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Miniaturized Self-Resonant Micro Coil Array with A Floating Structure for Wireless Multi-Channel Transmission
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- Title
- Miniaturized Self-Resonant Micro Coil Array with A Floating Structure for Wireless Multi-Channel Transmission
- Issued Date
- 2021-12
- Citation
- Jun, Byoung Ok. (2021-12). Miniaturized Self-Resonant Micro Coil Array with A Floating Structure for Wireless Multi-Channel Transmission. Advanced Science, 8(24). doi: 10.1002/advs.202102944
- Type
- Article
- Author Keywords
- high Q ; impedance matching ; micro antenna ; wireless power transmission
- Keywords
- DESIGN ; BIOCOMPATIBILITY ; DEVICES
- ISSN
- 2198-3844
- Abstract
-
Micro size antennas have significant merits due to the small size effect, enabling new device concepts. However, the low-quality factor (Q-factor), the large size of impedance matching components, and the poor selectivity of the multi-array design remain challenging issues. To solve these issues, a floating coil structure stacked on a loop micro-antenna is suggested. Various floating coil designs are prepared with appropriate matching conditions at specific target frequencies, using an easy fabrication process without the need for additional space. A simple one-loop antenna design shows a higher Q-factor than other, more complicated designs. The micro-sized loop antenna with the 80 µm trace width design exhibits the highest Q-factor, around 31 within 7 GHz. The 8 different floating coil designs result in high-frequency selectivity from 1 to 7 GHz. The highest selectivity contrast and WPT efficiency are above 7 and around 1%, respectively. Considering the size of the antenna, the efficiency is not low, mainly due to the good matching effect with the high Q-factor of the floating coil and the loop antenna. This micro-antenna array concept with high integration density can be applied for advanced wireless neural stimulation or in wireless pixel array concepts in flexible displays. © 2021 The Authors. Advanced Science published by Wiley-VCH GmbH
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- Publisher
- Wiley
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Related Researcher
- Choi, Ji-Woong최지웅
-
Department of Electrical Engineering and Computer Science
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