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A compact large Voltage-compliance high output-impedance programmable current source for implantable microstimulators

机译:用于植入式微刺激器的紧凑型大电压兼容高输出阻抗可编程电流源

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摘要

A new CMOS current source is described for biomedical implantable microstimulator applications, which utilizes MOS transistors in deep triode region as linearized voltage controlled resistors (VCR). The VCR current source achieves large voltage compliance, up to 97% of the supply voltage, while maintaining high output impedance in the 100 M/spl Omega/ range to keep the stimulus current constant within 1% of the desired value irrespective of the site and tissue impedances. This approach improves stimulation efficiency, extends power supply lifetime, and saves chip area especially when the stimulation current level is high in the milliampere range. A prototype 4-channel microstimulator chip is fabricated in the AMI 1.5-/spl mu/m, 2-metal, 2-poly, n-well standard CMOS process. With a 5-V supply, each stimulating site driver provides at least 4.25-V compliance and >10 M/spl Omega/ output impedance, while sinking up to 210 /spl mu/A, and occupies 0.05 mm/sup 2/ in chip area. A modular 32-site wireless neural stimulation microsystem, utilizing the VCR current source, is under development.
机译:描述了一种用于生物医学植入式微刺激器应用的新型CMOS电流源,该电流源利用深三极管区域中的MOS晶体管作为线性压控电阻(VCR)。 VCR电流源可实现大电压顺从性,最高可达到电源电压的97%,同时将高输出阻抗保持在100 M / spl Omega /范围内,以使激励电流恒定保持在所需值的1%之内,而不管位置和位置如何。组织阻抗。这种方法提高了刺激效率,延长了电源寿命,并节省了芯片面积,特别是当刺激电流水平在毫安范围内较高时。原型4通道微刺激器芯片采用AMI 1.5- / spl mu / m,2金属,2多晶硅,n阱标准CMOS工艺制造。采用5 V电源时,每个激励站点驱动器至少可提供4.25 V电压和> 10 M / spl Omega /输出阻抗,同时灌电流高达210 / spl mu / A,并在芯片中占0.05 mm / sup 2 /区域。正在开发利用VCR电流源的模块化32位无线神经刺激微系统。

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