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An Analog Receiver Front-End for Capacitive Body-Coupled Communication

机译:用于电容体耦合通信的模拟接收器前端

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This paper presents an analog receiver front-end design (AFE) for capacitive body-coupled digital baseband receiver. The most important theoretical aspects of human body electrical model in the perspective of capacitive body-coupled communication (BCC) have also been discussed and the constraints imposed by gain and input-referred noise on the receiver front-end are derived from digital communication theory. Three different AFE topologies have been designed in ST 40-nm CMOS technology node which is selected to enable easy integration in today's system-on-chip environments. Simulation results show that the best AFE topology consisting of a multi-stage AC-coupled preamplifier followed by a Schmitt trigger achieves 57.6 dB gain with an input referred noise PSD of 4.4 nV/√Hz at 6.8 mW.
机译:本文介绍了一种用于电容式体耦合数字基带接收器的模拟接收器前端设计(AFE)。还讨论了在电容体耦合通信(BCC)的角度下的人体电气模型的最重要的理论方面,并且通过数字通信理论导出了由接收器前端的增益和输入引用的噪声施加的约束。在ST 40-NM CMOS技术节点中设计了三种不同的AFE拓扑结构,该节点被选中,以便在当今的片上环境中轻松集成。仿真结果表明,由多级交流耦合前置放大器组成的最佳AFE拓扑,后跟施密特触发器达到57.6dB增益,输入引用噪声PSD为4.4 nV /√Hz。

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