A Broadband Mm-Wave VSWR-Resilient Joint True-Power Detector and Impedance Sensor Supporting Single-Ended Antenna Interfaces
Author:
Affiliation:
1. Georgia Institute of Technology,Atlanta,GA
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx7/9731529/9731102/09731769.pdf?arnumber=9731769
Reference6 articles.
1. 3.1 polar antenna impedance detection and tuning for efficiency improvement in a 3G/4G CMOS Power Amplifier
2. 26.4 A Reflection-Coefficient Sensor for 28GHz Beamforming Transmitters in 22nm FD-SOI CMOS
3. A Single-Ended Coupler-Based VSWR Resilient Joint mm-Wave True Power Detector and Impedance Sensor
4. Power Amplifier With Load Impedance Sensing Incorporated Into the Output Matching Network
5. A Fully Integrated Transformer-Coupled Power Detector With 5 GHz RF PA for WLAN 802.11 ac in 40 nm CMOS;françois;IEEE JSSC,2015
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1. 32.10 A Compact Broadband VSWR-Resilient True-Power-and-Gain Sensor with Dynamic-Range Compensation for Phased-Array Applications;2024 IEEE International Solid-State Circuits Conference (ISSCC);2024-02-18
2. 32.7 A 25.2dBm PSAT, 35-to-43GHz VSWR-Resilient Chain-Weaver Eight-Way Balanced PA with an Embedded Impedance/Power Sensor;2024 IEEE International Solid-State Circuits Conference (ISSCC);2024-02-18
3. Built-In Self-Test of Millimeter-Wave Integrated Front-End Circuits: How Far Have We Come?;IEEE Access;2024
4. The Design of a Wide-Dynamic-Range and High-Linearity RMS Power Detector for mm-Wave Applications in 65 nm CMOS;Electronics;2023-10-25
5. Single-Ended Quadrature Coupler-Based VSWR Resilient Joint mm-Wave True Power Detector and Impedance Sensor;IEEE Transactions on Microwave Theory and Techniques;2022-05
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