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Broadband mm-Wave Current/Voltage Sensing-Based VSWR-Resilient True Power/Impedance Sensor Supporting Single-Ended Antenna Interfaces

IEEE Journal of Solid-State Circuits(2023)

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摘要
High-performance RF/mm-Wavefront ends often require in situ sensing circuitries to monitor performance metrics and drive their built-in-self-test (BiST) algorithms for performance recovery or optimization. In large-scaled integrated phased-arrays, antenna coupling often results in dynamic beamdependent impedance variations [antenna voltage standing wave ratio (VSWR)] and front-end degradation, necessitating in situ load-invariant power/impedance sensors. However, the state-of-the-art mm-Wave sensors only demonstrate sensing at a single frequency, instead of the entire frequency band of interest with limited accuracy over antenna VSWR. Therefore, we propose a broadband current/voltage sensing-based VSWR resilient true power/impedance sensor supporting single-ended interfaces using the GlobalFoundries 45 nm CMOS SOI process. Comprehensive theoretical analyses of the coupling mechanisms and analog multiplier architectures are presented. Sources of error for power sensing are highlighted in detail. At 34 GHz, the proposed sensor measures the power sensing error (PSE) <= +/- 1 dB for 3:1 VSWR and +/- 0.5 dB for 2:1 VSWR. Over 22-41 GHz, the measured PSE is <=+/- 3.4 dB for 3:1 VSWR and +/- 1.5 dB for 2:1 VSWR. In addition, the proposed sensor under a 50 Omega load demonstrates a maximum dynamic range of 22.89 dB at 42 GHz and a dynamic range >21.46 dB over 27-41 GHz. At 33 GHz, the measured |Gamma|/angle Gamma errors are <= 0.072/7.3 degrees for 3:1 VSWR and <= 0.04/7.13 degrees for 2:1 VSWR, while demonstrating |Gamma|/angle Gamma errors of <= 0.2/34 degrees for 3:1 VSWR and <= 0.11/27 degrees for 2:1 VSWR over the entire 27-41 GHz BW. The chip die occupies an area of 0.97 x 1.99 mm and a sensor core area of 0.48 x 1.66 mm.
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关键词
Beamforming,built-in-self-test (BiST),current/voltage sensing,multiple input multiple output (MIMO),phased array,power amplifiers (PAs),power sensing error (PSE),power/impedance sensor,voltage standing wave ratio (VSWR)
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