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Cited 36 time in webofscience Cited 35 time in scopus
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High-efficiency high-voltage class F amplifier for high-frequency wireless ultrasound systemsopen access

Authors
Kim, KyeongjinChoi, Hojong
Issue Date
Mar-2021
Publisher
PUBLIC LIBRARY SCIENCE
Citation
PLOS ONE, v.16, no.3
Journal Title
PLOS ONE
Volume
16
Number
3
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/84708
DOI
10.1371/journal.pone.0249034
ISSN
1932-6203
Abstract
This paper presents a novel amplifier that satisfies both low distortion and high efficiency for high-frequency wireless ultrasound systems with limited battery life and size. While increasing the amplifier efficiency helps to address the problems for wireless ultrasound systems, it can cause signal distortion owing to harmonic components. Therefore, a new type of class F amplifier is designed to achieve high efficiency and low distortion. In the amplifier, the resonant circuit at each stage controls the harmonic components to reduce distortion and improve efficiency. Transformers with a large shunt resistor are also helpful to reduce the remaining noise in the input signal. The proposed class F amplifier is tested using simulations, and the voltage and current waveforms are analyzed to achieve correct operation with adequate efficiency and distortion. The measured performance of the class F amplifier has a gain of 23.2 dB and a power added efficiency (PAE) of 88.9% at 25 MHz. The measured DC current is 121 mA with a variance of less than 1% when the PA is operating. We measured the received echo signal through the pulse-echo response using a 25-MHz transducer owing to the compatibility of the designed class F amplifier with high- frequency transducers. The measured total harmonic distortion (THD) of the echo signal was obtained as 4.5% with a slightly low ring-down. The results show that the low THD and high PAE of the new high-efficiency and high-voltage amplifier may increase battery life and reduce the cooling fan size, thus providing a suitable environment for high-frequency wireless ultrasound systems.
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Choi, Hojong
반도체대학 (반도체·전자공학부)
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