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Tolerance Considerations for MHMIC Manufacturing Process at Millimeter-Wave Band.

, , , and . Sensors, 24 (8): 2486 (April 2024)

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Highly isolated broadband five-port circuit for V-band high data-rate wireless communications., and . PIMRC, page 1-4. IEEE, (2017)A new compact V-band six-port receiver for high data-rate wireless applications., and . WiSNet, page 26-28. IEEE, (2015)Optimization of 16-QAM and 32-QAM Constellations for Mitigating Impairments of Phase Noise in Millimeter-Wave Receivers., , , , and . IEEE Trans. Wirel. Commun., 21 (6): 3605-3616 (2022)Optimization of 16-QAM for Mitigating Impairments in 60 GHz Six-port Receivers., , and . WiSNet, page 47-49. IEEE, (2021)Tolerance Considerations for MHMIC Manufacturing Process at Millimeter-Wave Band., , , and . Sensors, 24 (8): 2486 (April 2024)A Compact V-Band Planar Gap-Coupled 4×1 Antenna Array: Improved Design and Analysis., and . IEEE Access, (2017)An improved-performance V-band six-port receiver for future 5G short-range wireless communications., , and . WiSNet, page 30-32. IEEE, (2017)V-Band Multi-Port Direct Down-Conversion Receivers: Experimental Implementations and Performance Comparison., , , and . WiSNet, page 1-3. IEEE, (2019)Complete Characterization of Novel MHMICs for V-Band Communication Systems., , , , and . J. Electr. Comput. Eng., (2013)Assessment of Finger Fat Pad Effect on CSRR-Based Sensor Scattering Parameters for Non-Invasive Blood Glucose Level Detection., , , and . Sensors, 23 (1): 473 (2023)