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Design of Low-Frequency Low-Pass Filters for Biomedical Applications

机译:用于生物医学应用的低频低通滤波器的设计

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This paper presents the design method of very low-frequency current-mode low-pass filters for biomedical applications. The double-output operational transconductance amplifiers and grounded capacitors (DO-OTA-Cs) are used to realize the proposed low-frequency low-pass filters. The theory focuses mainly on establishing a relationship between the cascaded DO-OTA-Cs and the multiple-loop feedback connections, which make the design formulas. For the implementation of large time constants of the proposed low-pass filters, both linearized DO-OTAs with reduced transconductance and impedance scaler scheme for grounded capacitors are employed. Physical chip design of a leapfrog low-frequency low-pass filter was fabricated by using TSMC 035-um 2P4M CMOS process. With an active area of 1240μm × 490μm and working at 1.5 V, the circuit dissipates about 96.5 nW and the -3 dB frequency is around 3.8 Hz. Also, the measurement results are presented to verify the theoretical analysis.
机译:本文介绍了用于生物医学应用的非常低频电流模式低通滤波器的设计方法。双输出操作跨导放大器和接地电容器(DO-OTA-CS)用于实现所提出的低频低通滤波器。该理论主要侧重于建立级联DO-OTA-CS和多环反馈连接之间的关系,这使得设计公式。为了实现所提出的低通滤波器的大时间常数,采用具有降低的跨导和阻抗缩放器方案的线性化DO-OTA用于接地电容器。通过使用TSMC 035-UM 2P4M CMOS工艺制造跨越式低频低通滤波器的物理芯片设计。有一个1240μm×490μm的有效面积并在1.5 V工作,电路耗散约96.5 NW,-3 dB频率约为3.8Hz。此外,提出了测量结果以验证理论分析。

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