Some ideas need more than a screen to bring them to life. I combine CAD design, precision 3D scanning, rapid prototyping, and 3D printing to turn concepts, existing parts, and real-world problems into functional solutions.
Whether you’re starting with an idea, a physical object that needs to be recreated or modified, or a problem that needs a completely new solution, I can help move it from concept to digital model, prototype, testing, refinement, and finished part.
Turn an idea, sketch, measurement, or existing component into a production-ready 3D model. I design functional parts with real-world fit, strength, manufacturing, assembly, and usability in mind—not just how they look on a screen.
When measurements aren’t enough, 3D scanning can capture complex geometry and existing components with incredible detail. Using precision scanning technology, I can create accurate digital references for reverse engineering, modification, fitment, and product development.
Go from CAD to something you can actually hold, install, and test. In-house 3D printing makes it possible to quickly evaluate fitment, dimensions, ergonomics, appearance, and function before committing to a finished design.
Not every problem fits neatly into an existing product. I combine design, technology, fabrication, testing, and creative problem-solving to develop one-off components, modifications, replacement parts, fixtures, prototypes, and completely new ideas.
Professional hardware and software allow me to move seamlessly between the physical and digital worlds—from capturing real-world geometry to designing, prototyping, testing, and refining the finished solution.



















Existing part, broken component, rough sketch, or just an idea—I can turn real-world geometry and concepts into editable digital designs ready for development.
Rapid prototyping makes development iterative. Instead of assuming a design works, we can print it, test it, identify what needs improvement, make changes, and repeat.
Sometimes the right solution doesn't exist yet. That's where CAD, scanning, prototyping, and creative problem-solving come together to create something specifically for the job.
My interest in CAD became much more serious after purchasing my KTM 990 RC R. Because the bike was new, aftermarket parts were still limited and larger manufacturers needed time to develop them. Rather than wait, I decided to design my own.
I started with one problem: creating a cleaner tail setup for the bike. Through CAD design, repeated prototypes, real-world fitment, material testing, and revisions, I developed one of the first tail tidy solutions available in the U.S. for the 990 RC R. What began as a personal project quickly turned into something other owners wanted too, eventually growing into more than 200 parts sold through KTMBrad on eBay.