參考文獻 |
[1] M. Hangai, R. Komaru, Y. Tarui, Y. Kamo, M. Hieda, M. Nakayama “An X-band 50% bandwidth high-power GaN HEMT T/R switch,” Asia-Pacific Microwave Conf. , pp.135-138, 2010.
[2] B. Y. Ma, K. S. Boutros, J. B. Hacker, G. Nagy “High power AlGaN/GaN Ku-band MMIC SPDT switch and design consideration ,” Microwave Symp. Digest, pp.1473-1476, 2008.
[3] M. Hirose, Y. Takada , M. Kuraguchi , T. Sasaki, K. Tsuda “A 1.9 GHz SPDT switch implemented with GaN HFETs featuring two different depth-recesses in i-AlGaN ,” Compod. Semicond. Integrated Circuit Symp. , pp.163-166, 2004.
[4] A. Minsik, K. Hyun-Woong, L. Chang-Ho, and J. Laskar, “A 1.8-GHz 33-dBm P0.1-dB CMOS T/R Switch Using Stacked FETs With Feed-Forward Capacitors in a Floated Well Structure,” IEEE Trans. Microwave Theory Tech. , vol. 57, no.11, pp. 2661-2670, 2009.
[5] M.-C. Yeh, Z.-M. Tsai, R.-C. Liu, K. Y. Lin, Y.-T. Chang, and H. Wang, “ Design and Analysis for a Miniature CMOS SPDT Switch Using Body-Floating Technique to Improve Power Performance ” IEEE Trans. Microwave Theory Tech., vol. 54, no.1, pp. 31-39, Jun. 2006.
[6] J.-H. Wang, H.-H. Hsieh, L.-H. Lu. “A 5.2-GHz CMOS T/R Switch for Ultra-Low-Voltage Operations ,” IEEE Trans. Microwave Theory Tech. , vol. 56, no.8, pp. 1774-1782, 2008.
[7] S.-L. Liu, M.-H. Wu, A. Chin, “ Design of a CMOS T/R Switch With High Power Capability: Using Asymmetric Transistors ,” IEEE Microwave and Wireless Compon. Lett., , vol. 22, no.12, pp. 645-647, 2012.
[8] Y. Yoon, H. Kim, K. H. An, J. Kim, C.-H. Lee, J. Laskar, “A fully-integrated dual-mode tunable CMOS RF power amplifier with enhanced low-power efficiency,” Eur. Microwave Conf., pp. 982-985, 2010.
[9] Y. Yoon, H. Kim, K. H. An, J. Kim, C.-H. Lee, J. Laskar, “A Dual-Mode CMOS RF Power Amplifier With Integrated Tunable Matching Network ,” IEEE Trans. Microwave Theory Tech. , vol. 60, no.1, pp. 77-88, 2012.
[10] C.M. Ta, E. Skafidas, R.J Evans.“A 60-GHz CMOS Transmit/Receive Switch ” Radio Freq. Integrated Circuits Symp. , 2007 IEEE , pp. 725-728, Feb. 2007.
[11] X.-J. Li and Y.-P. Zhang, “ Flipping the CMOS Switch ” IEEE Microwave Mag. , vol. 11, no.1, pp. 86-96, Feb. 2010.
[12] F.-J. Huang, “A 0.5-μm CMOS T/R switch for 900-MHz wireless applications , ” IEEE J. Solid-State Circuits, , vol. 36, no.3, pp.486-492, 2001.
[13] F.-J. Huang , “Single-pole double-throw CMOS switches for 900-MHz and 2.4-GHz applications on p-silicon substrates ,” IEEE J. Solid-State Circuits., vol. 39, no.1, pp.35-41, 2004.
[14] J. T Colvin, S.S Bhatia, K.K O, “Effects of substrate resistances on LNA performance and a bondpad structure for reducing the effects in a silicon bipolar technology , ” IEEE J. Solid-State Circuits., vol. 34, no.9, pp.1339-1344, 1999.
[15] M. Ahn, C.-H Lee, B.-S Kim, and J. Laskar, “3W SPDT Antenna Switch Design Using Standard 0.18 m CMOS Process,” IEEE Int. Microwave Symp. Digest, 2008, pp. 555-558.
[16] M. Ahn, C.-H Lee, B.-S Kim, and J. Laskar, “A High-Power CMOS Switch Using A Novel Adaptive Voltage Swing Distribution Method in Multi-stack FETs,” IEEE Trans. Microwave Theory Tech., vol. 56, no.4, pp. 849-858, 2008.
[17] X. Haifeng and K. O. Kenneth, “A 31.3-dBm Bulk CMOS T/R Switch Using Stacked Transistors With Sub-Design-Rule Channel Length in Floated p-Wells, ” IEEE J. Solid-State Circuits., vol. 42, no.11, pp. 2528-2534, Nov. 2007.
[18] M. Ahn, C.-H Lee, B.-S Kim, and J. Laskar, “CMOS High Power SPDT Switch using Multigate Structure,” IEEE Int. Symp. on Circuits and Syst. ,2007, pp. 3283-3286.
[19] M. Ahn, C.-H Lee, B.-S Kim, and J. Laskar, “A High Power CMOS Switch Using Substrate Body Switching in Multistack Structure,” IEEE Microwave and Wireless Compon. Lett., vol. 17, no.9, pp. 682-684, 2007.
[20] Hamedi-Hagh, S. Salama, C.A.T., “A novel C-band CMOS phase shifter for communication systems ,” IEEE Int. Symp. on Circuits and Syst. , vol.2, no.2, pp. II-316 - II-319, 2003.
[21] M. Abdalla, K. Phang, G.V Eleftheriades, “A Bi-Directional Electronically Tunable CMOS Phase Shifter Using the High-Pass Topology ,” IEEE Microwave Int. Symp, no.2, pp. 2173-2176, 2007.
[22] M. Ahn, C.-H Lee, B.-S Kim, and J. Laskar, “A High-Power and Highly Linear CMOS Switched Capacitor ,” IEEE Microwave and Wireless Compon. Lett., vol. 20, no.11, pp. 619-621, 2010.
[23] D.L.H Tong, R. Lababidi, F. Baron, A. Louzir, B. Jarry. “Low-pass Active Filter Enabling DVB-H/T and GSM Standard Coexistence ,” IEEE Microwave Int. Symp., pp. 1047-1050, 2007.
[24] X. Jin, F Dai, F. Foster “A 6th order zero capacitor spread 1MHz – 10MHz tunable CMOS active-RC low pass filter with fast tuning scheme ,” IEEE Int. Symp. Circuits and Systems, pp. 1187-1190, 2012.
[25] J. Liu , X. Fan, K. Bao,“A 4th-order active-Gm-RC low-pass filter with RC time constant auto-tuning for reconfigurable wireless receivers ,” IEEE Solid-State and Integrated Circuit Tech., pp. 1-3, 2012.
[26] X. Yang, J. Wu, S. Beguhn,T. Nan, Y. Gao, Z. Zhou, N.X Sun, “Tunable Bandpass Filter Using Partially Magnetized Ferrites With High Power Handling Capability ,” IEEE Microwave and Wireless Compon. Lett., vol. 23, no.4, pp.184-186, 2013.
[27] D. M. Pozar, Microwave Engineering. John Wiley & Sons, Inc., 2006.
[28] K. Chen, Sigmarsson, H. Hjalti, D. Peroulis, “Power handling of high-Q evanescent-mode tunable filter with integrated piezoelectric actuators ,” Microwave Symp. Digest , pp.1-3, 2012.
[29] X. Liu, L.P.B Katehi, W.J Chappell, D. Peroulis, “Power Handling of Electrostatic MEMS Evanescent-Mode (EVA) Tunable Bandpass Filters ,” IEEE Trans. Microwave Theory Tech., vol. 60, no.2, pp.270-283, 2012.
[30] Z.-M. Tsai, Y.-S. Jiang, J. Lee, K.-Y. Lin, H. Wang, “Analysis and Design of Bandpass Single-Pole–Double-Throw FET Filter-Integrated Switches ,” IEEE Trans. Microwave Theory Tech., vol. 55, no.8, pp.1601-1610, 2007.
[31] F. McGrath, C. Varmazis, C. Kermarrec, and R. Pratt, “Novel High Performance SPDT Power Switches Using Multi-Gate FET’s,” IEEE Int. Microwave Symp. Digest, July 1991, pp. 839-842.
[32] Z. Wang, S. Gao, N. F, C.-W Park “GaN power amplifier with harmonic controlled by dual band-notched UWB bandpass filter,” Eur. Microwave Conf., pp. 240-243, 2011.
[33] 胡詠昕, “改善功率承受能力之微波/毫米波開關電路, ” 碩士論文, 國立中央大學, 2012.
[34] 王志華, “高功率CMOS微波開關設計, ” 碩士論文, 國立中央大學, 2011. |