The RoleAs Lead Manufacturing Engineer, Tooling Design, you'll be Mach's go-to expert on two things: how we design tooling, and how parts are designed so automation can handle, locate and assemble them. You'll push the field forward through research and development (R&D) on new materials, hardware and processes. You'll design experiments, build test articles, partner with suppliers and move what works into production. This is a hands-on technical leadership role with direct reports.
Key ResponsibilitiesOwn the Tooling and Design-for-Automation guide- Write, publish and maintain Mach's Tooling and Design-for-Automation guide. It should cover:
- design rules, with the reasoning and test data behind them
- preferred tooling components, materials and automation approaches
- standard locating features and tolerances
- worked examples and review checklists
- Write tooling standards: datum and locating strategy, modular fixture components, clamping, materials and documentation.
- Write design-for-automation rules for parts: gripping and locating features, part presentation and feeder compatibility, robot and tool access
- Set metrology and tooling verification standards (laser tracker, CMM, vision), and oversee checking fixtures and gauges.
- Define the DFMA sign-off criteria for design gates and hold programs to them.
- Set and track DFMA metrics for each program, such as part count, assembly time, automation rate, tooling cost and lead time, and first-pass yield.
- Keep the guide current with test results, production lessons and supplier input. Train design and manufacturing engineers to apply it.
Shape designs early- Review vehicle architecture and material choices at concept, before designs lock. Focus on datums, locating and automated handling.
- Run DFMA studies at the part, assembly and system level, and give design teams specific feedback backed by data.
- Lead static and kinematic assembly studies (virtual builds) to check robot reach, tool access, clearance and install paths before hardware exists.
- Drive content reduction, simpler assembly, build-in-quality and ergonomic access. Push for wider tolerances where performance allows, and for features that suit automation.
- Lead value engineering on released designs: challenge assumptions and take out cost.
Enable trade studies and make vs. buy- Give the Vehicle Assembly ME team tooling cost, lead-time, capital and rate data for automation trades (manual vs. semi-automated vs. fully automated). Provide the same for make-vs-buy decisions on tooling and automation equipment.
- Build should-cost and rate models that show how design and automation choices affect cost, capital investment, schedule and quality.
- Write the requirements in RFQ packages for tooling and automation, and help evaluate supplier quotes.
Lead R&D- Set and run a tooling and automation R&D roadmap aimed at faster, cheaper, more reliable production.
- Lead R&D on reconfigurable and low-cost fixturing, additive tooling, fixtureless and vision-guided assembly, and robotic drilling and fastening.
- Plan and run designed experiments (DOE). Build test articles and prototype cells, analyze results with sound statistics, and publish findings.
- Capture the inventions you develop and work with Legal to patent them.
- Design and deliver prototype tooling for development and validation builds, and lead manufacturing trials to prove new processes on real hardware.
- Release proven processes to production. Write process specs, and define qualification and acceptance criteria. Show process capability (Cp/Cpk) and measurement capability (GR&R), and set inspection methods with Quality.
Own the tool life cycle and support suppliers- Own the life cycle of critical tools: feasibility and simulation, design, build, buyoff at the supplier, delivery and handoff to production.
- Design and oversee the build of critical fixtures, jigs, end effectors and assembly tooling.
- Run tool design reviews and buyoffs at tool shops.
- Bring tooling expertise to design and process FMEAs (DFMEAs and PFMEAs). Maintain a library of known failure modes and proven controls.
- Lead root cause analysis on tooling-related escapes and repeat defects. Mentor engineers and help build Mach's DFMA function.
Required Qualifications - BS in Mechanical, Manufacturing or Industrial Engineering, or equivalent experience.
- 8+ years designing production tooling, fixtures or end effectors for automated or high-rate assembly in aerospace, automotive, defense or consumer electronics.
- Expert in GD&T (ASME Y14.5), datum schemes, and tolerance stack-ups across parts and tooling, including dimensional variation analysis.
- Experience integrating tooling with robots and automated cells, including selecting equipment and justifying ROI.
- A track record of writing design standards, design guides or process specs.
- Strong manufacturing and industrial engineering fundamentals: cycle time analysis, OEE, process capability (Cp/Cpk), gauge R&R, DOE, error proofing, ergonomics and ROI.
- Skilled in 3D CAD (NX, CATIA, SolidWorks or similar).
- A first-principles thinker with a bias for action, who challenges assumptions with data.
- Comfortable on the production floor and in the lab, not just at a desk.
- A clear writer who can influence design decisions.
Preferred Qualifications- Journeyman Tool and Die Maker certification or an equivalent toolmaker background.
- MS in Mechanical or Manufacturing Engineering or a related field.
- Experience with both aerospace assembly tooling and automotive assembly automation.
- Familiarity with PLCs, robot programming and machine safety standards.
- Large-scale metrology.
- Formal DFMA methods (for example, Boothroyd Dewhurst), should-cost modeling, and value engineering programs with measured savings.
- Experience with assembly and robot simulation tools (for example, Siemens Process Simulate or DELMIA).
- Experience leading DFMEAs and PFMEAs.
- Patents, publications, or processes you developed and put into production.
- Experience in an AS9100 or defense production environment.
- Lean or Six Sigma certification.
Additional Requirements- Available to work extended hours and weekends as needed
ITAR RequirementsTo conform to U.S. Government export regulations, applicant must be a (i) U.S. citizen or national, (ii) U.S. lawful, permanent resident (aka green card holder), (iii) Refugee under 8 U.S.C. a7 1157, or (iv) Asylee under 8 U.S.C. a7 1158, or be eligible to obtain the required authorizations from the U.S. Department of State. Learn more about the ITAR here.
Senior Engineer
$140,000-$180,000 USD
At Mach, we believe that compensation is more than just a paycheck. It's a comprehensive package designed to reward the time, skills, and expertise you bring to our team. We are committed to offering competitive compensation that is equitable, transparent, and aligned with market trends.
Key Elements of Our Compensation Philosophy:
- Competitive Salaries: We continuously research market rates to ensure our salaries are competitive with those in our industry and geographic location.
- Performance-Based Incentives: Our bonus structure is tied to both individual and company performance, creating a win-win scenario that motivates our team members to excel.
- Equity Participation: We offer stock options or equity to employees, ensuring that you share in the success and growth of the company.
- Benefit Packages: Our benefits include healthcare, dental and vision plans, retirement savings, and paid time off, because we understand that your well-being extends beyond the office.
- Professional Development: We allocate funds for continuing education, training, and career growth.
- Transparency: We are committed to openness about our compensation tiers and how decisions are made, ensuring trust and mutual respect.
By joining Mach, you're not just accepting a job-you're becoming a key part of a team that values your contributions and invests in your growth. Together, we aim to create a rewarding environment that sets the stage for long-term success.