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Fabrication of microfluidic networks using a high power femtosecond fiber laser

机译:使用高功率飞秒光纤激光器制造微流体网络

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Photolithography is well established in the fabrication of microfluidic networks; however, it is difficult to fabricate designs which require multiple depths. Furthermore, the cost/time to produce photolithographic masks is problematic, particularly when prototyping. Here we describe fabrication of microfluidic branching networks with multi-depth structures, ranging from 10s to 100s of microns, using a femtosecond fiber laser with 10 W average power, followed by chemical etching in a 10:1 solution of 49% HF and 69% HNO_3. While this technique was originally developed using a nanosecond laser, this unique femtosecond laser enables greater processing precision and faster overall processing speed.
机译:在微流体网络的制造中,光刻刻表是很好的;但是,难以制造需要多个深度的设计。此外,产生光刻掩模的成本/时间是有问题的,特别是当原型时。在这里,我们用多深度结构的微流体分支网络的制造,从10s到100多的微米,使用具有10V平均功率的飞秒光纤激光,然后在10:1的溶液中的化学蚀刻为49%HF和69% hno_3。虽然该技术最初是使用纳秒激光器开发的,但这种独特的飞秒激光器可实现更高的加工精度和更快的整体处理速度。

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