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A novel capacitively-coupled instrumentation amplifier employing chopping and auto-zeroing

机译:一种采用斩波和自动归零的新型电容耦合仪表放大器

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This paper presents a novel low power high precision instrumentation amplifier (IA) for general sensors. By using capacitively-coupled topology, wide input common-mode range, high gain accuracy and low power consumption is achieved. To reduce high output ripples caused by chopping technique and avoid noise aliasing effect due to auto-zeroing technique, these two techniques are employed simultaneously in this novel IA to alleviate their own adverse effects. The designed IA was implemented in SMIC 0.18µm CMOS process, and its core area is 0.28mm2. Simulations show that it consumes only 4.5µA current at 1V supply and the equivalent input noise power spectrum density (PSD) is 42.66nV/√Hz around 100Hz.
机译:本文提出了一种适用于一般传感器的新型低功耗高精度仪表放大器(IA)。通过使用电容耦合拓扑,可以实现宽输入共模范围,高增益精度和低功耗。为了减少斩波技术引起的高输出纹波并避免由于自动调零技术引起的噪声混叠效应,在本新颖的IA中同时采用了这两种技术以减轻其自身的不利影响。设计的IA采用SMIC 0.18µm CMOS工艺实现,其核心面积为0.28mm 2 。仿真表明,在1V电源下,它仅消耗4.5µA电流,等效输入噪声功率谱密度(PSD)在100Hz左右为42.66nV /√Hz。

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