참고문헌
- H. Kondoh et al., "77 GHz fully-MMIC automotive forward-looking radar", GaAs IC Symposium Digest, pp. 211-214, Oct. 1999
- J. Mondal et al., "77 GHz MMIC T/R module for diplex radar application in collision avoidance radar", GaAs IC Symposium Digest, pp. 181-184, Oct. 1998
- A. Tessmann et al., "A 77 GHz GaAs pHEMT transceiver MMIC for automotive sensor applications", GaAs IC Symposium Digest, pp. 207-210, Oct. 1999
- K. Kamozaki et al., "A 77 GHz T/R MMIC chip set for automotive radar systems", GaAs IC Symposium Digest, pp. 275-278, Oct. 1997
- H. Siweris et al., "A mixed Si and GaAs chip set for millimeter-wave automotive radar front-ends", IEEE RFIC-S, pp. 191-194, Jun. 2000
- D. Ingram et al., "Compact W-band solid-state MMIC high power sources", IEEE MTT-S, pp. 955-958, Jun. 2000
- S. Weinreb et al., "W-Band 0.3 W pHEMT MMIC power amplifier module", IEEE Microwave and Millimeter-Wave Monolithic Circuits Symposium Digest, pp. 25-28, May 1995
- P. Stenger et al., "A miniature, MMIC one watt W-Band solid-state transmitter", IEEE MTT-S, pp. 431-434, Jun. 1997
- S. Fujita et al., "Novel HEMT structures using a strained InGaP Schottky layer", in Proc. 5th Int. Conf. Indium Phosphide and Related Materials, Paris, France, pp. 497-500, Apr. 1992
-
S. Kim et al., "50 nm
$In_{0.8}GaP/In_{0.4}AlAs/In_{0.35}GaAs$ metamorphic HEMTs with ZEP/UV5 bilayer Tgate", IEEE Electronics Letters, vol. 43, Issue 16, pp. 895-897, Aug. 2007 https://doi.org/10.1049/el:20071551 - S. Yeon et al., "High electron mobility transistors yield improvement with ultrasonically assisted recess for high-speed integrated circuits", Japanese Journal of Applied Physics, vol. 45, no. 4B, pp. 3376-3379, 2006 https://doi.org/10.1143/JJAP.45.3376
- R. Majidi-Ahy et al., "100-GHz high-gain InP MMIC cascode amplifier", IEEE J. Solid-State Circuits, vol. 26, pp. 1370-1378, Sep. 1997 https://doi.org/10.1109/4.90088
- A. Tessmann et al., "High-gain cascode MMIC's in coplanar technology at W-Band frequencies", IEEE Microwave Guided Wave Letters, vol. 8, pp. 430-431, Dec. 1998 https://doi.org/10.1109/75.746765
- W. Michael, J. B. Thomas, "Experimental class-F power amplifier design using computationally efficient and accurate large-signal model", IEEE Trans. Microwave Theory and Tech., vol. 53, no. 5, pp. 1723–1731, May 2005 https://doi.org/10.1109/TMTT.2005.847108
- H. Wang et al., "Power-amplifier modules covering 70-113 GHz using MMICs", IEEE Trans. Microwave Theory and Tech., vol. 49, no. 1, pp. 9-16, Jan. 2001
- H. Chang et al., "A 77-GHz MMIC power amplifier for automotive radar applications", IEEE Microwave and Wireless Components Letters, vol. 13, pp. 143-145, 2003 https://doi.org/10.1109/LMWC.2003.811059
- J. Udomoto et al., "A 38/77 GHz MMIC transmitter chip set for automotive applications", IEEE MTT-S, vol. 3, pp. 2229-2232, Jun. 2003
- D. Kang et al., "A 77 GHz automotive radar MMIC chip set fabricated by a 0.15 μm m-HEMT technology", Microwave Symposium Digest, IEEE MTT-S, pp. 2111-2114, Jun. 2005
-
K. Kim et al., "A 77 GHz transceiver for automotive radar system using a 120 nm
$In_{0.4}AlAs/In_{0.35}GaAs $ metamorphic HEMTs", IEEE Compound Semiconductor Integrated Circuit Symposium, pp. 201-204, Nov. 2006