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Two Stage CMOS Operational Amplifier In 0.13 μm Technology Using Pseudo Cascode Compensation

机译:使用伪Cascode补偿的0.13μm技术的两个阶段CMOS运算放大器

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Various wireless, implantable and wearable devices are used for continuous monitoring of health condition. These devices consist of various type of biosensor such as pacemaker. The operational amplifier (op-amp) is an example of an extended device which is located at the front end of this biosensor. The op-amp plays an important role of amplifying the strength of a signal. This paper focuses on the development of a two stage CMOS op-amp in 0.13 μm technology using pseudo cascode compensation technique. The pseudo cascode compensation technology is proposed to enhance the stability of a circuit. The op-amp is implemented using 0.13 μm CMOS technology from Siltera (Malaysia) and is simulated using a Mentor Graphic Design Architect software package. The proposed op amp achieved DC gain of 57.87 dB, unity gain frequency of 57.390 kHz, bandwidth of 54.87 Hz and power dissipation of 3.02 mW for 50 μA external bias current. The op-amp shows exceptionally stable operation with phase margin of 80.65 ° and gain margin of 10.901 dB.
机译:各种无线,可植入和可穿戴设备用于持续监测健康状况。这些装置包括各种类型的生物传感器,如起搏器。操作放大器(OP-AMP)是位于该生物传感器的前端的扩展设备的示例。 OP-AMP在放大信号强度的作用起着重要作用。本文侧重于使用伪Cascode补偿技术在0.13μm技术中开发两级CMOS OP-AMP。提出了伪Cascode补偿技术来提高电路的稳定性。 OP-AMP使用来自Siltera(马来西亚)的0.13μmCMOS技术实现,并使用导师图形设计建筑师软件包进行模拟。所提出的运算放大器实现了57.87 dB的直流增益,Unity增益频率为57.390 kHz,带宽为54.87 Hz,功耗为3.02 mW,为50μA外部偏置电流。 OP-AMP显示出极稳定的操作,相位裕量为80.65°,增益余量为10.901 dB。

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