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Robotics Welding Jobs in Minnesota (NOW HIRING)

Robotic Weld Engineer

Sauk Centre, MN · On-site

$18.25 - $25/hr

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.

Welder

Merrifield, MN · On-site

$20.14 - $28.68/hr

This role combines hands-on welding with robotic system setup, quality verification, and supporting production flow. You'll work across both manual and robotic welding operations, ensuring parts meet ...

Robotic Welder

Owatonna, MN · On-site

$20 - $23.88/hr

Welding and/or robotics experience Physical Requirements & Work Environment * Frequently lift up to 30 lbs and occasionally up to 50 lbs * Push and pull up to 30 lbs * Walk, stand, bend, twist, turn ...

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Robotics Welding information

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How much do robotics welding jobs pay per hour?

As of Sep 7, 2026, the average hourly pay for robotics welding in Minnesota is $20.65, according to ZipRecruiter salary data. Most workers in this role earn between $16.97 and $23.32 per hour, depending on experience, location, and employer.

What is robotics welding?

Robotics welding refers to the use of programmable robots to automate the welding process in manufacturing and industrial settings. These robots are equipped with welding tools and software that allow them to perform precise and consistent welds on metal parts. Robotics welding increases productivity, improves weld quality, and enhances worker safety by minimizing exposure to hazardous environments. It is commonly used in automotive, aerospace, and heavy machinery industries. Technicians and engineers program, operate, and maintain these robotic systems.

What are the key skills and qualifications needed to thrive as a robotics welder?

To thrive as a Robotics Welder, you need a strong understanding of welding processes, blueprint reading, and robotics programming, often supported by a technical diploma or welding certification. Familiarity with robotic welding systems (such as FANUC or ABB), CNC controls, and safety protocols is typically required. Attention to detail, problem-solving abilities, and effective teamwork are vital soft skills in this role. These skills and qualities are essential for ensuring precision, safety, and productivity in automated welding operations.

How do robotics welding professionals typically collaborate with engineers and production teams on the shop floor?

Robotics welding specialists frequently work alongside engineers and production teams to optimize welding processes and troubleshoot equipment issues. Collaboration may involve interpreting technical drawings, adjusting robotic programs for new product lines, and ensuring weld quality meets industry standards. Regular communication is essential to coordinate maintenance schedules, implement process improvements, and address any production bottlenecks. This teamwork not only ensures smooth operation but also provides valuable opportunities to learn from colleagues and advance technical skills.

What is the difference between Robotics Welding vs Manual Welding?

AspectRobotics WeldingManual Welding
CredentialsTypically requires technical certifications in robotics and weldingRequires welding certifications (e.g., AWS certification)
Work EnvironmentPrimarily in automated manufacturing settings, controlled environmentOn-site, in diverse environments including construction, repair, and fabrication
Industry UsageUsed in high-volume, repetitive manufacturing processesUsed in custom, one-off, or repair work

Robotics Welding involves operating automated welding robots, requiring technical skills and certifications in robotics and welding. Manual Welding relies on skilled welders performing welding tasks directly, often in varied environments. Both roles are essential in manufacturing, but Robotics Welding emphasizes automation, while Manual Welding focuses on craftsmanship and adaptability.

How much does robotics welding make?

Robotics welding technicians and operators typically earn between $40,000 and $70,000 annually, with experienced professionals and those working in specialized industries earning higher wages. Salaries depend on factors such as experience, certifications, location, and the complexity of the robotic systems used.

Is robotics welding a good career?

Robotics welding is a growing field that involves programming and operating automated welding systems, often requiring technical skills and certifications. It offers opportunities for stable employment in manufacturing and industrial settings, with potential for advancement as automation technology evolves.

What are popular job titles related to Robotics Welding jobs in Minnesota?

For Robotics Welding jobs in Minnesota, the most frequently searched job titles are:

What job categories do people searching Robotics Welding jobs in Minnesota look for?

The top searched job categories for Robotics Welding jobs in Minnesota are:

Infographic showing various Robotics Welding job openings in Minnesota as of August 2026, with employment types broken down into 88% Full Time, 3% Part Time, 8% Contract, and 1% Nights. Highlights an 100% In-person job distribution, with an average salary of $42,961 per year, or $20.7 per hour.

Manufacturing Engineer (Robotic Weld)

Standard Iron

Sauk Centre, MN • On-site

$18.25 - $25/hr

Other

Re-posted 17 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

Job Description
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.
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No Sponsorships or relocation provided for this role
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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