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Design of low noise low power two stage CMOS operational amplifier using Equivalent Transistor Replacement Technique for health monitoring applications

机译:利用等效晶体管替换技术设计低噪声低功耗两级CMOS运算放大器,用于健康监测应用

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The recent interest of mankind on various personal and real time health monitoring system has accelerated the demand for more efficient and advanced biomedical devices. Physiological signals are comparatively weaker in magnitude (few μV to few mV) and also exhibit lower frequencies. Therefore a low power, low input-referred noise analog front end circuitry is to be designed for filtering and amplifying the biopotential signals before digitizing it. A design methodology using the Equivalent Transistor Replacement Technique (ETRT) for low power and low noise Two Stage Operational Amplifier is the front end circuitry of Biopotential Signal Acquisition System. For providing high output swing a Common Source stage is connected at the output and for the reduction of the input-referred noise a differential PMOS input stage is used. The designed circuit of Op-Amp gives a gain of 61 dB, power consumption 60μw, input-referred noise 37nV/sqHz and bandwidth 20.1 KHz for the 60μA external bias current.
机译:人类最近对各种个人和实时健康监控系统的兴趣加速了对更高效,更先进的生物医学设备的需求。生理信号的强度相对较弱(几微伏至几毫伏),并且显示的频率也较低。因此,应设计一种低功耗,低输入参考噪声的模拟前端电路,以在对生物电势信号进行数字化之前对其进行滤波和放大。一种使用等效晶体管替换技术(ETRT)的低功耗,低噪声两级运算放大器的设计方法是生物电势信号采集系统的前端电路。为了提供高输出摆幅,在输出端连接了一个公共源极级,并且为了降低输入参考噪声,使用了差分PMOS输入级。对于60μA的外部偏置电流,运算放大器的设计电路可提供61 dB的增益,60μw的功耗,37nV / sqHz的输入等效噪声和20.1 KHz的带宽。

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