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A novel microfluidic integration technology for PCB-based devices: Application to microflow sensing

机译:基于PCB的设备的新型微流集成技术:在微流传感中的应用

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摘要

Flow rate determination in microfluidic devices is important in numerous fields. In this paper, a novel technology which allows the formation of polymer microchannels on top of a specific PCB-based thermal flow senor is presented. The microchannel walls are defined by SU-8 on top of an array of Pt sensing elements. The sealing of the microchannel is performed by the thermal bonding of a PMMA plate (Plexi-glas~R) on the upper surface of SU-8 layer which is covered with a thin PMMA layer. The width and depth of the microchannel can be fully controlled over an extended range. Excellent thermal isolation of the sensing elements is achieved due to the low thermal conductivity of the materials that comprise the structure. The conducted water flow rate measurements revealed high sensitivity and extended measurement range of the fabricated sensor.
机译:在许多领域中,微流体装置中的流速确定很重要。在本文中,提出了一种新技术,该技术允许在基于PCB的特定热流传感器之上形成聚合物微通道。微通道壁由SU-8在Pt感应元件阵列的顶部定义。微通道的密封是通过在SU-8层的上表面上覆盖一层薄PMMA层的PMMA板(Plexi-glas_R)的热粘合来完成的。可以在扩展范围内完全控制微通道的宽度和深度。由于构成结构的材料的导热系数低,因此实现了传感元件的出色隔热。进行的水流量测量显示了所制造传感器的高灵敏度和扩展的测量范围。

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