Core Advantages of Precision Microfluidic Laser Equipment
As a core technical carrier in fields such as biomedicine, chemical analysis and environmental monitoring, the processing accuracy and efficiency of microfluidic chips directly affect chip performance and R&D progress. To meet the industry's demand for high-precision, non-contact processing, we have launched a professional CO2 laser engraving and cutting machine specially designed for microfluidic chips. It integrates functions such as laser engraving, cutting and drilling, helping research institutions and enterprises achieve efficient and stable micro-nano structure processing.
Micron-level precision, easily handling complex structures
Adopting a high-performance CO2 laser and precision motion control system, the minimum processing accuracy can reach 20μm, easily realizing the processing of complex structures such as microchannels, chambers and valves on microfluidic chips. It supports engraving with an ultra-narrow line width of 0.1mm, ensuring the accuracy and repeatability of fluid control.
Non-contact processing, strong material compatibility
The CO2 laser wavelength (10.6μm) has good absorption rate for non-metallic materials, and is suitable for a variety of microfluidic chip base materials such as acrylic, PDMS (polydimethylsiloxane), PET, glass and ceramics. Non-contact processing avoids mechanical stress, effectively prevents material deformation or contamination, and increases the yield by more than 30%.
Intelligent and efficient, one-click operation
Equipped with dedicated control software, it supports direct import of design files from AutoCAD, CorelDRAW and other software, and automatically generates processing paths. An optional CCD visual positioning system can realize automatic material alignment and reduce manual intervention. The processing speed can reach 500mm/s, and the single processing time is shortened by 50% compared with traditional processes.
Environmental protection, low consumption and low cost investment
No consumables and no chemical pollution, the operating cost is only 1/5 of that of photolithography equipment. The modular design is easy to maintain, and the open workbench is compatible with substrates of various sizes (customizable), meeting the needs of laboratory R&D and small-batch production.
Application Scenarios
Biomedicine: Microstructure processing of organ chips, cell culture chips and drug screening chips.
Point-of-Care Testing (POCT): Precision engraving of paper-based microfluidic chips and fluorescence detection channels.
Environmental Monitoring: Customized production of microfluidic sensors and microreactors.
Scientific Research and Education: Microfluidic prototype design verification and teaching demonstration model production.
Technical Parameters of Precision Microfluidic Laser Equipment
Laser Type: RF metal tube CO2 laser
Laser Power: 30W-60W (adjustable)
Processing Accuracy: 30μm
Processing Area: 700mm×500mm (other sizes are optional)
Compatible Materials: PDMS/glass/ceramics, etc., thickness 0.1-20mm
Software System: Windows operating interface, supports vector image import and parametric programming
Service Support
We provide free sample proofing, equipment operation training and lifelong technical support. At the same time, we can customize laser parameters and processing schemes according to customer needs, helping to accelerate the entire process of microfluidic products from R&D to mass production.
Conclusion
In the era of booming microfluidic technology, choosing a processing equipment with high precision and high stability is crucial. Our CO2 laser engraving and cutting machine takes technological innovation as the core, and is committed to providing efficient and economical solutions for the microfluidic industry. If you want to learn more details or reserve a prototype test, please contact us to start the precise journey of micro-nano manufacturing!
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