Fan-Yi Meng

About Fan-Yi Meng

Fan-Yi Meng, With an exceptional h-index of 35 and a recent h-index of 29 (since 2020), a distinguished researcher at Harbin Institute of Technology, specializes in the field of Microwave Technology.

His recent articles reflect a diverse array of research interests and contributions to the field:

Complex‐Amplitude Programmable Versatile Metasurface Platform Driven by Guided Wave

Broadband and Gain-Enhanced Compressed Higher-Order-Mode Dipoles Using Parasitic Elements and Stubs to Modify Currents

Metasurface‐Based Optical Logic Operators Driven by Diffractive Neural Networks (Adv. Mater. 9/2024)

Comment on “Demonstration of Low dv/dt Class-Ф2 DC-DC Converter With 50% Duty Cycle”

A Full-Duplex 60 GHz Transceiver with Digital Self-Interference Cancellation

A 185-to-240 GHz SiGe Power Amplifier Using Non-Zero Base-Impedances for Power Gain and Output Power Optimizations

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A 2.4-GHz Class-AB FBAR-Based Low Phase Noise Oscillator Using Dynamic Tail-Current Biasing

Fan-Yi Meng Information

University

Position

___

Citations(all)

4669

Citations(since 2020)

2826

Cited By

3039

hIndex(all)

35

hIndex(since 2020)

29

i10Index(all)

114

i10Index(since 2020)

78

Email

University Profile Page

Google Scholar

Fan-Yi Meng Skills & Research Interests

Microwave Technology

Top articles of Fan-Yi Meng

Complex‐Amplitude Programmable Versatile Metasurface Platform Driven by Guided Wave

Advanced Science

2024/3/14

Broadband and Gain-Enhanced Compressed Higher-Order-Mode Dipoles Using Parasitic Elements and Stubs to Modify Currents

IEEE Transactions on Antennas and Propagation

2024/3/4

Metasurface‐Based Optical Logic Operators Driven by Diffractive Neural Networks (Adv. Mater. 9/2024)

Advanced Materials

2024/3

Comment on “Demonstration of Low dv/dt Class-Ф2 DC-DC Converter With 50% Duty Cycle”

IEEE Transactions on Power Electronics

2024/2/20

A Full-Duplex 60 GHz Transceiver with Digital Self-Interference Cancellation

Electronics

2024/1/24

A 185-to-240 GHz SiGe Power Amplifier Using Non-Zero Base-Impedances for Power Gain and Output Power Optimizations

IEEE Journal on Emerging and Selected Topics in Circuits and Systems

2024/1/16

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A 2.4-GHz Class-AB FBAR-Based Low Phase Noise Oscillator Using Dynamic Tail-Current Biasing

IEEE Microwave and Wireless Technology Letters

2024/1/1

Switchable-coupled-inductor input-regulated Class-E converter at fixed 50%-duty-cycle 1-MHz switching signal

Microelectronics Journal

2024/4/29

Multi-Band Permittivity Measurement Using Directional Coupler Based on Groove-Ridge-Gap Waveguide

IEEE Transactions on Instrumentation and Measurement

2024/4/22

A Fully Integrated Stimulator With High Stimulation Voltage Compliance Using Dynamic Bulk Biasing Technique in a Bulk CMOS Technology

IEEE Transactions on Circuits and Systems I: Regular Papers

2024/3/25

Tunable bandpass filter based on epsilon-near-zero metamaterials using liquid crystals

Liquid Crystals

2024/3/25

A Compact 26-42GHz Triple-Stacked Power Amplifier with 24.7 dBm PSAT in 55-nm CMOS

2023/5/14

A 220-GHz High Linearity Power Amplifier with 25.7-dB Gain and 9.7-dB PSAT

2023/5/14

A SiGe 92–96 GHz 5-bit Active Phase Shifter for W-Band Phased Arrays

2023/5/14

A 0.3-7.7 GHz Noise-Canceling Low-Noise Amplifier in 55nm CMOS

2023/5/14

A 94-GHz SiGe Power Amplifier With 18.5 dB Power Gain and 14.4 dBm PSAT

2023/5/14

A 28-ghz 26.8-dbm doherty power amplifier with four-way differential hybrid load-modulated combiner in 55-nm cmos

IEEE Microwave and Wireless Technology Letters

2023/4/4

A 120-GHz Class-F Frequency Doubler With 7.8-dBm in 55-nm Bulk CMOS

IEEE Journal of Solid-State Circuits

2023/3/15

An Ultracompact Frequency-Reconfigurable SPDT Switch With 42-dB Isolation

IEEE Microwave and Wireless Technology Letters

2023/12/11

See List of Professors in Fan-Yi Meng University(Harbin Institute of Technology)