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Noise characterization of MOSFET current mirror circuit on high impedance application using DAQ card PCI-6221

机译:使用DAQ卡PCI-6221的高阻抗施加MOSFET电流镜电路噪声特征

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The distinction and characterization of noise have been carried out in the current mirror (CM) circuit as a part of a biosensor system with some main components of MOSFET type BS250 and two resistors at the input (Rref) and output (RL) of the circuit. This evaluation is important since the biosensor module has very high impedance due to the low conductivity sample measured and the high loading resistance for current to voltage conversion. This high impedance leads to the rise of high noise due to thermal noise which is proportional to the resistance, in addition, the type and the specifications of the MOSFET determine the noise due to semiconductor properties. Therefore, this evaluation can be used to reduce the resulted noise to obtain high Signal to Noise Ratio (SNR). The experiment was performed by applying R_(ref) and R_L with some values of 1kν, 100 kv and 1 Mv while maintaining the voltage source at 1 V, which causes the input current to vary accordingly. This experiment was adjusted to meet the range of current in the biosensor application, which is relatively very small. The measurement is acquired by a DAQ card PCI-6221 that has been integrated with a LabVIEW program based on Fast Fourier Transform (FFT). The noise response analysis is performed within a bandwidth of 0.1 Hz to 100 kHz and a frequency resolution of 0.1 Hz. This bandwidth is sufficient to describe the noise in the CM circuit applied to the biosensor device. The results show that the noise characteristics vary with the applied resistance. Thus, it can be considered to determine an appropriate loading resistance, which could be used to build a high SNR current mirror circuit for the biosensor system.
机译:噪声的区别和表征已经在当前镜(CM)电路中进行作为生物传感器系统的一部分,其中MOSFET型BS250的一些主要组件和电路的输入(RREF)和输出(RL)处的两个电阻器。该评估是重要的,因为生物传感器模块由于低电导率样本而具有非常高的阻抗,并且电流与电压转换的高负载电阻。由于与电阻成比例,这种高阻抗导致高噪声的升高,此外,MOSFET的类型和规格决定了半导体性能引起的噪声。因此,该评估可用于降低所产生的噪声以获得高信噪比(SNR)。通过将R_(REF)和R_L应用于1Kν,100kV和1mV的r_(ref)和r_l来进行实验,同时将电压源保持在1 v,这使得输入电流相应地改变。调整该实验以满足生物传感器应用中的电流范围,这相对非常小。测量由DAQ卡PCI-6221获取,该DAQ卡PCI-6221已与基于快速傅里叶变换(FFT)的LabVIEW程序集成。噪声响应分析在0.1Hz至100kHz的带宽内执行,频率分辨率为0.1Hz。该带宽足以描述施加到生物传感器设备的CM电路中的噪声。结果表明,噪声特性随着施加的电阻而变化。因此,可以考虑确定适当的负载电阻,该电阻可用于构建用于生物传感器系统的高SNR电流镜电路。

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