IEEE Trans Biomed Circuits Syst. 2020 Oct;14(5):961-970. doi: 10.1109/TBCAS.2020.2999398. Epub 2020 Jun 2.
In this work, a dual-mode stimulus chip with a built-in high voltage generator was proposed to offer a broad-range current or voltage stimulus patterns for biomedical applications. With an on-chip and built-in high voltage generator, this stimulus chip could generate the required high voltage supply without additional supply voltage. With a nearly 20 V operating voltage, the overstress and reliability issues of the stimulus circuits were thoroughly considered and carefully addressed in this work. This stimulus system only requires an area of 0.22 mm per single channel and is fully on-chip implemented without any additional external components. The dual-mode stimulus chip was fabricated in a 0.25-μm 2.5V/5V/12V CMOS (complementary metal-oxide-semiconductor) process, which can generate the biphasic current or voltage stimulus pulses. The current level of stimulus is up to 5 mA, and the voltage level of stimulus can be up to 10 V. Moreover, this chip has been successfully applied to stimulate a guinea pig in an animal experiment. The proposed dual-mode stimulus system has been verified in electrical tests and also demonstrated its stimulation function in animal experiments.
在这项工作中,提出了一种具有内置高压发生器的双模刺激芯片,可为生物医学应用提供广泛的电流或电压刺激模式。 该刺激芯片具有片上内置高压发生器,无需额外的电源电压即可产生所需的高压电源。 工作中彻底考虑并仔细解决了工作电压接近 20 V 时的过应力和可靠性问题。 这种刺激系统每个通道仅需要 0.22 平方毫米的面积,并且完全在片上实现,无需任何外部组件。 双模刺激芯片采用 0.25-μm 2.5V/5V/12V CMOS(互补金属氧化物半导体)工艺制造,可产生双相电流或电压刺激脉冲。 刺激电流高达 5 mA,刺激电压高达 10 V。 此外,该芯片已成功应用于动物实验中刺激豚鼠。 所提出的双模刺激系统已在电气测试中得到验证,并在动物实验中证明了其刺激功能。