标题: 应用于心电图之大信号低功耗金氧半带通滤波器
Wide-Range Low-Power CMOS BandPass Filter for ECG Application
作者: 李建勋
洪崇智
Lee, Chien-Hsun
Hung, Chung-Chih
电机学院电信学程
关键字: 转导电容式滤波器;低功耗;转导运算放大器;带通滤波器;Gm-C filter;low power;operational transconductance amplifier (OTA);bandpass filter
公开日期: 2016
摘要: 在人口高龄化及少子化的趋势下,现代人对于医疗服务的需求与日俱增,尤其是健康管理及居家照护等方面已成为全球共同的趋势。其中心脏讯号及时监控系统是结合了医学与科技的产物。
本论文提出一应用于转导电容式滤波器的大信号暨低功耗转导运算放大器,滤波器具有低功耗与中心频率可微调能力,可广泛的应用于生医讯号检测系统。转导运算放大器使用源极退化架构增加线性度,电晶体则操作于弱反转区以达到降低功耗,透过调整转导运算放大器偏压电流而改变转导值大小同时实现调整滤波器中心频率。最后使用转导运算放大器完成四阶电感电容梯型带通滤波器设计,并透过台湾积体电路公司所提供之0.18微米1P6M的标准互补式金氧半制程来完成晶片制作。
转导电容式滤波器在1.8伏特操作电压时,整体功率消耗为410nW,总谐波失真为-59.60dB,晶片面积为0.064mm2。
Nowadays, in the aging society with fewer children, people need more medical services, especially health management, and all aspects of home care has become a common trend in the world, in which the heart signal monitoring system is a combination of medicine and technology.
In this thesis, a CMOS Gm-C filter based on operational transconductance amplifiers (OTAs) with low power and center frequency tuning ability for Bio-analytical applications is proposed. The OTA uses source degeneration to increase the linearity. In order to achieve low power consumption, MOSFETs are designed to work in the weak inversion region. The transconductance and center frequency of the filter can be tuned by changing its bias current. A Fourth-Order Butterworth LC ladder Gm-C bandpass filter implemented with the OTAs was fabricated by TSMC 0.18-μm 1P6M CMOS process.
The total power consumption is 410nW and Total Harmonic Distortion is -59.60dB when the Gm-C filter operates at 1.8V power supply. The active area is 0.064mm2.
URI: http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT079867543
http://hdl.handle.net/11536/138664
显示于类别:Thesis