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A Frequency-Division Transceiver for Long-Range Neural Signal Recording From
提出一种用于长距离多点多通道神经信号记录的频分收发器SoC,显著降低功耗。
4.18 mW功耗, 16通道神经信号记录, -5 dBm发射功率, -91 dB接收灵敏度, 8米工作距离
神经信号记录频分收发器低功耗SoC多通道
▸基于连续相位调制的极坐标发射器
▸频分多址协调接收方法
▸可配置级联积分梳状子带滤波器组时间复用解调算法
Abstract
This article proposed a multiple-point multiple- channel wireless neural signal recording system-on-chip (SoC) integrated a frequency-division (FD) transceiver. In order to reduce the on-chip power consumption, a continuous phase modulation-based polar transmitter (TX) was proposed for the uplink data, enabling two modes with different data rates. A single-channel phase-tracking receiver (RX) was proposed for a low-power downlink to receive control commands. An FD multiple access-based coordinator receiving method was pro- posed, enabling multiple-point recording without increasing the power consumption of the on-body side. A configurable cascaded- integrator-comb sub-band filter bank-based time-multiplexing demodulation algorithm was proposed with 20× and 5× reduc- tion of the number of multiply accumulates (MACs) and their operations compared with the direct filter method, respectively. Experimental results show a power consumption of 4.18 mW for the SoC with 16-channel neural signal recording and −5-dBm transmitter output power. The on-chip receiver con- sumes 3.81 mW in the waiting signal stage and 3.26 mW in the demodulation stage. A sensitivity of −91 dB was achieved for the on-chip phase-tracking receiver. In the bench test, a working distance longer than 8 m was measured for the whole system under the worst case scenario in the configuration of ten devices. In vivo tests were performed on multiple freely moving rats in an open field, validating the proposed system in