Performance Optimizations and Evaluations for the Small Direct Currents Measurement System
Shunyi Liang, Juncheng Liang, Kezhu Song, Yijie Jiang, Zhijie Yang

TL;DR
This paper presents a high-precision measurement system for small currents, optimized through circuit design and testing, demonstrating ultra-low noise and high stability suitable for ionization chamber applications.
Contribution
The development of an optimized integrating-differentiating system with redesigned components and enhanced digital control for improved small current measurement accuracy.
Findings
Ultra-low noise floor (<1 fA/√Hz) achieved
Low current bias at fA level demonstrated
High stability and linearity comparable to existing standards
Abstract
Ionization chambers are essential for activity determinations in radionuclide metrology. We have developed a high-precision integrating-differentiating (int-diff) system for measuring small currents. It is anticipated to enhance the ionization current measurement capability of the 4{\pi}{\gamma} ionization chamber radioactivity standard at the National Institute of Metrology (NIM), China. Besides, it has broad application prospects in physical experiments and fundamental metrology. The design of the measurement system is optimized through circuit analysis and simulation. The structure of the integrating capacitor array is redesigned to reduce the error of the amplification gain, and a relay is used as the reset switch to achieve improved noise and leakage performance. The digital readout and control module is also enhanced in terms of flexibility and functionality. High-precision test…
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Taxonomy
TopicsMagnetic Field Sensors Techniques · Advanced Electrical Measurement Techniques · Sensor Technology and Measurement Systems
