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TL

Trio Labs

Trio Labs utilizes micro-scale metal additive manufacturing to produce precision metal and ceramic components for healthcare applications, achieving tolerances as tight as 0.0005 inches and a native surface finish of Ra32. This technology addresses the limitations of traditional CNC machining and metal injection molding by significantly reducing lead times and setup costs while offering greater design flexibility.

Updated 2 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Founder details are not available yet.

Product

Problem

Traditional manufacturing methods like CNC machining and metal injection molding often struggle to produce intricate, micro-scale metal components with the precision and speed required for modern medical devices. These methods can also suffer from long lead times, high setup costs, and design limitations.

Solution

Trio Labs utilizes micro-scale metal additive manufacturing to create precision metal and ceramic components tailored for healthcare applications. Their technology achieves tolerances as tight as 0.0005 inches and a native surface finish of Ra32, surpassing the capabilities of conventional methods. By significantly reducing lead times and setup costs while offering greater design flexibility, Trio Labs enables rapid prototyping and production of complex geometries previously unattainable. This allows medical device companies to innovate faster and bring advanced products to market more efficiently.

Target Audience

Trio Labs primarily serves MedTech companies and medical device manufacturers seeking high-precision, micro-scale metal components for innovative healthcare applications.

Features

  • Micro-scale metal additive manufacturing process optimized for medical-grade materials
  • Achieves tolerances down to 0.0005 inches for high-precision components
  • Native surface finish of Ra32, minimizing the need for post-processing
  • Rapid prototyping and production capabilities, reducing lead times
  • Design flexibility to create complex geometries beyond traditional manufacturing constraints
  • Suitable for both metal and ceramic materials
This profile is AI-generated and may contain inaccuracies.