A frequency downscaling technique for enhancing the accuracy of analog lock-in amplifier (LIA) architectures in giant magneto-impedance (GMI) sensor applications is presented in this paper. As a proof of concept, the proposed method is applied to two different LIA topologies using, respectively, analog and switching-based multiplication for phase-sensitive detection. Specifically, the operation frequency of both the input and the reference signals of the phase-sensitive detector (PSD) block of the LIA is reduced through a subsampling process using sample-and-hold (SH) circuits. A frequency downscaling from 200 kHz, which is the optimal operating frequency of the employed GMI sensor, to 1 kHz has been performed. In this way, the propo...
Phase-sensitive detection with a lock-in amplifier is a powerful, general measurement scheme finding...
This paper proposes a battery-compatible electronic interface based on a general purpose lock-in amp...
Traditionally digital lock-in amplifiers sample the input signal at a rate much higher than the lock...
A frequency downscaling technique for enhancing the accuracy of analog lock-in amplifier (LIA) archi...
A novel architecture for digital lock-in amplifiers (LIAs) able to overcome the resolution limit of ...
Lock-in amplifiers (LIAs) are extensively used to perform high-resolution measurements. Ideally, whe...
International audienceIn the Giant Magneto-Impedance (GMI) sensors, one of the important features th...
AbstractThis paper presents a low-voltage 3V single supply analog lock-in amplifier (LIA) for proces...
This paper presents the design and experimental characterization of a portable high-precision single...
This paper presents a fully integrated Gm–C low pass ¿lter (LPF) based on a current ¿steering Gm red...
Ideally, lock-in amplifiers (LIAs) would be able to measure a minimum signal variation limited by th...
The Giant Magneto-Impedance (GMI) is a large change of the impedance of some soft ferromagnetic mate...
Comparators capable of comparing two alternating signals of the similar frequency within a wide dyna...
International audienceThe digital electronic conditioning for the high sensitivity Giant Magneto-Imp...
We present characterization of a lock-in amplifier based on a field programmable gate array capable ...
Phase-sensitive detection with a lock-in amplifier is a powerful, general measurement scheme finding...
This paper proposes a battery-compatible electronic interface based on a general purpose lock-in amp...
Traditionally digital lock-in amplifiers sample the input signal at a rate much higher than the lock...
A frequency downscaling technique for enhancing the accuracy of analog lock-in amplifier (LIA) archi...
A novel architecture for digital lock-in amplifiers (LIAs) able to overcome the resolution limit of ...
Lock-in amplifiers (LIAs) are extensively used to perform high-resolution measurements. Ideally, whe...
International audienceIn the Giant Magneto-Impedance (GMI) sensors, one of the important features th...
AbstractThis paper presents a low-voltage 3V single supply analog lock-in amplifier (LIA) for proces...
This paper presents the design and experimental characterization of a portable high-precision single...
This paper presents a fully integrated Gm–C low pass ¿lter (LPF) based on a current ¿steering Gm red...
Ideally, lock-in amplifiers (LIAs) would be able to measure a minimum signal variation limited by th...
The Giant Magneto-Impedance (GMI) is a large change of the impedance of some soft ferromagnetic mate...
Comparators capable of comparing two alternating signals of the similar frequency within a wide dyna...
International audienceThe digital electronic conditioning for the high sensitivity Giant Magneto-Imp...
We present characterization of a lock-in amplifier based on a field programmable gate array capable ...
Phase-sensitive detection with a lock-in amplifier is a powerful, general measurement scheme finding...
This paper proposes a battery-compatible electronic interface based on a general purpose lock-in amp...
Traditionally digital lock-in amplifiers sample the input signal at a rate much higher than the lock...