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Process Engineer Jobs in South Bend, IN (NOW HIRING)

POSITION SUMMARY  The Site Industrial Engineer leads industrial engineering, operational excellence, capacity planning, labor optimization, and manufacturing process improvement for battery and ...

POSITION SUMMARY The Site Industrial Engineer leads industrial engineering, operational excellence, capacity planning, labor optimization, and manufacturing process improvement for battery and ...

Our state-of-the-art investment casting facility in La Porte, Indiana is seeking a Process Engineer to join our team. Nestled halfway between South Bend and Chicago, along the shores of Lake Michigan ...

Overview Reporting to the Plant Manager and partnering closely with Operations, Quality, Supply Chain, EHS, Engineering, and technical teams, the Process Engineer will lead initiatives to improve ...

Overview Reporting to the Plant Manager and partnering closely with Operations, Quality, Supply Chain, EHS, Engineering, and technical teams, the Process Engineer will lead initiatives to improve ...

BREMENEAST Job Summary The Process Engineer II is responsible for the development, standardization, quality, and continuous improvement of processes and products. This role works closely with cross ...

The Process Scale Up Engineer is a hands on technical role responsible for the successful scale up and industrialization of new products and processes from laboratory, bench scale, or pilot scale ...

This position partners with Production, Process Engineering, Quality, Maintenance, and Controls teams to ensure equipment and process control systems perform effectively while meeting safety, quality ...

Showing results 21-40

Process Engineer information

See South Bend, IN salary details

$48.5K

$90.2K

$139.7K

How much do process engineer jobs pay per year?

As of Aug 7, 2026, the average yearly pay for process engineer in South Bend, IN is $90,183.00, according to ZipRecruiter salary data. Most workers in this role earn between $73,000.00 and $100,900.00 per year, depending on experience, location, and employer.

What is the work of a process engineer?

A process engineer designs, develops, and optimizes manufacturing processes to improve efficiency, quality, and safety. They analyze production workflows, troubleshoot issues, and implement improvements using tools like process flow diagrams and statistical analysis. Strong problem-solving skills and knowledge of industry standards are essential for this role.

What are some common challenges process engineers face when implementing process improvements, and how can they overcome them?

Process Engineers often encounter challenges such as resistance to change from team members, integrating new technologies with existing systems, and ensuring process changes meet regulatory standards. Overcoming these obstacles typically involves clear communication, involving stakeholders early in the process, thorough documentation, and piloting changes before full-scale implementation. Building strong cross-functional relationships and continuously gathering feedback also help ensure that improvements are effective and sustainable.

What is a process engineer?

Process Engineers are professionals who design, implement, and optimize industrial processes to improve efficiency, quality, and safety in manufacturing or production environments. They analyze workflows, troubleshoot process issues, and develop solutions to enhance productivity and reduce costs. Process Engineers often work in industries such as chemicals, pharmaceuticals, food and beverage, and energy, ensuring processes are compliant with environmental and safety regulations. Their work is vital for maintaining smooth operations and achieving organizational goals.

What jobs do process engineers do?

Process engineers design, develop, and optimize manufacturing processes to improve efficiency, safety, and quality. They analyze production data, troubleshoot issues, and implement process improvements using tools like process flow diagrams and statistical analysis. Their work often involves collaboration with production teams and requires knowledge of engineering principles and industry standards.

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

To thrive as a Process Engineer, you need a solid background in chemical, mechanical, or industrial engineering, often supported by a relevant bachelor's degree and understanding of process optimization principles. Familiarity with process simulation software (such as Aspen Plus or AutoCAD), Six Sigma methodologies, and quality management systems is typically required. Strong analytical thinking, problem-solving abilities, and effective communication skills set candidates apart in this role. These skills and qualifications are essential to improve efficiency, ensure safety, and drive continuous improvement in industrial and manufacturing processes.

What is the difference between Process Engineer vs Manufacturing Engineer?

AspectProcess EngineerManufacturing Engineer
CredentialsBachelor's in Engineering, certifications like Six SigmaBachelor's in Engineering, certifications like Lean Manufacturing
Work EnvironmentDesigning and optimizing processes, R&D settingsOverseeing production lines, factory floors
Industry UsageManufacturing, chemical, aerospaceAutomotive, electronics, consumer goods

Process Engineers focus on designing and improving manufacturing processes, often working in R&D or engineering departments. Manufacturing Engineers concentrate on implementing and managing production on the factory floor. Both roles require similar technical skills and certifications but differ mainly in their scope and work environment.

What are the most commonly searched types of Process Engineer jobs in South Bend, IN? The most popular types of Process Engineer jobs in South Bend, IN are:
What are popular job titles related to Process Engineer jobs in South Bend, IN? For Process Engineer jobs in South Bend, IN, the most frequently searched job titles are:
What job categories do people searching Process Engineer jobs in South Bend, IN look for? The top searched job categories for Process Engineer jobs in South Bend, IN are:
What cities near South Bend, IN are hiring for Process Engineer jobs? Cities near South Bend, IN with the most Process Engineer job openings:
Infographic showing various Process Engineer job openings in South Bend, IN as of July 2026, with employment types broken down into 1% As Needed, 80% Full Time, 15% Part Time, 1% Temporary, 2% Contract, and 1% Nights. Highlights an 91% Physical, 3% Hybrid, and 6% Remote job distribution, with an average salary of $90,183 per year, or $43.4 per hour.

Process Engineer

OP Mobility

Elkhart, IN • On-site

Other

Posted 12 days ago


Job description

Ready to take on meaningful challenges and shape the next generation of mobility? Joining OPmobility means stepping into a global group with a purpose to keep people and goods moving safely, smarter, and sustainably everywhere. POSITION SUMMARY  The Site Industrial Engineer leads industrial engineering, operational excellence, capacity planning, labor optimization, and manufacturing process improvement for battery and related production operations. Working closely with Production Leads and frontline employees, this role provides technical and functional direction on standard work, line balance, labor deployment, problem-solving, and continuous improvement to improve safety, quality, delivery, cost, productivity, and workforce utilization. The position does not replace Operations leadership or independently administer personnel actions but is expected to drive execution, coordinate corrective actions, and escalate unresolved performance or accountability concerns ESSENTIAL DUTIES Industrial Engineering / Process Development Define industrialization objectives, budgets, timing, process assumptions, and production-readiness plans. Improve manufacturing processes, layouts, material flow, workstations, labor standards, cycle times, capacity, and ergonomics. Use customer requirements, process feedback, and lessons learned to develop reliable, repeatable manufacturing solutions. Lead or support DFM&A, PFMEA, process-risk analysis, validation, control plans, standard work, and error-proofing. Lead trials, prototype builds, runoffs, time studies, line balancing, capability analysis, and corrective actions. Operational Excellence / Continuous Improvement Lead Lean and continuous improvement initiatives across production. Facilitate Kaizen events, root-cause analysis, structured problem-solving, and waste reduction. Maintain the plant productivity roadmap, including priorities, owners, timing, savings, and verified results. Reduce cycle time, scrap, rework, downtime, and other non-value-added activities. Lead cost and productivity projects and ensure gains are sustained. Coordinate Operational Excellence reviews and report performance, risks, and barriers to site leadership. Capacity Planning / Labor Efficiency Maintain capacity models based on demand, product mix, labor, equipment capability, downtime, and constraints. Identify bottlenecks and develop capacity or constraint-removal plans. Establish labor standards through time studies, work measurement, and validated production data. Translate demand and takt requirements into staffing, skill, and shift needs. Monitor labor efficiency, productivity, OEE, capacity utilization, and direct labor cost. Recommend staffing, line-balance, workstation, automation, and material-flow improvements. Functional Leadership / Production Execution Partner with Production Leads to convert production plans and improvement priorities into effective floor execution. Provide technical direction on standard work, line balance, staffing, takt adherence, bottleneck response, and escalation priorities. Coach Production Leads and employees on Lean methods, visual management, problem-solving, and performance improvement. Conduct floor reviews, identify deviations, determine root causes, and coordinate corrective actions. Verify action completion and effectiveness, escalating unresolved barriers or repeated nonconformance. Support stronger shift handoffs, accountability, communication, cross-training, and consistent operating standards. Influence execution without direct personnel authority; formal supervisory and disciplinary decisions remain with Operations leadership. Equipment / Launch / Ramp-Up Develop equipment specifications, technical reviews, and acceptance criteria with cross-functional teams. Support supplier selection, equipment build, factory and site acceptance, commissioning, startup, and handoff. Verify safety, ergonomics, capability, Run Rate readiness, cycle time, labor efficiency, maintainability, documentation, and training before release. Support end-of-line testing, battery systems, power electronics, automation, controls, and production issues within the role’s technical scope. Documentation / Training / Governance Maintain controlled process documents, standard work, layouts, labor standards, lessons learned, and training materials. Train Production Leads, operators, technicians, and new employees on approved processes and continuous improvement expectations. Support PFMEA, process-risk reduction, Run@Rate, corrective actions, customer requirements, and audit readiness. Stop production when safety, quality, regulatory, or product-integrity risks arise. Follow company policies, OSHA requirements, ISO/IATF standards, customer requirements, environmental rules, and document-control practices. Performs other duties and responsibilities as assigned to support business objectives, customer requirements, operational needs, and continuous improvement initiatives. Physical Requirements Ability to sit, stand, walk, bend, reach, and move throughout office, lab, warehouse, and production areas as needed. Ability to use a computer, keyboard, phone, and standard office equipment for extended periods. Ability to occasionally lift and/or move up to 25 pounds; heavier items require assistance or mechanical lifting equipment. Ability to wear required PPE and follow all site safety requirements while in production or test areas. Ability to observe workstations, conduct time studies, validate layouts, participate in equipment trials, and access manufacturing/test areas as required. Work Environment Work is performed in a combination of office, engineering, lab, warehouse, and manufacturing floor environments. Manufacturing areas may include moving equipment, powered industrial trucks, electrical test equipment, noise, temperature variation, and PPE requirements. May require occasional schedule flexibility to support production, customer needs, launches, audits, equipment trials, or urgent quality/engineering issues. Frequent interaction with production equipment, automation, test benches, suppliers, and cross-functional project teams; occasional travel may be required. Evaluation Metrics/KPIs Labor efficiency and productivity performance versus approved standards and budget. Cycle time, line balance, takt attainment, throughput, and direct labor cost per unit. Capacity utilization, bottleneck reduction, staffing-model accuracy, and readiness for customer demand. OEE, equipment utilization, downtime reduction, and Run@Rate performance. Verified continuous improvement and cost savings delivered against the plant productivity roadmap. Reduction in scrap, rework, process instability, excess labor, ergonomic risk, and recurring manufacturing losses. Timely closure and sustained effectiveness of Kaizen, PFMEA, safety, quality, and process-improvement actions. Production Lead adoption of standard work, visual management, escalation routines, and daily accountability practices. Industrial deliverables completed on time and within approved project budget and launch timing. Accurate and current capacity models, labor standards, standard work, layouts, training materials, and controlled documents. Qualifications Education / Experience Bachelor's degree in Industrial Engineering, Manufacturing Engineering, Mechanical Engineering, Mechatronics, Industrial Automation, Electrical Engineering, or a related technical discipline preferred; equivalent experience may be considered. Five or more years of industrial engineering, manufacturing engineering, process engineering, automation, operational excellence, or related manufacturing experience preferred. Automotive manufacturing experience preferred; battery systems, power electronics, electrical test equipment, high-complexity assembly, or launch experience strongly preferred. Demonstrated experience leading continuous improvement, capacity planning, labor optimization, time studies, line balancing, plant-layout improvement, or productivity programs. Experience coaching or functionally directing Production Leads, team leaders, supervisors, operators, or cross-functional project teams is strongly preferred. Technical Skills Strong knowledge of Lean Manufacturing, Six Sigma or structured problem-solving, time studies, work measurement, capacity analysis, labor planning, standard work, plant-layout design, and value-stream improvement. Knowledge of industrial equipment, automation, robotics, controls, data collection, machine safety, ergonomic design, and manufacturing-process development. Knowledge of DFM&A, PFMEA, process control, Run Rate, OEE, labor efficiency, cycle-time analysis, takt time, bottleneck analysis, and continuous improvement methods. Experience with test methods for power electronics or battery systems, end-of-line testing, battery-pack assembly, cabling, diagnostics, laser welding, assembly, testing, or packaging preferred. Programming or technical exposure to Siemens PLC, LabVIEW, MATLAB, Python, C, PSpice/OrCAD, dSPACE, Vector/ETAS, or similar tools preferred. Advanced Excel and data-analysis capability required; Power BI experience preferred. Experience with SAP, CAD/layout tools, SharePoint, Teams, and project-tracking systems is beneficial. Professional Competencies Strong floor presence, communication, facilitation, coaching, and cross-functional leadership skills, with the ability to influence without direct authority. Able to set clear technical expectations, challenge ineffective practices constructively, drive action closure, and escalate accountability concerns appropriately. Analytical, rigorous, curious, persuasive, and comfortable balancing safety, quality, delivery, cost, people, and launch-timing priorities. Ability to manage multiple priorities, work independently, use data to make decisions, and communicate risks or barriers promptly. Team-oriented and adaptable in a multicultural, fast-changing manufacturing environment, with a strong commitment to continuous improvement and operational discipline. At OPmobility, people truly matter. We are committed to building inclusive teams, promoting diversity and equality, and ensuring that every application is considered fairly - because the future of mobility is built by diverse perspectives, bold ideas, and people who dare to move forward. Innovation is therefore not a buzzword, but a natural part of everyday work. You’ll grow in an international environment where cutting-edge technologies, industrial excellence, and real-world impact come together to tackle the challenges of tomorrow’s automotive industry. Founded in 1946 by Pierre Burelle, OPmobility, known until 2024 as Plastic Omnium, has transformed itself into a player in sustainable and connected mobility. Today, OPmobility develops technological solutions across four areas of expertise: exterior and lighting systems, the integration of complex modules, technologies related to energy storage, hydrogen and electrification, and a division dedicated to the development of embedded software and digital solutions. With €11.5 billion in revenue in 2025, 152 factories, 40 R&D centers, and nearly 38,100 employees across 28 countries, OPmobility combines global scale with local impact. All driven by a shared ambition to accelerate the automotive energy transition.