A Study on the High Frequency Characteristics and Equivalent Circuit Model of Microstrip Lines Having Defected Ground Structures in Multilayer Substrates
Seong-Min Oh, Jae-Jin Koo, Chun-Sun Park, Mun-Su Hwang, Dal Ahn, Jong‐Sik Lim
Abstract
Seong-Min Oh, Jae-Jin Koo, Chun-Sun Park, Mun-Su Hwang, Dal Ahn, Jong‐Sik Lim
Abstract
In this paper, the transmission characteristics and equivalent circuit model of microstrip transmission line having defected ground structure (DGS) in multilayer substrates are described fur high frequency region. In order to perform the study, the second dielectric layer is attached additionally onto the bottom(ground) plane of the basic DGS microstrip line consisted of the microstrip line and DGS. The dielectric constant and thickness of the second dielectric layer are adjusted to get various transmission characteristics and model parameters, and to analysis the effect of the second dielectric layer ultimately. According to this paper, the effect and equivalent circuits due to the attached dielectric substrate are verified separately, and this is expected to be applied to high frequency circuit design in the future.
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In this paper, the transmission characteristics and equivalent circuit model of microstrip transmission line having defected ground structure (DGS) in multilayer substrates are described fur high frequency region. In order to perform the study, the second dielectric layer is attached additionally onto the bottom(ground) plane of the basic DGS microstrip line consisted of the microstrip line and DGS. The dielectric constant and thickness of the second dielectric layer are adjusted to get various transmission characteristics and model parameters, and to analysis the effect of the second dielectric layer ultimately. According to this paper, the effect and equivalent circuits due to the attached dielectric substrate are verified separately, and this is expected to be applied to high frequency circuit design in the future.
Key concepts: Ground plane, Microstrip, Transmission line, Equivalent circuit, Dielectric, Materials science, Substrate (aquarium), Optoelectronics