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Design and Characterization of a High Resolution Microfluidic Heat Flux Sensor with Thermal Modulation

机译:具有热调制功能的高分辨率微流热通量传感器的设计与表征

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摘要

A complementary metal-oxide semiconductor-compatible process was used in the design and fabrication of a suspended membrane microfluidic heat flux sensor with a thermopile for the purpose of measuring the heat flow rate. The combination of a thirty-junction gold and nickel thermoelectric sensor with an ultralow noise preamplifier, a low pass filter, and a lock-in amplifier can yield a resolution 20 nW with a sensitivity of 461 V/W. The thermal modulation method is used to eliminate low-frequency noise from the sensor output, and various amounts of fluidic heat were applied to the sensor to investigate its suitability for microfluidic applications. For sensor design and analysis of signal output, a method of modeling and simulating electro-thermal behavior in a microfluidic heat flux sensor with an integrated electronic circuit is presented and validated. The electro-thermal domain model was constructed by using system dynamics, particularly the bond graph. The electro-thermal domain system model in which the thermal and the electrical domains are coupled expresses the heat generation of samples and converts thermal input to electrical output. The proposed electro-thermal domain system model is in good agreement with the measured output voltage response in both the transient and the steady state.
机译:为了测量热流率,在具有热电堆的悬浮膜微流体热通量传感器的设计和制造中使用了互补的金属氧化物半导体兼容工艺。三十结金和镍热电传感器与超低噪声前置放大器,低通滤波器和锁定放大器的组合可以产生20 nW的分辨率,灵敏度为461 V / W。热调制方法用于消除传感器输出中的低频噪声,并且将各种流体热量应用于传感器,以研究其在微流体应用中的适用性。对于传感器设计和信号输出分析,提出并验证了一种在带有集成电子电路的微流热通量传感器中建模和模拟电热行为的方法。电热域模型是通过使用系统动力学,尤其是键图来构建的。热域和电域耦合的电热域系统模型表示样品的热量生成,并将热输入转换为电输出。所提出的电热域系统模型与瞬态和稳态下测得的输出电压响应都非常吻合。

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