Xuefei Xuan
Orcid: 0000-0002-3153-0413
According to our database1,
Xuefei Xuan
authored at least 21 papers
between 2018 and 2025.
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Bibliography
2025
Design of a multi-octave high-efficiency power amplifier employing a modified continuous class-GF mode.
Int. J. Circuit Theory Appl., March, 2025
Design of a transistor-based broadband high-efficiency class-F<sup>-1</sup> rectifier.
Int. J. Circuit Theory Appl., February, 2025
Design an ultra-wideband extended continuous inverse Class-GF power amplifiers with source-harmonic-controlled based on rectangular ring-resonant microstrip impedance matching circuit.
Microelectron. J., 2025
Microelectron. J., 2025
Design of a Doherty power amplifier based on extended continuous class-GF mode for broadband applications.
Int. J. Circuit Theory Appl., 2025
Int. J. Circuit Theory Appl., 2025
2024
Investigation and Design of Ultra-Wideband Resistive-Reactive Series of Continuous Inverse Modes Power Amplifier With Input Second-Harmonic Manipulation.
IEEE Trans. Circuits Syst. I Regul. Pap., December, 2024
Input-harmonic manipulated wideband high-efficiency series of continuous mode power amplifier.
Int. J. Circuit Theory Appl., December, 2024
Design of a mixed load-modulation balanced power amplifier with ultra-extended power back-off range.
Int. J. Circuit Theory Appl., October, 2024
Design a Multi-Octave High-Efficiency Power Amplifier Using a Symmetrical Ring-Resonator Filtering Network With a Dual-Ring Embedded Architecture.
IEEE Trans. Circuits Syst. II Express Briefs, September, 2024
Int. J. Circuit Theory Appl., August, 2024
IEEE Trans. Circuits Syst. I Regul. Pap., January, 2024
Analysis of source second-harmonic-controlled wideband extended series of continuous modes power amplifiers.
Microelectron. J., 2024
Design of a broadband high-efficiency power amplifier based on continuous class-EF mode.
IEICE Electron. Express, 2024
IEICE Electron. Express, 2024
2023
Design of an Ultra-Wideband High-Efficiency Power Amplifier Based on a Novel Impedance Matching Structure With Three Paths.
IEEE Trans. Circuits Syst. II Express Briefs, November, 2023
Design of a high-efficiency bandwidth-enhanced power amplifier based on dual-paths impedance matching techniques.
Int. J. Circuit Theory Appl., September, 2023
Design of a 0.4-3.9-GHz Wideband High-Efficiency Power Amplifier Based on a Novel Bandwidth Extended Matching Network.
IEEE Trans. Circuits Syst. II Express Briefs, August, 2023
A High-Relative-Bandwidth Doherty Power Amplifier with Modified Load Modulation Network for Wireless Communications.
Sensors, March, 2023
Design of a highly efficient 0.6-4.5GHz multioctave bandwidth GaN-HEMT power amplifier.
IEICE Electron. Express, 2023
2018
IEICE Electron. Express, 2018