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Screen Printed Thermal Flow Velocity Sensor for Microfluidic Devices Featuring Intrinsic Compensation of Spurious Heat Transfe

机译:用于微流体器件的屏幕印花热流速度传感器,包括寄生热传输的内在补偿

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We present a fully screen printed sensor for measuring the flow velocity inside microfluidic chips based on a modified anemometer principle. In contrast to previously reported sensor concepts, this device is designed to automatically compensate for the spurious heat propagation in the substrate and heat conduction in the liquid of interest. Using this approach it is possible to measure the flow velocity of any liquid in a channel directly by means of a single voltage without the need to correct for thermal side effects in a post-processing step. Additionally, fabrication by screen printing allows for integration of the sensor without disturbing the fluid flow.
机译:我们介绍了一个全屏印刷传感器,用于根据改性风速计原理测量微流体芯片内的流速。与先前报道的传感器概念相反,该装置被设计为自动补偿基板中的杂散热传播和感兴趣的液体中的热传导。使用这种方法,可以通过单个电压直接测量通道中任何液体的流速,而无需校正后处理步骤中的热副作用。另外,通过丝网印刷制造允许传感器的整合而不干扰流体流动。

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