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应用于神经信号再生系统的跨导放大器

A Transconductance Amplifier for Neural Signals Regeneration System
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摘要 采用华润上华0.6μm标准CMOS混合信号工艺设计了一种应用于植入式神经信号再生系统的跨导放大器。该放大器采用全差分结构以获得高输出摆幅,利用源反馈技术改善线性度,并设计了共模反馈电路以稳定共模输出电压。该跨导放大器工作在5V的电源电压下,具有0.55S的跨导增益和100kHz的3dB带宽,可以满足系统的需要。 An operational transconductance amplifier (OTA) for implantable neural signal regeneration rnicroelectronics system is designed in 0. 6μm standard CMOS mixed signal process of CSMC. The amplifier employs fully differential structure to obtain high output voltage swing, and uses source degeneration techniques to improve the linearity. The common mode feedback (CMFB) circuit is designed meanwhile to stabilize common-mode output voltages. The simulation results of the circuit show that the 3dB-bandwidth is 103 kHz and the transconductance gain is 0. 55S for 5V power supply, which could meet the demand of the system.
作者 顾洵 李文渊
出处 《电子器件》 CAS 2008年第2期520-524,共5页 Chinese Journal of Electron Devices
基金 国家自然科学基金重点资助项目(90307013)
关键词 神经信号再生 跨导放大器 全差分 源反馈 共模反馈 neural signal regeneration transconductance amplifier fully differential source degeneration CMFB
作者简介 顾洵(1983-),男,硕士研究生,主要研究方向为模拟集成电路设计,winston@seu.edu.cn; 李文渊(1964-),男,东南大学副教授,硕士生导师,主要研究方向为模拟,光电和射频集成电路设计,1wy555@seu.edu.cn.
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