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Ka-Band High-Linearity and Low-Noise Gallium Nitride MMIC Amplifiers for Spaceborne Telecommunications., , , and . IEEE Access, (2023)Noise measure-based design methodology for simultaneously matched multi-stage low-noise amplifiers., , , and . IET Circuits Devices Syst., 6 (1): 63-70 (2012)13-bit GaAs serial-to-parallel converter with compact layout for core-chip applications., , , , and . Microelectron. J., 45 (7): 864-869 (2014)Single MMIC receivers for C-band T/R module in 0.25 μm GaN technology., , , , , , and . PRIME, page 201-204. IEEE, (2018)Broadband Amplifier Design Technique by Dissipative Matching Networks., , , , , , and . IEEE Trans. Circuits Syst. I Regul. Pap., 68 (1): 148-160 (2021)A Ka-Band Low-Noise Amplifier for Space Applications in a 100 nm GaN on Si technology., , , , , and . PRIME, page 161-164. IEEE, (2019)A Simple Test to Check the Inherent-Stability Proviso on Field-Effect Transistors., , , and . IEEE Access, (2018)Verifying Rollett's Proviso on Active Devices Under Arbitrary Passive Embeddings., , , and . IEEE Trans. Circuits Syst. II Express Briefs, 64-II (8): 932-936 (2017)MMIC LNAs for Radioastronomy Applications Using Advanced Industrial 70 nm Metamorphic Technology., , , and . IEEE J. Solid State Circuits, 45 (10): 2008-2015 (2010)UWB propagation measurements by PN-sequence channel sounding., , and . ICC, page 3414-3418. IEEE, (2004)