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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A 230-nW 10-s time constant CMOS integrator for an adaptive nerve signal amplifier
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A 230-nW 10-s time constant CMOS integrator for an adaptive nerve signal amplifier

机译:用于自适应神经信号放大器的230nW 10s时间常数CMOS积分器

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摘要

This paper describes a micropower CMOS integrator with an extremely large time constant for use in a variety of low-frequency signal processing applications. The specific use of the integrator in an implantable biomedical integrated circuit is described. The integrator is based on the OTA-C approach and a very small transconductance of 100 pA/V was achieved by cascading a short chain of transconductance-transimpedance stages. The time constant of the integrator is tunable between about 0.2 and 10 s, and any offset voltages at the output terminal can be trimmed out. The circuit was fabricated in a 0.8-Μm CMOS process, dissipates 230 nW from ±1.5 V power supplies (excluding the bias circuitry and output buffers) and has a core area of 0.1 mm2. The integrator offers superior performance in terms of power consumption, die area and time constant when compared to previously published work.
机译:本文介绍了一种具有非常大的时间常数的微功率CMOS集成器,可用于各种低频信号处理应用。描述了积分器在可植入生物医学集成电路中的具体用途。该积分器基于OTA-C方法,通过级联跨导跨导级的短链可实现非常小的100 pA / V跨导。积分器的时间常数可在约0.2到10 s之间调整,并且输出端的任何失调电压都可以修整。该电路采用0.8μmCMOS工艺制造,从±1.5 V电源(不包括偏置电路和输出缓冲器)耗散230 nW的电流,其核心面积为0.1 mm2。与先前发布的作品相比,该集成器在功耗,芯片面积和时间常数方面均具有出色的性能。

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