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Design of a high gain, Temperature Compensated Biomedical Instrumentation Amplifier for EEG Applications

机译:用于EEG应用的高增益,温度补偿生物医学仪器放大器的设计

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This paper proposes a high gain, low power instrumentation amplifier (IA) for EEG signal processing. A three opamp instrumentation amplifier has been designed by using sub-threshold three-stage op-amps with PMOS input. NMOS transistors operating in the triode region have been used to replace the passive resistors of IA. This eliminates the problems of mismatch, temperature dependency and large area consumption, at the same time taking advantage of the high CMRR and DC offset cancellation properties of conventional IA. A BGR circuitry with temperature coefficient of 420 ppm/°C is used to bias the opamp. The instrumentation amplifier is simulated in Cadence Virtuoso 180nm CMOS technology by using a supply voltage of 1V. It achieves a Gain of 96.4dB, Bandwidth of 400 KHz, input-referred noise voltage of 610nV/√ Hz, CMRR in the range of 60dB and power consumption about 53.7 μW.
机译:本文提出了一种用于脑电信号处理的高增益,低功率仪表放大器(IA)。通过使用具有PMOS输入的亚阈值三级运算放大器,设计了一个三运算放大器仪表放大器。在三极管区域工作的NMOS晶体管已被用来代替IA的无源电阻。这消除了不匹配,温度依赖性和大面积消耗的问题,同时利用了常规IA的高CMRR和DC抵消特性。温度系数为420 ppm /°C的BGR电路用于偏置运算放大器。仪表放大器采用Cadence Virtuoso 180nm CMOS技术,通过使用1V的电源电压进行仿真。它具有96.4dB的增益,400 KHz的带宽,610nV /√Hz的输入参考噪声电压,60dB的CMRR和约53.7μW的功耗。

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