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A 2.79-mW 0.5-THD CMOS Current Driver IC for Portable Electrical Impedance Tomography System

机译:用于便携式电阻抗断层扫描系统的2.79mW 0.5%-MOS电流驱动IC

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摘要

A low-power and high-accuracy current driver IC is proposed for portable electrical impedance tomography (EIT) systems. The proposed IC supports active electrode configuration and has three key features. First, high output impedance current driver is implemented with phase compensation scheme through a delay-locked loop (DLL) to significantly alleviate a phase shift and a required power consumption in the driver. Second, low-power pseudo-sine wave generator is used not only for a low-harmonic distortion but also for a flexible injection frequency utilization. Through the proposed quantization scheme, total harmonic distortion (THD) is reduced by 35%, achieving THD less than 0.5%. Third, the calibration unit is proposed to compensate injection-current amplitude variations among active electrodes. As a result, the proposed current driver IC guarantees more than 1MΩ output impedance over a wide range of injection current up to 400μA and operating frequency from 1kHz to 5MHz, only consuming 2.79mW.
机译:为便携式电阻断层扫描(EIT)系统提出了低功耗和高精度电流驱动器IC。所提出的IC支持有源电极配置并具有三个关键特征。首先,通过延迟锁定的环路(DLL)用相位补偿方案实现高输出阻抗电流驱动器,以显着降低驾驶员中所需的电力消耗。其次,低功耗伪正弦波发生器不仅用于低谐波失真,而且用于柔性注射频率利用。通过所提出的量化方案,总谐波变形(THD)减少了35%,达到小于0.5%。第三,提出校准单元以补偿有源电极之间的喷射电流幅度变化。结果,所提出的电流驱动器IC可在宽范围内的喷射电流上保证超过1MΩ的输出阻抗,高达400μA和从1KHz到5MHz的工作频率,仅消耗2.79MW。

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