首页> 外文会议>2011 18th IEEE International Conference on Electronics, Circuits and Systems >Fully-integrated, large-time-constant, low-pass, Gm-C filter based on current conveyors
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Fully-integrated, large-time-constant, low-pass, Gm-C filter based on current conveyors

机译:基于电流传送器的全集成,大时间常数,低通,Gm-C滤波器

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This paper describes a low-power fully integrated CMOS low-pass filter with extremely low cut-off frequency range for use in implantable biomedical applications. The filter takes advantage of system-level properties of applying indirect negative feedback on an OTA to realize a low-cut-off frequency. It also features active capacitance multiplication using a second-generation current conveyor. Both of these techniques help reduce the silicon area of the proposed low-pass filter. Based on the proposed idea, a 1st-order low-pass Gm-C filter was designed in a 0.5-μm standard CMOS process, occupying a core area of 0.0048mm2. Cut-off frequency of the filter is tunable from 0.75Hz to 9.4Hz. Operated with ±1.5V supply voltages, power consumption of the filter ranges from 50nW to 740nW.
机译:本文介绍了一种具有低截止频率范围的低功率全集成CMOS低通滤波器,用于植入式生物医学应用。该滤波器利用了在OTA上施加间接负反馈来实现低截止频率的系统级特性。它还具有使用第二代电流传输器进行有源电容倍增的功能。这两种技术均有助于减小所提出的低通滤波器的硅面积。基于所提出的思想,在0.5μm标准CMOS工艺中设计了一个 阶低通Gm-C滤波器,其核心面积为0.0048mm 2 。滤波器的截止频率可在0.75Hz至9.4Hz范围内调节。在±1.5V的电源电压下工作,滤波器的功耗范围为50nW至740nW。

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