@inproceedings{22532ad130784d1d8e9a50d3f60b8657,
title = "Passive RF Resonant Receiver with Voltage Gain for Wireless Power Transfer System",
abstract = "This article presents a 0.01 V input passive radio frequency resonant receiver (RF -RRx) for wireless power transfer systems with passive voltage gain (DC). Traditional passive circuits for voltage gain only work above the threshold voltage without selectivity. In the proposed passive RF resonant receiver system, the Tesla coil resonator matches ∼ 50Ω impedance at the resonance frequency. The tesla coil's high-quality factor (Q) at the resonant improves the selectivity of the system. The proposed receiver system architecture works for the wireless-powered system under an input of 0.1 V with a passive voltage gain (DC) of 32dB. The high selectivity and gain of the proposed passive RF - RRx system are better than state-of-the-art architectures.",
keywords = "Passive voltage gain, Passive WPT receiver, RF energy harvester, RF resonant circuit, Tesla coil, WSN/IoT",
author = "Vikas Kumar and Santosh Parajuli and Shivansh Awasthi and Gayatri Ranade and Kartik Tyagi and Chowdhury, \{Saheli Roy\} and Rahul Jaiswal and Thundat, \{Thomas George\} and Ankur Gupta",
note = "Publisher Copyright: {\textcopyright} 2023 IEEE.; 19th IEEE Asia Pacific Conference on Circuits and Systems, APCCAS 2023 ; Conference date: 19-11-2023 Through 22-11-2023",
year = "2023",
doi = "10.1109/APCCAS60141.2023.00027",
language = "English",
series = "Proceedings - 2023 19th IEEE Asia Pacific Conference on Circuits and Systems, APCCAS 2023",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
pages = "70--74",
booktitle = "Proceedings - 2023 19th IEEE Asia Pacific Conference on Circuits and Systems, APCCAS 2023",
address = "United States",
}