Application note

Sublym Efficient Hot Embossing

Sublym: 2 in 1 machine for efficient hot embossing and its bonding with Different Thermoplastics Application Note

Sublym Hot embossing + Bonding 2in1 machine Application Note Introduction The evolution of the microfluidics field demands fabrication methods that are both efficient and cost-effective. The Sublym machine, which we can call a “2-in-1 machine”, facilitates the efficient hot embossing and bonding of advanced Flexdym materials with other classical thermoplastics (COC, PMMA, PS…), streamlining the […]

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3D Printing with 2PP Technology

The Potential of 3D Printing using 2PP technology in Skeletal Muscle Engineering Application Note

The Potential of 3D Printing using 2PP technology in Skeletal Muscle Engineering Application Note Introduction 3D printing has revolutionized various fields by enabling precise and customizable fabrication of complex structures. In the context of skeletal muscle engineering, 2-photon polymerization (2PP)-based 3D printing offers significant potential to overcome existing limitations in scaffold and microfluidic design. This

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Microfluidic Device

Room Temperature and Equipment-Free Microfluidic Device assembly & Bonding Application Note

Room Temperature and Equipment-Free Microfluidic Device assembly & Bonding Application Note Introduction The fabrication of microfluidic devices, essential for numerous applications in biomedical, pharmaceutical, and chemical industries, faces significant challenges, primarily related to bonding. Ensuring robust and reliable bonding without the need for expensive cleanroom facilities is crucial for the widespread adoption of microfluidic technology.

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Microfluidics

Optimizing Microfluidics: The Advantages of Piercing Inlets and Outlets Directly During Fast Flexdym Moulding Application Note

Optimizing Microfluidics: The Advantages of Piercing Inlets and Outlets Directly During Fast Flexdym Moulding Microfluidic devices have become indispensable in a variety of fields, from medical diagnostics to chemical synthesis. The demand for more efficient, precise, and scalable manufacturing processes has driven innovation in the way these devices are produced. This recent report outlines a

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