Compact waveguides based on electromagnetic-bandgap (EBG) technology using layered arrays of periodic metallic rings on a substrate have been developed. Structures have been designed and built that operate in the X-band. The measured insertion losses are about 2.8 dB in the overall operating bandwidth
A novel methodology to create metallic waveguides with multilayer integrated vertical-electromagneti...
Photonic Bandgap (PBG) structures are periodic dielectric structures which exhibit a frequency band ...
High-K ceramics are embedded into a polymer host to create an electromagnetic bandgap (EBG) substrat...
A dielectric-based multilayer structure composed of U-shaped rings (ML-UR) is used to develop a clas...
Traditional planar transmission lines (e.g. microstrip lines) require thinner substrates at higher f...
Traditional planar transmission lines (e.g. microstrip lines) require thinner substrates at higher f...
A dielectric-based multilayer structure composed of U-shaped rings (ML-UR) is used to develop a clas...
Electromagnetic Bandgap (EBG) structures are one class of metamaterial with attractive properties th...
A mushroom-like electromagnetic bandgap (EBG) surface for interference mitigation in GPS L2 and L1 b...
This paper is under in-depth investigation due to suspicion of possible plagiarism on a high similar...
In this paper, a fast and accurate full-wave analysis tool of passive structures based on Electromag...
We present a novel electromagnetic bandgap (EBG) structure, which can be used to manufacture low-cos...
This article presents various novel and conventional planar electromagnetic bandgap (EBG)-assisted t...
A planar electromagnetic bandgap (EBG) structure designed for broadband common-mode suppression is p...
In this paper we present a compact horn antenna that incorporates Electromagnetic Band Gap (EBG) and...
A novel methodology to create metallic waveguides with multilayer integrated vertical-electromagneti...
Photonic Bandgap (PBG) structures are periodic dielectric structures which exhibit a frequency band ...
High-K ceramics are embedded into a polymer host to create an electromagnetic bandgap (EBG) substrat...
A dielectric-based multilayer structure composed of U-shaped rings (ML-UR) is used to develop a clas...
Traditional planar transmission lines (e.g. microstrip lines) require thinner substrates at higher f...
Traditional planar transmission lines (e.g. microstrip lines) require thinner substrates at higher f...
A dielectric-based multilayer structure composed of U-shaped rings (ML-UR) is used to develop a clas...
Electromagnetic Bandgap (EBG) structures are one class of metamaterial with attractive properties th...
A mushroom-like electromagnetic bandgap (EBG) surface for interference mitigation in GPS L2 and L1 b...
This paper is under in-depth investigation due to suspicion of possible plagiarism on a high similar...
In this paper, a fast and accurate full-wave analysis tool of passive structures based on Electromag...
We present a novel electromagnetic bandgap (EBG) structure, which can be used to manufacture low-cos...
This article presents various novel and conventional planar electromagnetic bandgap (EBG)-assisted t...
A planar electromagnetic bandgap (EBG) structure designed for broadband common-mode suppression is p...
In this paper we present a compact horn antenna that incorporates Electromagnetic Band Gap (EBG) and...
A novel methodology to create metallic waveguides with multilayer integrated vertical-electromagneti...
Photonic Bandgap (PBG) structures are periodic dielectric structures which exhibit a frequency band ...
High-K ceramics are embedded into a polymer host to create an electromagnetic bandgap (EBG) substrat...