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Virtual Robotics Engineer Jobs in Detroit, MI (NOW HIRING)

Bachelor of Science in Mechanical Engineering, computer science, computer engineering, robotics ... Perform virtual/ HIL/MIL testing using model-based simulation * Clear and concise presentation ...

Bachelor of Science in Mechanical Engineering, computer science, computer engineering, robotics ... Perform virtual/ HIL/MIL testing using model-based simulation * Clear and concise presentation ...

Perform robotic reach & cycle time studies. * Perform system throughput studies. * Work with the ... Develop simulations for virtual commissioning, including digital twins. * Develop advanced ...

Bachelor of Science in Mechanical Engineering, computer science, computer engineering, robotics ... Perform virtual/ HIL/MIL testing using model-based simulation * Clear and concise presentation ...

Perform robotic reach & cycle time studies. * Perform system throughput studies. * Work with the ... Develop simulations for virtual commissioning, including digital twins. * Develop advanced ...

Perform robotic reach & cycle time studies. * Perform system throughput studies. * Work with the ... Develop simulations for virtual commissioning, including digital twins. * Develop advanced ...

Perform robotic reach & cycle time studies. * Perform system throughput studies. * Work with the ... Develop simulations for virtual commissioning, including digital twins. * Develop advanced ...

Support HIL, MIL, and virtual simulation testing. * Work closely with Toyota engineering teams in ... Robotics, or related field. * 5+ years of ADAS development experience from concept through ...

VDC / BIM Engineer

Troy, MI · On-site

$100K/yr

Must have experience with REVIT; a background in Construction Modeling and Virtual Design is ideal ... Knowledge of data entry into Trimble robotics layout station is a plus. * Trimble laser scanning ...

Showing results 41-60

Virtual Robotics Engineer information

See Detroit, MI salary details

$28.7K

$104.5K

$167.3K

How much do virtual robotics engineer jobs pay per year?

As of Aug 24, 2026, the average yearly pay for virtual robotics engineer in Detroit, MI is $104,545.00, according to ZipRecruiter salary data. Most workers in this role earn between $82,700.00 and $125,700.00 per year, depending on experience, location, and employer.

What is a virtual robotics engineer?

Virtual robotics engineers are professionals who design, develop, and test robotic systems using virtual simulation environments. Instead of building physical robots, they use specialized software to model, program, and analyze robot behavior in a digital space. This allows for rapid prototyping, troubleshooting, and optimization before any physical construction occurs. Virtual robotics engineers often work in fields like automation, manufacturing, artificial intelligence, and research, ensuring that robotic systems function as intended before real-world deployment.

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

To thrive as a Virtual Robotics Engineer, you need strong proficiency in robotics principles, programming (such as Python, C++, or ROS), and a relevant engineering degree. Familiarity with simulation tools like Gazebo, V-REP, or Unity, along with experience using CAD software and version control systems, is typically required. Excellent problem-solving, collaboration, and adaptability are crucial soft skills for excelling in virtual team environments and tackling complex tasks. These skills and qualifications are essential for designing, testing, and deploying effective robotic solutions in a virtual setting, ensuring both innovation and reliability.

What are some typical challenges faced by virtual robotics engineers when collaborating remotely with cross-functional teams?

Virtual Robotics Engineers often work with diverse teams including software developers, hardware engineers, and project managers, many of whom may be distributed across different locations. A common challenge is ensuring clear communication and alignment on project requirements, especially when integrating virtual simulations with real-world robotics systems. To address this, engineers frequently use collaborative tools, maintain thorough documentation, and participate in regular sync meetings. Fostering strong teamwork and proactively clarifying technical details can help minimize misunderstandings and keep projects on track.

What is the difference between Virtual Robotics Engineer vs Robotics Software Developer?

AspectVirtual Robotics EngineerRobotics Software Developer
Required CredentialsBachelor's in Robotics, Computer Science, or related; certifications in robotics or programmingBachelor's in Computer Science, Robotics, or related; programming certifications
Work EnvironmentRemote or on-site, designing and testing virtual robotics systemsPrimarily software development, often remote or on-site
Employer & Industry UsageRobotics companies, research labs, tech firmsTech companies, startups, research institutions
Common Search & ComparisonYesYes

The Virtual Robotics Engineer focuses on designing, testing, and simulating robotics systems in virtual environments, often requiring knowledge of robotics hardware and simulation tools. In contrast, a Robotics Software Developer primarily writes and maintains software for robotics applications, emphasizing programming skills. Both roles often overlap in skills and industry usage but differ in their core responsibilities and work environments.

Can a virtual robotics engineer work remotely?

Yes, virtual robotics engineers can often work remotely, especially if their role involves designing software, programming, simulation, or remote collaboration. However, some tasks may require on-site presence for hardware setup, testing, or maintenance, depending on the company's policies and project requirements.

Is there a high demand for virtual robotics engineers?

Virtual robotics engineers are in growing demand as industries increasingly adopt automation, simulation, and remote development tools. Skills in robotics programming, CAD, and simulation software like ROS or Gazebo enhance employability in this expanding field.

What are the most commonly searched types of Robotics Engineer jobs in Detroit, MI?

The most popular types of Robotics Engineer jobs in Detroit, MI are:

What are popular job titles related to Virtual Robotics Engineer jobs in Detroit, MI?

For Virtual Robotics Engineer jobs in Detroit, MI, the most frequently searched job titles are:

What job categories do people searching Virtual Robotics Engineer jobs in Detroit, MI look for?

The top searched job categories for Virtual Robotics Engineer jobs in Detroit, MI are:

Infographic showing various Virtual Robotics Engineer job openings in Detroit, MI as of June 2026, with employment types broken down into 90% Full Time, 8% Part Time, and 2% Contract. Highlights an 45% Physical, 3% Hybrid, and 52% Remote job distribution, with an average salary of $104,545 per year, or $50.3 per hour.

CW CW ADAS Engineer

eShocan

Ann Arbor, MI • On-site

Full-time

Posted 19 days ago


Job description

Who we're looking for
  • Looking for a passionate and highly-motivated Advanced Driver Assistance Systems (ADAS) Engineer.
  • The primary responsibility of this role is to manage, develop, and evaluate next-generation ADAS features.
  • Reporting to the Senior Engineering Manager, the person in this role will support the IVS department's objective to research, develop, evaluate and bring to market innovative ADAS technologies.

What you'll be doing
  • Plan structure of parts and systems through target setting, packaging, electrical interface definition, and parameter setting.
  • Accountable for following department processes, meeting deadlines, and error-free output for parts development of the group (E.g., Parts Lists, Wire Specifications, Part Specifications.).
  • For specified vehicle projects, responsible for identifying and developing products through project related milestones in cooperation with related groups.
  • Accountable for the development of ADAS parts within concurrent minor and major changes.
  • Create and maintain part development schedule through to SOP (Start of Production). Conduct schedule negotiations within Automated & Electronics Systems department and suppliers. Assess and develop risk management activities to maintain project targets; i.e., performance, cost, mass, quality, user experience. Make proposals and recommendations to recover.
  • Participate in evaluation and manufacturing activities at the event location.
  • Communicate between various Design Center's Engineering Staff. Facilitate regular communication with Japan counterparts.
  • Support and develop TMNA's growth and responsibility in developing ADAS systems.
  • Working with local development engineers and ADAS development engineers in Japan for application of ADAS systems for future vehicles.
  • Work with local customers and local engineers to solve issues/bug fix's and conduct joint testing

What you bring
  • Bachelor of Science in Mechanical Engineering, computer science, computer engineering, robotics engineering, electrical engineering, or equivalent.
  • 5 years or more experience leading or collaborating on development of mid-size or large-scale ADAS systems, from concept through production.
  • Experience with basic architecture and sharing of system functions on Vehicle ECU, CAN, CAN-FD in-vehicle communication.
  • Experience with development quality tools; DFMEA, DRBFM, FTA, etc
  • Experience in development of ADAS systems like AEB, ACC, LKAS, PKSB, BSM, PVM and BGM and cameras.
  • Experience reviewing requirements and test specifications with suppliers.
  • Experience performing root cause analysis and countermeasure implementation for field issues.
  • Experience in development of ADAS systems using Python/C++.
  • Integrate system software and Hardware Platform, Analyze CAN data and validate vehicle performance.
  • Perform virtual/ HIL/MIL testing using model-based simulation
  • Clear and concise presentation skills, both written and oral, with consideration to international audiences.
  • Communication and demonstration experience to top executive management (VP level and above).
  • Excellent time management, inter-personal communication, and task prioritization skills.