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Current Measurement Transducer Based on Current-To-Voltage-To-Frequency Converting Ring Oscillator with Cascade Bias Circuit

机译:基于电流 - 电压到频率转换环振荡器的电流测量传感器,具有级联偏置电路

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We propose a ring oscillator (RO) based current-to-voltage-to-frequency (I-V-F) converting current transducer with a cascade bias circuit. The I-V-F converting scheme guarantees highly stable biasing against RO, with a rail-to-rail output operation. This device was fabricated using National NanoFab Center (NNFC) 180 nm complementary metal-oxide-semiconductor (CMOS) technology, which achieves a current resolution of 1 nA in a measurement range up to 200 nA. A noise floor of 11.8 pA/root Hz, maximum differential nonlinearity (DNL) of 0.15 in 1 nA steps, and rail-to-rail output with a 1.8 V power supply is achieved. The proposed transducer can be effectively applied to bio-sensing devices requiring a compact area and low power consumption with a low current output. The fabricated structure can be applied to monolithic-three-dimensional integration with a bio-sensing device.
机译:我们提出了一种基于环形振荡器(RO)的电流 - 到电压 - 频率(I-V-F),其具有级联偏置电路的电流换能器。 I-V-F转换方案保证对RO的高度稳定偏置,具有轨到轨输出操作。 该装置是使用国家纳米烃中心(NNFC)180nm互补金属氧化物 - 半导体(CMOS)技术制造的,该技术在测量范围内实现了1NA的电流分辨率,高达200A。 11.8 PA / ROOT HZ的噪声底板,最大差分非线性(DNL)为0.15英寸步进,达到1.8V电源的轨到轨输出。 所提出的换能器可以有效地应用于需要紧凑的区域和低电流输出的低功耗的生物传感装置。 制造的结构可以应用于与生物传感装置的单片三维集成。

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