Vice President of Engineering
Listed on 2026-01-09
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Engineering
Systems Engineer, Automation Engineering, Electrical Engineering, Robotics
Vice President of Engineering
This company develops and operates modular, software-defined robotic production factories. These factories use advanced automation, AI-driven forming processes, and robotic arms to manufacture complex metal components with high precision, without traditional tooling.
About the RoleWe are seeking a hands-on hardware engineering leader to take advanced mechanical-electrical automation platforms and robotic production factories from V2 prototypes to V3 production-ready systems
. You must excel in CAD design, system analysis, on-floor troubleshooting, and technical leadership. This role transforms early systems into stable, repeatable machines and enables consistent, high-quality, low-volume production.
You will own the critical 1-to-10 scale-up, build and mentor the engineering team, and drive system integration, reliability, and production readiness across the organization.
Key Responsibilities Hands-On Hardware Leadership- Lead design, analysis, and debugging across mechanical, electrical, automation, hydraulic, pneumatic, and robotic subsystems.
- Maintain engineering rigor while driving fast development cycles.
- Serve as the technical authority on advanced automation platform architecture.
- Ensure seamless integration across mechanical, electrical, automation, controls, and robotic elements.
- Provide strong mechanical leadership with meaningful electrical and embedded literacy.
- Guarantee reliable, cohesive system performance.
- Mature prototypes into manufacturable, field-ready production systems.
- Implement DFM, validation protocols, testing frameworks, and quality standards.
- Build systems that can be reliably produced in low-volume at scale (2030 units/year and growing).
- Own production integration end-to-end.
- Partner with manufacturing to achieve repeatable builds.
- Lead root-cause analysis, reliability improvements, and continuous optimization.
- Oversee the development of large, welded structures and industrial automation equipment.
- Ensure safety, maintainability, and readiness for field deployment.
- Strengthening the robustness of platform systems over time.
- Move quickly, manage ambiguity, and maintain clarity and momentum.
- Balance deep technical engagement with production leadership.
- Drive toward aggressive milestones in a fast-paced environment.
- Work closely with software, controls, production, and operations teams.
- Align engineering output with product needs, manufacturing readiness, and customer expectations.
- Build, mentor, and scale a high-performing, multidisciplinary engineering organization.
- Recruit top-tier mechanical, electrical, automation, and systems engineers.
- Foster a culture of speed, technical rigor, ownership, and high standards.
- Set engineering priorities, milestones, and roadmaps.
- Manage budgets, resources, and vendor relationships.
- Establish a process discipline with sufficient flexibility for rapid iteration.
- Define hardware quality and safety standards.
- Lead reliability testing, FMEA, risk reviews, and certifications.
- Ensure systems meet safety and operational requirements.
- Identify risks early and implement mitigation plans.
- Support early customer deployments and resolve field issues.
- Ensure the platform performs reliably in real-world environments.
- Contribute to broader company strategy as part of the leadership team.
- Communicate engineering progress, risks, and priorities to executives and stakeholders.
- Align technical decisions with business goals and long-term vision.
- 12-20+ years in hardware engineering, advanced machinery, robotics, automation, manufacturing systems, or related fields.
- Strong mechanical engineering foundation with a solid understanding of electrical/embedded systems.
- Hands-on builder mentality, comfortable in CAD (e.g., Solid Works) and on the production floor.
- Experience with complex mechanical-electrical automation platforms.
- Proven success leading multidisciplinary engineering teams.
- Demonstrated ability to take hardware from prototype to production.
- Thrives in high-intensity, fast-paced startup environments.
- Strong ownership, urgency, and cross-functional communication skills.
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