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Wide-range and precise tissue impedance analysis circuit with ultralow current source using gate-induced drain-leakage current

机译:利用栅极感应的漏漏电流的超低电流源进行宽范围,精确的组织阻抗分析电路

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This paper presents a bioelectrical impedance analysis circuit with ultralow-current source using gate-induced drain-leakage (GIDL) current for biomedical applications. The proposed circuit consists of an ultralow-current reference circuit, a minimal voltage measurement block, a precise current source block, and a digital control logic circuit. The reference circuit generates pico-ampere-order currents based on GIDL current of an n-channel MOSFET. Fabricated in a 0.18μm 1P6M standard CMOS technology, the impedance analysis circuit occupies 0.27mm2 and can measure impedance range from 100Ω to 10MΩ. Experimental results shows that the fabricated current source using GIDL current generates a quite stable ultralow-current of 50pA, 100pA and 200pA, respectively. In addition, the proposed analysis circuit successfully measures the electrode-tissue interface impedance and tissue impedance by functional verification using monolayer and inhomogeneous agarose gel test setup phantom.
机译:本文提出了一种具有超低电流源的生物电阻抗分析电路,该电路使用栅极感应的漏漏(GIDL)电流进行生物医学应用。拟议的电路包括一个超低电流基准电路,一个最小电压测量模块,一个精密电流源模块和一个数字控制逻辑电路。参考电路基于n沟道MOSFET的GIDL电流生成皮安级电流。阻抗分析电路采用0.18μm1P6M标准CMOS技术制造,占地0.27mm2,可测量100Ω至10MΩ的阻抗范围。实验结果表明,使用GIDL电流制造的电流源分别产生了非常稳定的50pA,100pA和200pA的超低电流。另外,所提出的分析电路通过使用单层和不均匀琼脂糖凝胶测试装置模型的功能验证成功地测量了电极-组织界面阻抗和组织阻抗。

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