In the emerging field of wearable systems for remote monitoring of physiological parameters, the measurement of bioimpedance has the potential to provide many useful information. On the other hand, in this scenario, an optimization of power consumption of the circuit is crucial. A low power architecture for the measurement of bioimpedance was identified in this work. It reduces the consumption in the most critical blocks of the system: the current driver, the signal sensing and the demodulator. The device was prototyped and electrically characterized. The compromise between power consumption reduction and the increase in electrical noise was analysed and an effective signal processing technique was developed, showing that it is possible to ...
The use of wearable devices for the monitoring of biological potentials is an ever-growing area of r...
This paper presents a low power reconfigurable IC for wearable health devices that perform bio-imped...
This paper presents a low power reconfigurable IC for wearable health devices that perform bio-imped...
In the emerging field of wearable systems for remote monitoring of physiological parameters, the mea...
In the emerging field of wearable systems for remote monitoring of physiological parameters, the mea...
In the emerging field of wearable systems for remote monitoring of physiological parameters, the mea...
In the emerging field of wearable systems for remote monitoring of physiological parameters, the mea...
AbstractA low power novel architecture for the measurement of module and phase of bioimpedance (elec...
Wearable devices for monitoring vital signs such as heart-rate, respiratory rate and blood pressure ...
Wearable devices for monitoring vital signs such as heart-rate, respiratory rate and blood pressure ...
Wearable devices for monitoring vital signs such as heart-rate, respiratory rate and blood pressure ...
Wearable devices for monitoring vital signs such as heart-rate, respiratory rate and blood pressure ...
In recent years, due to the combination of technological advances in the fields ofmeasurement instru...
In recent years, due to the combination of technological advances in the fields ofmeasurement instru...
none10siNome progetto: PhidiasWearable devices for monitoring vital signs such as heart-rate, respir...
The use of wearable devices for the monitoring of biological potentials is an ever-growing area of r...
This paper presents a low power reconfigurable IC for wearable health devices that perform bio-imped...
This paper presents a low power reconfigurable IC for wearable health devices that perform bio-imped...
In the emerging field of wearable systems for remote monitoring of physiological parameters, the mea...
In the emerging field of wearable systems for remote monitoring of physiological parameters, the mea...
In the emerging field of wearable systems for remote monitoring of physiological parameters, the mea...
In the emerging field of wearable systems for remote monitoring of physiological parameters, the mea...
AbstractA low power novel architecture for the measurement of module and phase of bioimpedance (elec...
Wearable devices for monitoring vital signs such as heart-rate, respiratory rate and blood pressure ...
Wearable devices for monitoring vital signs such as heart-rate, respiratory rate and blood pressure ...
Wearable devices for monitoring vital signs such as heart-rate, respiratory rate and blood pressure ...
Wearable devices for monitoring vital signs such as heart-rate, respiratory rate and blood pressure ...
In recent years, due to the combination of technological advances in the fields ofmeasurement instru...
In recent years, due to the combination of technological advances in the fields ofmeasurement instru...
none10siNome progetto: PhidiasWearable devices for monitoring vital signs such as heart-rate, respir...
The use of wearable devices for the monitoring of biological potentials is an ever-growing area of r...
This paper presents a low power reconfigurable IC for wearable health devices that perform bio-imped...
This paper presents a low power reconfigurable IC for wearable health devices that perform bio-imped...