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A Low-Power and Small Chip-Area Multi-Rate Human Body Communication DPFSK Transceiver for Wearable Devices

机译:低功耗和小型芯片区域多速率人体通信DPFSK收发器,可穿戴设备

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摘要

A low-power and small chip-area multi-rate human body communication (HBC) discontinuous-phase FSK (DPFSK) transceiver applied for wearable devices is presented. The transceiver is implemented in UMC 0.18 mu m CMOS process with a small chip area of only 0.46 mm(2). DPFSK modulation is adopted to reduce the hardware complexity of the transceiver. In the receiver, a direct-conversion front-end is adopted to eliminate polarization voltage of the electrode-skin interface. A delay line (DL)-based variable phase shifter used in the demodulator of the receiver is proposed for accomplishing of multi-rate DPFSK demodulation. In the transmitter, a digital frequency interpolator is adopted for achieving multi-rate DPFSK transmission. At a data rate of 1 Mb/s, the receiver and the transmitter consume the power of 1.79 mW and 700 mu W, respectively. Therefore, energy consumption per received and transmitted bit are 1.79 nJ/bit and 0.7 nJ/bit, respectively.
机译:提出了一种低功耗和小型芯片区域的多速率人体通信(HBC)不连续相位FSK(DPFSK)收发器应用于可穿戴设备。收发器在UMC 0.18 mu M CMOS工艺中实现,小芯片面积仅为0.46mm(2)。采用DPFSK调制来降低收发器的硬件复杂性。在接收器中,采用直接转换前端来消除电极皮肤界面的偏振电压。建议在接收器的解调器中使用的延迟线(DL)的可变移相器,用于完成多速率DPFSK解调。在发射器中,采用数字频率内插器来实现多速率DPFSK传输。以1 Mb / s的数据速率,接收器和发射器分别消耗1.79 mw和700 mu w的功率。因此,每个接收和传输位的能量消耗分别为1.79 nj / bit和0.7 nj / bit。

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