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Integrated receivers up to 220 GHz utilizing GaAsmHEMT technology

, , , , , , , , , , , , and . in Proc. IEEE International Symposium on Radio-Frequency Integration Technology, Singapore, (2009)

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(Weak) Dual hyper K -ideals., , and . Soft Comput., 11 (10): 985-990 (2007)On the status of Low Noise Millimeterwave MMIC Receivers, , , , , , , , , and 1 other author(s). in Proc. Asia Pacific Microwave Conf., Singapore, (2009)MMIC-based Components for MM-wave Instrumentation, , , , , , , , and . IEEE Microwave and Wireless Components Letters, 20 (10): 578 (2010)Single-Chip 220 GHz Active Heterodyne Receiver and Transmitter MMICs with On-Chip Integrated Antenna, , , , , , , , , and . IEEE Trans. Microwave Theory and Techniques, 59 (2): 466--478 (2011)Single-Chip Frequency Multiplier Chains for Millimeter-Wave Signal Generation, , , , , , and . IEEE Trans. Microwave Theory and Techniques, 57 (12): 3134--3142 (2009)VoIP using Fragmentation and Interleaving over Slow WAN Links., , , , and . ISCA PDCS, page 335-338. ISCA, (2001)MMIC design at G-band (140-220 GHz) including a 220 GHz Single-Chip Receiver MMIC with Integrated Antenna, , , , , , , , , and 5 other author(s). in Proc. GHz Symposium, Goeteborg, (2008)A Broadband 60-to-120 GHz Single-Chip MMIC Multiplier Chain, , , , , , and . in Proc. IEEE MTT-S International Microwave Symposium, Boston, (June 2009)Integrated Front-ends up to 200 GHz, , , , , , , , , and . in Proc. IEEE International Microwave Workshop Series on Millimeter Wave Integration Technologies, (2011)Integrated circuits up to 220 GHz utilizing GaAs-mHEMT technology, , , , , , , , , and 3 other author(s). submitted to IEEE Trans. Microwave Theory and Techn., (2010)