The Design of Low Power Op-amp for Biomedical Application

Ameerul Asyraf Nasir, C. Lee, K. Chan, Lini Lee, Senthilpari Chinnaiyan
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Abstract

This work presents a low-power operational amplifier (op-amp) circuit design which optimized and tailored specifically for biomedical circuit application in low power environment. The proposed op-amp design incorporates the folded cascode differential amplifier technique with a low voltage supply 1.2 V, utilizing current biasing, current mirrors, and adopted low-power circuit topologies. AC and DC analysis are carried out to analyse the performance of the proposed design. Extensive simulations executed using industrial standard EDA tool have validated the circuit design, and demonstrated a gain of 70.94 dB, UGBW of 4.90 MHz, GM of 52.70 dB, PM of 82.02 degrees, PSRR of 82.77 dB, CMRR of 100.78 dB, and total power dissipation of only 28.07 mW. Low power consumption is essential for biomedical circuit applications, and the result shows a significant power reduction without compromising other performance parameters. The proposed op-amp circuit design is suitable to be implemented in low-power and high-performance biomedical devices.
为生物医学应用设计低功耗运算放大器
这项研究提出了一种低功耗运算放大器(运算放大器)电路设计,该设计经过优化,专门针对低功耗环境下的生物医学电路应用。所提出的运算放大器设计采用了折叠级联差分放大器技术,使用 1.2 V 低电压电源,利用电流偏置、电流镜和所采用的低功耗电路拓扑结构。对拟议设计的性能进行了交流和直流分析。使用工业标准 EDA 工具执行的大量仿真验证了电路设计,并表明增益为 70.94 dB,UGBW 为 4.90 MHz,GM 为 52.70 dB,PM 为 82.02 度,PSRR 为 82.77 dB,CMRR 为 100.78 dB,总功耗仅为 28.07 mW。低功耗是生物医学电路应用的关键,结果表明,在不影响其他性能参数的情况下,功耗显著降低。所提出的运算放大器电路设计适合在低功耗、高性能的生物医学设备中实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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