[HTML][HTML] A review on piezoelectric energy harvesting: materials, methods, and circuits

S Priya, HC Song, Y Zhou, R Varghese… - Energy harvesting and …, 2017 - degruyter.com
Piezoelectric microelectromechanical systems (PiezoMEMS) are attractive for develo**
next generation self-powered microsystems. PiezoMEMS promises to eliminate the costly …

RF energy harvesting systems: An overview and design issues

SK Divakaran, DD Krishna… - International Journal of …, 2019 - Wiley Online Library
One of the main challenges in implementing sensor devices for internet of things (IoTs), is
the means for the operating power supply. RF energy harvesting (RFEH) presents a …

[HTML][HTML] Development of implantable medical devices: from an engineering perspective

YH Joung - International neurourology journal, 2013 - ncbi.nlm.nih.gov
From the first pacemaker implant in 1958, numerous engineering and medical activities for
implantable medical device development have faced challenges in materials, battery power …

A mm-sized implantable medical device (IMD) with ultrasonic power transfer and a hybrid bi-directional data link

J Charthad, MJ Weber, TC Chang… - IEEE Journal of solid …, 2015 - ieeexplore.ieee.org
A first proof-of-concept mm-sized implantable device using ultrasonic power transfer and a
hybrid bi-directional data communication link is presented. Ultrasonic power transfer …

A review of electric impedance matching techniques for piezoelectric sensors, actuators and transducers

VT Rathod - Electronics, 2019 - mdpi.com
Any electric transmission lines involving the transfer of power or electric signal requires the
matching of electric parameters with the driver, source, cable, or the receiver electronics …

Wide power dynamic range CMOS RF-DC rectifier for RF energy harvesting system: A review

ACC Chun, H Ramiah, S Mekhilef - IEEE Access, 2022 - ieeexplore.ieee.org
This article investigates the latest research outcomes on the wide power dynamic range
(PDR) CMOS RF-DC rectifier for on-chip radio frequency energy harvesting (RFEH) system …

A 13.56 MHz CMOS active rectifier with switched-offset and compensated biasing for biomedical wireless power transfer systems

Y Lu, WH Ki - IEEE transactions on biomedical circuits and …, 2013 - ieeexplore.ieee.org
A full-wave active rectifier switching at 13.56 MHz with compensated bias current for a wide
input range for wirelessly powered high-current biomedical implants is presented. The four …

Adaptive on/off delay-compensated active rectifiers for wireless power transfer systems

L Cheng, WH Ki, Y Lu, TS Yim - IEEE Journal of Solid-State …, 2016 - ieeexplore.ieee.org
An adaptive on/off delay-compensation technique is proposed to improve the performance
of CMOS active rectifiers for wireless power transfer (WPT) systems. The effects of the on/off …

High-performance multiband ambient RF energy harvesting front-end system for sustainable IoT applications—A review

YC Lee, H Ramiah, A Choo, KKP Churchill… - IEEE …, 2023 - ieeexplore.ieee.org
The increasing demand for wireless Internet of Things (IoT) calls for power efficient RF
energy harvesting approach. The current dominant single-band RF energy harvesting front …

A high-sensitivity wide input-power-range ultra-low-power RF energy harvester for IoT applications

SM Noghabaei, RL Radin, Y Savaria… - IEEE Transactions on …, 2021 - ieeexplore.ieee.org
Radio frequency energy harvesting (RFEH) is very attractive for the Internet of things (IoT)
and self-powered micro-systems such as wearable biomedical devices and wireless sensor …