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Bingzheng Yang
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2020 – today
- 2024
- [j10]Jie Zhou, Bingzheng Yang, Yiyang Shu, Xun Luo:
A Phase-Modulation Phase-Shifting Phased-Array Transmitter With Phase Self-Calibration and Deep PBOs Efficiency Enhancement. IEEE J. Solid State Circuits 59(8): 2362-2377 (2024) - [j9]Xun Luo, Bingzheng Yang, Zhixian Deng, Wen Chen, Yiyang Shu, Jie Zhou:
A Phased-Array Transceiver With 2-Dimension Continuously Auto Link-Tracking Operation and Time Division Modulator. IEEE J. Solid State Circuits 59(8): 2390-2406 (2024) - [j8]Jie Zhou, Bingzheng Yang, Yiyang Shu, Xun Luo:
A W-Band 2 × 2 Phased-Array Transmitter With Digital Gain-Compensation Technique. IEEE Trans. Circuits Syst. I Regul. Pap. 71(4): 1558-1571 (2024) - 2023
- [j7]Bingzheng Yang, Huizhen Jenny Qian, Tianyi Wang, Xun Luo:
A CMOS Wideband Watt-Level 4096-QAM Digital Power Amplifier Using Reconfigurable Power-Combining Transformer. IEEE J. Solid State Circuits 58(2): 357-370 (2023) - [j6]Bingzheng Yang, Huizhen Jenny Qian, Jie Zhou, Yiyang Shu, Xun Luo:
Millimeter-Wave Quadrature Mixed-Mode Transmitter With Distributed Parasitic Canceling and LO Leakage Self-Suppression. IEEE J. Solid State Circuits 58(3): 691-704 (2023) - [j5]Hongxin Tang, Huizhen Jenny Qian, Bingzheng Yang, Xun Luo:
A Self-Calibration SCPA With Storage Capacitor Array Supporting 64-/256-/1024-QAM. IEEE J. Solid State Circuits 58(5): 1241-1255 (2023) - [c7]Jie Zhou, Changxuan Han, Wen Chen, Bingzheng Yang, Xun Luo:
A 71-to-86GHz, 20.4dBm $\mathbf{P}_{\mathbf{out}}$, 6.0dB NF Transceiver with Quadrature Direct-Modulated Transmitter and Reflection-Less Heterodyne Receiver in 40nm CMOS. A-SSCC 2023: 1-3 - [c6]Zhixian Deng, Bingzheng Yang, Wen Chen, Jie Zhou, Changxuan Han, Yifan Li, Yiyang Shu, Xun Luo:
An 8-Element 23-40 GHz Continuously Auto Link-Tracking Phased-Array Transceiver with Time Division Modulator Achieving 7μs Tracking Time, 25.3% TX System Efficiency, 800MHz-64QAM Modulation for 5G NR. CICC 2023: 1-2 - [c5]Bingzheng Yang, Zhixian Deng, Huizhen Jenny Qian, Xun Luo:
71-to-89GHz 12Gb/s Double-Edge-Triggered Quadrature RFDAC with LO Leakage Suppression Achieving 20.5dBm Peak Output Power and 20.4% System Efficiency. ISSCC 2023: 286-287 - 2022
- [c4]Bingzheng Yang, Huizhen Jenny Qian, Yiyang Shu, Jie Zhou, Xun Luo:
Watt-Level Triple-Mode Quadrature SFCPA with 56 Peaks for Ultra-Deep PBO Efficiency Enhancement Using IQ Intrinsic Interaction and Adaptive Phase Compensation. CICC 2022: 1-2 - [c3]Bingzheng Yang, Huizhen Jenny Qian, Yiyang Shu, Jie Zhou, Xun Luo:
22-30GHz Quadrature Hybrid SCPA with LO Leakage Self-Suppression and Distributed Parasitic-Cancelling Sub-PA Array for Linearity and Efficiency Enhancement. CICC 2022: 1-2 - [c2]Jie Zhou, Huizhen Jenny Qian, Bingzheng Yang, Yiyang Shu, Xun Luo:
A Phase-Modulation Phase-Shifting Phased-Array Transmitter with 10-Bit Fast-Locking Phase Self-Calibration and 0/2.5/6/12dB Power Back-Offs Efficiency Enhancement. CICC 2022: 1-2 - 2021
- [j4]Huizhen Jenny Qian, Bingzheng Yang, Jie Zhou, Hongtao Xu, Xun Luo:
A Quadrature Digital Power Amplifier With Hybrid Doherty and Impedance Boosting for Complex Domain Power Back-Off Efficiency Enhancement. IEEE J. Solid State Circuits 56(5): 1487-1501 (2021) - [j3]Huizhen Jenny Qian, Jie Zhou, Bingzheng Yang, Xun Luo:
A 4-Element Digital Modulated Polar Phased-Array Transmitter With Phase Modulation Phase-Shifting. IEEE J. Solid State Circuits 56(11): 3331-3347 (2021) - [j2]Bingzheng Yang, Huizhen Jenny Qian, Xun Luo:
Quadrature Switched/Floated Capacitor Power Amplifier With Reconfigurable Self-Coupling Canceling Transformer for Deep Back-Off Efficiency Enhancement. IEEE J. Solid State Circuits 56(12): 3715-3727 (2021) - [c1]Bingzheng Yang, Huizhen Jenny Qian, Xun Luo:
26.5 A Watt-Level Quadrature Switched/Floated-Capacitor Power Amplifier with Back-Off Efficiency Enhancement in Complex Domain Using Reconfigurable Self-Coupling Canceling Transformer. ISSCC 2021: 362-364 - 2020
- [j1]Yunbo Rao, Huizhen Jenny Qian, Bingzheng Yang, Roberto Gómez-García, Xun Luo:
Dual-Band Bandpass Filter and Filtering Power Divider With Ultra-Wide Upper Stopband Using Hybrid Microstrip/DGS Dual-Resonance Cells. IEEE Access 8: 23624-23637 (2020)
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last updated on 2024-08-29 20:54 CEST by the dblp team
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