This microfluidic laser cutting machine is specially designed for precision processing of microfluidic chips, biosensors and flexible electronic devices. It adopts ultra-short pulse laser technology, and can realize micron-level flow channel cutting on polymer materials such as PDMS, COC and hydrogel, meeting the ultra-fine processing needs in fields such as life science, in vitro diagnosis and organ-on-a-chip.
Microfluidic Laser Cutting Machine — The Expert in Precise Microchannel Processing
This microfluidic laser cutting machine is specially designed for precision processing of microfluidic chips, biosensors and flexible electronic devices. It adopts CO2 laser technology, and can realize micron-level flow channel cutting on polymer materials such as PDMS, COC and hydrogel, meeting the ultra-fine processing needs in fields such as life science, in vitro diagnosis and organ-on-a-chip.
Core Advantages
Micron-level Precision: Adopting CO2 laser technology, it features minimal minimum cutting line width, smooth edge without burrs, ensuring stable fluid performance of microchannels.
Non-contact Processing: It realizes cold cutting of materials with small heat-affected zone, avoiding material deformation or carbonization caused by traditional processing.
Intelligent Path Optimization: It automatically recognizes CAD design files and intelligently optimizes the cutting path, improving processing efficiency by 30% and featuring high material utilization rate.
Multi-material Compatibility: It supports multiple polymer materials such as PDMS, PET, PI and hydrogel, and adapts to substrates with different hardness and thickness (50μm-5mm).
Technical Parameters
Laser Type: CO2, metal RF laser source
Laser Power: 30W / 60W
Processing Area: 450*310
Door Design: Left-right opening door design
Focusing Mode: Probe-type automatic focusing
Processing Speed: 1524mm/s
Memory Capacity: 128MB high-capacity memory, capable of storing 99 files simultaneously
Transmission Interfaces: USB interface, Ethernet connection interface
Positioning Indication: Red light module
Typical Applications
Life Science: Microchannel processing of microfluidic chips, preparation of organoid culture chips
In Vitro Diagnosis: Point-of-care testing (POCT) chips, microfluidic immunoassay cards
Flexible Electronics: Cutting of wearable sensor electrodes, micro-processing of flexible circuit boards
Scientific Research Field: Preparation of bionic micro-nano structures, development of microfluidic experimental devices
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