Norman Noble, Inc.

Norman NobleAthermal Laser Machining Technology

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Norman Noble’s proprietary STEALTH athermal laser machining provides unmatched machining capabilities on a wide range of materials.

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ATHERMAL LASERS ENABLE THE MACHINING OF NEXT GENERATION VASCULAR AND ORTHOPEDIC IMPLANTS
We provide product design teams with a capability never before achieved on a production-ready platform. The narrow kerf capability combined with accelerated processing speed makes STEALTH laser machining technology the solution for newest vascular implant designs with the smallest geometry and highest fatigue requirements.

  • No Heat Affected Zone (HAZ)
  • Fastest HAZ-Free laser machining process
  • .00045” kerf width for nitinol implants
  • .00025” kerf width for bioresorbable implants
  • Validated laser manufacturing process
  • 25+ years of nitinol stent manufacturing experience

  • HAZ-Free Laser Machining Technology
  • A Norman Noble-exclusive
  • The most advanced athermal laser technology available for production of nitinol implants and bioabsorbable implants
  • Highly precise features in every material, including nitinol, bioabsorbable polymers, shape memory metals and other exotic alloys, without producing any heat affected zone (HAZ).
  • This can reduce—and in some cases eliminate—costly deburring and post-processing steps, increasing both product quality and yield.

  • Bioresorbable Scaffolds
  • Vascular Stent Implants
  • Transcatheter Heart Valve Implants and Frames
  • Neurovascular Clot Retrieval Devices
  • Flow Diverters
  • Embolic Filters
  • Neurovascular Stentrievers
  • Arterial Closure Implants
  • Spinal Implants and Devices
  • Extremity Screw and Plate Implants and Devices

  • Nitinol
  • Bioresorbable Polymers
  • PLLA
  • PLGA
  • Zinc
  • Titanium
  • Stainless Steel
  • Cobalt-Chrome
  • PEEK
  • Tungsten

  • 127 Laser Cutting and Welding Machines, including ND:YAG, FIBER, and STEALTH Athermal Systems