Kim K H, Kim S J
School of Electrical Engineering, Seoul National University, Korea.
IEEE Trans Biomed Eng. 2000 Aug;47(8):1097-105. doi: 10.1109/10.855938.
A systematic design guideline is presented for the noise performance of preamplifier for semiconductor neural probe which contains on-chip electronic circuitry. The overall signal-to-noise ratio (SNR) is calculated considering the spectral characteristics of the measured extracellular action potential and the low-frequency noise spectrum of the CMOS device from typical fabrication processes. An analytical expression of the output noise power is derived, and utilized to tailor the frequency response and device parameters which are controllable by the circuit designer. An analysis of the output SNR of a two-stage CMOS differential amplifier is given and the major factors which have significant effects on the SNR are determined. We showed that a little deviation of the input device sizes and transconductance ratio from the optimal values can significantly deteriorate the SNR. Quantitative information of the preamplifier circuit parameters for satisfactory noise performance is provided.
针对包含片上电子电路的半导体神经探针前置放大器的噪声性能,提出了一种系统的设计指南。考虑到测量的细胞外动作电位的频谱特性以及典型制造工艺中CMOS器件的低频噪声频谱,计算了整体信噪比(SNR)。推导了输出噪声功率的解析表达式,并用于调整电路设计者可控制的频率响应和器件参数。对两级CMOS差分放大器的输出SNR进行了分析,并确定了对SNR有显著影响的主要因素。我们表明,输入器件尺寸和跨导比与最佳值稍有偏差就会显著降低SNR。提供了用于获得令人满意的噪声性能的前置放大器电路参数的定量信息。