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Robotics Design Jobs in Michigan (NOW HIRING)

This role focuses heavily on robotics process design, feasibility, and supplier collaboration-particularly within high-volume seating assembly and material handling environments. This role will ...

The Automation Robotics Engineer will provide technical support for the design, development, and implementation of automated manufacturing systems. This individual primary responsibilities include ...

The Automation Robotics Engineer will provide technical support for the design, development, and implementation of automated manufacturing systems. This individual primary responsibilities include ...

The Automation Robotics Engineer will provide technical support for the design, development, and implementation of automated manufacturing systems. This individual primary responsibilities include ...

Robotics Engineer

Sterling Heights, MI · On-site

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Design, integrate, and test software for robotics, AI/ML, and sensor fusion applications in contested environments. * Design and optimize sensor fusion architecture utilizing LiDAR, radar, cameras ...

We are seeking a highly skilled and motivated Robotics Software Engineer to lead the development of ... Key Responsibilities System Architecture (ROS 2 Dual-Arm) Lead the design and implementation of a ...

JOB SUMMARY & SCOPE The Robot Programmer is responsible for supporting the setup, programming ... Familiarity with Fusion 360 or similar mechanical CAD tools * Understanding of PLC controls and I/O ...

Robotics Engineer - Autonomous Mobile Robotics (AMR)Position SummaryWe are seeking a highly skilled ... Design and implement multi-map fusion methods to integrate data from multiple sensor modalities ...

No As a Robotics Process Engineer I, you will work with some of the most talented engineers in the ... We transform processes & optimize operations with the solutions we design, build, program & deploy ...

No As a Robotics Process Engineer I, you will work with some of the most talented engineers in the ... We transform processes & optimize operations with the solutions we design, build, program & deploy ...

Using engineering design documents - place, assemble, and secure robots and associated equipment in defined locations. * Move robot via teach pendant. * Load, upgrade, backup FAC software. * Define ...

Robotics Engineer, Software

Holland, MI · On-site

$96K - $128K/yr

Drive technical direction in code structure, system design, and performance optimization. * Collaborate with robotics, cloud, and systems teams on multi-functional efforts. * Mentor and review work ...

Robotics Engineer, Software

Holland, MI · On-site

$96K - $128K/yr

Drive technical direction in code structure, system design, and performance optimization. * Collaborate with robotics, cloud, and systems teams on multi-functional efforts. * Mentor and review work ...

Showing results 41-60

Robotics Design information

See Michigan salary details

$73.2K

$83.7K

$101.5K

How much do robotics design jobs pay per year?

As of Aug 19, 2026, the average yearly pay for robotics design in Michigan is $83,673.00, according to ZipRecruiter salary data. Most workers in this role earn between $78,400.00 and $88,900.00 per year, depending on experience, location, and employer.

What is robotics design?

Robotics design is the process of creating, developing, and refining robots for various applications, from industrial automation to healthcare or consumer use. It involves multiple disciplines such as mechanical engineering, electrical engineering, computer science, and artificial intelligence. Robotics designers work on everything from the robot's physical structure and movement mechanisms to its sensors, control systems, and programming. The goal is to develop robots that can perform specific tasks efficiently and safely, often solving complex problems or automating repetitive jobs.

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

To thrive as a Robotics Designer, you need a solid grounding in mechanical engineering, electronics, and programming, typically supported by a degree in robotics, mechatronics, or a related field. Proficiency in CAD software, microcontroller programming (such as Arduino or Raspberry Pi), and simulation tools is essential, and certifications like Certified Robotics Programmer can be beneficial. Strong problem-solving abilities, creativity, and effective teamwork are standout soft skills for this role. These skills and qualities are crucial to developing innovative, functional robotic systems that meet complex technical requirements and client needs.

What are some typical challenges faced by professionals in robotics design, and how can they be addressed?

Professionals in Robotics Design often encounter challenges such as integrating hardware and software components, ensuring systems reliability, and keeping up with rapidly advancing technologies. Effective collaboration with multidisciplinary teams—including mechanical engineers, software developers, and project managers—is key to overcoming these hurdles. Staying engaged in continuous learning, prototyping early, and leveraging simulation tools can help address technical obstacles and deliver innovative solutions efficiently.

What is the difference between Robotics Design vs Mechanical Engineering?

AspectRobotics DesignMechanical Engineering
Required CredentialsBachelor's in Robotics, Mechanical, or Electrical Engineering; certifications in CAD or roboticsBachelor's in Mechanical Engineering; Professional Engineer (PE) license often preferred
Work EnvironmentDesign labs, robotics development centers, collaborative teamsManufacturing plants, research labs, design offices
Industry UsageRobotics companies, automation firms, research institutionsManufacturing, automotive, aerospace, product design

Robotics Design focuses on creating robotic systems, integrating sensors, actuators, and control algorithms. Mechanical Engineering covers a broader scope of designing mechanical components and systems. While both roles require engineering fundamentals, Robotics Design emphasizes robotics-specific skills, whereas Mechanical Engineering offers a wider application base across industries.

Is robotics design a high paying field?

Robotics design is generally considered a high-paying field, especially for professionals with advanced skills in engineering, programming, and systems integration. Salaries can vary based on experience, education, location, and industry, with many roles offering competitive compensation due to the specialized nature of the work.
Infographic showing various Robotics Design job openings in Michigan as of August 2026, with employment types broken down into 83% Full Time, 10% Part Time, 2% Temporary, 4% Contract, and 1% Nights. Highlights an 82% Physical, 5% Hybrid, and 13% Remote job distribution, with an average salary of $83,673 per year, or $40.2 per hour.

Robotics Engineer

Faurecia

Auburn Hills, MI • On-site

Full-time

Re-posted 28 days ago


Faurecia rating

5.9

Company rating: 5.9 out of 10

Based on 18 frontline employees who took The Breakroom Quiz


Job description

Forvia, a sustainable mobility technology leader
We pioneer technology for mobility experience that matter to people.
Your mission, roles and responsibilities
As part of Forvia's North American Automation COE, the Robotics Engineer will support the development, validation, and deployment of advanced automation solutions across our manufacturing facilities.
This role focuses heavily on robotics process design, feasibility, and supplier collaboration-particularly within high-volume seating assembly and material handling environments.
This role will operate in two phases:
• Phase 1 (Year 1): Technology evaluation, process validation, and concept development
• Phase 2 (2027+): Deployment and support of automation solutions across plants
Key Responsibilities
Technology Development & Validation (Year 1 Focus)
• Develop and refine robotic process concepts for assembly and material handling applications
• Define requirements for Robotic systems, End-of-arm tooling (EOAT), and Cycle time and efficiency optimization
• Conduct feasibility studies, simulations, and proof-of-concept validation
• Collaborate with suppliers and integrators to evaluate and improve solutions
• Contribute to standardization of automation solutions across plants
Supplier & Integration Support
• Work closely with automation vendors and integrators to define system specifications
• Support technical evaluations, testing, and validation of supplier deliverables
• Contribute to supplier selection in partnership with purchasing teams
Deployment Support (2027+)
• Support implementation of robotic systems across manufacturing plants
• Assist with launch activities, troubleshooting, and optimization
• Ensure adherence to defined standards and performance targets
Continuous Improvement & Collaboration
• Partner with Manufacturing Engineering, Operations, and Quality teams
• Drive improvements in cycle time, efficiency, and process reliability
• Share best practices and lessons learned across the global network
Your profile and competencies to succeed
Required
• Bachelor's degree in Engineering or related field
• 3-7 years of experience in robotics, automation, or manufacturing engineering
• Experience with industrial robots (ABB, Fanuc, etc.)
• Background in high-volume manufacturing environments
• Experience working with automation suppliers or integrators
Preferred
• Experience in automotive assembly (seating or similar high-volume products)
• Knowledge of EOAT design, Cycle time optimization, Basic automation/controls concepts
• Familiarity with CAD tools (CATIA, SolidWorks, AutoCAD)
This position is not eligible for visa sponsorship of any kind, now or in the future.
What we can do for you
  • At Forvia, you will find an engaging and dynamic environment where you can contribute to the development of sustainable mobility leading technologies.
  • We are the seventh-largest global automotive supplier, employing more than 157,000 people in more than 40 countries which makes a lot of opportunity for career development.
  • We welcome energetic and agile people who can thrive in a fast-changing environment. People who share our strong values. Team players with a collaborative mindset and a passion to deliver high standards for our clients. Lifelong learners. High performers. Globally minded people who aspire to work in a transforming industry, where excellence, speed, and quality count.
  • We cultivate a learning environment, dedicating tools and resources to ensure we remain at the forefront of mobility. Our people enjoy an average of more than 22 hours of online and in-person training within FORVIA University (five campuses around the world)
  • We offer a multicultural environment that values diversity and international collaboration. We believe that diversity is a strength. To create an inclusive culture where all forms of diversity create real value for the company, we have adopted gender diversity targets and inclusion action plans.
  • Achieving CO2 Net Zero as a pioneer of the automotive industry is a priority: In June 2022, Forvia became the first global automotive group to be certified with the new SBTI Net-Zero Standard (the most ambitious standard of SBTi), aligned with the ambition of the 2015 Paris Agreement of limiting global warming to 1.5°C. Three principles guide our action: use less, use better and use longer, with a focus on recyclability and circular economy.

Why join us
FORVIA is an automotive technology group at the heart of smarter and more sustainable mobility. We bring together expertise in electronics, clean mobility, lighting, interiors, seating, and lifecycle solutions to drive change in the automotive industry.
With a history stretching back more than a century, we are the 7th largest global automotive supplier, employing more than 157,000 people in 43 countries. You'll find our technology in around 1 out of 2 vehicles produced anywhere in the world.
In June 2022, we became the 1st global automotive group to be certified with the SBTI Net-Zero Standard. We have committed to reach CO2 Net Zero by no later than 2045.
As technological innovation and the need for sustainability transform the automotive industry, we are ideally positioned to deliver solutions that will enhance the lives of road-users everywhere.

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