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Magnetoresistance Sensor with Analog Frontend for Lab-on-Chip Malaria Parasite Detection

机译:具有模拟前端的磁阻传感器,用于芯片上疟疾寄生虫检测

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This paper presents proof-of-principle of a miniatured low noise, low power, and high-sensitive malaria detection method based on the magnetoresistance (MR) sensor with a CMOS analog front-end (AFE) readout circuit for the detection of paramagnetic hemozoin particles. COMSOL Multiphysics® is employed for the finite-element (FEM) simulation of hemozoin particles to prove that the magnetic field generated from a multi-hemozoin particles system is within the sensing range of MR sensors. A CMOS AFE circuit is designed to convert the tiny current (approximately 60 µA) from MR sensors into a strong voltage signal able to be sampled and suppress high frequency and large amplitude noises stemming from the shift of the resultant magnetic field during the malaria diagnostic process. This CMOS AFE circuit is composed of a transimpedance amplifier (TIA) and a pair of Butterworth filters. This TIA can achieve a 98.5 dB dc gain and a 2.823 MHz bandwidth with low power consumption (375.65 µW) at a 3.3 V voltage supply and low input-referred noise (21.3857 nA/√Hz at 100 Hz). Butterworth filters can significantly reduce the high frequency and large amplitude noises caused by the unexpected shift of the magnetic field. The experimental results prove that the system provides an immediate response to samples with hemozoin particles and has the potential to achieve malaria parasite detection.
机译:本文介绍了基于磁阻(MR)传感器的微型低噪声,低功率和高敏感疟疾检测方法的原理原理,用于检测顺磁血液沸蛋白的CMOS模拟前端(AFE)读数电路粒子。 COMSOLMULTIPHYSICS®用于血液化血液粒子的有限元(FEM)模拟,以证明从多血液酶粒子系统产生的磁场是MR传感器的感测范围内。 CMOS AFE电路设计成将来自MR传感器的微小电流(大约60μA)转换为能够进行采样的强电压信号,抑制疟疾诊断过程中所得磁场的偏移的高频和大幅度噪声。该CMOS AFE电路由跨阻抗放大器(TIA)和一对Butterworth滤波器组成。此TIA可以在3.3V电源和低输入引用的噪声(100 Hz时,使用低功耗(375.65μW)和低功耗(375.65μW)的2.823MHz的带宽(375.65μW)。 Butterworth滤波器可以显着降低由磁场意外偏移引起的高频和大的幅度噪声。实验结果证明,该系统立即对具有血液沸素颗粒的样品的反应,并且具有实现疟疾寄生虫检测的可能性。

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