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Design of Ultra-Low Power Biopotential Amplifiers for Biosignal Acquisition Applications

机译:用于生物信号采集应用的超低功率生物电势放大器的设计

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Rapid development in miniature implantable electronics are expediting advances in neuroscience by allowing observation and control of neural activities. The first stage of an implantable biosignal recording system, a low-noise biopotential amplifier (BPA), is critical to the overall power and noise performance of the system. In order to integrate a large number of front-end amplifiers in multichannel implantable systems, the power consumption of each amplifier must be minimized. This paper introduces a closed-loop complementary-input amplifier, which has a bandwidth of 0.05 Hz to 10.5 kHz, an input-referred noise of 2.2 $mu$ V$_{rm rms}$ , and a power dissipation of 12 $mu$W. As a point of comparison, a standard telescopic-cascode closed-loop amplifier with a 0.4 Hz to 8.5 kHz bandwidth, input-referred noise of 3.2 $mu$ V$_{rm rms}$ , and power dissipation of 12.5 $mu$W is presented. Also for comparison, we show results from an open-loop complementary-input amplifier that exhibits an input-referred noise of 3.6 $mu$ V$_{rm rms}$ while consuming 800 nW of power. The two closed-loop amplifiers are fabricated in a 0.13 $mu$ m CMOS process. The open-loop amplifier is fabricated in a 0.5 $mu$m SOI-BiCMOS process. All three amplifiers operate with a 1 V supply.
机译:微型植入式电子产品的快速发展通过允许观察和控制神经活动来加快神经科学的发展。可植入生物信号记录系统的第一阶段,即低噪声生物电势放大器(BPA),对于系统的整体功率和噪声性能至关重要。为了在多通道可植入系统中集成大量前端放大器,必须将每个放大器的功耗降至最低。本文介绍了一种闭环互补输入放大器,其带宽为0.05 Hz至10.5 kHz,参考输入噪声为2.2 $ mu $ V $ _ {rm rms} $,功耗为12 $ mu $ W。作为比较,一个标准的可伸缩共源共栅闭环放大器具有0.4 Hz至8.5 kHz带宽,3.2μmu$ V $ _ {rm rms} $的输入参考噪声和12.5μmu$的功耗W出现。同样为了进行比较,我们显示了一个开环互补输入放大器的结果,该放大器在输入功耗为800 nW的情况下,具有3.6μm的输入参考噪声。两个闭环放大器以0.13μmCMOS工艺制造。开环放大器以0.5μm的SOI-BiCMOS工艺制造。所有三个放大器均以1 V电源供电。

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