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Process Engineer Electrical Jobs in St Paul, MN (NOW HIRING)

Process Engineer III

Chaska, MN · On-site

$78K - $110K/yr

Working in a multidisciplinary environment, the Process Engineer III will collaborate closely with hardware, electrical, mechanical, and systems engineers to design, validate, and improve plasma ...

Process Engineer III

Chaska, MN · On-site

$78K - $110K/yr

Working in a multidisciplinary environment, the Process Engineer III will collaborate closely with hardware, electrical, mechanical, and systems engineers to design, validate, and improve plasma ...

Provide engineering support for the operation of multiple production lines, including day to day ... electrical, controls * Develop, write, and review new process documentation * Potential for on call ...

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Process Engineer Electrical information

See St Paul, MN salary details

$50.1K

$93.1K

$144.1K

How much do process engineer electrical jobs pay per year?

As of Aug 6, 2026, the average yearly pay for process engineer electrical in St. Paul, MN is $93,065.00, according to ZipRecruiter salary data. Most workers in this role earn between $75,300.00 and $104,200.00 per year, depending on experience, location, and employer.

What is a process engineer electrical?

A Process Engineer Electrical is a professional who specializes in designing, optimizing, and overseeing electrical systems and processes within manufacturing or industrial environments. They focus on improving efficiency, quality, and safety in processes that involve electrical equipment or controls. Their work often includes developing process documentation, troubleshooting electrical issues, and collaborating with other engineering disciplines to ensure smooth operations. Process Engineer Electricals play a vital role in industries such as electronics manufacturing, power generation, and automation.

What is the difference between Process Engineer Electrical vs Process Engineer Mechanical?

AspectProcess Engineer ElectricalProcess Engineer Mechanical
Required CredentialsBachelor's in Electrical Engineering, relevant certifications (e.g., PE)Bachelor's in Mechanical Engineering, relevant certifications (e.g., PE)
Work EnvironmentElectrical systems, power distribution, control systemsMechanical systems, manufacturing processes, machinery
Industry UsagePower plants, electronics manufacturing, automationAutomotive, HVAC, manufacturing plants
Common Search/ComparisonYesYes

Process Engineer Electrical focuses on electrical systems, power distribution, and control systems, often working in power, electronics, or automation industries. Process Engineer Mechanical specializes in mechanical systems, machinery, and manufacturing processes. Both roles require engineering degrees and certifications, but their work environments and industry applications differ. Understanding these distinctions helps candidates choose the right career path or job search focus.

What are the key skills and qualifications needed to thrive as a process engineer electrical?

To thrive as a Process Engineer Electrical, you need a solid background in electrical engineering principles, process optimization, and a relevant engineering degree. Familiarity with CAD software, PLC programming, and standards like IEC or IEEE, as well as certifications such as a Professional Engineer (PE) license, are typically required. Strong analytical thinking, problem-solving abilities, and effective communication skills help you collaborate with multidisciplinary teams and address complex technical challenges. These skills are crucial for ensuring efficient, safe, and reliable operation of electrical processes within industrial environments.

How does a process engineer electrical typically collaborate with cross-functional teams during a project?

As a Process Engineer Electrical, you'll frequently work alongside multidisciplinary teams that may include mechanical engineers, project managers, production staff, and safety specialists. Your role often involves translating process requirements into electrical system designs, coordinating with other engineering disciplines to ensure compatibility, and participating in review meetings to address technical challenges. Strong communication skills are essential, as you'll need to explain complex electrical concepts to non-specialists and gather input to optimize solutions. This collaborative approach not only streamlines project delivery but also provides valuable learning opportunities and exposure to different aspects of engineering.

Can electrical engineers work as process engineers?

Electrical engineers can work as process engineers if they have relevant skills in process optimization, automation, and systems analysis. Transitioning often requires knowledge of manufacturing processes, control systems, and possibly additional certifications or training in process management. Both roles involve problem-solving and technical expertise, but process engineering typically emphasizes production efficiency and workflow improvements.
What are popular job titles related to Process Engineer Electrical jobs in St. Paul, MN? For Process Engineer Electrical jobs in St. Paul, MN, the most frequently searched job titles are:
What cities near St. Paul, MN are hiring for Process Engineer Electrical jobs? Cities near St. Paul, MN with the most Process Engineer Electrical job openings:
Infographic showing various Process Engineer Electrical job openings in St. Paul, MN as of August 2026, with employment types broken down into 3% Internship, 91% Full Time, 3% Temporary, and 3% Contract. Highlights an 90% In-person, and 10% Hybrid job distribution, with an average salary of $93,065 per year, or $44.7 per hour.

Process Engineer III

TEL

Chaska, MN • On-site

$78K - $110K/yr

Full-time

Re-posted 7 days ago


Job description

Let's search for your next career at TEL. Use the form below to search our current opportunities and then apply. Please consider joining our Talent Community so that we may continue to engage with you.
Job Description
Process Engineer III - Plasma Process & Hardware Development
Location: Chaska MN or Chelmsford MA
Position Summary
The Process Engineer III is an experienced technical contributor responsible for the development, characterization, and optimization of advanced plasma processes and plasma hardware. This role requires deep expertise in plasma physics, plasma-material interactions, plasma source design, and process development. The engineer will leverage both computational modeling and experimental methods to develop next-generation plasma technologies for semiconductor manufacturing, advanced materials processing, or related applications.
Working in a multidisciplinary environment, the Process Engineer III will collaborate closely with hardware, electrical, mechanical, and systems engineers to design, validate, and improve plasma systems while driving process performance, reliability, and manufacturability.
Key Responsibilities
  • Develop and optimize plasma processes to meet performance, quality, and manufacturability objectives.
  • Apply advanced knowledge of plasma physics, plasma chemistry, and plasma-material interactions to solve complex technical challenges.
  • Design, develop, and evaluate plasma hardware, including plasma sources, microwave and RF power delivery systems, gas delivery components, magnetic field configurations, and chamber hardware.
  • Perform plasma diagnostics and experimental characterization using techniques such as Langmuir probes, optical emission spectroscopy (OES), VI probes, mass spectrometry, FTIR or other diagnostic tools.
  • Utilize plasma simulation and modeling tools to predict plasma behavior, optimize reactor designs, and correlate simulation results with experimental data.
  • Design and execute statistically sound experiments (DOE), analyze process data, and develop engineering models to improve plasma performance.
  • Troubleshoot plasma process and hardware issues through systematic root cause analysis and corrective actions.
  • Collaborate with cross-functional teams including product engineering, systems engineering, manufacturing, and reliability engineering to transition new technologies into production.
  • Develop technical documentation, engineering reports, design specifications, and operating procedures.
  • Present technical findings to engineering leadership, customers, and cross-functional teams.
  • Mentor junior engineers and provide technical leadership on plasma-related projects.

Required Qualifications
  • Bachelor's degree in Physics, Electrical Engineering, Mechanical Engineering, Chemical Engineering, Materials Science, or a related technical field.
  • Minimum of 5 years of experience in plasma process development, plasma hardware development, or related engineering disciplines.
  • Strong fundamental understanding of:
    • Plasma physics
    • Plasma chemistry
    • Plasma-material interactions
    • RF and microwave plasma generation and power coupling
    • Gas-phase kinetics and transport phenomena
  • Demonstrated experience developing plasma hardware and reactor components.
  • Experience with plasma simulation tools (e.g., COMSOL Multiphysics, VSim, CFD-ACE+, ANSYS, or equivalent) and correlation of simulation results with experimental data.
  • Hands-on experience designing and conducting plasma experiments and interpreting diagnostic data.
  • Strong analytical, troubleshooting, and data analysis skills.
  • Experience using Design of Experiments (DOE) methodologies and statistical analysis.
  • Excellent written and verbal communication skills.

Preferred Qualifications
  • Master's or Ph.D. in Plasma Physics, Electrical Engineering, Mechanical Engineering, Materials Science, or a related field.
  • Experience in semiconductor equipment, vacuum systems, thin-film processing, etch, deposition, surface treatment, or advanced plasma applications.
  • Knowledge of RF matching networks, microwave plasma systems, pulsed plasma operation, and electromagnetic modeling.
  • Familiarity with finite element analysis (FEA), computational fluid dynamics (CFD), or particle-in-cell (PIC) plasma simulations.
  • Programming experience in Python, MATLAB, or similar scientific computing languages for data analysis and automation.
  • Experience transferring plasma technologies from research and development into manufacturing.

Core Competencies
  • Advanced plasma physics expertise
  • Plasma process development
  • Plasma hardware design and integration
  • Computational modeling and simulation
  • Experimental design and validation
  • Root cause analysis and problem solving
  • Cross-functional collaboration
  • Technical leadership and mentoring
  • Project execution and continuous improvement

Salary Ranges
$78,485.94 - $110,853.80
Individual pay is determined based on multiple factors, including but not limited to location, experience, skills, job-related knowledge, relevant education, certifications, and/or training. In addition to base salary, we offer (full time regular employees ) a comprehensive benefits package and for certain roles eligibility in our bonus plan and long-term incentives as applicable. The talent advisor can share more details about total compensation for the role in your location during the hiring process.
Diversity creates an innovative culture. TEL US is an Equal Employment Opportunity / Affirmative Action employer and all qualified applicants will receive consideration for employment without regard to race, color, religion, sex, age, national origin, protected veteran status, disability status, sexual orientation, gender identity or expression, marital status, genetic information, or any other characteristic protected by law.
Subsidiary
TEL Manufacturing and Engineering of America, Inc.