Changing the electromagnetic bandgaps (EBGs) and hence the stopbands in a multistate periodic microwave circuit is investigated experimentally. The state of the prototype circuit, consisting of 24 unit cells, is changed by closing or opening gaps in selected unit cells. This varies the periodic loading along the circuit and hence the EBG. In most states, the circuit behaves as a bandstop filter, and its stopband width and location are determined by the circuit state. Experimental results confirm that the first stopband width can be as large as 63% (at 4.92 GHz) or can be absent. The EBG leads to excellent isolation around 40 dB in the stopbands. Sharp roll-off between passbands and stopbands (upto 120 dB/octave) and small length compared to...
Abstract—We present a band-stop filter (BSF) by using a periodic structure property of frequency sel...
Periodic structures are used as microwave filters because of their inherent passband-stopband chara...
A wideband and compact partial electromagnetic bandgap (PEBG) structure and a corresponding stopband...
Changing the electromagnetic bandgaps (EBGs) and hence the stopbands in a multistate periodic microw...
Dynamically changing the position and width of the electromagnetic band gap of a periodic microwave ...
Based on the well known theory of infinite periodic structures, analytical theory of EBG (electromag...
Based on the well known theory of infinite periodic structures, analytical theory of EBG (electromag...
Abstract- In this paper, a reconfigurable filter is realized using electromagnetic bandgap structure...
Abstract Presented here is a reactively loaded microstrip transmission line that exhibit an ultra-wi...
Electromagnetic band-gap (EBG) structures, often termed frequency selective surfaces (FSSs) or photo...
The introduction of defects in an electromagnetic band-gap (EBG) material breaks its periodicity, a...
Most signal processing / communications applications heavily rely on filters. For adaptive spectrum ...
Electromagnetic bandgap (EBG) structures, systems incorporating EBG structures, and methods of makin...
International audienceThis work presents a new design approach of wideband multilayer Electromagneti...
A 1-D finite electromagnetic bandgap (EBG) periodic structure is studied. In the structure, EBG beha...
Abstract—We present a band-stop filter (BSF) by using a periodic structure property of frequency sel...
Periodic structures are used as microwave filters because of their inherent passband-stopband chara...
A wideband and compact partial electromagnetic bandgap (PEBG) structure and a corresponding stopband...
Changing the electromagnetic bandgaps (EBGs) and hence the stopbands in a multistate periodic microw...
Dynamically changing the position and width of the electromagnetic band gap of a periodic microwave ...
Based on the well known theory of infinite periodic structures, analytical theory of EBG (electromag...
Based on the well known theory of infinite periodic structures, analytical theory of EBG (electromag...
Abstract- In this paper, a reconfigurable filter is realized using electromagnetic bandgap structure...
Abstract Presented here is a reactively loaded microstrip transmission line that exhibit an ultra-wi...
Electromagnetic band-gap (EBG) structures, often termed frequency selective surfaces (FSSs) or photo...
The introduction of defects in an electromagnetic band-gap (EBG) material breaks its periodicity, a...
Most signal processing / communications applications heavily rely on filters. For adaptive spectrum ...
Electromagnetic bandgap (EBG) structures, systems incorporating EBG structures, and methods of makin...
International audienceThis work presents a new design approach of wideband multilayer Electromagneti...
A 1-D finite electromagnetic bandgap (EBG) periodic structure is studied. In the structure, EBG beha...
Abstract—We present a band-stop filter (BSF) by using a periodic structure property of frequency sel...
Periodic structures are used as microwave filters because of their inherent passband-stopband chara...
A wideband and compact partial electromagnetic bandgap (PEBG) structure and a corresponding stopband...