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Robotic Jobs in Minnesota (NOW HIRING)

Join the team at Clow as a Robotic Welding Operator and gain hands-on experience working with advanced welding technology. This is a great opportunity for someone with basic welding knowledge ...

Perform robot teach pendant and/or offline programming for new and existing weld processes. * Establish and validate weld parameters (voltage, amperage, travel speed, wire feed speed, gas composition ...

New

Robot Tech Department: Press Reports To: Production Supervisor FLSA Status: Non-exempt Pay Band: 6 Wage Range: $ 18.48 - $25.00 Shift: 12HR Days - 7AM - 7PM Shift Differential: NA *Base pay is based ...

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Robotic information

See Minnesota salary details

$15

$27

$44

How much do robotic jobs pay per hour?

As of Sep 4, 2026, the average hourly pay for robotic in Minnesota is $27.66, according to ZipRecruiter salary data. Most workers in this role earn between $21.68 and $32.26 per hour, depending on experience, location, and employer.

What is a robotic?

Robotics jobs involve the design, development, operation, and maintenance of robots and automated systems. Professionals in this field may work on creating new robots, improving existing technologies, or integrating robotics into various industries like manufacturing, healthcare, and logistics. Robotics jobs often require skills in engineering, computer programming, and problem-solving, and can include roles such as robotic engineers, technicians, and software developers.

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

To thrive as a Robotics Engineer, you need a solid background in mechanical engineering, computer science, and electronics, often supported by a relevant degree. Familiarity with programming languages (such as Python, C++, or ROS), CAD software, and control systems is typically required, along with certifications in robotics or automation. Strong problem-solving, creativity, and teamwork skills help you innovate and effectively collaborate on complex projects. These capabilities are crucial for designing, building, and maintaining advanced robotic systems that meet industry needs.

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

Professionals in robotics often encounter challenges such as integrating hardware with complex software, ensuring system reliability, and adapting to rapid technological advancements. Collaboration with multidisciplinary teams—including mechanical engineers, software developers, and data scientists—is crucial for overcoming these hurdles. Staying updated through continuous learning and hands-on experimentation helps professionals address these challenges effectively and remain competitive in the field.

What is the difference between Robotic vs Automation Technician?

AspectRoboticAutomation Technician
CredentialsTypically requires robotics certifications or technical degreesOften requires electrical, mechanical, or industrial automation certifications
Work EnvironmentWorks primarily with robotic systems in manufacturing or industrial settingsWorks with various automated systems, including control panels and machinery
Industry UsageCommon in robotics, manufacturing, and automation industriesWidely used across manufacturing, production, and industrial sectors
Job FocusDesign, programming, and maintenance of robotic systemsInstallation, troubleshooting, and repair of automation equipment

Robotic professionals focus on robotic systems' design, programming, and maintenance, often requiring specialized certifications. Automation Technicians handle a broader range of automated equipment, including control systems and machinery, with overlapping skills but different primary responsibilities. Both roles are vital in modern manufacturing environments and often work together to optimize production processes.

Is it hard to get a robotic job?

Robotic jobs, such as robotics engineer or technician roles, typically require relevant technical skills, education, and experience in areas like programming, mechanical design, or automation. Competition can be high, but having certifications, hands-on experience, and knowledge of tools like CAD or ROS can improve job prospects.

Is robotic still a good career?

Robotics is a growing field with increasing demand for engineers, technicians, and programmers skilled in automation, control systems, and programming languages like Python and C++. Careers in robotics often require knowledge of mechanical, electrical, and software components, and job prospects are strong in manufacturing, healthcare, and research sectors. Continuous learning and certifications can enhance job stability and advancement opportunities.

What are the most commonly searched types of Robotic jobs in Minnesota?

The most popular types of Robotic jobs in Minnesota are:

What cities in Minnesota are hiring for Robotic jobs?

Cities in Minnesota with the most Robotic job openings:

Infographic showing various Robotic job openings in Minnesota as of August 2026, with employment types broken down into 2% As Needed, 87% Full Time, 6% Part Time, 3% Contract, and 2% Nights. Highlights an 96% Physical, 1% Hybrid, and 3% Remote job distribution, with an average salary of $57,535 per year, or $27.7 per hour.

Manufacturing Engineer (Robotic Weld)

Standard Iron

Sauk Centre, MN • On-site

$70 - $90/hr

Other

Re-posted 15 days ago


Standard Iron rating

7.4

Company rating: 7.4 out of 10

Based on 6 frontline employees who took The Breakroom Quiz


Job description

Standard Iron is a leading U.S.-based manufacturing partner specializing in metal fabrication, complex weldments, custom fuel & hydraulic tanks and architectural metals. With 90+ years of experience and seven advanced facilities across North America, we help our customers solve problems, not just fill orders. Whether you’re launching a new product, improving throughput, or optimizing for cost, we build solutions tailored to your needs.

Statement of the Job

Standard Iron is a leading U.S.-based manufacturing partner specializing in metal fabrication, complex weldments, custom fuel & hydraulic tanks and architectural metals. With 90+ years of experience and seven advanced facilities across North America, we help our customers solve problems, not just fill orders. Whether you’re launching a new product, improving throughput, or optimizing for cost, we build solutions tailored to your needs.

Primary Job Focus

This role is heavily focused on robotic weld programming, weld process development, and weld quality optimization. Candidates must bring strong hands‑on experience in robotic welding systems and weld parameter development.

Key Responsibilities
  • Develop, program, and optimize robotic welding applications (e.g., FANUC, ABB, Yaskawa/Motoman, KUKA).
  • Perform robot teach pendant and/or offline programming for new and existing weld processes.
  • Establish and validate weld parameters (voltage, amperage, travel speed, wire feed speed, gas composition) to meet quality and productivity targets.
  • Program and optimize other CNC equipment (e.g., laser cutters, turret punches, press brakes, tube benders) using software like SolidWorks, AutoCAD, or nesting programs.
  • Develop, evaluate, and improve manufacturing processes for sheet metal fabrication, including laser cutting, punching, bending, forming, welding, and assembly.
  • Design and validate tooling, fixtures, and jigs to enhance precision and efficiency in fabrication operations.
  • Support New Product Introduction (NPI) by reviewing client designs for manufacturability (DFM), developing weld sequences, tooling requirements, and process documentation.
  • Troubleshoot production issues, perform root cause analysis, and implement corrective actions for quality and process problems. Troubleshoot robotic weld issues related to fit‑up, distortion, porosity, spatter, lack of fusion, etc.
  • Analyze production workflows, identify bottlenecks, and implement lean manufacturing principles (e.g., Six Sigma, Kaizen) to reduce waste, improve cycle times, and increase throughput.
  • Collaborate with clients, sales, quality assurance, and production teams to ensure projects meet specifications, quality standards (e.g., ISO 9001/AS9100), and delivery schedules.
  • Contribute to continuous cost reduction initiatives.
  • Ensure compliance with safety regulations, environmental standards, and industry best practices.
  • Lead or participate in capital equipment justification, selection, and implementation projects. Interface with integrators and equipment suppliers for installation, startup, and upgrades of robotic weld cells.
  • Train production staff on new processes and maintain accurate documentation for repeatability across contract runs.
Qualifications and Requirements
  • Associates or Bachelor’s degree in Welding Technology, Manufacturing Engineering, Mechanical Engineering, or related field (or equivalent experience).
  • 3–7 years of experience in manufacturing engineering, preferably in sheet metal fabrication or contract manufacturing with an emphasis on programming industrial robots for welding applications.
  • Strong knowledge of sheet metal processes (e.g., shearing, laser/plasma cutting, forming, MIG/TIG welding, finishing).
  • Proficiency in CAD/CAM software (e.g., SolidWorks, AutoCAD, Nesting software) and ERP/MRP systems.
  • Experience with lean manufacturing tools, process optimization, and quality systems (e.g., PFMEA, control plans).
  • Excellent problem‑solving skills with hands‑on experience in root cause analysis and continuous improvement.
  • Ability to interpret engineering drawings, GD&T, and weld symbols (AWS standards preferred).
  • Ability to support multiple projects and priorities in a fast‑paced manufacturing environment.
  • Familiarity with industry standards (e.g., AWS welding, ASTM materials) is a plus.
Preferred Skills
  • Experience with offline programming software (e.g., RoboGuide, RobotStudio, MotoSim, Delmia).
  • Experience with both Fanuc and ABB programming software.
  • Knowledge of advanced welding technologies: Vision‑guided welding, Laser seam tracking, Through‑arc seam tracking (TAST), Adaptive welding system.
  • Familiarity with welding codes and standards (AWS D1.1, ISO standards, etc.).
  • Ability to simulate weld paths, reach, and cycle times virtually.
  • Experience in Lean Six Sigma with a strong problem‑solving and continuous improvement mindset.
  • Experience in a contract manufacturing or job shop environment with variable production runs.
  • Knowledge of automation and robotics in fabrication.
  • An understanding of Geometric Dimensioning and Tolerancing (GD&T).
  • CAD/CAM experience.
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