A human body heat driven thermal energy harvesting regulator with high output power at low input voltages and small form factor, suitable to power compact and feature-packed wearable biomedical Internet-of-Things (IoT) nodes, is developed in this work. The system demonstrates 2.3× higher throughput than prior art at low input voltages with a maximum conversion ratio of 83×, in order to support complex and power hungry IoT operations like onboard processing and data transmission. The peak load supportable by the system is extended by utilizing maximum power extraction and minimizing converter losses in a single-stage compact power management unit. A fixed-frequency technique, independent of input voltage variation is proposed to maximize out...
Implantable sensors have been used to improve monitoring and diagnosis of health-related parameters ...
The number of wireless medical wearables has increased in recent years and is revolutionizing the cu...
From every heartbeat to every footstep, human beings dissipate energy all the time. Researchers are ...
Energy harvesting is the key technology to enable self-sustained wearable devices for the Internet o...
The emerging Internet of Humans (IoH) can shape future healthcare and consumer devices. The energy s...
A thermo-electric energy harvesting based regulator system with output power maximization for high c...
Wireless body sensor networks have drawn significant attention for providing out-of-hospital diagnos...
This paper demonstrates the concept of node consumption reduction for IoT applications. The main emp...
Internet of Things (IoT) is a new technological paradigm that can connect things from various fields...
Abstract Uninterrupted, efficient power supplies have posed a significant hurdle to the ubiquitous a...
Wearable devices have become commonplace within today’s society, creating a new level of connectivit...
Thermal energy harvesting has gained attention in the last decade due to its promising possibilities...
This paper reports a fully integrated autonomous power management system for thermoelectric energy h...
Internet of Things (IoT) have significantly heightened the level of our awareness about the world an...
The Internet of Things improves peoples lives and assists research advancement by collecting and con...
Implantable sensors have been used to improve monitoring and diagnosis of health-related parameters ...
The number of wireless medical wearables has increased in recent years and is revolutionizing the cu...
From every heartbeat to every footstep, human beings dissipate energy all the time. Researchers are ...
Energy harvesting is the key technology to enable self-sustained wearable devices for the Internet o...
The emerging Internet of Humans (IoH) can shape future healthcare and consumer devices. The energy s...
A thermo-electric energy harvesting based regulator system with output power maximization for high c...
Wireless body sensor networks have drawn significant attention for providing out-of-hospital diagnos...
This paper demonstrates the concept of node consumption reduction for IoT applications. The main emp...
Internet of Things (IoT) is a new technological paradigm that can connect things from various fields...
Abstract Uninterrupted, efficient power supplies have posed a significant hurdle to the ubiquitous a...
Wearable devices have become commonplace within today’s society, creating a new level of connectivit...
Thermal energy harvesting has gained attention in the last decade due to its promising possibilities...
This paper reports a fully integrated autonomous power management system for thermoelectric energy h...
Internet of Things (IoT) have significantly heightened the level of our awareness about the world an...
The Internet of Things improves peoples lives and assists research advancement by collecting and con...
Implantable sensors have been used to improve monitoring and diagnosis of health-related parameters ...
The number of wireless medical wearables has increased in recent years and is revolutionizing the cu...
From every heartbeat to every footstep, human beings dissipate energy all the time. Researchers are ...