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Director Robotics Jobs in Michigan (NOW HIRING)

... against AV, robotics, and AI competitors. โ€ข Partner with Engineering, Product, Safety, and ... Direct experience leading data science or ML work in at least one of the following domains ...

Robotic Programmer/Welding Technician

Taylor, MI ยท On-site

$36.06 - $40.87/hr

Technical diploma or associate degree in robotics, automation, or welding technology * Experience ... Must be able to train, assist, lead, direct, instruct and discipline employees * Firm understanding ...

... against AV, robotics, and AI competitors. โ€ข Partner with Engineering, Product, Safety, and ... Direct experience leading data science or ML work in at least one of the following domains ...

Direct experience working in automotive plants, dealership service centers, robotics manufacturing, or similar high-precision technical environments. * Computer Literacy: Advanced computer literacy ...

FORT Robotics is hiring an Account Executive to lead sales efforts across the United States. As a ... Entrepreneurial, self-directed, and comfortable working independently while collaborating with ...

Bachelor's degree in engineering in a highly technical field (e.g. robotics, computer science ... director (or equivalent role) * 7+ years of software-focused engineering experience solving ...

... robotics, and clean energy. To get there, we need an engineering leader who can build the function ... This is a Director-level role. It carries full ownership of the engineering organization -- its ...

Showing results 21-40

Director Robotics information

What is the difference between Director Robotics vs Robotics Engineer?

AspectDirector RoboticsRobotics Engineer
Required CredentialsBachelor's or Master's in Robotics, Engineering, or related field; extensive experienceBachelor's or Master's in Robotics, Mechanical, Electrical, or Computer Engineering
Work EnvironmentLeadership roles overseeing teams, strategic planning, project managementDesign, develop, test robotic systems; hands-on engineering work
Employer & Industry UsageTech companies, manufacturing, research institutionsRobotics firms, manufacturing, research labs

The main difference is that a Director Robotics focuses on strategic leadership, team management, and project oversight, while a Robotics Engineer is primarily involved in designing and developing robotic systems. Both roles require strong technical backgrounds, but the Director role emphasizes management and planning skills.

What does a director of robotics do?

A Director of Robotics oversees the strategy, development, and implementation of robotics technologies within an organization. They lead teams of engineers and researchers, manage projects, allocate budgets, and ensure that robotic solutions align with business goals. This role also involves staying up-to-date with industry trends, evaluating new technologies, and collaborating with other departments to drive innovation and efficiency. The Director of Robotics often plays a key role in setting the vision for automation and robotics initiatives across the company.

How does a director of robotics typically collaborate with cross-functional teams to drive successful robotics projects?

As a Director of Robotics, you will frequently work with multidisciplinary teams, including engineering, software development, product management, and operations. Collaboration often involves aligning project goals, coordinating timelines, and ensuring technical requirements are met across departments. Effective communication and leadership are essential, as you'll be responsible for facilitating meetings, resolving conflicts, and integrating feedback from various stakeholders. This collaborative approach helps ensure robotics solutions are innovative, feasible, and aligned with organizational strategy.

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

To thrive as a Director of Robotics, you need advanced expertise in robotics engineering, project management, and a strong background in computer science or mechanical engineering, usually supported by a relevant degree and significant industry experience. Familiarity with robotics platforms, programming languages (such as Python, C++), automation systems, and certifications like PMP or Six Sigma are highly valuable. Strategic vision, leadership, and excellent communication skills help drive innovation and coordinate multidisciplinary teams. These competencies are crucial for successfully leading complex robotics initiatives, optimizing processes, and maintaining a competitive edge in technology-driven industries.

What are the most commonly searched types of Robotics jobs in Michigan?

The most popular types of Robotics jobs in Michigan are:

What are popular job titles related to Director Robotics jobs in Michigan?

For Director Robotics jobs in Michigan, the most frequently searched job titles are:

What job categories do people searching Director Robotics jobs in Michigan look for?

The top searched job categories for Director Robotics jobs in Michigan are:

What cities in Michigan are hiring for Director Robotics jobs?

Cities in Michigan with the most Director Robotics job openings:

Infographic showing various Director Robotics job openings in Michigan as of August 2026, with employment types broken down into 79% Full Time, 12% Part Time, 3% Temporary, 3% Contract, and 3% Nights. Highlights an 100% In-person job distribution.

Robotic Welding Automation Programmer

Angstrom Automotive - USA

Taylor, MI โ€ข On-site

$75K - $85K/yr

Other

Posted 2 days ago

New


Job description

A day in the life

You arrive on the floor with the day’s production targets in hand. Your first move is to load, refine, and validate programs for robotic welders handling GMAW (MIG), GTAW (TIG), and spot applications, then pivot to the CNC machine tending cells to update paths and logic for smooth part flow. You calibrate robotic arms and sensors, verify weld controllers (OTC Daihen, Fronius, Lincoln) are dialed in, and run a quick cut-and-etch to confirm penetration and weld dimensions. Using calipers and gauges, you document results, adjust as needed, and lock in parameters to meet quality standards.

As production ramps, you troubleshoot robot or controller alarms, tune settings, and minimize downtime. Between cycles, you perform preventive and predictive maintenance, assist the team with setups and tool changes, and jump into problem-solving huddles to keep throughput on track. Throughout the shift, you wear required PPE, follow MIOSHA and environmental guidelines, and keep the cell organized and audit-ready.

What you'll handle
  • Program robotic welders for multiple welding processes and update CNC machine tending robot routines.
  • Install, program, and fine-tune robotic welding equipment and weld controllers to production specs.
  • Install, configure, and adjust CNC machine tending automation; troubleshoot to hit production goals.
  • Set up, calibrate, and test robotic arms, end-of-arm tooling, and sensors.
  • Execute regular preventive and predictive maintenance on robotic welding systems.
  • Diagnose and resolve technical issues and system faults to reduce downtime.
  • Monitor weld quality (cut-and-etch, dimensions) and adjust parameters accordingly.
  • Ensure processes consistently meet quality requirements; document process variations and quality issues.
  • Use precision tools (calipers, gauges) and maintain accurate records.
  • Support manufacturing with setups, tool changes, and hands-on problem solving for smooth flow.
  • Comply with all safety procedures, wear appropriate PPE, and maintain a clean, organized workspace.
What you bring
  • Mechanical aptitude and hands-on welding knowledge: GMAW (MIG), GTAW (TIG), and spot welding.
  • Blend of welding experience and automation/robotics expertise.
  • AWS certification (AWS Certified Robotic Arc Welder) and foundational welding knowledge.
  • Technical diploma or associate degree in robotics, automation, or welding technology.
  • Experience with robotic platforms such as FANUC, OTC Daihen, Nachi, and Yaskawa.
  • Familiarity with welding processes, materials, and weld controller brands (e.g., OTC Daihen, Fronius, Lincoln).
  • Comfort with programming logic, sensors, and PLCs.
  • Ability to read and interpret blueprints, prints, and check sheets.
  • Strong problem-solving, communication skills, and mechanical aptitude.
  • Physical capability to stand for long periods and to lift and carry up to 50 pounds; able to perform repetitive motions.
  • Solid understanding of safety procedures and working in a manufacturing environment; knowledge of MIOSHA and government safety regulations.
  • Ability to train, assist, lead, direct, instruct, and discipline employees as needed.
  • Proficiency with Microsoft Word, Excel, and PowerPoint.
  • Strong time management, urgency, and the ability to navigate unexpected challenges and rapidly drive solutions.