@inproceedings{165e7d42c51c4eb292628b66d8f35ab0,
title = "Design of the Dual-Channel Dickson Rectifier with Native NMOS for RF Energy Harvesting Sensors",
abstract = "We propose a dual-channel Dickson rectifier including two independent 1-stage rectifiers for the radio frequency (RF) energy harvesting sensors. It presents the characteristic model of the native NMOS and the leakage model of the Dickson rectifier. The power consumption model of the switch and charging time are derived. Further, 1-stage rectifiers with NMOS W/L=2μm/1μm and W/L=16μm/1μm are designed to work in the rectifier input power Prec-in smaller and larger than-18 dBm, respectively. The maximum power conversion efficiency (PCE) are 63.84\% and 63.92\% in the two ranges. The size of the PMOS switch for charging the InF storage capacitor Cstore as 100μm/180nm to minimize the power loss.",
keywords = "Dickson rectifier, Dual-channel, energy harvesting, native NMOS, power conversion efficiency",
author = "Puyang Zheng and Dyumaan Arvind and Milutin Stana{\'c}evi{\'c}",
note = "Publisher Copyright: {\textcopyright} 2024 IEEE.; 2024 IEEE International Conference on RFID, RFID 2024 ; Conference date: 04-06-2024 Through 06-06-2024",
year = "2024",
doi = "10.1109/RFID62091.2024.10582673",
language = "English",
series = "2024 IEEE International Conference on RFID, RFID 2024",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
pages = "65--70",
booktitle = "2024 IEEE International Conference on RFID, RFID 2024",
}