My career is defined by a convergence of high-stakes aerospace manufacturing, industrial robotics, and advanced mechanical design. As a specialist in Tool & Die and Process Engineering, I have spent years mastering the tolerances required for global aerospace extrusions and mission-critical weapon systems.
Vespere Engineering is the evolution of that expertise—applying rigorous computational analysis (CAD/CFD) and metrology-grade 3D scanning to the world of bespoke powersports. From complex marine structural overhauls to high-output AC powertrain conversions, I specialize in the projects that require a level of engineering depth most shops cannot provide.
Whether executing rapid prototyping for industrial applications or re-engineering a high-performance vessel from the hull up, I provide the technical leadership and fabrication excellence necessary to turn complex mechanical challenges into high-reliability realities.
EXPERIENCE
Directed the engineering lifecycle for high-tolerance aerospace extrusion and stretch-form projects, overseeing the transition from initial CAD design to final production tooling. My role focused on high-level process optimization and cross-functional leadership, ensuring that manufacturing workflows met stringent global aerospace quality standards. By managing complex tooling inventories and spearheading technical troubleshooting for large-scale industrial projects, I drove significant improvements in operational efficiency and production throughput. Acting as the strategic bridge between executive leadership and plant-floor execution, I steer the selection and implementation of capital upgrades while providing the technical governance necessary for mission-critical engineering pivots.
Engineered high-precision mechanical components for advanced weapons systems, focusing on rigorous analysis and performance optimization. My role involved taking complex designs from initial concept through intensive testing phases to ensure mission-critical reliability. By applying precision manufacturing principles, I delivered optimized components that met strict industry design requirements and functional tolerances.
Engineered high-precision mechanical components for advanced weapons systems, focusing on rigorous analysis and performance optimization. My role involved taking complex designs from initial concept through intensive testing phases to ensure mission-critical reliability. By applying precision manufacturing principles, I delivered optimized components that met strict industry design requirements and functional tolerances.