Manufacturing Engineering Manager
C & S Machine & Manufacturing Corporation La Grange, Kentucky, United States
Manufacturing · 51-200 employees
About the role
The Manufacturing Engineering Manager oversees CNC manufacturing processes, ensuring technical standards and process stability throughout the product lifecycle. They lead new product launches, drive continuous improvement initiatives, and mentor engineering and production staff.
What they look for
Requirements
Candidates should have 8+ years of progressive experience in CNC machining and manufacturing engineering, with a preference for a Bachelor's degree in a technical field. Proficiency in CAD/CAM software, GD&T, and structured problem-solving methodologies is essential for this role.
Full description
Job Title Manufacturing Engineering Manager
Department Engineering
Position Type Full Time/1st Shift/Exempt
Reports To Director of Operations
Working Hours Monday – Thursday (6:00a-4:30p)
Job Summary
Interested in playing a pivotal technical leadership role in one of the most established and capable contract manufacturers in the region? Join a growth-minded, problem-solving, and innovation-driven team that continues to pilot an established, growing company. The Manufacturing Engineering Manager is the technical owner of our CNC manufacturing processes. This role combines deep expertise in CNC programming, machining, tooling, workholding, process planning, automation, and structured problem solving with strong project leadership. The position owns the ongoing control and relentless improvement of current production processes and serves as project manager for significant new-part launches, from manufacturability review through stable production. The successful candidate will challenge how work is done, replace tribal knowledge with engineered standards.
Manufacturing Process Ownership
- Own the technical manufacturing process for production throughout the product lifecycle, from process definition through sustained production.
- Develop and maintain robust manufacturing methods for parts produced from castings, forgings, bar stock, billet, and other raw material forms.
- Maintain disciplined control of CNC programs, setup documentation, tool lists, fixtures, critical parameters, process drawings, and other manufacturing standards.
- Reduce dependence on tribal knowledge by converting proven practices into controlled, repeatable processes and clear work instructions.
- Establish an engineering change process for significant modifications to released manufacturing methods and verify changes before full production release.
- Partner with Quality to identify critical process characteristics and establish appropriate controls, validation methods, and reaction plans.
- Use capability studies, SPC, inspection results, tooling data, machine data, and production performance to determine whether processes are truly stable and capable.
- Engineer logic, decisions, and variability out of the process, so repeatable results do not depend on operator heroics.
- Ensure manufacturing engineering practices support company quality requirements and applicable ISO 9001/AS9100 systems.
CNC Programming, Tooling & Workholding
- Serve as a highest-level technical resource for CNC machining, programming, tooling, fixturing, feeds and speeds & processes.
- Develop, review, troubleshoot, and optimize CNC programs for complex, tight-tolerance production applications, including multi-axis processes where applicable.
- Lead selection and standardization of cutting tools, holders, workholding, probing strategies, and machining parameters to improve repeatability, tool life, cycle time, and cost per part.
- Troubleshoot difficult machining issues including chatter, distortion, chip control, tool wear, surface finish, thermal effects, tolerance stack-up, machine capability, and process instability.
Continuous Improvement & Process Optimization
- Act as the technical beacon for manufacturing improvement and maintain an active pipeline of high-impact process improvement opportunities.
- Continuously improve cycle time, setup time, machine utilization, throughput, tool life, tooling cost, scrap, rework, etc.
- Use data, observation, experimentation, structured root-cause analysis, and Lean principles to identify constraints and eliminate waste
- Identify and lead opportunities to increase unattended production, reduce variability, improve ergonomics, and increase productive spindle time through automation and technology.
- Evaluate and implement appropriate applications for robotic or cobot machine tending, automated material handling, in-process probing and gauging, tool monitoring, broken-tool detection, vision, automated inspection, palletization, digital work instructions, machine monitoring, and automated data collection.
- Design stable processes for automation rather than attempting to automate unstable or poorly defined work.
New Product Introduction & Launch Management
- Serve as technical project manager for significant new part launches and own initial technical review through stable production.
- Develop launch plans with clear milestones, owners, timing, risks, and countermeasures; drive cross-functional actions to closure.
- Partner with Sales, Quality, Operations, Supply Chain, customers, and suppliers to identify technical and operational risks early and resolve them before they become production problems.
- Review drawings and models for manufacturability, including datum structure, GD&T, tolerances, surface finish, material condition, inspection accessibility, and features that materially affect risk or cost.
- Support capital equipment evaluations and develop fact-based technical and financial justification for new machines, automation, tooling systems, software, and related investments.
Technical Leadership & Knowledge Development
- Mentor and develop CNC programmers, manufacturing engineers, setup personnel, machinists, operators, and production leaders in sound manufacturing practices.
- Teach the reasoning behind good technical decisions and build organizational capability rather than becoming the only person who can solve difficult problems. Teach ‘the why’!
- Promote disciplined experimentation, fact-based decision making, standard work, and a culture where proven improvements become the new standard.
Key Measures of Success
- Reduction in machining cycle time, setup time, direct labo, tooling cost per part, scrap, and rework.
- Improvement in throughput, spindle utilization, process capability, unattended machining hours, ergonomics, and production reliability.
- New-part launches achieving planned timing, quality, capacity, cycle time, and cost targets.
- Reduction in recurring process problems, undocumented methods, and dependence on tribal knowledge.
- Improvement in manufacturing margin
Education and Experience Requirements
- Exceptional hands-on manufacturing experience is preferred over formal education, however a Bachelor’s degree in Manufacturing Engineering, Mechanical Engineering, Industrial Engineering, or a related technical discipline will be considered.
- 8+ years of progressive CNC machining, programming, manufacturing engineering, or process-development experience strongly preferred.
- Demonstrated experience developing and optimizing production machining processes from print/model through sustained production.
- Experience leading complex new-product launches, capital projects, or cross-functional manufacturing projects.
- Experience in a high-mix, mid- to high-volume contract machining environment strongly preferred.
- Experience with 3-, 4-, and 5-axis machining, CNC turning, mill-turn, Swiss, horizontal machining, robotics, or other advanced machining platforms preferred.
Qualification Requirements
- Successfully pass drug screening.
- Successfully pass background screening.
- Speak, read, and write English.
- Advanced knowledge of CNC programming, machining strategy, tooling, workholding, feeds and speeds, tool life, and metal-cutting fundamentals.
- Strong understanding of GD&T, dimensional inspection, process capability, and tolerance management.
- Proficiency with CAD/CAM systems and machining simulation; ability to quickly learn company-standard software and technology. MasterCAM or ESPRIT experience is preferred.
- Strong analytical and strategic thinking skills; excellent leadership and communication.
- Proficiency in Microsoft Suite applications.
- Strong attention to detail and time management.
- Ability to handle sensitive information with integrity and confidentiality.
- Excellent interpersonal, organizational, and problem-solving skills
- Understanding of company Quality Policy and fundamentals of ISO 9001/AS9100
- Solid communication skills at all levels of the organization (written and oral).
- Ability to use the latest technology/software provided by company.
- Must have excellent sense of priorities and a self-motivator.
- Must adhere to all OSHA safety rules and regulations.
- Physical Demands:• Stand, walk, push, pull, climb stairs and ladders, reach overhead and bend to the floor.
- Ability to safely lift 50 pounds.
- Senses: Visual (basic color perception, peripheral and depth perception, close vision of 20 inches or less, distance vision of more than 20 feet). Required for reading documentation.
- Hearing: Be able to understand verbal communication in an office and manufacturing environment (e.g., phones, team meetings, in-person interaction, background noise from production floor).
- Visual: Visual acuity required for reviewing detailed financial data, entering numbers accurately, and identifying discrepancies.
- Working Environment/Conditions:• Primary work is performed in a professional office setting within a manufacturing facility.
- Prolonged periods of sitting at a desk and working on a computer.
- Physical hazards being exposed to moving equipment and machine parts while visiting manufacturing floor.
- Breathing fumes, dust, and mist while visiting manufacturing floor.
- Skin exposure to oils and cutting fluid while visiting manufacturing floor.
- Exposure to low/moderate noise level typical of an office (e.g., printers, phones, conversations).
- May be required to follow other job-related instructions and to perform other job-related duties as requested, subject to all applicable state and federal laws.
- May require working over-time and/or Friday, Saturday hours depending on customer needs.
Core Values:
- Fanatical About Precision - We build correct and efficient processes, and we execute them with relentless accuracy. We avoid shortcuts because quality is on the line. Our customers and our teammates can expect precision-made products every single day.
- Accountable to Each Other - We take responsibility for our actions, owning both successes and mistakes. We hold ourselves and our colleagues accountable to our standards of excellence. We all play for the same team, and every win is shared.
- Challenge Accepted - We’re not afraid to try something new, to solve a problem, or to think of new ideas. We like to figure things out. We meet new tasks with enthusiasm and curiosity. Our default is YES.
- Truth Tellers, Always - We are honest and ethical in all our actions. Our communications with our clients and each other are clear, timely, frank, and fair. We are empowered and obligated to voice concerns. We honor our commitments because our word is our bond.
- Service With Humility - We leave our egos at the door. No task is too small to be done well; no person is too experienced to learn something new.
C & S Machine and Manufacturing Corporation is an Equal Opportunity Employer. We provide equal employment opportunities to all individuals regardless of race, color, religion, sex, sexual orientation, gender identity, national origin, disability, veteran status, or other legally protected characteristics.
Similar roles
-
Engineering Manager, Mobile Apps
Signature Aviation Orlando, Florida, United States
-
Software Engineering Manager, Identity Onboarding
Google Kirkland, Washington, United States · $207K–$300K/yr
-
Senior Software Engineering Manager, Simulation Infrastructure
Muon Space San Jose, California, United States · $241K–$266K/yr
-
Engineering Manager II, Extract
Box Wrocław, Lower Silesian Voivodeship, Poland
-
IT Engineering Manager II
Samsara Oregon, United States · $134K–$181K/yr
-
Head of Engineering (f/m/d)
Predium Munich, Bavaria, Germany