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2014 | OriginalPaper | Chapter

2. Multilayered Microstrip Transmission Line

Authors : Kumud Ranjan Jha, Ghanshyam Singh

Published in: Terahertz Planar Antennas for Next Generation Communication

Publisher: Springer International Publishing

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Abstract

There are a number of application areas of the terahertz (THz) spectrum which have been identified and discussed in Chap. 1. These potential areas can be categorized into the traditional and modern application areas. The traditional application areas are the imaging, sensing, and spectroscopy. In addition to this, the terahertz wireless communication is an emerging area which may be categorized as the modern application area. The success of the THz wireless communication depends on the efficiency of the several components such as sources, detectors, and radiators. However, the antenna is the key element of the wireless communication systems.

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Literature
1.
go back to reference Gonzalo, R., Martinez, B.: The effect of dielectric permittivity on the properties of photonic band gap devices. Microw. Opt. Tech. Lett. 23(2), 92–95 (1999) Gonzalo, R., Martinez, B.: The effect of dielectric permittivity on the properties of photonic band gap devices. Microw. Opt. Tech. Lett. 23(2), 92–95 (1999)
2.
go back to reference Meade, R.D., Rappe, A.M., Brommer, K.D., Joannopoulos, J.D.: Nature of the photonic band gap devices: Some insights from a field analysis. J. Opt. Soc. Am. B 10(2), 328–332 (1993) Meade, R.D., Rappe, A.M., Brommer, K.D., Joannopoulos, J.D.: Nature of the photonic band gap devices: Some insights from a field analysis. J. Opt. Soc. Am. B 10(2), 328–332 (1993)
3.
go back to reference Gonzalo, R.: Enhanced patch-antenna performance by suppressing surface waves using photonic-band gap substrates. IEEE Trans. Microw. Theo. Tech. 47(11), 2131–2138 (1999) Gonzalo, R.: Enhanced patch-antenna performance by suppressing surface waves using photonic-band gap substrates. IEEE Trans. Microw. Theo. Tech. 47(11), 2131–2138 (1999)
4.
go back to reference Brown, E.R., Parker, C.D, Yablonovitch. E.: Radiation properties of a planar antenna on a photonic-crystal substrate. J. Opt. Soc. Am. B 10(2), 404–407 (1993) Brown, E.R., Parker, C.D, Yablonovitch. E.: Radiation properties of a planar antenna on a photonic-crystal substrate. J. Opt. Soc. Am. B 10(2), 404–407 (1993)
5.
go back to reference Dahele, J.S., Lee, K.F., Wong, D.P.: Dual-frequency stacked annular-ring microstrip antenna. IEEE Trans. Antennas Propag. 35(11), 1281–1285 (1987) Dahele, J.S., Lee, K.F., Wong, D.P.: Dual-frequency stacked annular-ring microstrip antenna. IEEE Trans. Antennas Propag. 35(11), 1281–1285 (1987)
6.
go back to reference Wang, J., Fralich, R., Wu, C., Litva, J.: Multifunctional aperture-coupled stacked antenna. Electron. Lett. 26(25), 2067–2068 (1990) Wang, J., Fralich, R., Wu, C., Litva, J.: Multifunctional aperture-coupled stacked antenna. Electron. Lett. 26(25), 2067–2068 (1990)
7.
go back to reference Sharma, A., Singh, G.: Design of single pin shorted three-dielectric-layered substrates rectangular patch microstrip antenna for communication systems. Prog. Electromagn. Res. Lett. 2, 157–165 (2008) Sharma, A., Singh, G.: Design of single pin shorted three-dielectric-layered substrates rectangular patch microstrip antenna for communication systems. Prog. Electromagn. Res. Lett. 2, 157–165 (2008)
8.
go back to reference Croq, F., Pozar, D.M.: Multifrequency operation of microstrip antennas using aperture coupled parallel resonators. IEEE Trans. Antennas Propag. 40(11), 1367–1374 (1992) Croq, F., Pozar, D.M.: Multifrequency operation of microstrip antennas using aperture coupled parallel resonators. IEEE Trans. Antennas Propag. 40(11), 1367–1374 (1992)
9.
go back to reference Richards, W.F., Davidson, S. E., Long, S.A.: Dual-band reactively loaded microstrip antenna. IEEE Trans. Antennas Propag. 33(5), 556–560 (1985) Richards, W.F., Davidson, S. E., Long, S.A.: Dual-band reactively loaded microstrip antenna. IEEE Trans. Antennas Propag. 33(5), 556–560 (1985)
10.
go back to reference Pierewicz, R., Jacob, M., Koach, M., Schoebel, J., Kurner, T.: Performance analysis of future multigigabit wireless communication systems and THz frequency with highly directive antennas in indoor environments. IEEE J. Selected Topics in Quantum Electronics 14(2), 421–430 (2008) Pierewicz, R., Jacob, M., Koach, M., Schoebel, J., Kurner, T.: Performance analysis of future multigigabit wireless communication systems and THz frequency with highly directive antennas in indoor environments. IEEE J. Selected Topics in Quantum Electronics 14(2), 421–430 (2008)
11.
go back to reference Kadoya, Y., Onuma, M., Yanagi, S., Ohkubo, T., Sato, N., Kitagawa, J.: THz wave propagation on strip-lines: devices, properties, and applications. Radioengineering 17(2), 48–55 (2008) Kadoya, Y., Onuma, M., Yanagi, S., Ohkubo, T., Sato, N., Kitagawa, J.: THz wave propagation on strip-lines: devices, properties, and applications. Radioengineering 17(2), 48–55 (2008)
12.
go back to reference Harocopus, Jr., W.P., Katehi, P.B.: Characterization of microstrip discontinuities on multilayer dielectric substrates including radiation losses. IEEE Microw. Theo. Tech. 37(12), pp. 2058–2066 (1989) Harocopus, Jr., W.P., Katehi, P.B.: Characterization of microstrip discontinuities on multilayer dielectric substrates including radiation losses. IEEE Microw. Theo. Tech. 37(12), pp. 2058–2066 (1989)
13.
go back to reference You, C., Tentzeris, M.M. , Hwang, W. : Multilayer effects on microstrip antennas for their integration with mechanical structures. IEEE Trans. Antennas Propag. 55(4), 1051–1058 (2007) You, C., Tentzeris, M.M. , Hwang, W. : Multilayer effects on microstrip antennas for their integration with mechanical structures. IEEE Trans. Antennas Propag. 55(4), 1051–1058 (2007)
14.
go back to reference Yoon, Y.J., Kim, B.: New formula for effective dielectric constant in multi-dielectric layer microstrip structure. In: Proc. IEEE Conf. on Electrical Performance of Electronic Packaging, Scotsdale, AZ, Oct. 23–25, 2000, pp. 163–167 (2000) Yoon, Y.J., Kim, B.: New formula for effective dielectric constant in multi-dielectric layer microstrip structure. In: Proc. IEEE Conf. on Electrical Performance of Electronic Packaging, Scotsdale, AZ, Oct. 23–25, 2000, pp. 163–167 (2000)
15.
go back to reference Jha, K.R., Singh, G.: Analysis and design of rectangular microstrip antenna on two-layer substrate materials at terahertz frequency. J. Comput. Electron. 9(2), 68–78 (2010) Jha, K.R., Singh, G.: Analysis and design of rectangular microstrip antenna on two-layer substrate materials at terahertz frequency. J. Comput. Electron. 9(2), 68–78 (2010)
16.
go back to reference Collin, R.E.: Foundation for Microwave Engineering, 2nd edn. McGraw-Hill, New York (1992) Collin, R.E.: Foundation for Microwave Engineering, 2nd edn. McGraw-Hill, New York (1992)
17.
go back to reference Kobayshi, M.: A dispersive formula satisfying recent requirements in microstrip CAD. IEEE Trans. Microw. Theory Tech. 36(8),1246–1250 (1988) Kobayshi, M.: A dispersive formula satisfying recent requirements in microstrip CAD. IEEE Trans. Microw. Theory Tech. 36(8),1246–1250 (1988)
18.
go back to reference Hammerstad, E.O.: Equations for microstrip circuit design. In: Proc. Europ. Microw. Conf., Humberg, Germany, Sep. 1–4, 1975, pp. 268–272 (1975) Hammerstad, E.O.: Equations for microstrip circuit design. In: Proc. Europ. Microw. Conf., Humberg, Germany, Sep. 1–4, 1975, pp. 268–272 (1975)
19.
go back to reference Heiliger, H.M., Nagel, M., Roskos, H.G., Kurz, H., Schnieder, F., Heinrich,W.: Thin-film microstrip lines for mm and sub-mm wave on-chip interconnects. IEEE Int. Microw. Symp. Dig. 2, 421–424 (1997) Heiliger, H.M., Nagel, M., Roskos, H.G., Kurz, H., Schnieder, F., Heinrich,W.: Thin-film microstrip lines for mm and sub-mm wave on-chip interconnects. IEEE Int. Microw. Symp. Dig. 2, 421–424 (1997)
20.
go back to reference Hammerstad, E.O., Jensen, O.: Accurate models for microstrip computer-aided design. In: Proc. IEEE Microwave Theory and Techniques- Symposium (MTT-S) Digest, pp. 407–409 (1980) Hammerstad, E.O., Jensen, O.: Accurate models for microstrip computer-aided design. In: Proc. IEEE Microwave Theory and Techniques- Symposium (MTT-S) Digest, pp. 407–409 (1980)
21.
go back to reference Bahl, I.J., Garg, R.: Simple and accurate formula for microstrip with finite strip thickness. In: Proc. IEEE 65, 1611–1612 (1977) Bahl, I.J., Garg, R.: Simple and accurate formula for microstrip with finite strip thickness. In: Proc. IEEE 65, 1611–1612 (1977)
22.
go back to reference Schnieder, F., Heinrich, W.: Model of thin-film microstrip line for circuit design. IEEE Trans. Microw. Theory Tech. 49(1), 104–110 (2001) Schnieder, F., Heinrich, W.: Model of thin-film microstrip line for circuit design. IEEE Trans. Microw. Theory Tech. 49(1), 104–110 (2001)
23.
go back to reference Monsour, R.R., Jolley, B., Ye, S., Thomsan, F.S., Dokas, V.: On the power handling capacity of high temperature superconductive filters. IEEE Trans. Microw. Theory Tech. 44(7), 1322–1338 (1996) Monsour, R.R., Jolley, B., Ye, S., Thomsan, F.S., Dokas, V.: On the power handling capacity of high temperature superconductive filters. IEEE Trans. Microw. Theory Tech. 44(7), 1322–1338 (1996)
24.
go back to reference Hong, J.-S., Lancaster, M. J.: Microstrip triangular patch resonator filters. In: Proc. IEEE Microwave Theory and Techniques- Symposium (MTT-S) Digest, vol. 1, pp. 331–334 (2000) Hong, J.-S., Lancaster, M. J.: Microstrip triangular patch resonator filters. In: Proc. IEEE Microwave Theory and Techniques- Symposium (MTT-S) Digest, vol. 1, pp. 331–334 (2000)
25.
go back to reference Kapilevich, B., Faingersh, A., Gover, A.: Accurate determination of Q factors of a quasi-optical resonator. Microw. Opt. Technol. Lett. 35(4), 303–306 (2003) Kapilevich, B., Faingersh, A., Gover, A.: Accurate determination of Q factors of a quasi-optical resonator. Microw. Opt. Technol. Lett. 35(4), 303–306 (2003)
26.
go back to reference Pucel, R.A., Masse, D.J., Hartwig, C.P.: Losses in microstrip. IEEE Trans. Microw. Theo. Tech. 16(6), 342–350 (1968) Pucel, R.A., Masse, D.J., Hartwig, C.P.: Losses in microstrip. IEEE Trans. Microw. Theo. Tech. 16(6), 342–350 (1968)
27.
go back to reference Yeh, C., Shimabukuro, F., Siegel, P.H.: Low-loss terahertz ribbon waveguides. Appl. Opt. 4(28), 5937–5946 (2005) Yeh, C., Shimabukuro, F., Siegel, P.H.: Low-loss terahertz ribbon waveguides. Appl. Opt. 4(28), 5937–5946 (2005)
28.
go back to reference Cao, L., Grimault-Jacquin, A.-S., Frederic Aniel, F.: Comparison and optimization of dispersion, and losses planar waveguide on benzocyclobutene (BCB) at THz frequencies: Coplanar waveguide (CPW), microstrip, stripline and slotline. Prog. Electromang. Res. B, 56, 161–183 (2013) Cao, L., Grimault-Jacquin, A.-S., Frederic Aniel, F.: Comparison and optimization of dispersion, and losses planar waveguide on benzocyclobutene (BCB) at THz frequencies: Coplanar waveguide (CPW), microstrip, stripline and slotline. Prog. Electromang. Res. B, 56, 161–183 (2013)
Metadata
Title
Multilayered Microstrip Transmission Line
Authors
Kumud Ranjan Jha
Ghanshyam Singh
Copyright Year
2014
DOI
https://doi.org/10.1007/978-3-319-02341-0_2