Title :
A novel current-based approach for very low variation detection of resistive sensors in wheatstone bridge configuration
Author :
De Marcellis, Andrea ; Reig, Candid ; Cubells, Maria-Dolores
Author_Institution :
Dept. of Phys. & Chem. Sci., Univ. of L´Aquila, L´Aquila, Italy
Abstract :
Here we present a new approach, based on current signals, suitable for the detection of very low variations of resistive sensors in a Wheatstone bridge configuration. It has been implemented in Current-Mode (CM) approach by employing the positive Second Generation Current Conveyor (CCII+) as basic active block. This solution shows high common-mode cancellation, high sensitivity, high accuracy, linear response and easiness of offset compensation of the bridge unbalancing, without any changing of its elements, so optimizing also gain and resolution. Its main performances have been preliminary evaluated through PSpice simulations employing the AD844 by Analog Devices. The achieved results show a good agreement with theoretical calculations and demonstrate the validity of the new idea. It results to be suitable for resistive full-bridge configurations showing a capability to detect theoretically relative variations of resistors lower than 0.0001% with a bridge output voltage sensitivity up to 10V/%.
Keywords :
bridge circuits; compensation; current conveyors; current-mode circuits; electric current measurement; electric resistance measurement; electric sensing devices; resistors; AD844 analog device; CCII+; CM approach; PSpice simulation; Wheatstone bridge configuration; bridge unbalancing; common-mode cancellation; current-mode approach; offset compensation; positive second generation current conveyor; resistive full-bridge configuration; resistive sensor; very low variation detection; Bridge circuits; Electrical resistance measurement; Performance evaluation; SPICE; Sensitivity; Sensors; Temperature measurement; AD844; Bridge Balancing; Current Conveyor; Current-Mode Circuit; High Accuracy; High Resolution; High Sensitivity; Linear Response; Offset Compensation; Resistive Sensor Detection; Small Resistive Variation; Wheatstone Bridge;
Conference_Titel :
SENSORS, 2014 IEEE
Conference_Location :
Valencia
DOI :
10.1109/ICSENS.2014.6985452