Laser Cutting
Fiber laser cutting for sheet and plate components, from flat patterns to parts ready for forming and welding.
6 kW + 12 kW Fiber Lasers · 6 × 12 ft Beds
Start with one operation or a complete assembly. We work with your team on materials, critical features, finish, and inspection so the manufacturing plan reflects the finished part.
01 / Fabricate
Plan flat patterns, bends, joints, and welds around the finished structure. Combine cutting and forming with machining, coatings, and assembly as your design requires.
Typical work: Brackets, panels, weldments, frames, and enclosures.

Fiber laser cutting for sheet and plate components, from flat patterns to parts ready for forming and welding.
6 kW + 12 kW Fiber Lasers · 6 × 12 ft Beds
Press brake forming and plate rolling for brackets, panels, enclosures, and structural components.
200-Ton + Two 150-Ton Press Brakes
Tube and structural-profile cutting for holes, notches, and joints defined by your assembly design.
HSG TS2 + T3 · Two 6 kW Tube Lasers
Tube bending, end forming, swaging, and flaring for frames and tubular assemblies.
Bending, End Forming, Swaging & Flaring
TIG and MIG welding for structural fabrications and assemblies, with procedures and inspection matched to the work.
100 Welding Stations · TIG & MIG
Fiber laser welding for joints where heat input, access, and finished appearance need careful review.
Fiber Laser Welding
Material preparation and cut kits for bar, tubing, plate, and structural stock.
Automated & Manual Band Saws
02 / Machine
Discuss standalone machined parts, large-format work, or machined features on a fabrication. Review material, dimensions, datums, and tolerances against the drawing.
Typical work: Mounting plates, housings, tooling, and machined interfaces.

CNC milling, large-format routing, and turning for components and critical features on fabricated assemblies.
3-, 4- & 5-Axis · 10 × 30 ft Router · CNC Turning
03 / Finish
Bring coating requirements into the manufacturing plan before fabrication begins. Define surface preparation, color, coating system, and the features that need to remain uncoated.
Typical work: Painted structures, coated panels, and finished enclosures.

Surface preparation, paint, and powder coating for finished parts, structures, and enclosures.
16 × 40 ft Paint Booth · In-House Powder Coating
04 / Assemble
Define the finished deliverable, bill of materials, supplied components, wiring scope, and acceptance checks. Coordinate assembly, labeling, packaging, and the agreed test requirements.
Typical work: Mechanical assemblies, racks, training hardware, and wired enclosures.

Mechanical assembly, subassemblies, kitting, and panel or rack wiring to the agreed build and test requirements.
Assembly, Kitting, Panel & Rack Wiring
05 / Supporting processes
Discuss polymer parts, composite layups, and bonded panels alongside your machined and fabricated components. Review material, tooling, geometry, and assembly interfaces with our team.
Typical work: Polymer components, tooling, bonded panels, and aircraft honeycomb paneling.

High-temperature polymer additive manufacturing for components and tooling, with material and build requirements reviewed together.
Two Roboze Argo 500 Systems · ULTEM & PEEK
Vacuum forming, composite layup, and bonding for carbon and hybrid composites, bonded panels, and aircraft honeycomb paneling.
Vacuum Forming · Composite Layup · Bonded Panels
Send the complete scope. We will work through the sequence, interfaces, and open questions with you. Dimensions, tolerances, and lead times are reviewed for each project.