Theory of microbump antennas for conical radiation
Microbump antennas are a new class of antennas that are particularly suitable for antenna-on-chip solutions to silicon-based terahertz wireless systems. This article presents a theory of microbump antennas operating in the transverse magnetic (TM) modes for conical radiation. The theory is validated...
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sg-ntu-dr.10356-1780002024-06-04T01:27:00Z Theory of microbump antennas for conical radiation Zhang, Yue Ping Fang, Yulin School of Electrical and Electronic Engineering Integrated Systems Research Laboratory Engineering Microbump antennas Microstrip antennas Microbump antennas are a new class of antennas that are particularly suitable for antenna-on-chip solutions to silicon-based terahertz wireless systems. This article presents a theory of microbump antennas operating in the transverse magnetic (TM) modes for conical radiation. The theory is validated with a microbump antenna model scaled at 3 GHz. As expected, the theoretically calculated impedance and radiation characteristics closely agree with those measured and simulated results. The theory is applied to the analysis and design of a microbump antenna in a standard complementary metal-oxide-semiconductor (CMOS) process and a conventional bumping technology at 300 GHz. It is shown that the theory enables the accurate analysis and the efficient design of the microbump antenna. It is concluded that the microbump antenna outperforms the microstrip antenna at the expense of some increase in antenna height and fabrication step. 2024-06-04T01:27:00Z 2024-06-04T01:27:00Z 2024 Journal Article Zhang, Y. P. & Fang, Y. (2024). Theory of microbump antennas for conical radiation. IEEE Transactions On Antennas and Propagation, 72(3), 2261-2269. https://dx.doi.org/10.1109/TAP.2024.3350703 0018-926X https://hdl.handle.net/10356/178000 10.1109/TAP.2024.3350703 2-s2.0-85182934328 3 72 2261 2269 en IEEE Transactions on Antennas and Propagation © 2024 IEEE. All rights reserved. |
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Engineering Microbump antennas Microstrip antennas Zhang, Yue Ping Fang, Yulin Theory of microbump antennas for conical radiation |
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Microbump antennas are a new class of antennas that are particularly suitable for antenna-on-chip solutions to silicon-based terahertz wireless systems. This article presents a theory of microbump antennas operating in the transverse magnetic (TM) modes for conical radiation. The theory is validated with a microbump antenna model scaled at 3 GHz. As expected, the theoretically calculated impedance and radiation characteristics closely agree with those measured and simulated results. The theory is applied to the analysis and design of a microbump antenna in a standard complementary metal-oxide-semiconductor (CMOS) process and a conventional bumping technology at 300 GHz. It is shown that the theory enables the accurate analysis and the efficient design of the microbump antenna. It is concluded that the microbump antenna outperforms the microstrip antenna at the expense of some increase in antenna height and fabrication step. |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Zhang, Yue Ping Fang, Yulin |
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Article |
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Zhang, Yue Ping Fang, Yulin |
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Zhang, Yue Ping |
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Theory of microbump antennas for conical radiation |
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Theory of microbump antennas for conical radiation |
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Theory of microbump antennas for conical radiation |
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Theory of microbump antennas for conical radiation |
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Theory of microbump antennas for conical radiation |
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theory of microbump antennas for conical radiation |
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2024 |
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https://hdl.handle.net/10356/178000 |
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1806059926541303808 |