首页> 外文期刊>Circuits and Systems II: Express Briefs, IEEE Transactions on >A 0.5-V 1.3- src='/images/tex/33389.gif' alt='mutext{W}'> Analog Front-End CMOS Circuit
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A 0.5-V 1.3- src='/images/tex/33389.gif' alt='mutext{W}'> Analog Front-End CMOS Circuit

机译:0.5V 1.3- src =“ / images / tex / 33389.gif” alt =“ mutext {W}”> 模拟前端CMOS电路

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This brief presents a low-power analog acquisition front-end circuit for a Wireless Body Area Network. This front-end system mainly consists of three parts, namely, chopped capacitively coupled instrumentation amplifier (CCIA), switched capacitor filter (SC-filter), and successive-approximation analog-to-digital converter. In order to reduce the power consumption, the supply voltage is scaled to 0.5 V, and all analog building blocks are biased in the subthreshold region. The chopper-stabilized technique is introduced to eliminate the noise, and a dc-servo loop is employed in the CCIA to suppress the electrode offset. A low-power second-order SC-filter is employed to eliminate the spikes produced by the CCIA, which also realizes a tunable gain to satisfy the specification. This low-power analog front-end circuit has been fabricated in a 0.18- CMOS process. It occupies 1 mm2 and consumes a minimal 1.3 at 0.5 V. It achieves a bandwidth of 0.5–250 Hz, a CMRR of 95 dB, and an input impedance of 48 , respectively.
机译:本简介介绍了一种用于无线人体局域网的低功耗模拟采集前端电路。该前端系统主要由三部分组成,即斩波电容耦合仪表放大器(CCIA),开关电容滤波器(SC-filter)和逐次逼近模数转换器。为了降低功耗,将电源电压调整为0.5 V,并且所有模拟模块都在亚阈值区域内偏置。引入了斩波稳定技术来消除噪声,并且在CCIA中采用了直流伺服环路来抑制电极偏移。采用低功率二阶SC滤波器消除了CCIA产生的尖峰,这也实现了可调增益以满足规格要求。该低功耗模拟前端电路是通过0.18-CMOS工艺制造的。它占地1 mm2,在0.5 V电压下最小消耗1.3。它的带宽为0.5–250 Hz,CMRR为95 dB,输入阻抗分别为48。

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