Mechanism & Motion
Translate functional requirements into reliable motion systems with clear load paths, serviceability and tolerance strategy.
I engineer mechanisms, thermal assemblies and production-ready hardware where efficiency, tolerances and real-world manufacturability matter.
A compact snapshot of the way I approach engineering: measurable performance, disciplined iteration and designs that survive contact with manufacturing.
Role-specific capabilities spanning concept engineering, simulation, detailing, prototyping and production handoff.
Translate functional requirements into reliable motion systems with clear load paths, serviceability and tolerance strategy.
Develop compact cooling and heat-management solutions balancing thermal performance, packaging and manufacturability.
Own the engineering thread from requirements and CAD through prototypes, test plans, failure analysis and release.
Design with machinists, fabricators and suppliers in mind, reducing surprises between digital geometry and physical parts.
A portfolio of engineering decisions, not just renders. Each project highlights the constraint, the intervention and the resulting performance.
Repackaged an industrial electronics cooling assembly around a lower-profile heat exchanger. Reduced installed mass by 31% while preserving the target thermal envelope.
Compact indexing mechanism with backlash control, replaceable wear components and simplified assembly.
Redesigned a service-heavy pump housing for tool access, sealing reliability and faster maintenance.
Selected roles showing progression from detailed mechanical design into systems ownership and cross-functional engineering leadership.
Lead mechanical architecture for compact electromechanical products; guide mechanism design, tolerance strategy, supplier development and verification.
Delivered mechanisms and thermal assemblies from concept through prototype builds, test campaigns and production release.
Created production CAD, drawings and fixtures while partnering with manufacturing teams to resolve fit, process and reliability issues.
Torquetangerine uses a practical loop: frame the physics, make the geometry legible, build early and verify the assumption that matters most.
Clarify forces, temperatures, interfaces, constraints, user needs and what done means before opening the CAD tool.
Explore mechanisms and packaging quickly, then converge on tolerances and manufacturing choices that make the design real.
Test the risk, compare measured behavior to the model and document the decision so the next iteration starts smarter.
Use the form for a project, consulting brief or engineering conversation.
Best suited to product development, mechanism design, thermal packaging and manufacturing-readiness challenges.