A C-Band Compact High-Linearity Multibeam Phased-Array Receiver With Merged Gain-Programmable Phase Shifter Technique
Author:
Affiliation:
1. Zhejiang University,China
2. National Yang Ming Chiao Tung University,Taiwan
3. University of California,Davis,USA
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/10186107/10186112/10186182.pdf?arnumber=10186182
Reference7 articles.
1. A 5–6-GHz CMOS Beamforming Transceiver Front-End for Fiber-to-the-Room All-Optical Wi-Fi Solution
2. A 25–30 GHz Fully-Connected Hybrid Beamforming Receiver for MIMO Communication
3. A Four-Element 7.5–9-GHz Phased-Array Receiver With 1–8 Simultaneously Reconfigurable Beams in 65-nm CMOS
4. 38-GHz CMOS Linearized Receiver With IM3 Suppression, P 1 dB/IP3/RR3 Enhancements, and Mitigation of QAM Constellation Diagram Distortion in 5G MMW Systems
5. A 24–28-GHz Four-Element Phased-Array Transceiver Front End With 21.1%/16.6% Transmitter Peak/OP1dB PAE and Subdegree Phase Resolution Supporting 2.4 Gb/s in 256-QAM for 5-G Communications
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1. A C-Band Slat-Type Phased-Array Receiver With Co-Aperture Concurrent Eight Beams;IEEE Transactions on Microwave Theory and Techniques;2024-05
2. A <i>K</i>-band 6-bit passive vector-modulated phase shifter with X-type attenuator controlled by nonlinear complementary voltage;IEICE Electronics Express;2024-04-25
3. A 4×4 5-6GHz CMOS Wi-Fi Transceiver Front-End for Fiber-to-the-Room with Analog Beamforming Achieving 27dBm 1024 QAM MCS11 EIRP and −45dB EVM Floor;2024 IEEE Custom Integrated Circuits Conference (CICC);2024-04-21
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