SLS Platform Engineering
System architecture and control strategy for repeatable powder-bed manufacturing.
Outcome: Reduced print cycle time while improving dimensional consistency.
Additive Manufacturing Portfolio
I combine hardware engineering, firmware, and delivery discipline to design reliable manufacturing platforms for medical and industrial use.
Background
I started by building systems directly: SLS and SLA/DLP printers, firmware, optics, thermal loops, and print process tuning.
Today I work at the intersection of engineering and delivery, helping teams ship complex hardware programs with clear quality and timeline control.
My approach is practical: define constraints early, choose measurable tradeoffs, and document decisions so teams can scale without losing context.
Impact
6+
Years in Additive Manufacturing
2000+
Parts Printed
100+
Medical Models Delivered
End-to-End
Systems Ownership
Portfolio
System architecture and control strategy for repeatable powder-bed manufacturing.
Outcome: Reduced print cycle time while improving dimensional consistency.
Built an end-to-end workflow for planning models and regulated delivery handoffs.
Outcome: Shorter surgeon review cycles and stronger quality traceability.
Developed resin and exposure tuning playbooks for precision applications.
Outcome: Higher repeatability and fewer print failures across batches.
Moved early prototypes to low-volume production with clear release gates.
Outcome: Faster path to customer validation with controlled risk.