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A 64-Channel 965-μW Neural Recording SoC with UWB Wireless Transmission in 130-nm CMOS

机译:具有130nm CMOS的UWB无线传输功能的64通道965μW神经记录SoC

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摘要

This brief presents a 64-channel neural recording system-on-chip (SoC) with a 20-Mb/s wireless telemetry. Each channel of the analog front end consists of a low-noise bandpass amplifier, featuring a noise efficiency factor of 3.11 with an input-referred noise of 5.6 μVrms in a 0.001- to 10-kHz band and a 31.25-kSps 6-fJ/conversion-step 10-bit SAR analog-to-digital converter. The recorded signals are multiplexed in the digital domain and transmitted via an 11.7% efficiency pulse-position modulation ultrawideband transmitter, reaching a transmission range in excess of 7.5 m. The chip has been fabricated in a 130-nm CMOS process, measures 25 mm2, and dissipates 965 μW from a 0.5-V supply. This SoC features the lowest power per channel (15 μW) and the lowest energy per bit (48.2 pJ) among state-of-the-art wireless neural recording systems with a number of channels larger than 32. The proposed circuit is able to transmit the raw neural signal in a large bandwidth (up to 10 kHz) without performing any data compression or losing vital information, such as local field potentials.
机译:本简介介绍了具有20 Mb / s无线遥测功能的64通道神经记录片上系统(SoC)。模拟前端的每个通道均包含一个低噪声带通放大器,其噪声效率系数为3.11,在0.001至10kHz的频带中具有5.6μVrms的输入参考噪声,而其31.25-kSps 6-fJ /转换步骤10位SAR模数转换器。记录的信号在数字域中进行多路复用,并通过11.7%效率的脉冲位置调制超宽带发射机进行传输,传输范围超过7.5 m。该芯片采用130 nm CMOS工艺制造,尺寸为25 mm2,并通过0.5 V电源消耗965μW的功率。该SoC具有最先进的无线神经记录系统,其通道数大于32,它具有每通道最低的功率(15μW)和每位最低的能量(48.2 pJ)。拟议的电路能够发送信号。原始神经信号具有较大的带宽(高达10 kHz),而无需执行任何数据压缩或丢失重要信息(例如局部电场电势)。

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