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Detection of sample conductivity and bacterial presence using inductive microcoils. Effect of device size and geometry

机译:使用感应微线圈检测样品电导率和细菌的存在。设备尺寸和几何形状的影响

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摘要

In a previous work, we demonstrated that inductance monitoring using microcoils allows straightforward discrimination of solutions containing different salt or bacteria concentrations. As it is shown here, the microfabrication method can be significantly simplified as to produce cheaper, easier to fabricate and more robust sensors by CMOS technologies. Besides, we compare the performance of 12 microcoil types exhibiting different geometric features. In this context, the effect of a number of parameters on sensor's performance, including microcoil active area, inductance nominal value, sample volume and measurement frequency, has been studied and discussed. The results confirm that inductive microcoils can be used as efficient conductivity sensors for the study of sample microvolumes.
机译:在先前的工作中,我们证明了使用微线圈监测电感可以直接区分包含不同盐或细菌浓度的溶液。如此处所示,可以通过CMOS技术显着简化微细加工方法,以生产出更便宜,更容易制造且更坚固的传感器。此外,我们比较了表现出不同几何特征的12种微线圈的性能。在这种情况下,已经研究和讨论了许多参数对传感器性能的影响,包括微线圈有效面积,电感标称值,样品量和测量频率。结果证实,感应微线圈可以用作研究样品微体积的有效电导率传感器。

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