A fully differential R-MOSFET-C fourth-order Bessel active lowpass filter employing fully differential operational amplifier,passive resistors,and current-steering MOS transistors as a variable resistor is proposed.T...A fully differential R-MOSFET-C fourth-order Bessel active lowpass filter employing fully differential operational amplifier,passive resistors,and current-steering MOS transistors as a variable resistor is proposed.This proposed implementation relies on the tunability of current-steering MOS transistors operating in the triode region counteracting the concert deviation of resistor in the integrated circuit manufacturing technology in orde r that the group delay of Bessel active filter could be designed accurately.The amplifier is not only with voltage common-mode negative feedback,but also with current common-mode negative feedback,which will benefit for the stability of its D C operating point.0.75μs group delay fourth-order Bessel lowpass filter,whic h is synthesized according to passive doubly terminated RLC prototype lowpass filter,demonstrates better than -65dB THD using 100kHz,2.5V pp signal in Taiwan UMC 2P2M(2-poly,2-metal)5.0V,0.5μm CMOS technology.展开更多
本文提出了适用于医学领域的R-MOSFET-C滤波器,采用MOSFET代替传统RC有源滤波器中的电阻,实现可调、超低截止频率。该滤波器采用UMC 0.13 m CMOS工艺,电源电压为1.2V。仿真结果显示,当外部可调电压,即MOSFET的栅电压在0.6V到0.84V之间...本文提出了适用于医学领域的R-MOSFET-C滤波器,采用MOSFET代替传统RC有源滤波器中的电阻,实现可调、超低截止频率。该滤波器采用UMC 0.13 m CMOS工艺,电源电压为1.2V。仿真结果显示,当外部可调电压,即MOSFET的栅电压在0.6V到0.84V之间变化时,截止频率可随之在0.2Hz到292.8Hz之间变化。展开更多
文摘A fully differential R-MOSFET-C fourth-order Bessel active lowpass filter employing fully differential operational amplifier,passive resistors,and current-steering MOS transistors as a variable resistor is proposed.This proposed implementation relies on the tunability of current-steering MOS transistors operating in the triode region counteracting the concert deviation of resistor in the integrated circuit manufacturing technology in orde r that the group delay of Bessel active filter could be designed accurately.The amplifier is not only with voltage common-mode negative feedback,but also with current common-mode negative feedback,which will benefit for the stability of its D C operating point.0.75μs group delay fourth-order Bessel lowpass filter,whic h is synthesized according to passive doubly terminated RLC prototype lowpass filter,demonstrates better than -65dB THD using 100kHz,2.5V pp signal in Taiwan UMC 2P2M(2-poly,2-metal)5.0V,0.5μm CMOS technology.
文摘本文提出了适用于医学领域的R-MOSFET-C滤波器,采用MOSFET代替传统RC有源滤波器中的电阻,实现可调、超低截止频率。该滤波器采用UMC 0.13 m CMOS工艺,电源电压为1.2V。仿真结果显示,当外部可调电压,即MOSFET的栅电压在0.6V到0.84V之间变化时,截止频率可随之在0.2Hz到292.8Hz之间变化。