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Ultra low power PVT independent sub-threshold gm-C filters for low frequency biomedical applications

机译:超低功耗PVT独立亚阈值GM-C滤波器,用于低频生物医学应用

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An ultra low power gm-C filter for low cut-off frequency bio-medical implantable applications is presented in this paper. The design is based on a novel trans-conductance stage operating in the sub-threshold region with a PVT independent fixed replica gm biasing circuit. The significant variation in gm with respect to temperature due to channel length modulation is corrected using a parallel combination of two gm blocks of different value. The circuit performance remains nearly constant for a supply voltage range of 1.1–1.7 V. A general biquad filter has been implemented and simulations show about 1% variation in the 3-dB bandwidth (in the range of few hertz) for a temperature range of −30 to 110°C. The circuit has been implemented using 0.5 μm CMOS technology with a nominal supply voltage of 1.2 V and power consumption for each gm block is 55.3 nW.
机译:本文介绍了一种用于低截止频率生物医学植入式应用的超低功耗gm-C滤波器。该设计基于一种新颖的跨导级,该级在亚阈值区域内运行,具有独立于PVT的固定复制gm偏置电路。使用两个不同值的gm块的并行组合,可以校正由于通道长度调制导致的gm相对于温度的显着变化。在1.1–1.7 V的电源电压范围内,电路性能几乎保持不变。已经实现了通用的双二阶滤波器,仿真结果表明,在温度范围为-1℃时,3-dB带宽(在几赫兹的范围内)变化约1%。 -30至110°C该电路使用0.5μmCMOS技术实现,额定电源电压为1.2 V,每个gm模块的功耗为55.3 nW。

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