← 返回 JSSC 论文列表JSSC 2010第9期Other0.18μm 32V CMOS
An Integrated 256-Channel Epiretinal Prosthesis Kuanfu Chen, Zhi Yang, Linh Hoang, James Weiland, Mark Humayun, and
本文介绍了一种集成256通道视网膜假体电路,采用双频遥测技术实现高效能量传输与高速数据传输。
256通道,2Mbps数据传输,100mW功率传输,10V输出耐压
视网膜假体双频遥测刺激器高电压兼容可编程控制
▸创新点1:双频遥测子系统(2MHz和22MHz)——系统创新,采用双频设计实现高效能电力传输(100mW)与高速数据传输(2Mbps),2MHz用于电力传输优化效率,22MHz用于数据通信提升带宽,解决了传统单频系统效率与速率难以兼顾的问题。
▸创新点2:混合模式多电压设计——电路创新,通过结合数字控制与高压输出(10V兼容电压)的混合模式设计,在TSMC 0.18μm 32V工艺下实现高电压耐受性,同时优化像素面积,提升集成度与可靠性。
▸创新点3:可编程256通道刺激器——系统创新,每个像素配备本地数字控制器,支持独立编程脉冲宽度与幅度,实现256通道并行刺激的灵活配置,为视网膜修复提供高度定制化治疗能力。
▸创新点4:高密度集成架构——电路创新,在芯片上直接构建256个刺激驱动电极的接触垫,减少外部布线复杂度,提升系统整体稳定性与临床适用性。
Abstract
This paper reports an integrated 256-channel epiretinal prosthesis integrated circuit (IC). This epiretinal pros- thesis system consists of a power telemetry subsystem to deliver 100 mW power, a data telemetry subsystem to transfer 2 Mbps data, digital controllers to decode stimulation patterns, and a 256-channel stimulator to generate user programmable bi-phasic current stimuli. In this study, dual-band telemetry is adopted to achieve both high power efficiency and high data rate. Frequencies of 2 and 22 MHz are chosen for power and data carrier frequen- cies, respectively. A mixed-mode and multiple-voltage design is applied to the stimulator for withstanding a high-compliance voltage of 10 V at the output stage as well as for reducing the area of each pixel. To add flexibility to the stimulator, each pixel has a local digital controller, which enables the stimulator IC to generate 256 parallel stimulations with various pulse widths and amplitudes. The chip is fabricated in TSMC 0.18 m 32 V CMOS process with 256 area pads constructed above the stimulus current drivers.