摘要
采用CSMC0·6μmCMOS工艺设计实现了低压、低功耗的多级运算跨导放大器。本设计引入了无密勒电容的前馈补偿技术,规避了芯片集成电容以降低噪声并减小成本,获得了高达630MHz的单位增益带宽以及79度裕度的高稳定性。电路工作于2·5V±1·25V),功耗16mW,开环直流增益85dB,3dB带宽116kHz,可基本满足神经信号检测的应用要求。
A low-voltage low-power operational transconductance amplifier has been realized in CSMC's 0.6μm CMOS technology. To decrease the noise, the power consumption and the chip size, a robust feed-forward compensation scheme was introduced to eliminate the on-chip Miller capacitance. The amplifier had a gain-bandwidth of 630MHz and a phase margin of 79°. The amplifier could operate under 2.5V(±1.25V) with a power consumption of 16mW, achieving a DC gain of 85dB and a 3dB-bandwidth of 116 kHz. On-wafer test showed that the amplifier had the potential of applying in neural signal recording.
出处
《中国生物医学工程学报》
CAS
CSCD
北大核心
2006年第2期192-196,201,共6页
Chinese Journal of Biomedical Engineering
基金
国家自然科学基金资助项目(69825101)
国家自然科学基金重大研究计划重点资助项目(90377013)
关键词
神经信号检测
运算跨导放大器
前馈补偿
CMOS工艺
nerve signal recording
operational transconducance amplifier
feedforward compensation
CMOS