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Improving power efficiency of a two-stage operational amplifier for biomedical applications

机译:提高生物医学应用的两级运算放大器的功率效率

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By using compensation technique with feed-forward path, an improved folded cascode operational transconductance amplifier (OTA) that operates in weak inversion region is designed. The proposed configuration consists of composite transistors, recycling structure and feed-forward compensation path. In comparison with the typical folded cascode CMOS Miller amplifier, this design has higher DC gain, unity gain frequency and slew rate without adversely affecting the noise and offset performance. The presented OTA is simulated in 0.18 μm CMOS technology and the simulation results confirm the theoretical analyses. Finally, the proposed amplifier has a 104.5 dB open-loop DC gain and 69.4 kHz unity gain frequency @ 0.6 V supply voltage while the power consumption is 300 nW.
机译:通过使用具有前馈路径的补偿技术,设计了一种在弱反相区域中工作的改进的折叠共源共栅运算跨导放大器(OTA)。拟议的配置包括复合晶体管,回收结构和前馈补偿路径。与典型的折叠共源共栅CMOS Miller放大器相比,该设计具有更高的DC增益,单位增益频率和压摆率,而不会不利地影响噪声和失调性能。提出的OTA在0.18μmCMOS技术中进行了仿真,仿真结果证实了理论分析。最后,拟议的放大器在电源电压为0.6V时具有104.5dB的开环DC增益和69.4kHz的单位增益频率,而功耗为300nW。

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