A 24.88 nv/√hz wheatstone bridge readout integrated circuit with chopper-stabilized multipath operational amplifier

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Abstract

This paper proposes a low noise readout integrated circuit (IC) with a chopper-stabilized multipath operational amplifier suitable for a Wheatstone bridge sensor. The input voltage of the readout IC changes due to a change in input resistance, and is efficiently amplified using a three-operational amplifier instrumentation amplifier (IA) structure with high input impedance and adjustable gain. Furthermore, a chopper-stabilized multipath structure is applied to the operational amplifier, and a ripple reduction loop (RRL) in the low frequency path (LFP) is employed to attenuate the ripple generated by the chopper stabilization technique. A 12-bit successive approximation register (SAR) analog-to-digital converter (ADC) is employed to convert the output voltage of the three-operational amplifier IA into digital code. The Wheatstone bridge readout IC is manufactured using a standard 0.18 μm complementary metal-oxide-semiconductor (CMOS) technology, drawing 833 μA current from a 1.8 V supply. The input range and the input referred noise are ±20 mV and 24.88 nV/√, Hz respectively.

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Han, K., Kim, H., Kim, J., You, D., Heo, H., Kwon, Y., … Ko, H. (2020). A 24.88 nv/√hz wheatstone bridge readout integrated circuit with chopper-stabilized multipath operational amplifier. Applied Sciences (Switzerland), 10(1). https://doi.org/10.3390/app10010399

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