishing a sound technical basis for these developments, this role will work closely with internal team members to understand material and manufacturing constraints. With a strong detail-orientation, this position will help document development processes, perform experimental processes, and track results.

Essential Functions:
  • Perform advanced Multiphysics simulations with a strong emphasis on thermal and CFD analyses for the thermal design of HPC systems and components.
  • Develop and optimize cooling concepts for highpowerdensity and highperformance computing applications, including cold plates and systemlevel thermal architectures.
  • Evaluate new product concepts, materials, and processes using simulation to guide thermal design decisions.
  • Create CAD models to support simulation setup, design evaluation, and optimization of thermal solutions.
  • Apply simulationbased Design of Experiments (DoE) to assess sensitivities, tradeoffs, and robustness of thermal designs.
  • Support the development and refinement of thermal design rules and operating limits for HPC applications.
  • Collaborate closely with crossfunctional teams (R&D, engineering, sales, marketing) to translate customer and system requirements into effective thermal solutions.
  • Provide simulation expertise during technical discussions with customers to understand performance requirements and application challenges.
  • Monitor relevant technologies, tools, and market trends related to HPC cooling, thermal management, and Multiphysics simulation.
  • Review and evaluate external patents and publications related to thermal design, simulation methods, and cooling technologies.
  • Support development projects through clear technical documentation and regular status updates. 
Qualifications:
  • Bachelor's, Master's, or PhD in Mechanical Engineering, Physics, Materials Science, or a related engineering discipline.
  • 3+ years of professional experience in Multiphysics simulation, ideally gained in an industrial environment.
  • Strong handson experience with Multiphysics simulations, with a clear focus on thermal and CFD modeling.
  • Experience applying simulation methods to thermal design of complex systems, preferably in HPC or highpowerdensity environments.
  • Experience using DoE or structured experimentation methods to evaluate and optimize thermal concepts is preferred.
  • Experience creating CAD models and applying strong CAD skills in support of simulationdriven design and optimization.
  • Deep understanding of heat transfer, fluid dynamics, and thermal management principles.
  • Ability to translate simulation results into practical, designrelevant recommendations.
  • Familiarity with HPC system architecture and cooling challenges is highly desirable.
  • Experience in power electronics or related applications is a plus.
  • Knowledge of Six Sigma or structured problemsolving methods is an advantage.