About Haoran Zhang Haoran Zhang Ph.D., Electrical and Computer Engineering Radio Frequency Integrated Circuits on-chip antennas 5G antennas Haoran Zhang is a Ph.D. student in the Electrical Engineering department at Integrated Microwaves Packaging Antennas & Circuit Technology Research Group under the supervision of Professor Atif Shamim at King Abdullah University of Science and Technology (KAUST). Research Interests Millimeter-wave on-chip antenna design and Radio Frequency Integrated Circuits (RFIC) design 5G Array Antenna in Package design Education Profile Bachelor of Engineering in Electrical Engineering, University of Electronics of Science and Technology, China (2013 - 2017). Events Presented Events Apr 28 - May 4, 2024 Millimeter-Wave Antenna-in-Package/Antenna-on-Chip Designs with High Gain, Wideband, and Wide Beam-scanning Features Haoran Zhang, Ph.D., Electrical and Computer Engineering Apr 30, 10:00 - 12:00 B3 L5 R5220 With the rapid development of wireless mobile communication technologies, there has been a growing demand for high data-rate communication in the mmWave range of 5G bands and future 6G bands due to their much larger available bandwidths. Despite their potential, these frequency ranges suffer from significant atmospheric attenuation, necessitating antennas with high gain and wide beam-scanning capabilities to ensure robust coverage. Thus, there is a need to develop compact, high gain, wideband, and wide beam-scanning mmWave antenna/array for 5G/6G applications.
Millimeter-Wave Antenna-in-Package/Antenna-on-Chip Designs with High Gain, Wideband, and Wide Beam-scanning Features Haoran Zhang, Ph.D., Electrical and Computer Engineering Apr 30, 10:00 - 12:00 B3 L5 R5220 With the rapid development of wireless mobile communication technologies, there has been a growing demand for high data-rate communication in the mmWave range of 5G bands and future 6G bands due to their much larger available bandwidths. Despite their potential, these frequency ranges suffer from significant atmospheric attenuation, necessitating antennas with high gain and wide beam-scanning capabilities to ensure robust coverage. Thus, there is a need to develop compact, high gain, wideband, and wide beam-scanning mmWave antenna/array for 5G/6G applications.
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