CHINESE
Important Publications Tzyh-Ghuang Ma
 
【Journals】
[1] H. N. Chu and T.-G. Ma, “Tunable directional coupler with very wide tuning range of power division ratio,” IEEE Microw. Wireless Compon. Lett.
[2] H.-C. Chen, H.-Y. Yang, C.-C. Kao, and T.-G. Ma, “Slot antenna with non-Foster and negative conductance matching in consecutive bands,” IEEE Antennas Wireless Propagat. Lett., vol. 18, no. 6, pp. 1203-1207, Jun. 2019.
[3] J.-J. Liao, M.-J. Jiang, H. N. Chu, and T.-G. Ma, “Linear retro-beam scanning array system,” IEEE Trans. Antennas Propagat., vol. 67, no. 8, pp. 5426-5435, Aug. 2019
[4] H. N. Chu, G.-Y. Li and T.-G. Ma, “Planar pattern switchable antenna using phase reconfigurable synthesized transmission lines,” IEEE Antennas Wireless Propagat. Lett., vol. 17, no. 12, pp. 2319-2323, Dec. 2018.
[5] Z.-H. Liu, H. N. Chu and T.-G. Ma, “Self-oscillating active integrated antenna with harmonic suppression using metamaterial resonators and ground radiation,” IEEE Antennas Wireless Propagat. Lett., vol. 17, no. 9, pp. 1687-1691, Aug. 2018.
[6] H. N. Chu and T.-G. Ma, “An extended 4  4 Butler matrix with enhanced beam controllability and widened spatial coverage,” IEEE Trans. Microw. Theory Techn., vol. 66, no. 3, pp. 1301-1311, Mar. 2018
[7] Y.-W. Chang and T.-G. Ma*, “Zeroth-order self-oscillating active integrated antenna using cross-coupled pair”, IEEE Trans. Antennas Propagat., vol. 65., no. 10, pp. 5011-5018 Oct. 2017.
[8] H. N. Chu, and T.-G. Ma*, “Beamwidth switchable planar microstrip series-fed slot array using reconfigurable synthesized transmission lines,” IEEE Trans. Antennas Propagat., vol. 65., no. 7, pp. 3766-3771, Jul. 2017.
[9] L. Chang, H.-Y. Yang, H. N. Chu, and T.-G. Ma*, “Two-element retrodirective/beam-switching array using dual-mode coupler,” IEEE Antennas Wireless Propagat. Lett, vol. 17, pp. 2240 - 2243, 2017.
[10] L. Chang and T. G. Ma*, “Dual-mode branch-line/rat-race coupler using composite right/left-handed lines,” IEEE Microw. Wireless Compon. Lett., vol. 27, no. 5, pp. 449-451, May, 2017.
[11] L. C. Hsu and T. G. Ma*, “Data modulation of a reflection-type retrodirective array,” IEEE Antennas Wireless Propagat. Lett, vol. 16, pp. 1196-1199, 2016.
[12] Z.-H. Liu, Y. W. Chang and T.-G. Ma, "High-efficiency Self-oscillating Active Integrated Antenna using Metamaterial Resonators and Its Application to Multicarrier Radio Frequency Identification Systems," IEEE Trans. Antennas Propagat., vol. 64., no. 9, pp. 3803-3810, Sep. 2016.
[13] H. H. Chen, H. N. Chu, and T.-G. Ma, "Fully Planar Amphibious Antenna Using Dual-operational Mode Synthesized Transmission Lines," IEEE Trans. Antennas Propagat., vol. 64. no. 8, pp. 3370-3379, Aug. 2016.
[14] W-J Liao, R-B Wu, T.-L. Wu, T.-G. Ma, Y.-H. Pang, Z.-M. Tsai, H.-H. Yu, K.-M. Tu, H.-C. Lin, S. T. Peng, "Promoting Effective Education in Electromagnetics: Taiwan's School of Accessible and Visualized Electromagnetics Formed [Education Corner]", IEEE Antennas and Propagation Magazine, Feb 2016, pp. 99 - 129
[15] L. C. Hsu, Y. L. Wu, J. Y. Zou, H. N. Chu, and T. G. Ma, “Periodic synthesized transmission lines with two-dimensional routing capability and its applications to power divider and couplers using integrated passive device process,” IEEE Trans. Microw. Theory Techn., vol. 64, no. 3, Mar. 2016.
[16] C.-H. Wu, C.-L. Chiu, and T.-G. Ma, " Very compact fully lumped decoupling network for an arbitrary two-element array," IEEE Antennas Wireless Propagat. Lett, vol. 15, 2016.
[17] C.-Y. Hsieh, C.-H. Wu, and T.-G. Ma, "A compact dual-band filtering patch antenna using step impedance resonators," IEEE Antennas Wireless Propagat. Lett, vol. 14, pp. 1056-1059, 2015.
[18] B.-F. Su, T.-G. Ma, “Miniaturized common-mode filter using coupled synthesized lines and mushroom resonators for high-speed differential signals,” IEEE Microw. Wireless Compon. Lett., vol. 25, no.2, pp. 112-114, Feb. 2015.
[19] Cheng-Hsun Wu, Tzyh-Ghuang Ma (2014, Dec). Pattern-reconfigurable selfoscillating active integrated antenna with frequency agility. IEEE Trans. Antennas Propagat., vol. 62, no. 12, pp. 5992-5999.
[20] Chi-Hui Lai, Wei-Shan Chung, Tzyh-Ghuang Ma (2014, Dec). On-chip miniaturized triplexer using lumped networks with dual resonators on an integrated passive device process. IEEE Trans. Microw. Theory Techn., vol. 62, no. 12, pp. 2923-2930.
[21] Y. C. Tseng and T.-G. Ma* (2014, Sep). On-chip miniaturised wideband rat-race coupler using integrated passive device technology. IET Microw. Antennas Propag., Volume 8 , Issue 12 , pp. 959–964.
[22] C.-H. Lai, C.-Y. Shiau and T.-G. Ma* (2014, Jul). Tri-mode heterogeneous integrated beam-switching/Van Atta/phase conjugating array using synthesized transmission lines. IEEE Trans. Microw. Theory Techn., vol. 62, no.9 , pp. 2180- 2192.
[23] C. H. Lai, G.-T. Zhou, and T.-G. Ma*, "On-chip miniaturized diplexer using jointed dual-mode right-/left-handed synthesized coplanar waveguides on GIPD process," IEEE Microw. Wireless Compon. Lett., vol. 24, no.4, pp. 235-247.Apr. 2014
[24] Y. C. Tseng and T.-G. Ma*, "On-chip GIPD bandpass filter using synthesized stepped impedance resonators." IEEE Microw. Wireless Compon. Lett., vol. 24, no.3, pp. 140-142. Mar. 2014.
[25] C.-H. Wu and T.-G. Ma*, "Miniaturized self-oscillating active integrated antenna with quasi-isotropic radiation," IEEE Trans. Antennas Propagat., vol. 62, no. 2, pp. 933-936, Feb. 2014.
[26] C. H. Lai and T.-G. Ma*, “Miniaturised rat-race coupler with 2nd and 3rd harmonic suppression using synthesised transmission lines”, Electron. Lett., vol. 49, no. 22, pp. 1394-1396, Oct. 2013.
[27] C.-H. Lai, C.-Y. Shiau and T.-G. Ma*, "Microwave Three-channel Selector Using Tri-mode Synthesized Transmission Lines," IEEE Trans. Microw. Theory Tech., Vol. 61, No. 10, pp. 3529-3540, Oct. 2013.
[28] J.-Y. Zou, C.-H. Wu, and T.-G. Ma*, "Heterogeneous Integrated Beam-switching/Retrodirective Array Using Synthesized Transmission Lines," IEEE Trans. Microw. Theory Tech., Vol. 61, No. 8, pp. 3128-3139, Aug. 2013.
[29] C.-H. Lin, C.-H. Wu, G.-T. Zhou, and T.-G. Ma*, "General compensation method for a Marchand balun with an arbitrary connecting segment between the balance ports," IEEE Trans. Microw. Theory Tech., Vol. 61, No. 8, pp. 2821-2830, Aug. 2013.
[30] C-H Wu, G-T Zhou, Y-L Wu, and T-G Ma,*, "Stub-loaded reactive decoupling network for two-element array using even–Odd analysis", IEEE Antennas Wireless Propagat. Lett., 2013.
[31] C.-H. Wu, and T.-G. Ma*, “Self-oscillating semi-ring active integrated antenna with frequency reconfigurability and voltage-controllability,” IEEE Trans. Antennas Propagat., Vol. 61, No. 7, pp. 3880-3885, Jul. 2013.
[32] Y.Y. Lin and T.-G. Ma*, "Frequency Reconfigurable Self-Oscillating Active Antenna with Gap-loaded Ring Radiator", IEEE Antennas Wireless Propagat. Lett., 2013.
[33] Y.-C. Tseng and T.-G. Ma, "On-chip X-band branch-line coupler using glass integrated passive device technology," Electron. Lett.,2012.
[34] Kai-Chi Lin, Cheng-Hsun Wu, Chi-Hui Lai, and Tzyh-Ghuang Ma, "Novel dual-band decoupling network for two-element closely spaced array using synthesized microstrip lines," IEEE Trans. Antennas Propagat., vol. 60, 2012.
[35] Jyun-Yu Zou, Cheng-Hsun Wu, and Tzyh-Ghuang Ma, "Miniaturized Diplexer Using Synthesized Microstrip Lines with Series LC Tanks", IEEE Microw. Wireless Compon. Lett., vol. 22, 2012.
[36] J.-W. Tsai, C. H. Wu, and T.-G. Ma*, “Novel dual-mode retro-directive antenna array using synthesized microstrip lines,” IEEE Trans. Microw. Theory Tech., vol. 59, no. 12, Dec. 2011.
[37] Ting-Pang Kuo and T.-G. Ma*, “Wideband operation of amplifying array using tunable phase shifters,” IEEE Antennas Wireless Propagat. Lett., 2011.
[38] C.-C. Wang, H. C. Chiu, and T.-G. Ma*, “A slow-wave multilayer synthesized coplanar waveguide and its applications to rat-race coupler and dual-mode filter,” IEEE Trans. Microw. Theory Tech., vol. 59, no. 7, pp. 1719-1729, Jul. 2011.
[39] Y.Y. Lin, C. H. Wu, and T.-G. Ma*, “Miniaturized self-oscillating annular ring active integrated antennas,” IEEE Trans. Antennas Propagat., vol. 59, no.10 2011.
[40] T. G. Ma* C.-C. Wang, and C. H. Lai, “Miniaturized distributed Marchand balun using coupled uniplanar synthesized CPWs,” Microw. Wireless Compon. Lett., IEEE Microw. Wireless Compon. Lett., vol. 21, no. 04, Apr. 2011. (SCI)
[41] H.-W. Hsu, C.-H. Lai, and T. G. Ma*, “A miniaturized dual-mode ring bandpass filter,” IEEE Microw. Wireless Compon. Lett., vol. 20, no. 10, pp. 542-544, Oct. 2010. (SCI)
[42] C.-C. Wang, C.-H. Lai, and T.-G. Ma*, “Miniaturized coupled-line couplers using uniplanar synthesized coplanar waveguides,” IEEE Trans. Microw. Theory Tech., vol. 58, no. 8, pp. 2266-2276, Aug. 2010. (SCI)
[43] T.-G. Ma* and J.-W. Tsai, “Band-rejected ultrawideband planar monopole antenna with high frequency selectivity and controllable bandwidth using inductively coupled resonator pairs,” IEEE Trans. Antennas Propagat., vol. 58, no. 8, pp. 2747-2752, Aug. 2010. (SCI)
[44] T. G. Ma* and Y.-T. Cheng, "Miniaturized broadside coupler using coupled slow-wave artificial lines,” Electron. Lett., vol. 45, no. 10, pp. 511-512, May. 2009. (SCI)
[45] T. G. Ma* and Y.-T. Cheng, “A miniaturized multilayered marchand balun using coupled artificial transmission lines,” IEEE Microw. Wireless Compon. Lett., vol. 19, no. 7, pp. 446-448, Jul. 2009. (SCI)
[46] T.-G. Ma*, C.-W. Wang, R.-C. Hua, and J.-W. Tsai, “A modified quasi-Yagi antenna with a new compact microstrip-to-coplanar strip transition using artificial transmission lines,” IEEE Trans. Antennas Propagat., vol. 57, no. 8, pp. 2469-2474, Aug. 2009.
[47] T. G. Ma* and C. F. Chou, “Pulse shaper for ultra-wideband applications,” Electron. Lett., vol. 44, no. 23, pp. 1360-1362, Nov. 2008. (SCI)
[48] T.-G. Ma*, C.-J. Wu, and C.-F. Chou, “An impulse-radio-based ultrawideband RF front-end module with a new multilayered microwave sampler,” Progress In Electromagnetics Research, PIER 86, pp.1-18, 2008. (SCI)
[49] T.-G. Ma*, R. C. Hua and C. F. Chou, "Design of a multi-resonator loaded band-rejected ultrawideband planar monopole antenna with controllable notched bandwidth," IEEE Trans. Antennas Propagat., vol. 56., no. 9, pp. 2875-2883, Sep. 2008. (citations > 10)
[50] R. C. Hua, C. F. Chou, S. J. Wu, and T. G. Ma*, “Compact multiband planar monopole antenna for smart phone applications,” IET Microwaves, Antennas & Propagatio, vol. 2, no. 5, pp.473-481, Aug. 2008. (SCI)
[51] C.H. Tseng* and T. G. Ma, "Measurement of differential-mode and common-mode scattering parameters of symmetric coupled-line discontinuity structure," IET Microw. Antennas Propag., vol. 2, no. 3, pp. 242-247, Apr. 2008. (SCI)
[52] S. J. Wu and T. G. Ma*, “A wideband slotted bow-tie antenna with reconfigurable CPW-to-slotline transition for pattern diversity,” IEEE Trans. Antennas Propagat., vol. 56, pp. 327-334, Fed. 2008. (SCI)
[53] T. G. Ma* and S. J. Wu, “Ultrawideband band-notched U-shape folded monopole antenna and its radiation characteristics,” Ultra-Wideband Short Pulse Electromagnetics 8, pp. 49-56 (Springer Publisher, 2007).
[54] C. W. Wang, T. G. Ma* and C. F. Yang, “A new planar artificial transmission line and its applications to miniaturized Butler matrix,” IEEE Trans. Microwave Theory Tech., vol. 55, pp. 2792-2801, Dec. 2007. (citations > 20)
[55] R.-C. Hua and T.-G. Ma*, "A printed dipole antenna for ultra high frequency (UHF) radio frequency identification (RFID) handheld reader," IEEE trans. Antennas Propagat., vol. 55, pp. 3742-3745, Dec. 2007. (citations > 12)
[56] T. G. Ma* and S. J. Wu, “Ultrawideband band-notched folded strip monopole antenna,” IEEE Trans. Antennas Propagat., vol. 55, no. 9, pp. 2473-2479, Sep. 2007. (SCI) (citations > 46)
[57] T. G. Ma*, C. J. Wu, P. K. Cheng, and C. F. Chou, “An ultrawideband monocycle pulse generator with dual resistive loaded stunt stubs,” Microw. Optical Technology. Lett., vol. 49, no.2, pp. 459-462, Fed. 2007. (SCI)
[58] T. G. Ma* and C. H. Tseng, “An ultrawideband coplanar waveguide-fed tapered ring slot antenna,” IEEE Trans. Antennas Propagat., Vol. 54, No. 4, pp. 1105-1110, April 2006. (SCI) (citations > 34)
[59] T. G. Ma and S. K. Jeng, " Planar miniature tapered-slot-fed annular slot antennas for ultra-wideband radios ," IEEE Trans. Antennas Propagat, Vol. 53, pp. 1194-1202, Mar. 2005. (SCI) (citations > 75)
[60] T. G. Ma and S. K. Jeng, “A printed dipole antenna with tapered slot feed for ultra-wideband applications,” IEEE Trans. Antennas Propagat, Vol. 53, No. 11, pp. 3833 – 3836, Nov. 2005. (SCI) (citations > 27)
[61] T. G. Ma and S. K. Jeng, “A planar tapered-slot-fed annular slot antenna with band-notched characteristics for ultra-wideband radios,” IEICE Trans. Fundamentals, Vol. E88-A, No. 9, pp. 2384-2386, Sep. 2005. (Special issue on UWB systems). (SCI)
   
 
【Proceedings】
[1] T.-G. Ma*, J.-W. Tsai, K.-C. Lin, C.-H. Wu, C.-H. Lai, J.-Y. Zou, and C.-Y. Shiau, "Dual-mode Synthesized Microstrip Lines and Their Applications to Innovative Antenna Arrays," 2012 Asia Pacific Conference on Antennas and Propagation (APCAP), Singapore. (invited paper)
[2] H. C. Chiu, C. H Lai and T. G. Ma*, “Miniaturized rat-race coupler with out-of-band suppression using double-layer synthesized coplanar waveguides,” 2012 International Microwave Symposium, Montreal Canada.
[3] K. C Lin, C.-H. Wu, and T. G. Ma*, “Novel dual-band decoupling network for two-element closely spaced L-Shape antenna array,” 2012 IEEE Antennas and Propagation Symposium, Chicago, IL.
[4] H.-W. Hsu and T. G. Ma*, “Miniaturized dual-band ring bandpass filter with harmonic suppression and passband tunability,” in Proc. 2011 Asia-Pacific Microwave Conference. (EI)
[5] C.-H. Wu*, W. J. Liao, and T.-G. Ma, “A band-notched U-shaped ultrawideband planar monopole antenna using open-loop ring resonators,” in Proc. 2011 International Symposium on Antennas and Propagation, Jeju Island, Korea, Oct 25-28, 2011. (EI)
[6] J.-Yu Zou*, C.-H. Wu and T.-G. Ma, “Design of a compact tri-band printed monopole antenna for WLAN and GPS applications,” in Proc. 2011 International Symposium on Antennas and Propagation, Jeju Island, Korea, Oct 25-28, 2011. (EI)
[7] C.-H. Lai*, W.-S. Chung, C.-H. Wu and T.-G. Ma, “A study of mutual coupling reduction with two closely-spaced dual-band fork-shape monopoles,” in Proc. 2011 International Symposium on Antennas and Propagation, Jeju Island, Korea, Oct 25-28, 2011. (EI)
[8] Y.-C. Tseng*, C.-H. Lai, and T.-G. Ma, “A miniaturized tri-band monopole antenna with dual series quasi-lumped resonators,” in Proc. 2011 International Symposium on Antennas and Propagation, Jeju Island, Korea, Oct 25-28, 2011. (EI)
[9] J.-Yu Zou*, C.-H. Wu and T.-G. Ma, “Miniaturized branch-line coupler with wide upper stopband using novel synthesized microstrip lines with series LC tanks,” in Proc. 2011 IEEE International Workshop on Electromagnetics; Applications and Student Innovation, Taipei Taiwan, Aug. 8-10, 2011. (3rd Prize in Student Innovation Award) (EI)
[10] Y.-L. Song*, F.-C. Chuang, C. Yu, Y.-C. Tseng, J.-Y. Zou, S.-G. Shsu, T.-G. Ma, T.-L. Wu and L.-M. Chang, “Evaluation of magnetic field from varied permutation power transmission line at high technology nano-fab,” in Proc. the 4th International Conference on Power Electronics Systems and Applications, Hong Kong, June 8-10, 2011.
[11] F.-C. Chuang*, Y.-L. Song, C. Yu, T.-G. Ma, T.-L. Wu and L.-M. Chang, “Active field canceling system in next generation nano-fab,” in Proc. The 4th International Conference on Power Electronics Systems and Applications, Hong Kong, June 8-10, 2011.
[12] F.-C. Chuang*, Y.-L. Song, C. Yu, T.-G. Ma, T.-L. Wu and L.-M. Chang, “Magneto-resistive sensor readout circuit and field canceling system in next generation nano-fab”, in Proc. 2011 Asia-Pacific EMC Symposium, Jeju Island, Korea, May 16-19, 2011. (Student Paper Award) (EI)
[13] C.-H. Wu* and T.-G. Ma, “Self-oscillating dual-ring active integrated antenna,” in 2011 IEEE Antennas and Propagation Symposium, Spokane WA, Jul. 3-8 2011. (Honorable Mention Winner in Student Paper Competition)
[14] T. G. Ma*, Y. T. Cheng, and J. W. Tsai, “Compact Multilayered Three-Channel Multiplexer Using Synthesized Microstrip lines and Striplines”, 2011 International Workshop on Antenna Technology. (Best Paper Award)
[15] J. W. Tsai and T. G. Ma*, “Compact dual-mode four-port network with quadrature-coupling and direct-thru transmission in each of the individual bands”, in 2011 International Microwave Symposium, Baltimore MD.
[16] C.-H. Lai*, Y.-C. Tseng, and T.-G. Ma, “Novel synthesized microstrip line with controllable transmission zeros for harmonic suppressions,” in Proc. 2010 Asia Pacific Microwave Conference.
[17] H.-Y. Chen, C.-H. Lai, Y.-Y. Chen, P.-W. Chen, K.-Y. Su, Y.-T. Lin, C.-F. Yang, T.-G. Ma*, “A Miniaturized Built-in Antenna for USB Digital Television (DTV) Tuners,” in 2010 IEEE Antennas and Propagation Symposium Digest, Toronto Canada, July 2010.
[18] C.-C. Wang, C.-H. Lai, and T.-G. Ma*, "Novel uniplanar synthesized coplanar waveguide and the application to miniaturized rat-race coupler,"in 2010 IEEE International Microwave Symposium Digest, Anaheim CA, May 22~27 2010.
[19] C.-H. Lai* and T.-G. Ma, “Novel synthesized microstrip line with quasi-elliptic response for harmonic suppressions,” in 2010 IEEE International Microwave Symposium Digest, Anaheim CA, May 22~27 2010.(EI)
[20] C. H. Lai*, Y. T. Cheng, and T. G. Ma, “An Artificial-Transmission-Line-Based Miniaturized Doubly Balanced Ring Mixer,” in Proc. 2010 PIERS Xi’an, vol. 6, no. 4, Xi’an China, Mar. 22-26, pp. 322-325.
[21] T.G. Ma*, “Band-rejected ultrawideband planar monopole antenna with bandstop-filter-like response using inductively coupling scheme,” to be present in 2009 European Conference on Antennas and Propagation (EuCAP), convened session organized by Dr. Zhi-Ning Chen.
[22] C. C. Wang* and T. G. Ma, “Miniaturized branch-line coupler using conductor backed coplanar waveguide artificial transmission lines,” in Proc. 2008 National Symposium on Telecommunications, Kaohsiung Taiwan, Dec. 2008.
[23] W. L. Chang and T. G. Ma*, “A four-arm planar monopole antenna for smart phone applications” in Proc. 2008 International Symposium on Antennas and Propagation (ISAP), Taipei Taiwan, Oct. 22~27 2008.
[24] T. G. Ma* and C. F. Chou, “A meandered V-sickle slotted ground structure and its application to novel ultrawideband pulse shaper” in Proc. 2008 Asia Pacific Microwave Conference. (EI) (2008 APMC prize competition shortlisted)
[25] T. G. Ma* and C. F. Chou, “A compact multilayered Magic-T in microstrip form and its application to microwave sampler,” in 2008 IEEE International Microwave Symposium Dig., Atlanta GA, Jun 15~20 2008, pp. 887-890.(EI)
[26] T. G. Ma*, C. W. Wang, R. C. Hua, and C. F. Yang, “Phased array antenna for UHF RFID applications using artificial transmission lines,” in Proc. IEEE International Workshop on Antenna Technology (iWAT) 2008, Chiba Japan, Mar 3~6 2008, pp. 454-457.(EI) (Poster Presentation Award)
[27] C. W. Wang, K.-H. Li, C.-J. Wu, and T.-G. Ma*, "A Miniaturized Wilkinson Power Divider with Harmonic Suppression Characteristics Using Planar Artificial Transmission Lines," in Proc. 2007Asia-Pacific Microwave Conference, Bangkok Thailand, Dec. 11~13, pp. 1371~1374
[28] S J. Wu and T.-G. Ma*, “A slotted bow-tie antenna with reconfigurable CPW-to-slotline transition for pattern diversity,” in Proc. 2007 International Symposium on Antennas and Propagation, Niigata Japan, Aug. 20~24 2007.(ISAP).
[29] C. W. Wang, T.-G. Ma* and C. F. Yang, “Miniaturized branch-line coupler with harmonic suppression for RFID applications using artificial transmission lines,” in 2007 IEEE International Microwave Symposium Digest, Honolulu, 3–8 June 2007, pp. 29-32.
[30] R. C. Hua*, C. W. Wang, and T.-G. Ma, “A planar quasi-Yagi antenna with a new microstrip-to-CPS balun by artificial transmission lines,” in 2007 IEEE AP-S Int. Symp. Dig., vol. 3, Honolulu, HI , June 10~15 2007, pp. 2305-2308.
[31] W.-H. Wang, K.-C. Liao, H.-W. Liu, S.-F. Yang, C.-F. Yang*, T.-G. Ma, N. Tai, “A metal mounting tag for passive UHF RFID applications,” in 2007 IEEE AP-S Int. Symp. Dig., vol. 3, Honolulu, HI , June 10~15 2007, pp. 1769-1772.
[32] R. C. Hua, C. F. Chou, and T. G. Ma*, “On the design of multipole band-notched UWB planar monopole antenna with good frequency selectivity,” in Proc. 2007 Progress in Electromagnetic Research Progress Symposium (PIERS 2007).
[33] S. J. Wu and T.-G. Ma*, “A passive UHF RFID meandered tag antenna with tuning stubs,” in Proc. 2006 Asia-Pacific Microwave Conference, vol. 3, Yokohama Japan, Dec. 2006, pp. 1486-1489
[34] C.-W. Wang*, T.-G. Ma, and C.-F. Yang, “A compact low-pass filter design with good selectivity and wide bandwidth using quasi-lumped elements and discontinuous microstrip lines,” 2006 National Symposium on Telecommunications, Kaohsiung Taiwan, Dec. 2006.
[35] T. G. Ma* and S. J. Wu, “A new band-notched U-shape folded monopole for UWB applications,” in 2006 IEEE AP-S Int. Symp. Dig., Albuquerque, NM, July 2006, pp. 1643-1646.
[36] T. G. Ma and S. K. Jeng, “A novel compact ultra-wideband printed dipole antenna with tapered slot feed,” in IEEE AP-S Int. Symp. Dig., vol. 3, Columbus, OH , June 2003, pp. 608-611.
[37] T. G. Ma and S. K. Jeng, “A parameter study of a novel ultra-wideband printed dipole antenna with tapered slot feed,” in Proc. Asia-Pacific Microwave Conference, vol. 3, Seoul, Korea, Nov. 2003, pp. 1981-1984.
[38] T. G. Ma and S. K. Jeng, “A tapered-slot-feed loop antenna for ultra-wideband applications,” in Proc. Joint UWBST & IWUWBS 2004, Kyoto, Japan, May 2004, pp.166-170.
[39] Y. S. Lin, T. G. Ma, S. K. Jeng and C. H. Chen, “Coplanar waveguide-fed dual exponentially tapered slot antennas for ultra-wideband applications,” in IEEE AP-S Int. Symp. Dig., vol. 3, Monterey, CA , June 2004, pp. 2951-2954
[40] T. G. Ma and S. K. Jeng, “A compact tapered-slot-fed annular slot antenna for ultra-wideband applications,” in IEEE AP-S Int. Symp. Dig., vol. 3, Monterey, CA , June 2004, pp. 2943-2946.
   
 
【Books/Patents/Technical Reports】
[1] T.-G. Ma, C.-W. Wang, C.-H. Lai, Y.-C. Tseng, Synthesized transmission lines: design, circuit implementation, and phased array applications, Wiley-IEEE Press, 2017. ISBN: 978-1-118-97572-5
[2] 馬自莊、陳弦義、楊成發、林勇達、陳博文, 數位電視天線, 中華民國專利, 證書號: I361516
[3] 馬自莊、陳弦義、楊成發、林勇達、陳博文, 數位電視天線, 中華民國專利, 證書號: I357691
[4] 馬自莊、陳弦義、楊成發、林勇達、陳博文, 數位電視天線, 中華民國專利, 證書號: I358855
[5] 馬自莊、周金鋒, 微型化微波取樣器, 中華民國專利, 證書號: I344721
[6] 馬自莊、華人慶、蔡志偉, 超高頻射頻平面天線, 中華民國專利, 證書號: I358854
[7] 楊昇帆、廖冠集、王威翔、楊成發*、馬自莊, 具有一體成型天線之射頻辨識標籤, 中華民國專利,證書號:M352141。
[8] 邱振瑋、楊成發*、馬自莊, 射頻辨識標籤之天線設計, 中華民國專利,證書號:M352140。