Enhanced Dual-Slope-Based Digitizer for 4-Wire Connected Resistive Sensors
K Elangovan · 2024
This paper introduces a novel dual-slope-based digitizer circuit tailored for 4-wire connected resistive sensors. Utilizing cost-effective components, this circuit offers a simple yet robust method for accurate sensor readings. Experimental tests demonstrate the circuit's capability to measure sensor resistance within the range of 60$\Omega$to 390$\Omega$, corresponding to a temperature span of$-100^{\circ}\mathrm{C}$to$850^{\circ}\mathrm{C}$using an RTD-Pt100 sensor. The circuit exhibits a maximum nonlinearity error of 0.06 % and a maximum measurement error of 0.6$\Omega$, showcasing its high precision. One key advantage of this digitizer is its single measurement cycle requirement, streamlining the measurement process. Additionally, the circuit incorporates constant current excitation to mitigate self-heating effects and minimize its reliance on digital ports, enhancing its speed and reliability in sensor measurements. Moreover, its single-supply operation ensures efficiency, with an average power consumption of approximately 20 mW. These findings underscore the circuit's potential as a cost-effective and efficient solution for a variety of sensing applications.