基于电流转向DAC混合架构的可扩展64通道神经刺激器

Mario A. Meza-Cuevas, D. Schroeder, W. Krautschneider
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引用次数: 7

摘要

在这项工作中,提出了一个130纳米CMOS 64通道神经刺激器,它可以通过连接菊花链配置进行扩展,用于需要大量刺激位点的应用,因为它对具有提高分辨率的视网膜植入物感兴趣。每个通道由一个混合架构电流转向8位DAC组成,在小芯片面积上实现低功耗和高通道集成度。此外,DAC允许多种波形的刺激,以节省刺激能量。采用片上模块控制PEDOT在电极上的恒流沉积。提出了一种避免交叉电极刺激和工艺失配引起的剩余电荷的方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A scalable 64 channel neurostimulator based on a hybrid architecture of current steering DAC
In this work a 130 nm CMOS 64 channel neural stimulator is presented, which is scalable by connecting it in a daisy chain configuration, for applications requiring larger number of stimulation sites, as it is of interest for retinal implants with improved resolution. Each channel is composed of a hybrid architecture current steering 8 bit DAC, enabling the low power consumption and high channel integration on a small chip area. Besides, the DAC allows stimulating with several waveforms in order to save stimulation energy. An on-chip module was implemented to control galvanostatic deposition of PEDOT on the electrodes. A schema is presented to avoid the residual charge due to cross electrode stimulation and process mismatch.
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