Mohseni Pedram, Najafi Khalil
Center for Wireless Integrated MicroSystems, Electrical Engineering and Computer Science Department, University of Michigan, Ann Arbor, MI 48109-2122, USA.
IEEE Trans Biomed Eng. 2004 May;51(5):832-7. doi: 10.1109/TBME.2004.824126.
This paper presents a low-power low-noise fully integrated bandpass operational amplifier for a variety of biomedical neural recording applications. A standard two-stage CMOS amplifier in a closed-loop resistive feedback configuration provides a stable ac gain of 39.3 dB at 1 kHz. A subthreshold PMOS input transistor is utilized to clamp the large and random dc open circuit potentials that normally exist at the electrode-electrolyte interface. The low cutoff frequency of the amplifier is programmable up to 50 Hz, while its high cutoff frequency is measured to be 9.1 kHz. The tolerable dc input range is measured to be at least +/- 0.25 V with a dc rejection factor of at least 29 dB. The amplifier occupies 0.107 mm2 in die area, and dissipates 115 microW from a 3 V power supply. The total measured input-referred noise voltage in the frequency range of 0.1-10 kHz is 7.8 microVrms. It is fabricated using AMI 1.5 microm double-poly double-metal n-well CMOS process. This paper presents full characterization of the dc, ac, and noise performance of this amplifier through in vitro measurements in saline using two different neural recording electrodes.
本文提出了一种用于多种生物医学神经记录应用的低功耗、低噪声全集成带通运算放大器。采用闭环电阻反馈配置的标准两级CMOS放大器在1 kHz时提供39.3 dB的稳定交流增益。利用亚阈值PMOS输入晶体管来钳制通常存在于电极 - 电解质界面的大的随机直流开路电位。该放大器的低截止频率可编程高达50 Hz,而其高截止频率测得为9.1 kHz。可容忍的直流输入范围测得至少为+/- 0.25 V,直流抑制因子至少为29 dB。该放大器的芯片面积为0.107 mm²,从3 V电源汲取115 μW的功耗。在0.1 - 10 kHz频率范围内测得的总输入参考噪声电压为7.8 μVrms。它采用AMI 1.5微米双多晶硅双金属n阱CMOS工艺制造。本文通过在盐水中使用两种不同的神经记录电极进行体外测量,全面表征了该放大器的直流、交流和噪声性能。