IEEE Trans Biomed Circuits Syst. 2020 Dec;14(6):1207-1217. doi: 10.1109/TBCAS.2020.3037452. Epub 2020 Dec 31.
A wireless and battery-less trimodal neural interface system-on-chip (SoC), capable of 16-ch neural recording, 8-ch electrical stimulation, and 16-ch optical stimulation, all integrated on a 5 × 3 mm chip fabricated in 0.35-μm standard CMOS process. The trimodal SoC is designed to be inductively powered and communicated. The downlink data telemetry utilizes on-off keying pulse-position modulation (OOK-PPM) of the power carrier to deliver configuration and control commands at 50 kbps. The analog front-end (AFE) provides adjustable mid-band gain of 55-70 dB, low/high cut-off frequencies of 1-100 Hz/10 kHz, and input-referred noise of 3.46 μV within 1 Hz-50 kHz band. AFE outputs of every two-channel are digitized by a 50 kS/s 10-bit SAR-ADC, and multiplexed together to form a 6.78 Mbps data stream to be sent out by OOK modulating a 434 MHz RF carrier through a power amplifier (PA) and 6 cm monopole antenna, which form the uplink data telemetry. Optical stimulation has a switched-capacitor based stimulation (SCS) architecture, which can sequentially charge four storage capacitor banks up to 4 V and discharge them in selected μLEDs at instantaneous current levels of up to 24.8 mA on demand. Electrical stimulation is supported by four independently driven stimulating sites at 5-bit controllable current levels in ±(25-775) μA range, while active/passive charge balancing circuits ensure safety. In vivo testing was conducted on four anesthetized rats to verify the functionality of the trimodal SoC.
一种无线、无电池的三模态神经接口系统级芯片(SoC),能够进行 16 通道神经记录、8 通道电刺激和 16 通道光刺激,所有功能均集成在一个 5×3mm 的芯片上,该芯片采用 0.35μm 标准 CMOS 工艺制造。该三模态 SoC 设计为感应式供电和通信。下行链路数据遥测利用功率载波的开关键控脉冲位置调制(OOK-PPM)以 50kbps 的速率传输配置和控制命令。模拟前端(AFE)提供可调中频增益为 55-70dB、低/高截止频率为 1-100Hz/10kHz、输入参考噪声为 3.46μV 的带宽为 1Hz-50kHz。每两个通道的 AFE 输出由 50kS/s、10 位 SAR-ADC 进行数字化,并通过功率放大器(PA)和 6cm 单极天线对 OOK 调制的 434MHz RF 载波进行多路复用,形成 6.78Mbps 的数据流,从而构成上行链路数据遥测。光刺激具有基于开关电容的刺激(SCS)架构,可顺序为四个存储电容器组充电至 4V,并根据需要在选定的 μLED 中以高达 24.8mA 的瞬时电流水平放电。电刺激通过四个独立驱动的刺激部位支持 5 位可控电流电平,范围为±(25-775)μA,同时主动/被动电荷平衡电路确保安全性。在四只麻醉大鼠上进行了体内测试,以验证三模态 SoC 的功能。