Xiang Yi
Postdoc alum '20 · Professor, South China University of Technology
After the group
Professor, South China University of Technology
Research
Ultra-Broadband THz Radar Transceiver and Full-Duplex Communication and Sensing Circuits.
Publications in the group 20
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THz Cryo-CMOS Backscatter Transceiver: A Contactless 4 Kelvin-300 Kelvin Data Interface
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A 140-GHz FMCW TX/RX-Antenna-Sharing Transceiver with Low-Inherent-Loss Duplexing and Adaptive Self-Interference Cancellation
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A 110-to-130 GHz SiGe BiCMOS Doherty Power Amplifier with A Slotline-Based Power Combiner
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A 0.31-THz Orbital-Angular-Momentum (OAM) Wave Transceiver in CMOS With Bits-to-OAM Mode Mapping
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A 140GHz Transceiver with Integrated Antenna, Inherent-Low-Loss Duplexing and Adaptive Self-Interference Cancellation for FMCW Monostatic Radar
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A High-Efficiency 142-182 GHz SiGe BiCMOS Power Amplifier With Broadband Slotline-Based Power Combining Technique
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A 110-to-130GHz SiGe BiCMOS Doherty Power Amplifier with Slotline-Based Power Combining Technique Achieving ¿22dBm Saturated Output Power and ¿10
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Emerging Terahertz Integrated Systems in Silicon
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Realization of In-Band Full-Duplex Operation at 300 K and 4.2 K Using Bilateral Single-Sideband Frequency Conversion
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A Terahertz Molecular Clock on CMOS Using High-Harmonic-Order Interrogation of Rotational Transition for Medium/Long-Term Stability Enhancement
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A 220-to-320-GHz FMCW Radar in 65-nm CMOS Using a Frequency-Comb Architecture
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A 0.31THz CMOS Uniform Circular Antenna Array Enabling Generation/Detection of Waves with Orbital Angular Momentum
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A 3.4–4.6GHz In-Band Full-Duplex Front-End in CMOS Using a Bi-Directional Frequency Converter
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Sub-THz CMOS Molecular Clock with 43ppt Long-Term Stability Using High-Order Rotational Transition Probing and Slot Array Couplers
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A Terahertz FMCW Comb Radar in 65nm CMOS with 100GHz Bandwidth
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Filling the Gap: Silicon Terahertz Integrated Circuits Offer Our Best Bet
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Principles and Prototypes of Chip-Scale Molecular Clock
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Chip-Scale Molecular Clock
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An On-Chip Fully-Electronic Molecular Clock Based on Sub-Terahertz Rotational Spectroscopy
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A CMOS Molecular Clock Probing 231.061-GHz Rotational Line of OCS with Sub-ppb Long-Term Stability and 66-mW DC Power