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首页> 外文期刊>IEEE transactions on biomedical circuits and systems >Monopolar Biphasic Stimulator With Discharge Function and Negative Level Shifter for Neuromodulation SoC Integration in Low-Voltage CMOS Process
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Monopolar Biphasic Stimulator With Discharge Function and Negative Level Shifter for Neuromodulation SoC Integration in Low-Voltage CMOS Process

机译:具有放电功能的单极双相刺激器和负水平移位器,用于低压CMOS过程中的神经调节SOC集成

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摘要

A 16-channel monopolar biphasic stimulator chip with discharge function for biomedical applications is proposed and designed. To provide monopolar biphasic stimulus currents, the positive (6V) and the negative (-6V) voltage sources are supported to generate the desired current pulses of +/- 3 mA. The monopolar biphasic stimulator chip was fabricated in a 0.18-mu m 1.8-V/3.3-V CMOS process with the common grounded p-type substrate. The overstress and reliability issues on the low-voltage transistors in the stimulator circuits were fully overcome by circuit design. The silicon area of each single channel only occupies 0.08 mm(2) and the output level of stimulus current is up to +/- 3 mA. By applying the discharge function, safety concern of unbalanced charge in neuro-stimulation can be dealt properly. The residual average dc current is less than 3.42 nA after discharge is activated. Moreover, this chip has also been verified with both in-vitro imitation measurement and in-vivo animal test.
机译:提出了一种具有用于生物医学应用的排出功能的16通道单极双相刺激芯片。为了提供单极双相刺激电流,支持正(6V)和负(-6V)电压源以产生+/- 3 mA的所需电流脉冲。单极双相刺激器芯片用普通的接地p型衬底以0.18-mu m 1.8- v / 3.3V CMOS工艺制造。电路设计完全克服了刺激器电路中低压晶体管上的过光和可靠性问题。每个单通道的硅面积仅占0.08 mm(2),刺激电流的输出水平高达+/- 3 mA。通过应用放电功能,可以适当地处理神经刺激中不平衡电荷的安全问题。在排出后,残留的平均直流电流小于3.42NA。此外,该芯片还通过体外仿真测量和体内动物试验进行了验证。

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