Summary

The development of next-generation diagnostic devices relies heavily on advanced micro-manufacturing and precise engineering. 91¿ì»îÁÖ partners with medical innovators to bring complex diagnostic solutions to life, spanning from initial prototype development to high-volume commercial production for in vitro diagnostics (IVDs), lab-on-a-chip devices, and wearable biosensors.Ìý

91¿ì»îÁÖ addresses complex diagnostic assembly and polymer processing challenges through specialized techniques that optimize design for manufacturability (DFM) and streamline production.Ìý

Core manufacturing capabilities include:Ìý

  • Microfluidic Laminate Manufacturing: Creating intricate fluidic pathways by aligning layers of thin films, foils, and adhesives. These multi-layer structures form the core components of modern point-of-care (POC) and lab-on-a-chip devices.Ìý
  • Roll-to-Roll Laser Processing & Ablation: Using proprietary high-speed laser systems to cut and ablate microchannels in tapes, films, and adhesives with extreme precision.Ìý
  • Rotary & Flatbed Die Cutting: Utilizing mechanical pressing and cutting to form specific features in structural and adhesive layers before final device assembly.Ìý
  • Automated Precision Stacking & Layering: Leveraging custom, proprietary robotic assembly equipment equipped with vision- and force-sensing capabilities. These robots precisely align and bond thin layers in ultra-clean environments, ensuring high throughput, industry-leading accuracy, and minimal material waste.Ìý
  • Precision Reagent & Chemistry Handling: Deploying automated reagent placement and coating machinery to deposit chemistry, antibodies, and specialized coatings onto microfluidic devices with exact volume control and high throughput.Ìý
  • High-Density Laser Perforation & Packaging: Offering end-to-end integration by adding microscopic perforations and medical-grade packaging to prepare completed sub-assemblies or finished components for clinical use.