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A 1024-Channel GFET 10-bit 5-kHz 36-μW Read-Out Integrated Circuit for Brain JLECoG

机译:一个1024通道GFET 10位5-KHz 36-μW用于脑JLECOG的读出集成电路

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This paper presents a 1024-channel ROIC for brain massive digital μECoG, which uses liquid-gate GFETs as active sensors. The proposed channel multiplexing technique at the recording array level allows strong reductions of the sensor-to-circuit connectivity, low-cost hybrid integration and low-power operation. A mixed-signal ROIC architecture and CMOS circuit solutions are introduced to compensate for GFET mismatching and for the preamplifier noise figure loss when upscaling the number of recording sites. The 1024-channel 10-bit 5-kHz 36-μ$W$ single-chip design is currently being integrated in 0.18-μm CMOS technology and post-layout simulation results are reported.
机译:本文介绍了一个1024通道的脑大量数字μecog,它使用液门GFET作为有源传感器。在录制阵列电平时,所提出的信道复用技术允许对传感器到电路连接,低成本混合集成和低功耗操作的强制性强制降低。引入混合信号ROIC架构和CMOS电路解决方案以补偿GFET不匹配,并且在升高记录站点的数量时进行前置放大器噪声系数丢失。 1024通道10位5-kHz 36-μ $ w $ 单芯片设计目前集成在0.18-μmCMOS技术中,并报告了后置的仿真结果。

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