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A Wireless FSCV Monitoring IC with Analog Background Subtraction and UWB Telemetry

机译:具有模拟背景减法和UWB遥测功能的无线FSCV监视IC

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摘要

A 30-μW wireless fast-scan cyclic voltammetry monitoring integrated circuit for ultra-wideband (UWB) transmission of dopamine release events in freely-behaving small animals is presented. On-chip integration of analog background subtraction and UWB telemetry yields a 32-fold increase in resolution versus standard Nyquist-rate conversion alone, near a four-fold decrease in the volume of uplink data versus single-bit, third-order, delta-sigma modulation, and more than a 20-fold reduction in transmit power versus narrowband transmission for low data rates. The 1.5-mm2 chip, which was fabricated in 65-nm CMOS technology, consists of a low-noise potentiostat frontend, a two-step analog-to-digital converter (ADC), and an impulse-radio UWB transmitter (TX). The duty-cycled frontend and ADC/UWB-TX blocks draw 4 μA and 15 μA from 3-V and 1.2-V supplies, respectively. The chip achieves an input-referred current noise of 92 pArms and an input current range of ±430 nA at a conversion rate of 10 kHz. The packaged device operates from a 3-V coin-cell battery, measures 4.7 × 1.9 cm2, weighs 4.3 g (including the battery and antenna), and can be carried by small animals. The system was validated by wirelessly recording flow-injection of dopamine with concentrations in the range of 250 nM to 1 μM with a carbon-fiber microelectrode (CFM) using 300-V/s FSCV.
机译:提出了一种30μW无线快速扫描循环伏安监测集成电路,用于自由行为的小动物中多巴胺释放事件的超宽带(UWB)传输。与仅标准奈奎斯特速率转换相比,模拟本底减法和UWB遥测的片上集成可将分辨率提高32倍,与单比特,三阶delta-sup相比,上行链路数据量的降低近四倍。 Sigma调制,与低带宽数据传输相比,窄带传输的发射功率降低了20倍以上。 1.5毫米 2 芯片采用65纳米CMOS技术制造,由一个低噪声恒电位仪前端,一个两步模数转换器(ADC)和一个脉冲-无线电UWB发射机(TX)。占空比的前端和ADC / UWB-TX模块分别从3V和1.2V电源汲取4μA和15μA。该芯片以10 kHz的转换速率实现了92 pArms的输入参考电流噪声和±430 nA的输入电流范围。封装后的设备使用3V纽扣电池工作,尺寸为4.7×1.9 cm 2 ,重量为4.3 g(包括电池和天线),可以由小动物携带。该系统通过使用300-V / s FSCV用碳纤维微电极(CFM)无线记录浓度为250 nM至1μM的多巴胺的流动注射来验证。

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