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Director Manufacturing Engineering Jobs in Lexington, SC

Manufacturing Engineer

Columbia, SC · On-site

$67K - $87K/yr

... direct impact with a growing company. Key Responsibilities Design for Manufacturability & Process Strategy * Engineering Translation : Analyze complex 3D CAD models, P&IDs, isometric drawings, and ...

Manufacturing Engineer

Columbia, SC · On-site

$67K - $87K/yr

... direct impact with a growing company. Key Responsibilities Design for Manufacturability & Process Strategy * Engineering Translation : Analyze complex 3D CAD models, P&IDs, isometric drawings, and ...

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Director Manufacturing Engineering information

See Lexington, SC salary details

$62.5K

$166.7K

$217.4K

How much do director manufacturing engineering jobs pay per year?

As of Aug 29, 2026, the average yearly pay for director manufacturing engineering in Lexington, SC is $166,663.00, according to ZipRecruiter salary data. Most workers in this role earn between $121,100.00 and $216,600.00 per year, depending on experience, location, and employer.

What does a director of manufacturing engineering do?

A Director of Manufacturing Engineering oversees the design, implementation, and improvement of manufacturing processes within an organization. They lead teams of engineers, manage projects, and collaborate with other departments to ensure efficient production, quality standards, and cost-effectiveness. Their responsibilities often include strategic planning, process optimization, technology integration, and ensuring compliance with safety and regulatory requirements. This leadership role is critical in driving innovation and maintaining competitive manufacturing operations.

What are the key skills and qualifications needed to thrive as a director of manufacturing engineering?

To thrive as a Director of Manufacturing Engineering, you need deep expertise in manufacturing processes, engineering management, and process optimization, usually supported by a bachelor’s or master’s degree in engineering and significant leadership experience. Familiarity with enterprise resource planning (ERP) systems, lean manufacturing methodologies, Six Sigma certifications, and advanced manufacturing technologies is typically required. Strong leadership, strategic thinking, and excellent communication skills help drive cross-functional teams and foster innovation. These capabilities are vital for ensuring operational efficiency, cost-effectiveness, and continuous improvement in a competitive manufacturing environment.

What are some common challenges faced by a director of manufacturing engineering and how can they be addressed?

A Director of Manufacturing Engineering often encounters challenges such as integrating new technologies, scaling production efficiently, and managing cross-functional teams. Balancing cost, quality, and speed while implementing process improvements requires strong project management and communication skills. Proactively fostering collaboration between engineering, operations, and quality teams helps address issues early and ensures alignment with organizational goals. Staying updated on industry advancements and investing in team development are also key to overcoming these challenges.

What is the difference between Director Manufacturing Engineering vs Manufacturing Engineer?

AspectDirector Manufacturing EngineeringManufacturing Engineer
CredentialsBachelor's or Master's in Engineering, often with leadership experienceBachelor's in Engineering or related field, entry to mid-level
Work EnvironmentStrategic planning, team leadership, cross-department collaborationHands-on production, process improvement, equipment troubleshooting
Industry UsageOversees manufacturing operations, sets long-term goalsExecutes manufacturing processes, supports production teams

The main difference between a Director Manufacturing Engineering and a Manufacturing Engineer lies in scope and responsibility. The director focuses on strategic planning, leadership, and overseeing multiple teams, while the manufacturing engineer handles day-to-day process improvements and technical tasks. Both roles are essential in manufacturing, but they operate at different levels of management and technical involvement.

How much does a director manufacturing engineering make in the US?

A Director of Manufacturing Engineering in the US typically earns between $120,000 and $180,000 annually, with total compensation often including bonuses and benefits. Salaries vary based on industry, company size, location, and experience, and the role usually requires strong leadership, technical expertise, and project management skills.

What job categories do people searching Director Manufacturing Engineering jobs in Lexington, SC look for?

The top searched job categories for Director Manufacturing Engineering jobs in Lexington, SC are:

What cities near Lexington, SC are hiring for Director Manufacturing Engineering jobs?

Cities near Lexington, SC with the most Director Manufacturing Engineering job openings:

Infographic showing various Director Manufacturing Engineering job openings in Lexington, SC as of August 2026, with employment types broken down into 89% Full Time, 7% Part Time, 3% Contract, and 1% Nights. Highlights an 84% Physical, 5% Hybrid, and 11% Remote job distribution, with an average salary of $166,663 per year, or $80.1 per hour.

Manufacturing Engineer - Battery Research

Integer Technologies

Columbia, SC • On-site

$67K - $87K/yr

Full-time

Medical, Dental, Vision, Retirement, PTO

Re-posted 17 days ago


Job description

#LI-DNI
Manufacturing Engineer - Battery Research
Location: On-Site, Columbia, SC
What we do
Integer Technologies is an applied research and product development company founded by scientists and engineers with a passion for protecting freedom with innovation. We perform R&D on next-generation systems and technologies for the Department of Defense and other U.S. Government agencies. We are hardware and software developers with experience transforming research into fieldable technology. Our core portfolio of research includes projects in power & energy systems, unmanned systems (with an emphasis on maritime systems), digital engineering, cyber security, and advanced manufacturing. Our mission is to create a safer world by translating scientific discoveries into reliable products that address urgent national security needs... at the speed of relevance.
Company Benefits
  • Base salaries which exceed local & national industry averages.
  • Year-end performance-based bonuses.
  • 401(k) with company matching that vest immediately.
  • Integer fully covers medical, prescription, vision, and dental insurance costs for the employee and dependents. Meaning, the Integer standard plan pays 100% of health insurance premiums for your entire family from a well-known national insurer, saving you thousands of dollars annually.
  • Relocation assistance available.
  • Paid vacation, sick leave, and holidays.
  • Paid bereavement and parental leave.
  • Hybrid schedule: Mondays and Fridays are optional to work from home or in the office.

Company Perks
  • Startup culture with the stability of a large company. Integer's business plan has years of time phased contracted work, alleviating the would-be risk from a traditional small company.
  • Direct access to company leadership, prioritization of people over process, and a stellar team with a shared desire for personal and professional growth.
  • Friendly atmosphere where people enjoy not only their work and what they're creating but enjoy helping each other as well.
  • Bottomless Coffee, Espressos, and Ping Pong!!

About the Role....
  • Intro
  • Integer Technologies is seeking a Battery Manufacturing Engineer reporting to the Industry 4.0 Engineering Manager within the Digital Engineering Division. This role will lead the research and development of improved design and manufacturing processes for novel energy storage technologies for defense applications.
  • Integer's products use digital engineering tools (e.g., digital twins, modeling, data analytics) to support decision-making for control and optimization of large and complex integrated defense systems. Within Integer, the Industry 4.0 team is focused applying these technologies to advanced manufacturing applications.
  • This role will focus on the development of digital engineering solutions for the manufacturing of battery systems and will require a balance of manufacturing engineering, process development, and multi-physics modeling and simulation of battery systems and production processes.
  • Objectives
  • Develop and maintain technical expertise in batteries, manufacturing, digital twin technologies, analytics, and analyses.
  • Design and develop digital twin solutions for batteries, battery manufacturing systems, components, and processes to enhance asset performance, manufacturing efficiency, and decision-making.
  • Collaborate with cross-functional teams to integrate digital engineering solutions with existing systems and processes.

Primary Responsibilities....
  • Serve as a hands-on subject matter expert for battery manufacturing and modeling within a collaborative research team, focusing on building innovative solutions.
  • Design and develop digital twin solutions for batteries, battery manufacturing systems, components, and processes that integrate live data streams from physical assets, hardware emulators, and simulations.
  • Architect scalable, maintainable simulation frameworks to accelerate engineering workflows by developing capabilities for rapid model exchange, model re-use, and optimized data management.
  • Partner with a cross-disciplinary research team (e.g., battery experts, mechanical modelers, control engineers) to define requirements early in the design cycle and translate complex capabilities into functional demonstrations.
  • Own end-to-end delivery from proof-of-concept demonstrations through production-grade releases, ensuring quality via testing and documented best practices.
  • Perform research, understand new concepts from other engineering disciplines on advanced and complex topics, and communicate findings to experts and non-experts alike.

Required Qualifications....
  • Must be a U.S. Citizen with the ability to obtain and maintain a U.S. DoD Secret Clearance
  • Bachelor's degree in electrical engineering, mechanical engineering, industrial/manufacturing engineering, or a related technical discipline.
  • 5+ years of professional experience in battery design, battery development, battery manufacturing, manufacturing engineering, physics-based modeling, or a related field.
  • Strong understanding of battery systems, electrical engineering, and battery manufacturing technologies.
  • Experience working with computer modeling and simulation environments (e.g., MATLAB/Simulink, Modelica, or similar) in one of the following domains:
  • Electrical Power and Energy Systems
  • Electrochemical Systems
  • Thermal-Fluid and Cooling Systems
  • Electrical or Battery Control Systems
  • Demonstrated proficiency in project management tools and skills (e.g., setting milestones, monitoring progress, ensuring deliverables).
  • Excellent problem-solving skills and attention to detail.
  • Excellent communication and teamwork skills to collaborate effectively across departments.

Additional Desired Qualifications....
  • Masters or PhD in a relevant engineering or computer science discipline.
  • Knowledge of battery management systems, electrical powertrains, and battery hazard mitigation systems.
  • Experience with battery testing, validation, and certification.
  • Familiarity with industry-specific regulations and standards (e.g., ISO 26262, IEC 61508, S9310-AQ-SAF-010)
  • Experience with DevOps tools (e.g., Docker, Kubernetes).
  • Experience with real-time simulation platforms (e.g., OpalRT, Typhoon HIL, Speedgoat).
  • Experience with simulation solver technologies and numerical integration methods.
  • Experience with machine learning frameworks (e.g., TensorFlow, PyTorch) or numerical optimization methods.
  • Experience with front-end development for data visualization.
  • Experience with industrial controls, automation, and database systems.