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 …

[HTML][HTML] Piezoelectric energy harvesting and ultra-low-power management circuits for medical devices

N Almarri, J Chang, W Song, D Jiang, A Demosthenous - Nano Energy, 2024 - Elsevier
Piezoelectric energy harvesting enables the development of sustainable, batteryless
medical devices, powered by micro-watts level energy transduction and low-frequency body …

Review of power conversion and energy management for low-power, low-voltage energy harvesting powered wireless sensors

D Newell, M Duffy - IEEE Transactions on Power Electronics, 2019 - ieeexplore.ieee.org
In this paper, state-of-the-art power electronics and energy management solutions utilized in
low-power (less than 5 mW), low-voltage (less than 3 V) energy harvesting powered …

A 40 mV transformer-reuse self-startup boost converter with MPPT control for thermoelectric energy harvesting

JP Im, SW Wang, ST Ryu… - IEEE Journal of Solid-State …, 2012 - ieeexplore.ieee.org
This paper presents transformer-based self-starting boost converter architecture with low-
power maximum power point tracking (MPPT) control for low-voltage thermoelectric …

A 1.1 nW energy-harvesting system with 544 pW quiescent power for next-generation implants

S Bandyopadhyay, PP Mercier… - IEEE journal of solid …, 2014 - ieeexplore.ieee.org
This paper presents a nW power management unit (PMU) for an autonomous wireless
sensor that sustains itself by harvesting energy from the endocochlear potential (EP), the 70 …

A 0.15 V input energy harvesting charge pump with dynamic body biasing and adaptive dead-time for efficiency improvement

J Kim, PKT Mok, C Kim - IEEE Journal of Solid-State Circuits, 2014 - ieeexplore.ieee.org
A charge pump using 0.13-μm CMOS process for low-voltage energy harvesting is
presented. A low-power adaptive dead-time (AD) circuit is used which automatically …

Fully integrated startup at 70 mV of boost converters for thermoelectric energy harvesting

J Goeppert, Y Manoli - IEEE Journal of Solid-State Circuits, 2016 - ieeexplore.ieee.org
This paper presents an inductive DC-DC boost converter for energy harvesting using a
thermoelectric generator with a minimum startup voltage of 70 mV and a regulated output …

A 3.5-mV input single-inductor self-starting boost converter with loss-aware MPPT for efficient autonomous body-heat energy harvesting

S Bose, T Anand, ML Johnston - IEEE journal of solid-state …, 2020 - ieeexplore.ieee.org
A single-inductor self-starting boost converter is presented, which is suitable for
thermoelectric energy harvesting from human body heat. In order to extract maximum energy …

An 18 nA, 87% efficient solar, vibration and RF energy-harvesting power management system with a single shared inductor

G Chowdary, A Singh… - IEEE Journal of solid-state …, 2016 - ieeexplore.ieee.org
We present a modular power management system that can harvest energy from three
sources simultaneously, with available power levels of 25 nW to 100 μW, with one inductor …

Integrated cold start of a boost converter at 57 mV using cross-coupled complementary charge pumps and ultra-low-voltage ring oscillator

S Bose, T Anand, ML Johnston - IEEE journal of solid-state …, 2019 - ieeexplore.ieee.org
This paper demonstrates an on-chip electrical cold-start technique to achieve low-voltage
and fast start-up of a boost converter for autonomous thermal energy harvesting from human …