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A Variable Gain and Bandwidth Fully Differential CMOS Neural Preamplifier

机译:可变增益和带宽完全差分CMOS神经前置放大器

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The design of a low noise low power fully-differential CMOS preamplifier for bioelectrical signals recording applications is presented. The capacitive-coupled and capacitive-feedback topology is adopted. The amplifier current consumption is 5.2 μA or 18.2 μA at 3 V supply for a mid-band gain of 39.4 dB or 25.9 dB, respectively. Each corner frequency is 2-bit programmable for amplifying biosignals located in different bands. The bandwidth can be extend from 0.15 Hz - 2.68 kHz to 0.03 Hz - 40.4 kHz. To avoid possible saturation at the differential output, a discharged switch is incorporated. The circuit has an input-referred noise of 2.99 μVrms integrated from 0.1 Hz to 10 kHz. It was designed and simulated using 0.5 μm 3M2P CMOS process. The circuit is in the manufacturing process.
机译:提出了一种用于生物电信带记录应用的低噪声低功耗全差分CMOS前置放大器的设计。采用电容耦合和电容反馈拓扑。放大器电流消耗量为5.2μA或18.2μA,分别为39.4dB或25.9 dB的中频增益。每个角频率是2位可编程,用于放大位于不同频带中的生物信号。带宽可以从0.15 Hz - 2.68 kHz延伸至0.03 Hz - 40.4 kHz。为了避免在差分输出处可能饱和,结合了放电开关。该电路的输入引用噪声为2.99μVRMS集成在0.1 Hz至10 kHz。它是使用0.5μm3M2P CMOS工艺设计和模拟的。该电路处于制造过程中。

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